学科分类
/ 1
6 个结果
  • 简介:ProblemsaboutsurfacemountingprocessforfinepitchdevicesandreasonsonsolderbridgingofLtypeleaddevicesweldedaredepicted.Bridgingmechanismandinfluencefactorsareanalyzedwithtwo-dimensionalgeometricmodel.Basedonthis,high-densitysurfacemounttechnology(SMT)forfinepitchLtypeleaddevicesheatedbyscan-ninglaserisraised.SurfacemountprocessforQFP208onprintedcircuitboard(PCB)isstudied.Theresultsoftestsarethatitisquitepossibletosolvethesolderbridgingofsurfacemountingforpitchdeviceswithscanninglaser-heat-ingmethod.

  • 标签: Surface MOUNT TECHNOLOGY (SMT) DEFECT BRIDGING
  • 简介:904L是一种全奥氏体不锈钢,在焊接时易出现热裂纹,且晶间腐蚀和应力腐蚀开裂倾向较大。本文经可焊性分析后,从焊接材料和焊接工艺参数的选择入手,进行了焊接工艺性试验,找出了合适的焊接规范,并在实际产品的焊接中进行了严格的质量控制,生产出合格的产品。

  • 标签: 904L 镍基焊材 焊接
  • 简介:海南省近期集体签约28个项目,总投资935亿元。此次签约项目涉及工业制造和基础设施建设项目。签约金额在百亿元以上(含百亿元)的项目有4个,10亿元以上100亿元以内(含10亿元)的项目有12个。据了解,这些项目都是从海南省各市县申报项目中精心选出的,

  • 标签: 海南省 总投资 集体 建设项目 基础设施 工业制造
  • 简介:Intheacceleratordrivensub-criticalsystem(ADS)cooledbyliquidPbBialloy,theausteniticstainlesssteel316Lisoneofthecandidatesofstructuralmaterials.However,thecorrosionandwearbehaviorof316Lsteelinthehigh-velocitystreamofliquidPbBiisthemostessentialissue,whichisurgenttobepaidcloseattention.Inordertoacquirethemorphologyandmechanicalpropertiesof316Lsteelintheconditionsofdifferentrelativeflowingvelocity(RFV),respectively2.62m/s,3.69m/s,4.77m/s,theexperimentwascarriedoutindynamicliquidPbBiat550℃,uptoabout1500h.Accordingtotheresults,thesurfaceof316LhasbeencorrodedbadlyandtheelementsofNi,Cr,etc.werefoundtodissolvealot.WiththeincreaseoftheRFV,thefeatureof316Lsurfacechangedfromthesurfacewithmuchdeeperpitsandlooserstructurestotherelativeplanarone,andthethicknessoftheouteroxidelayerdecreasedgraduallywhilethatoftheinneroxidelayerdiminishedalittle,andthemicrohardnessoftheoutermostsubstratealsodeclinedincreasingly,inaddition,thedomainofthepartialsubstratewithitsmicrohardnessbeingaltereddeepenedfurther.Theseexperimentaldatawouldoffertheoreticalbasisandpracticalvaluestostudycorrosionconditionof316LsteelinliquidPbBiwithhigh-velocity.

  • 标签: 奥氏体不锈钢 力学性能 形态学 液态 316l 性能评价