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Creep behavior of Fe-bearing olivine under hydrous conditions

机译:含水条件下含铁橄榄石的蠕变行为

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To understand the effect of iron content on the creep behavior of olivine, (MgxFe(1-x))(2)SiO4, under hydrous conditions, we have conducted tri-axial compressive creep experiments on samples of polycrystalline olivine with Mg contents of x=0.53, 0.77, 0.90, and 1. Samples were deformed at stresses of 25 to 320 MPa, temperatures of 1050 degrees to 1200 degrees C, a confining pressure of 300 MPa, and a water fugacity of 300 MPa using a gas-medium high-pressure apparatus. Under hydrous conditions, our results yield the following expression for strain rate as a function of iron content for 0.53x0.90 in the dislocation creep regime: 0.90, is a function of T, sigma, and fH2O. As previously shown for anhydrous conditions, an increase in iron content directly increases creep rate. In addition, an increase in iron content increases hydrogen solubility and therefore indirectly increases creep rate. This flow law allows us to extrapolate our results to a wide range of mantle conditions, not only for Earth's mantle but also for the mantle of Mars.
机译:为了了解铁含量对(MgxFe(1-x))(2)SiO4在含水条件下对橄榄石蠕变行为的影响,我们对Mg含量为x的多晶橄榄石样品进行了三轴压缩蠕变实验= 0.53、0.77、0.90和1。使用高压气体介质在25至320 MPa的应力,1050至1200℃的温度,300 MPa的围压和300 MPa的水逸度下使样品变形。 -压力装置。在含水条件下,我们的结果得出了位错蠕变状态下应变速率与铁含量的函数关系,表达式为0.53x0.90:0.90,是T,sigma和fH2O的函数。如先前在无水条件下所示,铁含量的增加直接增加了蠕变速率。另外,铁含量的增加增加了氢溶解度,因此间接增加了蠕变速率。该流动定律使我们可以将结果推算到各种地幔条件下,不仅适用于地球的地幔,而且适用于火星的地幔。

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