1)AZ80 magnesium alloyAZ80镁合金
1.Effects of Solid Solution and Ageing on Fracture Behavior of AZ80 Magnesium Alloy;固溶和时效对AZ80镁合金断裂行为的影响
2.Hot compression deformation behaviors of AZ80 magnesium alloy at elevated temperature;AZ80镁合金的高温热压缩变形行为
3.Effects of thermomechanical treatments on microstructure and mechanical properties of AZ80 magnesium alloy;形变热处理对AZ80镁合金组织及性能的影响
英文短句/例句
1.Microstructure, Properties and Application of AZ61 and AZ80 Magnesium Alloys;AZ61和AZ80镁合金组织性能及应用研究
2.Study on Warm Forming Technology of AZ80 Magnesium Alloy Car Hub;AZ80镁合金轿车轮毂成形工艺研究
3.Plastic Deformation and Strengthening & Toughening of Magnesium Alloy AZ80;AZ80镁合金的塑性变形与强韧化
4.Influence of Hot Deformation on Properties of AZ80 Magnesium Alloy;热变形对AZ80镁合金性能影响的研究
5.Research on Gas Blowing Forming of AZ80 Magnesium Alloy SheetAZ80镁合金板材气压胀形工艺基础研究
6.Effect of Ultra-Fine Al_2O_3 Powder on Corrosion Resistance of AZ80 Magnesium Alloy超细Al_2O_3粉对AZ80镁合金耐腐蚀性的影响
7.Study on flow stress of AZ80 magnesium alloy during hot compression deformation at elevated temperaturesAZ80镁合金高温热变形流变应力研究
8.Research on the Thermal Simulation Experiment of Compress Deformation of AZ80 Magnesium AlloyAZ80镁合金热模拟压缩变形的实验研究
9.Study on the Key Technology of Connection of AZ80 Magnesium Alloy Parent Material and Steel RingAZ80镁合金基体与钢圈连接关键技术研究
10.Influence of DC Magnetic Field on the Solidification Structure of AZ80 Mg Alloy直流电磁场对AZ80镁合金组织结构的影响
11.Study on Precipitation Mechanism of Second Phase in AZ80 Alloy During Hot DeformationAZ80镁合金热变形中第二相析出机理研究
12.Study on the deformation behavior and isothermal extrusion process simulation of AZ80 magnesium alloyAZ80镁合金塑性变形行为及等温挤压过程仿真
13.Influence of Aging Treatment on Microstructure and Mechanical Properties of AZ80 Alloy时效处理对AZ80镁合金组织与性能的影响
14.Effects of Homogenization Treatment on Microstructure and High Temperature Deformation Behavior of As-cast AZ80 Magnesium Alloy铸态AZ80镁合金均匀化处理及高温塑性研究
15.Effects of T6 Heat Treatment on Microstructure and Mechanical Properties of Magnesium Alloy AZ80T6热处理对AZ80镁合金组织及性能的影响
16.Effects of Semi-Solid Isothermal Heat Treatment on Structure of Magnesium Alloy AZ80半固态等温热处理对铸态AZ80镁合金组织的影响
17.Research on Influence of Solution and Aging Heat Treatment on Microstructure and Mechanical Properties of As-Cast AZ80 Magnesium Alloy;固溶时效处理对AZ80镁合金组织及力学性能的影响
18.The Effect of Plastic Deformation of Cast Magnesium Alloy AZ80 on Its Microstructure and Performance塑性变形对铸态AZ80镁合金组织及性能影响的研究
相关短句/例句
AZ80 Magnesium Alloy ChipAZ80镁合金切屑
3)AZ80 wrought magnesium alloyAZ80变形镁合金
4)wrought magnesium alloys AZ80变形镁合金AZ80
5)AZ80 alloyAZ80合金
1.Study on the property influence on the AZ80 alloy hot forming;AZ80合金热变形对其性能影响的研究
2.The flow stress behaviors of Mg-Al-Zn alloys(AZ31 alloy and AZ80 alloy) were studied by means of compression deformation tests on Gleeble 1 500 machines.AZ80合金高温流变应力符合幂指数关系,应力指数n为6,热变形激活能Q为220 kJ/mol。
6)magnesium and its alloys镁及镁合金
1.Based on recently published papers and information on magnesium and its alloys, this paper introduced the distribution and exploitation of magnesium over the world, reviewed the product development, application and market of magnesium and its alloys in last century, especially in last two decades.根据近年来国内外发表和公布的有关镁及镁合金的文章和信息,介绍了世界镁资源的分布及开采,回顾了上个世纪特别是近20年来世界镁合金及产品的发展,使用和市场概况。
2.This paper reviews corrosion behavior of magnesium and its alloys and the possibility of their application as biomaterials.对镁及镁合金作为生物材料的可能性和研究进展进行了评述。
延伸阅读
镁铝锌系铸造镁合金镁铝锌系铸造镁合金magnesium-aluminium-zinc cast magnesium alloy series mellUxlnx一zhuzao melhej一n镁铝锌系铸造镁合金(magnesium一alumini-um一Zine east magnesium alloy series)以铝、锌为主要合金化元素的铸造镁合金,可用于砂型和金属型铸造,也可用于压力铸造,具有良好的流动性和焊接性能,热裂倾向性低,但有较大的显微疏松倾向。 中国牌号ZM一5(7.5%一9.0%Al,0.15%一0.5%Mn,0.2%一0.8%Zn,Mg为余量)合金,ZM一10(9 .0%~1 0.2%AI,0.15%一0.5%Mn,0.2%一0.8%zn,Mg余量)合金。zM一5合金为镁铝锌系铸造镁合金的代表,相当于前苏联牌号的M月5合金。合金中杂质为铁、铜、镍、硅、钻等,根据需要可适量加些被。 铝是主要合金化元素并含有锌和锰,通过改变铝、锌含量可改变合金的力学性能、铸造性能及抗蚀性能。铝含量的增加能进一步改善合金的铸造性能和提高合金的强度,但使伸长率和抗腐蚀性能降低。加入少量的锌和锰能显著提高合金的抗蚀性能,还可以提高合金的强度。但锌含量增加会使合金的缩松倾向增加。ZM一5合金的铸态组织由固溶体叔Mg)为基体,沿它的晶界以不连续网状分布着y(Mg‘A13)相,以及分布在固溶体叔Mg)中的Mn一Ai化合物小质点所组成。热处理强化常采用两种规范:(1)淬火(T4):加热到370~380℃保温2一4h,再升温至415士5℃保温12一16h,然后在空气中冷却。(2)淬火时效(T6):淬火后再在175士5℃人工时效16h。ZM一5合金的力学性能见表1。 表1 zM一5合金的力学性能详 镁铝锌系铸造镁合金结晶间隔较大,充型能力良好,铸造工艺性能及物理常数见表2。表2 zM一s合金铸造工艺性能及物理常数}牛粉粉{字朴 镁铝锌系铸造镁合金能铸出外形和内腔形状复杂的铸件,加之镁合金在汽油、煤油、润滑油中很稳定,因而多用于航空工业的燃油系统和润滑系统。还可作为在受冲击载荷时能吸收大量能量的零部件及飞机着陆轮的轮毅。 (杨朴)
