首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >A procedure for the virtual evaluation of the stress state of mechanical systems and components for the automotive industry: development and experimental validation
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A procedure for the virtual evaluation of the stress state of mechanical systems and components for the automotive industry: development and experimental validation

机译:虚拟评估汽车行业机械系统和组件的应力状态的过程:开发和实验验证

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摘要

This paper is part of the research activity led by the Machine Design Group of the University of Perugia, whose main objective was to set up and develop modelling criteria and methods for dynamic simulation of mechanical systems including flexible components. The activity was finalized to the design of systems using virtual prototyping, driving the modelling accuracy to simulate real functioning conditions of the system. It was therefore possible to extract realistic and directly usable information for fatigue component design using any fatigue damage evaluation criterion. In particular, the present work was developed with the cooperation of the research centre Elasis S.C.p.a. and concerns the set-up of methods and criteria for the development of the virtual prototype of an auto-vehicle, with the aim of simulating the conditions of sign-off tests. This aspect of virtual prototyping has a relevant importance. The sign-off tests of the vehicle, in fact, are standardized and the results obtained constitute one of the main sources of information for product development using physical prototypes. The industry is interested in reducing, as much as possible, the tests on prototypes by developing predictive virtual prototyping methods. The results obtained in this paper show an optimum correspondence between numerical and experimental simulations and demonstrate that time-domain stress/strain numerical recovery in critical points of the chassis is not only feasible but leads to quantitative information directly usable by fatigue damage evaluation methods.
机译:本文是佩鲁贾大学机械设计小组领导的研究活动的一部分,该小组的主要目标是建立和发展建模标准和方法,以对包括柔性组件在内的机械系统进行动态仿真。该活动最终确定为使用虚拟样机的系统设计,从而提高建模精度,以模拟系统的实际功能状况。因此,可以使用任何疲劳损伤评估标准为疲劳部件设计提取现实的,直接可用的信息。特别是在研究中心Elasis S.C.p.a的合作下开发了当前工作。并涉及建立汽车虚拟样机的方法和标准的建立,目的是模拟签核测试的条件。虚拟原型的这一方面具有重要意义。实际上,车辆的签字测试已经标准化,获得的结果构成了使用物理原型进行产品开发的主要信息来源之一。业界有兴趣通过开发预测性虚拟原型方法来尽可能减少对原型的测试。本文获得的结果显示了数值模拟与实验模拟之间的最佳对应关系,并证明了底盘关键点的时域应力/应变数值恢复不仅可行,而且还可以通过疲劳损伤评估方法直接获得定量信息。

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