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首页> 外文期刊>Geophysical Research Letters >High magnetic susceptibility produced in high-velocity frictional tests on core samples from the Chelungpu fault in Taiwan
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High magnetic susceptibility produced in high-velocity frictional tests on core samples from the Chelungpu fault in Taiwan

机译:台湾切伦堡断裂的岩心样品在高速摩擦试验中产生的高磁化率

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摘要

We carried out high-velocity frictional tests on crushed fault gouge from core samples from Hole B of the Taiwan Chelungpu-fault Drilling Project to investigate the cause of high magnetic susceptibilities in the fault core. Black ultracataclasite resembling that observed in Hole B formed during the experiments, even under low axial stress of 0.5 to 1.5 MPa. The bulk magnetic susceptibility of the tested samples was proportional to the frictional work applied and increased as slip increased. Thermomagnetic analysis of the samples before frictional testing revealed that magnetization increased at temperatures above 400 degrees C, probably because of thermal decomposition of paramagnetic minerals. Both the thermally and mechanically induced formation of ferrimagnetic minerals by high-velocity friction might have caused a magnetic susceptibility anomaly. Our experimental results support the assumption that heat generation of short duration, even if it is below the melting point, can increase magnetic susceptibility.
机译:我们对台湾切隆普断裂钻探项目B孔岩心样品的破碎断层泥进行了高速摩擦试验,以研究断层岩心中磁化率高的原因。即使在0.5至1.5 MPa的低轴向应力下,在实验过程中形成的孔B中也观察到了类似的黑色超催化硅酸盐。测试样品的整体磁化率与所施加的摩擦功成正比,并随着滑移的增加而增加。摩擦测试之前对样品的热磁分析表明,在高于400摄氏度的温度下,磁化强度增加了,这可能是由于顺磁性矿物的热分解所致。高速摩擦引起的铁磁矿物的热和机械诱导形成都可能引起磁化率异常。我们的实验结果支持这样的假设,即即使持续时间短的热量低于熔点,也会增加磁化率。

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