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基于螺旋流道水冷技术的千瓦级包层功率剥离器研究

Study on Kilowatt-Level Cladding Power Stripper Using Spiral Flow Channel Water-Cooling Technology
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摘要 基于螺旋流道水冷技术提出一种新的千瓦级包层功率剥离器结构,并对其散热性能进行了研究。首先,将该结构与传统水冷式包层功率剥离器及热沉吸热式包层功率剥离器对比,验证了其实用性与优越性。其次,通过研究螺旋流道参量,发现热沉初始温度对剥离器的散热性能无明显影响,大直径的螺旋冷却管道及合适的冷却水初始温度将有利于散热。最后,实验发现在优化条件下该剥离器能有效剥离4200W以下的包层功率。在剥离1000W包层功率时,该剥离器温度峰值为300.49K、温度谷值为284.29K、温差为16.2K;同等功率下,相比于上述传统剥离器,其温度峰值最多降低了15.1%,温度谷值最多降低了10.3%,温差最多缩小了73.4%。 In this paper,a new structure of kilowatt-level cladding power stripper is proposed based on spiral flow channel water-cooling technology,and its heat dissipation performance is studied.First,the structure is compared with the traditional water-cooled cladding power stripper and the heat sink endothermic cladding power stripper to verify its practicability and superiority.Second,by studying the parameters of the spiral flow channel,it is found that the initial temperature of the heat sink has no significant effect on the heat dissipation performance of the stripper.The large diameter spiral cooling pipe and the appropriate initial temperature of the cooling water will help heat dissipation.Finally,it is experimentally found that the stripper can effectively strip the cladding power below 4200W under optimized conditions.When stripping 1000 W cladding power,the peak temperature of the striper is 300.49K,the temperature valley is 284.29K,and the temperature difference is 16.2K.Under the same power,compared with the above-mentioned traditional stripper,the peak temperature is reduced by up to 15.1%,the temperature valley is reduced by up to 10.3%,and the temperature difference is reduced by up to 73.4%.
作者 夏情感 肖文波 姜迪友 金鑫 叶国敏 何银水 Xia Qinggan;Xiao Wenbo;Jiang Diyou;Jin Xin;Ye Guomin;He Yinshui(Key Laboratory of Nondestructive Testing,Ministry of Education,Nanchang Hangkong University,Nanchang Jiangxei,330063,China;Key Laboratory of Image Processing&Pattern Recognition in Jiangxi Province,Nanchang Hangkong University,Nanchang,Jiangxi 330063,China;Jiangxi Engineering Laboratory for Optoelectromics Testing Technology,Nanchang,Jiangxei 330063,China;College of Mechanical and Elctrical Engineering,Nanchang University,Nanchang,Jiangei 330031,China)
出处 《激光与光电子学进展》 CSCD 北大核心 2020年第23期218-225,共8页 Laser & Optoelectronics Progress
基金 国家自然科学基金(12064027) 航空科学基金项目(2017ZC56003) 江西省图像处理与模式识别重点实验室开放基金(ET201908119) 江西省研究生创新专项基金(YC2019-S348) 无损检测技术教育部重点实验室开放基金(EW201908442、EW201980090)。
关键词 激光器 光纤激光器 包层功率剥离器 螺旋流道水冷 热效应 优化结构 lasers fiber laser cladding power stripper spiral flow channel water cooling thermal effect structure optimization
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