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MEMS-based hydraulic displacement amplification mechanism with completely encapsulated liquid

机译:完全包裹液体的基于MEMS的液压位移放大机构

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摘要

We developed a MEMS-based hydraulic displacement amplification mechanism (HDAM) with completely encapsulated liquid that can be used in applications that require large-displacement micro-actuators, such as tactile displays and microvalves controlling large mass flows. The HDAM contains a microcavity that is sealed by easily deformable thin polydimethylsiloxane (PDMS) membranes encapsulating an incompressible fluid and whose input and output surfaces have different cross-sectional areas. A displacement applied to the input surface is amplified at the smaller output surface. We patterned silicon wafers, bonded them to form the microcavity, and encapsulated glycerin within the microcavity by using ultraviolet curable resin as an intermediate layer and bonding easily deformable thin PDMS membranes to the silicon structure in a glycerin solution. This bonding-in-solution approach ensures that the encapsulated glycerin is bubble-free. We obtained fifteen-fold of amplification of the input displacement applied by a piezoelectric actuator and demonstrated a 3 × 3 array of actuators displaying rewritable Braille cells.
机译:我们开发了一种具有完全封装液体的基于MEMS的液压位移放大机构(HDAM),可用于需要大位移微执行器的应用中,例如触觉显示器和控制大质量流量的微阀。 HDAM包含一个微腔,该微腔由容易变形的聚二甲基硅氧烷(PDMS)薄膜密封,该薄膜封装了不可压缩的流体,其输入和输出表面的截面积不同。施加到输入表面的位移在较小的输出表面放大。我们对硅片进行构图,将其粘合以形成微腔,然后通过使用紫外线固化树脂作为中间层并将甘油中易变形的PDMS薄膜粘合到硅结构上,将甘油封装在微腔内。这种溶液结合方法可确保封装的甘油无气泡。我们获得了由压电致动器施加的输入位移的15倍放大,并演示了显示可重写盲文单元的3×3致动器阵列。

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