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1)  T-shape groove dry gas
T型槽干气密封
1.
In order to explore the causing of thermal deformation and theirs affecting degree, the T-shape groove dry gas seal in synthesis gas compressor was analyzed and researched as a model.
为了探究哪些设计因素导致了端面热变形及其影响程度,以某合成气压缩机T型槽干气密封为例进行分析研究。
2)  spiral groove dry gas seal
螺旋槽干气密封
1.
Utilizing the fi nite element method, the flow of the gas between the spiral groove dry gas seal faces was investigated by numerical simulation.
螺旋槽干气密封是一种新型的非接触式机械密封,它具有介质泄漏量少、端面磨损小、能耗低、运行寿命长和可靠性高等优点。
2.
The principle of spiral groove dry gas seal is that, utiliz.
近年来,随着密封技术的不断发展和完善,出现了一种新的密封型式–螺旋槽干气密封。
3)  Dry gas seal with screw groove type
螺旋槽式干气密封
4)  dry gas seal
干气密封
1.
Finite Element Simulation of the Gas Flow Field in the Dry Gas Seal Spiral Grooves;
干气密封螺旋槽内气体流场的有限元模拟
2.
Application of the Tandem Type Dry Gas Seals in Light Hydrocarbon Pumps;
串联式干气密封在轻烃泵上的应用
3.
Applications of Dry Gas Seal in Propane Pumps;
干气密封在丙烷泵上的应用
5)  gas seals
干气密封
1.
Dynamic pressure calculation of steady-state micro-scale flow field in spiral grooved dry gas seals;
螺旋槽干气密封稳态微尺度流动场的动压计算
2.
A stability analysis for lubricating gaseous film of spiral grooved gas seals subjected to angular eddy motion;
螺旋槽干气密封润滑气膜角向涡动的稳定性分析
6)  dry gas sealing
干气密封
1.
It is shown by analysis that the main reasons for the damage of dry gas sealing are the higher vibration of radial tile at both sides and higher temperature of thrust tile.
介绍二氧化碳压缩机高压缸的结构及运行中存在的问题,分析认为干气密封损坏主要原因是两侧径向瓦振值较高、止推瓦温度较高,提出改进措施。
2.
The structural characters and control principle of the floating ring sealing and the double face dry gas sealing are introduced.
对比了浮环密封与双端面干气密封的结构原理和控制原理 ,介绍了双端面干气密封的改造情况、使用效果、存在问题以及操作费用
3.
Presented the structure and principle of floating ring sealing and dry gas sealing for compressor,compared the advantages and disadvantages between them,put forward revamping scheme with dry gas sealing.
介绍压缩机浮环密封与干气密封的结构及工作原理,比较其优缺点,提出干气密封改造方案,改造后达到了预期的目的,指出干气密封在维护操作中应注意的事项。
补充资料:[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]
分子式:C16H16ClN3O3S
分子量:365.5
CAS号:26807-65-8

性质:暂无

制备方法:暂无

用途:用于轻、中度原发性高血压。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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