Analysis of hydraulic units manufactured by powder bed fusion

R. Pavel, Rodionov Leonid, Satsyuk Ivan
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Abstract

This work provides collecting, analyzing and discussing the published information in the field of additive manufacturing of hydraulic units, hydrodynamic characteristics, hydraulic and mass-dimensional characteristics, sealing of hydraulic units [1], [2], [3]. The goal of the research consists of producing hydraulic units with increased energy efficiency manufactured by the SLM method. To do this, the authors have provided an overview of the current state of the hydraulic units manufactured by the powder bed fusion technologies. Groups of units and their parts, most frequently produced by powder bed fusion technologies have been placed special emphasis on. In the examined units, the pressure and flow rates remained the same as in the original manufacturing method. The use of optimal design programs led to a reduction in the mass and dimensions of the casing parts by 95% and 75% respectively, and also to obtaining 60% less pressure loss at a given flow rate. The SLM method has been identified as the most optimal for producing sealing surfaces. From the point of view of surface quality, we have come to conclusion that the roughness of the valves channels, manifolds and valve blocks within Ra 2-40 μ m can be obtained by powder bed fusion technologies. For spool valves and valve-saddle surfaces obtained by powder bed fusion technologies, post-processing is required because of the requirement for lower durability for long- term performance. Further research will be focused on the development of a methodology for designing energy-efficient hydraulic units with reduced mass and hydrodynamic characteristics.
粉末床熔合液压装置的分析
本工作收集、分析和讨论了液压单元增材制造、流体动力特性、液压和质量尺寸特性、液压单元密封等领域的公开资料[1]、[2]、[3]。该研究的目标包括通过SLM方法生产提高能源效率的液压单元。为此,作者概述了粉末床熔合技术制造的液压装置的现状。最常见的是由粉末床熔合技术生产的单元组及其部件已被特别强调。在测试单元中,压力和流量保持与原始制造方法相同。优化设计程序的使用使套管部件的质量和尺寸分别减少了95%和75%,在给定流量下压力损失也减少了60%。SLM方法被认为是生产密封面的最佳方法。从表面质量的角度来看,我们得出结论,粉末床熔合技术可以获得Ra 2-40 μ m范围内的阀门通道、歧管和阀块的粗糙度。对于通过粉末床融合技术获得的滑阀和阀座表面,由于对长期性能的耐久性要求较低,因此需要进行后处理。进一步的研究将集中在设计具有减少质量和水动力特性的节能液压装置的方法上。
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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