轴向柱塞泵缸体的应力分析

IF 0.7 Q4 ENGINEERING, MECHANICAL International Journal of Fluid Power Pub Date : 2022-03-21 DOI:10.13052/ijfp1439-9776.2332
Ivan Baus, Robert Rahmfeld, Andreas Schumacher, H. Pedersen
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引用次数: 0

摘要

对于轴向活塞装置,产品优化在开发阶段发挥着至关重要的作用,在开发阶段,高效且具有价格吸引力的产品设计和制造流程是产品成功的关键。此外,市场对更轻、更紧凑、高效和可靠的产品的需求达到了极限。因此,可靠性是本文的重点,研究内容包括应用于轴向柱塞泵缸体的材料应力计算的方法分析。提出了一个简化的计算模型,并对其进行了评估,同时为没有深厚技术知识或使用昂贵有限元模拟工具的用户提供了方便。分析计算方法提供了用于不同目的的应力分布,如设计评估或作为寿命计算的载荷谱。此外,所开发的计算方法是通用的,使该方法能够用于任何标准轴向活塞泵。该方法利用应力确定模型,该模型包括由外部和内部影响因素引起的力的总和。为了证明该方法的成功,通过有限元分析获得的计算结果和模拟结果之间的比较表明了强烈的正一致性。
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Stress Analysis of the Cylinder Block in an Axial Piston Pump
For axial piston units, product optimisation plays an essential role in the development phase, where an efficient and price-attractive product design and manufacturing process is the key to the success of a product. Moreover, the market needs are on lighter, more compact, efficient, and reliable products designed to the limit. Therefore, reliability is the focus of this work, where the research includes method analysis of the material stress calculation applied to the cylinder block implemented in an axial piston pump. A simplified calculation model is presented and evaluated concerning load while remaining accessible for users without deep technical knowledge or access to expensive Finite Element (FE) simulation tools. The analytical calculation method delivers a stress distribution intended for different purposes like design evaluation or as load spectrum for lifetime calculation. Additionally, the developed calculation method is generalised, enabling the methodology to be used on any standard axial piston pump. The methodology utilises the stress determination model, which includes the load as a sum of forces caused by the external and internal influencing factors. To show the method’s success, a comparison demonstrates strong positive agreement between the calculated and simulated stress results obtained by Finite Element Analysis.
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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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