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1)  Stirring-Melt Casting
搅熔铸造
1.
SiC particulate reinforced magnesium matrix composites SiCp/AZ61 was fabricated using of Stirring-Melt Casting technique.
本文中采用了搅熔铸造法制备碳化硅颗粒增强镁基复合材料 SiCp/AZ61,通过拉伸实验、动态机械热分析和显微组织观察等方法研究了其机械性能与阻尼性能。
2)  Stirr-melting process
搅熔铸造法
3)  compocasting process
搅熔铸造工艺
1.
Firstly nano-CeO_2/Galfan composite material with the mass fraction 1% is fabricated by using compocasting process.
在不同介质中分别用球磨和超声振动对纳米C eO2颗粒进行了预处理;用搅熔铸造工艺制备了质量分数约为1%的纳米C eO2/G a lfan复合材料,用XRD(X-ray d iffration)分析了其中的物相,用场发射扫描电镜(F ie ldem iss ion scann ing e lectron m icroscopy,FE-SEM)观察了纳米C eO2颗粒在基体中的分散情况,并测试了其显微硬度;用中性盐雾腐蚀试验来评价复合材料的耐蚀性,并用XRD检测了腐蚀产物。
4)  stir-casting
搅拌铸造
1.
A new YAl_2p/Mg-14Li-1Al composites with 5wt%YAl_2p was prepared by stir-casting and its microstructures and properties are investigated systematically.
采用搅拌铸造法制备了5wt%YA l2p颗粒增强Mg-14L i-1A l合金基复合材料,研究了YA l2p/Mg-14L i-1A l复合材料的界面、组织特征,并对基体合金和复合材料的室温力学性能进行了测试。
5)  stirring casting
搅拌铸造
1.
With the aim of solving the problem of honeycomb pores in B4C/Mg-Li based composites,the forming causes of honeycomb pores in preparing B4C/Mg-Li based composites by stirring casting was investigated.
为解决搅拌铸造法制备B4C/Mg-Li基复合材料锭子中蜂窝状孔隙的问题,分析了搅拌铸造法制备的B4C/Mg-Li基复合材料锭子中蜂窝状孔隙的形成原因,探讨了搅拌工艺、搅拌杆设计、B4C粉末添加形式以及搅拌温度对降低搅拌铸造Mg-Li基复合材料蜂窝状孔隙率的影响。
2.
The quick inspecting method for stirring casting process of SiC-p/A356 composites was introduced in this paper,and the judgment of the acceptable quality with the inspect method was discussed according to the feature of stirring casting method.
针对搅拌铸造制备SiC颗粒增强铝基复合材料的特点,提出了材料复合质量的快速检验方法和质量评判方法,讨论了控制及提高材料复合质量的方法和途径。
3.
Through analyzing and studying the reaction kinetics on in-situ Al3Fe/Al composites made by stirring casting, it was found that the time of Fe and Al complete response to form in-situ intermetallic compound to strengthening the Al matrix by adding Fe powder into to Al melt with mixing way has a square relations with the formed Fe powder size in melt.
通过对搅拌铸造原位合成的Al3Fe/Al复合材料的反应动力学进行分析和研究,发现采取外加Fe粉与Al熔体搅拌,原位反应合成Al3Fe/Al复合材料;Fe与Al完全反应生成金属间化合物所需的时间,与粉末在熔体中形成的粉末团尺寸大小有平方关系;改良粉末加入方式、减小粉末在熔体中形成的粉末团初始尺寸,可显著提高反应速度,改善复合材料的组织结构。
6)  stir casting
搅拌铸造
1.
0%Si (mass fraction) composite prepared by stir casting was simulated by a modified cellular automaton method coupled with finite difference method,and 3D mathematical and numerical models under normal solidification condition were established including macro heat transfer,nucleation,equiaxed dendrite growth and particle pushing.
对搅拌铸造法制备SiC颗粒(SiC_p)增强Al-7。
2.
The research history of metal matrix composites is summarized in the paper,conventional metal matrix and types of reinforcement of metal matrix composites are introduced and especially their fabrication methods,such as stir casting、powder metallurgy and in-situ synthesis are reviewed.
系统论述了金属基复合材料研究和发展的概况,简要介绍了金属基复合材料的常用金属基体、增强体,重点阐述了金属基复合材料常用的制备技术,即:搅拌铸造法、粉末冶金法、原位生成法等。
3.
In this paper, SiCp/A356 Aluminum matrix composite was prepared successfully by stir casting process.
利用搅拌铸造技术制备SiCp/A356铝基复合材料。
补充资料:AZS熔铸砖
分子式:
CAS号:

性质:又称电熔锆刚玉砖或AZS熔铸砖,俗称白铁砖。主要由斜锆石和刚玉组成的熔铸耐火材料。属ZrO2-Al2O3-SiO2三元系统熔铸砖(AZS分别代表Al2O3、ZrO2和SiO2),含Al2O340%~50%,ZrO230%~50%,SiO210%~17%。矿物组成主要为刚玉斜锆石共晶体,其次还有少量斜锆石、铡玉及玻璃相。熔铸锆刚玉砖的体积密度为3.4~3.9g/cm3,结构很致密,耐玻璃熔液侵蚀性强,且对玻璃不着色,荷重软化开始温度在1700℃以上,耐压强度为400~500MPa。以锆英石(或工业氧化锆)和工业氧化铝为主要原料配成混合料,经电炉熔化、浇涛、退火、加工而制成。是玻璃熔窑关键部位的主要筑炉材料。

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