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1)  induction melting and casting
感应熔铸
1.
Alloy coating is prepared by induction melting and casting with the method of direct feeding powder on the surface of a shaft .
采用直接送粉方式在轴类零件表面感应熔铸合金层,简要介绍了工艺原理、工装特点。
2.
Alloy coating is prepared by induction melting and casting with the method of direct feeding powder on the surface of a shaft.
介绍了用直接送粉方式在轴类零件表面感应熔铸合金层的工艺原理和实验装置。
2)  inductive melting
感应熔炼
1.
By applying the cold crucible inductive melting(CCIM) to TiAl-based alloys,the qualities of the melt are able to be improved.
冷坩埚感应熔炼技术提高了钛铝基合金的熔体质量。
3)  induction cladding
感应熔覆
1.
Microstructure and forming mechanism of TiC/Ni composite coating in situ synthesized by induction cladding;
感应熔覆原位自生TiC/Ni基复合涂层组织和形成机理
2.
Ni-based composite coating reinforced by TiC particle was fabricated on a substrate of 16Mn steel by induction cladding of the Ni60A,Ti and C alloy powders.
以Ni60A、钛粉和石墨粉为原料,采用高频感应熔覆技术,在16Mn钢表面原位合成了TiC颗粒增强镍基复合材料涂层。
3.
TiC particle reinforced metal matrix composite coating was fabricated on the substrate of 16Mn steel by induction cladding using Ni60A,titanium and carbon powder blends.
以N i60A、Ti粉和石墨粉为原料,利用感应熔覆技术在16Mn钢基材表面制备出原位自生TiC颗粒增强金属基复合涂层,分析了涂层的显微组织,在常温干滑动摩擦条件下评价了涂层的耐磨性能。
4)  induction cladding
感应熔敷
1.
Microstructure, friction and wear properties of micronanostructured WC/Ni-based metallic coating by induction cladding;
感应熔敷WC/Ni基复合涂层的组织和性能
2.
A micro-nanostructured WC composite coating with agglomerate nanostructured WC particles and micron WC as the reinforcing phase was fabricated on Q235 steel by induction cladding with Ni60A、micron and nanostructured WC alloy powders as the raw material.
以Ni60A、微米和纳米碳化钨粉末为原料,利用感应熔敷技术在Q235钢表面制得以微纳米碳化钨颗粒为增强相的镍基复合材料耐磨涂层,利用SEM、XRD和EDS分析了该涂层的显微组织,涂层与基体之间为完全冶金结合;在干滑动磨损试验条件下具有较好的耐磨性。
3.
To improve the dry wear resistance of 16Mn steel, a wear resistance TiC reinforced metal matrix composite coating was fabricated on 16Mn steel subatrate by induction cladding using the Ni60, titanium and carbon alloy powders.
为了提高16Mn钢的干滑动磨损耐磨性能,以Ni60、钛粉和石墨粉为原料对16Mn钢表面进行感应熔敷处理,制备出以TiC颗粒为增强相的原位自生复合涂层,利用金相、SEM、XRD等技术分析了涂层的显微组织,在室温干滑动磨损试验条件下测试了涂层的耐磨性。
5)  induction heating
感应熔覆
1.
Various methods were used to analyze the properties of nickel-matrix alloy coating by induction heating.
采用不同的方法分析了感应熔覆镍基合金粉末涂层的性能以及感应涡流在涂层中的分布规律;由GP100高频感应设备和中频感应设备KGPS-M试验了不同截面形状感应器和不同工艺参数下的熔覆过程;通过电子显微镜和X射线扫描研究了高频和中频下涂层元素分布和基体热影响的差别;测量了高频感应和氧-乙炔喷焊N i60的极化曲线;采用GCr15与高频感应、激光熔覆和氧-乙炔喷焊GN i-WC25涂层干磨进行了磨损试验。
6)  induction melting
感应熔炼
1.
Distribution characteristic of magnetic field in cold crucible for induction melting;
感应熔炼冷坩埚内磁场的分布规律
2.
The induction melting technology of a cold crucible, and its application field and operational features are reviewed.
综述了冷坩埚感应熔炼工艺的技术特征、适用范围和操作特点;并介绍了多种用途的冷坩埚炉型,工艺参数和能量平衡;指出附加等离子体热源促进了冷坩埚感应熔炼的工业化应用与发展。
3.
In order to solve the problems of vapor pressure and oxidation of Mg, and overcome disadvantages of high requirement of experimental conditions and fussy operation process in traditional single crystal MgB2 preparation method, a new method of using two kinds of eutectic Mg-Cu and Cu-B alloys to synthesize ternary Mg25Cu65B10 alloy by induction melting technology was present in this work.
为了解决MgB2单晶制备过程中存在的镁的蒸气压问题和镁的氧化问题,克服传统制备方法中对实验条件要求高,操作过程繁琐的缺点,本文采用高频感应熔炼技术,通过选取两种共晶成分的Mg-Cu和Cu-B合金,成功熔配成Mg25Cu65B10的三元合金。
补充资料:AZS熔铸砖
分子式:
CAS号:

性质:又称电熔锆刚玉砖或AZS熔铸砖,俗称白铁砖。主要由斜锆石和刚玉组成的熔铸耐火材料。属ZrO2-Al2O3-SiO2三元系统熔铸砖(AZS分别代表Al2O3、ZrO2和SiO2),含Al2O340%~50%,ZrO230%~50%,SiO210%~17%。矿物组成主要为刚玉斜锆石共晶体,其次还有少量斜锆石、铡玉及玻璃相。熔铸锆刚玉砖的体积密度为3.4~3.9g/cm3,结构很致密,耐玻璃熔液侵蚀性强,且对玻璃不着色,荷重软化开始温度在1700℃以上,耐压强度为400~500MPa。以锆英石(或工业氧化锆)和工业氧化铝为主要原料配成混合料,经电炉熔化、浇涛、退火、加工而制成。是玻璃熔窑关键部位的主要筑炉材料。

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