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Evaluation of fracture toughness and impact toughness of laser rapid manufactured Inconel-625 structures and their co-relation

机译:快速制造的Inconel-625激光结构的断裂韧性和冲击韧性及其相互关系的评估

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The present study involves evaluation of fracture toughness (crack tip opening displacement) and Chapry impact toughness of Inconel 625 structures fabricated by laser based additive manufacturing.The results of fracture toughness are close to those reported for the Inconel 625 weld metal.The nature of the load-time traces of instrumented Charpy impact tests revealed that the alloy Inconel 625 in laser fabricated condition was associated with fully ductile behavior with Charpy-V notch impact energy in the range of 48- 54 J.Stress relieving heat treatment at 950 °C for 1 hour has resulted in marginal improvement in the impact toughness by about 10 %,whereas no clear evidence of such improvement is seen in the CTOD fracture toughness.Fractographic examination of the Chapry specimens and the results of the instrumented impact tests imply that the mechanism of crack growth was propagation controlled under dynamic loading conditions.Dynamic fracture parameters were estimated from the instrumented impact test data and compared with the experimentally evaluated fracture toughness results.
机译:本研究涉及对通过激光增材制造的Inconel 625结构的断裂韧性(裂纹尖端开口位移)和Chapry冲击韧性进行评估,其断裂韧性的结果与Inconel 625焊缝金属的报道结果相近。仪器在夏比冲击试验中的负载时间痕迹表明,在激光加工条件下的Inconel 625合金在48-54 J范围内具有夏比-V缺口冲击能的充分延展性能。在950°C下进行了应力消除热处理1小时导致冲击韧性略微提高了约10%,而CTOD断裂韧性没有明显改善的迹象。Chapry标本的断口检查和仪器化冲击测试的结果暗示了这种机理。在动态载荷条件下控制裂纹扩展的传播。输入冲击试验数据,并与实验评估的断裂韧性结果进行比较。

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