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Impact Compressive Fracture of Synthetic Quartz Accompanied by Electromagnetic Phenomenon

机译:用电磁现象伴有合成石英的冲击压缩骨折

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In order to clarify the relationship between the mechanical properties of synthetic quartz and the electromagnetic phenomena during its fracture, a series of uniaxial compression tests were carried out at quasi-static and dynamic rates. Not only the stress-strain curves but also the output of ferrite-core antenna located close to the specimens were measured in a shield box made of permalloy plates. Since the synthetic quartz has three characteristic axes, i.e. optical axis, electric axis and machine axis, the effect of loading direction on the mechanical properties and electromagnetic phenomena of quarts was also examined. The dynamic compressive strength was greater than those in static tests and there is strain-rate dependence in their strength of synthetic quartz. It was also found that there are not any remarkable differences due to the loading direction with respect to the intensity of electromagnetic waves measured in the dynamic compression tests, i.e. the electromagnetic phenomenon does not depend on the loading direction.
机译:为了阐明合成石英的机械性能与骨折期间的电磁现象之间的关系,在准静态和动态速率下进行一系列单轴压缩试验。不仅应力 - 应变曲线而且还测量位于由Percololoy板制成的屏蔽盒中靠近样本的铁氧体芯天线的输出。由于合成石英具有三个特征轴,即光轴,电源轴和机轴,还检查了装载方向对夸脱的机械性能和电磁现象的影响。动态抗压强度大于静态试验中的强度,并且存在合成石英的强度的应变速率依赖性。还发现,由于在动态压缩测试中测量的电磁波强度,I.E的加载方向没有任何显着差异,即电磁现象不依赖于装载方向。

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