Determining the Thickness Coating of Grinding Powders of Synthetic Diamond Based on a Specific-Surface Approach and using an Extrapolation-Affine 3D Model of Grain

Grigrii A. Petasyuk
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引用次数: 2

Abstract

: Methodological features of indirect determining of thickness coating of grains grinding powders of synthetic diamond are analyzed. A newly revised classification of known methods for determining the thickness of the coating is proposed. The prospects of the methods based on the application of an external specific surface are noted. A positive feature is the proposal to determine the thickness of the coating separately for each grain of the sample, followed by the generalization of the results by calculating the arithmetic mean. This calculation scheme allows you to get more reliable information about the thickness of the coating. The expediency of using an extrapolation-affine 3D grain model in such a calculation scheme is substantiated. Using the extrapolation-affininе 3D grain model allows for determining the thickness of the coating of diamond powder grains without the traditional assumption about the spherical shape of their grains and with less error. For an example of grinding powder AC125 400/315, the advantage of such a 3D model compared to a 3D model in the form of a sphere is proved. The method proposed on the basis of such methodical innovation can be used for powders of other abrasive materials.
基于特定面法和外推仿射三维晶粒模型确定人造金刚石磨粉涂层厚度
分析了间接测定合成金刚石磨粉颗粒涂层厚度的方法特点。提出了一种新修订的用于确定涂层厚度的已知方法的分类。展望了基于外比表面应用的方法的发展前景。一个积极的特点是,建议对样品的每个颗粒分别确定涂层的厚度,然后通过计算算术平均值来推广结果。这种计算方案使您可以获得有关涂层厚度的更可靠的信息。在这种计算方案中使用外推仿射三维颗粒模型的方便性得到了证实。采用外推-仿射三维晶粒模型可以在不需要传统的晶粒球形假设的情况下确定金刚石粉末颗粒的涂层厚度,误差较小。以AC125 400/315磨粉为例,证明了这种三维模型相对于球体形式的三维模型的优越性。在此方法创新的基础上提出的方法可用于其他磨料粉末。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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