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Fabrication and Characterization of Microscale Sensors for Strain Measurement in Flexible Polymer Heart Valve Leaflet

机译:柔性聚合物心脏瓣膜瓣叶片应变测量微观传感器的制造与表征

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Flexible polymer heart valves are promising clinical prostheses for replacement of diseased or malfunctioned natural heart valves. However, the flexible polymer leaflets are prone to fatigue fracture, which hinders their practicality in clinical applications. In this study, micro strain sensor (gauge) for strain measurement is designed in the polyurethane (PU) thin film to measure the stress/strain in situ. In our design, the strain gauge is embedded in PU which is different to the commercial strain gauge of sticking to the sample. The metal layer of strain gauge used in this study is gold. The overall size of the designed strain gauge is 1 mm × 1 mm × 0.1 μm and the resistance value was measured to be 200±30Ω. The static test of strain gauge without damp proof shows that gauge sensitivity G was measured to be 4 and 1.8 when strain range is less than 1% and between 1-1.5%, respectively. While, the static test of strain gauge with damp proof shows that gauge sensitivity G was measured to be 2.6 when strain range is less than 1.2%. Dynamic test of strain gauge was also applied in this study.
机译:柔性聚合物心脏瓣膜是有前途的临床假体,用于更换患病或发生故障的天然心脏瓣膜。然而,柔性聚合物叶易于疲劳骨折,阻碍了它们在临床应用中的实用性。在该研究中,在聚氨酯(PU)薄膜中设计了用于应变测量的微应变传感器(仪表),以便原位测量应力/应变。在我们的设计中,应变仪嵌入PU中,该PU与粘附到样品的商业应变仪不同。本研究中使用的应变仪金属层是金。设计的应变仪的整体尺寸为1mm×1mm×0.1μm,测量电阻值为200±30Ω。没有潮湿的应变仪的静态试验表明,当应变范围小于1%和1-1.5%时,测量仪表敏感性G测量为4和1.8。虽然,带有潮湿的应变仪的静态试验表明,当应变范围小于1.2%时测量仪表敏感性g为2.6。在本研究中也应用了应变仪的动态试验。

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