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Residual Effects of Metal Forming on Seat Belt Pull Analysis Results

机译:金属成型对安全带拉分析结果的剩余效果

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Automotive industries are emphasizing more and more on occupant safety these days, due to an increase in awareness and demand to achieve high safety standards. They are dependent on simulation tools to predict the performance of subsystems more accurately. The challenges being encountered are designs which are getting more complex and limitations in incorporating all real-life scenarios, such as to include all manufacturing considerations like forming and welding effects. Latest versions of solvers are slowly introducing new options to include these actual scenarios. Ls-Dyna is one of the explicit solvers to introduce these possibilities. The process of including stamping details into crash simulation is already being performed in the automotive industry. However, for seatbelt pull analysis, this has not been explored much. Incorporating stamping effects could be one step further in improving the accuracy of Seatbelt pull analysis and closer to real life test conditions if fully investigated. Stamping alters the material properties and thickness of the body parts while undergoing the forming process during manufacturing, but this effect is generally not considered in simulations. This change might improve or degrade the design of body structure in terms of strength. So the overall effect of incorporating stamping details in the seatbelt pull virtual assessment is still not known, since material properties are enhanced due to effect of strain hardening and thinning of component takes place as well. This paper shall discuss the effect of Stamping on BIP (Body in prime) structure, for assessment of Seatbelt pull analysis, as per FMVSS225 207/210 Regulation. Critical parts in body structure were filtered and different test cases were run, including and excluding stamping details for these parts. Quasi-static simulation was performed and results for three different test cases were analyzed. Overall effect is studied through final results in terms of graphs and tables in this paper.
机译:由于提高了达到高安全标准,汽车行业正在强调越来越多的乘员安全性。它们依赖于模拟工具来更准确地预测子系统的性能。所遇到的挑战是在结合所有现实生活场景时获得更复杂和限制的设计,例如包括形成和焊接效果的所有制造考虑因素。最新版本的求解器正在慢慢引入新选项,包括这些实际情况。 LS-Dyna是引入这些可能性的明确求解器之一。在汽车行业中已经在进行碰撞模拟中的加工细节的过程。然而,对于安全带拉分析,这尚未探讨这一点。如果完全调查,将加压效果还可以进一步提高安全带拉分析和更接近真实寿命试验条件的一步。冲压在制造过程中在经历成型过程的同时改变物体部位的材料特性和厚度,但是在模拟中通常不考虑这种效果。这种变化在力量方面可能改善或降低身体结构的设计。因此,在安全带拉动虚拟评估中纳入冲压细节的整体效果仍未知,因为由于应变硬化的效果和部件的变薄也会增强材料性能。本文应当讨论冲压对BIP(原装)结构的影响,用于评估安全带拉分析,如FMVSS225 207/210调节。过滤身体结构的关键部件,并运行不同的测试用例,包括和排除这些部件的冲压细节。进行了准静态模拟,分析了三种不同测试用例的结果。通过本文的图表和表格的最终结果研究了总体效果。

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