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Wyszukujesz frazę "concrete compressive strength" wg kryterium: Temat


Tytuł:
Assessment of Fly Ash from Thermal Treatment of Sewage Sludge According to the Applicable Standards
Autorzy:
Rutkowska, Gabriela
Powiązania:
https://bibliotekanauki.pl/articles/24201787.pdf
Data publikacji:
2023
Wydawca:
Polskie Towarzystwo Inżynierii Ekologicznej
Tematy:
fly ash
sewage sludge
physical and chemical properties
concrete
compressive strength
heavy metals
Opis:
The restrictions on carbon dioxide emissions introduced by the European Union encourage experimental work on new generation materials containing smaller amounts of clinker. Currently, silica fly ash from the combustion of hard coal is widely used in cement and concrete technology in Europe and in Poland. Their wide application is mainly determined by their chemical and phase composition, especially pozzolanic activity, their high fineness, similar to cement. The aim of the research was to assess the properties of fly ash from thermal treatment of sewage sludge in terms of use in concrete technology in relation to EN 450-1, ASTM-C618-03 and ASTM C379-65T. The obtained test results confirm that the tested material has a different physicochemical composition and does not meet the requirements related to the use of ash in the production of concrete. In addition, the research showed the possibility of producing ordinary concrete, modified with fly ash from thermal treatment of sewage sludge. The average compressive strength for concrete containing 15% of ash from Cracow was set at 48.1 MPa and 49.2 MPa after 28 and 56 days of maturation, for ash from Warsaw at 42.0 MPa and 45.1 MPa, and for ash from Łódź at 36.2 MPa and 36.2 MPa. The determined concentrations of heavy metals are below the maximum values to be met when discharging waste water into the ground or water, the leaching limits required for accepting inert waste for disposal and for substances particularly harmful to the aquatic environment. On this basis, it was found that the migration of heavy metals from concretes with ash addition to the aquatic environment is insignificant and should not be a significant problem.
Źródło:
Journal of Ecological Engineering; 2023, 24, 3; 20--34
2299-8993
Pojawia się w:
Journal of Ecological Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Comparative analysis of natural nanosilica versus commercial nanosilica on compressive strength and durability of high-performance concrete
Autorzy:
Tjahjani, A.R. Indra
Fulazzaky, Mohamad Ali
Jonbi, Jonbi
Tinumbia, Nuryani
Meutia, Wita
Suraedi, Daral
Ranna, Prima
Powiązania:
https://bibliotekanauki.pl/articles/27312142.pdf
Data publikacji:
2023
Wydawca:
Polska Akademia Nauk. Czasopisma i Monografie PAN
Tematy:
nanokrzemionka
materiał naturalny
materiał komercyjny
wytrzymałość na ściskanie
trwałość
beton wysokiej wytrzymałości
materiał ekologiczny
natural material
commercial material
nanosilika
compressive strength
durability
high performance concrete
eco-friendly material
Opis:
This study provides a comparative analysis of natural nanosilica (NSn), which is an extract of natural silica sand processed into nanosilica with commercial nanosilica (NSc) derived from semiconductor industrial waste, in 80 MPa high performance concrete (HPC). The percentage of using nanosilica is (3%, 5%, 10%, 15%) by weight of cement used directly and combined with 5% silica fume. Analysis was carried out through compressive strength test, durability through permeability test, rapid chloride penetration test (RCPT), and microstructure test through scanning electron microscopy (SEM). The results of the analysis show that natural nanosilica is equivalent to commercial nanosilica, in applications it is better to use silica fume incorporation. The optimum percentage of using NSn10% and (SF) 5%, while 5% NSc and 5% SF, in these proportions shows the best compressive strength and durability. It’s just that the use of natural nanosilika is 5% more than commercial nanosilika. The benefit of this research is that natural materials such as silica sand with high SiO2 content, can be processed into nanosilica as an advanced material, which can be used as an eco-friendly construction material.
Źródło:
Archives of Civil Engineering; 2023, 69, 3; 49--63
1230-2945
Pojawia się w:
Archives of Civil Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Effects of incorporating granite powder in the mechanical properties of concrete
Autorzy:
Muñoz Pérez, Socrates Pedro
Atoche Zamora, Jorge Jr.
Powiązania:
https://bibliotekanauki.pl/articles/36061575.pdf
Data publikacji:
2023
Wydawca:
Szkoła Główna Gospodarstwa Wiejskiego w Warszawie. Wydawnictwo Szkoły Głównej Gospodarstwa Wiejskiego w Warszawie
Tematy:
concrete
granite powder
compressive strength
flexural strength
workability
Opis:
This study analyzes the effects of the incorporation of the granite powder (GP) as a partial replacement of the sand in the concrete in percentages of 10%, 15%, 20% and 30% to carry out a mix design of 210 kg·cm–2. Seeking to find an optimal proportion to increase its mechanical properties where the geotechnical characteristics of the aggregates were identified, workability, temperature, beams and concrete specimens were elaborated. The results of bending and compression tests were compared after 7, 14 and 28 days from setting between the standard concrete and the concrete incorporated with the GP. It is concluded that the optimal result was at 20% GP with 268.6 kg·cm–2, where the compressive strength increases by 13%, while its flexural property rupture modulus of 35 kg·cm–2 and workability are in an optimal range according to the stipulated parameters, thus allowing an important application for this waste in the construction industry, therefore contributing to recycling, environmental quality and the development of the usage of new materials.
Źródło:
Scientific Review Engineering and Environmental Sciences; 2023, 32, 1; 18-33
1732-9353
Pojawia się w:
Scientific Review Engineering and Environmental Sciences
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of ground waste glass addition on concrete prepared with their participation properties
Autorzy:
Jeleniewicz, Katarzyna
Rutkowska, Gabriela
Żółtowski, Mariusz
Kula, Dorota
Powiązania:
https://bibliotekanauki.pl/articles/29521052.pdf
Data publikacji:
2023
Wydawca:
Akademia Morska w Szczecinie. Wydawnictwo AMSz
Tematy:
sustainable development
glass waste
concrete
properties
frost resistance
compressive strength
Opis:
Caring for the environment, in accordance with the principles of sustainable development, as well as the increase in the standard of living of society, introduces the need to conduct proper waste management. Construction is an industry with great potential for the management of glass waste as part of material recycling. The construction sector is characterized by high material consumption, with a limited amount of natural resources, meaning that research is constantly being performed on the possibility of replacing them with other common ingredients. A feature of the building materials industry is also the pursuit of continuous improvement of the properties of manufactured materials. The paper presents the research results on the impact of the partial replacement of Portland cement and aggregate with glass waste on strength parameters and frost resistance. For the purpose of experimental work, a concrete mix based on the C20/25 standard concrete with CEM I 42.5R Portland cement, in which from 0 to 20% of the cement or aggregate weight is replaced with glass waste (i.e., glass flour and glass cullet), is designed. In the test range, the glass flour slightly affected the deterioration of the compressive strength, while the glass cullet had no effect on the compressive strength after 56 days of maturation. Moreover, the addition of glass flour increases the bending strength, while the addition of glass cullet maintains a comparable bending strength compared to the reference concrete. The obtained concretes are frost-resistant concrete F150.
Źródło:
Zeszyty Naukowe Akademii Morskiej w Szczecinie; 2023, 73 (145); 46-53
1733-8670
2392-0378
Pojawia się w:
Zeszyty Naukowe Akademii Morskiej w Szczecinie
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Performance of self-compacting concrete cast in hot weather conditions
Autorzy:
Khalil, Hossam S.
Abd Elhameid, Mohamed W.
Badawy, Amal A.
Powiązania:
https://bibliotekanauki.pl/articles/36065966.pdf
Data publikacji:
2023
Wydawca:
Szkoła Główna Gospodarstwa Wiejskiego w Warszawie. Wydawnictwo Szkoły Głównej Gospodarstwa Wiejskiego w Warszawie
Tematy:
self-compacting concrete
rheological properties
compressive strength
splitting tension
silica fume
fly ash
hot weather
casting
retarder
Opis:
This work focused on how self-compacting concrete (SCC) performs in situ in hot weather conditions at an ambient temperature of about 35°C. Tests for the rheological properties and compressive and splitting tensile strength aspects were carried out. The results of SCC mix ingredients on the rheological and hardened features of SCC mix were studied. Variations in the amount of portland cement content (CC), water to cement ratio (w/c), coarse to fine aggregate ratio (C : F), chemical admixture ratio, and pozzolanic admixture ratio were considered. Optimum values were obtained for these ingredients, which satisfied the SCC rheological characteristics and gave a 28-day compressive strength of 42 MPa, and 52 MPa after 28 days and 56 days, respectively. These optimum constituent values were 450 kg·m–3 of cement, 0.45 water cementitious ratio, and a coarse to fine material ratio of 1 : 0.8, a high range superplasticizer of 2%, and a mineral admixture of either 5% silica fume or 25% fly ash as a substitute for a similar amount cement.
Źródło:
Scientific Review Engineering and Environmental Sciences; 2023, 32, 3; 284-302
1732-9353
Pojawia się w:
Scientific Review Engineering and Environmental Sciences
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Comparative assessment of commonly used concrete damage plasticity material parameters
Autorzy:
Al-Rifaie, Hasan
Mohammed, Darbaz
Powiązania:
https://bibliotekanauki.pl/articles/38884391.pdf
Data publikacji:
2022
Wydawca:
Instytut Podstawowych Problemów Techniki PAN
Tematy:
concrete damage plasticity
compressive strength
three-point flexural test
numerical simulation
Abaqus
Opis:
The non-homogeneous and non-linear mechanical behaviour of concrete complicates the numerical simulations of its corresponding material model. The concrete damaged plasticity (CDP) model is one of the most popular constitutive models for concrete. State-of-the-art CDP material parameters are introduced in Abaqus documentation [1], Jankowiak and Łodygowski [2], and Hafezolghorani et al. [3]. Accordingly, this paper presents a novel comparative study of these commonly-used concrete CDP parameters by assessing the response of plain concrete specimens under quasi-static loading conditions. The research conducts standard laboratory tests: compressive strength test of a concrete cube and three-point flexural test of a plain concrete beam. Sophisticated non-linear computational models are built using Abaqus/CAE and analysed using Abaqus/Explicit solver. The results discuss and compare deformations, damage patterns, reaction forces, compressive strength, tensile stress and modulus of rapture. The thorough study concludes that choosing CDP parameters is case-dependant and should be selected carefully.
Źródło:
Engineering Transactions; 2022, 70, 2; 157-181
0867-888X
Pojawia się w:
Engineering Transactions
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Durability of hybrid fiber reinforced concrete at various environmental media
Autorzy:
Elhawary, Eslam Ibrahim Nasr
Elsafoury, Ashraf Hassan
Ahmad, Seleem Saleh Elsayed
Powiązania:
https://bibliotekanauki.pl/articles/35555212.pdf
Data publikacji:
2022
Wydawca:
Szkoła Główna Gospodarstwa Wiejskiego w Warszawie. Wydawnictwo Szkoły Głównej Gospodarstwa Wiejskiego w Warszawie
Tematy:
durability
hybrid fiber concrete
steel fiber
polypropylene fibre
compressive strength
splitting tensile strength
flexural strength
Opis:
Fiber’s addition to concrete mixture attracts researchers to determine the effect of fiber type on durability properties of hybrid performance concrete. In the present work, steel and polypropylene fibers are used in hybrid form in the experimental program. The objective of this paper is to investigate the mechanical properties of hybrid fiber reinforced concrete subjected to four various media: air, water, sodium chloride, and magnesium sulphate with a 7% concentration. The results showed that using hybrid fibers which consist of 1% steel fiber and 0.3% polypropylene fiber improved the compressive strength, splitting tensile strength, and flexural strength for different media for up to 360 days.
Źródło:
Scientific Review Engineering and Environmental Sciences; 2022, 31, 2; 88-100
1732-9353
Pojawia się w:
Scientific Review Engineering and Environmental Sciences
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Feasibility study of palm oil boiler ash (POBA) as a partial replacement of sand in foamed concrete
Autorzy:
Mohamed Yousuff, Mohamed Khatif Tawaf
Sharipudin, Siti Shahidah
Mohammad, Shahrul Nizam
Roslan, Azmi
Michael, Zeno
Shahrul Azhar, Ilya Izyan
Zainal Abidin, Nurrul Amilin
Powiązania:
https://bibliotekanauki.pl/articles/35547210.pdf
Data publikacji:
2022
Wydawca:
Szkoła Główna Gospodarstwa Wiejskiego w Warszawie. Wydawnictwo Szkoły Głównej Gospodarstwa Wiejskiego w Warszawie
Tematy:
foamed concrete
compressive strength
water absorption
sand replacement
palm oil boiler ash
POBA
Opis:
A study was conducted to explore the effect of palm oil boiler ash (POBA) on foamed concrete by varying the percentage of POBA over sand quantities (0, 4, 8 and 12%). This paper primarily discusses the water absorption test, uniaxial compressive strength, and dry density findings. It indicates that substituting sand with POBA greatly enhances the strength of foamed concrete. When the quantity of POBA was raised up to 12% throughout all curing times, the compressive strength steadily increased in the range of 4.34–13.50 N·mm–2. Furthermore, the dry density of foamed concrete was shown to be directly related to the fraction of POBA in the mixture. The dry density of foamed concrete increases as the amount of POBA increases. Despite this, water absorption shown that increasing POBA increases water absorption percentage in foamed concrete from 7.4 to 10.4%. This is due to the fact that a composition with a high POBA percentage will generate more pores than a mixture with a low POBA percentage.
Źródło:
Scientific Review Engineering and Environmental Sciences; 2022, 31, 1; 3-13
1732-9353
Pojawia się w:
Scientific Review Engineering and Environmental Sciences
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of micro synthetic fibers confinement on properties of lightweight foamed concrete
Autorzy:
Mydin, Md Azree Othuman
Powiązania:
https://bibliotekanauki.pl/articles/2174053.pdf
Data publikacji:
2022
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
pianobeton
kurczenie się
porowatość
absorpcja wody
wytrzymałość na ściskanie
wytrzymałość na zginanie
mikrowłókno syntetyczne
foamed concrete
shrinkage
porosity
water absorption
compressive strength
flexural strength
micro synthetic fiber
Opis:
In this investigation, the confinement effects of micro synthetic fibers on lightweight foamed concrete (LFC) were examined. The parameters evaluated were porosity, water absorption, shrinkage, compressive strength, flexural strength and tensile strength. Three densities were cast which were 600 kg/m3, 1100 kg/m3, and 1600 kg/m3. Besides, the number of layers (1 to 3 layers) of micro synthetic fibers was also being examined. Based on the result obtained, the porosity improved by 8.0% to 16.3%, 13.8% to 25.6%, and 9.3% to 24.5% for the LFC with densities of 600 kg/m3, 1100 kg/m3, and 1600 kg/m3 confined with 1 layer, 2 layers, and 3 layers of micro synthetic fibers, respectively. Besides, for the water absorption test, the enhancements were 6.9% to 15.6%, 20.0 to 27.1%, and 12.2 to 29.6% for the respective densities and number of layers of micro synthetic fibers employed, while the drying shrinkage improved by 48.5% to 76.8%, 57.4% to 72.1%, and 43.2 % to 68.2% for the respective densities and number of layers of micro synthetic fibers employed. For the strength properties, a confinement with 3 layers of micro synthetic fibers showed significant results, where enhancements of 153% (600 kg/m3), 97% (1100 kg/m3), and 102% (1600 kg/m3) were obtained for the compression strength; 372% (600 kg/m3), 258% (1100 kg/m3), and 332% (1600 kg/m3) for the bending strength; and 507% (600 kg/m3), 343% (1100 kg/m3), and 332% (1600 kg/m3) for the splitting tensile strength, respectively, compared to the control LFC.
Źródło:
Archives of Civil Engineering; 2022, 68, 3; 411--428
1230-2945
Pojawia się w:
Archives of Civil Engineering
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Self-compacting concrete strengthening efficiency investigation using recycled steel waste as fibres
Autorzy:
Hussein, Ola Ahmed
Abbas, Aamer Najim
Powiązania:
https://bibliotekanauki.pl/articles/36058998.pdf
Data publikacji:
2022
Wydawca:
Szkoła Główna Gospodarstwa Wiejskiego w Warszawie. Wydawnictwo Szkoły Głównej Gospodarstwa Wiejskiego w Warszawie
Tematy:
self-compacting concrete
waste steel fibre
compressive strength
recycling material
splitting tensile strength
adding recycled material
Opis:
Steel recycling saves energy and time, and is more environmentally friendly. It can help rid the environment of huge amounts of scrap vehicles and huge structures, as well as reducing the mining operations that destroy the natural environment. In this investigation, the steel scrap effect on the mechanical properties of concrete was investigated, in addition to investigating the variation in mechanical properties with increased concrete age. Three concrete mixes were studied: one without steel waste as a control, one with 1% steel waste by volume of concrete, and one with 1.5% steel waste by volume of concrete. The results show that adding waste steel to the concrete improved the compressive strength as well as the tensile strength, where a mixture which contains 1% of steel waste had an increase in strength of up to 12% and 23% by day 28 for compressive strength, and tensile strength sequentially in comparison to the reference mix. Furthermore, the results show that there was a significant increase in splitting tensile strength, at 29% on day 28 for a mix of 1.5% steel waste as compared to the reference concrete mix. The best improvement in compressive strength over time was obtained when using 1% steel waste. The best improvement in tensile strength over time was obtained when using 1.5% of steel waste. In both cases, the amount of the improvement was better than the models without steel waste, which gives us confidence in giving recommendations for conducting more in-depth studies to achieve the maximum advantage.
Źródło:
Scientific Review Engineering and Environmental Sciences; 2022, 31, 4; 249-258
1732-9353
Pojawia się w:
Scientific Review Engineering and Environmental Sciences
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Assessment of the concrete strength used in structures, using the destructive method
Ocena wytrzymałości betonu stosowanego w konstrukcjach, przy zastosowaniu metody niszczącej
Autorzy:
Michałowska-Maziejuk, Dorota
Goszczyńska, Barbara
Powiązania:
https://bibliotekanauki.pl/articles/1403634.pdf
Data publikacji:
2021
Wydawca:
Politechnika Lubelska. Wydawnictwo Politechniki Lubelskiej
Tematy:
concrete
testing machine
concrete compressive strength
destructive method
water-cement ratio
beton
maszyna testująca
wytrzymałość betonu na ściskanie
metoda niszcząca
współczynnik wodno-cementowy
Opis:
This paper presents the analysis of the results of research on concrete compressive strength on cubic samples, in the early stage of its curing (after 7, 14, and 28 days). The analysis considers the variable water-cement ratio. Statistical and strength parameters were assessed, estimating the quality of the obtained concrete at the same time. Verification of the expected C25/30 concrete grade was carried out from the recipe provided by the prefabrication plant. Then, the grammage of individual components was adjusted to obtain the grade of concrete assumed by the authors. The article estimates the concrete grade based on strength parameters in three stages of concrete curing. The concrete was then compared with the concrete class calculated based on standard procedures (EC2 procedures), which could be reached after 28 days. The paper also provides an overview of the most used methods of testing concrete compressive strength.
W artykule przedstawiono analizę wyników uzyskanych z badania wytrzymałości betonu na ściskanie na próbkach sześciennych we wczesnej fazie jego dojrzewania (po 7, 14 i 28 dniach), z uwzględnieniem zmieniającej się wartości stosunku wodno-cementowego. Dokonano oceny parametrów zarówno statystycznych jak i wytrzymałościowych, szacując przy tym jakość produkcji otrzymanego betonu. Przeprowadzono weryfikację oczekiwanej klasy betonu C25/30, z udostępnionej przez zakład prefabrykacji receptury, a następnie zmieniono gramaturę poszczególnych jej składników w celu uzyskania założonej przez autorów klasy betonu równej C20/25. W artykule oszacowano klasę betonu na podstawie parametrów wytrzymałościowych w trzech stadiach czasowych i porównano ją z wyznaczoną według przepisów normowych wartością, która mogłaby zostać osiągnięta po 28 dniach. Otrzymane wyniki badań porównano z wyznaczonymi zgodnie z normą Eurokod 2 wartościami wytrzymałości, które mogłaby zostać osiągnięte po 28 dniach i oszacowaną na tej podstawie klasą betonu. W pracy dodatkowo przedstawiono przegląd najczęściej stosowanych metod badań wytrzymałości betonu na ściskanie.
Źródło:
Budownictwo i Architektura; 2021, 20, 2; 5-14
1899-0665
Pojawia się w:
Budownictwo i Architektura
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Beton zbrojony włóknami recyklingowymi PET z butelek po napojach
Concrete reinforced fibers PET from bottles after drinks
Autorzy:
Szpetulski, Jacek
Stawiski, Bohdan
Powiązania:
https://bibliotekanauki.pl/articles/2055960.pdf
Data publikacji:
2021
Wydawca:
Polski Związek Inżynierów i Techników Budownictwa
Tematy:
włóknobeton
PET
politereftalan etylenu
butelka plastikowa PET
włókno z tworzywa sztucznego
wytrzymałość na ściskanie
wytrzymałość na rozciąganie przy zginaniu
fiber reinforced concrete
polyethylene terephthalate
PET plastic bottle
plastic fbre
compressive strength
bending strength
Opis:
Idea zastąpienia zbrojenia w betonie innym, mniej energochłonnym materiałem jest bardzo kusząca. Od pewnego czasu czynione są próby wzmacniania betonu włóknami z butelek plastikowych PET. W artykule przedstawiono wyniki badania wytrzymałości betonu na ściskanie i zginanie zbrojonego „włóknami” z politereftalanu etylenu PET pozyskanego z butelek po napojach. W poszczególnych seriach betonu długości włókien PET były różne: 32 , 62 i 93 mm. Najkorzystniejsze wyniki uzyskano z włóknami 62 mm. Porównano je z fibrobetonem zbrojonym włóknami polipropylenowymi PP, stalowymi i bez zbrojenia rozproszonego.
The idea of replacing the reinforcement in concrete with another, less energy-consuming material is very tempting. For some time, attempts have been made to strengthen concrete with fibers from PET plastic bottles. The article presents the results of testing the compressive and bending strength of concrete reinforced with „fibers” made of polyethylene terephthalate PET obtained from beverage bottles. In each series of concrete, the lengths of PET fibers were different: 32, 62 and 93 mm. The best results were obtained with 62 mm fibers. They were compared with fibrobeton reinforced with PP polypropylene fibers, steel and without dispersed reinforcement.
Źródło:
Przegląd Budowlany; 2021, 92, 11-12; 126--128
0033-2038
Pojawia się w:
Przegląd Budowlany
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Beton zbrojony włóknami recyklingowymi PET z butelek po napojach
Concrete reinforced fibers PET from bottles after drinks
Autorzy:
Szpetulski, Jacek
Stawiski, Bohdan
Powiązania:
https://bibliotekanauki.pl/articles/2055999.pdf
Data publikacji:
2021
Wydawca:
Polski Związek Inżynierów i Techników Budownictwa
Tematy:
fibrobeton
PET
politereftalan etylenu
butelka plastikowa PET
włókno z tworzywa sztucznego
wytrzymałość na ściskanie
wytrzymałość na rozciąganie przy zginaniu
fiber reinforced concrete
polyethylene terephthalate
PET plastic bottle
plastic fbre
compressive strength
bending strength
Opis:
Idea zastąpienia zbrojenia w betonie innym, mniej energochłonnym materiałem jest bardzo kusząca. Od pewnego czasu czynione są próby wzmacniania betonu włóknami z butelek plastikowych PET. W artykule przedstawiono wyniki badania wytrzymałości betonu na ściskanie i zginanie zbrojonego „włóknami” z politereftalanu etylenu PET pozyskanego z butelek po napojach. W poszczególnych seriach betonu długości włókien PET były różne: 32 , 62 i 93 mm. Najkorzystniejsze wyniki uzyskano z włóknami 62 mm. Porównano je z fibrobetonem zbrojonym włóknami polipropylenowymi PP, stalowymi i bez zbrojenia rozproszonego.
The idea of replacing the reinforcement in concrete with another, less energy-consuming material is very tempting. For some time, attempts have been made to strengthen concrete with fibers from PET plastic bottles. The article presents the results of testing the compressive and bending strength of concrete reinforced with „fibers” made of polyethylene terephthalate PET obtained from beverage bottles. In each series of concrete, the lengths of PET fibers were different: 32, 62 and 93 mm. The best results were obtained with 62 mm fibers. They were compared with fibrobeton reinforced with PP polypropylene fibers, steel and without dispersed reinforcement.
Źródło:
Przegląd Budowlany; 2021, 92, 11-12; 126--128
0033-2038
Pojawia się w:
Przegląd Budowlany
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Comparative Analysis of Physical-Mechanical Properties of Natural and Recycled Aggregate Concretes
Autorzy:
Sadowska-Buraczewska, Barbara
Kujawska, Justyna
Powiązania:
https://bibliotekanauki.pl/articles/2024050.pdf
Data publikacji:
2021
Wydawca:
Stowarzyszenie Inżynierów i Techników Mechaników Polskich
Tematy:
sustainable development
compressive strength
tensile strength
recycled aggregate concrete
Opis:
Research on the use of construction and demolition waste as recycled aggregate for the production of new concrete has confirmed that they are environmentally friendly and constitute an alternative method of waste management. However, contrary to conventional concrete, no large applications of concrete made with recycled concrete have been made and there is still the literature studies of recycled aggregate properties are different, which indicates the need for further research on the properties of cements from waste. This paper presents and compares the results of a laboratory study on the properties of ordinary concrete (BZ), high-strength concrete (BWW), recycled aggregate concrete (REC). The tensile and compressive strength, modulus of elasticity of these concentrates were marked. The research results proved that the compressive strength of the concrete with recycled aggregate, compared with high-performance concrete, is much lower, but only slightly lower than for ordinary concrete. In turn, the tensile strength of the concrete with recycled aggregate is lower than that of high-performance concrete and ordinary concrete. These values, in the case of the compressive strength are as follows: REC – 52MPa; BWW – 68MPa; BZ – 25MPa, whereas for the tensile strength, they reach: REC – 4 MPa, BWW – 6 MPa, BZ – 5.1 MPa. Statistical analysis showed that the given parameters of the analysed concretes are indeed statistically different. Obtained results indicate that recycled aggregate may be aggregate of standard value and good mechanical properties, even better than of ordinary concrete. The application of recycled aggregate is considered to be a new approach in balanced construction and a superb solution to protect the environment.
Źródło:
Advances in Science and Technology. Research Journal; 2021, 15, 2; 18-29
2299-8624
Pojawia się w:
Advances in Science and Technology. Research Journal
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Cost-Benefit Analysis of Using Recycled Coarse Aggregate In Plain and Fiber Reinforced Concrete
Autorzy:
Awchat, Ganesh Deoraoji
Powiązania:
https://bibliotekanauki.pl/articles/2023312.pdf
Data publikacji:
2021
Wydawca:
Stowarzyszenie Inżynierów i Techników Mechaników Polskich
Tematy:
compressive strength
recycled aggregate concrete
natural aggregates concrete
steel fibres
state schedule of rates
Opis:
The tendency of demolition has increased to improve economic gains, functional and structural performance, and unloading expenses due to the inaccessibility of an appropriate site in a nearby area. As a result, effective utilization of construction and demolition waste materials in the form of a Recycled Coarse Aggregate of 20 mm & 10 mm is possible while conserving non-renewable natural resources. Even though recycled coarse aggregate (RCA) is a cost-effective material that provides solutions to solid waste management, it is also viewed as second-rate in terms of its basic properties compared to natural coarse aggregate (NCA). This study attempted to design two mix proportions for natural aggregate concrete (NAC) and recycled aggregate concrete (RAC). RAC supplemented with Hooked Steel Fibers at a rate of 0%, 0.25%, 0.5%, and 0.75% per cubic metre. Compressive strength considered a benefit parameter, whereas the state schedule of rates (SSR), 2020-21, was used to estimate cost. The experimental results discovered that RAC with 0.25% steel fibres(SF) per cubic metre found 7.27% less compressive strength results than NAC in Mix-1 of M25 grade, whereas it is 11.64% less compared to NAC of Mix-2 of M40 grade at 28 days, respectively. This related decrease in compressive strength compared to NAC is within the acceptable limit of Indian Standards. At the same time, cost analysis of RAC with 0.25% steel fibres per cubic metre observed 1.26% and 2.16% more than NAC of M25 & M40. It revealed that 0.25% SF per metre cube in RAC provides an economically viable solution in terms of cost and benefits compared to NAC of a similar mixture.
Źródło:
Advances in Science and Technology. Research Journal; 2021, 15, 3; 233-242
2299-8624
Pojawia się w:
Advances in Science and Technology. Research Journal
Dostawca treści:
Biblioteka Nauki
Artykuł

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