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首页> 外文期刊>Journal of Materials Engineering and Performance >Vacuum Brazing Diamond Grits with Cu-based or Ni-based Filler Metal
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Vacuum Brazing Diamond Grits with Cu-based or Ni-based Filler Metal

机译:真空钎焊金刚石砂磨用Cu基或Ni基填充金属

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Diamond grits were brazed using Cu-Sn-Cr and Ni-Cr-B-Si filler metals, and the brazed grits were examined for microstructure (SEM, EDS, XRD), microhardness, and compression strength. Results showed that the microstructure of the Cu-based filler metal was uniform and consisted of alpha-Cu + (alpha-Cu + delta). Its wettability to the diamond was better than Ni-based filler due to the formation of a thin carbide reaction layer that improved the bond strength between the diamond and steel. The Cu-based filler led to reduced thermal damage to the diamond. The Cr in the filler metal diffused to the steel substrate to form a reaction layer at the filler/steel substrate interface. The microhardness of the Ni filler metal (810-830 HV0.3) was significantly higher than that of Cu filler metal (170-230 HV0.3). The compressive load values of the diamond grits brazed with Cu-based or Ni-based filler metal were 93.7 and 49.2% of the original diamond, and the TI values were 83.7 and 59.8% of the original diamond. Grinding experiments for failure mode in monolayer tools revealed that the tools brazed with Cu-based filler metal had a lower macro-fracture ratio than those brazed using the Ni-based filler.
机译:使用Cu-Sn-Cr和Ni-Cr-B-Si钎料钎焊金刚石磨粒,并检查钎焊磨粒的微观结构(SEM、EDS、XRD)、显微硬度和抗压强度。结果表明,铜基钎料组织均匀,由α-Cu+(α-Cu+δ)组成。由于形成了薄的碳化物反应层,提高了金刚石与钢之间的结合强度,因此其对金刚石的润湿性优于镍基填料。铜基填料减少了对金刚石的热损伤。填充金属中的铬扩散到钢基体上,在填料/钢基体界面形成反应层。镍钎料(810-830 HV0.3)的显微硬度显著高于铜钎料(170-230 HV0.3)。用铜基或镍基钎料钎焊的金刚石颗粒的压缩载荷值分别为原始金刚石的93.7%和49.2%,TI值分别为原始金刚石的83.7%和59.8%。单层刀具失效模式的磨削试验表明,铜基钎料钎焊的刀具宏观断裂率低于镍基钎料钎焊的刀具。

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