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The Advantage of Sensor Sealing Laser Welding
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作者 YAN Yezhi XU yu 《光机电信息》 2007年第5期47-47,共1页
Laser Welding Inevitably Applied in Sensor Production Certain kinds of sensors such as pressure sensor, temperature sensor, optic-electronic sensor etc. utilize welding seal according to different application environm... Laser Welding Inevitably Applied in Sensor Production Certain kinds of sensors such as pressure sensor, temperature sensor, optic-electronic sensor etc. utilize welding seal according to different application environment. With precision components and IC which is isolated by inert gas inside, these sensors should be sealed and able to resist the pressure. So the welding process must avoid distortion and harm to the components and IC. 展开更多
关键词 传感器 封装 激光焊接 应用前景
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Experimental Analysis of Microscale Laser Shock Processing on Metallic Material Using Excimer Laser 被引量:2
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作者 Zhigang Che Liangcai Xiong +2 位作者 Tielin Shi Huayang Cheng Likun Yang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2009年第6期829-834,共6页
Microscale laser shock processing (μLSP), also known as laser shock processing in microscale, is a technique that uses microscale focused laser beam to induce high pressure plasma and generates plastic deformation ... Microscale laser shock processing (μLSP), also known as laser shock processing in microscale, is a technique that uses microscale focused laser beam to induce high pressure plasma and generates plastic deformation and compressive residual stress in target materials, thus improves fatigue or stress corrosion cracking resistance of MEMS (Micro Electromechanical Systems) devices made of such a material. Many works have been reported about the research and experiment for μLSP. But the diameters of 50-200 μm were used at the first time for this field, which was useful for treating micro-device components with larger area and curved surface. The excimer laser was used firstly on μLSP for shorter wavelength than that of used in previous researches. The determination method of laser spot size at micro-level spatial resolution was presented. Under these conditions, plastic deformation, the stress analysis and microhardness with different pulse number, pulse energy and pulse spacing were investigated. Especially the residual stress distribution with depth treated by #LSP, was first investigated. Experiment results showed that the material performance was improved remarkably after μLSP. 展开更多
关键词 μLSP Plastic deformation Residual stress Micro-hardness Laser spot size
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