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The Study on Mechanical Strength of Titanium-Aluminum Dissimilar Butt Joints by Laser Welding-Brazing Process

机译:激光焊接钎焊工艺钛 - 铝不同对接接头机械强度研究

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摘要

Laser welding–brazing of 5A06 aluminum to Ti6Al4V titanium in a butt configuration was carried out to discuss the influences of welding parameters on dissimilar joint properties. The effects of laser offset, welding speed, and laser power on the spreading length of the molten aluminum liquid, interface fracture zone width (IFZW), fracture roughness, intermetallic compounds (IMCs) thickness, and tensile strength were also investigated. The microstructure and fracture of the joint were also studied. The results show that the tensile strength of the joint is not only influenced by the thickness and type of IMCs, but also influenced by the spreading ability of the aluminum liquid, the fracture area broken at the Ti/fusing zone (FZ) interface, and the relative area of the brittle and ductile fracture in FZ. A dissimilar butt joint with an IMC thickness of 2.79 μm was obtained by adjusting the laser offset, welding speed, and laser power to 500 μm, 11 mm/s and 1130 W, respectively. The maximum tensile strength of the joint was up to 183 MPa, which is equivalent to 83% of the tensile strength of the 5A06 aluminum alloy.
机译:采用5A06铝的激光焊接钎焊在对接配置中进行5A06铝钛,以讨论焊接参数对不同关节性能的影响。还研究了激光偏移,焊接速度和激光功率对熔融铝液的扩散长度的影响,还研究了裂缝骨折区域宽度(IFZW),断裂粗糙度,金属间化合物(IMC)厚度和拉伸强度。还研究了关节的微观结构和骨折。结果表明,接头的拉伸强度不仅受IMC的厚度和类型的影响,还影响了铝液的扩散能力,在Ti /定影区(FZ)界面处破裂的裂缝区域和FZ中脆性和韧性骨折的相对区域。通过将激光偏移,焊接速度和激光功率调节至500μm,11mm / s和1130W,可以获得具有2.79μm的IMC厚度为2.79μm的异常对接接头。接头的最大拉伸强度高达183MPa,相当于5a06铝合金拉伸强度的83%。

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