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Finite element analysis for adhesive failure of progressive cavity pump with stator of even thickness

机译:厚度均匀的定子螺杆泵的粘结失效的有限元分析

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Compared to conventional progressive cavity pump (PCP), even thickness PCP has numerous advantages such as uniform thermal and swelling expansion, stable operation and high volumetric efficiency. However, adhesive failure occurs on the stator of even thickness PCP more often in actual working conditions, which limits its development and application. In this study, finite element models of conventional PCP and even thickness PCP with the same structural parameters are established and simulated to find the mechanism for adhesive failure. We primarily study the force conditions of adhesive interface which bonds the stator and cylinder sleeve. The results show that shear strain caused by hydraulic pressure difference and interference displacement is quite large around the adhesive interface of even thickness PCP. The too large shear strain around the adhesive interface is the main cause of adhesive failure. Based on this analysis, the relationship between the shear strain and design parameters, such as the rubber adhesion ratio, pressure difference, elastic modulus of stator, magnitude of interference and wall thickness, is investigated. Our results show that the shear strain increases greatly and adhesive failure tends to occur in certain conditions. Furthermore, two new techniques to enhance the adhesive performance are presented and validated with our finite element analysis. Our research can be of great significance for guiding the design and optimization of even thickness PCPs. (C) 2014 Elsevier B.V. All rights reserved.
机译:与传统的螺杆泵相比,厚度均匀的PCP具有许多优点,例如均匀的热膨胀膨胀,稳定的运行和高容积效率。但是,在实际工作条件下,厚度均匀的PCP定子上更容易发生粘合故障,这限制了其开发和应用。在这项研究中,建立并模拟了具有相同结构参数的常规PCP甚至厚度PCP的有限元模型,并进行了仿真,以发现胶粘剂破坏的机理。我们主要研究粘合定子和气缸套的粘合剂界面的受力状况。结果表明,在均匀厚度的PCP胶粘剂界面附近,由液压差和干涉位移引起的剪切应变相当大。粘合剂界面周围的剪切应变过大是导致粘合剂失效的主要原因。在此基础上,研究了剪切应变与设计参数之间的关系,如橡胶的附着率,压差,定子的弹性模量,干涉的大小和壁厚。我们的结果表明,在某些条件下,剪切应变会大大增加,并且容易发生粘合破坏。此外,提出了两种提高粘合性能的新技术,并通过我们的有限元分析进行了验证。我们的研究对于指导均匀厚度PCP的设计和优化具有重要意义。 (C)2014 Elsevier B.V.保留所有权利。

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