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首页> 外文期刊>Materials transactions >Effect of Surface Treatment and Crystal Orientation on Microstructural Changes in Aluminized Ni-Based Single-Crystal Superalloy
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Effect of Surface Treatment and Crystal Orientation on Microstructural Changes in Aluminized Ni-Based Single-Crystal Superalloy

机译:表面处理和晶体取向对铝化镍基单晶高温合金组织变化的影响

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摘要

The effect of pre-surface treatment and crystal orientation on microstructural changes in the aluminized 4th generation Ni-based single-crystal superalloy TMS-138 was investigated. The substrate superalloy was cut along the {100} and {110} planes on which three kinds of surface finishing, such as grit blasting, mechanical polishing and electro-polishing were conducted prior to the conventional high-activity aluminizing process. A thermal cycling test at 1373 K revealed that heavy deformation of the substrate surface by grit blasting gave rise to the formation of a secondary reaction zone (SRZ) in the vicinity of the interdiffusion zone/substrate interfaces. When the surfaces were finished by electropolishing, voids were formed in the vicinity of the interdiffusion zone/substrate interfaces. It was also found that accelerated formation of SRZ and voids was observed along the (110) directions rather than the (100) directions during the thermal cycling test. The difference in morphological changes of substrates can be related to the residual stress introduced by the surface finishing.
机译:研究了前表面处理和晶体取向对镀铝的第四代镍基单晶高温合金TMS-138的微观结构变化的影响。沿{100}和{110}面切割基底高温合金,在常规的高活性渗铝工艺之前,对它们进行了三种表面处理,例如喷砂,机械抛光和电抛光。在1373 K的热循环测试表明,喷砂处理会使基材表面发生严重变形,从而在互扩散区/基材界面附近形成了次要反应区(SRZ)。当通过电抛光对表面进行抛光时,在互扩散区/衬底界面附近形成了空隙。还发现在热循环测试期间沿(110)方向而不是(100)方向观察到SRZ和空隙的加速形成。基底形态变化的差异可能与表面精加工引入的残余应力有关。

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