1) "凹"shape SiO 2 molding
二氧化硅凹模
1.
The photographs of the metal tip cathod arrays using “凹”shape SiO 2 molding and “V”shape si molding are also given, and their feature are compared respectively.
给出了用二氧化硅凹模和硅V型模制备的金属尖的阴极照片,并比较了各自的特点。
2) dioxy,dioxygen
二氧
3) silica
二氧化硅
1.
Preparation and characterization of silver nanoparticles-silica composite grain by sol-gel technology;
纳米银粒子-二氧化硅复合颗粒溶胶-凝胶的制备与表征
2.
Microporous Silica Hollow Nanospheres Templated by Anionic Polypeptide;
以阴离子多肽为模板合成二氧化硅纳米空心球(英文)
3.
Preparation of Sulfated Zirconia/Silica Complex Nanofibers by Electrospinning Method;
静电纺丝法制备硫酸化的二氧化锆/二氧化硅复合纤维
4) SO_2
二氧化硫
1.
Study on the Allocation of Allowance for SO_2 Emission Trading Program In Taiyuan;
太原市二氧化硫排污权交易配额分配方法研究
2.
Analysis on Treatment of Agglomeration Flue Gas's SO_2 Pollution in PanZhiHua Steel;
治理攀钢烧结烟气二氧化硫污染的对策分析
3.
Research on the 11th Five-Year Plan for SO_2 Pollution Control of Existing Coal-Fired Power Plants;
现有燃煤电厂二氧化硫治理“十一五”规划研究
5) titanium dioxide
二氧化钛
1.
Study on hydrolysis parameters of titanium dioxide prepared from Ti-containing blast-furnace slag;
含钛高炉渣制二氧化钛水解参数研究
2.
Research progress on surface modification and application of nano-sized titanium dioxide;
纳米二氧化钛表面改性与应用研究进展
3.
Study on polyaniline-modified supported nano-titanium dioxide;
聚苯胺改性负载型纳米二氧化钛的研究
6) TiO2
二氧化钛
1.
Study on Modification of TiO2Nano-material;
纳米二氧化钛材料的改性研究
2.
Experimental Study on the Control of TiO2 Nano-Powder Crystal Phases Prepared by the Hydrolysis-Sediment Approach;
纳米二氧化钛粉体晶相控制实验研究
3.
Two kinds of nano TiO2 sols A and B were respectively prepared with precursor titanium tetrachloride at low temperature in different mediums of nitric acid and hydrogen peroxide.
以四氯化钛为原料,分别以硝酸和过氧化氢为介质在低温下制备了两种二氧化钛溶胶A和B,通过X-射线衍射、透射电子显微镜、紫外-可见吸收光谱等测试手段进行了表征。
参考词条
补充资料:凹模壁厚及凹模垫板尺寸
型腔壁部投影面积 壁 厚, 毫 米
F, 厘米2 h1 h2 h3 h4 h5
<5 15~20 30~40 <=10 15~20 30~40
>5~10 20~25 40~50 10~15 20~25 40~55
>10~50 20~30 50~60 15~20 20~30 55~65
>50~100 30~35 60~75 20~25 30~40 65~70
>100~200 35~40 75~85 25~30 40~50 70~75
>200 >40 >85 30~35 50~60 >80
说明:补充资料仅用于学习参考,请勿用于其它任何用途。