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Protocol to perform pressurized blister tests on thin elastic films

机译:在薄弹性膜上进行加压泡罩测试的方案

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摘要

This work aims to identify common challenges in the preparation of the blister test devices designed for the measurement of the energy release rate for brittle thin films and to propose easy-to-implement solutions accordingly. To this end, we provide a step-by-step guide for fabricating a blister test device comprised of thin polystyrene films adhered to glass substrates. Thin films are first transferred from donor substrates to an air-water interface, which is then used as a platform to locate them on a receiver substrate. We embed a microchannel at the back of the device to evacuate the air trapped in the opening, through which the pressure is applied. We quantify the height and the radius of the blister to estimate the adhesion energy using the available expressions correlating the normal force and the moment with the shape of the blister. The present blister test provided an adhesion energy per unit area of G = 18 +/- 2 mJ/m<^>2 for polystyrene on glass, which is in good agreement with the measurement of G = 14 +/- 2 mJ/m<^>2 found in our independent cleavage test.
机译:这项工作旨在识别制备用于测量脆性薄膜的能量释放速率的泡罩测试装置的共同挑战,并相应地提出易于实现的解决方案。为此,我们提供了一种用于制造由粘附在玻璃基板上的薄聚苯乙烯膜组成的泡罩测试装置的逐步指南。首先将薄膜从供体基板转移到空气界面,然后用作将它们定位在接收器基板上的平台。我们在设备背面嵌入微通道以疏散捕获在开口的空气,通过该空气施加压力。我们量化了泡罩的高度和半径,以使用与泡罩形状的形状相关的可用表达式来估计粘附能量。目前的泡罩测试提供了用于聚苯乙烯的G = 18 +/- 2mJ / m ^ 2的粘合能量,其玻璃上的聚苯乙烯,这与G = 14 +/- 2 MJ / m的测量很吻合<^> 2发现在我们的独立切割测试中。

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