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新型流体袋缓冲机构的几何参数对缓冲性能的敏感性分析和优化(英文) Title:SensitivityAnalysisandOptimizationofGeometricParametersofaNovelFluidBagCushioningMechanism Abstract: Cushioningmechanismsplayacrucialroleinprotectingdelicateequipmentandfragilegoodsduringtransportationorhigh-impactevents.Thisstudyfocusesonthesensitivityanalysisandoptimizationofgeometricparametersofanovelfluidbagcushioningmechanism.Theaimistoinvestigatehowdifferentgeometricparametersaffectthecushioningperformanceandsubsequentlyoptimizetheseparameterstoenhancetheoverallperformanceofthemechanism. 1.Introduction Cushioningmechanismsareessentialforreducingtheimpactforcesandvibrationsexperiencedbysensitiveequipmentandproducts.Thetraditionalcushioningmethods,suchasfoam-basedmaterialsandsprings,havelimitationsintermsoftheirabilitytoprovideeffectivebufferandmitigateimpactforces.Asaresult,thereisanincreasingdemandforinnovativecushioningmechanismsthatcanofferimprovedperformanceandprotection. 2.LiteratureReview Thissectionprovidesanoverviewofexistingcushioningmechanismsandtheirlimitations.Inparticular,itfocusesonthedevelopmentandapplicationoffluidbagcushioningmechanisms.Theadvantagesofusingfluidbagcushioning,includingtheirabilitytodistributeimpactforcesandadapttovariousloadconditions,arehighlighted. 3.Methodology Theproposedmethodinthisstudyinvolvesasensitivityanalysisandoptimizationprocess.Thesensitivityanalysisaimstodeterminetheinfluenceofvariousgeometricparametersonthecushioningperformance.Severalkeygeometricparameterswillbeconsidered,suchasbagthickness,baglength,andbagdiameter.Theoptimizationprocesswillinvolvefindingtheoptimalcombinationoftheseparameterstoenhancethecushioningperformance. 4.ExperimentalSetup Atestsetupwillbedesignedandconstructedtoevaluatethecushioningperformanceofthefluidbagmechanism.Adroptestwillbeconductedtosimulateimpacteventsandmeasuretheaccelerationanddecelerationexperiencedbyanobject.Theparameterstobemeasuredincludepeakacceleration,impacttime,andenergyabsorption. 5.SensitivityAnalysis Thesensitivityanalysiswillin

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