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首页> 外文期刊>Journal of Materials Science >CRYSTALLINITY VARIATIONS IN KAOLINITE INDUCED BY GRINDING AND PRESSURE TREATMENTS
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CRYSTALLINITY VARIATIONS IN KAOLINITE INDUCED BY GRINDING AND PRESSURE TREATMENTS

机译:磨削和压力处理引起的高岭石结晶度变化

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Kaolinite samples treated with uniaxial pressures higher than 0.1 GPa or grinding times greater than 0.3 h show changes in their crystallinity. These changes are easily detected by the X-ray diffraction (XRD) technique and can be quantified from Hinckley (HI), Lietard (R(2)) and also reference intensity ratio (RIR) index studies. The sensitivity of these indices to the crystallinity changes is; HI > RIR > R(2). In the range of pressures and grinding times considered, these values can be diminished by 50%. The variations in these indices with either the pressure or grinding time follow logarithmic laws whose correlation coefficients are closed to unity. Infrared (IR) spectroscopy and thermal analysis studies show low sensitivity to the changes introduced by grinding or pressure. Nevertheless, thermal gravimetric curves confirm the decrease in the dehydroxylation starting point of about 100 degrees C for the pressed and ground samples. Transmission electron microscopy (TEM) reveals important changes in kaolinite particle morphologies after pressure and grinding treatments. The samples compressed at 0.1, 0.32, 0.85, 1.0 and 2.0 GPa show a large number of defects (fractures, bending, deformations and rolling of layers, glide and rotation of the shell). The ground samples show grain boundaries, dislocations, twins and rounded voids. These defects are responsible for the decrease in crystallinity of the kaolinite samples shown in the XRD and IR studies. [References: 21]
机译:用单轴压力大于0.1 GPa或研磨时间大于0.3 h处理的高岭土样品显示出结晶度的变化。这些变化很容易通过X射线衍射(XRD)技术检测到,并且可以根据欣克利(HI),利塔德(R(2))和参考强度比(RIR)指数研究进行量化。这些指标对结晶度变化的敏感性为: HI> RIR> R(2)。在考虑的压力和研磨时间范围内,这些值可以减少50%。这些指数随压力或研磨时间的变化遵循对数定律,其相关系数接近于1。红外(IR)光谱和热分析研究表明,对于研磨或压力引起的变化敏感性较低。然而,热重量曲线证实了压制和磨碎样品的脱羟基起始点降低了约100℃。透射电子显微镜(TEM)揭示了加压和研磨处理后高岭石颗粒形态的重要变化。以0.1、0.32、0.85、1.0和2.0 GPa压缩的样品显示出大量缺陷(断裂,弯曲,层变形和滚动,外壳滑动和旋转)。地面样品显示出晶界,位错,孪晶和圆形空隙。这些缺陷是XRD和IR研究中显示的高岭石样品结晶度降低的原因。 [参考:21]

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