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Experimental investigations for a postweld heat treatment on Ti-6Al-4V titanium welds with a defocused laser beam

机译:具有散煤激光束的Ti-6AL-4V钛焊缝岗位热处理的实验研究

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The purpose of this study is to apply a local heat treatment (LHT), in-situ, on the weld bead, using a defocused Yb: YAG laser beam on a continuous regime, in order to reduce residual stresses and decompose the brittle a' martensite, into a lamellae and fine β phase. Laser scan experiments were firstly performed on a commercially pure titanium grade 2, with a wide range of parameters, in order to provide a 'heat treatment window' without titanium melting. After optimization of the processing parameters, to obtain a sufficient width and depth for the scanning zone, experiments have been performed on a β-treated, fully martensitic Ti-6Al-4V sheet. For each processing experiments, the decomposition of a', was studied based on metallographic cross sections. A local heating with a minimum energy density at 700 J.cm~(-2), has a sufficient effect to destabilize a', while for an energy density at 1000 J.cm~(-2), a diffusional transformation take place, with the formation of Widmanstatten microstructure. Finally, these optimized conditions were applied on a full penetration Ti-6Al-4V welds. The results of the LHT will be described in terms of the microstructural changes observed in the welded zone and hardness evolution.
机译:本研究的目的是使用散焦的Yb:YAG激光束在连续的方案上施加局部热处理(LHT),原位,以减少残余应力并分解脆性A'马氏体,进入薄片和细β相。首先在商业上纯钛等级2上进行激光扫描实验,具有宽范围的参数,以便在没有钛熔化的情况下提供“热处理窗口”。在优化处理参数之后,为了获得足够的宽度和扫描区的深度,已经在β-处理的全马氏体Ti-6Al-4V片上进行实验。对于每个处理实验,基于金相横截面研究A'的分解。局部加热具有最小能量密度为700J.CM〜(-2),具有足够的效果来破坏A',而在1000J.CM〜(-2)下的能量密度,延伸变换发生,随着WidmanStatten微观结构的形成。最后,将这些优化的条件应用于完全穿透的Ti-6AL-4V焊缝。将根据焊接区和硬度进化中观察到的微观结构变化来描述LHT的结果。

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