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Evolution of Al-Si-Cu alloy in piston of diesel engine during knock damage

机译:爆震损伤柴油机活塞中Al-Si-Cu合金的演变

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摘要

The failure mechanisms of Al-Si-Cu alloy in piston of diesel engine due to abnormal combustion are not fully understood at present. In this paper, the bench test of the original piston was carried out, which induced knock combustion by monitoring of the pressure signal in the cylinder. The results show that the failure process mainly includes the erosion damage of the original passive film and the subsequent peeling of the surface material which was proved by XRD, optical and scanning electron microscopy, 3D confocal laser scanning microscope and other research methods. During erosion damage, carbon deposit on the crown of piston react with the surface of the aluminum matrix to form brittle phase (Al4C3 and Al2O3). In addition, the residual hardness in the cross section of the damage zone decreases significantly as the ablation level increases.
机译:目前,柴油发动机活塞中Al-Si-Cu合金的破坏机制尚未完全理解。 在本文中,进行了原始活塞的台基试验,通过监测圆柱体中的压力信号来诱导爆震燃烧。 结果表明,故障过程主要包括原始无源膜的侵蚀损坏以及随后通过XRD,光学和扫描电子显微镜,3D共聚焦激光扫描显微镜和其他研究方法证明的表面材料的剥离。 在侵蚀损伤期间,活塞冠上的碳沉积物与铝基基质的表面反应形成脆性相(Al 4C3和Al2O3)。 另外,随着消融水平的增加,损伤区横截面中的残余硬度显着降低。

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