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1)  sealing mechanism
密封机理
1.
Sealing mechanism and application research of combined MR sealing element;
直角滑环式组合型金属橡胶密封件的密封机理及应用研究
2.
Its geometric shape,sealing characteristics and sealing mechanism were analyzed,and its application in the field of petroleum machinery was introduced.
介绍了一种新的流体动力润滑旋转密封———Kalsi密封;分析了其几何形状、密封特性及密封机理;并介绍了其在石油机械中的应用。
3.
In past of 50 years,the hypothesis of surface tension and the hypothesis of sticky strength set up the sealing mechanism.
综述 5 0年来构建机械密封机理的表面张力假说和粘滞力假说。
2)  seal mechanism
密封机理
1.
analyses the seal mechanism of sleeve expansion joint and the defect of the current calculation formula of the friction force,presents new formula and illustrates the influence factors of friction force.
分析了套筒补偿器密封机理及目前所用的摩擦力计算公式的缺陷 ,给出了新的计算公式 ,并对影响摩擦力的因素进行了说明。
3)  seal principle
密封原理
1.
This article simply introduced the heat interchanger survey,Introduced returns the factory repair sentiment, Has analyzed this heat interchanger Divulges,reason and the processing method,Simply introduced this heat interchanger seal principle.
本文简单介绍了该换热器概况,介绍了返厂修理情况,分析了该换热器内漏原因及处理方法,简单介绍了该换热器密封原理。
4)  Theory of seal
密封理论
5)  seal management
密封管理
1.
based on seal management status in domestic refinery, evaluate synthetically all the seal system by probability theory and fuzzy mathematics theory, meanwhile, exploit a suit of seal evaluation and management system which can be put up in the internet by asp.
基于国内各炼化厂密封管理现状,运用概率论和模糊数学理论对各个密封系统进行了综合评价,同时运用ASP。
6)  mechanical seal
机械密封
1.
Invalidation and improvement of the mechanical seal of HTM main pump;
热媒主泵机械密封失效及改进
2.
Causes and prevention of mechanical seal leakage of circulating pump in copper electrolysis system;
铜电解系统循环泵机械密封泄露的原因与防治
3.
Cause Analysis of the Leakage of the Mechanical Seal of the Hot Water Circulating Pumps and Improvements;
热水循环泵机械密封泄漏原因分析及改进
补充资料:A机理
分子式:
CAS号:

性质:缔合机理  association mechanism  简称A机理(A mechanism)。在配位化合物MLnX被Y取代反应中,Y接近MInX,先于X的离去。反应速率决定步骤有中间体生成,具有比原来配位化合物高的配位数。新键的生成是反应速率的决定步骤。例如,反应[Pt(NH3)3Cl]++Br-[Pt(NH3)3Br]++Cl-其反应速率可表示为V=kc[Pt(NH3)3Cl+)c(Br-)。反应速率与配位化合物浓度c(Pt(NH3)2Cl+)及外来配体浓度c[Br-]均有关。其特点是双分子的二级反应。

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