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Rod-like brazed diamond tool fabricated by supersonic-frequency induction brazing with Cu-based brazing alloy

机译:铜基钎料超音速感应钎焊制成的棒状钎焊金刚石工具

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摘要

Supersonic-frequency induction heating was used to fabricate a rod-like diamond tool brazed with a Cu-based brazing alloy in order to control the dropping of liquid brazing alloys that takes place in other brazing technologies. The brazing alloy can be spread evenly and the diamond grits can be correctly exposed on the rod-like brazed diamond tool by using a proper induction brazing technique. Dissolution, diffusion, and chemical recombination took place between the diamond grits and the brazing alloy, and a diffusion band approximately 30 μm wide was observed between the brazing alloy and the steel substrate. This demonstrates that metallurgical bonding occurred both at the interface of the diamond grits and the brazing alloy and at the interface of the brazing alloy and the steel substrate. A boring test of the brazed diamond drill showed that the total grain fracture percentage of the diamond grits was higher than the falloff percentage.
机译:为了控制在其他钎焊技术中发生的液态钎焊合金的掉落,使用超音速感应加热来制造用铜基钎焊合金钎焊的棒状金刚石工具。通过使用适当的感应钎焊技术,钎焊合金可以均匀地散布,并且可以将金刚石砂粒正确地暴露在棒状钎焊金刚石工具上。金刚石砂和钎焊合金之间发生了溶解,扩散和化学复合,并且在钎焊合金和钢基底之间观察到约30μm的扩散带。这表明冶金结合既发生在金刚石砂砾和钎焊合金的界面,又发生在钎焊合金和钢基体的界面。钎焊金刚石钻头的镗孔测试表明,金刚石砂粒的总晶粒破碎百分比高于脱落百分比。

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