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Erosive wear properties of ZA-27 alloy-based nanocomposites: Influence of type, amount, and size of nanoparticle reinforcements

机译:ZA-27合金纳米复合材料的腐蚀磨损性能:纳米粒子增强型型,量和尺寸的影响

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摘要

Abstract Metal matrix nanocomposites (MMnCs) comprise a metal matrix filled with nanosized reinforcements with physical and mechanical properties that are very different from those of the matrix. In ZA-27 alloy-based nanocomposites, the metal matrix provides ductility and toughness, while usually used ceramic reinforcements give high strength and hardness. Tested ZA-27 alloy-based nanocomposites, reinforced with different types (SiC and Al2O3), amounts (0.2 wt.%, 0.3 wt.%, and 0.5 wt.%) and sizes (25 nm, 50 nm, and 100 nm) of nanoparticles were produced through the compocasting process with mechanical alloying pre-processing (ball milling). It was previously shown that the presence of nanoparticles in ZA-27 alloy-based nanocomposites led to the formation of a finer structure in the nanocomposites matrix and an improvement in the basic mechanical properties (hardness and compressive yield strength) through the enhanced dislocation density strengthening mechanism. Solid particle erosive wear testing demonstrated that these improvements were followed with an increase in the erosive wear resistance of tested nanocomposites, as well. Additionally, by analyzing the influences of type, amount, and size of nanoparticles on the erosive wear resistance of nanocomposites, it was demonstrated that there is an optimal amount of nanoparticles, which in our case is 0.3 wt.%, and that the presence of SiC nanoparticles and smaller nanoparticles in nanocomposites had more beneficial influence on erosive wear resistance.
机译:抽象金属基质复合材料(MMnCs)包括填充有与不同于所述矩阵的非常不同的物理和机械性质的纳米增强材料的金属基体。在ZA-27合金系纳米复合材料,金属基体提供延展性和韧性,而通常使用的陶瓷加强件得到较高的强度和硬度。测试ZA-27合金系纳米复合材料,具有不同类型的碳化硅(SiC和Al 2 O),量(0.2重量%,0.3重量%和0.5重量%)和尺寸(25纳米,50纳米和100纳米)增强的纳米颗粒通过与机械合金化前处理(球磨)的compocasting方法生产。这是以前表明,纳米颗粒的通过增强错密度强化存在下,在导致了纳米复合材料基体中的精细结构的形成,并在基本力学性能的改善(硬度和压缩屈服强度)ZA-27合金系纳米复合材料机制。固体颗粒侵蚀磨损测试表明,这些改进随访与增加测试纳米复合材料的耐冲蚀磨损,以及。此外,通过分析类型,数量,以及纳米复合材料的耐冲蚀磨损纳米粒子的大小的影响,证明有纳米颗粒,其在我们的情况下为0.3%(重量)的最佳量,并且存在碳化硅纳米颗粒和纳米复合材料中的纳米颗粒越小对耐冲蚀磨损更有益的影响。

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