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1)  SiO_2 nanometer powder modification
SiO2纳米粉体改性
2)  nano-SiO2 powder
纳米SiO2粉体
1.
The antifouling and serf-cleaning topcoat finishing agent was initially prepared by combination of PVDF and nano-SiO2 powder.
通过聚偏氟乙烯(PVDF)与纳米SiO2粉体的协同作用,初步制备出防污自洁面涂剂,并通过对PVC膜材面涂后与水的静态接触角的测试,详细分析了影响防污自洁面涂剂的各个因素。
3)  nanoscaled SiO_2 particles
SiO2纳米粉体
1.
The concentration of nanoscaled SiO_2 particles in Watt nickel electroplating bath, bright acidic electroless Cu plating bath, pyrophosphate copper plating bath and potassium chloride zinc plating bath were respectively measured by ultraviolet-visible spectrophotometry on the basis of former experiments and research.
 在前期实验研究的基础上,采用紫外-可见光分光光度法测定含有SiO2纳米粉体的瓦特型镀镍液、酸性光亮镀铜液、焦铜液、氯化钾镀锌液中SiO2的含量。
4)  modified nano-SiO2
改性纳米SiO2
1.
To improve the interfacial compatibility between basalt fibers and epoxy resin,and the property of composites,surface modified nano-SiO2 particles were evenly distributed into the sizing agent and coated to the surface of basalt fibers by through sizing technique.
为了改善玄武岩纤维与环氧树脂的界面相容性,提高复合材料力学性能,把改性纳米SiO2粒子均匀分散于浸润剂中对玄武岩纤维进行表面涂覆改性。
5)  modified SiC nano-powders
改性纳米SiC粉体
1.
The nodular cast iron were reinforced by surface modified SiC nano-powders.
采用改性纳米SiC粉体对球墨铸铁进行了强韧化处理,研究了不同的纳米SiC粉体加入量对球墨铸铁的微观组织、力学性能以及耐磨损性能的影响。
2.
Cast austenitic stainless steel reinforced by modified SiC nano-powders were prepared under industrial conditions.
在生产条件下采用冲入法制备了改性纳米SiC粉体强化奥氏体不锈钢材料。
3.
Cast austenitic stainless steels reinforced by modified SiC nano-powders have been prepared with pour over process under industrial conditions,and the effect of modified SiC nano-powders on the pitting corrosion resistance of the austenitic stainless steel was characterized by pitting chemistry immersion and pitting electrochemistry tests,metallographic analysis,SEM and energy dispersive analysis.
在生产条件下采用冲入法制备了改性纳米SiC粉体强化奥氏体不锈钢试样,用化学浸泡和电化学检测两种方法研究了纳米SiC粉体对不锈钢耐点蚀性能的影响。
6)  modified SiO2 nano-particle
改性SiO2纳米粒子
1.
Microfiltration membrane was modified by modified SiO2 nano-particle.
采用改性SiO2纳米粒子对微滤膜进行改性,考察了改性微滤膜的分离特性及对城市污水的深度处理效果。
补充资料:连续性与非连续性(见间断性与不间断性)


连续性与非连续性(见间断性与不间断性)
continuity and discontinuity

11an父ux泊g四f“山。麻以角g、.连续性与非连续性(c。nt,n琳t:nuity一)_见间断性与不间断性。and diseo红ti-
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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