Zhiyu He 1Guo Jia 1,†Fan Zhang 1Xiuguang Huang 1,2[ ... ]Sizu Fu 1,2
Author Affiliations
Abstract
1 Shanghai Institute of Laser Plasma, CAEP, Shanghai 201800, China
2 IFSA Collaborative Innovation Center, Shanghai Jiao Tong University, Shanghai 200240, China
3 Institute of Applied Physics and Computational Mathematics, Beijing 100094, China
Although the streaked optical pyrometer (SOP) system has been widely adopted in shock temperature measurements, its reliability has always been of concern. Here, two calibrated Planckian radiators with different color temperatures were used to calibrate and verify the SOP system by comparing the two calibration standards using both multi-channel and single-channel methods. A high-color-temperature standard lamp and a multi-channel filter were specifically designed for the measurement system. To verify the reliability of the SOP system, the relative deviation between the measured data and the standard value of less than 5% was calibrated out, which demonstrates the reliability of the SOP system. Furthermore, a method to analyze the uncertainty and sensitivity of the SOP system is proposed. A series of laser-induced shock experiments were conducted at the ‘Shenguang-II’ laser facility to verify the reliability of the SOP system for temperature measurements at tens of thousands of kelvin. The measured temperature of the quartz in our experiments agreed fairly well with previous works, which serves as evidence for the reliability of the SOP system.
laser-induced shock waves shock temperature measurement streaked optical pyrometer 
High Power Laser Science and Engineering
2019, 7(3): 03000e49
作者单位
摘要
1 华中科技大学机械科学与工程学院, 湖北 武汉 430074
2 武汉光电国家实验室(筹), 湖北 武汉 430074
3 北京航空制造工程研究所, 北京 100024
针对传统微泵结构复杂、制备困难等不足,提出了一种新型的基于激光冲击波力学效应的微泵驱动方法,使用该方法设计的微泵结构简单、易于制造、成本低,有利于微型化及与微机电系统(MEMS)集成。通过研究激光冲击波的力学模型,设计了无阀型微泵,并计算出其耦合模态。验证了该驱动方法的可行性;通过流固耦合仿真研究了激光的频率、占空比、功率密度、光斑直径等参数对微泵流量的影响,并进一步分析了流量的稳定性。研究结果表明,功率密度和光斑直径是影响流量的主要因素,占空比为0.6时微泵流量最大,微泵稳定工作后各脉冲流量相差不超过5%。
光学制造 激光冲击波驱动 微泵 流固耦合 激光参数 
中国激光
2011, 38(4): 0403002
作者单位
摘要
1 中国科学技术大学力学系, 合肥 230026
2 国防科学技术大学应用物理系, 长沙 410073
3 中国科学技术大学强激光实验室, 合肥 230026
利用自行研制的PVDF压电传感器研究了高功率密度激光冲击过程中有机玻璃约束窗口对激光冲击波压力的影响,实验表明有机玻璃(PMMA)约束层可大幅度提高冲击波压力和冲击波持续时间。
激光冲击波 有机玻璃约束层 增压技术 
中国激光
1997, 24(2): 118

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