排序方式: 共有58条查询结果,搜索用时 15 毫秒
11.
12.
Al_2O_3(YAG)/LaPO_4层状陶瓷复合材料研究 总被引:2,自引:0,他引:2
选择Al2O3(YAG)作为基体片层材料,LaPO4作为界面层材料,采用凝胶注模成型技术制备出基体层材料的坯片,然后在基体层坯片上采用浸渍或喷涂工艺附着界面层材料,最后将坯片叠置于模具中热压烧结.制备的陶瓷复合材料微观结构均匀,基体片层厚度为110-150μm,界面层厚度为10~30μm,实测层厚比为11.重点研究工艺参数及界面层成分对层状陶瓷复合材料室温性能的影响.结果表明,氧化物基层状陶瓷复合材料的抗弯强度比基体材料略有下降,但室温断裂韧性达到了13.52MPa·m1/2,是基体材料断裂韧性的3倍.对比氧化物基层状陶瓷复合材料与基体材料在断裂过程中裂纹扩展路径的差异. 相似文献
13.
14.
采用85%磷酸和氧化铝制备了低温固化的烧蚀基体——磷酸铝溶液。通过Brookfield流变仪监测体系的粘度变化;借助X射线衍射分析研究影响磷酸铝基体组成的两个主要因素,即Al/P比例和反应温度。结果表明,A l/P比例控制在1.3∶3~1.4∶3之间,反应温度不高于110℃时可获得性能良好的磷酸铝基体。XRD研究结果表明,磷酸铝溶液的过早硬化主要是由于AlPO4.xH2O沉淀引起的。使用螯合剂可有效抑制过早硬化,加入约2%草酸,2个月左右后溶液中可溶性磷酸盐百分含量为84%,基本满足使用需求。草酸的引入对高硅氧布/磷酸铝复合材料的强度基本没有影响。 相似文献
15.
16.
Simona Proietti Stefano Moscatello Gene A. Giacomelli Alberto Battistelli 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2013
The effects of the factorial combination of two light intensities (200 and 800 μmol m−2 s−1) and two CO2 concentrations (360 and 800 ppm) were studied on the productivity and nutritional quality of spinach (Spinacia oleracea L.) grown under controlled environment. After 6 weeks within a growth chamber, spinach plants were sampled and analyzed for productivity and quality. There were no statistically significant interactions between the effects of light and CO2 for all of the variables studied, except for the nitrate and oxalic acid content of the leaves. High light and high CO2 independently one from the other, promoted spinach productivity, and the accumulation of ascorbic acid, while their interactive effect limited the accumulation of nitrate and oxalic acid in the spinach leaves. The results highlight the importance of considering the effects of the interaction among environmental variables on maximizing production and the nutritional quality of the food when cultivating and modeling the plant response in controlled environment systems such as for bioregenerative life support. 相似文献
17.
18.
UV光固化胶粘剂的研制 总被引:4,自引:0,他引:4
研制出了一种适用于高档家具玻璃、玻璃工艺器、水晶玻璃,光学玻璃等胶接用的丙烯酸系UV光固化胶粘剂,该胶粘接强度高、耐水性能好,玻璃接头在沸水中煮数十小时不剥离。 相似文献
19.
20.