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Laser transmission joint between PET and titanium for biomedical application

机译:PET和钛之间的激光传输接头,用于生物医学应用

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摘要

Laser transmission joint between biocompatible, dissimilar materials have the potential for application in biomedical and their encapsulation process. This process may involve photochemical reaction, and alter the chemical compositions of the interface and chemical bonds form at the interface. Understanding the laser joint at material interfaces is essential for the advancement in the laser joining application. This paper is devoted to laser transmission joint between 0.1 mm thick PET films and 0.1 mm thick Titanium. We have found processing conditions for successful joining of titanium with PET using near-infrared diode lasers. Laser joint samples were tested in microtester under tensile loading to determine joint strengths. The joint strength was found to be 65.46-90 MPa. The PET/titanium interfaces thus obtained were studied by X-ray photoelectron spectroscopy (XPS), scanning electron microscopy coupled with energy dispersive spectroscopy (SEM/EDS) and microscopy techniques. The results give evidence for the formation of Ti-C chemical bonds in a sharp interfacial region between the two sides. These chemical bonds are believed to be responsible for the observed mechanical strength of the joints.
机译:生物相容性,异种材料之间的激光传输接头具有在生物医学及其封装过程中应用的潜力。该过程可能涉及光化学反应,并改变界面的化学组成和在界面处形成的化学键。了解材料界面处的激光接头对于激光接头应用的发展至关重要。本文专门研究0.1毫米厚的PET薄膜和0.1毫米厚的钛之间的激光传输接头。我们发现了使用近红外二极管激光器成功将钛与PET结合的加工条件。在拉伸载荷下,在微型测试仪中测试激光接头样品,以确定接头强度。发现接头强度为65.46-90MPa。由此获得的PET /钛界面通过X射线光电子能谱(XPS),扫描电子显微镜结合能量色散光谱(SEM / EDS)和显微镜技术进行研究。结果提供了在两侧之间的尖锐界面区域中形成Ti-C化学键的证据。这些化学键被认为是所观察到的接头机械强度的原因。

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