Research on series of hydraulic cylinders made of plastics

P. Stryczek, F. Przystupa, Michael D. Banas
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引用次数: 6

Abstract

Among the materials which are used to design modern machines, growth in participation of plastic materials can be observed. Also in hydraulics, more and more often elements of hydraulic systems or their components, which previously were made of metal, now are replaced with plastic ones. Taking into consideration the structural, technological and economic benefits resulting from the use of plastics in hydraulics, scientists from Fluid Power Research Group from the Department of Fundamentals of Machine Design and Tribology at Wroclaw University of Science and Technology, are working on the development of a complete hydraulic system in which the main elements, such as the cylinder, the valves and the pump, will be entirely or in significant part made of plastic. The article presents the design assumptions of a cylinders series made of plastics, research of prototype models performed in order to verify these assumptions, as well as conclusions and future research aims. The work on development of the series started with an analysis of the so far existing methods of designing hydraulic cylinders. On the basis of the metal cylinder design methods, own algorithm for designing cylinders made of plastics were developed in the form of a block diagram. Calculation carried out according to the algorithm allowed to determine the components in which it is possible to use plastic as a design material. The calculations were made for several variants of conceptual designs having similar features but different dimensions and operating parameters resulting from them. Similarities allowed for considering design variants as a series. Two variants of diameters, ø30 and ø50 were chosen as series representation, for which actual models of plastic cylinders were created. Models of cylinders were placed in sequence on a specially designed test stand which allowed for measurements operating parameters. A second, traditional cylinder made of metal was placed coaxially on the stand, in the way, that its piston rod was a load for the model. The examination was carried out according to the international standards- ISO 10100:2001(E). Recognizing the tests included in the standard as insufficient for a prototype made of material with untypical characteristics, additional tests were performed. Within additional tests, with use of optical displacement sensors, structural deformation measurements were made during piston rod movement, as well as tests of long-time operating of models were performed. Performed tests confirms the right direction in the approach to designing of hydraulic cylinders made of plastics.
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塑料液压缸系列的研究
在用于设计现代机器的材料中,可以观察到塑料材料参与的增长。同样在液压系统中,以前由金属制成的液压系统元件或其部件,现在越来越多地被塑料所取代。考虑到在液压系统中使用塑料所带来的结构、技术和经济效益,来自弗罗茨瓦夫科技大学机械设计和摩擦学基础系流体动力研究小组的科学家们正在致力于开发一种完整的液压系统,其中的主要元件,如气缸、阀门和泵,将全部或大部分由塑料制成。本文提出了塑料圆柱系列的设计假设,为验证这些假设而进行的原型模型研究,以及结论和未来的研究目标。本系列的开发工作首先分析了目前已有的液压缸设计方法。在金属圆柱设计方法的基础上,以方框图的形式提出了自己的塑料圆柱设计算法。根据该算法进行的计算允许确定可能使用塑料作为设计材料的部件。对几种具有相似特征但尺寸和操作参数不同的概念设计进行了计算。相似性允许将设计变体视为一系列。选择了两种直径的变体,ø30和ø50作为串联表示,并为此创建了塑料圆柱体的实际模型。气缸模型按顺序放置在一个专门设计的试验台上,以便测量操作参数。另一个传统的金属圆柱体被同轴地放在架子上,这样一来,它的活塞杆就成了模型的负荷。检查是按照国际标准ISO 10100:2001(E)进行的。认识到标准中包括的测试不足以用于具有非典型特性的材料制成的原型,因此进行了额外的测试。在额外的测试中,使用光学位移传感器,测量了活塞杆运动期间的结构变形,并进行了模型的长时间运行测试。通过试验,确定了塑料液压缸设计方法的正确方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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