首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Numerical analysis of the general characteristics of stereological bias in surface liberation assessment of ore particles
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Numerical analysis of the general characteristics of stereological bias in surface liberation assessment of ore particles

机译:矿石颗粒表面释放评估中立体偏差一般特征的数值分析

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摘要

In mineral processing, ground ore particles containing valuable minerals are commonly separated from the gangue by flotation. For efficient flotation, surface liberation, in which the particle surface is composed of one phase, is important. Surface liberation is commonly measured by two-dimensional (2D) measurement of particle sections of resin-mounted samples. Such 2D measurement is considered to result in a form of error called stereological bias; however, the stereological bias associated with surface liberation assessment has not been fully studied. A series of numerical simulations was here conducted, to investigate the influence of a particle’s texture (the 3D internal particle structure) and shape on such stereological bias. First, a total of 110 patterns of texture (10 patterns of grain size times 11 levels of grain content) were modeled, to determine the general characteristics of the stereological bias. Then, the influence on the stereological bias, of particle shape as represented by the aspect ratio (an index of global shape) and corrected sphericity (an index of surface roughness), was investigated. The results revealed that texture had the largest, aspect ratio the second largest, and corrected sphericity the smallest influence on the stereological bias in surface liberation measurement. Based on the results, it is suggested that a rough estimate of the stereological bias in the measurement of irregularly shaped real ore particles can be made from much simpler numerical models of spherical particles.
机译:在矿物加工中,含有有价值的矿物质的地面矿石颗粒通常通过浮选与煤矸石分离。对于有效的浮选,表面释放,其中颗粒表面由一个相构成,是重要的。表面释放通常通过二维(2D)测量的树脂安装样品的颗粒部分测量。这种2D测量被认为导致一种称为立体偏差的误差形式;然而,没有完全研究与表面释放评估相关的立体偏差。这里进行了一系列数值模拟,以研究粒子的纹理(3D内部颗粒结构)和形状对这种立体偏差的影响。首先,建模总共110种纹理(10次晶粒尺寸次数粒含量的粒度),以确定立体偏差的一般特征。然后,研究了由纵横比(全球形状指数)和校正球形(表面粗糙度指数)表示的颗粒形状对立体偏差的影响。结果表明,纹理具有最大,纵横比第二大,并校正球体对表面释放测量的立体偏差最小的影响。基于该结果,建议可以通过更简单的球形颗粒的数值模型来制造对不规则形状的真实矿石颗粒中的立体偏差的粗略估计。

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