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首页> 外文期刊>Powder Metallurgy and Metal Ceramics >A NEW METHOD OF MIXING QUALITY ASSESSMENT FOR FRICTION MATERIAL CONSTITUENTS TOWARD BETTER MECHANICAL PROPERTIES
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A NEW METHOD OF MIXING QUALITY ASSESSMENT FOR FRICTION MATERIAL CONSTITUENTS TOWARD BETTER MECHANICAL PROPERTIES

机译:一种混合摩擦材料成分对更好机械性能的新方法

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摘要

Friction materials used for brake lining are highly heterogeneous composites for which the link between formulation, the resulting material properties, and performances is not well understood. Their heterogeneity is induced by the variety of ingredients (morphology, size, properties etc.) and the manufacturing process which includes a succession of steps: mixing, preforming, hot molding, and post-curing. Among these steps, mixing have a great impact on the material microstructure in terms of ingredient distribution and, therefore, on its mechanical properties. However, mastering the mixing process is very difficult, since it is still based on the empirical experience of manufacturers. In this study, a new method and methodology of mixing state evaluation of friction material constituents was developed. First, it consists on studying constituents' physical properties permitting to facilitate the investigation of mixing state evolution. This investigation includes two steps: binary and multi-constituent mixture study. This work suggests a non-time-consuming image analysis method using two statistical coefficients to evaluate the mixing state, which are Kurtosis and Coefficient of Variation (C.V). The latter enable to describe the mixing quality and state evolution at the surface of the mixing volume as well as to evaluate the mixing time.
机译:用于制动衬里的摩擦材料是高度异质的复合材料,其配方之间的连杆,所得到的材料性质和性能之间的链接还不满意。它们的异质性由各种成分(形态,尺寸,性质等)和制造过程诱导,所述制造过程包括连续步骤:混合,预成型,热成型和后固化。在这些步骤中,混合在成分分布方面对材料微观结构具有很大的影响,因此在其机械性能下对材料微观结构产生了很大的影响。然而,掌握混合过程非常困难,因为它仍然基于制造商的经验经验。在该研究中,开发了一种新的混合状态评估摩擦材料成分的方法和方法。首先,它包括研究成分的物理性质,允许促进混合状态进化的调查。本研究包括两个步骤:二元和多重组分混合物研究。这项工作表明,使用两个统计系数的非耗费图像分析方法来评估混合状态,这是峰和变异系数(C.V)。后者使得能够描述混合体积表面的混合质量和状态演变,以及评估混合时间。

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