1) fiber/NiFe2O4 composite ceramic
纤维/NiFe2O4复合陶瓷
1.
Two-step sintering process was adopted to prepare fiber/NiFe2O4 composite ceramic inert anodes with copper-coated carbon fiber by solid-state reaction.
以高温固相合成法,采用两步烧结法制备镀铜碳纤维增强的纤维/NiFe2O4复合陶瓷惰性阳极,即先以NiO、Fe2O3、微量V2O5和MnO2为原料制备NiFe2O4尖晶石基体材料,然后以该NiFe2O4尖晶石基体材料和镀铜碳纤维为原料,采用冷压烧结法制备纤维/NiFe2O4复合陶瓷惰性阳极。
2) 10NiO-NiFe2O4 composite ceramics
10NiO-NiFe2O4复合陶瓷
1.
The BaO doped 10NiO-NiFe2O4 composite ceramics were prepared with the cold isostatic pressing-sintering process,the effects of BaO contents and sintering temperatures on the phase composition,microstructure and density of 10NiO-NiFe2O4 composite ceramics were studied.
利用冷压—烧结技术制备BaO掺杂的10NiO-NiFe2O4复合陶瓷,研究BaO掺杂量及烧结温度对10NiO-NiFe2O4复合陶瓷物相组成、显微结构及致密度的影响。
2.
The 1BaO-10NiO-NiFe2O4 composite ceramics were prepared with the cold isostatic pressing-sintering process,the phase composition,microstructure and the effects of sintering temperatures on relative density and electric conductivity of 1BaO-10NiO-NiFe2O4 composite ceramics were studied.
利用冷压-烧结技术制备了1BaO-10NiO-NiFe2O4复合陶瓷,研究了1BaO-10NiO-NiFe2O4复合陶瓷物相组成和显微结构以及烧结温度对相对密度和导电率的影响。
3.
The CuO doped 10NiO-NiFe2O4 composite ceramics were prepared with the cold isostatic pressing-sintering process,the effects of CuO content on the phase composition,microstructure,density and electrical conductivity of 10NiO-NiFe2O4 composite ceramics were studied.
利用冷压-烧结技术制备了CuO掺杂的10NiO-NiFe2O4复合陶瓷,研究了CuO掺杂量对10NiO-NiFe2O4复合陶瓷物相组成、显微结构、致密度及导电率的影响。
3) fiber composite ceramics
纤维复合陶瓷
1.
The phase structure of 0 64BaTi 4O 9 0 36BaEu 2Ti 4O 12 /BaTi 4O 9 fiber composite ceramics was investigated by XRD, XPS and TEM in this paper The results show that with the adding of BaTi 4O 9 fibers, the content of O element on the surface of sample increases and that of Ti 3+ and Ti 2+ decreases, the dielectric properties of the new materials are improve
36 Ba Eu2 Ti4O1 2 / Ba Ti4O9纤维复合陶瓷新材料的相结构进行了研究。
4) Ceramic/fiber compound target
陶瓷/纤维复合板
5) compound ceramic fiber coating
复合陶瓷纤维保温涂料
1.
针对环形炉炉顶炉墙表面温度高、炉体散热损失大、导致加热能力低、待温时间偏长的问题,选用了复合陶瓷纤维保温涂料,使炉体散热损失减少,待温时间缩短,加热能力提高,且能耗降低。
6) fiber/ceramic composite plate
纤维/陶瓷复合材料板
补充资料:纤维
分子式:
CAS号:
性质:工业上指柔韧、纤细的丝状物。具有相当的长度、强度、弹性和吸湿性等。都是高分子化合物。大多数是有机物质,少数是无机物质。根据来源可分为两大类:天然纤维和化学纤维。
CAS号:
性质:工业上指柔韧、纤细的丝状物。具有相当的长度、强度、弹性和吸湿性等。都是高分子化合物。大多数是有机物质,少数是无机物质。根据来源可分为两大类:天然纤维和化学纤维。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条