ENHANCING SELF-SHARPENING MECHANISMS IN METAL-BONDED DIAMOND GRINDING WHEELS FOR PRECISION GRINDING APPLICATIONS
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Abstract
Metal-bonded diamond grinding wheels are recognized for their exceptional attributes, including robust grinding capabilities, minimal grinding force, low grinding temperature, heightened grinding efficiency, minimal abrasive loss, superior adhesion to abrasive grains, and cost-effective processing [1]. Their extensive applications in the precision and ultra-precision grinding of hard and brittle materials underscore their significance in various industrial sectors. Nevertheless, these grinding wheels exhibit limitations, particularly in terms of self-sharpness and susceptibility to blocking. This paper addresses these challenges and explores strategies to enhance the performance of metal-bonded diamond grinding wheels

