The quantification of amorphous phase can not be obtained by Rietveld. 结果发现,镀铝层的表面层存在非晶态金属相。
Friction Behavior of Iron-Based Containing Amorphous Phase Coating Prepared by Electric Arc Spraying 高速电弧喷涂含非晶相Fe基涂层的摩擦磨损特性
Iron that is coated with zinc to protect it from rust. Microstructure and properties of arc sprayed coatings containing Fe-based amorphous phase 涂有锌以防生锈的铁。电弧喷涂铁基非晶涂层的结构与性能
Microstructure and properties of arc sprayed coatings containing Fe-based amorphous phase 电弧喷涂铁基非晶涂层的结构与性能
The Crystal and Amorphous Phase in Cladding Layer by Compressed Arc Plasma Beam 压缩弧光等离子束熔覆层中晶相与非晶相
Mossbauer Study on Amorphous Phase of Soft Magnetic Nanocrystalline Fe based Alloy 铁基软磁纳米微晶中非晶相的穆斯堡尔研究
Amorphous phase transformation, chip volume change, no dislocations and no elastic recovery in silicon were observed by analyses of chip and machined surface, energy and cutting forces, but these were not so for aluminum. 通过对切削过程中切屑和加工表面、能量和切削力的分析,发现硅发生非晶态相位变换和切屑体积改变,但没有位错和弹性恢复产生;
In this article, the changes of orientation of molecular chain in crystal phase and amorphous phase of hard elastic polypropylene were studied using WAXD and birefringence test, the relationship between orientation and hard elasticity was also discussed. 利用双折射并结合广角X射线衍射(WAXD)等方法,研究了硬弹性聚丙烯在制备过程中晶相及非晶相分子链取向的变化,讨论了分子链的取向与硬弹性的关系。
The results show that the growing surface of the films contains a large amount of silicon nano-crystalline grains and the clustered silicon of amorphous phase. The component of crystalline phase increases with the increase in RF power. 结果表明,薄膜表层包含有大量微晶相的纳米硅晶粒和非晶相的硅聚合物,随射频功率增加,晶相结构的成分增大。
The oxide films were rough and porous. The oxide film formed at 200A/ m~ 2 and 430V final voltage mainly consists of anatase, rutile and amorphous phase. 氧化膜粗糙多孔,电流密度和最后电压分别为200A/m2和430V形成的氧化膜主要由锐钛矿型TiO2,金红石型TiO2和非晶相组成。
Ab initio Molecular Dynamics Simulation of Structures of NiAl_3 Alloys in Liquid and Amorphous Phase 液体和非晶态NiAl3合金结构的从头算分子动力学模拟
The light region is mainly amorphous phase, but the dark region is mainly crystalline phase. 在透射电子显微镜明场像中环带球晶中的暗区以结晶相为主,而亮区主要由非晶相组成。
The complex structure of the nanocrystalline phase α? Fe ( Si)/ amorphous phase was formed. Fe(Si)纳米晶/非晶复合结构。
XRD shows the structure of the rods is composed of amorphous phase. XRD图表明该合金圆棒的组织为明显的非晶相。
No amorphous phase forms during the mechanical alloying process. 在合金化过程中没有非晶相的生成。
The microstructure of the intergranular amorphous phase is different with that of the complete amorphous. 晶间非晶相的微结构不同于完全非晶,并随淬速的变化而改变。
The crystallization results in an increase of the concentration of Zr, B in the remaining amorphous phase with Zr-rich and Fe-rich regions. 在晶化过程中Zr.B原子逐渐富集;剩余非晶相由富Fe区和富Zr,B区组成。
Then transform amorphous phase into nanocomposite crystallization phase under different crystallizing temperature and different magnetic field. 然后在强磁场中将非晶样品加热晶化处理,在不同的晶化条件下(外加磁场与晶化温度),制备出纳米晶材料;
And the catalyst structures were demonstrated by XRD as an amorphous phase. 利用XRD鉴定催化剂物相为无定型结构。
After we increased temperature, two amorphous phases formed unified amorphous phase gradually. 升温以后两非晶峰逐渐形成统一的非晶散射峰。
Theoretical study on the formation of an amorphous phase in fe_xcu_ ( 1-x) binary alloy system 用原子集团的有序-无序相变理论研究FexCu(1-x)系统的非晶相形成
The high cooling rate, high pressure and high shearing stress were all advantageous factors to form amorphous phase. 爆炸复合界面熔层的高冷却速率、爆炸复合过程中界面承受的高压力、高剪切应力都是形成非晶的有利条件。
Formation of amorphous phase in binary immiscible Cu-Ta thin films prepared by co-sputtering method has been investigated using X-ray diffraction ( XRD), high-resolution transmission electron microscopy ( HRTEM) and electron dispersive X-ray spectroscopy ( EDS). 利用X射线衍射(XRD)、高分辨透射电子显微术(HRTEM)和X射线能谱(EDS)研究了共溅射Cu-Ta薄膜中非晶相的形成。
We utilize the thermal scanning technique of Mossbauer to determine magnetic ordered temperature of the residual amorphous phase, analyze the influence of magnetic interaction between nanocrystalline grain on amorphous phase on the interface and the role played by the element of Nb in the series of these alloys. 采用穆斯堡尔热扫描技术测定了残余非晶相的磁有序温度Tc。分析了纳米晶粒通过磁相互作用对界面非晶相的影响以及Nb元素在该系列合金中所起的作用。
The improvement on the hydrogenation properties of Mg is related to the catalytic role of nanocrystalline Mg_2Ni and amorphous phase. Mg的氢化性能改善与薄膜中纳米晶Mg2Ni和非晶相起到的催化作用有关。
Then, we investigated in more detail the chain dynamics in crystalline phase and the low-temperature freezing behavior of amorphous phase in the EVA. 我们进一步详细研究了EVA中的晶区链动力学和非晶区的低温冻结行为。