徐志超, 谢锡善, 屈波, 陈国良, Radavich John F. Role of Mg on Structure and Mechanical Properties in Alloy 718[J]. 工程科学学报, 1989, 11(6): 560-567. DOI: 10.13374/j.issn1001-053x.1989.06.028
引用本文: 徐志超, 谢锡善, 屈波, 陈国良, Radavich John F. Role of Mg on Structure and Mechanical Properties in Alloy 718[J]. 工程科学学报, 1989, 11(6): 560-567. DOI: 10.13374/j.issn1001-053x.1989.06.028
Xu Zhichao, Xie Xishan, Qu Bo, Chen Guoliang, Radavich John F. Role of Mg on Structure and Mechanical Properties in Alloy 718[J]. Chinese Journal of Engineering, 1989, 11(6): 560-567. DOI: 10.13374/j.issn1001-053x.1989.06.028
Citation: Xu Zhichao, Xie Xishan, Qu Bo, Chen Guoliang, Radavich John F. Role of Mg on Structure and Mechanical Properties in Alloy 718[J]. Chinese Journal of Engineering, 1989, 11(6): 560-567. DOI: 10.13374/j.issn1001-053x.1989.06.028

Role of Mg on Structure and Mechanical Properties in Alloy 718

Role of Mg on Structure and Mechanical Properties in Alloy 718

  • 摘要: The role of Mg in alloy/718 has been systematically investigated. Mg raises not only high temperature tensile and stress-rupture ductilities but also increases considerably smooth and notch stress-rupture life. Mg containing alloy 718M is free of stress-rupture notch sensitivity. Mg improves creep and fatigue interaction properties (LCF or cyclic stress rupture) at any grain size. The basic role of Mg is equilibrium segregation at grain boundaries which helps to change continuous grain beundary (5-Ni3Nb morphology to discrete globular form which has a retardation effect on intergranular fracture. Mg promotes the change from intergranular to transgranular fracture mode.

     

    Abstract: The role of Mg in alloy/718 has been systematically investigated. Mg raises not only high temperature tensile and stress-rupture ductilities but also increases considerably smooth and notch stress-rupture life. Mg containing alloy 718M is free of stress-rupture notch sensitivity. Mg improves creep and fatigue interaction properties (LCF or cyclic stress rupture) at any grain size. The basic role of Mg is equilibrium segregation at grain boundaries which helps to change continuous grain beundary (5-Ni3Nb morphology to discrete globular form which has a retardation effect on intergranular fracture. Mg promotes the change from intergranular to transgranular fracture mode.

     

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