The effects of temperature curves on the diamond/Ni-Cr interfacial properties in high-frequency induction brazing

Q3 Engineering
G. Huang, M. Zhang, Hua Guo, Xipeng Xu
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引用次数: 5

Abstract

The present study alters the temperature characteristics during high-frequency induction brazing of diamond grits and investigates their effects on the properties of the diamond/brazing alloy interface. The high-frequency induction brazing was conducted in a vacuum using Ni-Cr as active filler alloy. An active temperature range was identified for the brazing of high-quality diamond tools. This temperature range, coupled with long heating time, favours the wetting of filler alloy to diamonds, and the chemical reactions and element diffusion at the diamond/alloy interface, but reduces the static compressive strength of the diamonds. If the temperature is slowly raised, the protrusion height and location of brazed diamonds can be more precisely controlled. Brazed diamonds with 30%-50% protrusion are optimal for cutting.
高频感应钎焊中温度曲线对金刚石/Ni-Cr界面性能的影响
研究了金刚石磨粒高频感应钎焊过程中温度特性的变化及其对金刚石/钎焊合金界面性能的影响。采用镍铬合金作为活性钎料,在真空条件下进行高频感应钎焊。确定了高质量金刚石工具钎焊的有效温度范围。该温度范围加上较长的加热时间有利于填充合金对金刚石的润湿,有利于金刚石/合金界面的化学反应和元素扩散,但降低了金刚石的静态抗压强度。如果慢慢升高温度,则可以更精确地控制钎焊金刚石的突出高度和位置。钎焊金刚石的突出度为30%-50%,最适合切割。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Abrasive Technology
International Journal of Abrasive Technology Engineering-Industrial and Manufacturing Engineering
CiteScore
0.90
自引率
0.00%
发文量
13
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