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Utilization of light scattering in transmission laser welding of medical devices

机译:光散射在医疗器械透射激光焊接中的利用

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This paper reports on optimization of material parameters in transmission laser welding of polymers including light absorption, light scattering and the thermal properties of the polymers. A criterion for making an optimized transmission laser weld between a transparent polymer part and an absorbing and scattering polymer part is formulated as a required thickness of the melt-zone in the transparent part with a corresponding minimum-line-energy-for-welding (MLEW). Experimental data of MLEW are presented for a medical device application involving joining polyethylene-octene parts for various concentrations of near-infrared absorber and titanium dioxide light scattering particles. Numerical and analytical models yield good agreement to the experimental data and enable optimization of the transmission laser welding process. By utilization of light scattering, the laser line-energy required for joining two polymer parts can be reduced by a factor up to three, enabling a corresponding reduction of the cycle time in the manufacturing process.
机译:本文报道了聚合物透射激光焊接中材料参数的优化,包括光吸收,光散射和聚合物的热性能。将透明聚合物部件与吸收和散射聚合物部件之间进行最佳透射激光焊接的标准制定为透明部件中熔体区的所需厚度,并具有相应的最小焊接线能量(MLEW) )。给出了MLEW的实验数据,该数据适用于医疗器械应用,其中涉及将聚乙烯辛烯部件连接到各种浓度的近红外吸收剂和二氧化钛光散射颗粒上。数值和分析模型与实验数据吻合良好,可以优化透射激光焊接工艺。通过利用光散射,可以将连接两个聚合物部件所需的激光线能量降低多达三倍,从而可以相应缩短制造过程中的循环时间。

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