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Effect of temperature on the frictional behavior of smectite and illite

机译:温度对绿土和伊利石摩擦行为的影响

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We performed high–temperature friction experiments to investigate the effect of temperature on the frictional behavior of smectite and illite. Friction coefficients (μ ) of these clay minerals increase with increasing temperature as a result of dehydration of absorbed and interstitial water. At a constant normal stress of 60 MPa, μ of Ca–smectite gouge increases from 0.27 at room temperature to 0.67 at 200 °C, and μ of illite gouge increase from 0.53 at room temperature to 0.68 at 200 °C. Velocity dependence of steady–state friction for smectite and illite gouges changes with temperature so that the transition from velocity–strengthening to velocity–weakening behavior occurs at 150 °C at a normal stress of 60 MPa. Temperature at which this change takes place corresponds to the temperature at the updip limit of the seismogenic zone along subducting plates. Thus, the effect of temperature on the frictional behavior of these clay minerals possibly play an important role in controlling the updip limit of subduction thrust earthquakes.
机译:我们进行了高温摩擦实验,以研究温度对蒙脱石和伊利石的摩擦行为的影响。由于吸收的水和间隙水的脱水,这些粘土矿物的摩擦系数(i)随着温度的升高而增加。在60 MPa的恒定法向应力下,钙蒙脱石的μ从室温的0.27升高到200°C的0.67,伊利石的μi从室温的0.53升高到200°C的0.68 C。蒙脱石和伊利石泥的稳态摩擦的速度依赖性随温度而变化,因此从速度强化到速度减弱行为的转变发生在150°C且法向应力为60 MPa的情况下。发生这种变化的温度对应于沿俯冲板的成地震带上倾极限处的温度。因此,温度对这些粘土矿物的摩擦行为的影响可能在控制俯冲冲断地震的上倾极限中起重要作用。

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