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Constraints on the Equations of State of stiff anisotropic minerals: rutile, and the implications for rutile elastic barometry

机译:对僵硬的各向异性矿物质状态方程的约束:金红石,以及金红石弹性气压测量的影响

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摘要

We present an assessment of the thermo-elastic behaviour of rutile based on X-ray diffraction data and direct elastic measurements available in the literature. The data confirms that the quasi-harmonic approximation is not valid for rutile because rutile exhibits substantial anisotropic thermal pressure, meaning that the unit-cell parameters change significantly along isochors. Simultaneous fitting of both the diffraction and elasticity data yields parameters of K-TR0 = 205.14(15) GPa, K-SR0 = 207.30(14) GPa, K-TR0'= 6.9(4) in a 3rd-order Birch-Murnaghan Equation of State for compression, alpha(v0) = 2.526(16) x 10(-5)K(-1), Einstein temperature theta(E)= 328(12) K, Anderson-Griineisen parameter delta(T) = 7.6(6), with a fixed thermal Griineisen parameter gamma = 1.4 to describe the thermal expansion and variation of bulk modulus with temperature at room pressure. This Equation of State fits all of the available data up to 7.3 GPa at room temperature, and up to 1100 K at room pressure within its uncertainties. We also present a series of formulations and a simple protocol to obtain thermodynamically consistent Equations of State for the volume and the unit-cell parameters for stiff materials, such as rutile. In combination with published data for garnets, the Equation of State for rutile indicates that rutile inclusions trapped inside garnets in metamorphic rocks should exhibit negative residual pressures when measured at room conditions.
机译:我们介绍了基于X射线衍射数据和文献中可用的直接弹性测量的金红石的热弹性行为的评估。数据证实,准谐波近似对于金红石无效,因为金红石表现出大量的各向异性热压,这意味着单层的单层参数显着变化。衍射和弹性数据的同时拟合产生K-Tr0 = 205.14(15)GPa,K-SR0 = 207.30(14)GPA,K-Tr0'= 6.9(4)的参数,在3阶Birch-Murnaghan方程中压缩状态,α(v0)= 2.526(16)×10(-5)k(-1),爱因斯坦温度θ(e)= 328(12)k,Anderson-griineisen参数delta(t)= 7.6( 6),具有固定的热晶体敏参数伽马= 1.4,以描述在室压下温度的散装模量的热膨胀和变化。该状态方程在室温下拟合高达7.3GPa的所有可用数据,在其不确定因素的室内压力下高达1100 k。我们还提出了一系列配方和简单的协议,以获得用于体积的热力学一致的状态和用于僵硬材料的单元电池参数,例如金红石。结合Garnet的已发布数据,金红石状态的等式表明,在房间条件下测量时,困住的棘爪内部的金红石夹杂物应表现出负残留压力。

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