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Wear-resistant iron-based Mn-Cu-Sn matrix for sintered diamond tools

机译:用于烧结金刚石工具的耐磨铁基Mn-Cu-Sn基质

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The objective of the present work was to determine the suitability of a new iron-based Mn-Cu-Sn matrix alloy for the manufacture of diamond-impregnated tool components. A number of specimens were consolidated by the hot press route from ball-milled powders. Density, microstructural features, phase composition, bending properties and hardness were evaluated. The results revealed excellent mechanical properties, including sigma(0.2) 850 MPa in 3-point bending and HK0.5 300. A commercial Co-WC reference matrix alloy was also produced for comparison purposes. Diamond-impregnated specimens with different matrices were tested for wear rate on abrasive sandstone using a test rig specially designed to simulate tool application conditions. The tests that involved 3- and 2-body abrasion ranked the alloys in different orders. Statistical analysis showed that the wear rate of diamond-impregnated composites was mainly affected by diamond concentration, but statistically significant contribution of the matrix resistance to 3-body abrasion was also found.
机译:本作工作的目的是确定新的铁基Mn-Cu-Sn基质合金的适用性,用于制造金刚石浸渍的工具组分。通过从球磨粉末的热压途径固结许多标本。评价密度,微观结构特征,相组合物,弯曲性能和硬度。结果显示出优异的机械性能,包括Sigma(0.2)& 3点弯曲和HK0.5和GT中的850 MPa; 300.还生产商业CO-WC参考矩阵​​合金以进行比较目的。使用专门设计用于模拟工具应用条件的试验台,测试具有不同矩阵的钻石浸渍标本。涉及3-和2体磨损的测试将合金排名不同的顺序。统计分析表明,金刚石浸渍复合材料的磨损率主要受金刚石浓度的影响,但还发现了基质抗性对3体磨损的统计显着贡献。

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