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Residual Stresses in Aluminium Automotive Blocks

机译:铝制汽车模块中的残余应力

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The working conditions within the combustion chamber of engine blocks forces the use of liners able to resist the pressure and wear caused by reciprocating pistons. Most liners are made from iron alloys and can be either inserted after the block has solidified, or can be cast-in the block. Cast-in liners promote residual stresses in regions such as cylinder bridges. These stresses arise from the differences in the thermal expansion coefficient of iron and aluminium and may promote the failure of the block if high enough. This work describes the procedure followed to measure the residual stresses in aluminium engine blocks with cast-in grey iron liners by means of extensometric measurements. The trials were conducted in blocks of 1-4 and V-8 configuration that were either in the as-cast or heat treated condition. It was found that the stresses can be higher than 150 MPa in tension, depending on the geometry and size of the piece. Similar analyses were carried out in blocks that have pressed-in liners, which resulted to have compressive stresses. It is concluded that these analyses can provide for an early advice when changes take place in design, processing or material.
机译:发动机缸体燃烧室内的工作条件迫使使用衬套,该衬套能够抵抗活塞往复运动引起的压力和磨损。大多数衬里是由铁合金制成的,可以在块固化后插入,也可以铸入块中。铸造衬里会增加诸如圆柱桥等区域的残余应力。这些应力是由铁和铝的热膨胀系数的差异引起的,如果足够高,则可能会导致砌块发生故障。这项工作描述了通过引伸测量法测量带有灰铸铁衬里的铝制发动机缸体中残余应力的程序。试验以1-4和V-8构型的块进行,这些块处于铸态或热处理状态。已发现,取决于零件的几何形状和尺寸,应力在拉力方面可能会高于150 MPa。在带有压入式衬套的砌块中进行了类似的分析,这导致了压应力的产生。结论是,当设计,加工或材料发生变化时,这些分析可以提供早期建议。

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