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基于ANSYSWorkbench柱塞泵主轴动、静态性能分析 ANSYSWorkbenchisapowerfulsoftwareplatformforengineeringsimulationandanalysis.ThispaperpresentsastudyonthedynamicandstaticperformanceanalysisofaplungerpumpmainshaftusingANSYSWorkbench.Theplungerpumpisacommontypeofpositivedisplacementpump,whichiswidelyusedinvariousindustriesforpumpingfluids. 1.Introduction: Theplungerpumpmainshaftisacriticalcomponentintheplungerpumpsystem.Itisresponsiblefortransmittingtherotarymotionfromthedrivertothepiston,whichgeneratesthepumpingaction.Thedynamicandstaticperformanceofthemainshaftdirectlyaffecttheoverallpumpperformance.Therefore,itisessentialtoanalyzethebehaviorofthemainshaftunderdifferentoperatingconditions. 2.Methodology: Inthisstudy,theanalysisisperformedusingANSYSWorkbench,whichprovidesacomprehensivesetoftoolsforconductingfiniteelementanalysis(FEA).Themainstepsinvolvedintheanalysisareasfollows: 2.1GeometryandMeshGeneration: The3DCADmodeloftheplungerpumpmainshaftisimportedintoANSYSWorkbench,wherethegeometryiscleanedandrepairedifnecessary.Then,afinemeshisgeneratedonthemainshaftusingANSYS'automatedmeshingtool. 2.2MaterialPropertiesandBoundaryConditions: Thematerialpropertiesofthemainshaft,suchasYoung'smodulusandPoisson'sratio,arespecifiedintheANSYSWorkbench.Additionally,theboundaryconditions,includingtherotationalspeedandappliedloads,arealsodefined. 2.3DynamicAnalysis: Toevaluatethedynamicperformanceofthemainshaft,amodalanalysisisconducted.Thenaturalfrequenciesandcorrespondingmodeshapesareobtained,whichprovideinsightsintothevibrationcharacteristicsoftheshaft.Anycriticalmodesthatmayleadtoresonanceorexcessivevibrationcanbeidentifiedandaddressedduringthedesignphase. 2.4StaticAnalysis: Thestaticperformanceofthemainshaftisanalyzedbyapplyingthespecifiedloadsandcalculatingtheresultingstressesanddeformations.Thisanalysishelpstodeterminewhethertheshaftcanwithstandtheappliedloadswithoutfailureorexcessivedeformation.Itcanalsoidentifypotentialstressconcentrationareasthatmayrequiredesignimprovements. 3.ResultsandDis