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Controlling grain size, morphology and texture in additively manufactured 13-titanium alloy with super transus hot isostatic pressing

机译:通过超跨线热等静压控制增材制造的 13 钛合金的晶粒尺寸、形貌和织构

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摘要

Titanium alloys produced by Additive Manufacturing (AM) are often characterised as having coarse columnar grain structures on account of the prevailing thermal conditions at the time of solidification. This work in-vestigates whether thermal post processing treatments above the 13-transus temperature at both standard at-mospheric pressure and 1500 bar pressure (Hot Isostatic Pressing - HIPing) can refine the columnar morphology in the high strength Ti-3Al-8V-6Cr-4Mo-4Zr (Beta-C/ASTM Grade 19) alloy produced by AM. Heat treatment at standard atmospheric pressure was ineffective in modifying the coarse columnar microstructure but HIPing was found to promote new equiaxed grains and significantly refine the grain size by up to 72.5% compared to the as -built component. The strong dominant texture characteristic of the as-built (and heat treated) alloy was weakened and shifted towards with a 5-fold reduction in texture intensity after the HIPing process. EBSD analysis reveals evidence of grain recrystallisation processes including but not limited to discontinuous dynamic recrystallisation (DDRX) which may be associated with pore collapse. Primitive columnar grains were also shown to contain numerous substructures which may have formed through dynamic recovery (DRV).
机译:钛合金生产的添加剂制造(AM)往往是定性为粗柱状晶粒结构的流行的热条件的时候凝固。热后加工治疗上面13-transus温度标准at-mospheric压力和1500条压力(热等静压-髋关节)可以改进高强度的柱状形态Ti-3Al-8V-6Cr-4Mo-4Zr (Beta-C / ASTM年级19)生产的合金。大气压力是修改无效粗糙的柱状组织,但臀部促进新的等轴颗粒和发现显著细化晶粒尺寸了72.5%相比,制造的组件。强烈的占主导地位的纹理的特征竣工(热处理)合金削弱,转向 5倍减少臀部后结构强度的过程。再结晶过程包括但不限于不连续动态重结晶(DDRX)这可能是相关的与孔隙坍塌。也显示包含众多子结构这可能通过动态形成复苏

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