简介:有一般公式的1,10-phenanthroline(phen)的铈,镨和钕的硝酸盐建筑群[行(phen)2(NO3)2(H2O)2]·NO3(在哪儿,Ln=Ce,Pr和Nd)被X光检查晶体学准备并且描绘。这些建筑群的Thermolysis被同时的thermogravimetry(TG)和微分热分析(DTA)调查。等温的TG被拿用模型适合评估运动参数以及为免费isoconversional方法建模。thermolytic小径也被建议,它包含点火跟随的分解。所有三建筑群有第十期协作并且显示出multistep分解。以便评估快速的加热的反应,点火延期(Di)大小被承担。为点火的激活精力被发现在顺序减少:Nd>Pr>Ce。
简介:InordertoimprovethecorrosionandmechanicalpropertiesofAM50magnesiumalloy,1wt.%GdwasusedtomodifytheAM50magnesiumalloy.Themicrostructure,corrosionandmechanicalpropertieswereevaluatedbyX-raydiffraction(XRD),scanningelectronmicroscopy(SEM),energydispersivespectroscopy(EDS),electrochemicalandmechanicalstretchmethods.Theresultsindicatedthatβ-Mg17Al12phasedecreasedandAl2Gd3andAl0.4GdMn1.6phaseexistedafterGdaddition.BecauseoftheGdaddition,thegrainofAM50magnesiumalloywasrefinedsignificantly,whichimprovedthetensilestrengthofAM50magnesiumalloy.Thedecreasingofβphaseimprovedthecorrosionresistanceofthemagnesiumalloy.ThefracturemechanismoftheGdmodifiedAM50magnesiumalloywasquasi-cleavagefracture.Thecorrosionresidualstrength(CRS)ofAM50magnesiumalloywasimprovedafter1wt.%Gdaddition.
简介:用溶胶-凝胶法制备镍锌共掺杂Z型锶钴铁氧体Sr3(NiZn)xCo2(1-x)Fe24O41(x=0~0.5)粉末。用X射线衍射(XRD)和扫描电镜(SEM)表征该铁氧体粉末的晶体结构和表面形貌,并测试其室温磁滞回线和室温电阻率。用微波矢量网络分析仪测定该粉末在2~18GHz微波频率范围的复介电常数和复磁导率,根据测量数据计算电磁损耗角正切及微波反射率,分析该材料的微波吸收性能与电磁损耗机理。结果表明:Sr3(NiZn)xCo2(1-x)Fe24O41粉末呈六角片状形貌,晶体结构为Z型,具有良好的软磁特性;x=0.3时该材料的电阻率最低,微波吸收效果最好,在13.5GHz频率的吸收峰为25.1dB,10dB频带宽度为7.7GHz,兼具强的磁损耗和弱的介电损耗。