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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Microstructure, grain size distribution and grain shape in WC-Co alloys sintered at different carbon activities
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Microstructure, grain size distribution and grain shape in WC-Co alloys sintered at different carbon activities

机译:不同碳活度烧结WC-Co合金的显微组织,晶粒尺寸分布和晶粒形状

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摘要

The properties of cemented carbides strongly depend on the WC grain size and it is thus crucial to control coarsening of WC during processing. The aim of this work was to study the effect of sintering at different carbon activities on the final microstructure, as well as the coarsening behavior of the WC grains, including the size distribution and the shape of WC grains. These aspects were investigated for five WC-Co alloys sintered at 1410 °C for 1 h at different carbon activities in the liquid, in the range from the graphite equilibrium (carbon activity of 1) to the eta (M_6C) phase equilibrium (carbon activity of 0.33). The grain size distribution was experimentally evaluated for the different alloys using EBSD (electron backscatter diffraction). In addition, the shape of the WC grains was evaluated for the different alloys. It was found that the average WC grain size increased and the grain size distribution became slightly wider with increasing carbon activity. Comparing the two three-phase (WC-Co-eta and WC-Co-graphite) alloys a shape change of the WC grains was observed with larger grains having more planar surfaces and more triangular shape for the WC-Co-graphite alloy. It was indicated that in alloys with a relatively low volume fraction of the binder phase the WC grain shape is significantly affected by impingements. Moreover, after 1 h of sintering the WC grains are at a non-equilibrium state with regards to grain morphology.
机译:硬质合金的性能在很大程度上取决于WC的晶粒尺寸,因此在加工过程中控制WC的粗化至关重要。这项工作的目的是研究在不同的碳活度下烧结对最终组织的影响,以及碳化钨晶粒的粗化行为,包括碳化钨晶粒的尺寸分布和形状。研究了五种WC-Co合金在1410°C烧结1 h在液体中具有不同碳活度的这些方面,其范围从石墨平衡(碳活度为1)到eta(M_6C)相平衡(碳活度) 0.33)。使用EBSD(电子背散射衍射)通过实验评估了不同合金的晶粒尺寸分布。另外,对不同合金评估了WC晶粒的形状。发现随着碳活性的增加,平均WC晶粒尺寸增加并且晶粒尺寸分布变得稍宽。比较这两种三相合金(WC-Co-eta和WC-Co-石墨),观察到WC晶粒的形状变化,其中较大的晶粒具有更多的平面和WC-Co-石墨合金更三角形的形状。已经表明,在粘合剂相的体积分数相对较低的合金中,WC晶粒形状受冲击的影响很大。此外,在烧结1小时后,WC晶粒在晶粒形态方面处于非平衡状态。

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