首页> 外文会议>ASME international mechanical engineering congress and exposition >FINITE ELEMENT ANALYSIS OF WELD AREA IN SPOT BONDING PROCESS TO PREDICT BOND STRENGTH IN TRANSPARENT MATERIALS USING ULTRAFAST LASERS
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FINITE ELEMENT ANALYSIS OF WELD AREA IN SPOT BONDING PROCESS TO PREDICT BOND STRENGTH IN TRANSPARENT MATERIALS USING ULTRAFAST LASERS

机译:基于超快激光的透明材料点焊过程中熔接区的有限元分析以预测粘结强度

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Laser spot bonding is an approach to weld transparent materials at micro level or bonding in/for MEMs devices. This manuscript intends to investigate the dynamics of welding procedure in transparent materials with ultrafast lasers acting as the heat source. Spot bonding takes place when a laser beam creates a molten pool of the two materials to be bonded and subsequently the molten materials interact gel with each other and solidify to create a bond. Thus predicting the correct amount of molten matter is highly important for a reliable bond. Proper understanding of ultrafast laser matter interaction will provide the means to define ultrafast laser parameters for controlled molten volume leading to controlled bonding strength. This study will utilize the non linear breakdown caused by ultrafast lasers in borosilicate glass to determine the temperature profile and estimate the radial weld area. A finite element (FE) model of the system is presented and solved in ANSYS to estimate the weld area in borosilicate glass strips under action of a single ultrafast laser pulse. The effects of the focusing location of the laser beam laser process parameters (energy level focusing lens pulse width) and material properties (optical and thermal absorptivity) will be discussed.
机译:激光点焊是一种在微观水平上焊接透明材料或在MEMs设备中进行粘结的方法。该手稿旨在研究以超快激光作为热源的透明材料中焊接过程的动力学。当激光束产生两种待结合材料的熔池时发生点粘结,随后熔化的材料彼此发生凝胶相互作用并固化以形成粘结。因此,预测熔融物的正确量对于可靠的结合非常重要。对超快激光物质相互作用的正确理解将为定义可控熔体量,导致可控键合强度的超快激光参数提供手段。这项研究将利用硼硅酸盐玻璃中超快激光引起的非线性击穿来确定温度曲线并估算径向焊接面积。提出了系统的有限元(FE)模型,并在ANSYS中对其进行了求解,以估计在单个超快激光脉冲的作用下硼硅酸盐玻璃带中的焊接区域。将讨论激光束激光加工参数(能级聚焦透镜脉冲宽度)和材料特性(光学和热吸收率)的聚焦位置的影响。

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