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Applications of laser welding for the joint of plastic materials

机译:激光焊接在塑料材料接头中的应用

摘要

A pulsed infrared laser source, like the Nd:YAG, welds the irradiated plastic materials by means of a thermal process that gives a direct chemical bond between two layers in close contact each other. The intense photon radiation, of the order of 1010 W/cm2, is capable to modify the polymeric materials inducing a melting process that seals two sheets at their interface. The sealing action occurs between the polymeric layers if one of them, placed in second plane, can absorb the laser light while the other, placed in first plane, is radiation transparent. The polymer filler presence (like carbon nano-structures, iron oxide, silicate,...) is required in order to absorb the laser light and to obtain the joint at the interface with other polymers through an accurate control the filler concentration. The penetration depth of the laser light and the mechanical resistance can be regulated by the absorption power of the polymeric layer. With this aim, the filler amount must be accurately chosen in order to produce a strong joint. In this work we investigated the applications of Nd:YAG laser welding for the polyethylene biomedical joint devices. In particular, we examined the possibility to define the optimal depth of the sealing action by regulating the filler type and amount in different joint geometries.
机译:脉冲红外激光源(如Nd:YAG)通过热处理在两个彼此紧密接触的层之间产生直接化学键合的方式焊接辐照的塑料材料。大约为1010 W / cm2的强光子辐射能够改变聚合材料,从而引发熔化过程,从而在两块薄片的界面处将其密封。如果其中一个放置在第二平面中的聚合物层可以吸收激光,而另一个放置在第一平面中的聚合物是辐射透明的,则在聚合物层之间会发生密封作用。需要聚合物填料的存在(如碳纳米结构,氧化铁,硅酸盐等),以吸收激光并通过精确控制填料浓度在与其他聚合物的界面处获得接缝。激光的穿透深度和机械阻力可以通过聚合物层的吸收能力来调节。为此目的,必须精确地选择填料量以产生牢固的接头。在这项工作中,我们研究了Nd:YAG激光焊接在聚乙烯生物医学关节装置中的应用。特别是,我们研究了通过调节不同接缝几何形状中的填料类型和用量来确定最佳密封作用深度的可能性。

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