CN 41-1243/TG ISSN 1006-852X
Volume 38 Issue 2
Apr.  2018
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CHEN Kexin, LIU Yibo, CAO Caiting, LIU Wei. Performance optimization of Al-based bond matrix in metallic bond diamond wheel[J]. Diamond & Abrasives Engineering, 2018, 38(2): 20-25. doi: 10.13394/j.cnkij.gszz.2018.2.0005
Citation: CHEN Kexin, LIU Yibo, CAO Caiting, LIU Wei. Performance optimization of Al-based bond matrix in metallic bond diamond wheel[J]. Diamond & Abrasives Engineering, 2018, 38(2): 20-25. doi: 10.13394/j.cnkij.gszz.2018.2.0005

Performance optimization of Al-based bond matrix in metallic bond diamond wheel

doi: 10.13394/j.cnkij.gszz.2018.2.0005
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  • Rev Recd Date: 2018-01-05
  • Available Online: 2022-07-07
  • Commonly used alloying elements, namely Cu, Zn, Mg and Mn, were selected to strengthen aluminum with AlSi20 as the main component. The factors, each with three levels, were marked as A, B, C and D, respectively. The L9(34) orthogonal test scheme was developed. Al-based bonding matrix was prepared by hot pressing sintering. The effects of alloying elements on the properties of the matrix were studied by means of Archimedes drainage method, rockwell hardness test, three-point bending strength test and scanning electron microscope. Results show that the addition of alloy elements reduces the sintering temperature of AlSi20 and promotes the densification of sintering. The influence of alloy elements on hardness is Mn>Zn>Cu>Mg. The influence of bending strength is Cu>Mn>Zn>Mg. In conclusion, the combination of A1B2C2D2 and A1B3C3D3 have high hardness and bending strength, whose matrices are closely tied to diamond. The fracture mode of binding agent is brittle fracture, which can improve the self-dressing ability of diamond grinding wheel.

     

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