A Surface Generation Mechanism of Grinding
This paper presents a surface generation mechanism of grinding that captures the microscopic interaction between the abrasive grains and work-surface. The mechanism utilizes both deterministic and stochastic formulations and deals with such realistic constraints as loss/wear and uneven distribution...
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Published in | Applied Mechanics and Materials Vol. 860; no. International Conference on Materials and Manufacturing Engineering; pp. 13 - 18 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Zurich
Trans Tech Publications Ltd
01.12.2016
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Subjects | |
Online Access | Get full text |
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Abstract | This paper presents a surface generation mechanism of grinding that captures the microscopic interaction between the abrasive grains and work-surface. The mechanism utilizes both deterministic and stochastic formulations and deals with such realistic constraints as loss/wear and uneven distribution of abrasive grains, roughness of already-ground work-surface, and machine stiffness. Apart from the theoretical treatments, numerical examples are cited showing how the topography of the work-surface evolves because of the proposed mechanism. The work will help build computerized systems ensuring a reliable prediction of the surface roughness due to grinding under the realistic constraints. |
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AbstractList | This paper presents a surface generation mechanism of grinding that captures the microscopic interaction between the abrasive grains and work-surface. The mechanism utilizes both deterministic and stochastic formulations and deals with such realistic constraints as loss/wear and uneven distribution of abrasive grains, roughness of already-ground work-surface, and machine stiffness. Apart from the theoretical treatments, numerical examples are cited showing how the topography of the work-surface evolves because of the proposed mechanism. The work will help build computerized systems ensuring a reliable prediction of the surface roughness due to grinding under the realistic constraints. |
Author | Sharif Ullah, A.M.M. Kubo, Akihiko Chowdhury, M.A.K. |
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Copyright | 2017 Trans Tech Publications Ltd Copyright Trans Tech Publications Ltd. Dec 2016 |
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SubjectTerms | Abrasive machining Grains Grinding Mathematical models Stochasticity Surface roughness Topography Wear mechanisms |
Title | A Surface Generation Mechanism of Grinding |
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