漏液

  • 网络Leakage;Leak;Weeping
漏液漏液
漏液 [lòu yè]
  • [blow-by] 在运行中液体通过活塞和气缸之间的间隙漏泄

  1. 碱性Zn-MnO2电池漏液原因分析及对策

    Analysis of leakage causes and the countermeasure to alkaline Zn-MnO_2 battery

  2. 针对PMMA凝胶电解质机械强度较差和PVDF纤维膜的漏液问题,我们设计制备了PVDF/PMMA/PVDF凝胶聚合物电解质,并研究了其电化学性能。

    The PVDF / PMMA / PVDF gel polymer electrolytes were prepared due to the poor mechanical stability of PMMA gel polymer electrolytes and the leakage of electrolyte solution of the PVDF fibrous film , and then its electrochemical properties were investigated .

  3. 基于ADAMS的火炮漏气、漏液故障仿真研究

    Research on Simulation of Leaking of Liquid and Gas of Artillery Based on ADAMS

  4. 齿边浮阀塔板的漏液量与F1型浮阀塔板基本相同。

    Weeping of serrated valve tray was similar to that of F1 valve tray .

  5. 研究结果表明:全通导向浮阀塔板的压降和漏液比F1浮阀小,雾沫夹带量略高于F1浮阀。

    The results show that super float valve tray possessed less total pressure drop , lower weeping and more entrainment than F1 valve tray .

  6. 结果表明,对于AA型MH/Ni电池,当添加的电解液量>30g或<26g时,会导致电池内阻增大和放电容量、放电电压平台的降低,同时电解液过多会导致电池漏液。

    The experiments results demonstrated that the internal resistance increased as well as the discharge capacity , discharge voltage plateau decreased when the amount of electrolyte was more than 3.0g or less than 2.6g .

  7. V-GRID塔板的漏液量分析

    Analysis about the Rate of the Liquid Weeping from V-GRID Tray On Quantity

  8. 对V-GRID塔板的漏液量进行了研究。

    In this paper , a study has been made about the liquid weeping from V-GRID tray .

  9. 本论文采用热水示踪技术,用微机温度测量系统测试了设有防冲击漏液装置的新型DJ塔板上液体等平均停留时间分布。

    In this paper , the liquid equal mean residence time distributions of a newly DJ tray with anti-dumping unit were measured by using of computerized multipass thermometer , stimulus-response technology using hot water tracer was adopted .

  10. BJ塔板与传统的F1型浮阀塔板的性能对比表明,BJ塔板压降低、漏液量和雾沫夹带量小、操作弹性大,其性能明显好于F1型浮阀塔板。

    In comparison the performance of BJ valve tray with traditional Fl valve tray , the former showed lower pressure drop , less weeping and entrainment , and higher operation flexibility , etc. , than those of the latter .

  11. 固体氧化物燃料电池(SOFC)属于燃料电池第三代,其所有部件都是固态的,因此具有无漏液、寿命长和可用的燃料来源广泛等优点。

    A solid oxide fuel cell ( SOFC ) is the third generation fuel cell , and all the components in SOFC are solid . So it has many advantages , such as no problem of corrosion and leakage , long lifetime and wide selectivity of fuels .

  12. 不均匀漏液对精馏塔板效率的影响

    Effect of Mal - distributed weeping on Distillation Tray Efficiency

  13. 急冷水塔沉降分布器漏液原因分析及改造

    Liquid leakage analysis and retrofit of decanting distributor of quench water tower

  14. 阀控密封铅酸蓄电池漏液现象分析

    Electrolyte Leakage Phenomenon Analysis of Valve Control of Sealing Lead Acid Accumulators

  15. 液压支架立柱缸口漏液分析

    Analysis on Leakage of Post Cylinder End of Hydraulic Supports

  16. 分析了造成电池漏液、变形、胀肚、爆炸的原因;

    The cause of battery leakage , distortion and detonation were analyzed .

  17. 车内约有11处可能漏液。

    There are about 11 fluids that could leak from your car .

  18. 实验验证了多孔板上两相流的几种转变,并对影响漏液的因素进行了探讨。

    And the influence factors of leakage were discussed in this paper .

  19. 酸泵漏液及其解决办法

    Leakage of acid pump and the ways to solve

  20. 多种浮阀型塔板的通用漏液速率模型

    A new unified correlation for weeping rates of various types of valve trays

  21. 反后坐装置漏液漏气故障分析模糊评价

    Fuzzy Evaluation of Fault Analysis on Leaking Liquid and Gas in Recoil System

  22. 碱性锌锰电池漏液原因分析和控制措施

    Analysis of leakage Cause and Controling Methods for Alkaline Zn / MnO_2 Battery

  23. 筛板塔漏液点气速的计算模型

    Calculation Model of Gas Velocity at Liquid Weeping Point on A Perforated Plate

  24. 昨天我发现这付电池可能因漏液而变形。

    Yesterday , I found them deformed , possibly caused by the leakage .

  25. 化成前的搁置、热处理等措施可以降低内压,减少漏液爬碱,缩短化成周期等;

    That can debase internal pressure , reduce leak electrolyte and shorten activation periods .

  26. 漏液对火炮性能的影响仿真及灵敏度分析

    Research on Effect of Leaking Liquid on Gun Performance Based on Relative Sensitivity Analysis

  27. 阐述了对电池漏液问题的认识;

    Knowledge about battery leakage problem were elaborated .

  28. Li/SOCl2电池漏液观察

    Observation of Leakage of Li / SOCl_2 Cells

  29. 筛板塔漏液速率的研究

    A study on weepage rates in sieve trays

  30. 结果揭示汞能改善电池的性能和耐漏液性能。

    The mercury may improve the battery performance .