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Study on Microstructure and Mechanical Properties of WC-10Ni3Al Cemented Carbide Prepared by Different Ball-Milling Suspension

机译:不同球磨悬浮液制备WC-10Ni3Al硬质合金的组织和力学性能

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摘要

In this paper, WC-10Ni3Al cemented carbides were prepared by the powder metallurgy method, and the effects of ball-milling powders with two different organic solvents on the microstructure and mechanical properties of cemented carbides were studied. We show that the oxygen in the organic solvent can be absorbed into the mixed powders by ball-milling when ethanol (CH3CH2OH) is used as a ball-milling suspension. This oxygen leads to the formation of α-Al2O3 during sintering, which improves the fracture toughness, due to crack deflection and bridging, while the formation of η-phase (Ni3W3C) inhibits the grain growth and increases the hardness. Alternatively, samples milled using cyclohexane (C6H12) showed grain growth during processing, which led to a decrease in hardness. Therefore, the increase of oxygen content from using organic solvents during milling improves the properties of WC-Ni3Al composites. The growth of WC grains can be inhibited and the hardness can be improved without loss of toughness by self-generating α-Al2O3 and η-phase (Ni3W3C).
机译:本文采用粉末冶金法制备了WC-10Ni3Al硬质合金,研究了两种有机溶剂球磨粉对硬质合金组织和力学性能的影响。我们表明,当乙醇(CH3CH2OH)用作球磨悬浮液时,有机溶剂中的氧可通过球磨吸收到混合粉末中。这种氧导致在烧结过程中形成α-Al2O3,由于裂纹变形和桥接而提高了断裂韧性,而形成η相(Ni3W3C)则抑制了晶粒长大并提高了硬度。另外,使用环己烷(C6H12)研磨的样品在加工过程中会出现晶粒长大,从而导致硬度降低。因此,在研磨过程中通过使用有机溶剂增加氧含量可改善WC-Ni3Al复合材料的性能。通过自生α-Al2O3和η相(Ni3W3C),可以抑制WC晶粒的生长并提高硬度,而不会损失韧性。

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