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Generation and characterization of T40/A5754 interfaces with lasers

机译:T40 / A5754与激光器的接口的生成和表征

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摘要

Laser-induced reactive wetting and brazing of T40 titanium with A5754 aluminum alloy with 1.5 mm thickness was carried out in lap-joint configuration, with or without the use of Al5Si filler wire. A 2.4 mm diameter laser spot was positioned on the aluminum side to provoke spreading and wetting of the lower titanium sheet, with relatively low scanning speeds (0.1 to 0.6 m/min). Process conditions did not play a very significant role on mechanical strengths, which were shown to reach 250-300 N/mm on a large range of laser power and scanning speeds. In all cases considered, the fracture during tensile testing occurred next to the TiAl3 interface, but in the aluminum fusion zone. In a second step, we have investigated the interfacial resistance with the LASAT bond strength tester, based upon the generation and propagation of laser-induced shock waves. This allowed us estimating a uniaxial bond strength of 0.68 GPa for the T40/A5754 interface under dynamic loading conditions.
机译:在有或没有使用Al5Si填充焊丝的情况下,以搭接方式对T40钛与厚度为1.5 mm的A5754铝合金进行了激光诱导的反应性润湿和钎焊。将直径为2.4 mm的激光点定位在铝侧,以较低的扫描速度(0.1至0.6 m / min)引起下部钛板的散布和润湿。工艺条件对机械强度的影响不是很重要,机械强度在很大的激光功率和扫描速度范围内可达到250-300 N / mm。在所有考虑的情况下,拉伸试验期间的断裂都发生在TiAl3界面附近,但在铝熔合区。在第二步中,我们基于激光感应冲击波的产生和传播,使用LASAT粘结强度测试仪研究了界面电阻。这使我们可以估计在动态负载条件下T40 / A5754界面的单轴粘结强度为0.68 GPa。

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