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Design and analysis on thermal adaptive clamping device for PPMgLN crystal used in solid-state laser

机译:固态激光器中PPMgLN晶体热自适应夹持装置的设计与分析

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The quality of clamping device for PPMgLN crystal has a vital influence on the optical property of solid-state laser. It has highly requirements of work stability and environmental adaptation ability, especially the thermal adaptation under high temperature differences. To achieve thermal adaptation, structural stiffness will be unavoidably weakened. How to keep both enough stiffness and thermal adaptation as far as possible is the key design point and also difficult point. In this paper, a kind of flexible thermal release unit which can work permanent under 130±10°C is studied. Thermal compensation principle and flexible thermal release theory are applied. Analysis results indicate that this device can effectively decreased the thermal stress of the crystal from 85MPa to 0.66MPa. The results of the vibration resistance test on the optical axis direction of the crystal indicate that the device can provide at least 5.62N to resistant 57.2g impact vibration and 18.5g impact vibration in the side direction, well satisfied the requirements of ability to resistant 6g impact vibration.
机译:PPMgLN晶体的夹持装置的质量对固态激光器的光学性能有至关重要的影响。它对工作稳定性和环境适应能力有很高的要求,尤其是在高温差下的热适应性。为了实现热适应,不可避免地会削弱结构刚度。如何保持足够的刚度和热适应性是关键设计要点,也是困难点。本文研究了一种可在130±10°C的温度下永久工作的柔性热释放单元。应用了热补偿原理和灵活的热释放理论。分析结果表明,该装置可以有效地将晶体的热应力从85MPa降低到0.66MPa。在晶体的光轴方向上的抗振性测试结果表明,该器件可在侧面方向提供至少5.62N的抗57.2g冲击振动和18.5g冲击振动,很好地满足了对6g的抵抗能力的要求冲击振动。

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