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Fatigue of an aluminium cast alloy used in the manufacture of automotive engine blocks

机译:汽车发动机缸体制造中使用的铝铸合金的疲劳

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摘要

The fatigue resistance of an aluminium alloy used for casting engine blocks was studied. The tests were carried out with specimens machined from the bulkheads of V8 engine blocks cast by the low pressure process. The samples were obtained from two different locations in the bulkheads to evaluate the effect of microstructural refining as the material was cut from regions in which the secondary dendrite arm spacing was within two different sizes, namely 30 and 45 μm. The samples were tested either in their as-cast and heat treating conditions in a computer controlled servohydraulic machine. The tests were fully reversible following staircase schedules. The specimens were fatigued to fracture or up to 10~7 cycles. The results show that fatigue cracks nucleate in pores located close to the surface of the specimen. It is concluded that the fatigue resistance is affected by heat treating and microstructural refining. The enhancement in fatigue resistance due to microstructural refining is documented. An analysis was carried out to predict the cycles to failure that the material is able to sustain.
机译:研究了用于铸造发动机缸体的铝合金的抗疲劳性。测试是使用从低压工艺铸造的V8发动机机体舱壁上加工的标本进行的。从隔板的两个不同位置获取样品,以评估在从次枝晶臂间距在两种不同尺寸(即30和45μm)之内的区域切割材料时显微组织细化的效果。在计算机控制的伺服液压机中,在铸态和热处理条件下对样品进行测试。按照楼梯时间表,测试是完全可逆的。样品疲劳断裂或长达10〜7个循环。结果表明,疲劳裂纹在靠近试样表面的孔中成核。可以得出结论,抗疲劳性受热处理和显微组织细化的影响。记录了由于微结构细化而提高的抗疲劳性。进行了分析以预测材料能够承受的失效周期。

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