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Investigation and design of an impact actuated micro shift valve

机译:冲击驱动微型换向阀的研究与设计

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摘要

New concepts for an impact actuated micro shift valve are presented which are useful e.g. as im plant for the hydrocephalus disease. Such an implant must fulfil requirements, such as using biocompatible materials, a separation of the actuator from the fluid, MRT safety and low energy consumption in order to allow a battery powered system. The concepts are based on impacts that transmit an impulse into the interior of the valve through the casing, switching the valve. In order to predict the energy transmitted into the valve, an elastic multibody model is created, verified with full finite element simulations and experiments on scaled-up models. Using this model, the most important effects and parameters are discussed. Also, fluid effects are included into the elastic multibody model for a qualitative assessment of its influence on the efficiency. The simulations are compared to experiments performed with a scaled model for two different cases. Two designs of a shift valve based on impact actuation are built as prototypes and tested.
机译:提出了用于冲击致动的微型转换阀的新概念,这些新概念是有用的。作为脑积水疾病的植物。这样的植入物必须满足要求,例如使用生物相容性材料,将致动器与流体分离,MRT安全性和低能耗,以允许使用电池供电的系统。这些概念基于冲击,该冲击通过外壳将脉冲传递到阀内部,从而切换阀。为了预测传递到阀中的能量,创建了一个弹性多体模型,并通过完整的有限元模拟和按比例放大的模型进行了实验验证。使用该模型,讨论了最重要的效果和参数。同样,流体效应也包括在弹性多体模型中,用于定性评估其对效率的影响。将模拟与在两种不同情况下使用缩放模型执行的实验进行比较。基于冲击致动的转换阀的两种设计被构建为原型并经过测试。

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