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Effect of microstructure on tensile properties of electrospark deposition repaired Ni-superalloy

机译:微观结构对电火花沉积修复镍超合金拉伸性能的影响

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Cavities introduced to Inconel 718 tensile specimens were repaired with the use of electrospark deposition (ESD) and tensile properties of repaired specimens were investigated. Reduced energy input during ESD resulted in a larger number of splat boundaries and greater yield strength recovery during tensile testing. Analysis of the fracture surface showed a trans-splat and inter-splat crack propagation pathway, with splat boundaries exhibiting lower fracture toughness than material within the splats. Changes in crack propagation direction were attributed to grain growth across splat boundaries and brittle secondary phases forming within splats during ESD.
机译:使用电火花沉积(ESD)修复了引入Inconel 718拉伸试样的空腔,并研究了修复试样的拉伸性能。 ESD期间减少的能量输入会导致大量的splat边界,并在拉伸测试期间产生更多的屈服强度。断裂表面的分析显示出跨板间和板间裂纹扩展路径,板间边界比板内材料具有更低的断裂韧性。裂纹扩展方向的变化归因于跨过板边界的晶粒生长以及在ESD过程中板内部形成的脆性次生相。

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