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Crystallographic orientation and temperature effects on the fatigue crack growth rate and resulting fracture surface morphology in PWA1484 single crystal superalloy

机译:晶体学取向和温度对PWA1484单晶高温合金疲劳裂纹扩展速率和断裂表面形态的影响

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This research looked at the effect of crystallographic orientation and temperature on the fatigue crack growth rate and the resulting fracture surface morphology in PWA1484 single crystal superalloy. Two groups of single edge notch tension specimens, one group with controlled secondary orientations and one group with uncontrolled secondary orientation, were tested at temperatures from 649℃ to 982℃ at R-ratios of 0.1 and 0.7. It was found that the effect of temperature on the crack growth rate becomes more pronounced as the crack driving force increases while the secondary orientation and R-ratio effects on the crack growth rate increase with increasing temperature. Two types of crack surface morphology were seen during fractography. The first was a precipitate avoidance (γ' avoidance) morphology that was rolling but still predominantly flat when observed on a larger scale. In <001> primary oriented specimens, this fracture mode tended to follow the precipitate/ matrix faces (microscopically cubic) while macroscopically staying essentially normal to the applied loads. The second mode was a form of cleavage (γ' shearing) and occurred predominantly on octahedral crystallographic planes.
机译:这项研究研究了晶体取向和温度对PWA1484单晶高温合金的疲劳裂纹扩展速率和所产生的断裂表面形态的影响。在649℃至982℃的温度下,在R值分别为0.1和0.7的情况下,测试了两组单边缺口拉伸试样,一组具有受控的次要取向,一组具有不受控制的次要取向。发现随着裂纹驱动力的增加,温度对裂纹扩展速率的影响变得更加明显,而随着温度的升高,次级取向和R比对裂纹扩展速率的影响也随之增加。形貌观察到两种类型的裂纹表面形态。第一个是避免析出物(避免γ'的)形态,但在大范围观察时仍呈扁平状。在<001>原始取向的试样中,这种断裂模式倾向于遵循沉淀物/基体表面(微观上立方),而宏观上基本保持垂直于所施加的载荷。第二种模式是分裂的形式(γ'剪切),主要发生在八面体的晶体学平面上。

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