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High Temperature Tensile and Fatigue Crack Propagation Properties of GH3536 Alloy Fabricated by Additive Manufacturing
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Affiliation:

中南大学

Clc Number:

TG146.1

Fund Project:

国家自然科学基金(51901252);湖南省青年自然科学基金(2019JJ50817);国家重点研发计划(2018YFB1106000)

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    Abstract:

    In this work, GH3536 alloy specimens were fabricated by selective laser melting (SLM). The microstructure, high temperature tensile properties and fatigue crack growth rate of the specimens were investigated after hot isostatic pressing and solution treatment. The results show that there are two kinds of equiaxed grains of different sizes in the alloy samples after hot isostatic pressing and solution treatment, and there are continuous lamellar distribution of M23C6 and M6C carbides between the grains. The tensile properties of the alloy specimens decreased continuously with the increase of temperature, and the fracture mode changed from ductile fracture at room temperature to brittle fracture at 900℃. Under different stress ratios, the crack propagation mode of the specimens is transgranular propagation. The increase of stress ratio will accelerate the crack growth rate, which is caused by the inclination of fatigue crack propagating through these grains with low grain boundary misorientation.

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[XiaoLairong, PengZhenwu, CaiZhenyang, ZhaoXiaojun, ZhongQi, YuHuali, WangSen, TanWei. High Temperature Tensile and Fatigue Crack Propagation Properties of GH3536 Alloy Fabricated by Additive Manufacturing[J]. Rare Metal Materials and Engineering,2023,52(3):1015~1021.]
DOI:10.12442/j. issn.1002-185X.20220161

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History
  • Received:March 01,2022
  • Revised:April 18,2022
  • Adopted:April 26,2022
  • Online: April 07,2023
  • Published: March 24,2023