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alloying相关的网络例句

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与 alloying 相关的网络例句 [注:此内容来源于网络,仅供参考]

XRD shows: when the value of x is between 0.1 and 0.3, the alloying thin film remains the structure of hexagonal wurtzite and the angle of (002) diffraction peak becomes bigger as the value of X increases; The photoluminescence spectra at room temperature shows that the PL spectra of the alloying thin film is composed of the stronger UV emission band and weaker visible band, and UV emission peak will have the blue shift with the content of Mg increasing and the visible emission weakened.

XRD衍射测试表明:在0.1<x<0.3范围内,合金薄膜仍然保持氧化锌六角型纤锌矿结构,(002)衍射峰位随x的增大向大角度方向移动,在X≥0.3的范围内,合金薄膜的结构则为氧化锌和氧化镁的混合结构;室温光致发光谱表明:ZnMgO合金薄膜PL谱都是由较强的紫外发射带组成,且随着Mg含量的增加紫外发射峰位发生蓝移,同时可见发射增强。

The results of tests for production of 400?MPa-grade vanadium bearing concrete steel(Ⅲ-grade 20?MnSiV concrete steel)using VN alloying and ferrovanadium alloying were introduced.

介绍了攀钢采用氮化钒合金化与钒铁合金化生产 40 0MPa级含钒钢筋(2 0MnSiVⅢ级钢筋)的对比试验结果,研究了钒、氮微合金化对钢筋的性能和组织的影响,探讨了氮化钒的强化机理,比较了使用两种合金的生产成本。

This has provided new confirmation for the orderly clustering phenomenon of the alloying elements in alloying austenitic manganese steel.

为奥氏体锰钢中的合金元素有序簇聚现象提供了新的证据。

Double glow plasma surface alloying technique ; surface W ; Mo ; Co alloying ; pure iron ; diffusion behavior

双层辉光离子渗金属技术; W、Mo、Co多元共渗;工业纯铁;扩散行为

Effects of nickel content and mechanical alloying parameters on martensitic transformation during mechanical alloying of Fe-Ni as well as the mechanism were studied.

研究了Ni含量、机械合金化工艺参数对Fe-Ni机械合金化过程中马氏体相变的影响及其机理。

Tight alloying layer with undulation and without visual pocket and inclusion has been obtained by experiment.The alloying layer is metallurgically combined with the matrix.

试验结果获得了致密、无肉眼可见气孔、夹杂、熔覆表面有一定起伏的合金层,合金层与基体间完全冶金结合;熔覆合金层由单相Fe3 Al构成,覆层组织为粗大的柱状晶团,柱状晶团内包含大量极细小的板条状Fe3 Al晶粒,一些相邻的板条晶之间具有基本相同的晶体学取向。

The thickness of the alloying layer is 80μm in the decarbonizing and then surface alloying, but only 15μm in the surface alloying directly. The content of cobalt which doesn't form carbide doesn't have a great difference in two processes, but that of tungsten and molybdenum make a great difference.

在两种渗金属条件下,表面合金层的非碳化物形成元素Co含量差别不是很大,而强碳化物形成元素W和Mo的含量却有着显著差异,直接渗金属的,表层W和Mo含量几乎为零,而脱碳后渗金属的,表层W和Mo总量最大达到6%左右。

ABSTRACT In order to study the thermally activated characteristics of plastic deformation and the effect of alloying element on the thermal activation of structural steels, the properties of plastic deformation for 20g and 13Ni3CrMoV steels have been examined in the temperature of 77—473K and strain rate of 〓. The experimental phenomena show that the effective stress of plastic deformation decreases with the increase of alloying elements content (namely solute solution softening) and the frequency factor deceases with the increase of effective stress.

本文以13Ni3CrMoV钢焊接结构的动态断裂破坏为背景,通过系统测试20g和13Ni3CrMoV钢的动态屈服特性,分析比较了结构钢的形变热激活特点,从频率因子〓随有效应力σ〓增大而下降和合金固溶软化的实验现象出发,在位错以弯折方式克服晶格Peierls位垒的基础上,提出了溶质原子与螺型位错热激活弯折相互作用的物理模型和σ〓-T分段线性关系的形变热激活理论假设,并借助计算机数值模拟,分析探讨了合金固溶软化的微观机制。

The feasibility of producing quality cold rolled sheets through deoxidizing and alloying with Fe-Al-Mn alloy and a process of producing low-carbon aluminium killed steel through deoxidizing and alloying are introduced.

介绍了攀钢用铝锰铁脱氧合金化生产高级别冷轧薄板用钢的可行性和脱氧合金化生产低碳铝镇静钢的工艺路线。

The disordered solid solution Al was obtained for Fe_(25)Al_(65)Ni_(10) mixture powder. The mechanical alloying of Fe_(0.25)Al_(0.75-x)Ni_x(x=0.05,0.175,0.25) mixture powders result in intermetallic compounds. The results of mechanical alloyed_(1-x)Ni_x (x=0.4,0.6) and (FeAl_3)_(1-x)Ni_x(x=0.1,0.3) mixture powders indicate that the ratio of iron and aluminum determines the formation of intermetallic compounds. The FeNi intermetallic compound, cerium oxide and one unidentified phase were obtained by mechanical alloying FeCeNi_3 and Ce_2 mixture powders.

对于合金化过程中的结构演变采用X射线衍射仪、DTA或DSC热分析仪、SEM进行分析,对Al-Fe-Ni和Ce-Fe-Ni两个三元系的机械合金化过程的研究表明:对于Al-Fe-Ni三元系来说,成分为Fe_(25)Al_(65)Ni_(10)的混合粉末经机械合金化后可生成非晶与纳米晶的混合物;球磨成分为Fe_(0.25)Al_(0.75-x)Ni_x(x=0.05,0.175,0.25)混合粉末,可形成Al_3Ni_2,AlFe_3,AlFe_(0.23)Ni_(0.77),球磨成分为_(1-x)Ni_x(x=0.4,0.6)和(FeAl_3)_(1-x)Ni_x(x=0.1,0.3)混合粉末,Fe与Al比例相同时球磨所形成的金属间化合物也相同。

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