INVESTIGATION OF SINGLE-POINT DRESSING OVERLAP RATIO AND DIAMOND-ROLL DRESSING INTERFERENCE ANGLE ON SURFACE ROUGHNESS IN GRINDING

Author:

Saad Akram1,Bauer Robert1,Warkentin Andrew1

Affiliation:

1. Department of Mechanical Engineering, Dalhousie University

Abstract

This paper investigates the effect of both single-point and diamond-roll dressing techniques on the workpiece surface roughness in grinding. Two empirical surface roughness models are studied – one that incorporates single-point dressing parameters, and another that incorporates diamond-roll dressing parameters. For the experimental conditions used in this research, the corresponding empirical model coefficients are found to have a linear relationship with the inverse of the overlap ratio for single-point dressing and the interference angle for diamond-roll dressing. The resulting workpiece surface roughness models are then experimentally validated for different depths of cut, workpiece speeds and dressing conditions. In addition, the models are used to derive a relationship between overlap ratio for single-point dressing, and interference angle for diamond-roll dressing such that both dressing techniques produce a similar surface finish for a given material removal rate.

Publisher

Canadian Science Publishing

Subject

Mechanical Engineering

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1. Influence of the Linear Interpolation Segment on the Accuracy of Tool’s Outline Characterized by Variable Curvature;Advances in Science and Technology Research Journal;2022-01-05

2. Effects of grinding-wheel cleaning system in application of minimum quantity lubrication technique;Journal of Manufacturing Processes;2020-10

3. Development of the Surface Roughness Model in the Grinding Processes;Advances in Science, Technology and Engineering Systems Journal;2020

4. Calculating Effects of Dressing Parameters on Surface Roughness in Surface Grinding;Advances in Engineering Research and Application;2019-12-01

5. Multi-Objective Optimization of the Dressing Parameters in Fine Cylindrical Grinding;Strojniški vestnik – Journal of Mechanical Engineering;2019-02-15

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