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The Effect of Electrochemical Machining on the Fatigue Strength of Heat Resistance Alloys

机译:电化学加工对耐热合金疲劳强度的影响

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摘要

Electrochemical Machining (ECM) provides an economical and effective method for machining high strength, heat-resistant materials into complex shapes such as compressor and turbine blades, dies, molds and micro cavities. ECM is performed without physical contact between the tool and the workpiece in contrast to the mechanical machining, and without strong heating in the machining zone in distinction to the methods such as EDM. Therefore, no surface metal layer with mechanical distortion, compressive stresses, cracks, and thermal distortion forms in ECM. ECM is often used even for removing a defective layer, which has been formed in EDM, with the aim to improve the surface integrity. However, sometimes the intergranular attack occurs in ECM. This may reduce the performance of machined parts and lead to the decreasing of fatigue strength.In this paper, the effects of ECM on fatigue strength of heat resistant alloys such as nickel-base alloys and titanium alloys are presented. The problems of the intergranular attack, hydrogen embrittlement and surface roughness as result of ECM parameters are described.
机译:电化学加工(ECM)提供了一种经济有效的方法,可将高强度,耐热性材料加工成复杂的形状,例如压缩机和涡轮叶片,模具,模具和微腔。与机械加工相比,执行ECM时无需在工具和工件之间进行物理接触,并且与EDM等方法不同,在加工区中不会产生强烈的热量。因此,在ECM中不会形成具有机械变形,压应力,裂纹和热变形的表面金属层。为了改善表面完整性,甚至将ECM甚至用于去除在EDM中形成的缺陷层。但是,有时在ECM中发生晶间攻击。这可能会降低加工零件的性能并导致疲劳强度降低。本文提出了ECM对诸如镍基合金和钛合金之类的耐热合金的疲劳强度的影响。描述了由于ECM参数导致的晶间腐蚀,氢脆和表面粗糙度问题。

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