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Laser direct joining between stainless steel and polyethylene terephthalate plastic and reliability evaluation of joints

机译:不锈钢与聚对苯二甲酸乙二醇酯塑料之间的激光直接连接及连接的可靠性评估

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摘要

Metals and plastics have been widely used in industrial applications, and joining of a metal to a plastic is necessary and important from a manufacturing viewpoint. Therefore, we have developed laser-assisted metal and plastic (LAMP) joiningas an innovative rapid laser direct joining without adhesives or glues. In this research, the joining between a Type 304 stainless steel plate of 3 mm thickness and a polyethylene terephthalate (PET) plastic sheet of 2 mm thickness was exploited at several travelling speeds with a diode laser beam of line proile at 170 W power. The joints of 30 mm in width possessed extremely strong tensile shear loads of approximately 3000 N at the maximum. Transmission electron microscope photographs of the joints demonstrated that Type 304 and PET were bonded together on the atomic or molecular level through a Cr oxide film of stainless steel. X-ray photoelectron spectroscopy and timc-of-flight secondary ion mass spectrometry analysis indicated the possibility of chemical bonding between hydrocarbon and metal through oxygen. Concerning reliability evaluation for the LAMP joints, some joints could have high shear tensile loads of approximately 3000 N even after heat cycle test and show superior air-tightness in helium leak test. Consequently. it was confirmed that the LAMP joiningof SUS304 and PET plates could produce a sound joint of high strength, nanostructiral binding through the oxide film and fundamental reliability for practical use.
机译:金属和塑料已经广泛地用于工业应用,并且从制造的角度来看,将金属与塑料结合是必要且重要的。因此,我们开发了激光辅助金属和塑料(LAMP)连接,这是一种创新的快速激光直接连接,无需粘合剂或胶水。在这项研究中,使用了170 W功率的线形二极管激光束,以几种移动速度利用了3 mm厚的304型不锈钢板和2 mm厚的聚对苯二甲酸乙二醇酯(PET)塑料板之间的连接。宽度为30 mm的接头最大具有约3000 N的极强拉伸剪切负荷。接头的透射电子显微镜照片表明,304型和PET通过不锈钢的Cr氧化膜在原子或分子水平上结合在一起。 X射线光电子能谱和飞行时间二次离子质谱分析表明,碳氢化合物和金属之间可以通过氧化学键合。关于LAMP接头的可靠性评估,即使在热循环试验之后,某些接头仍可能具有约3000 N的高剪切拉伸载荷,并且在氦气泄漏试验中显示出优异的气密性。所以。可以肯定的是,SUS304和PET板的LAMP连接可以产生牢固的高强度接头,通过氧化膜的纳米结构结合以及实用的基本可靠性。

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