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Wyszukujesz frazę "Energy Safety" wg kryterium: Temat


Wyświetlanie 1-4 z 4
Tytuł:
Deceleration and deformation during dynamic load of model longitudinals – real conditions and simulation
Autorzy:
Hadryś, D.
Kubik, A.
Stanik, Z.
Łazarz, B.
Powiązania:
https://bibliotekanauki.pl/articles/198624.pdf
Data publikacji:
2019
Wydawca:
Politechnika Śląska. Wydawnictwo Politechniki Śląskiej
Tematy:
longitudinal
passive safety
impact energy
dynamic load
simulation
podłużna
bezpieczeństwo bierne
energia uderzenia
dynamiczne ładowanie
symulacja
Opis:
The manner and degree of taking over impact energy by the passive safety elements of the vehicle body is the basis for providing conditions for the survival of people using the means of transport (driver and passengers). The elements specially designed for this purpose in the self-supporting body are longitudinals. Their energy-absorbing properties are designed by using a specific shape, by using appropriate connections of their components and by choosing the right material. Determining the degree to which the vehicle (body) ensures safety during collision requires testing. The most complex and expensive tests are the ones carried out on a complete real object (whole vehicle). The solution worth considering is a bench test of individual body elements designed as energy-consuming (for example, longitudinals). In addition, it is also possible to carry out computer simulations in this area. The purpose of this article was to present and compare the results of dynamic studies on model energy-consuming real objects and compare the results obtained this way with the results of computer simulation in the same range. The scope of work was adopted on this basis: passive safety, model energy-absorbing elements of steel self-supporting vehicle body, dynamic tests, computer simulations. For the purpose of this study, a model of vehicle passive safety elements (model longitudinals) was designed for which dynamic tests were carried out on a specially designed test stand (speed of the hammer was up to 9.7 m/s, impact energy was up to 23.6 kJ). This test stand enabled registration of the deceleration during impact and deformation of the tested object. Next, computer simulations were carried out for geometrically and material-identical models. On the basis of the conducted tests, it was found that it is worth considering the replacement of collision tests of the whole vehicle by tests of its individual components. These tests can also be supported by computer simulations.
Źródło:
Zeszyty Naukowe. Transport / Politechnika Śląska; 2019, 102; 53-64
0209-3324
2450-1549
Pojawia się w:
Zeszyty Naukowe. Transport / Politechnika Śląska
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Deceleration and deformation during dynamic loading of model car body parts after post-accident repair
Autorzy:
Hadryś, Damian
Kubik, Andrzej
Stanik, Zbigniew
Powiązania:
https://bibliotekanauki.pl/articles/1841191.pdf
Data publikacji:
2020
Wydawca:
Politechnika Śląska. Wydawnictwo Politechniki Śląskiej
Tematy:
longitudinal model
post-accident repair
passive safety
impact energy
model podłużny
naprawa powypadkowa
bezpieczeństwo bierne
energia uderzenia
Opis:
Absorption of impact energy by the passive safety elements of the vehicle body is the basic feature to ensure conditions of safety for the driver and passengers in transport. The parts especially designed for this objective in the self-supporting car body are longitudinals. Their energy-absorbing features are designed in different ways. Evaluation of the degree to which the vehicle (body) ensures safety during a collision is difficult and expensive. Usually, tests under impact conditions are required. The most advanced and costly are the tests carried out on a complete vehicle (whole real object for tests). Whole vehicle testing can be replaced by testing of individual car body elements (for example longitudinal). The main aim of this article is to present and compare the results of dynamic studies on model energy-consuming objects (new model longitudinals and model longitudinals repaired with welding methods). For the purpose of this study, models of vehicle passive safety elements (model longitudinals) were designed. On the basis of the conducted tests, it was found that it is worth considering the replacement of collision tests of the whole vehicle by tests of its individual components. This can be considered a new approach that is not widely used. Currently, most often, crash tests of entire vehicles are conducted (high costs) or computer simulations are performer (often with unsatisfactory accuracy).
Źródło:
Transport Problems; 2020, 15, 3; 5-16
1896-0596
2300-861X
Pojawia się w:
Transport Problems
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Hydro pneumatic mechanical energy absorber enhancing passive safety of a motor vehicle
Autorzy:
Bogdevičius, Marijonas
Vitkūnas, Rolandas
Powiązania:
https://bibliotekanauki.pl/articles/374543.pdf
Data publikacji:
2019
Wydawca:
Politechnika Śląska. Wydawnictwo Politechniki Śląskiej
Tematy:
vehicle safety
hydro mechanical energy absorber
absorption of kinetic energy
mathematical model
dynamics process
bezpieczeństwo pojazdu
hydro-mechaniczny pochłaniacz energii
absorpcja energii kinetycznej
model matematyczny
proces dynamiczny
Opis:
The purpose of this paper is to describe and analyse a mechanical device designed to enhance the safety of a motor vehicle. The topic is addressed by analysing the method of absorbing kinetic energy during a car collision with an obstacle. The article analyses opportunities to convert motor vehicle’s kinetic energy into another type of energy in the case of collision. For this purpose, various mechanical, hydraulic or pneumatic devices are normally used. Such devices are designed to absorb collision energy and reduce or eliminate its impact on the driver, the passengers or cargo in the motor vehicle. The absorber may be used as an additional element of safety to the passenger and the cargo. The energy absorber described in the present article incorporates hydraulic, pneumatic and mechanical components. The description of the absorber presented here is based on mathematical calculations characterizing mechanical, pneumatic and hydraulic processes in the equipment. The analysis of the developed mechanism employs a special application to calculate major parameters of the motor vehicle and the installed absorber. The article also gives a sensitivity analysis of the effect of the rod length on the decrement of the vehicle's kinetic energy.
Źródło:
Transport Problems; 2019, 14, 2; 5-17
1896-0596
2300-861X
Pojawia się w:
Transport Problems
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Passive safety of high-speed passenger trains at accident collisions on 1520 mm gauge railways
Autorzy:
Sobolevska, M.
Telychko, I.
Powiązania:
https://bibliotekanauki.pl/articles/374085.pdf
Data publikacji:
2017
Wydawca:
Politechnika Śląska. Wydawnictwo Politechniki Śląskiej
Tematy:
passenger trains
accident collisions
passive safety
modular locomotive
driver cab
energy-absorbing devices
mathematical simulation
crash test
pociągi pasażerskie
zderzenie
bezpieczeństwo bierne
lokomotywa modułowa
kabina kierowcy
urządzenie absorbujące energię
symulacja matematyczna
Opis:
The fundamental principles of the passive protection concept of high-speed passenger trains at accident collisions on 1520 mm gauge railways have been developed. The scientific methodology and mathematical models for the analysis of plastic deformation of cab frame elements and energy-absorbing devices (EAD) at an impact have been developed. The cab frame and EAD for a new-generation locomotive have been designed. The EAD prototype crash test has been carried out.
Źródło:
Transport Problems; 2017, 12, 1; 51-62
1896-0596
2300-861X
Pojawia się w:
Transport Problems
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-4 z 4

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