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1)  subsonic flame spraying
亚音速火焰喷涂
1.
High performance Al/SiC composite was fabricated by both plasma spraying and subsonic flame spraying techniques.
采用等离子喷涂技术和亚音速火焰喷涂技术制备了高性能Al/SiC复合材料。
2.
Ti and Ti/bioglass biocoatings on Ti alloy surface were prepared by subsonic flame spraying after crystallization treatment at 700℃.
采用亚音速火焰喷涂方法,在钛合金基体表面制备了钛及钛/玻璃生物涂层,并进行了700℃晶化处理。
3.
A new method for preparing biomaterial composite coating by means of subsonic flame spraying was investigated.
采用亚音速火焰喷涂方法,通过合理选用打底层粉和工作层粉,探讨喷涂羟基磷灰石生物涂层的可行性。
2)  subsonic speed flame spraying
亚音速火焰喷涂
1.
Study on characteristics of coatings produced by subsonic speed flame spraying on Cl1300(T_3);
C11300(T_3)基体亚音速火焰喷涂层特性的研究
2.
The Fe-WC metal ceramics coatings were prepared by subsonic speed flame spraying and plasma spraying and the wear resistance of the two kinds of coatings was studied.
利用亚音速火焰喷涂和等离子喷涂分别制备Fe-WC金属陶瓷涂层,对两种喷涂层的耐磨性进行了研究。
3)  Subsonic thermal spraying
亚音速火焰喷涂
1.
Adding 20wt% bioglass into titanium powder composite by a subsonic thermal spraying technology.
采用亚音速火焰喷涂方法,在钛粉中加入质量分数20%生物活性玻璃,喷涂试样经后处理,进行体外模拟浸泡试验和极化曲线测定,结果表明:同一模拟体液在浸泡涂层试样60 h内,溶液的pH值发生着变化。
4)  subsonic oxygen-acetylene flame
亚音速氧-乙炔火焰喷涂
5)  HVOF
超音速火焰喷涂
1.
Research on the slurry erosion resistance of coating produced by HVOF;
超音速火焰喷涂涂层耐泥浆冲蚀性研究
2.
Study of Properties of Conventional and Nanostructured WC-12Co Coatings Deposited by HVOF;
超音速火焰喷涂微米和纳米结构WC-12Co涂层及其性能
3.
Effect of HVOF spraying parameters on properties of WC-Co coating;
超音速火焰喷涂参数对WC-Co涂层性能的影响
6)  high velocity oxy-fuel spraying
超音速火焰喷涂
1.
WC-Co coating were prepared on 45 steel substrate by means of high velocity oxy-fuel spraying(HVOF).
利用超音速火焰喷涂(HVOF)工艺制备了WC-Co涂层,测定了涂层孔隙率、显微硬度及干摩擦磨损过程中涂层材料失重,得出涂层干摩擦因数随时间的变化关系,分析了涂层摩擦磨损机制。
2.
WC-Co and NiCr-Cr2C3 coatings were prepared on 45 steel substrate by means of high velocity oxy-fuel spraying(HVOF).
采用超音速火焰喷涂(HVOF)工艺制备了WC-Co和NiCr-Cr2C3涂层,测定了涂层孔隙率、显微硬度及油润滑下摩擦磨损过程中涂层材料失重,得出涂层摩擦系数随时间的变化关系,分析了涂层摩擦磨损机理。
3.
Nanostructured and microstructured WC/12Co coatings were prepared by high velocity oxy-fuel spraying.
采用超音速火焰喷涂工艺分别制备了纳米结构和微米结构的WC/12Co涂层。
补充资料:火焰喷涂
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性质: 将金属粉末或塑料粉末用火焰喷枪喷涂到物体表面的涂布方法。聚乙烯、尼龙、氟树脂和环氧树脂广泛采用。其过程是粉末材料与适当的助溶剂混合后,用压缩空气或惰性气体将其从贮料槽中吹出,在锥形火焰中被加热到熔融温度,并喷到经过净化处理及预热过的工件上,直至达到所需厚度为止。适用于现场施工。

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