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基于流固耦合理论的离心泵冲压焊接叶轮强度分析

王洋 王洪玉 张翔 徐小敏

农业工程学报2011,Vol.27Issue(3):131-136,彩插4,7.
农业工程学报2011,Vol.27Issue(3):131-136,彩插4,7.DOI:10.3969/j.issn.1002-6819.2011.03.025

基于流固耦合理论的离心泵冲压焊接叶轮强度分析

Strength analysis on stamping and welding impeller in centrifugal pump based on fluid-structure interaction theorem

王洋 1王洪玉 1张翔 1徐小敏1

作者信息

  • 1. 江苏大学流体机械工程技术研究中心,镇江,212013
  • 折叠

摘要

Abstract

In order to accurately calculate the stress and deformation of the stamping and welding impeller in the flow field, the numerical simulation of the impeller coupled system was carried out by the CAE co-simulation platform used for tile multi-physical fields-ANSYS Workbench, with one-way fluid-structure interaction method. Theresults showed that the stress of the impeller was markedly uneven and the local stress concentration appeared in each operation condition. The total displacement of the distortion increased continuously as the radius increasing and it reached the maximum value at the edge of the impeller. The maximum equivalent stress of impeller was 48.7 MPa under the low flow rate condition of 0.6 times of design discharge, and decreased continuously as the flow rate increasing. The greatest displacement of total deformation was 0.0234 mm under low flow rate operations, which decreased firstly and then increased, and it, reached the minimum value of 0.0170 mm at the larger flow rate operation of 1.2 times of design discharge. In order to enhance the reliability, the impeller should not be operated at the low flow rate condition as far as possible. The results can provide effective references to the structural design and analysis for the stamping and welding impeller.

关键词

离心泵/有限元/应力分析/冲压焊接叶轮/流固耦合/等效应力

Key words

centrifugal pump/ finite element method/ stress analysis/ stamping and welding impeller/ fluid-structure interaction/ equivalent stress

分类

机械制造

引用本文复制引用

王洋,王洪玉,张翔,徐小敏..基于流固耦合理论的离心泵冲压焊接叶轮强度分析[J].农业工程学报,2011,27(3):131-136,彩插4,7.

基金项目

江苏省科技服务业计划项目(BM2008375) (BM2008375)

农业工程学报

OA北大核心CSCDCSTPCD

1002-6819

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