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激光选区熔化GH3536镍基高温合金的微观组织和晶体取向
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国家自然科学基金资助(项目号No.51875452;No.51804251)


Microstructure and Crystal Orientation of nickel-based superalloy GH3536 by Selective selective laser melting
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    摘要:

    采用激光选区熔化方法制备了高致密度GH3536镍基高温合金块状试件,分析了激光选区熔化成形GH3536合金显微组织和晶体取向。结果表明:随着激光能量密度的升高,成形试样的致密度先升高后降低,当激光能量密度为180~230J.m-1时,致密度达到99.55%以上;其组织存在着明显的各向异性,垂直于构建方向的微观组织呈“棋盘状”形貌,晶粒大多数为等轴晶(长径比为1.828μm)且得到了细化(dmean=11.226μm),尤其熔池搭接区域晶粒更加细小(5μm以下),而平行于构建方向为“鱼鳞状”形貌,大多数为柱状晶(长径比为2.831μm),晶粒直径较大(dmean=25.964μm)。同时SLM成形GH3536镍基高温合金存在明显的择优取向,横截面上晶粒具有较强的取向< 100 >取向,垂直于构建方向和平行于构建方向均为立方织构{100}<001>。此外SLM凝固成形中晶粒生长对晶粒内晶体取向演变有着显著影响,纵截面变形晶粒内的晶体取向变化不明显,纵截面变形晶粒内的晶体取向变化比较明显,这是由于SLM成形具有极高的温度梯度和快速的冷却速率(105K/s)导致的。

    Abstract:

    High density GH3536 ni-based superalloy block specimens were prepared by laser selective melting method, and the microstructure and crystal orientation of GH3536 alloy were analyzed. The results show that with the increase of laser energy density, the density of the formed sampleSincreasedSatSfirstSandSthenSdecreased, When the laser energy density is 180~230J.m-1, the density reaches over 99.55%. The structure has obvious anisotropy, the microstructure perpendicular to the construction direction presented a checkerboard morphology, and most of the grains were equiaxed (the length-diameter ratio was 1.828μm) and were refined (dmean=11.226μm), In particular, the grain size in the lap area of molten pool is finer (less than 5 m). Parallel to the construction direction was the fish scale morphology, most of which were columnar crystals (the length-diameter ratio was 2.831μm), with a larger grain diameter (dmean=25.964μm). Simultaneously, SLM processed GH3536 nickel-based superalloy has obvious preferential orientation. On the cross section, the grain has a strong orientation < 100 > orientation, which is cubic texture {100}<001> perpendicular to and parallel to the construction direction. In addition, grain growth in SLM solidification has a significant effect on the evolution of crystal orientation in grain, the crystal orientation in the deformed grain of the longitudinal section does not change obviously, while the crystal orientation in the deformed grain of the longitudinal section changes obviously, this is due to the extremely high temperature gradient and rapid cooling rate (105K/s) of SLM.

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宗学文.激光选区熔化GH3536镍基高温合金的微观组织和晶体取向[J].稀有金属材料与工程,2020,49(9):3182~3188.[. Microstructure and Crystal Orientation of nickel-based superalloy GH3536 by Selective selective laser melting[J]. Rare Metal Materials and Engineering,2020,49(9):3182~3188.]
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  • 收稿日期:2020-04-12
  • 最后修改日期:2020-05-18
  • 录用日期:2020-05-19
  • 在线发布日期: 2020-10-15
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