简介:AComputationalStudyofGasPhaseChemistryinCarbonNanotubeSynthessbyPECVD;AfieldpointbasedapproachforsensorconditioninginMO-CVDreactors;AMethodforReal-TimeControlofThinFilmCompositionUsingOESandXPS;Amechanism-basedmodelofchemicalvapordepositionofepitaxialSi{sub}(1-x)Ge{sub}xflirts
简介:[篇名]1.55-umsilicon-basedreflection-typewaveguide-integratedthermo-opticswitch,[篇名]120×90ElementThermoelectricInfraredFocalPlaneArraywithPreciselyPatternedAu-blackAbsorber,[篇名]4H-SiCEpitaxialGrowthfcrHigh-PowerDevices,[篇名]A90nmgenerationcopperdualdamascenetechnologywithALDTaNbarrier,[篇名]Acomparativemicrotribologicalinvestigationofdiamond-likecarbonfilmsforapplicationsinmicrosystems,[篇名]Acomparisonofmicrocrystailinesiliconpreparedbyplasma-enhancedchemicalvapordepositionandhot-wirechemicalvapordeposition:electronicanddeviceproperties.
简介:以固相含量为20%(质量分数)、Al2O3/SiO2质量比为2:1的Al2O3-SiO2溶胶为原料,制备三维编织碳纤维增强莫来石(3DC/mullite)复合材料.分析溶胶的特性与莫来石化行为,发现溶胶经1300℃热处理基本实现完全莫来石化,凝胶粉呈现出较好的烧结收缩特性.通过溶胶“真空浸渍-干燥-热处理”路线制备出3DC/mullite复合材料,即使总孔隙率为26.0%,复合材料仍获得良好的力学性能,弯曲强度和断裂韧性分别为241.2MPa和10.9MPa·m1/2.表征复合材料在1200、1400和1600℃下的抗氧化性能.由于基体的进一步致密化,3DC/mullite复合材料在1600℃下氧化30min后,仅有微小的质量损失,力学性能几乎没有变化.