晶粒取向对激光选区熔化GH3536合金力学性能的影响

    Effect of Grain Orientation on Mechanical Properties of Laser Selective Melting GH3536 Alloy

    • 摘要: 为了研究晶粒取向对沉积态GH3536合金力学性能的影响,采用激光选区熔化技术制备了GH3536合金,利用扫描电镜、电子背散射衍射和拉伸试验等对沉积态GH3536合金的显微组织、晶粒取向和常温拉伸性能进行表征。结果表明:在沉积态GH3536合金中,不同方向熔池轮廓线形貌具有显著差异,在熔池内部形成等轴及柱状细小晶粒。当层转角为0°时,在水平方向截面中形成<100>晶粒取向,在垂直方向截面中形成<110>晶粒取向。<100>取向的晶粒增加导致试样抗拉强度提升,伸长率降低;而<110>取向的晶粒增加导致试样抗拉强度降低,伸长率提升。

       

      Abstract: To investigate the effect of grain orientation on the mechanical properties of deposited GH3536 alloy, GH3536 alloy was prepared via laser selective melting. The microstructure, grain orientation, and room temperature tensile properties of the deposited GH3536 alloy were characterized using scanning electron microscopy, electron backscatter diffraction and tensile test. The results show that in the deposited GH3536 alloy, the morphology of the molten pool boundaries differs significantly in different directions, the equiaxed and columnar fine grains are formed inside the molten pool. When the layer rotation angle is 0°, <100> grain orientation is dominant in the horizontal cross-section, and <110> grain orientation is dominant in the vertical cross-section. The enhancement in <100> oriented grains leads to an increase in the ultimate tensile strength of the specimen and a decrease in elongation; while the enhancement in <110> oriented grains lead to a decrease in the tensile strength of the specimen and an increase in elongation.

       

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