首页|450nm蓝光光源单管合束模块设计研究

450nm蓝光光源单管合束模块设计研究

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近年来,随着新能源汽车及锂电池行业的发展,焊接铜材料的应用需求量越来越大,由于传统的红外激光波段以及铜材料吸收峰值的原因,已经难以处理铜合金等有色金属材料焊接,对 Cu,Al 等材料,就吸收率来说蓝光是红外光的 3-20 倍,蓝光激光焊接实现深熔更好,对比红外激光深熔。针对蓝光激光市场应用需求,采用TO9 封装结构蓝光单管合束技术,用SHARP 5 W 450 nm 大功率蓝光半导体单管,通过 ZEMAX 软件进行原理、光路设计,通过Solidworks对大功率蓝光半导体激光器进行整机结构设计,再通过骏和精机六维实机安装调试等,将20 只功率为5 W条宽 50 μm基于TO9 封装结构蓝光半导体激光器进行合束,光纤输出功率为86。4 W,满足基本的薄片金属铜激光焊接应用。
Design and research of 450 nm blue light source single tube beam module
in recent years,with the development of new energy vehicle and lithium battery industry,the demand for welding copper materials is increasing,Welding of Non-ferrous metal materials such as copper alloys is already dif-ficult to deal with because of the traditional infrared laser band and the peak absorption of copper materials,For Cu,Al and other materials,the absorption rate of blue light is 3-20 times that of infrared light,Deep penetration is achieved by using heat conduction mode in blu-ray laser welding,Compared with the infrared laser deep penetration welding mode,this paper adopts the single-tube blue laser beam combination technology with TO9 package structure.Sharp 5W 450nm high power blue light semiconductor single tube,The principle and optical path are designed by ZEMAX software,Solidworks is used to design the structure of high power blue light semi-conductor laser,Then through the Jun and precision machine six-dimensional real machine installation and debugging,20 blue-ray semi-conductor laser with a power of 5 W and a width of 50 μm based on TO9 packaging structure,Fiber output power of 86.4 W,to meet the basic sheet metal copper laser welding applications.

blue light semi-conductor laserhigh brightnesssingle-tube combination

张志军、陈贺、李文义、董志贵

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辽宁科技学院电气与自动化工程学院,辽宁 本溪 117004

华晨宝马汽车有限公司,沈阳 110000

蓝光半导体激光器 高亮度 单管合束

2024

激光杂志
重庆市光学机械研究所

激光杂志

CSTPCD北大核心
影响因子:0.74
ISSN:0253-2743
年,卷(期):2024.45(12)