期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Al-Mn-Ti-P-Cu及Mg对过共晶Al-25Si合金组织及耐磨性能的影响 被引量:4
1
作者 赵高瞻 许春香 +2 位作者 张金山 杨永军 李文海 《中国有色金属学报》 EI CAS CSCD 北大核心 2011年第12期3002-3010,共9页
采用真空感应熔炼炉制备一种新型绿色中间合金Al-Mn-Ti-P-Cu,并添加金属Mg共同作用于过共晶Al-25Si合金,再对其进行适当热处理,最后检测实验效果,分析变质、强化、磨损机制。结果表明:该中间合金对组织中粗大的初、共晶硅及α(Al)均有... 采用真空感应熔炼炉制备一种新型绿色中间合金Al-Mn-Ti-P-Cu,并添加金属Mg共同作用于过共晶Al-25Si合金,再对其进行适当热处理,最后检测实验效果,分析变质、强化、磨损机制。结果表明:该中间合金对组织中粗大的初、共晶硅及α(Al)均有明显细化作用;变质后,添加适量Mg可将Mg2Si强化相以相对细小形态引入基体,并最终在热处理后呈颗粒状均匀弥散分布基体中;随着组织的细化以及基体强度和硬度的提高,合金的磨损机制由磨粒磨损和粘着磨损的混合型磨损转化为单一的磨粒磨损,同时磨损质量损失降幅达46.6%,从而获得一种较理想的高强耐磨活塞材料。 展开更多
关键词 过共晶高硅铝合金 al-mn-ti-p-cu中间合金 Mg 变质 磨损机理
下载PDF
Efects of Al-Mn-Ti-P-Cu master alloy on microstructure and properties of Al-25Si alloy
2
作者 Xu Chunxiang Zhao Gaozhan Zhang Jinshan 《China Foundry》 SCIE CAS 2013年第5期325-330,共6页
To obtain a higher microstructural refining efficiency, and improve the properties and processing ability of hypereutectic AI-25Si alloy, a new environmentally friendly AI-20.6Mn-12Ti-0.9P-6.1Cu (by wt.%) master all... To obtain a higher microstructural refining efficiency, and improve the properties and processing ability of hypereutectic AI-25Si alloy, a new environmentally friendly AI-20.6Mn-12Ti-0.9P-6.1Cu (by wt.%) master alloy was fabricated; and its modification and strengthening mechanisms on the AI-25Si alloy were studied. The mechanical properties of the unmodified, modified and heat treated alloys were investigated. Results show that the optimal addition amount of the AI-20.6Mn-12Ti-0.9P-6.1Cu master alloy is 4wt.%. In this case, primary Si and eutectic Si as well as e-AI phase were clearly refined, and this refining effect shows an excellent long residual action as it can be heat-retained for at least 5 h. After being T6 heat treated, the morphology of primary and eutectic Si in the AI-25Si alloys with the addition of 4wt.% AI-20.6Mn-12Ti- 0.9P-6.1Cu alloy changes into particles and short rods. The average grain size of the primary and eutectic Si decreases from 250 IJm (unmodified) to 13.83 pm and 35 IJm (unmodified) to 7 tim; the e-Al becomes obviously finer and the distribution of Si phases tends to be uniform and dispersed. Meanwhile, the tensile properties are improved obviously; the tensile strengths at room temperature and 300 ℃ reach 241 MPa and 127 MPa, increased by 153.7% and 67.1%, respectively. In addition, the tensile fracture mechanism changes from brittle fracture for the alloy without modification to ductile fracture after modification. Modifying the morphology of Si phase and strengthening the matrix can effectively block the initiation and propagation of cracks, thus improving the strength of the hypereutectic AI-25Si alloy. 展开更多
关键词 Al-25Si alloy al-mn-ti-p-cu master alloy MODIFICATION MICROSTRUCTURE properties
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部