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Fundamental Study on Cavitatit Erosion Using a NiTi Shape Memory Alloy

机译:NiTi形状记忆合金对Cavitatit侵蚀的基础研究

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摘要

In order to clarify the role of slip deformation on cavitation erosion, vibratory cavitation tests were carried out for a NiTi shape memory alloy in martensitic phase and austenitic phase. This alloy deforms plastically by the combination of slip and twinning deformation, and the erosion resistance of NiTi shape memory alloy is 500 to l 000 times higher than that of SUS316 stainless steel. The erosion resistance of austenitic phase is superior to martensitic phase, because the accumulation of slip in the austenitic phase is slower due to the superelasticity than that in the martensitic phase. The martensitic phase test with intermittent shape recovery shows a better resistance without the shape recovery, since the deformation twins produced by cavitation erosion test are eliminated by shape recovery, resulting in the delay of slip accumulation. However, the amount of shape recovery was decreased with test duration. The decreasing rate of shape recovery has a good linear relationship with the volume loss rate. It was concluded that the accumulation of slip deformation corresponds well with the volume Ivss rate.
机译:为了阐明滑动变形对空化腐蚀的作用,对马氏体相和奥氏体相的NiTi形状记忆合金进行了振动空化试验。这种合金通过滑移和孪生变形的结合而发生塑性变形,NiTi形状记忆合金的耐蚀性比SUS316不锈钢高500至1000倍。奥氏体相的耐蚀性优于马氏体相,这是因为由于超弹性,奥氏体相中的滑移累积比马氏体相中的滑移积累慢。具有间歇形状恢复的马氏体相试验在没有形状恢复的情况下显示出更好的抵抗力,这是因为由空化腐蚀试验产生的变形孪晶通过形状恢复而被消除,从而导致了滑移累积的延迟。但是,随着测试时间的延长,形状恢复的数量减少了。形状恢复的降低率与体积损失率具有良好的线性关系。结论是,滑移变形的累积与体积Ivss速率非常吻合。

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