非晶IGZO,amorphous-IGZO
1)amorphous-IGZO非晶IGZO
英文短句/例句

1.Fabrication of IGZO Transparent Conductive Thin Films by L-MBE非晶IGZO透明导电薄膜的L-MBE制备
2.Nano-Crystallization Alloy Obtain from Amorphous Alloy FeCuNbSiB by the Shock Wave;非晶金属的激波微晶晶化、纳米晶化
3.decrystallized cotto消晶化棉,非晶化棉
4.non-metal-non-metal eutectic alloy非金属-非金属共晶合金
5.Design of Amorphous Alloys and Crystallization Behavior of Amorphous Alloys in a High Magnetic Field;非晶合金设计及强磁场下的非晶晶化行为
6.Laser Cladding of Zr-based Amorphous Composite Coatings and Laser-induced Crystallization of Zr-based Bulk Metallic Glasses;激光熔覆非晶复合涂层及非晶晶化研究
7.Metal-Induced Crystallization of Amorphous Silicon and Silicon Germanium Films非晶硅和非晶硅锗薄膜的金属诱导结晶
8.Study of High Image Quality Amorphous-Silicon Thin Film Transistor Liquid Crystal Displays高像质非晶硅薄膜晶体管液晶显示器的研究
9.Isothermal Crystallization Kinetics and Behavior of NiTiZrAlCuSi Bulk Metallic Glass;NiTiZrAlCuSi块体非晶合金等温晶化动力学及晶化行为
10.The selectivitys for grain size of crystal in process of annealed treatment for the amorphous;非晶退火晶化过程中晶粒度的可选择性
11.Crystallization and Electrochemical Corrosion Behaviors of Amorphous and Nanocrystalline Fe-Based AlloysFe基非晶和纳米晶合金晶化及电化学腐蚀行为
12.Crystallization Kinetics of Electrodeposited Amorphous/Nanocrystalline Ni_(81.32)Mo_(18.68) Alloy Coating电沉积Ni_(81.32)Mo_(18.68)非晶/纳米晶镀层的晶化动力学
13.Lacking distinct crystalline structure.非结晶质的没有明确结晶结构的
14.The Effects of Crystallization on the Correlated Properties in Some Bulk Metallic Glasses (BMGs);大块非晶及其晶化后相关性能的研究
15.Study on Crystallization Behavior and Properties of Fe-Si-B Metallic Glass;Fe-Si-B非晶合金晶化行为及性能研究
16.Study on the Preparation and Crystallization of Mg-based Bulk Amorphous Alloys;镁基大块非晶合金的制备及晶化研究
17.Glass Forming and Crystallization Analysis of Co-Based Amorphous Alloys;Co基非晶的玻璃形成及变温晶化分析
18.Magnetic Study and Application of Fe-based Amorphous Alloy and Nanocrystal;铁基非晶纳米晶磁性能的研究和应用
相关短句/例句

amorphous[英][?'m?:f?s][美][?'m?rf?s]非晶
1.Influence of annealing condition on the stress impedance of Fe-based amorphous alloy ribbons;退火条件对铁基非晶薄带压应力阻抗效应的影响
2.Influence of rare earths on Fe-based amorphous composite coatings by laser cladding;稀土RE对激光熔覆Fe基非晶复合涂层的影响
3.Microscopic study of formation and mechanical properties of amorphous Cu;非晶Cu形成过程及其力学性能的微观机理研究
3)amorphous phase非晶
1.Amorphous Phase and Its Formation Mechanisms in Diffusion Layer of Rare Earth Aluminized Steel;渗铝稀土钢扩散层的非晶态相及其形成机理
2.The quantification of amorphous phase can not be obtained by Rietveld.说明了非晶相不能用Rietveld方法来定量的原因。
3.The amorphous phase is found in the outer layer of hot-dip aluminized layer.结果发现,镀铝层的表面层存在非晶态金属相。
4)amorphous alloy非晶
1.Study review of amorphous alloy by mechanical alloying;非晶态合金的机械合金化研究述评
2.5(wt-%) amorphous alloys with high strength, low density and large Young's modulus were prepared by liquid quenching on a single roller melt-spinning apparatus.利用单辊快速凝固装置制备出高强度、低密度、大楼量的非晶态Al61Li2。
3.The amorphous alloy s strips showd un-uniformity of silicon niobium components at the surface and uniformity in thickness.5B9非晶带材,并对带材进行了成分和金相分析。
5)amorphous structure非晶
1.Highfrequency plasma and laser supported combustion wave induced by it are the main reasons for amorphous structure of ultrafine Co powder.采用激光 -感应复合加热蒸发法 ,在不同的工艺下分别制备了非晶结构与面心立方结构的纳米钴粉 。
2.The SEM and TEM observation revealed that there were amorphous structures in the laser cladding.利用5kWCO2激光器激光熔覆铝合金表面的Ni-Cr-Al涂层,SEM与TEM分析结果表明,在激光熔覆层中存在有非晶组织,非晶组织呈空间扭曲薄片或杉叶状,它们分别存在于熔覆层颗粒间白色网状组织与颗粒
3.The observation of SEM and TEM revealed that there are amorphous structures in the laser cladding.利用5kWCO2激光器激光熔覆Al合金表面的Ni-Cr-Al涂层,SEM与TEM分析结果表明,在激光熔覆层中的非晶组织呈空间扭曲薄片或杉叶状,它们分别存在于熔覆层颗粒间白色网状组织与颗粒中,利用差热分析(DTA)半定量测定熔覆层中的非晶含量,功率密度,扫描速度对非晶含量有较大的影
6)crystallization[英]['krist?lai'zei??n][美][,kr?stl??'ze??n]非晶晶化
1.Improvements of the Phase Transformation Kinetic Models and Their Application to the Crystallization of Amorphous Alloy;相变动力学模型的改进及其在非晶晶化过程中的应用
2.The effects of Nb addition on Fe74Al4Ga2P12B4Si4 amorphous alloys crystallization were investigated by the way of XRD,DSC and SEM.利用X射线衍射(XRD)和差热分析(DSC)方法试验研究了Nb元素对Fe-(Al,Ga)-(P,C,Si,B)系合金非晶晶化的影响。
3.The crystallization of amorphous alloys predestinates the microstructure and magnetic properties of the melt spun nanocomposite rare earth permanent magnets.快淬双相纳米复合稀土永磁材料非晶晶化过程决定了材料的微观组织和磁性能。
延伸阅读

磁性材料3.非晶态磁性材料磁性材料3.非晶态磁性材料Magnetie Materials 3.AmorPhous 值[20〕。一般回火温度T.与非晶态合金的晶化温度Tct和玻璃化温度几有密切关系。一般说,各类非晶态合金的Ts和叭,之间的差别不大,而热处理温度多在T:或叭r下50~100℃处,时间在30一120~之间。 表‘硅桐片和非.态合金的磁损耗参数l取向硅钢IF一B13一513一eZ率为例,在Bm二0.IT(l .kGs)和f~50kHz时磁化的非晶态合金的井值的时效如图8所示。可以看到,温度高,产下降快,一般是不可逆的。使用温度不太高(例如100℃)时,材料的性能不易变坏,图9给出了两种c。基非晶态合金的八可群与使用时间的关系。当几~80℃时,经历1a的八可群约20%。总的说来,不少非晶态合金在100℃使用温度下可用5~10a。打500 105375片厚,mm电阻率,阁·cm总损Pt,mw/kg磁滞损耗八,mw/kg涡流很耗p.,m、v/比(P.+凡)/Pt0.280 .025 1250。96 98 73 120。872.5.5.时效2040汀一一 .找\岌勺┌─────────────┐│-一一‘啥二‘月卜二‘”’ │├─────────────┤│二,材,分于不 │└─────────────┘图9两种c。基非晶态合金在不同频率下的时效 I一co--M。耳zr合金;1一co一Fe一Si一B合金3.制备方法O州义岌10 102 103 10 时间,s图8两种非晶态合金的产值与时间的关系I一Fe7寻Ni刁MosB17S诬2;l一Co67.SFe刁.SNi3MoZBI‘5112a一200℃时;b一150℃时 非晶态合金在使用时,由于环境温度、时间的延续等,使其性能有不同程度的变化,称之为时效。以磁导3.L薄带 任何金属及其合金在液态时,其原子配位是拓扑无序或短程序的。在冷却过程中,如能维持其高温时的原子分布状态,并使之固化,就得到非晶态固体。要做到这一点,只有在极快的冷却速率下,使熔质由熔点T,以上冷却到玻璃化温度,:以下。这个速率不是固定的,它和生成的非晶态固体的性质、成分和尺寸有很大关系。对于非晶态合金薄带,冷速要在105一1少K/s范围,对于纯金属要高达1 ol0K/s以上,并在远低于室温下才能保存。