GH3536高温合金激光粉末床熔合:组织、力学性能及旋流器制造

Chengzhe Yu , Nan Chen , Ruidi Li , Tiechui Yuan , Shisen Huang , Xin Ma , Yi Zhang , Min Huang , Liang Lv , Ruoyu Liu , Yuanyuan Jiang , Xingyan Liu , Duan Lai
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引用次数: 0

摘要

为了制造高质量旋流器零件,研究了扫描策略对激光粉末床熔合制备GH3536镍基高温合金组织和性能的影响。结果表明:在0°、67°、90°和Z67°4种扫描策略中,Z67°(开口角策略为67°的区域)试样强度最高,屈服强度为681 MPa,抗拉强度为837 MPa;由于试样的纵断面在(001)中表现出较高的织构强度,在成形过程中发生了晶体的选择性取向。随着拉伸的进行,试件的塑性变形机制逐渐由滑移为主转变为孪晶为主,在试件变形量达到80%的区域出现了大量的孪晶。增材制造仿真套件:利用Ansys additive对零件在加工过程中的应力和变形进行模拟,位移结果与实验现象一致。根据仿真结果,优化了结构设计,提高了零件的表面质量。结果表明,当悬垂角为45°时,构件的支撑更为合理。
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Selective laser melting of GH3536 superalloy: Microstructure, mechanical properties, and hydrocyclone manufacturing

The effect of scanning strategy on the microstructure and properties of GH3536 Ni-based superalloy prepared by Laser Powder Bed Fusion was investigated, for the purpose of building high quality hydrocyclone part. The results show that the strength of Z67° (a zone with 67° hatch angle strategy) specimen is the highest among the four scanning strategies (0°, 67°, 90°and Z67°), with yield strength and tensile strength of 681 ​MPa and 837 ​MPa, respectively. Selective orientation of crystals occurs during the forming process because the longitudinal section of the specimen exhibits a high texture strength in (001). As the stretching proceeds, the plastic deformation mechanism of the specimen gradually changes from slip to twin-dominated, a substantial amount of twinning is observed in the region where the deformation of the specimen reaches 80%. The additive manufacturing simulation suite: Ansys Additive is used to simulate the stress and deformation of the part during the process, and the displacement results are consistent with the experimental phenomena. According to the simulation results, the structure design is optimized and the surface quality of the part is improved. The results show that the support of the part is more reasonable when the overhang angle is 45°.

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