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Finite element modeling of bolt load retention of die-cast magnesium

机译:压铸镁螺栓荷载保留有限元建模

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The use of die cast magnesium for automobile transmission cases offers promise for reducing weight and improving fuel economy. However, the inferior creep resistance of magnesium alloys at high temperature is of concern since transmission cases are typically assembled and joined by pre-loaded bolts. The stress relaxation of the material could thus adversely impact the sealing of the joint. One means of assessing the structural integrity of magnesium transmission cases is modeling the bolted joint, the topic of this paper. The commercial finite element code, ABAQUS, was used to simulate a well characterized bolt joint sample. The geometry was simulated with axi-symmetric elements with the exact geometry of a M10 screw. Frictional contact between the male and female parts is modeled by using interface elements. Material creep is described by a time hardening power law whose parameters are fit to experimental creep test data. Numerical simulation correlates well with test measurements for magnesium alloys AZ91D. The finite element analysis shows that the contact pressure along the length of the screw is non-uniform. When temperature is initially increased, the load is primarily carried by upper part of the bolt, adjacent to the interface with the head. The contact pressure is more evenly distributed along the length of the screw when creep occurs. This finding leads to the possibility of an optimization of the bolt-load retention by judicious choice of the bolt and flange materials and geometry.
机译:用于汽车传动壳体的压铸镁的使用提供了减轻重量和提高燃油经济性的承诺。然而,高温下镁合金的较差抗蠕变性是关注的,因为传动装置通常通过预装螺栓组装和连接。因此,材料的应力松弛可能会对关节的密封产生不利影响。一种评估镁传动壳体结构完整性的一种方法是将螺栓连接的模拟,本文的主题。商业有限元代码ABAQUS用于模拟良好的螺栓关节样品。用轴对称元素模拟几何形状,具有M10螺钉的确切几何形状。通过使用界面元素建模雄性和母部件之间的摩擦接触。材料蠕变是通过时间硬化电力律描述的,其参数适合实验蠕变测试数据。数值模拟与镁合金AZ91D的测试测量相吻合。有限元分析表明,沿螺杆的长度的接触压力是不均匀的。当温度最初增加时,负载主要由螺栓的上部承载,与头部相邻。当发生蠕变时,接触压力沿着螺钉的长度更均匀地分布。这一发现导致通过明智地选择螺栓和法兰材料和几何形状来优化螺栓载荷保留的可能性。

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