简介:Fe3AlandCr18-Ni8steelwerebondedinvacuumandaninterfacewasformedbetweenFe3AlandCr18-Ni8steel.Stressdistributionatthediffusion-bondedinterfacewasresearchedbynumericalsimulationandfiniteelementmethod(FEM).TheresultsindicatedthatthepeakstressappearedattheinterfacenearCr18-Ni8steelside.Thisisthekeyfactortoinducecrackatthisposition.Withtheenhancementofheatingtemperature,thepeakstressatthebondedinterfaceincreases.Whenthetemperatureis1100℃,thepeakstressisupto65.9MPa,whichisbiggerthanthatat1000℃by9.4%.Inaddition,thepeakstressbecomesbiggerwiththeincreaseofthethicknessofbasemetalfrom1mmto8mm.Whilethethicknessismorethan8mm,thepeakstressvariesslightlywiththechangeofthethickness.
简介:ESD(electrosparkdeposition)isapromisingprocesstoproducehardandwear-resistingcoatingsonmetallicsubstrates.InthispapermicrostructureandinterfacialcharacteristicsoftheWC92-Co8coatedontitaniumandcarbonsteelarepresented.Ametallurgicalbondingbetweenthecoatingandsubstrateisobtained.TheTielementwasfoundtodistributeinWC92-Co8atthemetalpool,aswellastheinterfacebydiffusion.SomenewphaseswereproducedinthecoatinglayerduetothechemicalreactionduringtheESDprocess.ExperimentalobservationandthermodynamicanalysiswereutilizedtostudythemechanismofESD.
简介:TiC/Cr18Ni8steelbondedcarbidesweresynthesizedbyvacuumsinteringwithmixedpowdersofiron,ferrotitanium,ferrochromium,colloidalgraphiteandnickelasrawmaterials.Themicrostructureandmicrohardnessofthesteelbondedcarbideswereanalyzedbyscanningelectronmicroscope(SEM),X-raydiffraction(XRD)andRockwellhardometer.ResultsshowthatthephasesofsteelbondedcarbidesmainlyconsistofTiCandFe-Cr-Nisolidsolution.ThesynthesizedTiCparticlesarefine.Mostofthemarenotmorethan1μm.Withtheincreaseofsinteringtemperature,theporosityofTiC/Cr18Ni8steelbondedcarbidesdecreasesandthedensityandhardnessincrease,butthesizeofTiCparticlesslightlyincreases.Underthesamesinteringconditions,thedensityandhardnessofsteelbondedcarbideswithC/Tiatomicratio0.9arehigherthanthosewithC/Tiatomicratio1.0.TheTiCparticleswithC/Tiatomicratio0.9aremuchfinerandmorehomogeneous.
简介:Thefatiguepropertiesoffrictionstirwelded(FSW)buttjointandbasemetalofMB8magnesiumalloywereinvestigated.ThecomparativefatiguetestswerecarriedoutusingEHF-EM200K2-070-1AfatiguetestingmachineforbothFSWbuttjointandbasemetalspecimens.ThefatiguefractureswereobservedandanalyzedusingascanningelectronmicroscopeofJSM-6063LAtype.TheexperimentalresultsshowthatthefatigueperformanceoftheFSWbuttjointofMB8magnesiumalloyissharplydecreased.Theconditionalfatiguelimit(2×10~6)ofbasemetalandweldedbuttjointisabout77.44MPaand49.91MPa,respectively.Theconditionalfatiguelimit(2×10~6)oftheweldedbuttjointis64.45%ofthatofbasemetal.Themainreasonsarethattheweldingcanleadtostressconcentrationintheflasharea,tensileweldingresidualstressintheweldedjoint(Theresidualstressvaluewas30.5MPa),aswellasthegrainsizeisnotuniformintheheat-affectedzone.Thecleavagestepsorquasi-cleavagepatternspresentonthefatiguefracturesurface,thefracturetypeoftheFSWbuttjointbelongstoabrittlefracture.
简介:本文利用嵌入式系统技术和图像检测技术设计了一种应用于工业自动化焊缝检测器的新方案。与基于PC机和图像检测技术相结合的模式相比,该焊缝检测器具有功耗低、稳定性好、专用性强和体积小等优点。系统硬件采用DSP+ARM双核处理器架构,选用专用数字图像处理器TMS320DM6437作为图像算法处理的核心,S3C2440工业级ARM9内核芯片作为系统的主控制单元。操作系统平台采用源代码开放的Linux作为嵌入式操作系统;焊缝检测图像处理算法采用滤波处理、阈值分割和小面积删除法作为图像的预处理,采用边缘检测与边界坐标扫描法获得焊缝的中心线,进而用领域坐标扫描法准确地获取焊缝中心点,较好地完成焊缝的检测。