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TC17 titanium alloy laser melting deposition repair process and properties

机译:TC17钛合金激光熔融沉积修复工艺及性能

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摘要

Due to the high manufacturing cost of titanium compressor blisks, aero engine repairing process research has important engineering significance and economic value. TC17 titanium alloy is a rich beta stable element dual alpha+beta phase alloy whose nominal composition is Ti-5Al-2Sn-2Zr-4Mo-4Cr. It has high mechanical strength, good fracture toughness, high hardenability and a wide forging-temperature range. Through a surface response experiment with different laser powers, scanning speeds and powder feeding speeds, the coaxial powder feeding laser melting deposition repair process is studied for the surface circular groove defects. In this paper, the tensile properties, relative density, microhardness, elemental composition, internal defects and microstructure of the laser-repaired TC17 forging plate are analyzed. The results show that the laser melting deposition process could realize the form restoration of groove defect; tensile strength and elongation could reach 1100 MPa and 10%, which could reach 91-98% that of original TC17 wrought material; with the optimal parameters (1000 W-25 V-8 mm/s), the microhardness of the additive zone, the heat-affected zone and base material is evenly distributed at 370-390 HV500. The element content difference between the additive zone and base material is less than +/- 0.15%. Due to the existence of the pores 10 mu m in diameter, the relative density could reach 99%, which is mainly inversely proportional to the powder feeding speed. The repaired zone is typically columnar and dendrite crystal, and the 0.5-1.5 mm-deep heat-affected zone in the groove interface is coarse equiaxial crystal. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于钛合金压缩机叶盘的高制造成本,航空发动机维修工艺研究具有重要的工程意义和经济价值。 TC17钛合金是一种富含β稳定元素的双α+β相合金,其标称成分为Ti-5Al-2Sn-2Zr-4Mo-4Cr。它具有较高的机械强度,良好的断裂韧性,较高的淬透性和较宽的锻造温度范围。通过不同激光功率,扫描速度和送粉速度的表面响应实验,研究了同轴送粉激光熔化沉积修复过程中表面圆形凹槽的缺陷。本文分析了激光修复TC17锻造板的拉伸性能,相对密度,显微硬度,元素组成,内部缺陷和显微组织。结果表明,激光熔敷工艺可以实现沟槽缺陷的形态恢复。抗拉强度和伸长率可达1100 MPa和10%,可达到原始TC17锻造材料的91-98%。在最佳参数(1000 W-25 V-8 mm / s)下,添加剂区,热影响区和基材的显微硬度在370-390 HV500上均匀分布。添加剂区域和基材之间的元素含量差异小于+/- 0.15%。由于存在直径为10微米的孔,相对密度可以达到99%,这主要与送粉速度成反比。修复区通常是柱状和树枝状晶体,凹槽界面中0.5-1.5 mm深的热影响区是粗等轴晶体。 (C)2016 Elsevier Ltd.保留所有权利。

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