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Design and Finite Element Analysis of Customized Local Road Vehicles (CLRV): The Case for the Tricycle and the Philippine Jeepney

机译:定制本地公路车辆(CLRV)的设计和有限元分析:以三轮车和菲律宾吉普车为例

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Customized local road vehicles (CLRV) in the Philippines have not been tested for crashworthiness and testing of such comes with great amount of resources. These vehicles are used nationwide and creating a baseline for its standardization is a must to ensure safety of the passengers and its cargo. Thereupon, a study on crashworthiness of CLRV structures is imperative. The non-linear finite element analysis (FEA) approach to study crashworthiness was not a popular choice in the past due to technological constraints and the excessive cost it entails in comparison to the other approaches. But with today's technological advancements, FEA modeling and analysis of large-scale structures are processes that can be executed. With that, the FEA Design Center Facility of the Metals Industry Research and Development Center (MIRDC) was able to evaluate the crashworthiness of the CLRV. In this project, CAD and FEA models were created to simulate the actual crash testing used to evaluate its crashworthiness. The CAD and FEA construction are based on available engineering standards and the simulation aims to investigate the crashworthiness of the CLRV. The CAD model was constructed using a 3D scanner and reverse engineering tools such as Geomagic Design X and SIEMENS NX. The FEA model were developed in SIEMENS NX and imported to Pre-Sys VPG, which has set of tools for setting up the crash test simulations.
机译:菲律宾未对本地定制的公路车辆(CLRV)进行防撞性测试,而对其进行测试需要大量资源。这些车辆在全国范围内使用,为确保乘客及其货物的安全,必须为其标准化建立基准。因此,迫切需要对CLRV结构的耐撞性进行研究。非线性有限元分析(FEA)方法用于研究耐撞性在过去并不受欢迎,这是由于技术局限性以及与其他方法相比所产生的过高成本所致。但是随着当今技术的进步,大型结构的FEA建模和分析是可以执行的过程。这样,金属行业研究与发展中心(MIRDC)的FEA设计中心设施就能够评估CLRV的耐撞性。在该项目中,创建了CAD和FEA模型以模拟用于评估其耐撞性的实际碰撞测试。 CAD和FEA构造基于可用的工程标准,并且模拟旨在研究CLRV的耐撞性。 CAD模型是使用3D扫描仪和反向工程工具(例如Geomagic Design X和SIEMENS NX)构建的。 FEA模型是在SIEMENS NX中开发的,并导入到Pre-Sys VPG中,后者具有用于设置碰撞测试仿真的一组工具。

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