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Wyszukujesz frazę "modelowanie dynamiczne" wg kryterium: Temat


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Tytuł:
The modelling of transfer influence vehicle from ground surface on objects in placed
Modelowanie oddziaływania pojazdu na minę umieszczoną w gruncie
Autorzy:
Kuczmarski, F.
Bartnicki, A.
Sprawka, P.
Powiązania:
https://bibliotekanauki.pl/articles/241655.pdf
Data publikacji:
2007
Wydawca:
Instytut Techniczny Wojsk Lotniczych
Tematy:
miny
grunt
oddziaływanie dynamiczne i statyczne
modelowanie
mines
soil
static and dynamic loads
modelling
Opis:
This paper describes the initial model of the load-mine-ground relation and presents the preliminary results of a computer simulation. Pressure mine-clearing devices, with discs loosely embedded on the axis of the minesweeping section, (disc mine-clearing devices) cause deformation to the mine 's firing mechanism, which, through the actuation of the fuse, leads to the detonation of the inner-placed explosive. It is assumed that under the load of a mine clearing vehicle, the active part of the mine's cover will be vertically displaced by 6-10 [mm] actuating the fuse of the mine. Although the construction parameters of pressure mine-clearing devices are known, there is a shortage of instructions and data requisite for proper construction and effectiveness examination of dynamic mine-clearing vehicles. In fact, during mine clearing with a dynamic mine-clearing device, the force exerted upon the mine (Ngr) is that of the pressure by the disc (an element of the device). This force differs from a static load and the differences result from the following factors: mine placement type of soil as well as its physical and mechanical properties construction properties of a mine-clearing device pace of mine clearing The issue of influence transferred from the surface of the ground onto the mine placed inside is not present in literature and it constitutes an interesting and important scientific issue in terms of selecting parameters for dynamic minesweeping devices. Similarly to a static load, shock waves propagating within the ground cause its volumetric and structural deformations. The main cause of the differences lies in the briefness of a dynamic load. The gradual growth of static loads (clenching) causes displacement of air and water in the pores and their partial squeezing out. In the case of a static load applied to sandy soils, the process lasts from a few minutes to a few hours, whereas in the case of clay and loessial ones, it extends to a few days, weeks or, sometimes, even months. Under static and dynamic loads, the ground reacts similarly to a three-component centre with a changing-with-time amount of air and water. The action time of a percussive load extends from a few to between ten and twenty milliseconds. Due to air and water inertia, this is too short a period of time to squeeze them out of the pores of the soil, which reacts in a way similar to a three-component centre with a constant amount of air and water. Since in unhydrated soils the main part of the pores' volume consists of air, both static and dynamic loads are accompanied by the absorption of the main stresses by the skeleton. With static loads exerted upon the hydrated soil, both water and air flow loosely out of the pores without the absorption of the loads. In terms of strength the only working element here is the ground's skeleton. In the case of short-lasting, intense loads, water (with a small amount of trapped air) will not flow out simultaneously with the skeleton and, as in the case of mean pressures, it may absorb the load to a larger extent than the skeleton itself. The way the hydrated ground reacts to low pressures - below 1 MPa - is therefore largely determined by the amount of air in the pores. Therefore, the ground with a mine placed inside is a multiphase center with changeable properties - the semi-limited area with mechanical properties changing with each cycle of dynamic influence put upon its surface. Although the issue of the ground pressure measurement is dealt with in various publications, there is a lack of data concerning how it changes under the mechanical influence of moving vehicles and under that of dynamic minesweeping devices - the problem which is essential for a safe minefield crossing. The effectiveness of percussive minesweeping devices can be evaluated upon the basis of the experimental data obtained by means of measuring equipment. The elaboration of a reliable ground-mine relation model for short-time (percussive) influences transferred to the ground surface should accelerate the process of selecting parameters for dynamic mine clearing in terms of obtaining the maximum destructive impact, either directly upon the mine or through the actuation of its firing mechanisms for various types of mines, different depths at which they are buried as well as for various soils with their different properties. The above task is the aim of further works focusing on the subject presented in this paper.
Źródło:
Journal of KONES; 2007, 14, 1; 245-253
1231-4005
2354-0133
Pojawia się w:
Journal of KONES
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Numerical study of tires behaviour
Numeryczne testowanie opon
Autorzy:
Małachowski, J.
Powiązania:
https://bibliotekanauki.pl/articles/246419.pdf
Data publikacji:
2007
Wydawca:
Instytut Techniczny Wojsk Lotniczych
Tematy:
opona
modelowanie
metoda elementów skończonych
testy dynamiczne
tire
modelling
finite element method (FEM)
dynamic tests
Opis:
Głównym celem referatu jest przedstawienie problematyki modelowania opon (kół) jako elementów konstrukcji pojazdów. W pracy pokazane są różne przykłady modelowania tych konstrukcji na przykładzie koła samochodu ciężarowego, koła podwozia samolotu transportowego oraz koła samochodu osobowego. W każdym z tych trzech przypadków przedstawiono trzy różne techniki modelowania, od najprostszego modelu dla pojazdu ciężarowego, aż do najbardziej skomplikowanego modelu koła w przypadku pojazdu osobowego. Wykorzystanie zaawansowanych systemów CAD/CAE pozwoliło na stworzenie w szybkim czasie złożonego modelu koła samochodu osobowego, który stał się bazą do obliczeń numerycznych z zastosowaniem metody elementów skończonych. Przy tworzeniu modelu numerycznego koła położono nacisk na zamodelowanie wewnętrznych części składowych (opasanie, osnowa, drutówka). Jednak szczególną uwagę zwrócono na dokładne odwzorowanie bieżnika. Udało się to dzięki zastosowaniu nowoczesnej techniki ,,reverse engineering". Obliczenia we wszystkich trzech przypadkach przeprowadzono z wykorzystaniem jawnej procedury całkowania zawartej w systemie LS-Dyna.
The main aim of this research was focused on FE tires model development. To reach this goal the real tires were scanned using digitising arm and than transferred to CAD software. The total FE models were created in the MSC.Patran software. The applied technique is called reverse engineering. In this models major wheel elements like belt, tread, side wall, drum and rim were included. In order to realistically simulate the interaction between the tire and surface, internal pressure is appropriately represented by applying airbag option to the wheel model. In such situations the volume is defined as the volume enclosed by a surface. In analysed cases the control volume were modelled by shell elements comprising the airbag fabric material. The area of the control surface which surrounds analysed volume is related to the control volume according to Greens 's theory. To describe other rubber components of the tyre, such as a tyre tread and tyre sides, a material model of rubber was applied. Due to the complex and irregular shape of the tire (tread, rim, side wall) it was decided to use structural elements such solid elements. Numerical analysis was performed using LS-Dyna code. Finally, some results from performed tests are enclosed in this paper.
Źródło:
Journal of KONES; 2007, 14, 3; 377-384
1231-4005
2354-0133
Pojawia się w:
Journal of KONES
Dostawca treści:
Biblioteka Nauki
Artykuł
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