Fe-Cr合金,Fe-Cr alloy
1)Fe-Cr alloyFe-Cr合金
1.Thermogravimetric studies have been conducted on the corrosion behavior of Fe-Cr alloyscoated with NaCl deposit in air colltaining Water vaPor at 600 t.用热重分析法研究了在600℃表面未涂或涂有NaCl膜的情况下,Fe-Cr合金在空气或空气+水蒸气中的腐蚀行为。
2.Based on the study of the properties of several laterally-welded bimetal spring laminations and arc zones, it has been found that Fe-Cr alloy can be used to replace Ni50 alloy as a low expansion componenet in a laterally-welded bimetal spring lamination due to its similar performance.本文结合用户对产品的需求,在对多种横拼双金属焊带及弹簧片的温度补偿性能进行研究后,采用Fe-Cr合金替代Ni50合金作为低膨胀组元,制作低补偿量横拼双金属弹簧片,其性能与Ni50型横拼双金属弹簧片相当,产品已通过了用户单位的五步认定,成功用于生产性装管。
3.Fe-Cr alloys with two different Cr content,9% Cr and 19% Cr,were shot blasted and then oxidized at 600℃~770℃ in water vapor.研究了表面处理喷丸对Cr含量为9 mass%和19 mass%的Fe-Cr合金在通过600℃~770℃温度区间高温水蒸气氧化行为的影响。
英文短句/例句

1.Nano-crystalline Fe-Cr Alloy by mechanical alloying;机械合金化制备纳米Fe-Cr合金
2.Studies on Technology and Basic Mechanism of Plating Ni-Fe、Ni-Fe-Cr Alloy Foil and Ni-Cr Alloy;Ni-Fe、Ni-Fe-Cr合金箔及Ni-Cr合金电沉积工艺和基础理论研究
3.Hot Deformation Behavior of Zr-Sn-Nb-Fe-Cr AlloyZr-Sn-Nb-Fe-Cr合金热变形行为
4.FATIGUE DEFORMATION FEATURES OF Fe-Cr ALLOY SINGLE CRYSTALS CONTAINING Cr-RICH PRECIPITATES含富Cr沉淀颗粒Fe-Cr合金单晶体的疲劳变形特征
5.Snoek Relaxational Peak in a Fe-Cr-Al Alloy;Fe-Cr-Al合金中的Snoek弛豫
6.Effect of Cr on Microstructure and Hardness of AlCrxCuFeNi High-entropy Alloy SystemCr对Al-Cr-Cu-Fe-Ni高熵合金组织与硬度的影响
7.The Hydrogen Absorption and Desorption Properties of V-Ti-Cr-Fe Alloys;V-Ti-Cr-Fe合金吸放氢性能的研究
8.Study of Amorphous Cr-Fe-C Alloy Deposits;非晶态Cr-Fe-C合金镀层的研究
9.Study on the Properties of Fe-Mn-Si-Cr-Ni-C Shape Memory Alloy;Fe-Mn-Si-Cr-Ni-C形状记忆合金性能研究
10.High Damping Capacity of Fe-Cr-Mo Alloys at High Temperature;Fe-Cr-Mo高温高阻尼合金的研究
11.Study on Fe-Cr-C Hardfacing Alloys with High Carbon Contents;Fe-Cr-C高碳耐磨堆焊合金的研究
12.Study on the noise reduction capacity of Fe-Cr-Mo alloyFe-Cr-Mo合金构件的减振降噪性能
13.CO_2 Corrosion Resistance of Fe-Cr-Ni-Mo Alloy 27-7MoFe-Cr-Ni-Mo合金27-7Mo的抗CO_2腐蚀性能
14.Noise reduction capacity of Fe-Cr-Mo alloyFe-Cr-Mo合金降噪性能的研究
15.Effect of Calcination on the Surface Performance of Fe-Cr-Al alloy煅烧对Fe-Cr-Al合金表面性能的影响
16.Aging Characteristics of Cu-Cr-Fe AlloyCu-Cr-Fe合金的时效析出行为
17.Hydrogen storage properties of Ti-Cr-Mn-M(M=V,Fe,Ni,Cu) alloysTi-Cr-Mn-M(M=V、Fe、Ni、Cu)合金的储氢性能
18.Characteristic Analysis on Fe-Cr-C-Mo Hardfacing Alloy LayerFe-Cr-C-Mo堆焊合金层的特征分析
相关短句/例句

Cr-Fe alloyCr-Fe合金
1.The electrodepositing Cr-Fe alloy coating was studied in the chloride system of trivalent chromium and bivalent iron.本文研究了从三价铬和二价铁的氯化物体系中电沉积Cr-Fe合金镀层,利用该工艺获得了较好的Cr-Fe合金镀层。
3)Fe-Ni-Cr alloyFe-Ni-Cr合金
1.Electrochemical behaviors of electrodepositing Fe2+,Ni2+,Cr3+ solely and Fe-Ni-Cr alloy have been studied by linear potential scan and cyclic voltammetry and the alloy plating were characterized by means of SEM and XRD in this study.利用线性电势扫描法和循环伏安法分别讨论了配位剂对Fe2+、Ni2+、Cr3+单独电沉积和Fe-Ni-Cr合金共沉积电化学行为的影响,并采用SEM和XRD技术对合金镀层表面形貌和结构进行了表征。
2.Fe-Ni-Cr alloy electrodepositing experiment on iron substrate in chlorid-sulfate solution by barrel plating was performed.在氯化物-硫酸盐混合体系中,在铁基上进行滚镀Fe-Ni-Cr合金实验,结果表明:滚镀所得的Fe-Ni-Cr合金镀层铬的含量只有2%左右,难以提高,且镀层表面质量不佳,常出现滚桶眼子印现象。
3.The progress of Fe-Ni-Cr alloy plating is summarized.概述电镀Fe-Ni-Cr合金的发展进程,从电沉积Fe-Ni-Cr合金的基本条件、镀液体系、电镀的类型以及镀层晶体结构类型等几个方面对电镀Fe-Ni-Cr合金的特点进行阐述。
4)Fe-Cr-Mo alloyFe-Cr-Mo合金
1.Noise reduction capacity of Fe-Cr-Mo alloyFe-Cr-Mo合金降噪性能的研究
2.Considering the applications, this paper explores the damping capacity of Fe-Cr-Mo alloys at room temperature and at high temperature.本论文结合实际的工程应用背景,以Fe-Cr-Al-Si合金为对比研究的参考对象,研究了Fe-Cr-Mo合金的常温和高温阻尼性能,分析了热处理条件对合金阻尼性能的影响。
3.Fe-Cr-Mo alloy is considered as high damping and structural materials.Fe-Cr-Mo合金是一种高阻尼结构材料。
5)Fe-Cr-Al alloyFe-Cr-Al合金
1.Effect of Calcination on the Surface Performance of Fe-Cr-Al alloy煅烧对Fe-Cr-Al合金表面性能的影响
2.Electronic theoretical study of the mechanism of the oxide scale formation of Fe-Cr-Al alloyFe-Cr-Al合金氧化膜形成机理电子理论研究
6)nickel-iron-chromium alloyNi–Fe–Cr合金
延伸阅读

Au-Pd-Cr-Pt-Fe-Al-Y alloys分子式:CAS号:性质:金基与钯、铬、铂、铁、铝和钇的多元合金,电阻系数最高。生产方法参见金钯铬合金。可用作高温应变材料。