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Finite Element Simulation and Validation of Fully Suspended Heavy Duty Commercial Vehicle (HCV) as per AIS029 Pendulum Impact Test

机译:根据AIS029摆锤冲击试验的有限元模拟和完全悬挂重型商用车辆(HCV)的验证

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The safety of the heavy duty commercial vehicle (HCV) occupants in an accident is an imperative task and should be considered during the design and development of cabins. The sufficient cabin survival space must be remained after the accident. The main aim of this study is to develop a Finite Element (FE) model of HCV cabin and validate to the test as per AIS029. The present study also includes the assessment of the energy absorption capabilities of the HCV cab during the pendulum impact test. Initially a detailed 3D FE model of a fully suspended HCV cabin was developed and then pendulum impact test simulation was carried out using LS-Dyna explicit solver. Simulation results were compared with the test results and were found in a great agreement in terms of survival space and overall deformation behavior. The load transfer path was described at the time of pendulum impact. The largest amount of impact energy was absorbed by the frontal region of the cabin. Sufficient survival space was maintained in the FE model as well as in the test after the impact.
机译:沉重的商用车辆(HCV)乘客在事故中的安全性是一个必要的任务,应该在舱室的设计和开发期间考虑。事故发生后必须保持足够的客舱生存空间。本研究的主要目的是开发HCV舱的有限元(FE)模型,并根据AIS029验证测试。本研究还包括在摆锤期间对HCV驾驶室的能量吸收能力进行评估。最初开发了完全悬浮的HCV舱的详细3D FE模型,然后使用LS-DYNA明确求解器进行摆动冲击试验模拟。将仿真结果与测试结果进行比较,并在生存空间和整体变形行为方面以巨大的一致。在摆锤冲击时描述了负载传送路径。大量的撞击能量被舱室的正面区域吸收。在Fe模型中保持足够的存活空间以及在冲击后的测试中。

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