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Investigating the stress relaxation of photopolymer O-ring seal models

机译:研究光敏聚合物O型圈密封模型的应力松弛

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Purpose - This paper aims to investigate the suitability of additive manufacturing to produce O-ring seals. Design/methodology/approach - The O-rings were made by the PolyJet-Matrix technology using four different digital materials and then tested for relaxation properties under static and dynamic (sliding) conditions. The approximation of the relaxation curves involved modelling with a Prony series. Findings - The PolyJet-Matrix technology offers new opportunities to model elastomeric elements, with examples being the O-rings produced and tested for their relaxation properties. Describing the behaviour of the particular materials fabricated with this technology by using relaxation functions will extend the knowledge base on digital materials. Research limitations/implications - The four types of photopolymers used in the experiment differed in viscoelastic properties. The analysis of the stress relaxation of the O-ring models was performed at four different step displacements of the loading element. Practical implications - The test results may be useful for the design of O-ring seals made of new elastomeric materials. The relaxation properties of the O-rings made of such materials can be applied to analyse the dynamics of seals, for instance, face seals. Originality/value - The originality of the work lies in the use of digital materials to design and produce elastomeric elements with different relaxation properties, which was confirmed by the test results. This paper presents results of a relaxation analysis for a ring model and the material that the ring is made of. It also discusses how 3D printing and digital materials can be applied in practice.
机译:目的-本文旨在研究增材制造对生产O型圈密封件的适用性。设计/方法/方法-O形圈是通过PolyJet-Matrix技术使用四种不同的数字材料制成的,然后在静态和动态(滑动)条件下测试松弛特性。松弛曲线的近似涉及用Prony级数建模。研究结果-PolyJet-Matrix技术为模拟弹性体元素提供了新的机会,例如生产和测试其松弛特性的O形圈。通过使用松弛函数描述用此技术制造的特定材料的行为,将扩展基于数字材料的知识。研究的局限性/意义-实验中使用的四种类型的光聚合物的粘弹性不同。 O型圈模型的应力松弛分析是在加载元件的四个不同阶跃位移下进行的。实际意义-测试结果对于设计由新型弹性体材料制成的O形圈密封件可能有用。由这种材料制成的O形圈的松弛特性可用于分析密封件(例如端面密封件)的动力学。原创性/价值-这项工作的原创性在于使用数字材料来设计和生产具有不同松弛特性的弹性体元件,这一点得到了测试结果的证实。本文介绍了环模型及其制造材料的弛豫分析结果。它还讨论了如何在实践中应用3D打印和数字材料。

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