Optimization of Geometric Characteristics of Cycloidal Profiles of Gerotor Hydraulic Machines

S. O. Kireev, A. R. Lebedev, M. V. Korchagina
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Abstract

Introduction . The performance and reliability of gerotor hydraulic machines depend on the geometry of the cycloidal gearing profile. The existing methods of calculating and optimizing the profile parameters are cumbersome, multicriteria and difficult for practical application. Therefore, the problem of creating the methodology for calculating the parameters of the gerotor machine profile suitable for engineering calculations at the stage of conceptual design is a challenge. In this regard, the objective of this work was to modernize the methodology for designing the geometry of the profiles of the end section of hypocycloidal gears used in gerotor hydraulic machines, and to analyze the possibilities of their optimization during preliminary design. In the course of the study, the Mathcad computer mathematics system was used; numerical experiments were carried out to study the influence of geometric profile parameters on the performance and operability of the gerotor hydraulic machine, based on the data obtained and analyzed; recommendations for the design of optimal profiles of the end section of gerotor hydraulic machines were developed. Materials and Methods . Materials included known methods of profile parameters calculation, based on application of classical formulas of hypocycloidal equidistant used for outlining profiles of teeth of working elements of gerotor machines. The basic research method was modeling the gerotor machine profile using Mathcad computer mathematics system. Calculated data were obtained for the selected ranges of varying parameters, processed through the univariate regression analysis. Results. An algorithm for analyzing the tooth profile smoothness was developed. Two target parameters were defined: the cross-sectional area of the end profile, which affects the productivity; the smallest reduced radius of contact that determines operability of the working body. A technique for calculating the target parameters at the early stage of design was proposed. A number of optimal values of profile parameters according to the criteria of productivity and operability of gerotor machine was obtained. The dependences providing the optimum values of profile parameters at the stage of designing were constructed. Discussion and Conclusion . The developed methodology makes it possible to obtain an assessment of the performance and operability of the gerotor hydraulic machine at the design stage of the working body. The research results can be used in mechanical engineering when designing gerotor hydraulic machines in order to improve their technical and operational characteristics.
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旋转液压机摆线轮廓几何特性优化
介绍。转子液压机的性能和可靠性取决于摆线齿轮传动的几何形状。现有的轮廓参数计算和优化方法繁琐,多准则,难以实际应用。因此,在概念设计阶段建立适合工程计算的转子机外形参数的计算方法是一个挑战。在这方面,本工作的目的是现代化的设计方法,用于转子液压机的准摆线齿轮端面轮廓的几何形状,并分析其在初步设计优化的可能性。在研究过程中,使用了Mathcad计算机数学系统;在获得和分析数据的基础上,进行了数值实验,研究了几何轮廓参数对转子液压机性能和可操作性的影响;对旋涡液压机端部截面的优化设计提出了建议。材料与方法。材料包括基于经典准摆线等距公式的已知齿形参数计算方法,该公式用于绘制转子机械工作单元齿形轮廓。本课题的基本研究方法是利用Mathcad计算机数学系统对电机外形进行建模。对选定的各参数取值范围进行计算,并进行单变量回归分析。结果。提出了一种分析齿形平滑度的算法。确定了两个目标参数:影响生产率的端面截面面积;决定工作体的可操作性的最小减小接触半径。提出了一种在设计初期计算目标参数的方法。根据涡旋机的生产率和可操作性标准,得到了一系列的轮廓参数的最优值。建立了在设计阶段提供最优轮廓参数值的依赖关系。讨论与结论。所开发的方法可以在工作体的设计阶段对转子液压机的性能和可操作性进行评估。研究结果可为机械工程中设计转子液压机提供参考,以提高其技术性能和工作性能。
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