离心压缩机端盖起吊机构结构设计与静力学分析
白俊峰1,张弛2,田东升3,佘皖宁4,周玙5
(1.沈阳鼓风机集团股份有限公司 透平工艺部,辽宁 沈阳 110869;2.沈阳鼓风机集团股份有限公司 研究院,辽宁 沈阳 110869;3.沈阳鼓风机集团股份有限公司 透平设计院,辽宁 沈阳 110869;4.沈阳鼓风机集团股份有限公司 定子车间,辽宁 沈阳 110869;5.沈阳鼓风机集团股份有限公司 科技管理部,辽宁 沈阳 110869)
摘要:垂直剖分式离心压缩机端盖的装配方法是装配压缩机的关键技术难题,根据现有端盖起吊机构,重新设计了一种可以调节起吊点的端盖起吊机构。通过Pro/E的参数功能对其进行参数化建模,以有限元理论为基础,施加端盖及起吊机构的重力载荷后,对起吊机构进行静力学强度分析,从而计算得出起吊机构的最大应力作用点及最大应力值,为起吊工具的设计提供理论依据,同时为优化改进奠定基础。
关键词:垂直剖分式压缩机;起吊机构;参数化建模;静力学分析
中图分类号:TH452 文献标志码:A doi:10.3969/j.issn.1006-0316.2018.05.018
文章编号:1006-0316 (2018) 05-0068-04
Structure Design and StaticsAnalysisfor the Centrifugal Compressor End Cover Lifting Mechanism
BAI Junfeng1,ZHANG Chi2,TIAN Dongsheng3,SHE Wanning4,ZHOU Yu5
( 1.ProcessingDepartment, Shenyang Blower Works Group Corporation, Shenyang 110869, China; 2.Research Institute, Shenyang Blower Works Group Corporation, Shenyang 110869, China; 3.Designing Institute, Shenyang Blower Works Group Corporation, Shenyang 110869, China; 4.Stator Workshop, Shenyang Blower Works Group Corporation, Shenyang 110869, China; 5.Science and Technology Department, Shenyang Blower Works Group Corporation, Shenyang 110869, China )
Abstract:The assembly method of the end cover in vertical split centrifugal compressor is the key technical problem for assembling compressor, a kind of end cover lifting mechanism which can adjust the lifting point is redesigned according to the existing end cover lifting mechanism. The redesigned lifting mechanism is parameterized modeled by the Pro/E software, the statics analysis of the lifting mechanism is done after applying the gravity load of end cover and lifting mechanism based on finite element theory, the maximum stress points and maximum stress values of the lifting mechanism are calculated, the theoretical basis for design the lifting mechanism can be provided, and the foundation for optimization and improvement is laid.
Key words:vertical split compressor;lifting mechanism;parameterized modeling;statics analysis
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收稿日期:2017-09-15
作者简介:白俊峰(1987-),男,辽宁沈阳人,硕士研究生,工程师,主要研究方向为离心式压缩机关键零部件加工工艺设计。
 

 

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