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On the Microstructure Strength Fracture and Tribological Properties of Iron-Based MMCs with Addition of Mixed Carbide Nanoparticulates

机译:在混合碳化物纳米颗粒中的铁基MMC的微观结构强度裂缝和摩擦学性质

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摘要

In this paper, the features of the strength, fractures, and tribological behavior of metal-matrix composites based on the FeGr1 material are discussed. To improve the material properties, a mixture of SiC, Al O and C nanoparticulates have been added to an iron-based matrix. The simplex lattice design method and hardness, compression, and bending tests were used to determine the mechanical properties. Scanning electron microscopy was applied for fracture features analysis. Different fracture types, mainly trans-crystalline quasi-brittle and brittle fracture or inter-granular fracture and microcracks were registered for the composites tested. Depending on the type and amount of ceramic additives, significant changes in strength, as well as in the fracture features of the metal-matrix composites (MMCs), were observed. Based on tribological tests, changes in the momentary coefficients of friction, temperature of the friction surface, and wear rate of the composites with nanoparticulates were described. An analysis of the worn surface morphology revealed changes in the wear process depending on the MMC composition. It was shown that the use of hybrid mixed additives based on hard ceramic nanoparticulates improved both strength and tribological properties of composites.
机译:本文讨论了基于FEGR1材料的金属 - 基质复合材料的强度,裂缝和摩擦学行为的特征。为了改善材料特性,已加入SiC,Al O和C纳米颗粒的混合物以加入铁基基质中。单纯形晶格设计方法和硬度,压缩和弯曲试验用于确定机械性能。扫描电子显微镜用于裂缝特征分析。针对测试的复合材料注册了不同的骨折类型,主要是反式结晶准脆性和脆性骨折或颗粒状骨折和微裂纹。根据陶瓷添加剂的类型和量,观察到强度的显着变化,以及金属 - 基质复合材料(MMC)的裂缝特征。基于摩擦学检验,描述了瞬时系数的摩擦系数,摩擦表面的温度和复合材料的磨损率的变化。磨损表面形态的分析揭示了磨损过程的变化,这取决于MMC组成。结果表明,基于硬陶瓷纳米颗粒的杂化混合添加剂改善了复合材料的强度和摩擦学性质。

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