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十字头和导板摩擦失效原因分析 被引量:2
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作者 刘战锋 李俊 《电子世界》 2014年第18期355-355,共1页
根据摩擦学理论,分析了钻井泵十字头和导板摩擦失效的原因。通过改进导板材料,改善导板加工和热处理工艺,基本解决了导板变形问题,从而大大降低了零件失效的发生。
关键词 十字头和导板摩擦失效 导板变形 新材料 新工艺 去应力退火
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F1600泥浆泵下导板与十字头间隙超差问题的分析
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作者 冯晓飞 《中小企业管理与科技》 2021年第16期192-193,共2页
论文对F1600泥浆泵生产过程中因导板锯开变形、导板装配变形和十字头装配变形而引起下导板与十字头配合间隙超差的问题进行了分析,通过对机架的结构、加工尺寸的调整,导板和十字头装配变形的控制,有效解决间隙超差的问题,从而提高泥浆... 论文对F1600泥浆泵生产过程中因导板锯开变形、导板装配变形和十字头装配变形而引起下导板与十字头配合间隙超差的问题进行了分析,通过对机架的结构、加工尺寸的调整,导板和十字头装配变形的控制,有效解决间隙超差的问题,从而提高泥浆泵的生产效率。 展开更多
关键词 泥浆泵 机架 十字头变形 导板变形
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Modelling and analysis for a pilot relief valve using CFD method and deformation theory of thin plates 被引量:4
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作者 YUAN XianJu GUO KongHui 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第6期979-998,共20页
The current work is concerned with modelling and analysis for a pilot relief valve, thus successfully bringing a systematic method for designing and analyzing similar valves. The essence of the work is to solve two im... The current work is concerned with modelling and analysis for a pilot relief valve, thus successfully bringing a systematic method for designing and analyzing similar valves. The essence of the work is to solve two important problems, one for positions of the pilot valve influenced by flow force and the other is for the opening of the relief valve governed by a thin annular plate. The computational fluid dynamics(CFD) method is used to present the flow force. Using a series of experiments, the flow rate versus pressure drop shows the rationality of the CFD results. In order to obtain the opening of relief valve with higher accuracy, the large deflection theory of thin plates is adopted. An equivalent method for replacing the concentrated force is innovatively proposed so that all of the loads of the plates can be given by a unified expression, which reduces the number of the governing equations and intermediate boundary conditions. For presenting a very simple and reliable method for solving the governing equation, an unconstrained nonlinear optimization is innovatively introduced to solve the deflection of the thin annular plate. Being verified by finite-element method(FEM) of the relief valve, the equivalent method and optimization can solve deflection of thin plates rapidly and accurately. Reflected through a complete model for the pilot relief valve, the theoretical flow rate of the pilot relief valve is consistent with experimental conclusion. Once again, the comparisons bring us insight into the accuracy of the method adopted in the current work. 展开更多
关键词 pilot valve relief valve MODELLING large deflection unconstrained nonlinear optimization
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