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Evaluation of defects in aluminum piston castings by using ultrasonics and computer tomography

机译:利用超声波和计算机断层扫描技术评估铝活塞铸件中的缺陷

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Pistons used in automobile engines are made of aluminum alloy; and endurance of high pressure and high temperature is required. Recently, high strength pistons are needed to cope with the increase of pressure and temperature in the engine cylinder. A high strength piston is possible when the piston casting has little or no casting defects, such as micro-pores and cracks. Generally the defects can be evaluated by non-destructive testing (NDT), and the most efficient ways for evaluation are using ultrasonics and computer tomography. In the present study, two NDT methods were compared and evaluated to investigate the defects in the aluminum piston castings. Artificial defects were machined by using very small drill bits with diameters 1, 0.5, 0.3, 0.2 and 0.1 mm. The defects were investigated by using an ultrasonic tester and a computer tomography system. Defects smaller than 0.3 mm may not be found by using the ultrasonic test, but the defects may be found by using the computer tomography system. The investigation conditions for detecting small defects and the scanning time for in-line defect analysis are discussed in the present study.
机译:汽车发动机中使用的活塞由铝合金制成;并且需要耐高压高温。最近,需要高强度的活塞来应对发动机气缸中压力和温度的增加。当活塞铸件具有很少或没有铸件缺陷(例如微孔和裂纹)时,可以使用高强度活塞。通常,可以通过无损检测(NDT)评估缺陷,最有效的评估方法是使用超声波和计算机断层扫描。在本研究中,比较和评估了两种无损检测方法,以研究铝活塞铸件中的缺陷。通过使用直径为1、0.5、0.3、0.2和0.1 mm的非常小的钻头加工人造缺陷。通过使用超声波测试仪和计算机断层扫描系统对缺陷进行了研究。小于0.3毫米的缺陷可能无法通过超声测试发现,但缺陷可能会通过计算机断层扫描系统发现。本研究讨论了检测小缺陷的研究条件和在线缺陷分析的扫描时间。

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