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Wyświetlanie 1-14 z 14
Tytuł:
Adhesion, growth and differentiation of human osteoblast-like cells on thermally oxidized Ti and TiNb substrates
Autorzy:
Bacakova, L.
Vandrovcova, M.
Jirka, I.
Novotna, K.
Stary, V.
Powiązania:
https://bibliotekanauki.pl/articles/285115.pdf
Data publikacji:
2013
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Polskie Towarzystwo Biominerałów
Tematy:
osteoblasts
substrates
metallic materials
Opis:
Metallic materials are essential for construction of load-bearing bone implants, such as replacements of hip, knee and other joints. For these applications, modern materials used in advanced tissue engineering, e.g. resorbable porous or fibrous polymeric and ceramic scaffolds are mechanically insufficient, even if these materials enable the ingrowth of bone cells and bone tissue formation. Therefore, searching for new metallic materials and their surface modifications improving their biocompatibility and osseointegration is still desirable. As first metallic materials for bone implantation, AISI 316L stainless steel and Co-Cr alloys were used. In the 1950’s, the Ti-6Al-4V alloy was developed. These materials are still frequently used for construction of implants because of their relatively low price [1]. However, these materials are biomechanically incompatible with the bone tissue, because their Young’s modulus is markedly higher (110-220 GPa) than that of the bone (10-40 GPa). Implants with high stiffness take over a considerable part of load from the bone. This phenomenon, referred as “stress-shielding effect”, can then cause the bone resorption and loosening of the implant [1]. Also chemical compositions of the mentioned metallic materials limit their biocompatibility, because they contain harmful elements as V, Al, Co and Cr, which can act as cytotoxic, catabolic, immunogenic or even carcinogenic agents [2,3], and can also cause serious neurological problems [4]. Due to these adverse reactions, new types of Ti-alloys have been developed, namely low-rigidity β-type Ti alloys, containing non-toxic and non-allergenic elements (Nb, Ta, Zr etc.) and having good mechanical properties and workability [4,5]. The goal of this study was to evaluate the adhesion, growth and differentiation of osteoblast-like MG-63 and Saos-2 cells on titanium-niobium alloys after their surface modification by thermal oxidation at two different temperatures (165°C and 600°C). Pure titanium (treated at 165°C and 600°C) and polystyrene culture dishes (PS) were used as control materials. Possible immune activation of the cells was tested by the levels of TNF-alpha secreted to the cell culture media by murine macrophage-like RAW 264.7 cells cultured on the tested materials. On samples treated at 165°C, the number of initially adhered MG-63 and Saos-2 cells was on an average higher on TiNb than on Ti or PS. On day 3 after seeding, the trend of the cell numbers remained similar, with the highest cell density found on TiNb. Similar results were obtained on samples treated at 600°C, where the difference in cell number between TiNb and Ti samples became more apparent. This cell behavior could be attributed to a less negative zeta potential on TiNb samples. In samples treated at 165°C, the zeta potential of TiNb surfaces was on the average less negative than on Ti surfaces, but this difference was not significant. However, in samples treated at 600°C, this difference became much more pronounced, which was probably due to the formation of T-Nb2O5 phase on the surface of the TiNb samples. This phase was of a crystalline structure, while at 165°C, the structure of Nb2O5 was amorphous. In addition, both Ti and TiNb samples treated at 600°C contained rutile, while the samples treated at 165°C contained anatase in their surface layer. It has been shown that rutile films deposited on PEEK enhanced the adhesion and growth of osteoblasts more than anatase films [6]. This phenomenon was explained by an increase in the material surface wettability, and particularly to the presence of –OH- groups on the rutile films. The expression of collagen I and osteocalcin, i.e. an early and late marker of osteogenic cell differentiation, respectively, was higher on Ti than on TiNb samples, and this difference was more apparent in samples treated at 165°C. At the same time, no considerable immune activation of the cells on all tested samples was found. The production of TNF-α by RAW 264.7 cells was very low in comparison with cells grown in the presence of bacterial lipopolysaccharide, and also significantly lower than on untreated samples. These results indicate that TiNb substrates increased the proliferation of human bone cells, while pure Ti rather supported the cell differentiation. The effect on cell proliferation was more apparent in samples treated at the higher temperature (600°C), while the effect on cell differentiation was more pronounced at the lower temperature (165°C). None of the tested samples induce significant cell proinflammatory activation. Thus, all tested samples are suitable as carriers for bone cells; only an appropriate application (i.e., requiring either proliferation or quick differentiation of osteogenic cells) should be selected.
Źródło:
Engineering of Biomaterials; 2013, 16, no. 122-123 spec. iss.; 75-76
1429-7248
Pojawia się w:
Engineering of Biomaterials
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Potential activation of the immune system on metallic materials for bone implants
Autorzy:
Stranavova, L.
Bacakova, M.
Novotna, K.
Bacakova, L.
Fencl, J.
Powiązania:
https://bibliotekanauki.pl/articles/285314.pdf
Data publikacji:
2012
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Polskie Towarzystwo Biominerałów
Tematy:
bone implants
metallic materials
biomaterials
Opis:
Titanium and stainless steel are metallic materials that have been in use for a long time in orthopedics, traumatology and stomatology. These metals are strong, corrosion-resistant and biocompatible. However, metallic materials have some disadvantages in comparison with the natural bone, particularly their relatively high specific weight and toughness. For example, the Young's modulus of AISI316L stainless steel, Co-Cr alloys and Ti-6Al-4V alloy, i.e. materials frequently used for implantation into bone, ranges between 110-220 GPa, while the Young's modulus of bone tissue is 10-40 GPa [1]. In addition, these metals can release cytotoxic, allergenic and immunogenic ions, which can affect their biocompatibility [2, 3]. Implantation is a special type of transplantation process, in which the implant is inserted into the body, usually in order to replace an irreversibly damaged tissue. However, the immune system recognizes the implant as a foreign substance and attacks it with its effector mechanisms. Just as it can reject other types of transplants, the immune system can reject an artificial implant. To prevent rejection of an implant, it is important to study the potential activation of the immune system. This study has investigated the biocompatibility of samples made of pure titanium (according to quality standard ISO 5832-2) and corrosion-resistant steel (quality standards ISO 5832-1 and AISI 316L), obtained from Beznoska Ltd. (Kladno, Czech Republic), and the potential activation of the immune system by these materials. In addition to Fe, the steel samples contained C (max. 0.025 wt.%), Si (0.6 wt.%), Mn (1.7 wt.%), P (max. 0.025wt.%), S (max. 0.003 wt.%), Cr (17.5 wt.%), Ni (13.5 wt.%), Mo (2.8 wt.%), and Cu (max. 0.1 wt. %). The materials were used in the form of square samples (9x9 mm or 30x30 mm, thick¬ness 1 mm). Both the Ti samples and the steel samples were ground with SiO2. The surface of the steel samples was then treated by polishing with Al2O3 paste (grain size up to 1 um), while the surface of the Ti samples, i.e. a material not suitable for polishing, was finished by brushing using another type of Al2O3 paste with slightly larger grains. Thus, the surface of the steel samples was finally smoother and glossy, while the Ti surface was rougher and matte. For the in vitro biocompatibility tests, human osteoblast-like MG 63 cells (European Collection of Cell Cultures, Salisbury, UK) were used. The smaller samples (9x9 mm) were inserted into polystyrene 24-well cell culture plates (TPP, Trasadingen, Switzerland; well diameter 1.5 cm). Each well contained 25 000 cells (approx. 14 150 cells/cm2) and 1.5 ml of Dulbecco's Modified Eagle Minimum Essential Medium (DMEM; Sigma, USA, Cat. No. 10270-106) supplemented with 10% foetal bovine serum (FBS; Gibco, Cat. No. 10270-106) and gentamicin (40 /jg/ml, LEK, Slovenia). These samples were used for evaluating the size of the cell spreading area (day 1), and for evaluating cell shape and cell viability (days 1, 4 and 7 after seeding). The size of the cell spreading area was measured using Atlas Software (Tescan Ltd., Brno, Czech Republic). The viability of the cells was determined by the LIVE/ DEAD viability/cytotoxicity kit for mammalian cells (Invitrogen, Molecular Probes, USA). The larger samples (30x30 mm) were inserted into GAMA polystyrene dishes (diameter 5 cm; GAMA Group Joint-Stock Company, Ceske Budejovice, Czech Republic) and seeded with 300 000 cells/dish (approx. 15 300 cells/cm2) suspended in 9 ml of the above mentioned culture medium. These samples were used for evaluating the cell number on days 1, 4 and 7 after seeding, using a Beckman Vi-CELL XR Cell Analyser automatic cell counter. For the in vitro analysis of markers of osteogenic differentiation and cell immune activation, human osteoblast-like MG 63 cells (European Collection of Cell Cultures, Salisbury, UK) were used. The samples (9x9 mm) were inserted into polystyrene 24-well cell culture plates (TPP, Trasadingen, Switzerland; well diameter 1.5 cm). Each well contained 25 000 cells (approx. 14 150 cells/cm2) and 1.5 ml of Dulbecco's Modified Eagle Minimum Essential Medium (DMEM; Sigma, USA, Cat. No. 10270-106) supplemented with 10% foetal bovine serum (FBS; Gibco, Cat. No. 10270-106) and gentamicin (40 jg/ml, LEK, Slovenia). The cells were cultured for 1, 4, or 7 days at 37°C in a humidified atmosphere of 5% of CO2 in the air. On day 4 after seeding, the medium was changed; one half of the samples contained standard medium DMEM with 10% foetal bovine serum and gentamicin (40 jg/ml) mentioned above, and the second half contained osteogenic medium, i.e. the standard medium further supplemented with ß-glycerophosphate, L-glutamin, ascorbic acid, dihydroxyvitamin D3, dexamethason, 10% foetal bovine serum and gentamicin (40 jg/ml). Using an Enzyme-Linked ImmunoSorbent Assay (ELISA), we measured the concentration of the Inter¬cellular Adhesion Molecule-1 (ICAM-1, a marker of cell immune activation) and osteocalcin (a marker of osteogenic cell differentiation). These measurements were performed in homogenates of cells on days 4 and 7 after seeding, and the concentration of both markers was measured per cell or per mg of protein. On day 7, the amount of osteocalcin was measured and compared in cells cultured in the standard and osteogenic media. We also measured TNF-а and IL- 1ß, i.e. other markers of cell immune activation. These cytokines are important mediators of the inflammatory response, and they are involved in a variety of cellular activities, including cell proliferation and differentiation. We measured the secretion of these markers into the cell culture medium in murine macrophage-like RAW264.7 cells (American Type Culture Collection, Manassas, VA). The samples (9x9 mm) were inserted into polystyrene 24-well cell culture plates (TPP, Tra- sadingen, Switzerland; well diameter 1.5 cm). Each well contained 30,000 (approx. 16 980 cells/cm2) cells and 1.5 ml of the culture medium. RAW 264.7 cells were cultured in the RPMI-1640 medium (Sigma; 10% fetal bovine serum, 40 jg/mL gentamicin). After 7 days of cultivation, the cell culture medium was collected and used for measuring the concentration of TNF-а and IL-1ß by a sandwich ELISA using commercially available kits. A mouse TNF-а kit and an IL- 1ß Quantikine ELISA kit were used for the RAW 264.7 cells. Both kits were purchased from R and D Systems (Minneapolis, MN) and used according to the manufacturer's protocol. The results indicated that the number of initially adhering MG 63 cells on day 1 after seeding was significantly lower on the titanium (5320±390 cells/cm2) and on the stainless steel (4110±370 cells/cm2) than on the control polystyrene culture dishes (7740±350 cells/cm2). However, on day 4 after seeding, the cell population density on both metallic materials became significantly higher than on the control polystyrene dishes (75200±2890 cells/cm2 on Ti and 90 870±2350 cells/cm2 on steel vs. 56440±1180 cells/cm2 on polystyrene). This suggests faster cell proliferation on both metallic materials than on polystyrene. At the same time, the cell number on the stainless steel samples was significantly higher than on the Ti samples. On day 7, the differences in the number of adhered cells on the two metals and on the control polystyrene substrate was on an average similar (from 328780±680 cells/cm2 to 362200±760 cells/cm2). The cell viability on all tested materials was almost 100% in all culture intervals. The morphology of the cells adhered on the studied materials was similar to the morphology of the cells on the control polystyrene dishes, i.e. the cells were mostly flat and polygonal, and the size of their cell spreading areas was similar on all tested materials. The cells were distributed homogeneously on the entire material surface, and on day 4 they started to form confluent cell layers. On day 4, we measured the amount of ICAM-1 by the ELISA test. This immunoglobulin molecule is typically expressed on cells of the immune system, but it is also expressed on other cell types, including MG 63, during their immune activation, e.g. by an artificial growth support. In this case, ICAM-1 molecules on cells are bound byß2-integrin receptors on inflammatory cells (for a review, see [4]). Surprisingly, titanium seemed to be more immunogenic than stainless steel, which was indicated by a higher concentration of ICAM-1 per cell and mg of protein in cells on day 4 after seeding. However, on day 7, there was no difference between the concentrations of ICAM-1 per cell and mg of protein in cells on titanium and on stainless steel. The second molecule that we measured was osteocalcin, a calcium-binding extracellular matrix glycoprotein, an important marker of the bone formation process. The concentration of osteocalcin on day 4 in the standard culture medium was higher in MG 63 cells on the titanium and stainless steel than on the control polystyrene samples. This could be explained by the fact that the metals are harder than polystyrene. It is known that harder substrates promote osteogenic cell differentiation, while softer substrates direct the cell differentiation towards neural or muscle phenotype [5]. In addition, the osteogenic differentiation was further supported by the osteogenic medium, as indicated by a higher concentration of osteocalcin in cells grown in this medium compared to cells in the standard medium on day 7 after seeding. On day 7 after seeding murine macrophage-like RAW264.7 cells on the tested materials, the concentration of TNF-а in the culture medium ranged on an average from 57.10 to 79.39 pg per 2000000 cells. The concentration of TNF-а in the medium from Ti and Fe was significantly higher than in the medium from the control polystyrene dishes. The highest value (79.39 pg/2000000 cells) was found in the medium taken from RAW264.7 cells on Ti. The second molecule that we tested was IL-1ß. No significant differences in the concentration of IL-1ß were detected in the culture medium obtained from RAW264.7 cells on all tested materials. In other words, neither type of metallic material, i.e. Ti and Fe, evoked significantly higher production of IL-1ß by RAW 264.7 cells than standard polystyrene cell culture dishes. It can be concluded that the tests of biocompatibility and immune activation confirmed that titanium and stainless are promising for construction of bone implants and for good integration with the surrounding bone tissue.
Źródło:
Engineering of Biomaterials; 2012, 15, no. 116-117 spec. iss.; 130-131
1429-7248
Pojawia się w:
Engineering of Biomaterials
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Improved adhesion and growth of osteoblast-like MG-63 cells in cultures on titanium modified by gold particles
Autorzy:
Parizek, M.
Base, T.
Hruby, M.
Lisa, V.
Bacakova, L.
Powiązania:
https://bibliotekanauki.pl/articles/285778.pdf
Data publikacji:
2013
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Polskie Towarzystwo Biominerałów
Tematy:
metallic materials
titanium
surgical implants
gold microparticles
cell adhesion
cell growth
Opis:
Metallic materials are important for load-bearing bone implants. The osteointegration of these implants can be improved by appropriate surface modifications. Therefore, we present here a study of the cell growth on titanium surfaces modified with films created from gold microparticles. These particles in the form of microplates or polyhedral microcrystals were deposited on titanium plates from ethanol solutions, dried and annealed with a hydrogen flame. Some samples were additionally modified by polyethylene imine. The materials engendered from these modifications were used to investigate the adhesion and growth of human osteoblast-like MG-63 cells on these surfaces in the DMEM medium with 10% of fetal bovine serum. One day after seeding, the highest number of initially adhered cells was found on the surfaces modified by both types of gold microparticles. This trend was the same three and seven days after seeding. The numbers of cells on pure Ti and Ti modified only with gold particles were significantly higher than on samples which were modified with polyethylene imine. The cell spreading areas projected on the materials were significantly larger in cells on the samples with polyethylene imine modification. However, the shape of these cells was mostly rounded or star-like with thin and long protrusions, while on the materials without polyethylene imine, it was mostly polygonal. The cell proliferation activity was estimated from XTT test, based on the activity of mitochondrial enzymes. This test showed that the proliferation activities of osteoblast-like MG-63 cells of the 3rd and 7th days of the experiment were more pronounced on the samples modified only by gold microparticles. Immunofluorescence showed that the focal adhesion plaques containing vinculin and the fibers containing β-actin were most apparent, more numerous and more brightly stained in cells on Ti modified by gold microplates and gold polyhedral microcrystals, especially in comparison with the corresponding samples modified with polyethylene imine (Fig. 1). Thus, it can be concluded that the modification of titanium samples by both types of gold microparticles enhanced the adhesion and growth of MG 63 cells.
Źródło:
Engineering of Biomaterials; 2013, 16, no. 122-123 spec. iss.; 77
1429-7248
Pojawia się w:
Engineering of Biomaterials
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Hot Deformation Activation Energy of Metallic Materials Influenced by Strain Value
Autorzy:
Schindler, I.
Opěla, P.
Kawulok, P.
Sauer, M.
Rusz, S.
Kuc, D.
Rodak, K.
Powiązania:
https://bibliotekanauki.pl/articles/2049432.pdf
Data publikacji:
2021
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
flow stress curves
steady state
metallic materials
hot deformation activation energy
Opis:
Suitable and complete sets of stress-strain curves significantly affected by dynamic recrystallization were analyzed for 11 different iron, copper, magnesium, titanium or nickel based alloys. Using the same methodology, apparent hot deformation activation energy Qp and Qss values were calculated for each alloy based on peak stress and steady-state stress values. Linear dependence between quantities Qp and Qss was found, while Qp values are on average only about 6% higher. This should not be essential in predicting true stress of a specific material depending on the temperature-compensated strain rate and strain.
Źródło:
Archives of Metallurgy and Materials; 2021, 66, 1; 223-228
1733-3490
Pojawia się w:
Archives of Metallurgy and Materials
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Odpady energetyczne jako substytut niemetalicznych surowców pierwotnych
Energetic wastes as an equivalent for primary nonmetallic materials
Autorzy:
Kusnierova, M.
Prascakova, M.
Cablik, V.
Fecko, P.
Powiązania:
https://bibliotekanauki.pl/articles/971197.pdf
Data publikacji:
2011
Wydawca:
Polskie Towarzystwo Przeróbki Kopalin
Tematy:
popiół lotny
szkło wulkaniczne
materiały niemetaliczne
fly ash
volcanic glass
non-metallic materials
Opis:
Popioły lotne z energetyki są, zgodnie z prawem, zaklasyfikowane jako odpady. W wielu przypadkach mogą być traktowane jako pełnowartościowy substytut surowców pierwotnych, wykazując właściwości surowców pierwotnych. Celem artykułu jest porównanie składu badanego popiołu z węgla kamiennego z właściwościami wybranych surowców naturalnych.
Energetic fly ashes are by the course of the law categorized as wastes in the general. By its formation, composition and some facilities but also by the forecastable possibilities of its using are in many aspects equivalents to the some primary, commercially used non-metallic materials. The aim of the presented paper is comparison of the composition of examined blackcoal fly ashes with the selected primary non-metallic materials on the fundamentals basics and the definition of its industrial usage possibilities as the secondary crude.
Źródło:
Inżynieria Mineralna; 2011, R. 12, nr 1, 1; 73-78
1640-4920
Pojawia się w:
Inżynieria Mineralna
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Dawne górnictwo surowców metalicznych rejonu Przybramu
Old-time mining of metallic materials of the Przybrarn
Autorzy:
Strzałkowska, E.
Powiązania:
https://bibliotekanauki.pl/articles/165619.pdf
Data publikacji:
2014
Wydawca:
Stowarzyszenie Inżynierów i Techników Górnictwa
Tematy:
galena
uraninit
surowce metaliczne
muzeum górnictwa
Brezove Hory
uraninite
metallic materials
museum of mining
Opis:
W artykule przypomniano historię dziejów miasta Przybram, a także poruszono zagadnienia z zakresu dawnego górnictwa rud srebra, cynku i ołowiu w obszarze Brezovych Hor. Omówiono zarys budowy geologicznej tego obszaru oraz krótko scharakteryzowano występujące tu minerały rudne i towarzyszące. Zaprezentowano ponadto dane dotyczące występowania, warunków eksploatacji i wielkości wydobycia rud uranu na tym terenie.
This paper presents the history of the city of Przybram as well as old-time mining issues for silver ore, zinc ore and lead ore in the area of Brezove Hory. The geological structure of this area was discussed and the existing ore minerals and accompanying minerals characterized. Finally, data on the occurrence, exploitation conditions and output size of uran ore were presented.
Źródło:
Przegląd Górniczy; 2014, 70, 4; 114-118
0033-216X
Pojawia się w:
Przegląd Górniczy
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Ocena bezpieczeństwa surowcowego Polski w zakresie surowców nieenergetycznych
Assessment of the non-energy minerals security of Poland
Autorzy:
Galos, K.
Szamałek, K.
Powiązania:
https://bibliotekanauki.pl/articles/394004.pdf
Data publikacji:
2011
Wydawca:
Polska Akademia Nauk. Instytut Gospodarki Surowcami Mineralnymi i Energią PAN
Tematy:
bezpieczeństwo surowcowe
surowce metaliczne
surowce niemetaliczne
popyt krajowy
produkcja
import
minerals security
metallic raw materials
non-metallic raw materials
domestic demand
imports
Opis:
Bezpieczeństwo surowcowe jest ściśle powiązane z gospodarką krajową i międzynarodową w zakresie możliwości dostępu do źródeł surowców mineralnych (pierwotnych i wtórnych) oraz ich wykorzystania obecnie i w przyszłości. Punktem wyjścia w ocenie bezpieczeństwa surowcowego jest rozpoznanie obecnego i prognoza przyszłego zapotrzebowania gospodarki na poszczególne surowce mineralne. Dotyczy to zarówno surowców pochodzących ze złóż kopalin (surowce pierwotne), z recyklingu materiałowego (surowce wtórne), jak też z różnego rodzaju odpadów przemysłowych (mineralne surowce odpadowe). Bezpieczny, niezależny i niezawodny dostęp do surowców postrzegany jest jako przesądzający o możliwości utrzymania pozycji konkurencyjnej gospodarki danego kraju. Stąd, zgodnie z ostatnimi inicjatywami surowcowymi Unii Europejskiej, bezpieczeństwo krajów Unii Europejskiej (w tym Polski) w zakresie surowców nieenergetycznych powinno bazować na trzech filarach: zapewnieniu odpowiedniego dostępu do surowców na rynkach międzynarodowych, rozwijaniu stabilnych dostaw surowców ze źródeł własnych oraz poprawie efektywności wykorzystania surowców i promowaniu wykorzystywania surowców wtórnych i odpadowych. W artykule poddano analizie zapotrzebowanie krajowej gospodarki na poszczególne surowce nieenergetyczne (metaliczne i niemetaliczne). W odniesieniu do jego poziomu oceniono wielkość i wystarczalność krajowych zasobów kopalin do produkcji tych surowców, a także podstawowe trendy w ich krajowej produkcji. Szczególną uwagę zwrócono na strukturę uzupełniającego importu surowców nieenergetycznych, a także na przyczyny rosnącego udziału surowców importowanych w zaspokajaniu krajowego popytu na omawianą grupę surowców. Podkreślono także rosnące znaczenie surowców wtórnych i odpadowych ze źródeł krajowych w zaspokajaniu tego popytu, co należy uznać za zjawisko zdecydowanie pozytywne. Polska jest i pozostanie w najbliższej przyszłości niemal całkowicie wystarczalna pod względem zaspokajania potrzeb w zakresie surowców budowlanych oraz znacznej części surowców ceramicznych. Niestety, w zakresie surowców chemicznych, poza utrzymywaną podażą soli i siarki, skazana jest na posiłkowanie się importem. Wysoka pozycja Polski jako znaczącego producenta miedzi i srebra oraz kilku ich koproduktów (np. złoto, selen, surowce renu) oraz planowane utrzymanie produkcji cynku i ołowiu metalicznego (mimo spodziewanej w najbliższych latach likwidacji górnictwa rud Zn-Pb) przyczynia się do utrzymywania dodatniego salda obrotów surowcami metalicznymi. Nie zmieni to jednak faktu, że w zakresie pozostałych ponad 30 surowców metalicznych, a w szczególności rud żelaza, żelazostopów, aluminium metalicznego, niklu, krajowa gospodarka pozostanie całkowicie zależna od dostaw z zagranicy. Zapewnienie dostaw surowców nieenergetycznych na bazie trzech filarów europejskiej inicjatywy surowcowej na gruncie polskim wymaga w chwili obecnej opracowania nowej polityki surowcowej naszego kraju.
Minerals security is strictly related to the domestic and world economy regarding access to primary and secondary sources of such minerals, as well as directories of their current and future use. Estimation of current and perspective demand of national economy for particular types of minerals should be the starting point for assessment of minerals security. All sources of minerals supplies should be investigated: primary mineral raw materials (from deposits), secondary mineral raw materials from recycling (scraps), as well as waste raw materials from various industrial wastes. Secure, independent and stable access to mineral raw materials is a crucial factor which decides on competition position of the country's economy. So, according to the latest European Union's initiatives, non-energy minerals security of EU countries (including Poland) should be based on three pillars: assurance of appropriate access to minerals on the international market, development of their production from own sources, as well as improvement of effectiveness of minerals use with promotion of use of secondary and waste raw materials. In the paper, national economy's demand for particular non-energy minerals is analyzed. In relation to this demand, quantity and sufficiency of the domestic reserves of such minerals, as well as their production trends, are assessed. The special attention is paid on the structure of the supplementary imports of non-energy minerals, and reasons of the increasing share of imported minerals in mineral supplies which meet domestic demand. Growing importance of domestic secondary and waste raw materials in total mineral supplies is underlined as positive phenomenon. Poland is self-sufficient in case of almost all construction raw materials and the majority of ceramic raw materials. Such situation should be maintained in the coming years. Unfortunately, regarding chemical raw materials, Poland is entirely dependent on imported raw materials, except for salt and sulfur from domestic supplies. Our country is very important producer of copper, silver and their co-products (e.g. gold, selenium, rhenium). Maintaining of smelter production of zinc and lead is also planned in spite of the expected closure of the last Zn-Pb ore mine in the coming years. This is why Poland's trade balance in the area of metallic raw materials is still positive. However, Poland's economy will remain fully dependent on imports of over 30 metallic raw materials, with iron ore, ferroalloys, aluminum and nickel being the most important. Assurance of non-energy minerals supplies on the basis of three pillars of the European raw materials initiative should result in the preparation of the new minerals policy of Poland.
Źródło:
Zeszyty Naukowe Instytutu Gospodarki Surowcami Mineralnymi i Energią PAN; 2011, 81; 37-58
2080-0819
Pojawia się w:
Zeszyty Naukowe Instytutu Gospodarki Surowcami Mineralnymi i Energią PAN
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
The effects of conductivity and pH of saliva on electrochemical potentials of metallic dental materials
Autorzy:
Opydo-Szymaczek, J.
Opydo, J.
Opydo, W.
Powiązania:
https://bibliotekanauki.pl/articles/97371.pdf
Data publikacji:
2015
Wydawca:
Politechnika Poznańska. Wydawnictwo Politechniki Poznańskiej
Tematy:
metallic dental materials
electrochemical potential
galvanic cells
oral galvanism
conductivity
pH
Opis:
The paper presents results of the study on electrochemical potentials of metallic dental materials. Seven alloys, amalgam and chromium-nickel steel were examined as well as the effect of the solution conductivity ranging from 12.5 μS/cm to 2.01 mS/cm and solution pH within the range of 5.5 to 11.2 on electrochemical potentials of the materials. Amalgam presented with the lowest changes of the standard potential due to changing conductivity and pH of the solution within experiment conditions. Moreover, increase of pH value caused decrease of electrochemical potential of all examined materials, apart from amalgam. It was proved that electromotive force of galvanic cells formed by some of the examined materials and amalgam are often higher than 200 mV. Statistica software was used for mathematical analysis of the results.
Źródło:
Computer Applications in Electrical Engineering; 2015, 13; 143-152
1508-4248
Pojawia się w:
Computer Applications in Electrical Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Ocena stanu biżuterii metalicznej z powłoką węglową w badaniach in vivo
Evaluation of the surface of metallic jewellery with carbon coating after in vivo test
Autorzy:
Bociąga, D.
Powiązania:
https://bibliotekanauki.pl/articles/285421.pdf
Data publikacji:
2008
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Polskie Towarzystwo Biominerałów
Tematy:
jubilerskie tworzywa metaliczne
biomateriały
powłoki węglowe
badania in vivo
jewellery metallic materials
biomaterials
carbon coatings
in vivo investigation
Opis:
Tworzywa metaliczne stanowią szeroką gamę produktów, które służą człowiekowi w każdym aspekcie życia. Odpowiednie właściwości biologiczne oraz optymalne parametry biomechaniczne sprawiają, iż tworzywa metaliczne są wciąż bardzo szeroko stosowane. Są to nie tylko wyroby o charakterze mechanicznym. Równie istotne są te wykorzystywane na biomateriały, które posiadają zespół cech zapewniających im jak największą biozgodność i biofunkcjonalność. To właśnie z biomateriałów wykonuje się produkty, z którymi organizm ludzki ma kontakt bezpośredni, takie jak: implanty medyczne, narzędzia chirurgiczne, czy wyroby jubilerskie, które bardzo powszechnie ozdabiają niemal każdą część ludzkiego ciała. Biżuteria przeznaczona do zdobienia ciała to szczególny rodzaj tworzyw metalicznych.Ozdoby, będące wyrobami metalicznymi, mają bezpośredni kontakt z żywą tkanką. Stanowią zatem swego rodzaju biomateriały, które powinny spełniać wymogi im adekwatne. Jednak wstępne badania i doniesienia literaturowe wskazują, że nawet biomateriały, powszechnie uważane za nietoksyczne i bezpieczne dla organizmu, mogą uwalniać jony pierwiastków składowych podłoża, wpływając na utrudniony proces gojenia się ran, inicjując odczyny alergiczne, mogą także odkładać się w narządach wewnętrznych (metaloza) a przez to prowadzić do upośledzenia czynności komórek organizmu. Niniejsza praca jest krótkim przeglądem stanu wiedzy w zakresie wyrobów jubilerskich używanych do zabiegów zdobienia ciała oraz weryfikacją oddziaływania organizmu żywego na ozdoby z tworzyw metalicznych z powierzchnią modyfikowaną powłokami węglowymi.
The metallic materials make a wide spectrum of products, which are useful for people in any aspect of life. Suitable biological properties and optimal biomechanical parameters make, that metallic materials are still very broadly applied. Those are not only mechanical products. Also these, which are used as a biomaterials, are very important for the sake of biocompatibility and bio-functionality. Articles staying in a direct contact with living organism, like for example: medical implants, surgical tools or jewellery, which decorates almost each part of human body, should be made of biomaterials. Jewellery is a special kind of metallic materials. They have a contact with tissues and thus constitute a special kind of biomaterials, which should fulfil the requirements adequate for them. The preliminary research and literature reports show that even biomaterials, generally pointed as non-toxic and safe, can release ions of background‘s elements and thus influence the wound healing process making it more difficult, initiate the allergic response or cause the metalosis. Present work is a short review of state of the art in the range of jewellery being in use as materials for body modification procedures. It is also a verification of interaction between living organism and metallic materials with carbon coating on the surface.
Źródło:
Engineering of Biomaterials; 2008, 11, 76; 28-32
1429-7248
Pojawia się w:
Engineering of Biomaterials
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Wybrane aspekty technologiczne spawania stali dwufazowych odpornych na korozję
Selected technological aspects of uncorrodible two-phase steel welding
Autorzy:
Medaj, D.
Skibicki, A.
Powiązania:
https://bibliotekanauki.pl/articles/395212.pdf
Data publikacji:
2011
Wydawca:
Stowarzyszenie Inżynierów i Techników Mechaników Polskich
Tematy:
kwalifikowanie technologii spawania
energia liniowa
modelowanie procesów
specification and qualification of welding procedures for metallic materials
heat input energy
modeling process
Opis:
Artykuł opisuje problematykę spawalności stali dwufazowych w aspekcie spawania FCAW w odniesieniu do normy PN EN 15614-1. Połączenia wykonane zostały w różnych kombinacjach materiałowych, zarówno dupleksu z dupleksem jak i dupleksu ze stalami węglowymi i kwasoodpornymi stalami austenitycznymi. Przeprowadzono próbę zginania, rozciągania statycznego złączy spawanych, badanie twardości i udarności, badanie na zawartość ferrytu oraz badania radiologiczne (RT). Próbki wykonano dla pozycji wprowadzającej dużą ilość ciepłą, jak również były one spawane małą energią liniową. Niniejsze badania mają na celu ustalenie optymalnych rozwiązań technologicznych spawania uwzględniając energię liniową przy jednoczesnej minimalizacji kosztów z wykorzystaniem metod numerycznych.
This article describes the problem of welding of two-phase steel in the aspect of FCAW welding with reference to norm PN EN 15614-1. The joints were done in different combinations of material, both duplex with duplex, and duplex with carbon steel and stainless austenitic steel. There were conducted: a bending test, a static stretching test of the weld joints, hardness and impact resistance tests, a ferrite test as well as X-ray. The samples were welded using both a large amount of heat and a low heat input energy. The aim of this research is to establish the optimal technological solutions for welding, taking into account heat input energy while minimizing the costs and using numerical methods.
Źródło:
Postępy Nauki i Techniki; 2011, 7; 205-213
2080-4075
Pojawia się w:
Postępy Nauki i Techniki
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Liquid-solid interaction during formation of nanocomposite systems
Autorzy:
Shtablavyi, I.
Mudry, S.
Kajak, P.
Powiązania:
https://bibliotekanauki.pl/articles/779001.pdf
Data publikacji:
2012
Wydawca:
Zachodniopomorski Uniwersytet Technologiczny w Szczecinie. Wydawnictwo Uczelniane ZUT w Szczecinie
Tematy:
composite materials
liquid metals and alloys
metallic powders
microstructure
short-range order
Opis:
Structural changes in mixtures of liquid Bi with small Cu and Ni particles were studied at temperatur es of 615 and 1145K. Microstructures of the composites were observed (SEM) and analyzed after treatment at different temperatures and various durations of stirring. The structure of the mixtures of Bi with Cu(Ni) particles was investigated by means of X-ray diffraction, both in the solid and liquid state.
Źródło:
Polish Journal of Chemical Technology; 2012, 14, 4; 42-45
1509-8117
1899-4741
Pojawia się w:
Polish Journal of Chemical Technology
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
CO Oxidation Properties Of Selective Dissoluted Metallic Glass Composites
Utlenianie wybranych rozcieńczonych kompozytów szkieł metalicznych
Autorzy:
Kim, S. Y.
Lee, M. H.
Kim, T. S.
Kim, B. S.
Powiązania:
https://bibliotekanauki.pl/articles/355092.pdf
Data publikacji:
2015
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
CO oxidation
metallic glasses
porous metal
catalyst materials
utlenianie
szkło metaliczne
metale porowate
materiał katalityczny
Opis:
Porous metallic materials have been widely used in many fields including aerospace, atomic energy, electro chemistry and environmental protection. Their unique structures make them very useful as lightweight structural materials, fluid filters, porous electrodes and catalyst supports. In this study, we fabricated Ni-based porous metallic glasses having uniformly dispersed micro meter pores by the sequential processes of ball-milling and chemical dissolution method. We investigated the application of our porous metal supported for Pt catalyst. The oxidation test was performed in an atmosphere of 1% CO and 3% O2. Microstructure observation was performed by using a scanning electron microscope. Oxidation properties and BET (Brunauer, Emmett, and Teller) were analyzed to understand porous structure developments. The results indicated that CO Oxidation reaction was dependent on the specific surface area.
Źródło:
Archives of Metallurgy and Materials; 2015, 60, 2B; 1227-1229
1733-3490
Pojawia się w:
Archives of Metallurgy and Materials
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Amorphous materials in the production of new implants
Autorzy:
Kiljan, A.
Liptakova, T.
Powiązania:
https://bibliotekanauki.pl/articles/111625.pdf
Data publikacji:
2018
Wydawca:
Stowarzyszenie Menedżerów Jakości i Produkcji
Tematy:
amorphous materials
magnesium
bulk metallic glasses
implants
corrosion tests
materiały amorficzne
magnez
implant
testy korozyjne
szkła metalowe
Opis:
Amorphous materials based on magnesium are new materials for potential biomedical application, especially for new implants, as they bear resemblance to titanium implants. Mg66Zn30Ca4 alloy has specific properties, especially mechanical and corrosive, therefore, it has biomedical application as its properties are better than that of other materials. The following paper describes amorphous alloy based on magnesium, properties and shows how to produce amorphous samples of Mg66Zn30Ca4.
Źródło:
Production Engineering Archives; 2018, 18; 50-53
2353-5156
2353-7779
Pojawia się w:
Production Engineering Archives
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Separacja niemetalicznych frakcji zmieszanych odpadów komunalnych
Abscheidung von nichtmetallischen Fraktionen aus gemischten Kommunalabfällen
Autorzy:
Ligus, G.
Powiązania:
https://bibliotekanauki.pl/articles/392282.pdf
Data publikacji:
2012
Wydawca:
Sieć Badawcza Łukasiewicz - Instytut Ceramiki i Materiałów Budowlanych
Tematy:
odpad komunalny
gospodarka odpadami
sortowanie odpadów
separator
frakcja niemetaliczna
odzysk surowców
segregacja automatyczna
municipal waste
waste management
waste sorting
non-metallic fraction
raw-materials recovery
automatic segregation
Opis:
W artykule przedstawiono klasyfikację mechanicznych i ręcznych systemów segregacji niemetalicznych frakcji zmieszanych odpadów komunalnych. Omówiono możliwości doboru urządzeń i linii technologicznych, z uwzględnieniem dostosowania techniki separacji do składu morfologicznego zarówno surowego, jak i pozbawionego frakcji metalicznej strumienia dpadów. Scharakteryzowano główne zasady tworzenia koncepcji zakładu zagospodarowania odpadów, gwarantujące poprzez wysoki współczynnik odzysku surowców efektywne funkcjonowanie gospodarki odpadami na terenie gminy lub związku gmin. W artykule przytoczono również przykład dobrej praktyki gospodarowania odpadami w gminie, opartej na technologii automatycznej stacji segregacji odpadów.
In der Schrift wird die Klassifizierung von mechanischen und manuellen Systemen der Segregation von nichtmetallischen Fraktionen aus gemischten Kommunalabfällen, dargestellt. Es werden die Möglichkeiten der Zusammenstellung von Einrichtungen und technologischen Linien, unter Berücksichtigung der Anpassung von Abscheidungstechnik zur morphologischer Zusammensetzung des rohen, so wie auch des, von metallischen Bestandteilen befreiten, Abfallflusses. Die hauptsächlichen Grundsätze der Aufbaukonzeption eines Bewirtschaftungswerks für Abfälle, das dank eines hohen Rückgewinnungskoeffizient von Rohstoffen, eine funktionierende Abfallwirtschaft, in der Gemeinde oder im Gemeindebund, garantiert – wurde charakterisiert. Im Artikel wurde auch ein Beispiel guter Abfallwirtschafspraxis in der Gemeinde vorgestellt, die auf der Technologie der automatischen Separation von Abfällen, beruht.
Źródło:
Prace Instytutu Ceramiki i Materiałów Budowlanych; 2012, R. 5, nr 10, 10; 57-79
1899-3230
Pojawia się w:
Prace Instytutu Ceramiki i Materiałów Budowlanych
Dostawca treści:
Biblioteka Nauki
Artykuł
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