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。
简介:Inthisstudy,Almatrixcompositesreinforcedby7.5and15vol.%B4CparticlesandalsomonolithicAl(AlwithouttheB4Cparticles)wereproducedbywetattritionmillingandsubsequenthotforwardextrusionprocesses.Themicrostructureofthecomposites,evaluatedbyscanningelectronmicroscopy(SEM),showedthattheB4CparticleswereproperlydistributedintheAlmatrix.MechanicalpropertiesoftheAI/B4CcompositesandmonolithicAlwereinvestigatedbytensile,wearandhardnesstests.TheresultsrevealedthatwithincreasingcontentofB4Cparticles,thetensilestrengthandmicrohardnessofcompositesincreasedbuttheelongationdecreased.Inaddition,thetensilestrengthandmicrohardnessofcompositesampleswerehigherthanthoseofmonolithicAl.ThedensitymeasurementsrevealedthatthedensityofcompositesdecreasedwithincreasingcontentoftheB4Cparticles.
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简介:Anovelin-situroutewasemployedtosynthesizeLiFePO4/carbon-nanofibers(CNFs)composites.Theroutecombinedhigh-temperaturesolidphasereactionwithchemicalvapordeposition(CVD)usingFe2O3andLiH2PO4astheprecursorsforLiFePO4growthandacetylene(C2H2)asthecarbonsourceforCNFsgrowth.ThecompositeswerecharacterizedbyX-raydiffraction(XRD),Brunauer-Emmett-Teller(BET)specificsurfacearea,fieldemissionscanningelectronmicroscopy(FE-SEM),andtransmissionelectronmicroscopy(TEM).Theelectrochemicalperformanceofthecompositeswasstudiedbygalvanostaticcyclingandcyclicvoltammetry(CV).Theresultsshowedthatthein-situCNFsgrowthcouldberealizedbythecatalyticeffectoftheFe2O3precursor.Thesampleafter80minCVDreactionshowedthebestelectrochemicalperformance,indicatingapromisingapplicationinhigh-powerLi-ionbatteries.
简介:微弧的氧化(毛)/zinc硬脂酸盐(ZnSA)合成涂层经由毛与superhydrophobicZnSA的电极淀积处理并且随后的封上被制作。表面形态学,化学作文和涂层的腐蚀抵抗用扫描电子显微镜学的地排放被调查,Fourier变换红外线,X光检查衍射并且电气化学并且氢进化大小。结果显示毛涂层被下列superhydrophobicZnSA涂层高效地封上。MAO/ZnSA合成涂层显著地由于它的superhydrophobic功能提高了Mg合金Mg-4Li-1Ca的腐蚀抵抗。另外,腐蚀机制为合成涂层被建议并且讨论。
简介:通过添加适量的添加剂,采用正交试验方法,研究了高氯化铵质量浓度下在Q235钢基体上低温电镀Ni-P合金的工艺参数。实验得出最佳工艺条件为:NiSO4·6H2O40g/L、NaH2PO2·H2O30g/L、H3BO315g/L、NH4Cl32g/L、添加剂T10.12g/L、添加剂T20.03g/L、添加剂T30.1g/L、施镀温度45℃、电流密度0.015A/cm2、pH=4。最佳工艺条件下所获镀层的EDS分析表明,镀层由靠近基体部位到镀层表面部位,P质量分数变化情况为6.61%→7.18%→8.73%。随着离基体距离的增大,镀层显微结构由晶态向微晶转化,最后为完全非晶态。
简介:纵的张力的性质原文如此有不同纤维体积部分的f/Ti-6Al-4Vcomposites被蒙特卡罗2-D模仿有限元素模型。纤维力量的随机的分发被二参数的Weibull功能表示。同时,接触元素和出生死亡元素被用来在debonding和纤维破裂以后描述界面的滑动过程(或矩阵裂开)分别地,它被子程序认识到在ANSYS-APDL(ANSYS参量的设计语言)应允了。试验性的结果证明收益应力和最终的张力的强度原文如此有增加的f/Ti-6Al-4Vcomposites增加纤维体积部分,当他们的相应紧张只是时相反。另外,几乎,一样的失败模式被获得在原文如此有各种各样的纤维体积部分的f/Ti-6Al-4Vcomposites什么时候界面砍力量被修理。最后,张力的力量由有限元素预言了分析与由全球分享负担的模型,预言了那相比本地人分享负担的模型和混合物的常规统治,因此画结论那个本地分享负担的模型为最终的张力的力量的预言是很完美的。
简介:Thesol-gelprocessofcitricacidchelatingwithmetalcationsforthesynthesisofnormalspinelLiMn2O4andthereactionmechanismwereinvestigatedbymeansofXRD,IR,TG-DTA,andSEM.Theresultsshowthatatthebeginninglithiumcitrateandchelatecompoundofcitricacidwithmanganeseionsformed,andthenwithheatingtheesterificationandcondensationreactionsoccuredbetweenthemandglycol.TheproductsobtainedarepolymersinwhichmetalcationsaredistributedhomogeneouslyonatomicscalethatensurehighreactivitytocationsofLi+andMn2+.Firingthegelpreparedbythisprocess,thelatticediffusionsofsolidreactantionscausedbynon-homogeneityofreactantsareeliminatedandavoided.At400℃phase-pureLiMn2O4withnanometerscalecrystallizationhavingprecisestoichiometryandperfectcrystallizationcanbeobtained.Themodelofchelatecoordinateofdouble-moleculebetweencitricacidandMn2+inthegelnetworkisproposed.ItisimportantforexplainingthedispersionstateofMn2+andtheformationprocessofgelbythismodel.