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首页> 外文期刊>Journal of Manufacturing Processes >Investigation the effect of pulsed laser parameters on the temperature distribution and joint interface properties in dissimilar laser joining of austenitic stainless steel 304 and Acrylonitrile Butadiene Styrene
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Investigation the effect of pulsed laser parameters on the temperature distribution and joint interface properties in dissimilar laser joining of austenitic stainless steel 304 and Acrylonitrile Butadiene Styrene

机译:研究脉冲激光参数对奥氏体不锈钢304和丙烯腈-丁二烯-苯乙烯异种激光焊接中温度分布和接头界面性能的影响

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摘要

Direct laser joining of metal to plastic materials is one of the cost effective methods of joining. The demand for laser welding of stainless steels and thermoplastics is going on increase because of having many applications such as automotive, aerospace and aviation industries. This paper presents the experimental investigation of direct laser joining of stainless steel 304 and Acrylonitrile Butadiene Styrene (ABS). The effects of pulsed laser parameters including laser welding speed, focal length, frequency and power on the themperature field and tensile shear load was investigated. The results showed that excessive increase of the joint interface temperature mainly induced by high laser power density results in exiting of the more volume of the molten ABS from the stainless steel melt pool. Also, increasing the laser power density through decreasing the focal length or increasing the laser power led to an increase in the surface temperature, higher beam penetration and high volume of molten ABS. Decreasing the focal length from 5 to 2 mm significantly rose the temperature from 150 to 300 degrees C. By increasing the laser pulse frequency, the number of bobbles at the ABS interface surface remarkably increased where the temperature increased from 120 to 180 degrees C. The X-ray spectroscopy results showed the existence of the polymer elements on the metal surface at the joint interface zone. The tensile shear load clearly increased from 280 to 460 N with augmentation of laser average power from 180 W to 215 W. Applying higher levels of laser power has clearly decreased the tensile shear load due to creating bigger bobbles and more cavities at the adhesive zone.
机译:金属与塑料材料之间的直接激光连接是一种经济高效的连接方法。由于在汽车,航空航天和航空工业中有许多应用,对不锈钢和热塑性塑料进行激光焊接的需求正在不断增加。本文介绍了直接激光连接304不锈钢和丙烯腈丁二烯苯乙烯(ABS)的实验研究。研究了脉冲激光参数,包括激光焊接速度,焦距,频率和功率对它们的温度场和拉伸剪切载荷的影响。结果表明,主要由高激光功率密度引起的接头界面温度的过度升高导致更多体积的熔融ABS从不锈钢熔池中流出。同样,通过减小焦距或增加激光功率来增加激光功率密度,会导致表面温度升高,光束穿透率提高和熔融ABS体积增大。将焦距从5减小到2 mm可以将温度从150升高到300摄氏度。通过增加激光脉冲频率,当温度从120升高到180摄氏度时,ABS界面表面的气泡数量显着增加。 X射线光谱结果表明,在接合界面区域的金属表面上存在聚合物元素。随着激光平均功率从180 W增加到215 W,拉伸剪切载荷明显从280 N增加到460N。施加更高级别的激光功率明显降低了拉伸剪切载荷,这是由于在粘合剂区域产生了更大的气泡和更多的空腔。

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