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971.
电沉积锌钴磷合金时阴极行为的研究 总被引:3,自引:1,他引:3
用动电位扫描法研究了在氯化物镀液中电沉积Zn-Co-P合金时的阴极行为。认为在镀液中加入配体柠檬酸钠可以提高阴极极化。加入次磷酸钠有利于合金镀层的形成。 相似文献
972.
The crystal structure of urea-polyethylene complex in the hexagonal form, obtained by one of our preparation methods, is analysed by X-ray power diffractometry. In this analysis, the fixed molecular parameters of urea are used, and three models with respect to rotational disorder of the guest polyethylene molecule are assumed. It is shown that the host lattice structure constructed by urea molecules is essentially the same as that of urea-n-paraffin complex. Effects of the disorder structure of the guest on X-ray scattering of the complex are presented. However, there is a difficulty in identifying the disorder structure by X-ray analysis. With the aid of a potential energy calculation between the hexagonal urea tunnel and the guest molecule, a rotational disorder model is preferred. 相似文献
973.
针对纸厂的浆纸生产过程,通过建立浆纸动态优化产耗存数学模型,开发浆纸动态优化系统,用于计算系统的浆纸平衡情况,合理安排生产计划,预测设备维修时各工段的停车时间,并提供浆纸平衡的监控手段,避免生产过程的不正常波动. 相似文献
974.
大丝束聚丙烯腈基预氧丝炭化研究 总被引:1,自引:0,他引:1
采用正交实验法研究了炭化温度、炭化时间、升温速率等因素对两种聚丙烯腈基预氧丝炭化产物结构和性能的影响.结果表明,进口东邦48 K大丝束聚丙烯腈基预氧丝环化程度优于国产吉林6 K小丝束聚丙烯腈基预氧丝,在炭化温度950℃,升温速率4℃/min,保温时间10 min条件下,炭化可取得最佳性能,炭化产物纤维拉伸强度达2.96 GPa,而国产吉林6 K小丝束在炭化温度1 100℃,升温速率4℃/min,保温时间5 min条件下炭化产物性能最佳,产物炭纤维拉伸强度近3.80 GPa.伴随两种预氧丝炭化过程,纤维颜色加深,表面缺陷减少,拉伸断裂模式均由假塑性向脆性过渡,为复合材料低成本开发中预氧丝坯体制备与炭化工艺提供了参考依据. 相似文献
975.
976.
Kai Xi Rui Guo Yangyang Weng Hui He Qiang Shao Jie Cai Qingmin Chen Xuehai Yu Xudong Jia 《应用聚合物科学杂志》2007,103(2):1238-1243
The distribution of pores and the mechanical properties of materials are the key factors in preparing satisfactory low‐k films. In the present study, a kind of silsesquioxane‐polyethylene glycol (SSQ‐PEG) was synthesized and used as a template to make the distribution of pores more even in the low‐k films. The crosslinking density of films could be adjusted by the sol‐gel of tetramethoxysilane/dimethoxydimethylsilane with various proportions. The porosity of films could also be adjusted with different proportions of pendant PEG chains introduced. A dielectric constant as low as 2.1 had been achieved for nanoporous polyorganosilicate films with good tenacity. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 103: 1238–1243, 2007 相似文献
977.
Yun‐Jia Li Man Xu Jun‐Qiang Feng Xiao‐Long Cao Yan‐Fei Yu Zhi‐Min Dang 《应用聚合物科学杂志》2007,106(5):3359-3365
Through the use of polyethylenes with different crystallinities as matrices, the effects of the matrix crystallinity on the percolation threshold and dielectric behavior of percolative composites have been investigated. The results suggest that the percolation threshold is negatively related to the matrix crystallinity, whereas the enhancement of the dielectric constant is positively related to the matrix crystallinity. A two‐dimensional diagram is proposed to illustrate such relationships. In addition, it has been found that the insulator–conductor transition is much flatter in low‐crystallinity‐matrix‐based composites, and this may be favorable for preparing threshold composites with a high dielectric constant and a low loss tangent. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci, 2007 相似文献
978.
979.
Biodegradability and mechanical properties of agro‐flour–filled polybutylene succinate biocomposites
The objective of this study was the production of rice husk flour (RHF) and wood flour (WF) filled polybutylene succinate (PBS) biocomposites as alternatives to cellulosic material filled conventional plastic (polyolefins) composites. PBS is one of the biodegradable polymers, made from the condensation reaction of 1,4‐butanediol and succinic acid that can be naturally degraded in the natural environment. We compared the mechanical properties between conventional plastics and agro‐flour–filled PBS biocomposites. We evaluated the biodegradability and mechanical properties of agro‐flour–filled PBS biocomposites according to the content and filler particle size of agro‐flour. As the agro‐flour loading was increased, the tensile and impact strength of the biocomposites decreased. As the filler particle size decreased, the tensile strength of the biocomposites increased but the impact strength decreased. The addition of agro‐flour to PBS produced a more rapid decrease in the tensile strength, notched Izod impact strength, and percentage weight loss of the biocomposites during the natural soil burial test. These results support the application of biocomposites as environmentally friendly materials. © 2005 Wiley Periodicals, Inc. J Appl Polym Sci 97: 1513–1521, 2005 相似文献
980.