期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
机械合金化制备可降解Mg-Zn合金:用分式析因设计对其弹性模量和质量损失进行统计预测(英文)
1
作者 Emee Marina SALLEH zuhailawati hussain Sivakumar RAMAKRISHNAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第4期687-699,共13页
用机械合金化方法制备可降解Mg-Zn合金,并用分式析因设计法建立统计学模型来预测块体合金的弹性模量和腐蚀质量损失。研究机械合金化参数(球磨时间、球磨速度、球料比和Zn含量)及其交互作用对合金性能的影响,共涉及4因素2次重复,因此进... 用机械合金化方法制备可降解Mg-Zn合金,并用分式析因设计法建立统计学模型来预测块体合金的弹性模量和腐蚀质量损失。研究机械合金化参数(球磨时间、球磨速度、球料比和Zn含量)及其交互作用对合金性能的影响,共涉及4因素2次重复,因此进行了16次2水平分式析因设计。方差分析(ANOVA)、回归分析和R2测试结果表明此模型预测精度高。统计模型预测的可降解Mg-Zn合金的弹性模量为40.18~47.88 GPa,类似于自然骨(30-57 GPa)。添加质量分数为3%~10%Zn(9.32~15.38 mg)后,可以改善合金的耐腐蚀性能,腐蚀后纯Mg质量损失约33.74 mg。最显著的自变量是Zn含量,且只有球磨时间和球料比的交互作用具有显著性,P值小于0.05。建立的模型可以从统计学上有效预测可降解Mg-Zn合金的力学性能(通过弹性模量反映)和耐腐蚀性能(通过重量损失反映)。 展开更多
关键词 可降解Mg-Zn合金 机械合金化 分式析因设计 弹性模量 质量损失
下载PDF
Synthesis and Densification of Tungsten-Brass Composite by Mechanical Alloying
2
作者 Kahtan S. Mohammed Baba Gowon +2 位作者 Shamsul Baharin Bin Jamaluddin zuhailawati hussain Polycarp Evarastics 《Open Journal of Metal》 2015年第3期27-36,共10页
Fabrication of full-density W-brass composites is very difficult to achieve because of evaporation of zinc, insolubility of W and brass and compacts expansion. In this study, to achieve full-density W-brass composites... Fabrication of full-density W-brass composites is very difficult to achieve because of evaporation of zinc, insolubility of W and brass and compacts expansion. In this study, to achieve full-density W-brass composites, mechanical alloying (MA) and activated sintering process were utilized. Mechanical coating of W with Ni using high energy planetary ball mill was carried out. The milling was divided into two stages: to alloy and modify the surface of W with Ni for enhanced activation. The microstructure of the milled powders and sintered compacts, elemental composition and phases present were studied by using scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX) and X-ray diffraction (XRD) respectively. As-received powder compacts was also sintered under the same condition for comparison purpose. The effects of milling time on the microstructure, sinterability and the hardness of the composites were investigated. It was observed that the samples produced from 8 h milled powder had the highest relative sintered density (98% TD) and microhardness (234 Hv). On the other hand, the samples from the as-received powders expanded and had a relative sintered density of (67% TD) and microhardness as low as 24 Hv. The significance of this study is the possibility of producing W-brass composites as a cheaper alternative to W-Cu composites. 展开更多
关键词 W-Brass Mechanical ALLOYING Microstructure Expansion HARDNESS
下载PDF
The Effects of Sintering Temperature on the Densification of Mechanically Alloyed W-Brass Composites
3
作者 Baba Gowon Kahtan S. Mohammed +2 位作者 Shamsul Baharin Bin Jamaluddin zuhailawati hussain Polycarp Evarastics 《Open Journal of Metal》 2015年第3期19-26,共8页
Prealloyed (PA) and premixed (PM) W-brass with the composition of 60 wt% W, 1 wt% Ni and 39 wt% brass was sintered at the temperature of 800&degC, 920&degC and 1000&degC each. As a result of difficulties i... Prealloyed (PA) and premixed (PM) W-brass with the composition of 60 wt% W, 1 wt% Ni and 39 wt% brass was sintered at the temperature of 800&degC, 920&degC and 1000&degC each. As a result of difficulties in the densification of W-Cu and W-Cu alloys, mechanical alloying (MA) and activated sintering were combined. The powders were mechanically alloyed for 13 hours to produce nanosized W grains embedded in brass. The microstructure and properties of these composites with increase in sintering temperature has been studied. Both prealloyed and premixed composites sintered at 800&degC (solid state sintering) and 920&degC (sub-solidus state sintering) have lower sintered densities and hardness. The densification rate in the premixed composites was observed to be higher than that of the prealloyed composites. Their densification and properties increased with the increase in the sintering temperature. Premixed composite sintered at 1000&degC had 91.0% sintered density, 180 Hv microhardness against 76.0% and 133 Hv respectively for prealloyed composite at the same temperature. The values of electrical conductivity in both prealloyed and premixed composites increased with increase in temperature. 展开更多
关键词 W-Brass TEMPERATURE DENSIFICATION Prealloy HARDNESS
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部