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RESIDUAL STRESS ON Ti6Al4V HYBRID AND LASER WELDED JOINTS

机译:Ti6Al4V混合动力车和激光焊接接头的残余应力

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Ti6Al4V alloy combines mechanical strength, deformability, excellent fatigue and corrosion resistance and high strength to weight ratio. Furthermore, the mechanical behavior remains excellent at high temperature. Such characteristics make this material attractive for numerous applications (structural, aerospace and naval) because of recent improvements in welding techniques (laser, hybrid laser/MIG) that allow realizing high quality titanium welded joints. However some problems related to the welding, as deteriorated material properties, residual stresses and distortions, need further investigations. This paper presents a detailed study on residual stresses of Ti6Al4V butt plates welded by laser or hybrid laser/MIG process. Residual stresses were measured by hole drilling method using electrical strain gage rosettes bonded at different position, in order to evaluate magnitude and distribution of residual stresses along the cord. Residual stresses curves obtained for each type of joint and each welding technique are presented and discussed in terms of transversal residual stresses. Residual stresses were also measured at surface by means of X-ray diffractometer. The aim of this work is to present experimental data related to welding processes in order to confirm the validity of currently procedures or improve them.
机译:Ti6Al4V合金结合机械强度,可变形性,优异的疲劳和耐腐蚀性和高强度至重量比。此外,机械行为在高温下保持优异。这种特性使这种材料为许多应用(结构,航空航天和海军)具有吸引力,因为最近允许实现高质量钛焊接接头的焊接技术(激光,混合激光/米格)的改进。然而,与焊接有关的一些问题,作为劣化的材料性质,残余应力和扭曲,需要进一步研究。本文介绍了激光或混合激光/ MIG工艺焊接Ti6Al4V对接板的残余应力的详细研究。通过在不同位置粘合的电应变剂玫瑰花的孔钻孔方法测量残余应力,以评估沿着帘线的残余应力的大小和分布。在横向残余应力方面提出和讨论了对每种类型的关节和每个焊接技术获得的残余应力曲线。还通过X射线衍射仪在表面测量残留应力。这项工作的目的是呈现与焊接过程相关的实验数据,以确认目前程序的有效性或改善它们。

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