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Tribological Properties of AlSi12-Al2O3 Interpenetrating Composite Layers in Comparison with Unreinforced Matrix Alloy

机译:AlSi12-Al2O3互穿复合层的摩擦学性能与未增强基体合金的比较

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摘要

Alumina–Aluminum composites with interpenetrating network structures are a new class of advanced materials with potentially better properties than composites reinforced by particles or fibers. Local casting reinforcement was proposed to take into account problems with the machinability of this type of materials and the shaping of the finished products. The centrifugal infiltration process fabricated composite castings in the form of locally reinforced shafts. The main objective of the research presented in this work was to compare the tribological properties (friction coefficient, wear resistance) of AlSi12/Al2O3 interpenetrating composite layers with unreinforced AlSi12 matrix areas. Profilometric tests enabled both quantitative and qualitative analyses of the wear trace that formed on investigated surfaces. It has been shown that interpenetrating composite layers are characterized by lower and more stable coefficients of friction (μ), as well as higher wear resistance than unreinforced matrix areas. At the present stage, the study confirmed that the tribological properties of the composite layers depend on the spatial structure of the ceramic reinforcement, and primarily the volume and size of alumina foam cells.
机译:具有互穿网络结构的氧化铝-铝复合材料是一类新型的先进材料,其性能可能比由颗粒或纤维增强的复合材料更好。提出了局部铸件增强,以考虑到这类材料的可加工性和成品形状方面的问题。离心渗透过程以局部加强轴的形式制造了复合铸件。这项工作提出的研究的主要目的是比较AlSi12 / Al2O3互穿复合层与未增强AlSi12基体区域的摩擦学性能(摩擦系数,耐磨性)。轮廓分析测试可以对形成在被调查表面上的磨损痕迹进行定量和定性分析。已经表明,互穿的复合层的特征在于与未增强的基体区域相比,具有更低且更稳定的摩擦系数(μ)以及更高的耐磨性。在现阶段,研究证实复合层的摩擦学性能取决于陶瓷增强材料的空间结构,主要取决于氧化铝泡沫孔的体积和大小。

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