氧化铝瓷
- 网络alumina ceramics
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稀土氧化物对氧化铝瓷性能的影响
The Effects of Rare Earth Oxide on the Properties of Alumina Ceramics
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低温烧结细晶氧化铝瓷的研究
Study on fine grain alumina ceramics fired at low temperature
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结论MC氧化铝瓷块与进口的氧化铝陶瓷性能相当,可以满足牙科CAD/CAM加工的需要。
Conclusion The machinable properties of MC alumina ceramic corresponded with those of Vita alumina ceramic , and the material could meet the demand of CAD / CAM system in dentistry .
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通过工艺参数的优化,确定将1L配方用作流延成型95氧化铝瓷的粉料配方。
By optimizing the process parameters , 1L prescription was decided to use in tape casting process .
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成型压力对氧化铝瓷球性能的影响
Influence on Behaviour of Alumina Ball by Using Different Forming Pressure
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添加剂对氧化铝瓷烧结及物化性能影响的探讨
Discussions on the influence of additives on the firing and physico-chemical index
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高氧化铝瓷与铌的电子束焊接
Experimental studies of electron beam welding of alumina to niobium
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玻璃与钢或氧化铝瓷封接界面的研究
Investigation on the Interface of Glass-to-Steel or Glass-to-Al2O3 Porcelain Sealings
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透辉石助烧剂对氧化铝瓷球显微结构和耐磨性的影响
Effect of diopside as SINTERING-AID on Microstructure and wear resistance of alumina ball
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美国氧化铝瓷及其金属化标准的某些要点
Comments on Alumina Ceramics and Its Metallizing Standard Status in the United States
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氧化铝瓷的密度、磨耗与生产工艺
Density , detrition of alumina porcelain and production technology
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微孔对氧化铝瓷球磨损特性的影响
Effect of Micropores on Wear Behavior of Alumina Balls
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降低95氧化铝瓷烧成温度的研究
Study on Firing Temperature Reduction of 95 Alumina Ceramics
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目前市场上这类瓷主要以氧化铝瓷为主。
This kind of ceramic relies mainly on alumina ceramic in the present market .
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95氧化铝瓷排蜡工艺常见缺陷及解决措施
Common Defects and Solution Measures of the Wax removal Technique of 95 Alumina Porcelain
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氧化铝瓷表面施加生物玻璃涂层的研究
Study of Bioglass Coating on Alumina Ceramic Substrate
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生物玻璃涂层与氧化铝瓷基体的界面反应
Interracial Reaction between Bioglass and Alumina Substrate
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细晶氧化铝瓷研究
Study on alumina ceramics of fine grain
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研究了在90氧化铝瓷基础上,添加剂对其烧结及部分物化性能的影响。
The influence of additive on the firing and physico-chemical index of alumina porcelain is studied based on the 90 alumina porcelain .
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研究了微孔对平均晶粒尺寸分别为3μm、6μm和15μm氧化铝瓷球磨损特性的影响。
The effect of pores on wear behavior of alumina balls with average grain size 3 , 6 and 15 μ m is investigated in this paper .
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本文通过金相显微镜、离子探针等手段,观察了一些玻璃与不锈钢、耐热钢或氧化铝瓷的封接界面。
The sealing interface between glass and Al2O3 Porcelain , or stainless or heat-resisting steel was investigated by means of metallurgical microscope and ion microprobe mass spectrometer .
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研究了透辉石(CaMgSi2O6)助烧剂对90%氧化铝瓷球显微结构和耐磨性的影响。
The effect of diopside ( CaMgSi 2O 6 ) as sintering_ aid on the microstructure and wear resistance of 90 % alumina ball was studied in this paper .
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叙述了氧化铝瓷的重要性和氧化铝微粉的组成、性能和应用,指出了陶瓷质量和一次晶粒的关系。
The importance of alumina ceramics and composition , property as well as application of alumina micro-powder are reviewed . The relationships between ceramic quality and alumina first crystal size are summarized .
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本文根据火花塞瓷件95氧化铝瓷的特性要求,对黑釉的配方及上釉工艺进行了研究。
The studies on the composition and glazing technique of the black glaze have been made on the basis of the properties of sparking plug insulator containing 95 % Al2O3 in this paper .
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用本工艺试制的1吨氧化铝瓷球比重大于3.54g/cm~3,干磨磨耗0.100~0.120g/kg。
The bulk density of 90 alumina ball , which was trial - produced by PEF method is above 3.54g / cm3 , its dry wear abrasion ( DWA ) is 0.100 - 0.120g/kg .
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本文阐述了氧化铝瓷的密度、磨耗与生产工艺的关系,结合其显微结构分析了浆料、造粒粉料对产品质量的影响。
The article describes the relationship between density , detrition of alumina porcelain and production technology , combine the microstructure to analyse the influence of pasty stock , pelleting powder content on product quality .
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高温煅烧后,可完全转化为稳定的α-Al2O3,是取代工业Al2O3生产氧化铝耐磨瓷球的理想原料;
They are completely transformed into stable α - Al_2O_3 at high temperatures , thus waste slag can replace commercial alumina to make alumina grinding ball as main raw material by high-temperature sintering .
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不同烧结渗透工艺对In-ceram氧化铝全瓷修复体结构及颜色影响的实验研究
Effects of Slow or Rapid Infiltration-sintering Process on the Micro-structure and Color of In-Ceram Alumina Substrate
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陶瓷行业:研磨料、氧化铝、瓷泥浆、粘土泥浆、玻璃粉、耐火材料、石英砂、PVC树脂粉粒、柠檬酸、聚乙烯粉、洗衣粉等。
Ceramic industry : abrasive materials , alumina , porcelain clay mud , mud and superfine glass powder , refractory material , quartz sand , PVC powder grain tree , citric acid , PE powder , washing powder , etc.
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氧化锆增韧氧化铝耐磨瓷球的研制
Development of the ZTA Wear Resistant Ceramic Ball