FGH95合金,FGH95 alloy
1)FGH95 alloyFGH95合金
1.High temperature oxidation behavior of FGH95 alloy;FGH95合金的高温氧化行为
2.Homogenization treatment of FGH95 alloy ingot was investigated by heat treatment and isothermal compression.采用热处理和等温压缩两种工艺对FGH95合金铸锭的均匀化处理进行了研究,分析了FGH95合金铸锭均匀化处理前后的枝晶组织变化及微区成分变化。
3.High temperature deformation behavior of three kinds of power size HIP-ed FGH95 alloy was studied.本文研究了3种粉末粒度组成的FGH95合金热变形行为,结果表明:粒度组成对FGH95合金等温压缩变形行为有较大影响,粗粉FGH95合金变形能力明显低于全粉和细粉,而全粉和细粉则差别不大。
英文短句/例句

1.Microstructure and Creep Behavior of FGH95 Powder Nickel-Base SuperalloyFGH95合金的组织结构与蠕变行为
2.Stability of γ′ Phase in FGH95 SuperalloyFGH95合金中γ′相稳定性研究
3.Microstructure of multiple-layer laser clad FGH95 superalloy激光多层熔覆FGH95高温合金的显微组织
4.CORROSION BEHAVIOR OF NICKEL BASE ALLOY FGH95 IN MOLTEN NaCl-Na_2SO_4镍基合金FGH95在熔融NaCl-Na_2SO_4中的腐蚀行为
5.Damage and Fracture Speciality of FGH95 Powder SuperalloyFGH95粉末冶金高温合金损伤与断裂特性研究
6.Microstructure and Creep Fracture Features of FGH95 Nickel-base SuperalloyFGH95粉末镍基合金的组织结构与蠕变断裂特征
7.Microstructure and Creep Features of FGH95 Powder Nickel Base Superalloy after Heat TreatmentFGH95粉末镍基合金热处理后的微观组织与蠕变性能
8.Microstructure and Mechanal Property of Samples Prepared by DLMS with FGH95 PowderFGH95粉末激光直接烧结的微观组织及力学性能
9.Study on Microstructure and Properties of Complicated Shape Disk of FGH95 PM Superalloy复杂形状FGH95粉末盘形件固溶处理组织及性能研究
10.non-metal-non-metal eutectic alloy非金属-非金属共晶合金
11.metal-nonmetal eutectic alloy金属-非金属共晶合金
12.metal-metal eutectic alloy金属-金属共晶合金
13.To combine(metals)to form an alloy.铸成合金将(几种金属)铸成合金
14.Hard alloy, refractory metal, superhard alloy( diamond) products, etc.◆硬质合金、熔金属、硬合金(刚石)品等。
15.An alloy of zinc and copper used as imitation gold.铜锌合金作为仿金品使用的铜锌合金
16.The surface or outer layer of a metal alloy.金属合金的表面或外层。
17.bimetal strip from tin-aluminium alloy高锡铝合金双金属带
18.Kingston's alloy金斯顿锡铜轴承合金
相关短句/例句

FGH95FGH95合金
1.Texture and properties of FGH95 with direct HIP;直接HIP成形FGH95合金组织和性能的研究
3)FGH95 alloy dropletFGH95合金熔滴
4)FGH95 alloy powderFGH95合金粉末
1.Non-equilibrium solute partition of rapidly solidified FGH95 alloy powder;快速凝固FGH95合金粉末的非平衡溶质分配
2.Analysis of efficient during water elutriation process of separating ceramic inclusions from FGH95 alloy powder;分离FGH95合金粉末中陶瓷夹杂物的水淘析法有效性分析
3.The results indicate that the geometry integrity of metastable MC type carbide in rapidly solidified FGH95 alloy powders changed from regular morphology .结果表明:快速凝固FGH95合金粉末中亚稳MC型碳化物形态的几何完整度随粉末颗粒尺寸减小由规则形态向复杂形态变化,不同尺寸粉末颗粒中碳化物的形态和数量决定于凝固过程中热学参数的变化和非平衡溶质分配系数的不同。
5)FGH95 superalloyFGH95高温合金
1.Static recrystallization mechanism of FGH95 superalloy;FGH95高温合金的静态再结晶机制
2.Microstructure of multiple-layer laser clad FGH95 superalloy激光多层熔覆FGH95高温合金的显微组织
6)FGH95 powder nickel-base superalloyFGH95粉末镍基合金
1.By means of the measurement of creep curves and microstructure observation,an investigation has been made into the creep behaviors and deformation features of FGH95 powder nickel-base superalloy.通过蠕变曲线的测定及组织形貌的观察,研究了FGH95粉末镍基合金的蠕变行为及变形特征。
2.By means of the measurement of creep curves and microstructure observation,an investigation has been made into the microstructure and creep behaviors of FGH95 powder nickel-base superalloy.通过进行蠕变曲线测定和组织形貌观察,研究了FGH95粉末镍基合金的微观组织结构与蠕变行为。
延伸阅读

Aizen Cathilon Pink FGH分子式:C22H26Cl2N2分子量:398.35CAS号:3648-36-0性质:暗红色均匀粉状物。配伍值4。属半菁阳离子染料。溶于水呈鲜明桃红色,在硫酸中呈黄色,稀释后转红光橙色。制备方法:以N-甲基苯胺,环氧乙烷,三氯氧磷,二甲基甲酰胺和1,3,3-三甲基-2-亚甲基吲哚啉为基本原料。先由N-甲基苯胺用环氧乙烷进行羟乙基化,再用三氯氧磷进行氯化,用二甲基甲酰胺醛化,而后与1,3,3-三甲基-2-亚甲基吲哚啉缩合,最后过滤、干燥即得成品。原料消耗(kg/t)磷酸 224 亚硫酸氢钠 580乙醇 440 锌粉 9氯磺酸 3560 硫酸 360苯 750 甲乙酮 152甲醇 930 氨水(25%) 680氢氧化钠(100%) 430 N-甲基苯胺 178苯胺 260 二甲基甲酰胺(DMF) 190盐酸(31%) 1200 三氯氧磷 550亚硝酸钠190环氧乙烷80用途:用于腈纶及其混纺织物的染色和印花。还可用于乙酸纤维和聚氯乙烯纤维的染色。