Case study of testing different materials for seat belt retractor torsion bar by the means of finite element analysis

B. Nituleasa, A. I. Radu, D. Motoc
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Abstract

This paper examines the use of various materials for the force limiter torsion bar found in an automotive seat belt assembly. We have selected the following materials: carbon steel, cast stainless steel, cast low alloy steel and cast aluminium alloy. The primary method used for this study is finite element analysis (FEA) and the use of the named materials on a 3D model of the torsion bar, constructed using the dimensions of a standard part. The 3D models were created with a 3D CAD program and the FEA analysis was carried out with special software. For the input values, the torsion bar was fixed at one corner and a 360 degree rotation shift at the other corner. A fine mesh of 1.5 mm/element was also set to get a more accurate analysis. The results of this study are in the form of stress, strain, safety factor and displacement plots generated by the FEA analysis software showing the difference between the materials. The main outcome of the study is to determine the best overall material to manufacture the part in terms of performance and cost.
用有限元方法对不同材料的安全带伸缩杆进行了实例分析
本文研究了在汽车安全带总成中使用的各种材料的力限制扭力杆。我们选择了以下材料:碳钢,铸造不锈钢,铸造低合金钢和铸造铝合金。本研究使用的主要方法是有限元分析(FEA)和使用命名材料对扭力杆的3D模型,使用标准件的尺寸构建。利用三维CAD程序建立三维模型,利用专用软件进行有限元分析。对于输入值,将扭杆固定在一个角,在另一个角进行360度旋转移位。还设置了1.5 mm/单元的细网格,以获得更准确的分析。本研究的结果以有限元分析软件生成的应力、应变、安全系数和位移图的形式显示了材料之间的差异。研究的主要结果是确定在性能和成本方面制造零件的最佳整体材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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