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Process-structure-property relationship of laser-joined thermoplastic metal hybrids

机译:激光加工热塑性金属杂交种的过程 - 结构性质关系

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During the last years, several studies have been conducted to improve the laser-based heat conduction joining of thermoplastic metal hybrids. Most scientists tried to improve the joint quality by a prior surface enlargement of the metal in order to achieve a strong mechanical interlocking. Only a few authors investigated hybrids which consist of merely cleaned and not additionally enlarged metallic specimens. For merely cleaned specimens, Katayama et al. postulated the bubble theory which suggests that small bubbles near the metallic interface are very important for strong joints. The bubble formation leads to a high pressure between thermoplastic and metal so that the thermoplastic melt wets the metallic surface and an anchor effect occurs. Investigations by the author confirm the anchor effect theory, but the bubble theory itself cannot be verified since strong joints can be realized without the formation of bubbles. On the contrary, it seems rather advisable to avoid bubbles because they indicate a thermal decomposition of the plastic. However, there is still no sufficient description of the relationship between process parameters, joint morphology, and resulting joint strength. The main objective of this paper is to point out the process-structure-property relationship of laser-based joined thermoplastic metal hybrids. (C) 2016 Laser Institute of America.
机译:在过去几年中,已经进行了几项研究以改善热塑性金属杂种的基于激光的热传导连接。大多数科学家试图通过先前的金属表面放大来改善关节质量,以实现强大的机械互锁。只有少数作者调查了杂种,该杂种由仅清洁而不是另外放大的金属标本组成。仅仅是清洁的标本,Katayama等。假设气泡理论表明,金属界面附近的小气泡对于强大的关节非常重要。气泡形成导致热塑性和金属之间的高压,使得热塑性熔体润湿金属表面,并且发生锚效果。作者的调查证实了锚效应理论,但不能验证气泡理论本身,因为可以在没有形成气泡的情况下实现强烈的关节。相反,避免气泡似乎是似乎,因为它们表示塑料的热分解。然而,仍然仍然没有足够的处理参数,关节形态和导致的关节强度之间的关系描述。本文的主要目的是指出基于激光的连接热塑性金属杂种的过程结构性质关系。 (c)2016年激光研究所。

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