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Simulation Research on Car Suspension Durability Enhancement Test Based on Virtual Proving Ground

机译:基于虚拟试验场的汽车悬架耐久性试验的仿真研究

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In this paper, a simulation model of flexible virtual proving ground (VPG) for a car was created in view of the shortcomings of long test cycle and high cost of traditional enhancement test for suspension durability at car development stage, with a variety of durability enhanced roads in the Nong'an Proving Ground as inputs. It solved a string of key technological problems regarding VPG applications. In addition, the time-history dynamic stress response of a car suspension system was analyzed, compared with the real vehicle durability test results obtained under the same conditions. The results of the simulation test and the real test are basically identical in terms of the trend of time and frequency domains. Furthermore, it demonstrates the effectiveness of the simulated suspension system's dynamic stress response for the flexible VPG technology, and realized the effective prediction for the suspension system durability in the development process.
机译:针对汽车开发阶段悬架耐久性测试周期长,传统增强测试成本高的缺点,建立了汽车柔性虚拟试验场(VPG)的仿真模型。农安试验场的道路作为输入。它解决了有关VPG应用的一系列关键技术问题。另外,分析了汽车悬架系统的时程动态应力响应,并将其与在相同条件下获得的真实车辆耐久性测试结果进行了比较。就时域和频域的趋势而言,模拟测试和真实测试的结果基本相同。此外,它还演示了仿真悬架系统对动态VPG技术的动态应力响应的有效性,并在开发过程中实现了悬架系统耐久性的有效预测。

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