首页> 外文会议>AD-vol.71; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20061105-10; Chicago,IL(US) >EVALUATING THE FAILURE PRESSURE OF BILAYER LIPID MEMBRANES BY A CONTROLLABLE ELECTROMAGNETIC TEST FIXTURE
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EVALUATING THE FAILURE PRESSURE OF BILAYER LIPID MEMBRANES BY A CONTROLLABLE ELECTROMAGNETIC TEST FIXTURE

机译:通过可控的电磁测试装置评估双层脂质膜的破坏压力

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摘要

The motion of plants is the inspiration for a new biomimetic actuator that uses fluid transport across a bilayer lipid membrane (BLM) to create internal pressure and cause displacement in the actuator. In order for the actuator to be viable the BLM must be able to withstand this internal pressure without failing. In a previous study, BLMs were formed over a porous polycarbonate substrate and a hydrostatic pressure was applied to the BLM and gradually increased until failure. This test was performed over different pore sizes to measure the failure pressure of the BLM as a function of pore radius. To improve this series of experiments, a new test fixture has been developed that will allow for a more precise measurement of the failure pressure as well as an expanded range of failure pressures. It is computer controlled, using an electromagnetic actuator to pressurize the BLMs and a pressure transducer to monitor pressure. The design scheme for this test fixture and some preliminary results will be presented.
机译:植物的运动是新型仿生执行器的灵感来源,该执行器使用跨双层脂质膜(BLM)的流体传输来产生内部压力并引起执行器中的位移。为了使执行器可行,BLM必须能够承受内部压力而不会发生故障。在先前的研究中,在多孔聚碳酸酯基板上形成了BLM,并向BLM施加了静水压力,然后逐渐增加静压直至失效。该测试在不同的孔径上进行,以测量BLM的破坏压力与孔径的关系。为了改进这一系列实验,已经开发了一种新的测试夹具,可以更精确地测量故障压力以及扩大的故障压力范围。它是由计算机控制的,使用电磁致动器对BLM加压,并使用压力传感器监控压力。将介绍该测试治具的设计方案和一些初步结果。

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