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1)  shaft head pump
轴头泵
1.
This paper has analyzed the reason of the fault frequently occurred on shaft head pump of Ⅳ stage centrifugal compressor with double - axis and pointed out the relevant transformation measures.
分析了双轴四级离心式压缩机轴头泵频繁发生故障的原因,提出并实施了相应的改造措施,取得了满意的效果。
2)  pump shaft
泵轴
1.
The failure analysis of mechanical seal of pump shaft;
泵轴机械密封的失效分析
2.
Design of strength calibration application program for pump shaft parts;
水泵轴类零件强度校核的应用程序设计
3.
Software development of pump shaft intensity calibration based on ObjectARX;
基于ObjectARX的泵轴强度校核应用软件开发
3)  pump spindle
泵轴
1.
Application of Cold Conglutination Technology in the Repair of Pump Spindles;
冷粘维修工艺在泵轴修复上的应用
2.
So this software can be applied to the reliability analysis and design for the pump spindle, and to the provision of theoretical basis for production plants to improve the design, lower the cost and make reliability assessment.
利用该软件对泵轴进行可靠性分析设计,为生产厂家改进设计,降低成本、进行可靠性评定提供理论依据。
4)  shaft [英][ʃɑ:ft]  [美][ʃæft]
泵轴
1.
Based on the data statistics of the failure shaft of electrical submersible pump in Daqing Oilfield in the recent five years,study on the regularity of shaft failure is carried on by using reliability analysis theory and method in three respects: non-parameter statistic analysis,parameter distribution pattern statistic analysis,and failure shaft appearance analysis.
通过对大庆油田近5 a潜油电泵失效泵轴的数据统计,应用可靠性分析理论和方法,从无参数统计分析、有参数分布类型统计分析和失效件形貌分析3个方面进行了泵轴失效规律研究,得出泵轴的主要失效模式是磨损;统计样本在1 a保修期的故障率为39。
2.
Pump shaft is an important and core part as it is in other industrial machines and equipments.
本课题就是利用ANSYS软件,根据磁力泵泵轴的特殊载荷情况,采用有限元的静力分析方法、动力学模态和瞬态分析方法,对其强度、刚度、振动等方面进行理论分析和计算。
5)  Fluid end
泵头
1.
The fluid end of the plunger pump was analyzed with three-dimensional finite element method,and the distribution law of stress at the fluid end was obtained.
对某柱塞泵泵头体进行了三维有限元分析,获得了泵头体的应力分布规律,并应用ANSYS软件对泵头体的结构进行了优化,为类似的壳体零件的优化设计提供了依据。
6)  pump shaft bearing
泵轴轴承
补充资料:泵轴功率
分子式:
CAS号:

性质:泵轴所接受的功率。一般指输入功率,即原动机传到泵轴上的功率。单位为W。它与水力功率及机械损失功率间有以下关系:Pa=Ph+Pm。式中,Pa为泵轴功率,W;Ph为水力功率,W;Pm为机械损失功率,W。

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