Effect of the Grain Shape on Abrasive Tool Performance

The results of studying the effect of the grain shape on abrasive disc performance are presented. The grain shape was conveniently divided into two classes: isometric and non-isometric. The results of the microhardness tests, elastic properties tests, and mechanical strength tests of grains various...

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Main Authors: Shepelev Ivan, Kryukov Sergey, Baidakova Natalya
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/46/matecconf_ispcime18_09004.pdf
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spelling doaj-cd12bd0daf0e4c09bfb5cdb7019412512021-02-02T05:00:36ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012970900410.1051/matecconf/201929709004matecconf_ispcime18_09004Effect of the Grain Shape on Abrasive Tool PerformanceShepelev Ivan0Kryukov Sergey1Baidakova Natalya2Volzhsky Polytechnic Institute (branch) of Federal State Budget Educational Institution of Higher Education Volgograd State Technical UniversityVolzhsky Polytechnic Institute (branch) of Federal State Budget Educational Institution of Higher Education Volgograd State Technical UniversityVolzhsky Branch of Federal State Budget Educational Institution of Higher Education National Research University Moscow Power Engineering InstituteThe results of studying the effect of the grain shape on abrasive disc performance are presented. The grain shape was conveniently divided into two classes: isometric and non-isometric. The results of the microhardness tests, elastic properties tests, and mechanical strength tests of grains various in shape are given. The test results make it clear that grain microhardness slightly decreases as the grain shape changes from isometric to the plate shape. The grain elasticity also decreases. It is demonstrated that variations in the industrial grain volume and weight can be indicative not only of the changed grain size composition, chemical composition etc., but of a significant variation in the correlative content of grains different in shape. The bulk weight difference of diversiform grains is important for the structure, structural density, and matrix packing of abrasive discs. It is found that the grain shape is an essential feature that predetermines abrasive tool performance to a greater extent.https://www.matec-conferences.org/articles/matecconf/pdf/2019/46/matecconf_ispcime18_09004.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Shepelev Ivan
Kryukov Sergey
Baidakova Natalya
spellingShingle Shepelev Ivan
Kryukov Sergey
Baidakova Natalya
Effect of the Grain Shape on Abrasive Tool Performance
MATEC Web of Conferences
author_facet Shepelev Ivan
Kryukov Sergey
Baidakova Natalya
author_sort Shepelev Ivan
title Effect of the Grain Shape on Abrasive Tool Performance
title_short Effect of the Grain Shape on Abrasive Tool Performance
title_full Effect of the Grain Shape on Abrasive Tool Performance
title_fullStr Effect of the Grain Shape on Abrasive Tool Performance
title_full_unstemmed Effect of the Grain Shape on Abrasive Tool Performance
title_sort effect of the grain shape on abrasive tool performance
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description The results of studying the effect of the grain shape on abrasive disc performance are presented. The grain shape was conveniently divided into two classes: isometric and non-isometric. The results of the microhardness tests, elastic properties tests, and mechanical strength tests of grains various in shape are given. The test results make it clear that grain microhardness slightly decreases as the grain shape changes from isometric to the plate shape. The grain elasticity also decreases. It is demonstrated that variations in the industrial grain volume and weight can be indicative not only of the changed grain size composition, chemical composition etc., but of a significant variation in the correlative content of grains different in shape. The bulk weight difference of diversiform grains is important for the structure, structural density, and matrix packing of abrasive discs. It is found that the grain shape is an essential feature that predetermines abrasive tool performance to a greater extent.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/46/matecconf_ispcime18_09004.pdf
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