简介:3-Dformingofintermetallicsbyreactiverapidprototyping,AbasicstudyofDBFantennaforsmallsatelliteonNeLSproject,Aburstingfailurecriterionfortubehydroforming,AC-BANDPHASEDARRAYANTENNAUSINGDIGITALBEAMFORMINGINASURVEILLANCERADARSYSTEM,AcomparativeinvestigationoftheefficacyCO{sub}2andhigh-powerdiodelasersfortheformingofEN3mildsteelsheets,AComparativeStudyoftheFormingofEN3MildSteelSheetsWithCO2andHighPowerDiodeLasers.
简介:Anisotropyandnon-uniformityinplasticbehaviorofAZ31magnesiumalloyplates;Determinationoftruestress-strain-curvesandnormalanisotropyintensiletestswithopticalstrainmeasurement;Hydromechanicalforming-analternativeinmodernbodyproduction;Investigationoftheforminglimitsintheprocessesofsheetmetalstretching;Limitstrainsofanisotropicandsuperplasticsheetmetalforming;
简介:Anewrapidprototypingsystemandresearchonitstechnicalparameter,AStressBasedWrinklingCriterion,Aboutlinearandquadratic'Solid-Shelrelementsatlargedeformations,Anorthotropicspecificdamagemodelwithinclusionconsideration,ANCORBOND:Aparadigmshift,Anisotropicbehaviorofaluminiumalloyssheets.
简介:Continuousshear-amethodforstudyingmaterialelementspassingastationaryshearplane;DesignofHardWaterStableEmulsifierSystemsforPctroleum-andBio-basedSemi-syntheticMetalworkingFluids;Dielifepredictioninrapidprototypedies;Evolutionofdiesurfacesduringrepeatedstretch-bendsheetsteeldeformation;F.E.M.characterizationofdamagclawparametersbyinversetechnique;
简介:BearingresponseofThermoplasticComposite(TPC)Laminatesfabricatcdbyvacuumforming:experimentaltestsandsimulation;Developmentoftheprc-coat-typeadhesiveforall-olefininstrumentpanel;Modellingofisothermalconsolidationinglass-polypropylenecommingledcomposite;Ulirasonicconsolidationofaluminumtooling;AstandardforsilverCP/MASexperiments;
简介:Atrialforanexplosiveformingofaplatousingapaperasdiematerial;Applicationsandcapabilitiesofexplosiveforming;Explosiveformingofthin-wallsemi-sphericalparts;Explosiveformingtechnologyofindnstrialsphericalpressurevesselsandanumericalanalysisoftheformingprocess;Futureforexplosivematerialsprocessing;
简介:随着现代制造业的迅速发展,以净成形(NetShape)或近净成形(NearNetShape)为代表的塑性成形技术正日益受到重视。其中等温精密成形技术由于极大地改善了材料的塑性,提高了材料的充填能力,能够成形形状复杂、尺寸精度高的锻件,因而在近些年受到了普遍的重视。对于在航空发动机中有重要应用的发动机转子,其圆周上通常有大量叶片,叶片不仅薄而且呈扭曲状,制造难度很大。此外,为了满足构件减重的需要,许多结构锻件通常被设计成薄腹板并带有纵、横内筋的结构,这种薄腹高筋结构给构件的加工带来很大困难。对于大型薄腹高筋复杂构件,若对其使用性能要求不高,国外多采用精密铸造的方法成形,我国精密铸造技术与国外先进国家相比尚有一定差距,此类铸件的内部缺陷较多,加工成本较高,成品率较低。