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Thermosetting Coupling Analysis and Parameter Optimization of the Plastic Lining Pump Structure

机译:热固性耦合分析和塑料衬砌泵结构参数优化

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摘要

In order to obtain the optimum structure of the lining pump under the condition of fluid thermosetting coupling, according to the given design parameters, the structural parameters of the pump were calculated, the three-dimensional geometric model was established, and the flow field analysis was carried out by CFD; the inlet angle βb1, outlet angle βb2, wrap angle Φ, inlet diameter D1, and outlet diameter D2 of the impeller were selected as the five factors to design orthogonal experiment, and the results were analyzed by range analysis; then, the efficiency and cavitation allowance were obtained as combined parameters under the evaluation index. The displacement deformation and stress distribution under the condition of the coupling field were obtained by the fluid-solid coupling analysis, and the orthogonal experimental table of the impeller structure of the lining plastic pump was established, and then the orthogonal experimental results are analyzed to obtain the influence of each structural parameter under the condition of each evaluation index and the optimum combination parameters. The influence situation and the best combination parameters under the condition of evaluation index, taking the minimum displacement deformation and minimum stress of impeller as the reference index, and the optimum combination parameters under the condition of minimum displacement and stress were as follows: the inlet diameter D1 was 76?mm, the outlet diameter D2 was 252?mm, the inlet angle was 26°, the outlet angle was 24°, and the wrap angle was 115°. Finally, the 3D printing technology was used to print out the physical model to the hydraulic performance experiment verification.
机译:为了在流体热固性耦合的条件下获得衬里泵的最佳结构,根据给定的设计参数,计算了泵的结构参数,建立了三维几何模型,并且流场分析是由CFD进行;入口角βB1,出口角βB2,叶轮的入口角度βb2,包拉角φ,入口直径d1和出口直径d2作为设计正交实验的五个因素,并通过范围分析分析结果;然后,在评价指标下获得效率和空化余量作为组合参数。通过流体 - 固体耦合分析获得耦合场条件下的位移变形和应力分布,并建立了衬里塑料泵的叶轮结构的正交试验表,然后分析了正交的实验结果以获得每个结构参数在每个评估指标条件下的影响和最佳组合参数。在评价指标条件下的影响情况和最佳组合参数,以最小位移变形和叶轮的最小应力作为参考指标,以及最小位移和应力条件下的最佳组合参数如下:入口直径D1为76Ωmm,出口直径D2为252Ωmm,入口角为26°,出口角为24°,包扎角为115°。最后,3D打印技术用于将物理模型打印到液压性能实验验证。

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