首页> 外文会议>SAE World Congress Experience >Impact Mechanism of Multiple Major Welding Parameters on Mechanical Properties of Laser Brazing Lap Joint of Galvanized Steel for Vehicle
【24h】

Impact Mechanism of Multiple Major Welding Parameters on Mechanical Properties of Laser Brazing Lap Joint of Galvanized Steel for Vehicle

机译:多重焊接参数对车辆镀锌钢激光钎焊液圈力学性能的影响机理

获取原文
获取外文期刊封面目录资料

摘要

In order to research the effect of process parameters (laser power, welding speed, wire-feed speed, spot diameter) on mechanical properties of Zn-coated Steel Laser Brazing Lap Joint for vehicle, the influence of welding parameters on energy input of brazing seam cross section was theoretically analyzed, and then a great number of laser brazing experiments of 0.7mm galvanized steel was carried out. After that, the tensile strength and micro-hardness tests were also done for well-formed joints of galvanized steel formed in the laser brazing. The results show that joints with good mechanical properties and surface morphology can be formed when laser power is in the range of 2500-3200W and the other parameters keep in a specified range. Joint performance significantly reduces when the value of wire-feed speed exceeds 3.0m/min for that a wider brazing seam cross section can’t be formed. And tensile strength of the joint drops steeply when welding speed exceeds 50mm/s, because the solid-liquid surface tension between the brazing filler metal and the base metal increases. When the spot diameter increases within the appropriate range, the decrease of the energy density slows down the cooling rate of the brazing filler metal, which makes the mechanical properties of the brazing seam maintain a good condition. Moreover, under the same welding parameters, the micro-hardness anywhere inside the weld joint is uniform, which testifies the mechanical performance of the brazing seam is safe and stable.
机译:为了研究工艺参数(激光功率,焊接速度,送丝速度,光谱直径)对车辆Zn涂层钢激光钎焊圈接头的力学性能的影响,焊接参数对钎焊接缝能量输入的影响理论上分析横截面,然后进行了大量的激光钎焊试验0.7mm镀锌钢。之后,还可以在激光钎焊中形成的镀锌钢的良好成型接头进行拉伸强度和微硬度试验。结果表明,当激光功率在2500-3200W的范围内时,可以形成具有良好机械性能和表面形态的接头,并且其他参数保持在指定范围内。当导线速度的值超过3.0m / min时,关节性能显着降低,因为不能形成更宽的钎焊缝横截面。当焊接速度超过50mm / s时,关节的拉伸强度急剧下降,因为钎焊金属和基础金属之间的固体液体表面张力增加。当光斑直径在适当的范围内增加时,能量密度的降低减慢了钎焊填充金属的冷却速率,这使得钎焊缝的机械性能保持良好状态。此外,在相同的焊接参数下,焊接接头内部的微硬度是均匀的,这证明了钎焊缝的机械性能是安全和稳定的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号