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A Monolithic Micro-Tensile Tester for Investigating Silicon Dioxide Polymorph Micromechanics, Fabricated and Operated Using a Femtosecond Laser

机译:飞秒激光制造和操作的用于研究二氧化硅多晶型微力学的整体式微拉伸测试仪

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Mechanical testing of materials at the microscales is challenging. It requires delicate procedures not only for producing and handling the specimen to be tested, but also for applying an accurate and controlled force. This endeavor is even more challenging when it comes to investigating the behavior of brittle materials such as glass. Here, we present a microtensile tester for investigating silica glass polymorphs. The instrument is entirely made of silica and for which the same femtosecond laser is not only used for fabricating the device, but also for operating it (loading the specimen) as well as for performing in situ measurements. As a proof-of-concept, we present a stress-strain curve of fused silica for unprecedented high tensile stress of 2.4 GPa, as well as preliminary results of the elastic modulus of femtosecond laser-affected zones of fused silica, providing new insights on their microstructures and mechanical behavior.
机译:在微尺度上对材料进行机械测试具有挑战性。它不仅需要用于生产和处理待测样品的精密程序,而且还需要施加精确且受控的力。在研究诸如玻璃之类的脆性材料的行为时,这一努力甚至更具挑战性。在这里,我们介绍了一种用于研究石英玻璃多晶型物的微拉伸试验机。该仪器完全由二氧化硅制成,其飞秒激光不仅用于制造该设备,还用于操作该设备(加载样品)以及进行原位测量。作为概念验证,我们给出了熔融石英在2.4 GPa前所未有的高拉伸应力下的应力-应变曲线,以及飞秒激光影响的熔融石英区域的弹性模量的初步结果,从而提供了新的见解。它们的微观结构和力学行为。

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