首页> 外文会议>ASME(American Society of Mechanical Engineers) InterPack Conference 2007(IPACK2007) >DESIGN OPTIMIZATION OF FIXED-VALVE MICROPUMPS FOR MINIATURE COOLING SYSTEMS
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DESIGN OPTIMIZATION OF FIXED-VALVE MICROPUMPS FOR MINIATURE COOLING SYSTEMS

机译:微型冷却系统固定阀微泵的设计优化

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The piezoelectrically driven fixed-valve micropump may be an attractive choice for miniature liquid cooling systems due to its low-cost potential and simple fabrication. The thin, stackable design can be fabricated in many materials, including silicon, metal and plastic. Previous linear system modeling has been used to predict resonant behavior in terms of valve Reynolds number and used as a guideline for design, but can not yield predictions of pressure and flow, which depend on nonlinear fluid dynamic phenomena. In this study we report an extended model that incorporates the calculation of block-load pressure and no-load flow in a manner such that thousands of designs can be analyzed quickly. The results indicate that by calculating these two pump performance parameters over a design space of valve size and actuator stiffness, pump design is better able to match pump performance to system requirements. Experimental verification was performed using prototype pumps with interchangeable plastic and metal partsto demonstrate the approach for these two low cost materials.
机译:压电驱动的固定阀微型泵,由于其低成本潜力和简单的制造,可能是微型液体冷却系统的一个有吸引力的选择。薄的可堆叠设计可以用多种材料制造,包括硅,金属和塑料。先前的线性系统建模已用于根据阀雷诺数预测共振行为,并用作设计指南,但无法产生依赖于非线性流体动力学现象的压力和流量预测。在这项研究中,我们报告了一个扩展模型,该模型结合了对部分负荷压力和无负荷流量的计算,从而可以快速分析成千上万的设计。结果表明,通过在阀尺寸和执行器刚度的设计空间内计算这两个泵的性能参数,泵的设计可以更好地使泵的性能与系统要求相匹配。使用具有可互换塑料和金属零件的原型泵进行了实验验证,以证明这两种低成本材料的方法。

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