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1)  Fe-25Al/11SiC composite coating
Fe-25Al/11SiC复合涂层
1.
Fe-25Al/11SiC composite coating was made by HVFS(high velocity flame spraying).
用高速火焰喷涂方法制备出Fe-25Al/11SiC复合涂层,对涂层的结合强度、抗热震性及温度为650℃时的热腐蚀行为进行研究,并利用扫描电镜和X射线衍射仪(XRD)对腐蚀前后涂层的表面形貌和相组成进行分析。
2)  Fe-Al/SiC composite coating
Fe-Al/SiC复合涂层
1.
Fe-Al/SiC composite coating was made by HVFS.
利用高速火焰喷涂技术制备出Fe-Al/SiC复合涂层,在MM-A1立式磨损试验机上对涂层常温下的摩擦磨损特性进行研究。
2.
It indicated that the matrix of Fe-Al/SiC composite coating was Fe-Al phase (Fe3Al,FeAl) and SiC hard phase distributed all over the coating, and the coating displayed the typical layers structure characteristics.
采用高速火焰喷涂技术制备了Fe-Al/SiC复合涂层,对涂层在650℃下的热腐蚀动力学规律进行了研究,并利用扫描电镜(SEM)、能谱仪(EDS)和X射线衍射仪(XRD)对涂层及腐蚀产物的成分和形貌进行分析。
3.
In order to solve the hot corrosion problem on the water-wall tubes in thermal power plants, HVFS technology was used to prepare the Fe-Al/SiC composite coating, and the bonding strength, micro hardness, thermal shock and hot corrosive resistance performance of the coating were studied.
为解决火电厂锅炉水冷壁热腐蚀问题,采用高速火焰喷涂技术首次制备出Fe-Al/SiC复合涂层,并对涂层的结合强度、显微硬度、抗热震性能和耐热腐蚀性能进行了研究。
3)  Fe/Cr3C2 composite coating
Fe/Cr3C2复合涂层
1.
Taking 16Mn steel as substrate material,Fe/Cr3C2 composite coating was sprayed on its surface,and aluminum was sprayed on the top of the composite coating by electric arc.
以16Mn钢为基材,在其表面电弧喷涂Fe/Cr3C2复合涂层,再在复合涂层之上再电弧喷涂铝。
4)  TiC/Fe composite coating
TiC/Fe复合涂层
1.
Microstructure and forming mechanism of TiC/Fe composite coating by reactive flame spray;
反应火焰喷涂TiC/Fe复合涂层组织及形成机理
2.
TiC/Fe composite coatings were synthesized and deposited by RFS.
研究了不同C/Ti原子比对反应火焰喷涂TiC/Fe复合涂层相组成、显微结构和硬度的影响。
3.
TiC/Fe composite coatings were in situ synthesized on the surface of low carbon steel by plasma cladding process.
着重研究了不同C/Ti原子比对等离子熔覆TiC/Fe复合涂层的相组成、显微结构和硬度的影响。
5)  Fe-Al/Cr_3C_2 composite coating
Fe-Al/Cr3C2复合涂层
6)  iron-aluminide and alumina composite coating
Fe-Al/Al2O3复合涂层
补充资料:等离子喷涂羟基磷灰石涂层-钛复合材料
分子式:
CAS号:

性质:是用等离子喷涂技术在医用金属钛或其合金表面加涂羟基磷灰石所制得的医用涂层材料。主要用于承力部位的硬组织修复和替换,如制作人工种植牙、关节柄和接骨板等。由于表面涂层赋予了表面生物活性,植入骨内后能与骨直接形成骨键合,手术中可不用骨水泥固定。为使涂层能在生物环境中保持稳定和涂层-基体界面具有足够的结合强度,要求涂层的羟基磷灰石含量达90%以上并具有高的结晶度。另外,钴基合金也可作为这种涂层材料的基材。

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