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Microstructural, Mechanical, and Tribological Properties of Rice Husk-Based Carbon: Effect of Carbonizing Temperature

机译:基于稻壳碳的微观结构,机械和摩擦学性质:碳化温度的影响

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摘要

In this study, we investigated the microstructural, mechanical, and tribological properties of rice husk (RH)-based carbon carbonized at various carbonizing temperatures under dry conditions. All samples exhibited amorphous carbon structures and the X-ray diffraction spectra of the samples carbonized at 1300 and 1400 degrees C indicated the presence of a polymorphic crystals of silica. The hardness increased with temperature due to the densification of the structure and the presence of the hard crystalline silica. At low normal loads, the mean friction coefficient of the material decreased as the carbonizing temperature was increased from 600 to 800 degrees C and slightly decreased as the carbonizing temperature was further increased from 800 to 1400 degrees C. At the highest load, all samples, except for that carbonized at 600 degrees C, exhibited extremely low friction coefficients (around 0.05). The wear rates of the all samples were smaller than 10(-5) mm(3)/N center dot m, indicating that RH carbon exhibits sufficient wear resistance. A Raman spectroscopic analysis of the worn surface of a steel ball revealed that the transfer layer at 600 degrees C had a less graphitic structure compared to the other carbonizing temperature. Based on these findings, we recommend an optimal carbonizing temperature for applications of sliding materials exposed to dry sliding contact.
机译:在本研究中,我们研究了在干燥条件下各种碳化温度下碳化的稻壳(RH)的微观结构,机械和摩擦学性质。所有样品都表现出非晶碳结构和在1300和1400℃下碳化的样品的X射线衍射光谱表明存在二氧化硅的多态性晶体。由于结构的致密化和硬结晶二氧化硅的存在,硬度随温度而增加。在低正常载荷时,随着碳化温度从600升增加,由于碳化温度升高,随着碳化温度从800至1400℃的碳化温度进一步增加,略微降低,材料的平均摩擦系数略微降低。除了600℃的碳化外,表现出极低的摩擦系数(约0.05)。所有样品的磨损率小于10(-5)mm(3)/ n中心点M,表明RH碳表现出足够的耐磨性。钢球磨损表面的拉曼光谱分析显示,与其他碳化温度相比,600摄氏度的转移层具有较少的石墨结构。基于这些调查结果,我们建议最佳的碳化温度,以适应暴露于干滑动接触的滑动材料。

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