首页> 外文期刊>Physics and chemistry of minerals >The thermoelastic behavior of clintonite up to 10 GPa and 1,000°C
【24h】

The thermoelastic behavior of clintonite up to 10 GPa and 1,000°C

机译:克林顿岩在10 GPa和1,000°C以下的热弹性行为

获取原文
获取原文并翻译 | 示例
       

摘要

The thermoelastic behavior of a natural clintonite-1M [with composition: Ca _(1.01)(Mg _(2.29)Al _(0.59)Fe _(0.12)) _(Σ3.00)(Si _(1.20)Al _(2.80)) _(Σ4.00)O _(10)(OH) _2] has been investigated up to 10 GPa (at room temperature) and up to 960°C (at room pressure) by means of in situ synchrotron single-crystal and powder diffraction, respectively. No evidence of phase transition has been observed within the pressure and temperature range investigated. P-V data fitted with an isothermal third-order Birch-Murnaghan equation of state (BM-EoS) give V _0 = 457.1(2) ? ~3, K _(T0) = 76(3)GPa, and K′ = 10.6(15). The evolution of the "Eulerian finite strain" versus "normalized stress" shows a linear positive trend. The linear regression yields Fe(0) = 76(3) GPa as intercept value, and the slope of the regression line leads to a K′ value of 10.6(8). The evolution of the lattice parameters with pressure is significantly anisotropic [β(a) = 1/3K _(T0)(a) = 0.0023(1) GPa ~(-1); β(b) = 1/3K _(T0)(b) = 0.0018(1) GPa ~(-1); β(c) = 1/K _(T0)(c) = 0.0072(3) GPa ~(-1)]. The β-angle increases in response to the applied P, with: β _P = β _0 ~+ 0.033(4)P (P in GPa). The structure refinements of clintonite up to 10.1 GPa show that, under hydrostatic pressure, the structure rearranges by compressing mainly isotropically the inter-layer Ca-polyhedron. The bulk modulus of the Ca-polyhedron, described using a second-order BM-EoS, is K _(T0)(Ca-polyhedron) = 41(2) GPa. The compression of the bond distances between calcium and the basal oxygens of the tetrahedral sheet leads, in turn, to an increase in the ditrigonal distortion of the tetrahedral ring, with ?α/?P ≈ 0.1°/GPa within the P-range investigated. The Mg-rich octahedra appear to compress in response to the applied pressure, whereas the tetrahedron appears to behave as a rigid unit. The evolution of axial and volume thermal expansion coefficient α with temperature was described by the polynomial α(T) = α _0 + α _1T ~(-1/2). The refined parameters for clintonite are as follows: α _0 = 2.78(4) 10 ~(-5)°C ~(-1) and α _1 = -4.4(6) 10 ~(-5)°C ~(1/2) for the unit-cell volume; α _0(a) = 1.01(2) 10 ~(-5)°C ~(-1) and α _1(a) = -1.8(3) 10 ~(-5)°C ~(1/2) for the a-axis; α _0(b) = 1.07(1) 10 ~(-5)°C ~(-1) and α _1(b) = -2.3(2) 10 ~(-5)°C ~(1/2) for the b-axis; and α _0(c) = 0.64(2) 10 ~(-5)°C ~(-1) and α _1(c) = -7.3(30) 10 ~(-6)°C ~(1/2)for the c-axis. The β-angle appears to be almost constant within the given T-range. No structure collapsing in response to the T-induced dehydroxylation was found up to 960°C. The HP- and HT-data of this study show that in clintonite, the most and the less expandable directions do not correspond to the most and the less compressible directions, respectively. A comparison between the thermoelastic parameters of clintonite and those of true micas was carried out.
机译:天然斜铁矿1M的热弹性行为[组成:Ca _(1.01)(Mg _(2.29)Al _(0.59)Fe _(0.12))_(Σ3.00)(Si _(1.20)Al _( 2.80))已通过原位同步加速器进行了研究,研究了((4.04)O _(10)(OH)_2)高达10 GPa(室温)和高达960°C(室温)的情况。晶体和粉末衍射分别。在所研究的压力和温度范围内,没有观察到相变的迹象。装有等温三阶Birch-Murnaghan状态方程(BM-EoS)的P-V数据得出V _0 = 457.1(2)? 〜3,K _(T0)= 76(3)GPa,K'= 10.6(15)。 “欧拉有限应变”相对于“归一化应力”的演变显示出线性正趋势。线性回归得出Fe(0)= 76(3)GPa作为截距值,回归线的斜率得出K'值为10.6(8)。晶格参数随压力的变化具有明显的各向异性[β(a)= 1 / 3K _(T0)(a)= 0.0023(1)GPa〜(-1); β(b)= 1 / 3K _(T0)(b)= 0.0018(1)GPa〜(-1); β(c)= 1 / K _(T0)(c)= 0.0072(3)GPa〜(-1)]。 β角响应于所施加的P而增大,其中:β_P =β_0〜+ 0.033(4)P(GPa中的P)。高达10.1 GPa的克林石的结构细化表明,在静水压力下,结构主要通过各向同性压缩层间Ca-多面体而重新排列。使用二阶BM-EoS描述的Ca-多面体的体积模量为K_(T0)(Ca-多面体)= 41(2)GPa。钙与四面体片基氧之间键距的压缩反过来导致四面体环的三角变形增加,在研究的P范围内,αα/βP≈0.1°/ GPa 。富含Mg的八面体似乎会随着施加的压力而压缩,而四面体则表现为刚性单位。用多项式α(T)=α_0 +α_1T〜(-1/2)描述轴向和体积热膨胀系数α随温度的变化。克林顿精制参数如下:α_0 = 2.78(4)10〜(-5)°C〜(-1)和α_1 = -4.4(6)10〜(-5)°C〜(1 / 2)用于单位电池体积; α_0(a)= 1.01(2)10〜(-5)°C〜(-1)和α_1(a)= -1.8(3)10〜(-5)°C〜(1/2) a轴; α_0(b)= 1.07(1)10〜(-5)°C〜(-1)和α_1(b)= -2.3(2)10〜(-5)°C〜(1/2) b轴;和α_0(c)= 0.64(2)10〜(-5)°C〜(-1)和α_1(c)= -7.3(30)10〜(-6)°C〜(1/2)对于c轴。在给定的T范围内,β角似乎几乎恒定。直到960℃,都没有发现响应于T-诱导的脱羟基反应而塌陷的结构。这项研究的HP和HT数据表明,在克林顿岩中,最大和较小的可膨胀方向分别与最大和较小的可压缩方向不对应。对比了克林顿岩和真云母的热弹性参数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号