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Mechanical Properties of Mo Fiber-reinforced Resin Mineral Composites with Different Mass Ratio of Resin and Hardener 被引量:3
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作者 张超 张进生 +1 位作者 REN Xiuhua ZHANG Jianhua 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第2期383-390,共8页
Mo fibers were added to RMC with different mass ratios of resin and hardener to improve its mechanical properties. The influences of fiber surface state and hardener content on interface bonding strength and mechanica... Mo fibers were added to RMC with different mass ratios of resin and hardener to improve its mechanical properties. The influences of fiber surface state and hardener content on interface bonding strength and mechanical properties of RMC were studied, respectively. Furthermore, strain values of typical measuring points on samples of Mo fiber reinforced RMC(MFRRMC) under different loads were obtained by experiments and finite element analysis. The experimental results prove that scrap Mo fibers can improve interface bonding strength and mechanical properties of RMC better than new smooth Mo fibers because of the discharge pits randomly distributed on the surface of scrap fibers. With the decrease of hardener content, not only interface bonding strength between fiber and matrix, but also compression and flexural strength of MFRRMC increase firstly and then decrease. The properties are best while the mass ratio of resin and hardener reaches 4:1. It is indicated that finite element calculation data basically agree with experimental data by comparison of strain values on typical measuring points, which can provide an important intuitive reference for successive study on other mechanical properties of MFRRMC, validating the correctness of simulation method as well. 展开更多
关键词 mo FIBER RESIN mineral composite(RMC) reinforcing effect compression STRENGTH flexural STRENGTH bonding STRENGTH
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喷涂法制Mo丝增强NiAl单层复合材料的研究
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作者 张志刚 宫声凯 徐惠彬 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2007年第8期1386-1389,共4页
采用等离子喷涂工艺,制备了Mo丝增强的NiAl基单层复合材料。系统地研究了该复合材料的显微组织,Mo丝/NiAl界面的结合特性以及在不同热处理状态下复合材料的界面行为。研究表明:制备态单层复合材料的基体由强烈变形(扁平化)和高速结晶的N... 采用等离子喷涂工艺,制备了Mo丝增强的NiAl基单层复合材料。系统地研究了该复合材料的显微组织,Mo丝/NiAl界面的结合特性以及在不同热处理状态下复合材料的界面行为。研究表明:制备态单层复合材料的基体由强烈变形(扁平化)和高速结晶的NiAl熔滴颗粒形成的层状结构构成,颗粒间有较多的分界面,Mo丝/基体的界面结合强度不高,其结合为非冶金结合。800℃,3h退火后,Mo丝/基体界面的结合情况得到改善,复合材料的性能提高。更高温长时处理后,基体元素Ni在Mo丝中形成扩散层,在界面处基体一侧和基体中结晶的熔滴颗粒分界面处的铝的氧化物层明显增厚。 展开更多
关键词 mo丝增强nial单层复合材料 等离子喷涂 界面
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等离子喷涂制备W丝增强NiAl单层复合材料的界面研究
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作者 张志刚 宫声凯 徐惠彬 《航空学报》 EI CAS CSCD 北大核心 2007年第B08期189-192,共4页
采用等离子喷涂法制备了W丝增强NiAl单层复合材料并研究了该材料内部与界面相关的问题。研究表明:作为增强体的W丝与NiAl基体具有较好的稳定性,制备态的W/NiAl界面为非冶金结合,其界面处无元素的互扩散及界面反应发生;在模拟热压工艺的... 采用等离子喷涂法制备了W丝增强NiAl单层复合材料并研究了该材料内部与界面相关的问题。研究表明:作为增强体的W丝与NiAl基体具有较好的稳定性,制备态的W/NiAl界面为非冶金结合,其界面处无元素的互扩散及界面反应发生;在模拟热压工艺的两种退火热处理(800℃/3h,1200℃/48h)状态下,W丝/NiAl界面的结合强度增加,但界面处未出现可见的元素的互扩散层,只是W丝与结晶后NiAl熔滴颗粒之间的氧化物层明显增厚。另一方面,等离子喷涂工艺会给NiAl基体内部带来氧化物的内分界面,该界面的存在会导致NiAl基体的脆断。 展开更多
关键词 W丝增强nial单层复合材料 等离子喷涂 界面 稳定性
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