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Linear Resonance Compressor for Stirling-Type Cryocoolers Activated by Piezoelectric Stack-Type Elements

机译:用于旋转式冷冻机的线性谐振压缩机由压电堆型元素激活

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A novel type of a PZT- based compressor operating at mechanical resonance, suitable for pneumatically-driven Stirling-type cryocoolers was developed theoretically and built practically during this research. A resonance operation at relatively low frequency was achieved by incorporating the piezo ceramics into the moving part, and by reducing the effective piezo stiffness using hydraulic amplification. The detailed concept, analytical model and the test results of the preliminary prototype were reported earlier and presented at ICC17 [2]. A fine agreement between the simulations and experiments spurred development of the current actual compressor designed to drive a miniature Pulse Tube cryocooler, particularly our MTSa model, which operates at 103 Hz and requires an average PV power of 11 W, filling pressure of 40 Bar and a pressure ratio of 1.3. The paper concentrates on design aspects and optimization of the governing parameters. The small stroke to diameter ratio (about 1:10) allows for the use of a composite diaphragm instead of a clearance-seal piston. The motivation is to create an adequate separation between the working fluid and the buffer gas of the compressor, thus preventing possible contamination in the cryocooler. Providing efficiency and power density similar to those of conventional linear compressors, the piezo compressor may serve as a good alternative for cryogenic applications requiring extreme reliability and absence of magnetic field interference.
机译:一种在机械共振操作的基于PZT的压缩机的新型,适用于气动驱动的斯特林型冷冻机在本研究期间实际上开发并实际上建造。通过将压电陶瓷结合到移动部分中实现了相对低的频率的共振操作,并通过液压放大来降低有效压电刚度来实现。早期报道了详细的概念,分析模型和初步原型的测试结果,并在ICC17 [2]呈现。模拟与实验之间的精细协议刺激了当前的实际压缩机,设计用于驱动微型脉冲管冷冻机,特别是我们的MTSA模型,其在103 Hz上运行,需要11W的平均光伏电量,填充压力为40巴,压力比为1.3。本文集中于设计方面和治疗参数的优化。小行程到直径比(约1:10)允许使用复合隔膜而不是间隙密封活塞。动机是在压缩机的工作流体和缓冲气体之间产生足够的分离,从而防止了低温冷却器中的可能污染。提供与传统的线性压缩机类似的效率和功率密度,压电压缩机可以作为需要极端可靠性和磁场干扰的低温应用的良好替代方案。

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