Solid solution alloy

美 [ˈsɑːlɪd səˈluːʃn ˈælɔɪ]英 [ˈsɒlɪd səˈluːʃn ˈælɔɪ]
  • 网络固溶体合金;固溶合金
Solid solution alloySolid solution alloy
  1. The alloy stacking fault energy of four solid solution alloy A1-Nk Cu-Ag > Pb-Ag > Cu-Pb in all compositions have been calculated by using the modified analytical embedded atom method ( MAEAM ) .

    采用改进分析型嵌入原子法(MAEAM)计算了Al-Ni、Cu-Ag、Pb-Ag、Cu-Pb等4种固溶体合金在全成分内的合金层错能;

  2. Study on the Short Range Order Parameter of a Solid Solution Alloy

    Cu-Pd合金固溶体短程序参数测定

  3. Structure Analysis of Pd-20W Solid Solution Alloy

    Pd-20W合金固溶体的结构分析

  4. Analysis of Valence Electron Structure of Ni-Co Solid Solution Alloy & Preliminary Approach to Cobalt Effect on Alloys

    Ni-Co固溶体合金价电子结构分析&Co在合金中作用的初步探讨

  5. The results show that the large current discharge property of V-based solid solution alloy V_3TiNi_ ( 0.56 ) Cr_ ( 0.1 ) is poor .

    结果表明:钒基固溶体V3TiNi0.56Cr0.1贮氢合金电极的大电流放电性能较差。

  6. As a new kind of storage hydrogen material , vanadium-based solid solution alloy has bright future , With high hydrogen storage capacity ( 3.8wt % ), and excellent diffusion rate in vanadium-based hydride .

    钒基固溶体贮氢合金作为一种新型的贮氢材料,具有可逆贮氢量大(3.8wt%),氢在合金中的扩散速度较快等优点,具有广阔的发展前途。

  7. As a new kind of storage hydrogen material , vanadium-based solid solution alloy with high hydrogen storage capacity has attracted a lot of attention . However , traditional manufacture of pure vanadium with high cost limits its application .

    钒基固溶体贮氢合金因其贮氢量大而成为近年来研究的热点,但传统的纯金属熔炼成本高,限制了其应用。

  8. The cycle stability of A2B-type alloy is lower , thus the commercial application is not realized in despite of its lower cost . The utilization of V-baed solid solution alloy is also limited because of the low cycle life .

    A2B型合金虽然成本低,但循环稳定性较差,循环寿命短,尚未实现实用化,V基固溶体型合金同样也存在循环寿命短的特点。

  9. Principle of vanadium - hydrogen reaction and development of vanadium base solid solution hydrogen alloy

    钒-氢反应规律与钒基固溶体贮氢合金开发

  10. Vanadium base solid solution hydrogen alloy is a kind of the high performance materials developed in recent years .

    钒基固溶体贮氢合金是近年来开发的一种新型高性能贮氢材料。

  11. Structural zoning diagram of solid solution Fe-Mn-C alloy at 1000 ℃

    Fe-Mn-C系合金1000℃固溶处理组织图的研究

  12. Because the strongest covalent bond in the Al-Li-vacancy segregated cell in alloy formed in quenching is the main strength reason for supersaturated solid solution of alloy .

    由于Al-Li-空位有序偏聚晶胞的Al&Li键络比基体键络要强许多,因此,淬火过程中合金生成的Al-Li-空位偏聚晶胞对合金过饱和固溶体起主要强化作用;

  13. By analysing the electric resistance variation of the solid solution Cu-Ni-Si alloy in the process of aging , precipitation behavior of the early aging stage was studied . The morphology of precipitates was observed by means of transmission electron microscope .

    通过对固溶态Cu-Ni-Si合金时效时电阻变化规律的分析,研究了合金时效早期的析出行为,并借助透射电镜观察合金时效析出相的组织形态。

  14. Effect of Cu Content on the Behavior of Solid Solution Treated Al-Mg-Si Alloy

    Cu含量对Al-Mg-Si合金固溶处理行为的影响

  15. Progress in Research of V-Based Solid Solution Hydrogen Storage Alloy

    钒基固溶体型贮氢合金的研究进展

  16. Study on Structure and Electrochemical Performance of Ti-Zr-V-Mn-Ni Solid Solution Hydrogen Storage Alloy

    Ti-Zr-V-Mn-Ni固溶体贮氢合金结构和电化学性能研究

  17. Do the solid solution to the alloy , the residual strain reduce the CTE sharply .

    对合金进行固溶处理,发现残余应变会大幅度降低合金的CTE,但是会增加热膨胀系数变化的不稳定性。

  18. Re-precipitate behavior of supersaturated solid solution of Al-Cu alloy caused by severe plastic deformation during subsequent deformation

    强变形诱导形成的Al-Cu合金过饱和固溶体在继续变形时的再析出行为

  19. Te can stabilize the solid solution of aluminum alloy and control the effect of " limitation period ", while Te and Zr have the matched effect .

    Te具有稳定铝合金固溶体,抑制时效效应的作用,Te和Zr相互有良好的匹配效应。

  20. Micro-hardness test and XRD spectra indicate that artificial ageing treatment at low temperature can further improve the mechanical property of the solid solution strengthening aluminum alloy after ECAP process .

    显微硬度以及XRD测试结果显示低温时效处理进一步提高了强化固溶态高强铝合金ECAP加工后的机械力学性能。

  21. Besides , the interior potential boundary condition under the electric field has been defined . Energy parameters calculation methods of monatomic , compound , solid solution , and alloy under the electric field have been set up .

    同时,确定了电场下的内势场边界条件,建立了电场下单原子、化合物、固溶体、合金的能量参数计算方法。

  22. Investigation of Ni solid solution in Au-based hexabasic alloy

    Au基六元合金中的Ni固溶体研究

  23. The differences of electrical conductivity in rapidly solidified and conventional solid solution treated Cu Cr alloy have been analysed in this article .

    分析了快速凝固与常规固溶处理后,Cu-0.8Cr合金导电性的差异及时效处理对合金导电性的影响。

  24. The models of valence electron structure of maid phases in Al-Li-Cu based alloy were established . The solid solution of Al-Li-Cu based alloy was contained four cells : a-Al cell , Al-Li cell , Al-Cu cell and Al-Li-Cu cell .

    建立Al-Li-Cu系合金固溶体中存在各相的价电子结构模型,认为固溶体内包含了四类晶胞:α-Al晶胞,Al-Li晶胞,Al-Cu晶胞和Al-Li-Cu晶胞。

  25. The following aspects are included in this thesis : 1 . The models of valence electron structure of main phases in Al-Ag binary alloy were established . The solid solution of Al-Ag binary alloy was contained two cells : a - Al cell , Al-Ag cell .

    主要集中在如下几方面:1.建立Al-Ag二元合金固溶体中存在各相的价电子结构模型,认为固溶体内包含了两类晶胞:α-Al晶胞,Al-Ag晶胞。