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Design and Preparation of Al_2O_3/TiC/CaF_2 Self-lubricating Ceramic Tool

机译:Al_2O_3 / TiC / CaF_2自润滑陶瓷刀具的设计与制备

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For friction design, the antifriction model of self-lubricating tool was built. Al_2O_3/TiC/CaF_2 was prepared, and the chemical compatibility of Al_2O_3/TiC/CaF_2 was analyzed and calculated and the results were verified by X-ray diffraction patterns. The microstructure design of self-lubricating tool material was discussed. The results show that it can reduce the friction coefficient if solid lubricating film can be produced on the friction interface, even the lubricating film can't completely be formed on the friction interface. Under high temperature, there were no reactions in Al_2O_3/TiC/CaF_2. To form continuous net structure of matrix and reduce the friction, the solid lubricants content should be moderate. According to analysis of the particle packing ways, the radius ratio between solid lubricant particles and ceramic matrix particles was confirmed and it should be within the scope of 0.225 ≤ r / R ≤ 0.414.
机译:为了进行摩擦设计,建立了自润滑工具的减摩模型。制备了Al_2O_3 / TiC / CaF_2,分析计算了Al_2O_3 / TiC / CaF_2的化学相容性,并通过X射线衍射图谱验证了结果。讨论了自润滑工具材料的微观结构设计。结果表明,即使在摩擦界面上不能形成完整的润滑膜,也能降低摩擦系数。在高温下,Al_2O_3 / TiC / CaF_2中没有反应。为了形成基体的连续网状结构并减少摩擦,固体润滑剂的含量应适中。通过对颗粒堆积方式的分析,确定了固体润滑剂颗粒与陶瓷基体颗粒之间的半径比,应在0.225≤r/R≤0.414的范围内。

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