1) WC
WC
1.
Laser Clad WC++_p/Ni-Si-Ti Composite Coatings;
激光熔覆制备WC_p/Ni-Si-Ti复合涂层
2.
Research on Process of Casting-penetrating WC++ Particles into Low-Cr Cast Iron;
低铬铸铁铸渗WC颗粒的工艺研究
3.
Research and Development of Nanocrystalline WC++-Co Cemented Carbide;
纳米晶WC-Co硬质合金的研究现状
2) WC
碳化钨
1.
Isomerization Reaction of n-Pentane over WC++ Catalyst;
碳化钨催化剂上正戊烷异构化反应
2.
Study of Particle Size Testing of Superfine WC++ Powder;
超细碳化钨粉末粒度测试方法的研究
3.
Preparation of WC++ Powder by the Combination of Spray-drying and Fixed Bed Technology;
喷雾干燥-固定床法制备碳化钨粉末
3) WC
WC粉质量
1.
INFLUENCE OF PARTICLE SIZES OF ULTRAFINE TUNGSTENAND CARBON BLACK POWDER ON THE QUALITIES OF WC++ POWDER;
钨粉和碳黑粉粒度对超细WC粉质量的影响
4) WC-M
WC-M
1.
Manufacture of WC++-M Nano-Coatings and Microstructure and Performance;
WC-M纳米复合涂层的制备方法及其组织、性能
5) WC-Co
WC-Co
1.
Influence of Cr on Corrosion Resistance of HVAF WC++-Co Coats to Neutral Salt Spray;
Cr对超音速火焰喷涂WC-Co涂层抗中性盐雾腐蚀性能的影响
2.
Nanostructured WC++-Co Composite Powder Fabricated by High-energy Ball Milling and Spark Plasma Sintering;
高能球磨制备纳米WC-Co复合粉末及其SPS烧结
3.
Study on Wear Resistance of WC++-Co and NiCr-Cr_2C_3 Coatings Sprayed by HVOF;
超音速火焰喷涂WC-Co与NiCr-Cr_2C_3涂层磨损性能研究
6) WC powder
WC粉末
1.
XRD effect of WC++ powder particle size;
WC粉末X射线衍射的粒度效应
2.
WC++ powder was covered by a quantity of Cu by electrodeposited pretreatment.
采用电镀技术,在WC粉末表面镀一定量Cu,用常规氧-乙炔焰喷涂制备WC涂层。
3.
A kind of WC++-Ni composite powder with metallic character retained by its surface layer and ceramic character by its interior was obtained by using WC++ powder with granularity of 106~180 μm and ultrasonic electroless nickel plating.
采用粒度为106~180μm的WC粉末,通过超声波化学镀镍制备了一种表层具有金属特性而内部具有陶瓷性能的WC Ni复合粉末。
参考词条
nanosized WC
WC particle
WC anvil
nano WC
recovered WC
WC particles
NiCrBSi/WC
pure WC
WC/Cu
WC oilfield
WC/Co
WC powder
WC coating
WC phase
Fe-WC
WC content
WC particles
WC/Ni
全连续轧制方式
门急诊量
补充资料:WC-TiC-Co hard alloy
分子式:
CAS号:
性质:又称钨钛钴合金或YT合金。碳化钨、碳化钛和金属钴组成的合金。按碳化钛含量,可分为高钛(25%~40%)、中钛(10%~20%)和低钛(4%~6%)三类合金。它比碳化钨钴合金具有较高的抗氧化性,硬度和耐磨性,而抗弯强度、冲击韧性等则有所降低。主要用作切削加工钢材的工具。
CAS号:
性质:又称钨钛钴合金或YT合金。碳化钨、碳化钛和金属钴组成的合金。按碳化钛含量,可分为高钛(25%~40%)、中钛(10%~20%)和低钛(4%~6%)三类合金。它比碳化钨钴合金具有较高的抗氧化性,硬度和耐磨性,而抗弯强度、冲击韧性等则有所降低。主要用作切削加工钢材的工具。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。