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Effect of sol-gel boehmite infiltration on tribological and mechanical behavior of brake lining materials

机译:溶胶-凝胶勃姆石的渗透对制动衬片材料的摩擦学和力学性能的影响

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This paper studies the effect of vacuum infiltration boehmite gel on tribological and mechanical behavior of brake lining materials. Experimental results indicate that open porosity decreased and bulk density increased with the numbers of infiltration cycle. The hardness of the infiltrated specimen increases with the infiltration cycle and sample depth but seem less sensitive to the number of infiltration cycle at higher infiltration cycle. The friction coefficient and weight loss of the infiltrated specimen are more stable and lower than that of the green specimen. As the number of infiltration cycle increase, average friction coefficients at different sample depth are more similar. Mass losses of specimens at different sample depth were directly related to their average friction coefficient values. The higher the average friction coefficient, the larger were the mass loss. According to the cross-section SEM observations, the pores decreased as the infiltration cycle progressed. X-ray mapping analyses reveal that the efficiency of infiltration decreases with the deeper sample depth. Morphological observations also show that the number of open pores at surface site for these materials decreases and they exhibit a denser and smoother morphology as the number of infiltration cycle increases. Furthermore, as the number of infiltration cycle increases, the friction behavior at the surface site of infiltrated specimens becomes more sensitive to the presentation of γ-Al{sub}2O{sub}3 particles. The γ-Al{sub}2O{sub}3 particle with higher density and hardness on the sliding surface was more easily to break loose during the wear test and cause the larger mass loss.
机译:本文研究了真空渗透勃姆石凝胶对制动衬片材料的摩擦学和力学行为的影响。实验结果表明,随着渗透循环次数的增加,开孔孔隙度降低,堆积密度增加。渗入样品的硬度随渗入周期和样品深度的增加而增加,但似乎对较高渗入周期的渗入周期数不太敏感。渗透试样的摩擦系数和重量损失比生坯试样更稳定且更低。随着渗透循环次数的增加,不同样品深度下的平均摩擦系数更加相似。不同深度样品的质量损失与它们的平均摩擦系数值直接相关。平均摩擦系数越高,质量损失越大。根据横截面SEM观察,随着渗透循环的进行,孔减少。 X射线图分析表明,渗透效率随样品深度的增加而降低。形态学观察还表明,这些材料在表面部位的开孔数量减少,并且随着渗透循环数量的增加,它们呈现出更致密,更光滑的形态。此外,随着渗透循环次数的增加,渗透试样表面部位的摩擦行为对γ-Al{sub} 2O {sub} 3颗粒的出现变得更加敏感。滑动表面上具有较高密度和硬度的γ-Al{sub} 2O {sub} 3颗粒在磨损试验中更容易破裂并造成更大的质量损失。

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