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Wyświetlanie 1-4 z 4
Tytuł:
Obciążenia podłóg przemysłowych
Loads of industrial floors
Autorzy:
Hajduk, P.
Powiązania:
https://bibliotekanauki.pl/articles/161017.pdf
Data publikacji:
2017
Wydawca:
Polski Związek Inżynierów i Techników Budownictwa
Tematy:
podłoga przemysłowa
obciążenie
obciążenie statyczne
obciążenie dynamiczne
obciążenie montażowe
obciążenie mechaniczne
oddziaływanie chemiczne
obciążenie cieplne
obciążenie skurczowe
industrial floor
load
static load
dynamic load
assembly load
mechanical load
chemical impact
thermal load
shrinkage load
Opis:
Podłogi przemysłowe mają bardzo różne przeznaczenie, dlatego powinny spełniać specjalne wymagania. Płyta nośna musi przenosić duże obciążenia skupione i powierzchniowe pochodzące od ciężkich maszyn, składowanych produktów i poruszających się po niej pojazdów. Oprócz tych obciążeń, w trakcie produkcji, na posadzkę mogą oddziaływać maszyny pracujące dynamicznie, obciążenia od temperatury i skurczu betonu. Wszystkie te obciążenia muszą zostać przejęte bez deformacji, osiadań i zarysowania.
Industrial floors are intended for many different uses, therefore they should meet special requirements. The load plate must carry significant concentrated and surface loads deriving from heavy machinery, stored products and moving vehicles. Apart from these loads, during manufacturing, the flooring may be affected by dynamically working machines, loads resulting from temperature and concrete shrinkage. All these loads need to be carried without deformations, sinking and scratches.
Źródło:
Przegląd Budowlany; 2017, 88, 7-8; 67-76
0033-2038
Pojawia się w:
Przegląd Budowlany
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of effectiveness speed in mechanical properties of AW6060 T66 (PA38) alloy
Autorzy:
Panasiuk, K.
Powiązania:
https://bibliotekanauki.pl/articles/247214.pdf
Data publikacji:
2017
Wydawca:
Instytut Techniczny Wojsk Lotniczych
Tematy:
alloy aluminum
static load
dynamic load
yield strength
strength limit
Opis:
The article examines the effect of the change in the speed of deformation on the mechanical properties of AW 6060 alloy specimens, characterized by high mechanical strength, which is a material used in the shipbuilding industry. The theoretical basis for the influence of load speed on the mechanical properties of materials is presented. Static and dynamic tensile test was conducted on a universal testing machine. Dynamic stretching was performed on samples at 10–1 s–1 – 102 s–1. Done charts and tables showing results. Calculated in accordance with DIN EN ISO 6892-1 2010P total elongation and contraction of the sample. Comparison of the results of the study with the current knowledge of the subject. Material studies have shown that increasing the deformation rate results in an increase in the yield point and tensile strength. On the basis of calculations of the narrowing and elongation of the total sample, the material can be strengthened. The rate of deformation of the materials is favourable for their strengthening by increasing the limit of tensile strength. Given that most of the design is subject to dynamic loads and the aluminum alloy AW 6060 finds extensive use in shipbuilding and beyond, these are satisfactory results.
Źródło:
Journal of KONES; 2017, 24, 4; 219-226
1231-4005
2354-0133
Pojawia się w:
Journal of KONES
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of impact load form on dynamic response of chock-shield support
Autorzy:
Meng, Zhaosheng
Ma, Chen
Xie, Yunyue
Powiązania:
https://bibliotekanauki.pl/articles/27312794.pdf
Data publikacji:
2023
Wydawca:
Polska Akademia Nauk. Polskie Naukowo-Techniczne Towarzystwo Eksploatacyjne PAN
Tematy:
hydraulic support
dynamic load
reliability analysis
mechanical-hydraulic co-simulation
Opis:
Chock-shield support is usually used in undergroud coal mining to protect the roof. However, as the mining depth gets deeper, impact load that came from the roof becomes stronger and more frequent. This causes the support to bear a large number of dynamic loads, and reducing its reliability. To improve the support performance of the chock-shield support, the mixed-kinetic model was established using the mechanical-hydraulic co-simulation method. The load distribution law of the support joint under impact load form different stability forces, impact load amplitude, and impact frequency is discussed. The mechanical-hydraulic cooperative response of the chock-shield support are obtained. The results show that different joints show typical non-uniformity characteristic during the loading process. The proposed mechanical-hydraulic co-simulation method can more accurately obtain the dangerous points of hydraulic support reliability. The results of this study will help to improve the reliability of the chock-shield support.
Źródło:
Eksploatacja i Niezawodność; 2023, 25, 3; art. no. 168316
1507-2711
Pojawia się w:
Eksploatacja i Niezawodność
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Wplyw wlasciwosci mechanicznych ziarna pszenicy na rozklad obciazenia w zbiorniku
Load distribution in a model bin as influenced by mechanical properties of wheat grain
Autorzy:
Horabik, J
Powiązania:
https://bibliotekanauki.pl/articles/1628324.pdf
Data publikacji:
1994
Wydawca:
Polska Akademia Nauk. Instytut Agrofizyki PAN
Tematy:
agrofizyka
pszenica
ziarno
materialy sypkie
wlasciwosci mechaniczne
badania modelowe
naprezenia
obciazenia statyczne
obciazenia dynamiczne
rozklad obciazen
zbiorniki cylindryczne
anizotropia
agrophysics
wheat
grain
granular material
mechanical property
model research
stress
static load
dynamic load
load distribution
cylindrical bin
anisotropy
Opis:
To describe mechanical behaviour of a granular material it is indispensable to have parameters such as the coefficient of friction on a bin wall, the angle of internal friction and the bulk density and the k-value in Janssen's equation. The values of these parameters depend on many known and unknown factors. In the case of plant granular solids indisputable is the role of moisture content of grain, vertical pressure and sliding velocity. The purpose of this study was to determine the influence of mechanical properties of wheat grain on wall and bottom load distribution in a model grain bin. A series of tests involving eight filling methods, eccentric discharge from five different locations of a bin orifice and three bin wall surfaces were conducted on a laboratory scale cylindrical bin 0.61 m in diameter and 2.44 m high. The wall and flat floor of the bin were supported independently on three load cells so that load distributions could be isolated. Static and dynamic wall and bottom loads were found to be influenced by the filling method. Shower filling produced lower static load of the smooth wall as compared to central filling and higher static load of corrugated and rough walls. The experiments showed a significant influence of grain orientation on load distribution. Variable angle of internal friction within the Janssen differential element can explain the non-uniform load distribution obtained. The horizontal bending moments exerted on the wall and floor of the bin during eccentric discharge were found to decrease with an increase in the bin wall friction coefficient and were influenced significantly by the orifice eccentricity ratio, with the maximum moment occurring at ER equal to 0.667. The horizontal pressure distribution around the circumference of the bin wall depends on the height from the floor. Near the floor of the bin the horizontal pressure was larger on the side of the bin opposite the discharge orifice, while for locations higher above the floor, the horizontal pressure was larger on the side nearest the discharge orifice. As the ratio of the grain height to the bin diameter decreased below approximately 1 a change in the direction of the resultant friction force on the bin wall from a normal downward direction to an upward direction was observed. The change in direction of the resultant tangent force originates from the combination of the downward friction force of flowing grain and the upward friction force of the grain contained within the dead zone of the bin. Moisture content of grain influences its compressibility, friction against the bin wall, height of the dead zone and, in consequence, the upward movement of grains in the dead zone of the flat bottom bin during discharge.
Źródło:
Acta Agrophysica; 1994, 01; 71
1234-4125
Pojawia się w:
Acta Agrophysica
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-4 z 4

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