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Mathematical simulations of anisotropy of magnetic susceptibility on composite fabrics

机译:复合材料磁化率各向异性的数学模拟

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The anisotropy of magnetic susceptibility (AMS) is an integral measure of the preferred orientation of all minerals present in a rock. When the AMS is carried by paramagnetic minerals alone, the principal directions of the susceptibility ellipsoid should reflect the crystallographic orientation of the minerals. The relationship between the AMS and deformation depends on several factors, which control the development of lattice-preferred orientation (LPO) in a rock. A mathematical model is presented that simulates the magnetic susceptibility ellipsoid for samples composed of more than one mineral phase. Measurements of the AMS are compared with fabric-based anisotropy models for black slates from the Navia-Alto Sil slate belt in northern Spain. The AMS is carried by paramagnetic minerals, as has been confirmed by high-field torque magnetometry, low-temperature AMS and magnetization curves. The LPO of mica and chlorite has been determined by X-ray texture goniometry. Pole figures and orientation ellipsoids show the changes in the degree of alignment of the phyllosilicates. The models have been tested in samples displaying three types of pole figures: a high-intensity point maximum, a medium-intensity elliptical maximum, and a girdle-shaped distribution. At one site displaying kink bands the LPO shows variations between these types at the outcrop scale. The case studies illustrate the success in modeling different LPO types.
机译:磁化率的各向异性(AMS)是岩石中所有矿物的首选取向的完整指标。当AMS仅由顺磁性矿物携带时,磁化率椭球的主要方向应反映矿物的晶体学取向。 AMS与变形之间的关系取决于几个因素,这些因素控制了岩石中晶格优先取向(LPO)的发展。提出了一个数学模型,该模型模拟了由多种矿物相组成的样品的磁化率椭球。将AMS的测量值与西班牙北部Navia-Alto Sil板岩带的黑色板岩的基于织物的各向异性模型进行了比较。 AMS由顺磁性矿物携带,这已经通过高磁场转矩磁力测定法,低温AMS和磁化曲线得到了证实。云母和亚氯酸盐的LPO已经通过X射线质地测角法测定。极图和定向椭球体显示出层状硅酸盐排列度的变化。该模型已在显示三种极点图形的样本中进行了测试:高强度点最大值,中强度椭圆最大值和带状分布。在一个显示扭结带的站点,LPO在露头尺度上显示了这些类型之间的差异。案例研究说明了在建模不同LPO类型方面的成功。

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