首页> 外文会议>Laser Materials Processing Conference ICALEO 2000, Oct 2-5, 2000, Dearborn, MI USA >The Influence of Glass Reinforcement on the Diode Laser Transmission Welding of Nylon
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The Influence of Glass Reinforcement on the Diode Laser Transmission Welding of Nylon

机译:玻璃纤维增​​强对尼龙二极管激光透射焊接的影响

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Diode laser transmission welding is a relatively new type of joining process for polymeric materials. A laser beam in the near infra red region of the spectrum will pass through thermoplastics yet will be absorbed by additives in the material such as pigments, bulk fillers and strengthening media. This work has used a high power direct diode laser to demonstrate the feasibility of joining nylon reinforced with up to 30% glass fibre. The effect of glass reinforcement on transmission has been investigated, as has the effect of processing speed on weld strength. Results indicate that although transmission is significantly reduced by the presence of glass fibre, it is possible to transmit sufficient energy, without causing damage to the transmitting layer, such that uncoloured reinforced nylon can be bonded to an absorbing lower layer; in this case a 30% glass reinforced nylon coloured with 1% carbon black.
机译:二极管激光透射焊接是聚合物材料的一种较新的连接工艺。光谱的近红外区域中的激光束将穿过热塑性塑料,但会被材料中的添加剂(如颜料,填充料和增强介质)吸收。这项工作使用了高功率直接二极管激光器,以证明将高达30%的玻璃纤维增​​强的尼龙连接起来的可行性。已经研究了玻璃增强对传输的影响,以及加工速度对焊接强度的影响。结果表明,尽管玻璃纤维的存在大大降低了透射率,但仍可以传递足够的能量,而不会损坏透射层,从而可以将未着色的增强尼龙粘合到吸收性下层上。在这种情况下,使用30%玻璃纤维增​​强尼龙和1%炭黑上色。

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