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41.
对喷射成形高温合金的组织形成及其从雾化过程的树枝晶向等轴晶组织的演变过程进行了分析,结果表明,半液态层中发生的枝晶破碎,重熔所造成的核心增殖作用为等轴晶组织的形成提供了大量结晶核心,在此基础上枝晶臂的合并,粗化以及未严重固相枝晶的粗化和均匀化产生了喷射成形材料所持有的非枝非等轴晶组织。 相似文献
42.
介绍第二届环太平洋先进材料及工艺国际会议情况,重点报导韩国钢铁工业、早期凝固过程研究、喷射成形、非晶合金、纳米材料和第三代单晶铸造高温合金等内容。 相似文献
43.
常减压蒸馏装置高温部位的腐蚀与防护 总被引:6,自引:0,他引:6
阐述了常减压蒸馏装置高温部位的腐蚀机理,介绍了高温防腐蚀的三种方法:正确选材、高温缓蚀剂技术及喷涂渗铝技术,建议在类似的石化装置推广使用。 相似文献
44.
Alumina-doped yttria-stabilized zirconia (ADYSZ) nanopowders were prepared by microwave-assisted peroxyl-complex coprecipitation (MAPCC) using ZrOCl2-8H2O, Y2O3 and AICly6H2O as starting materials, NH2-H2O as precipitant and H2O2 as complexant. The effects of adding H2O2 and microwave drying on the preparation and properties of ADYSZ were investigated. The precursors and nanopowders were studied by EDX, XRD, SEM and TEM techniques. The results show that the uniformity of component distribution within ADYSZ nanopowders is improved by adding appropriate dosage of H2O2. Complexing reaction between H2O2 and Zr^4+ ion restrains the hydrolyzation and precipitation of Zr^4+ ion. With the addition of H2O2, Al^3+, y^3+ and Zr^4+ ions can be precipitated synchronously in a relatively narrow range of pH value. H2O2 also improves the filterability of the wet precipitate. The highly hydrophilic precipitates can be quickly and effectively separated from aqueous solution. During microwave drying process, the moisture of wet precursors is selectively heated. Quick expansion of steam vapor within the wet colloidal particles causes the aggregations burst into numerous tiny lumps. Compared with oven drying, microwave drying can not only shorten drying time but also reduce aggregation intensity of the resultant ADYSZ nanopowders. 相似文献
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47.
夜面涂装加热与干燥设备是近年来开发的节电新技术,可较传统热风炉或一般远红外炉节电15~40%,炉内上下温差3~8℃。文章提出用系统优化的原理和方法对乳白石英管低温辐射加热进行研究,设计中采用辐射密度分布法和部份功率控制法。 相似文献
48.
A New Process to Make a Porous PTFE Structure from Aqueous PTFE Dispersion with the Help of Hydrogel
A novel method to make a porous material having relatively large cell diameter (200–300 m), which consisted of mainly poly(tetrafluoroethylene) (PTFE), was developed from aqueous PTFE dispersion by using the characteristics of hydrogel with the addition of carbon nanofiber (CNF). The porous material was produced as follows: firstly, an aqueous agar gel containing PTFE and CNF was prepared; secondly, the gel was freeze-dried; thirdly, the dried gel was heat-treated at 400°C where the agar was almost decomposed and PTFE became molten. The porous material showed electric conductivity (about 50 ), high porosity (about 96 vol%), and relatively uniform cell structures without shrinkage during freeze drying and heat treatment. While the method without CNF resulted in large shrinkage during heat treatment, meaning that CNF prevented the shrinkage. It was explained by the idea that the existence of rigid CNF, which was dispersed in the cell wall, prohibited the shrinkage of PTFE during heat treatment. It was unexpectedly found by SEM analysis that the porous materials had another macro-porous structure inside the cell wall, suggesting that the developed materials had a double porous structure. 相似文献
49.
利用微波介电加热和微波干燥水解法制备TiO2微粒 总被引:4,自引:0,他引:4
利用微波介电加热和微波干燥条件下TiCl4直接水解的方法制备出平均尺寸为40m,粒径分布窄,均为球形且形态均一,团聚较少,金红石型的TiO2纳米粒子,其内部品粒平均大小为17nm。而传统加热和干燥条件下形成的纳米微粒平均为60nm,粒经大小不均一,形态较不规则,团聚严重。微波加热和干燥方法具有清洁、快速均匀高效、环境友好的优点,推广前景良好。TiCl4水解法经济便利,适于工业化生产。 相似文献
50.
Energy Aspects in Drying 总被引:1,自引:0,他引:1
T. Kudra 《Drying Technology》2004,22(5):917-932
The energy performance of a dryer and a drying process is characterized by various indices such as volumetric evaporation rate, steam consumption, unit heat consumption and energy (thermal) efficiency. Of all indices, energy efficiency is the most frequently quoted, in technical specifications. A thorough analysis of available information, including the Handbook of Industrial Drying, points to the inconsistency of terminology, definition and data interpretation. Thus, reported data on energy efficiency vary significantly and frequently contradict both drying theory and industrial practice. To establish a common platform to deal with energy issues, this article provides a concise overview of the most common definitions of energy efficiency, along with a critical review of the published data. A need for energy audit and benchmarking is pointed out. To eliminate shortcomings of the energy efficiency as a lumped parameter, and to allow analysis of energy consumption over time (batch drying) or distance (continuous drying), instantaneous and cumulative indices are proposed. Using these indices, the energy performance of selected dryers is examined, and possible modifications to dryer design and operating parameters are indicated in order to reduce the overall energy consumption. 相似文献