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时间:2019-02-05
《对于yx形液压密封圈的有限元分析及结构优化:》由会员上传分享,免费在线阅读,更多相关内容在工程资料-天天文库。
1、2011年7月润滑与密封July2011第36卷第7期LUBRICAT10NENGINEERINGV01.36No.7DOI:10.3969/j.issn.0254—0150.2011.07.016Yx形液压密封圈的有限元分析及结构优化于润生杨秀萍(天津理工大学机械工程学院天津300384)摘要:应用超弹性理论和非线性理论,采用有限元方法对Yx形液压密封圈的性能进行模拟,分析其失效的位置和模式,研究参数对密封性能的影响,提出结构优化模型。结果表明:Yx形密封圈工作时最大应力出现在上下唇交汇处,变形最大区域发生在Yx形开口靠近内唇处,其根部有较大的接触压力,并且可能发生咬伤现象;介质压
2、力增大时,剪应力和最大接触压力明显增加;最大变形随初始压缩率的增加而线性增大,最大剪应力在压缩率为20%时达到最大;槽口圆角半径对Yx形密封圈密封性能的影响很小;摩擦因数增大时,最大剪切应力明显增加,但最大变形和最大接触压力都有减小的趋势。结构尺寸优化后,密封性能增强,接触宽度明显减小,密封圈根部摩擦和磨损得到改善,可以提高密封圈的使用寿命。关键词:Yx密封圈;非线性;有限元;结构优化中图分类号:TB42文献标识码:A文章编号:0254—0150(2011)7—066—4FiniteElementAnalysisandOptimizationDesignofYxShapeHydrau
3、licSealingRingYuRunshengYangXiuping(SchoolofMechanicalEngineering,TianjinUniversityofTechnology,Tianjin300384,China)Abstract:Basedonsuperelasticitytheoryandnonlineartheory,theperformancesofYxshapehydraulicsealingring,suchasthesealingringdeformation,thecontactpressureandstressweresimulatedbyfini
4、teelementmethod,thefailurepositionandpatternswereanalyzed,theeffectofparametersonsealingperformancewerestudied,thestructureoptimizationmodelwasputforward.Resultsshowthatthebiggeststressappearsintheintersectionoflips.thelargestdeformationOC—cursinYxshapeopeningsnearinnerlip,andtherootofsealingri
5、nghaslargercontactpressure,whichcouldresultinbitephenomenon.Theshearstressandmaximumcontactpressureincreasesignificantlywiththeincreaseofmediumpressure.Themaximumdeformationincreaseslinearlywiththeincreaseofinitialcompressionratio,maximumshearstressreachestothemaximumwhenthecompressionrateis20%
6、.NotchfilletradiusofYxshapesealingringhasalittleeffectonsealper—formance.Withtheincreaseoffrictioncoeficient,themaximumshearstressincreasessignificantly,butthemaximumde-formationandmaximumcontactpressuredecrease.Afterstructuresizeoptimization,thesealingperformanceofYxshapehydraulicsealingringis
7、improved,thecontactwidthisdecreasedgreatly,thefrictionandwearofsealingringrootisim—proved,andtheservicelifeofsealingisprolonged.Keywords:Yxsealingring;nonlinearity;finiteelement;structureoptimization液压密封圈是液压系统防止泄漏,提高容积效率动的密封。本文作者应
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