In this paper, the alloying principle of RE Mg alloy was described, at the same time, the processes for preparation of RE Mg master alloy and smelting of RE Mg alloy were introduced in detail. 阐述了稀土镁合金的合金化原理,对稀土-镁中间合金的制备方法及稀土镁合金的熔炼工艺作了较为详细的介绍。
Preparation of A1-Ti-C Master Alloy Grain Refiner A1-Ti-C中间合金晶粒细化剂的制备
Deformation Behavior of Al-Ti-B Master Alloy during ECAP Process 铝-钛-硼中间合金在等径角挤压过程中的变形行为
Influence of Laser Parameters on Microstructure and Property of Al-Ti-B Master Alloy Prepared by Laser-induced SHS 激光辐照参数对自蔓延合成铝-钛-硼中间合金组织和性能的影响
Effects of master alloy of quasicrystal containing magnesium additions and solution treatment on microstructure and mechanical properties of AZ91 magnesium alloy were studied. 研究了镁基准晶中间合金和固溶处理工艺对AZ91合金显微组织和力学性能的影响。
Study on Technological Test of Preparation of Al-Mg-Sc-bearing Master Alloy by Aluminum-magnesium Thermal Reduction on Anhydrous Scandium Chloride Molten Salt 铝镁热还原无水氯化钪熔盐制备铝镁钪中间合金工艺试验研究
The grain refining effect of Al-B master alloy on Al-Mg-Si wrought alloy made of electrolytic low-titanium aluminum was investigated. 研究了Al-B中间合金对用电解低钛铝合金制备的Al-Mg-Si变形合金的晶粒细化作用。
In this paper, the effect of Al-B master alloy on the microstructures of industrial pure aluminum and electrolytic low-titanium aluminum alloys was investigated. 研究了AlB中间合金对工业纯铝和电解低钛铝基合金微观组织的影响。
The influence of micro amount of elements magnesium and silicon in the 6063 alloy on the grain refining effect of Al-Ti-C master alloy was studied. 研究了6063合金中的微量Si、Mg元素对Al-Ti-C中间合金细化效果的影响,并探讨了其影响机理。
The present situation of application and study of master alloy refiners in aluminum alloys was reviewed in this paper. 综述了中间合金细化剂对铝合金晶粒细化处理的研究与应用现状。
Modification performance of the Al-P master alloy for eutectic and hypereutectic Al-Si Alloys Al-P中间合金对共晶和过共晶Al-Si合金的变质机制
Grain refining effect of Al-Ti-C master alloy on Mg-Al alloys Al-Ti-C中间合金对Mg-Al合金的晶粒细化作用
A plan for producing of Al-Mg master alloy by direct electrolysis of MgO in cell was put forward. 提出了在电解槽中直接电解得到Al-Mg母合金的方案。
The influence of addition of Al 1B master alloy on the microstructure and mechanical properties of Al 11.6% Si 0.4% Mg alloy modified with 0.030% Sr were discussed. 考察了Al1B中间合金对0.030%Sr变质的Al11.6%Si0.4%Mg合金组织和力学性能的影响。
The effect of Mn on formation of three-dimension spherical icosahedral quasicrystal phase in Mg-based master alloy has been discussed. 讨论了Mn对镁基准晶中间合金中三维二十面体球形准晶相形成过程的影响。
The microstructure of electrolytic low-titanium alloy and master alloy in three different techniques including the cast, rolling and heat treatment was studied by XRD 、 SEM and TEM. 通过X射线、SEM和TEM分析,研究了电解低钛铝合金和熔配加钛铝合金在铸造状态、轧制状态和热处理状态的组织。
But the addition of SM master alloy has some deleterious effect on the toughness of sintered steel. 但添加硅锰母合金对冲击韧性有不利影响。
A master alloy of Al-TiC is successfully prepared by cast contact reaction based on SHS principle. 使用基于SHS原理的铸造接触反应法成功制备了Al-TiC中间合金。
This indicates that Al-Ti-C master alloy can be used as commercial grain refiner of Al. 这项研究表明,Al-Ti-C三元中间合金是有应用价值的。
Study on Al-Ti-C Master Alloy Made by Electrolysis Process 电解法和铝热法Al-Ti-C中间合金的显微组织研究
The influence of SM master alloy on the microstructure and properties of sintered steel 硅锰母合金对烧结钢性能和组织的影响
Spheroidization of Primary Si in Piston Alloys by a new type of Al-P Master Alloy rod 新型Al-P中间合金对活塞合金中初晶Si的团球化
It was investigated that the influences of deformation process on the grain refining effect of Al Ti C master alloy. 研究了变形处理对Al-Ti-C中间合金细化效果的影响。
Grain Refinement of TiC/ Al and SiC/ Al Master Alloy on Mg-Al Based Alloys TiC/Al和SiC/Al中间合金对Mg-Al系合金晶粒的细化
Mg-Sr master alloy is fabricated by direct reaction method. 用对掺法制备Mg-Sr中间合金。
Influence of Deformation Process on the Al-Ti-C Master Alloy 变形处理对Al-Ti-C中间合金的影响
The results broaden the applying field of Al-B master alloy as grain refiner, and give a new way for preparation and grain refinement of Al-Mg-Si wrought alloy. 研究结果扩大了Al-B中间合金作为晶粒细化剂的使用范围,也为Al-Mg-Si变形合金的制备与晶粒细化处理提供了一条新的途径。
Mg-Sr master alloy replaced Al-Sr master alloy, become one of the most important modification in the magnesium industry. Mg-Sr中间合金正逐渐代替Al-Sr中间合金成为铸造镁合金生产中的重要变质剂。