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1)  high temperature foamed ceramic
高温发泡陶瓷
1.
The high temperature foamed ceramic with water all proof and thermal insulation has been trial- produced by using local porcelain sand and cullet.
利用地方瓷砂原料和废碎玻璃试制了具有防水、保温功能的高温发泡陶瓷
2.
The high temperature foamed ceramic with water-proof and thermal insulation was prepared by means of dry pressing and sintering at 1220 ℃ to 1230 ℃ .
以建筑抛光砖原料为基础料,添加少量的矿化剂和氧化镁,经干压成型后于1220℃-1300℃烧成下制备了具有防水、保温功能的闭孔高温发泡陶瓷
2)  foaming ceramics
发泡陶瓷
1.
The result of experiments shows that under the pressure of 75 ~ 150kg/cm2, firing temperature of 1165 ~ 1175℃,short insulation time can produce foaming ceramics as major closed porosity, and uniform microstructure.
以抛光砖废渣和珍珠岩尾矿为基料,探讨成型压力对制备闭孔发泡陶瓷的影响,试验结果表明:为制备闭孔为主,显微结构均匀的发泡陶瓷,成型压力75-150kg/cm2,烧成温度1165℃-1175℃,短保温时间,是比较适宜的。
3)  High temperature Ceramics
高温陶瓷
1.
The control volume method is combined with the Monte Carlo method and spectral band model to simulate the transient coupled heat transfer of radiation and conduction in high temperature ceramics,which is submitted to aerodynamic heating.
采用控制容积法结合蒙特卡罗法与谱带模型,数值模拟了气动加热下高温陶瓷内的辐射与导热瞬态耦合换热。
2.
The thermal emission model of high temperature ceramics submitted to aerodynamic heating was developed to analyze the apparent emissivity and temperature.
建立了气动加热下高温陶瓷材料表面的辐射模型,采用控制容积法结合蒙特卡罗法模拟了不同条件下材料的温度分布与表观发射率。
4)  ultra-high temperature ceramics
超高温陶瓷
1.
Thermodynamic Investigation on the Subsystems in B-C-Si-Zr-O for Ultra-high Temperature Ceramics
超高温陶瓷B-C-Si-Zr-O部分体系相关系的研究
2.
%SiC ultra-high temperature ceramics were prepared by spark plasma sintering technique(SPS).
采用放电等离子烧结工艺在1850℃烧结温度、升温速度200℃/min、保温3min、压力50MPa条件下制备了ZrB_2-20%SiC(体积分数,下同)超高温陶瓷材料。
3.
This work provided significant insight into the behaviour of ultra-high temperature oxidation of C/C composites and ultra-high temperature ceramics.
依据上述热力学数据,可以了解不同碳化物的氧活性和平衡氧分压随温度的变化规律,以及ZrC-ZrO_2和SiC-SiO_2体系氧化物蒸气压特别是界面蒸气压的大小,对于深入了解改性C/C复合材料和超高温陶瓷的超高温氧化行为,特别是对于改性C/C复合材料中有效的抗氧化添加剂的选择有理论指导意义。
5)  ultrahigh temperature ceramics
超高温陶瓷
1.
Each of the three metals (Zr, Hf, W) was added into the ZrB2/ZrC/SiC ultrahigh temperature ceramics with inherent brittleness in order to improve the ductility of these ceramics.
由于ZrB2/ZrC/SiC超高温陶瓷材料具有内在的脆性,采用添加金属Me(Me=Zr、Hf、W)以提高超高温陶瓷的韧性。
2.
Two different AlN contents(5 vol%,10 vol%) of ZrB2-SiC matrix ultrahigh temperature ceramics were prepared by hot pressing sintering technigue.
采用热压烧结工艺制备了两种不同AlN含量(5 vol%,10 vol%)的ZrB2-SiC基超高温陶瓷材料,并对其微观组织与力学性能进行了考察。
6)  china canal of high temperature
高温陶瓷管
补充资料:CJ-2计算机控制陶瓷材料高温蠕变试验机


CJ-2计算机控制陶瓷材料高温蠕变试验机


  鲡 C」一2计算机控制陶瓷材料高温蠕变试验机 中国科学院上海硅酸生研完所供稿
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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