简介:AresearchonkineticsofAlevaporationfromliquidU—Alalloyswasmadeinavacuuminductionmelting(VIM)furnaceat1673—1843K.TheevaporationrateofAlwasfoundtobefirstorderwithrespecttoAlcontentinthemelt.TheoverallmasstransfercoefficientofAlwasdeterminedanditwasfoundthattheevaporationrateofAlincreasedwithincreasingtemperatures.TheapparentactivationenergyofAlevaporationat1673-1843Kwas171.5kJmol-1.ThevalueofmasstransfercoefficientofAlintheliquidphasewasestimatedtobe3.77×10-6,7.41×10-6,and9.40×10-6ms-1at1673,1753,and1843K,respectively.Meanwhile,ratedeterminingstepswerediscussedanditwasconcludedthattheevaporationrateofAlismainlycontrolledbyliquidphasemasstransfer.
简介:Inducedembryonicstemresourcesfortheobservationofthecell(ES)cellsareexpectedtobepromisingcellbehaviorsindevelopmentalbiologyaswellastheimplantationincelltreatmentsinhumandiseases.ArecombinantE-cadherinsubstratumwasdevelopedasacellrecognizablesubstratumtomaintaintheEScells'self-renewalandpluripotencyatsinglecelllevel.Furthermore,thegenerationofvariouscelllineagesindifferentgermlayers,includinghepaticorneuralcells,wasachievedonthechimericproteinlayerpreciselyandeffectively.Theinductionandisolationofspecificcellpopulationwascarriedoutwiththeenhancingeffectofotherartificialextracellularmatrices(ECMs)inenzyme-freeprocess.ThemurineEScell-derivedcellsshowedhighlymorphologicalsimilaritiesandfunctionalexpressionstomaturedhepatocytesorneuralprogenitorcells.
简介:用Ag-Cu-Zn-Snfiller金属黄铜以铜锌金焊接到钢的正式就职在这研究被调查。微观结构和性质上的Ag内容的影响借助于光显微镜学被分析,扫描电子显微镜学和电子探查微量分析。缺点免费关节用Ag-Cu-Zn-Snfiller被完成金属。关节的微观结构主要由基于Ag的稳固的答案和基于Cu的稳固的答案组成。Ag内容和冷却的率的增加两个都导致了象最容易溶解的结构一样的针的增加。张力的力量随Ag内容的增加减少了。在用Ag25CuZnSnfiller金属的房间温度的张力的力量到达了445MPa。用Ag-Cu-Zn-Snfiller金属的所有破裂介绍了可锻的特征。
简介:hydroxyapatite(哈)涂层在对待H2O2的碳/碳(C/C)上被完成通过热水地对待和在超声的水下面在一个氨答案加热扔的CaHPO4涂层的正式就职合成洗澡。然后,这哈涂层被放在一个NH4F答案并且热水地再对待制作氟化的hydroxyapatite(联邦住房管理局)为在353,373,393和413K的24h的涂层分别地。结构,形态学和HA和联邦住房管理局涂层的化学作文被SEM,XRD,版本和FTIR描绘,并且粘着性和这些联邦住房管理局涂层的化学稳定性被擦伤测试和沉浸测试分别地检验。结果证明同样准备的联邦住房管理局涂层包含了像针或像条纹的晶体,与那些不同HA涂层。作为加氟作用温度玫瑰,FHA涂层的粘着性首先在在353和393K之间的温度从34.8~40.9N增加了,然后在413K减少了到24.2N,当FHA涂层的溶解率稳定地减少了时。为FHA涂层的性质变化的原因被分析涂层的形态学,作文和结构建议。