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October 1, 2025Coatings4 citationsOpen Access

Brazed–Resin Composite Grinding Wheel with CBN Segments: Fabrication, Brazing Mechanism, and Rail Grinding Performance

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HXHaozhong XiaoSWShuyi WangBXBing Xiao

Key Points

  • The composite grinding wheel exhibited lower grinding temperatures, ensuring better thermal performance.
  • Field tests showed that service life extended by about 28.8% compared to conventional resin-bonded wheels.
  • Microstructural analyses confirmed the effectiveness of metallic bonding at the CBN-filler interface.
  • The incorporation of tungsten carbide reduced wetting, aiding in the precise shape retention of the segments.

Abstract

To enhance the grinding performance and service life of rail grinding wheels, a novel brazed–resin composite wheel was developed by embedding brazed CBN (cubic boron nitride) segments into a resin working layer. The brazed CBN segments were fabricated using a Cu–Sn–Ti + WC (tungsten carbide) composite filler via a cold-press forming–vacuum brazing process. Microstructural and phase analyses revealed the formation of Ti–B and Ti–N compounds at the CBN–filler interface, indicating metallurgical bonding, while the incorporation of WC reduced excessive wetting, enabling precise shape retention of the segments. Comparative laboratory and field grinding tests were conducted against conventional resin-bonded wheels. Under all tested pressures, the composite wheel exhibited lower grinding temperatures, generated predominantly strip-shaped chips with lower oxygen content, and produced fewer spherical oxide-rich chips than the resin-bonded wheel, confirming reduced thermal load. Field tests demonstrated that the composite wheel matched the resin-bonded wheel in grinding efficiency, extended service life by approximately 28.8%, and achieved smoother rail surfaces free from burn-induced blue marks. These results indicate that the brazed–resin composite grinding wheel effectively leverages the superior hardness and thermal conductivity of CBN abrasives, offering improved thermal control, wear resistance, and surface quality in rail grinding applications.

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Cite This Study

Xiao et al. (2025) studied this question.

synapsesocial.com/papers/68dd91c7fe798ba2fc49868ahttps://doi.org/10.3390/coatings15091083
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