熔剂

róng jì
  • flux;melting agent;agent of fusion;rholite
熔剂熔剂
熔剂 [róng jì]
  • [melting agent;flux] 金属熔炼、焊接或锻接时加入的一些能促进其熔化的物质

熔剂[róng jì]
  1. Cr~(3+):Al2O3晶体的助熔剂生长

    Flux Growth of Cr ~ ( 3 + ): Al_2O_3 Crystal

  2. MgO替代CaO作熔剂冶炼锰硅合金的试验

    The test of smelting Musi alloy with MgO as flux instead of Cao

  3. Shell煤气化高效复合助熔剂的开发及作用机理研究

    Study of Efficient Complex Flux and Melting Mechanism in Shell Coal Gasification Process

  4. Al-45%Cu合金的熔剂净化与过冷

    Purification and supercooling of Al-4.5 % Cu alloy

  5. CaO基熔剂对中磷铁水脱磷的研究

    Dephosphorization of Medium Phosphorus Hot Metal with CaO - Based Fluxes

  6. CaO基熔剂对铁水同时脱硫脱磷的应用性研究

    Simultaneous removal of sulphur and phosphorus from hot metal with CaO-based fluxes

  7. 镁合金中的MgO夹杂物及熔剂精炼过程的研究

    Investigation on MgO Inclusions and Refining Mechanism of Magnesium Alloy

  8. 激光新材料Nd~(3+):Li6Y(BO3)3晶体的助熔剂生长

    Flux growth of nd ~ ( 3 + ): li_6y ( bo_3 ) _3 crystal

  9. 在整个反应过程中,熔剂起清除存在于TiO2与Al间的Al2O3膜的作用。

    Al_2O_ 3 film between TiO_2 and Al melt is eliminated by the flux during reaction .

  10. 关于GaN晶体生长助熔剂的研究

    A study on the fluxes of GaN crystal growth

  11. 以K2O助熔剂生长LiNbO3晶体的研究

    Study on Growth of LiNbO_3 Crystals with the Addition of K_2O to the Melt

  12. CaO基熔剂对钢液二次精炼脱磷速度的研究

    Study on dephosphorization rate of liquid steel in secondary refining process by CaO - based fluxes

  13. 向CaO基熔剂中添加Li2O,Na2O,K2O和BaO对钢水回磷控制效果的影响

    Effect of Adding Li_2O , Na_2O , K_2O and BaO into Lime-Based Fluxes on Dephosphorization Controlling of Liquid Steel

  14. RH用低氟型CaO+Al2O3基熔剂深脱硫工业试验

    Industrial Experiment on Desulphurization in RH Process by Using CaO + Al_2O3 Based Fluxes with Low Fluoride

  15. 在熔剂选择方面,MgO系比CaO系的喷吹效果好。

    The injection result of MgO system flux is better than that of CaO system flux .

  16. 采用含CeCl3的净化熔剂对含Ce的镁合金进行精炼,研究了CeCl3对合金中Ce损耗量的影响规律。

    The effect of CeCl_3 in flux on the loss of Ce in magnesium alloy during refining was investigated .

  17. 熔盐法生长KTP晶体的助熔剂研究

    Study on Fluxes Used in Flux Growth of KTP Crystals

  18. 助熔剂法生长KTP晶体的物理化学过程(Ⅰ)

    Investigation on physico-chemical processes of KTP crystal growth from phosphate fluxes (ⅰ)

  19. 采用硫化助熔剂法制备了SrS:Eu,Mn和CaS:Eu,Mn荧光粉。

    The phosphors SrS : Eu and CaS : Eu doped with Mn were prepared by sulfurization flux method ( SFM ) .

  20. 导模法和助熔剂法生长TbAl3(BO3)4晶体的研究

    Study on the crystal growth of TbAl_3 ( BO_3 ) _4 with EFG and TSSG

  21. 对Al-4.5%Cu合金在纯石黑坩埚中用卤盐熔剂净化后的过冷度及其在金属锭模中的凝固组织特征进行了研究。

    The undercooling and structure of the Al-4 5 % Cu alloy denucleated by the chloride flux in a fine graphite crucible is studied in this paper .

  22. 试验表明,以MgO替代CaO作熔剂更有利于锰硅合金的冶炼。

    The tests show that being the flux , MgO is more beneficial to smelt MuSi alloy than CaO .

  23. 采用X射线荧光光谱仪测定钛矿,研究了利用混合熔剂系统制样方法,测定精度及制样精度。

    With X ray fluorescence spectrograph to determine titanium mineral , the method to make specimen with mixed flux system , determination precision and specimen-making precision are researched .

  24. 实验结果表明,Li2O是保护渣最为理想的助熔剂,其含量宜在2~5%之间;

    The experimental results show that Li_2O is the optimal fusing agents , the content of it should be between 2 % and 5 % ;

  25. 以Na2O为助熔剂,长出了Al2(WO4)3:Cr~(3+)的透明单晶体。

    Single crystal of Al_2 ( WO_4 ) _3 ∶ Cr ~ ( 3 + ) has been grown from Na_2O flux .

  26. Cr~(3+):Al2(WO4)3晶体生长助熔剂体系的挥发动力学

    Kinetics of Solvent Volatilization in Flux System of Cr ~ ( 3 + ): Al_2 ( WO_4 ) _3 Crystal Growth

  27. 用助熔剂缓冷法培养出化学计量比的发光单晶体Na5HO(WO4)4。

    A novel luminescent crystal of Na_5Ho ( WO_4 ) _4 is grown from stoichiometric melts by flux method .

  28. BPO4的合成及其助熔剂的选择

    Synthesis and Selection of Flux for Growth of BPO _ 4 Crystal

  29. 通过在淮南煤灰中添加A,B,C,D四种助熔剂,对降低淮南煤灰的高灰熔融性温度进行了研究。

    With A , B , C and D four ( 4 ) kinds of fluxes added to the ash , the paper studied the high ash fusion temperature in order to reduce Huainan coal ash .

  30. 采用折算方式进行X射线荧光光谱测定冶金熔剂,解决了该方法没有标准样品及烧失量大的难题,得到满意的分析结果。

    The conversion mode was used in the determination of metallurgical flux by X-ray fluorescence spectrometry , which solved the difficulties without reference samples and much ablation . The results are satisfactory .