首页> 外文期刊>Journal of Materials Engineering and Performance >Thermal Treatment, Sliding Wear and Saline Corrosion of Al In Situ Reinforced with Mg 2Si and Ex Situ Reinforced with TiC Particles
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Thermal Treatment, Sliding Wear and Saline Corrosion of Al In Situ Reinforced with Mg 2Si and Ex Situ Reinforced with TiC Particles

机译:用Mg <下标> 2 Si和Ex原位加固Al原位的热处理,滑动磨损和盐水腐蚀,用TIC粒子加固

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摘要

The main objective of this work is to produce a composite consisting of (a) a cast heat-treatable Al-Mg-Si alloy with high contents of Mg for corrosion resistance and Si to offset the Mg-due poor castability (in situ hypoeutectic Mg~(2)Si/Al composite) and (b) TiC particles at high enough volume fractions (≤?15%), in order to achieve a satisfactory combination of wear and corrosion performance. TiCp/Al-7Mg-5Si (wt.%) composites were produced by flux-assisted casting followed by solution and aging heat treatment. Solution treatment led to a relatively uniform dispersion and shape rounding of Mg~(2)Si precipitates and Si particles. TiC particle addition resulted in refinement of primary Al, modification of the Mg~(2)Si Chinese script morphology and refinement/spheroidization of primary Mg~(2)Si. Heat treatment combined with TiC addition notably improved the sliding wear resistance of Al-7Mg-5Si. A wear mechanism has been proposed. The TiC/Al interfaces remained intact of corrosion during potentiodynamic polarization of the heat-treated materials in 3.5?wt.% NaCl. Different main forms of localized corrosion in 3.5?wt.% NaCl were identified for each TiC content (0, 5, 15?vol.%), depending on specific degradation favoring microstructural features (topology/size/interface wetting) at each composition.
机译:本作作品的主要目的是生产由(a)的铸造热处理Al-mg-Si合金组成的复合材料,其具有高含量的Mg,用于耐腐蚀性和Si,以抵消Mg-Publi-Poct actability(原位低分解Mg 〜(2)Si / Al复合材料)和(B)在足够高的体积分数(≤α15%)的Tic颗粒,以实现磨损和腐蚀性的令人满意的组合。通过助焊剂辅助浇铸,然后溶液和老化热处理生产TiCP / Al-7mg-5Si(Wt。%)复合材料。溶液处理导致Mg〜(2)Si沉淀物和Si颗粒的相对均匀的分散体和形状圆形。 TIC颗粒添加导致原代Al的细化,Mg〜(2)Si中文脚本形态和细化/球化的原发性mg〜(2)Si。热处理结合TIC添加显着提高了Al-7mg-5si的滑动耐磨性。已经提出了一种磨损机制。 TiC / Al界面保持完整的腐蚀在3.5〜wt.%NaCl中的热处理材料的电位正极极化期间。 3.5·wt的不同主要形式的局部腐蚀。根据每个组合物的微观结构特征(拓扑/尺寸/界面润湿)的特异性降解鉴定%NaCl%NaCl。

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