简介:Basedonrigid-plasticfiniteelementmethod,askewrollingprocessofsteppedpartissimulated.Consideringnodesavingandeffectiveremeshing,thetetrahedronsolidelementsareusedtodiscreteworkpiece.Theworkpiecematerialadoptsrigid-plasticmodel,wheretheflowstressisfunctionofeffectivestrain,effectivestrainrateandtemperature.Thethermomechanicalcouplingisconsideredinthesimulation.Tomodelthespinningworkpieceundergoingplasticdeformation,anovelsolutionispresentedandappliedinthispaper.Thestressstateintheworkpieceandformingcharacteristicofskewrollingareanalyzed.Theformingload,includingrollertorqueandforcesinthreedirectionsarepredicted.Theaboveanalysesarehelpfultounderstandingofformingmechanismsandimprovingofprocessanddiedesign.
简介:Nearlysingle-phaseandpolycrystallinecharge-density-wavecompoundK_(0.3)MoO_3havebeenpreparedbyusingasimplemethod.Inthiswork,K_2CO_3andMoO_3wereusedasstartingmaterialsandreactedbyhotisostaticpressing(HIP)sintering.TheproductisnearlysinglephaseK_(0.3)MoO_3determinedbyX-raypowderdiffraction(XRD)andenergydispersivespectroscopy(EDS).MeasurementoftemperaturedependenceofresistivityrevealsthatthetransportpropertyofpolycrystallineK_(0.3)MoO_3obviouslydiffersfromthatofsinglecrystalduetothegrainboundariesandtheanisotropicstructureinthiskindofcompound.
简介:采用HSiCl3—NH3—N2(稀释气体)体系在石英陶瓷基板上通过低压化学气相沉积(LPCVD)法沉积出了Si3N4涂层,研究了工艺条件对涂层沉积速率的影响。结果表明,在没有稀释气体的情况下,随着沉积温度升高,Si3N4涂层的沉积速率逐渐增加,在850℃附近达到最大值,随着反应温度的进一步升高,涂层沉积速率下降。当存在稀释气体时,在所选温度范围内随着沉积温度的升高,Si3N4涂层的沉积速率一直增大,反应的表观活化能约为222kJ/mol。随着原料中NH3/HSiCl3流量比值的增大,Si3N4涂层的沉积速率逐渐增加,随后稳定,但稍有下降趋势。在所选稀释气体流量范围内,Si3N4涂层的沉积速率随着稀释气体流量的增加而增大。
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简介:有关于30-50nm的谷物尺寸的nanocrystallineMg2Si(n-Mg2Si)的Densification行为被hot-pressing在显示的400°C.The结果调查n-Mg2Si的那个thedensification过程展出了三线性segments:p<0.3GPa,0.3GPa
1.2GPa由Heckel决定了公式,在哪个之中在高压力范围p>1.2GPa的第三个快增加片断很少在常规纹理粗糙的polycrystallinematerials.Nevertheless被报导了,在调查的整个压力范围(0.125-1.500GPa),n-Mg2Si的densificationbehavior能是Kawakita公式p/C=(1/a)描述的井有在对协议的起始的孔的好同意的constanta=0.452的p+1/(ab)。
简介:HfB2具有高熔点(3250℃)和高硬度(29GPa),成为颇具潜力的超高温材料。目前研究较多的是HfB2-SiC复合材料。主要介绍了HfB2-SiC复合材料的常用制备方法,包括热压烧结、放电等离子体烧结、化学气相沉积等,并展望了HfB2-SiC超高温材料的发展趋势。
简介:Fe-Ni-Almixturesashot-pressingsinteringadditivetoTitaniumdiboride(TiB2)werestudied.ItisfoundthatliquidalloyformedunderhightemperaturehardlyhaseffectsonthedensificationbehaviorsofTiB2-independent.Fe-Ni-AladditivejustworksasfillerbetweenTiB2particlesanddoesnotchangetheTiB2-independentsinteringbehaviors.PressingmodehasagreateffectontheliquidflowingbetweenTiB2particles.Multiple-stepspressingmodewillgivemoretimeandspacefortheliquidflowingandimprovetherelativedensityofTiB2-Fe-Ni-Alcermet.