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Effect of the rotating speed of centrifugal machine on Microstructures and properties of Recycled WC_P/Fe-C composites

机译:离心机旋转速度对再生WC_P / Fe-C复合材料的微观结构和性能的影响

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The dead or scrap WC__P/Fe-C composites parts were remelted via medium frequency induction furnace. Two recycled composites rings were made of the remelted mixture by centrifugal casting method at 720rpm and 920rpm, respectively. The effect of rotating speed of centrifugal machine on microstructures and properties of the recycled composites rings were investigated by mechanical property tester, SEM, EDS, and XRD. The results show that the recycled rings are a composite structure consisting of outer recycled composites region reinforced with undissoved WC_P and core Fe-C alloy region unreinforced. The undissoved WC_P-distribution in the recycled composites region is even. At the rotating speed of 720 rpm, the particle volume fraction in the recycled composites region reaches 54 vol.%, the hardness and impact toughness attain to HRC55.8 and 3.5J/cm~2, respectively. As the rotating speed is raised to 920 rpm, the particle volume fraction rises to about 70 vol.%, the hardness increases to HRC63.3 and yet the impact reduces to 2.8 J/cm~2. The microstructure in the inner Fe-C alloy region consists of bainitic, precipitated carbides with short rod like shape and graphite phase. Finally, the high-speed sliding wear behaviour of the recycled composites rings was investigated in the paper.
机译:通过中频感应炉重新熔断死或废料WC__P / FE-C复合材料。通过以720rpm和920rpm的离心铸造方法通过离心铸造方法制成两个再循环复合材料环。通过机械性能测试仪,SEM,EDS和XRD研究了离心机对离心机的微观结构和性能的影响和性能的影响。结果表明,再循环环是由具有未接受的WC_P和核心Fe-C合金区域增强的外再循环复合材料区组成的复合结构。再生复合材料区域中的未接待的WC_P分布均匀。以720rpm的旋转速度,再生复合材料区的颗粒体积分别达到54体积%,硬度和冲击韧性分别达到HRC55.8和3.5J / cm〜2。随着旋转速度升至920rpm,粒子积分数上升至约70体积%。%,硬度增加到HRC63.3,但冲击减少至2.8J / cm〜2。内部Fe-C合金区域的微观结构由贝氏体,沉淀的碳化物,具有短棒状和石墨相。最后,在纸上研究了再循环复合材料环的高速滑动磨损行为。

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