熔制

róng zhì
  • Melting;founding
熔制熔制
熔制[róng zhì]
  1. T酸碱熔制备H酸的新工艺

    The Novel Technology on the Synthesis of H-acid from T-acid by Alkali Fusion

  2. CO2激光熔制高氧化硅玻璃系统的研究

    Research on CO_2 laser melting of high silica glass systems

  3. 本试验熔制了Mg-5,9,16%Li-2%Al合金,研究了添加不同Ca含量对合金组织和性能的影响。

    Mg-5,9,16 % Li-2 % Al alloys were made in this study .

  4. 低温反应自熔制备Mg基复合材料的组织与性能

    Microstructure and Properties of Magnesium Matrix Composite Fabricated by Low Temperature Reaction Melting

  5. 自蔓延-熔制合成Ni3Al-TiC系统复合材料的力学性能

    Mechanical Properties of Ni_3 Al-TiC Composites Synthesized by SHS-Melting Process

  6. 并对合金进行显微组织观察及X射线分析,确定了该合金在550℃时的平衡组织。该熔制方法可以制备无污染的成分均匀的合金样品。

    Through microstructural observation and XRD analysis , the equilibrium microstructure of the alloy at 550 ℃ was determined .

  7. 试样均在1400℃下保温1h熔制。

    The compositions were melted at 1400 ℃ for 1h .

  8. 二氧化锡是一种n型半导体,具有耐高温、耐侵蚀、高温导电性优良等特点,因此,几乎可以用于所有玻璃品种的熔制。

    Tin dioxide is an n-type semiconductor , and has the performance of enduring high temperature and corrosion resistance , it can be used to melt nearly all kinds of glass .

  9. Cu-Cr合金电极触头板铸件的熔制

    Melting and Casting of the Electric Contact Plate with Cu Cr Alloy

  10. 采用电解铜、电解锰、电解锌、工业纯铝为原料,熔制了不同成分的MnCu系合金及CuZnAl合金,并测试了其在不同初始应力下的减振能力。

    Mn-Cu and Cu-Zn-Al alloys of varios compositions were prepared with electrolytic copper , manganese and zinc and industrial pure aluminium . Their damping capacity was measured under different original stresses .

  11. 研究了熔制气氛、光照时间及热处理温度对铜光敏微晶玻璃光敏性的影响,利用XRD和SEM对样品进行了分析。

    The influence of melting ambience , illumination time and heat treatment temperature on photosensitive of photoactive glass ceramic were studied . The samples were analyzed by XRD and SEM .

  12. 在ZnO-Al203-SiO2系统玻璃中掺入少量晶核剂TiO2,再掺入过渡金属离子和稀土离子,在高温下熔制得到透明母体玻璃。

    The glass ceramics doped rare earth and transition metal ions were obtained and based on the controlled nucleation and crystallization of ZnO-Al2O3-SiO2 system glasses containing TiO2 as nucleating agent .

  13. 钇铝硝酸盐共熔制备YAG微粉将Al(NO3)3和Y(NO3)3混合溶液在加热在燃烧剂尿素的作用下发生反应即可生成YAG粉体。

    Synthesis of YAG micrometer powders by co-melting yttrium nitrate and aluminum nitrate By co-melting the mixture solution of A1 ( NO3 ) 3 and Y ( NO3 ) 3 with electric cooker .

  14. 以SiO2B2O3ZnO系统为基础,在一定熔制温度条件下制备出了用于电绝缘封接的玻璃材料。

    This article is based on SiO 2-B 2O 3-ZnO system , sintered at certain temperature to produce the electric insulated sealing glass material .

  15. 用大功率CO2激光器熔制WO3/Fe2O3新型烯烃歧化反应催化剂。

    This paper , reports researches on preparation of WO3 / Fe2O3 catalyst for metathesis of propene by the high power CO2 laser .

  16. 以Li2O-Al2O3-SiO2为基础玻璃,CeO2为稳定剂,在不同的熔制气氛下制备出耐辐照玻璃。

    Irradiation-resistant glasses were prepared at the different melting atmospheres by doping cerium into the Li_2O-Al_2O_3-SiO_2 glasses .

  17. 得到的玻璃配方中不含Th○2组成,玻璃可用3L铂埚熔制,并得到了质量好的成品玻璃。

    The glass composition which we obtained is free of Th ○ _2 and can be melted in 3L platinum pot . Glass products with good quality were obtained .

  18. 分别以粉煤灰和硅藻土为主要原料熔制Na2O-CaO-Al2O3-B2O3-SiO2系玻璃,进而制备微孔玻璃并对其性能进行研究。

    The Na_2O-CaO-Al_2O_3-B_2O_3-SiO_2 system glass and porous glass have been developed respectively by fly ash or diatomite as main raw materials . And then proceed to study its capabilities .

  19. 运用XRF分析污泥灰中的化学成分,以微波为热源进行基础玻璃的熔制,确定最佳的熔制工艺条件。

    The chemical composition of sewage sludge residue was analysis by XRF in this experiment , the as-quenched glass was made by the microwave melting method to determine the best conditions .

  20. 本文采用纯钛颗粒法制备Al-Ti-B中间合金,探讨了加料次序,熔制温度和覆盖层的厚度对B的吸收率的影响以及搅拌在熔制Al-Ti-B中间合金中的作用。

    Al-Ti-B master alloy has been fabricated by casting of pure Ti grain . The effects of additive sequence , melting temperature and thickness of coating layer on absorption ratio of B , stir effect on the preparation of Al-Ti-B master alloy have been discussed .

  21. 为了以天然锂辉石为原料制备具有低膨胀性能的微晶玻璃,引入MgO、ZnO、B2O3以降低熔制温度,引入TiO2作为晶核剂。

    For the preparation of low expansion coefficient glass ceramic derived from natural Spodumene ( Li 2O · Al 2O 3 · 4SiO 2 ), MgO , ZnO , B 2O 3 were used to decrease the melting temperature and TiO 2 was used as nucleating agent .

  22. 石灰石粒度对平板玻璃熔制的影响

    Influence of Limestone ′ s Particle Size on Flat Glass Melting

  23. 高铁铝型铁矿尾矿饰面玻璃的熔制

    Melting of decoration glass using iron ore tailings of ferric alumina

  24. 利用煤矸石熔制岩棉的机理与工艺研究

    Mechanism and techniques of the asbestos made from gangues by melting

  25. 玻璃熔制过程三维数学模拟的运用

    The Use of Three Dimensional Mathematical Modeling for Glass Melting Process

  26. 纤维玻璃熔制温度的计算

    Calculation of melting temperature of glass used for fiber manufacturing

  27. 锡坯料,用于大小管配件只用配合料熔制的玻璃

    Tin blank for tube or pipe fittings glass melted from batch only

  28. 熔制混合稀土与过渡金属离子组合着色玻璃

    Hand-made Glass Products Having Combined Colors of Rare-earth and Transition Metal Ions

  29. 富铁矿渣玻璃的熔制溢液现象及解决

    A Solution of Overflow in the Melting Fe-Rich Slag Glass

  30. 钠锌硅系统光学玻璃的低温熔制技术

    Low temperature melting technique for optical glass with Na_2O-ZnO-SiO_2 system