1)Al-Fe-V-Si alloyAl-Fe-V-Si合金
1.Effects of adding Mg and Cu elements on microstructure and mechanical properties of Al-Fe-V-Si alloy;添加Mg和Cu对Al-Fe-V-Si合金组织与性能的影响
2.Microstructure and Mechanical Properties of Al-Fe-V-Si alloy and Al-Fe-V-Si/SiCp Composite;Al-Fe-V-Si合金以及Al-Fe-V-Si/SiCp复合材料的微观组织及力学性能的研究
3.Tensile testing indicates that forging can improve the yield strength and tensile strength of Al-Fe-V-Si alloy.拉伸实验表明:锻造可以改善Al-Fe-V-Si合金的屈服强度和抗拉强度,更为重要的是,二次锻造后合金的延伸率得到了大幅度的提高,达到工业可以使用的范围。
2)Al Fe V Si alloyAl-Fe-V-Si合金
3)Al Fe V Si Nd alloyAl-Fe-V-Si-Nd合金
4)Al-Fe-V-Si-Mm alloyAl-Fe-V-Si-Mm合金
5)Fe-Si-Al alloyFe-Si-Al合金
1.High-purity Fe, Si and Al powders were used as raw materials to prepare Fe-Si-Al alloy by mechanical alloying (MA).以高纯Fe、Si、Al粉为原料,采用机械合金化法制备Fe-Si-Al合金粉末。
英文短句/例句
1.On Process and Microstructure of Fe-Al and Fe-Si-Al Alloy Prepared by Mechanical Alloying;机械合金化制备Fe-Al和Fe-Si-Al合金的工艺和微观结构研究
2.Microstructure and Properties of Extrusion Al-Si-Fe Alloy;挤压成形Al-Si-Fe合金的组织及性能
3.Control of the Second Phase Morphology in Al-Si-Fe Alloy;Al-Si-Fe合金第二相形态控制技术研究
4.Optimization of the Semi-solid Formation Technology for Al-Si-Fe Alloy;Al-Si-Fe合金半固态成形工艺优化
5.Effect of Si and ageing on properties of Fe-Al-Si damping alloysSi及时效对Fe-Al-Si阻尼合金性能的影响
6.Preparation of Fe-Si-Al Soft Magnetic Alloy by Mechanical Alloying机械合金化制备Fe-Si-Al软磁合金的研究
7.Studies on Flaky Shape, Microstructure and Electromagnetic Properties of Anti-EMI Fe-Si-Al Alloys;抗EMI Fe-Si-Al软磁合金的扁平化、微结构与电磁性能研究
8.Crystallization and Magnetic Properties of Fe-Ni-Al-Ga-P-B-Si-C Amorphous Alloys;Fe-Ni-Al-Ga-P-B-Si-C非晶合金的晶化与磁性能研究
9.An Investigation of Properties and Crystallization Kinetics of Fe-Si-B-Cu-Nb-Al Amorphous AlloysFe-Si-B-Cu-Nb-Al铁基非晶合金的性能与晶化动力学研究
10.Theoretical Analysis and Experimental Study on Thermal Reduction of Calcined Dolomite with Al-Si-Fe Ternary AlloyAl-Si-Fe三元合金热法炼镁的理论分析及试验研究(英文)
11.Investigation on the Modification of Hypereutectic Al-Si Alloy to Al-Si Alloy过共晶Al-Si合金对Al-Si合金的变质作用
12.Snoek Relaxational Peak in a Fe-Cr-Al Alloy;Fe-Cr-Al合金中的Snoek弛豫
13.The modified research of Al-10Ce master alloy on the ZL102 eutectic Al-Si alloyAl-10Ce中间合金对ZL102共晶Al-Si合金的变质研究
14.Study on the Bi-Added Hypereutectic Al-Si Alloys;Bi合金化过共晶Al-Si合金的研究
15.The Mechanical Alloying of Fe-Ni-Al and Fe-Ni-Ce Systems;Fe-Ni-Al和Fe-Ni-Ce三元合金的机械合金化研究
16.Grain Refinement Behavior of Al-10%Mg Master Alloy on Al-5%Fe AlloyAl-10%Mg中间合金细化Al-5%Fe合金的研究
17.THE STUDY OF Al-Fe BASED ALLOYS BY MECHANICAL ALLOYING;Fe-Al基合金的机械合金化研究
18.Formation Mechanism of Spheroidal Primary Si in Hypereutectic Al-Si Alloys过共晶Al-Si合金中球团状初生Si的形成机理
相关短句/例句
Al Fe V Si alloyAl-Fe-V-Si合金
3)Al Fe V Si Nd alloyAl-Fe-V-Si-Nd合金
4)Al-Fe-V-Si-Mm alloyAl-Fe-V-Si-Mm合金
5)Fe-Si-Al alloyFe-Si-Al合金
1.High-purity Fe, Si and Al powders were used as raw materials to prepare Fe-Si-Al alloy by mechanical alloying (MA).以高纯Fe、Si、Al粉为原料,采用机械合金化法制备Fe-Si-Al合金粉末。
6)Al-Si-Fe alloyAl-Si-Fe合金
1.Wear Behavior of Al-Si-Fe Alloy in Semi-solid Squeezing Casting;半固态挤压Al-Si-Fe合金磨损行为的研究
延伸阅读
Fe3Al基金属间化合物高温合金Fe3Al基金属间化合物高温合金Fe_(3)Al-base intermetallic compound superalloy Fe3AI JIJ一nshujlon huahewu gaowen heJinFe3AI基金属间化合物高温合金(F e3AI一baseintermetallie eomPound suPeralloy)以Fe3AI相为基体的金属间化合物高温合金。该合金具有优异的高温抗氧化、抗硫化腐蚀性能,合金密度较小,因为不含贵重元素,故价格低廉,很适合于在高温氧化、硫化腐蚀的环境中工作。Fe3AI合金有两个不足之处:室温很脆,伸长率仅3%左右;高温强度不足。通过添加合金元素铬、硼,采取温加工工艺和合理的热处理制度,基本上解决了室温脆性问题,室温拉伸伸长率提高到15%左右。提高强度的途径是进行合金化,添加错、妮、铝等元素进行固溶强化和析出第二相进行时效强化,使合金室温拉伸强度达到l000MPa,600℃拉伸强度达到560MPa。Fe3AI基金属间化合物高温合金可以制造加热元件、炉子紧固件、热交换器、汽车用管材、石油管道和磁性元件等。该合金在真正走向实用之前,应在冶炼工艺和热加工工艺方面进行改进。 (}马培立卜
