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Reinforced direct bonding of optical materials by femtosecond laser welding

机译:飞秒激光焊接增强光学材料的直接粘合

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摘要

A process for reinforcing a direct bond between optical materials using femtosecond laser welding is presented. As a side benefit, the optical transmission properties of the joined components are shown not to be altered by the joining process. The joints exhibits higher shear breakage loads, yielding a maximum measured joint strength of 5.25 MPa for an applied load of 75 kg in fused silica. The laser sealing of direct bonds between dissimilar materials improves their resistance to thermal shocks. Direct bonds sealed by a circular weld seam can withstand thermal shocks at temperatures at least twice as great as nonreinforced direct bonds. The combination of ultrashort laser welding and direct bonding provides an innovative joining method that benefits from the advantages of both contributing physical processes.
机译:提出了一种使用飞秒激光焊接来增强光学材料之间直接结合的方法。附带的好处是,所连接的组件的光学传输特性显示不会因连接过程而改变。接头表现出较高的剪切断裂载荷,在熔融石英中施加75 kg的载荷时,测得的最大接头强度为5.25 MPa。异种材料之间直接键合的激光密封提高了它们对热冲击的抵抗力。用圆形焊缝密封的直接粘结可以承受的热冲击至少是非增强直接粘结的两倍。超短激光焊接和直接焊接的结合提供了一种创新的焊接方法,该方法得益于两者共同作用的物理过程。

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