gravitational separation

英 [ˌɡrævɪˈteɪʃənl ˌsepəˈreɪʃn] 美 [ˌɡrævɪˈteɪʃənl ˌsepəˈreɪʃn]

重力分离(法)

化学



双语例句

  1. Principle of the Oil-Water Gravity Separation and Elementary Researches on Coalescent Demulsification Composite Pipes with Interior Coating of a-Al_2O_3 Ceramics Produced by Gravitational Separation Self-propagating High-temperature Synthesis
    油水重力分离原理及聚结破乳机理初探重力分离自蔓延法制备a-Al2O3基复合陶瓷内衬管
  2. Any of four fundamental ways in which elementary particles and bodies can influence each other, classified as strong, weak, electromagnetic, and gravitational. Tests of Recovery of Iron from Refractory Middling by Combined Process of Low Intensity Magnetic Separation-High Intensity Magnetic Separation-Gravity Separation
    电子相互作用基本颗粒和物体相互影响的四种基本方式,可分为强弱电磁和引力的难选中矿弱磁-强磁-重选联合回收铁的试验研究
  3. The method for producing big diameter metal pipes with ceramic lining by gravitational separation SHS method is described. The influence of the reactant and additives CrO 3 and SiO 2 on combustion synthesis, microstructure and properties of the ceramic layer is investigated.
    采用重力分离SHS法制备了大直径钢管陶瓷内衬,研究了物料配比和添加剂(SiO2和CrO3)对于SHS合成过程和组织结构的影响。
  4. The Al2O3/ Fe compound pipes were prepared by gravitational separation self-propagation high-temperature synthesis method.
    采用重力分离-自蔓延高温合成法制备了Al2O3/Fe陶瓷内衬复合管。
  5. Two groups of comparative experiments were carried out. It was found out that presence of Nd-Fe-B magnet gave much shorter free settling and pressing time in gravitational separation and shorter pressing time in centrifugal separation.
    通过两组对比沉降实验发现,附加稀土NdFeB形成永磁场后,磁性颗粒的重力分离可以显著缩短自由沉降和压缩沉降时间,而离心分离则主要缩短压缩沉降时间。
  6. Influences of Metal Fluoride on Curved Ceramic Lined Pipes by Gravitational Separation SHS Method
    金属氟化物对SHS陶瓷内衬复合弯管的影响
  7. It was found that mechanical vibration with increasing frequency increased combustion temperature, combustion rate and reaction transformation rate, promoted Al 2O 3 Fe liquid liquid phase gravitational separation and ceramic densification, and made Al 2O 3 dendrite crystal be changed in size and growth orientation.
    研究发现,机械振动并相应提高振频可以提高燃烧温度、燃烧速率和反应转化率,促进Al2O3Fe液相重力分离和陶瓷致密过程,并使陶瓷层的凝固组织发生改变;
  8. ZrO2 ( 4mol% Y_2O_3) of various contents being introduced into the main combustion system, the composite pipe lined ( Al_2O_3+ ZrO_2) multi-phase ceramics can be fabricated with the SHS gravitational separation technique.
    通过向主燃烧配系引入不同含量的ZrO2(4mol%Y2O3)组元,采用SHS重力分离技术制备了内衬(Al2O3+ZrO2)复相陶瓷的复合管。
  9. The theory of earth gravitational separation dynamics
    重力分离地球动力理论
  10. The Predetermination of the Gravitational Separation SHS Process
    重力分离SHS过程的预测
  11. The microstructure of lined ( Al 2O 3+ ZrO 2) multi phase ceramics of gravitational separation SHS composite pipes is investigated, and the formation mechanism of the multi phase ceramics is also analyzed.
    研究了重力分离SHS复合管内衬(Al2O3+ZrO2)复相陶瓷的显微组织与形成过程.研究得出:陶瓷基体主要由Al2O3与ZrO2的层片状或棒状共晶组织形成。
  12. On basis of using gravitational separation SHS process to produce ceramic lined composite pipes, CrO 3+ Al+ ( TiO 2+ C+ Al+ NiO) combustion system is used with three layer structure of steel, intermediate alloy and ceramics.
    基于重力分离SHS法制备陶瓷内衬复合管,采用CrO3+TiO2+C+Al+NiO燃烧体系合成出具有钢基体、中间过渡合金与内衬陶瓷三层结构的复合管。
  13. A high efficiency oil-gas-water separator designed on gravitational, expansive and centrifugal separation principles, a jet pump and a vane pump are equipped in the test-loop.
    中国科学院力学研究所用于研究这些关键设备的模拟实验装置,包括了集重力、膨胀和离心原理于一体的高效油气水分离器和引射增压泵、叶轮增压泵等设备。
  14. Influences of CrO_3 on Curved Ceramic-Lined Pipes Produced by Gravitational Separation SHS Process
    CrO3对重力分离SHS陶瓷内衬弯管的影响
  15. An automation equipment for combustion synthesis curved ceramic-line composite pipes was designed and manufactured according to the principle of CS ( Combustion Synthesis) thermit-gravitational separation process.
    根据铝热&重力分离SHS法制备复合弯管的原理,设计制造了一种燃烧合成复合弯管的自动化生产设备。
  16. He paper raises the theory of the earth gravitational separation dynamics.
    本文介绍了作者提出的重力分离地球动力理论。
  17. Abstract Based on ceramic lined composite pipes produced by gravitational separation SHS method, the effect of SiO_2 additions on combustion process, liquid liquid phases gravitational separation process and ceramic densification during synthesis of the composite pipes has been investigated.
    本文在采用重力分离SHS法制备陶瓷内衬复合钢管的基础上,分析了SiO2添加剂在复合钢管制备过程中对燃烧过程、液相重力分离过程及陶瓷层致密度的影响。
  18. Magnetic seed is added in the selective flocculation process to strengthen susceptibility of the flock. The purpose is to separate the flock by magnetic separation or combined magnetic gravitational separation.
    在选择性絮凝分选过程中加入磁种,以增加絮团的磁化率,达到用磁选或磁选、重选联合方法分离絮团的目的。
  19. Study on Sythesis Process of Ceramic lined Composite Pipes Using Gravitational Separation SHS Method
    重力分离SHS陶瓷衬管合成过程的研究
  20. The curved ceramic lined pipes have been produced by gravitational separation SHS method in combination with rotating technology. Based on SiO 2 addition the influences of NaF additive on synthesis process, structure and properties of curved pipes have been investigated.
    采用重力分离SHS技术结合旋转工艺制备了陶瓷内衬复合弯管,在添加SiO2的基础上,重点研究了NaF添加剂对复合弯管合成过程及组织性能的影响。
  21. Using uniform design, the influence of additions SiO 2 and CrO 3 on the combustion velocity of gravitational separation SHS in producing ceramic-lined composite pipes has been studied and an equation has been gotten by regression analysis.
    采用均匀设计方法,研究了SiO2,CrO3添加剂对重力分离自蔓延高温合成法制造陶瓷内衬复合钢管的燃烧速度的影响,并回归出一个方程式。
  22. On the basis of using gravitational separation SHS process to produce ceramic-lined composite pipes, the influence of Ni content on combustion characteristics and mechanical properties is investigated.
    采用SHS重力分离技术制备陶瓷内衬复合管,通过改变主燃烧配系组元Ni的含量,研究分析了金属Ni对陶瓷内衬复合管制备的燃烧特性及机械性能的影响。
  23. Before and after heat-treatment in reductive gas, transformation of microstructure morphology and distribution of the coatings and interface in pipes produced by SHS gravitational separation method are studied in details.
    研究了重力分离SHS法制备的陶瓷内衬复合管,在还原气氛下进行高温处理过程前后,复合管中陶瓷与钢管间的过渡层组织形态、组织分布的变化和过渡层中的裂纹的变化情况。
  24. Cracks Formation Mechanism in Lined ceramics Produced by Gravitational Separation SHS Method
    重力分离SHS法内衬陶瓷层中裂纹形成机理的研究