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Magnet-sleeve-sealed mini trochoidal-gear pump prototype with polymer composite gear

机译:磁性套筒密封的迷你摆线齿轮泵原型与聚合物复合齿轮

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摘要

The trochoidal-gear technology has been growing in groundbreaking fields. Forthcoming applications are demanding to this technology a step forward in the conceiving stage of positive displacement machines. The compendium of the qualities and the inherent characteristics of\udtrochoidal-gear technology, especially towards the gerotor pump, together with scale/size factor and magnetic-driven transmission has led to the idea of a magnet-sleeve-sealed variable flow mini trochoidal-gear pump. From its original concept, to the last phase of the design development, the proof of concept, this new product will intend to overcome problems such as noise, vibration, maintenance, materials, and dimensions. The paper aims to show the technological path followed from the concept, design, and model, to the manufacture of the first prototype, where the theoretical and numerical approaches are not always directly reflected in the prototype performance results.\udEarly in the design process, from a standard-commercial sintered metal mini trochoidal-gear unit, fundamental characteristics and dimensional limitations have been evaluated becoming the strategic parameters that led to its configuration. The main technical challenge to confront is being sealed with non-exterior driveshaft, ensuring that the whole interior is filled and wetted with working fluid and helping the hydrodynamic film formation, the pumping effect, and the heat dissipation. Subsequently, the mini pump architecture, embodiment, methodology, materials, and manufacture are presented. The trend of applications of polymer composite materials and their benefits wanted to be examined with this new mini pump prototype, and a pure polyoxymethylene mini trochoidal-gear set has been designed and manufactured. Finally, both the sintered and the polymer trochoidal-gear units have been experimentally tested in an in-house full-instrumented mini test bench. Although the main goal of the presented work is the development of a new mini trochoidal-gear pump prototype rather than a numerical study, the results have been compared with numerical simulation. Subsequently, the prototype of the mini trochoidal-gear pump is a feasible proof of concept supported by functional indexes and the experimental results.
机译:摆线齿轮技术在开创性领域中一直在发展。即将出现的应用要求该技术在容积式机器的构思阶段迈出一步。 \ udchochoidal-gear技术的质量和固有特性的纲要,尤其是摆线齿轮泵的质量和固有特性,再加上比例/尺寸系数和磁驱动传动装置,导致了磁套筒密封的可变流量微型摆线齿轮的想法。齿轮泵。从最初的概念到设计开发的最后阶段,即概念验证,该新产品将旨在克服噪声,振动,维护,材料和尺寸等问题。本文旨在展示从概念,设计和模型到制造第一个原型的技术路线,其中理论和数值方法并不总是直接反映在原型性能结果中。\ ud在设计过程的早期,从标准商业烧结金属微型摆线齿轮装置中,已经评估了基本特性和尺寸限制,成为构成其配置的战略参数。面临的主要技术挑战是用非外部传动轴密封,以确保整个内部充满工作流体并被其润湿,并帮助形成流体动力膜,提高泵送效果和散热。随后,介绍了微型泵的结构,实施例,方法,材料和制造。聚合物复合材料的应用趋势及其益处希望通过这种新型微型泵原型进行检验,并且已经设计并制造了一种纯聚甲醛微型摆线齿轮装置。最后,烧结和聚合物摆线齿轮装置均已在内部全仪器迷你测试台中进行了实验测试。尽管目前工作的主要目的是开发新型微型摆线齿轮泵原型而不是进行数值研究,但已将结果与数值模拟进行了比较。随后,微型摆线齿轮泵的原型在功能指标和实验结果的支持下是可行的概念证明。

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