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composite function相关的网络例句

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与 composite function 相关的网络例句 [注:此内容来源于网络,仅供参考]

The preparation method comprises the steps as follows: pulverizing; alkalizing and stewing plant straw to obtain fibrous pulp; mixing the fibrous pulp with bentonite and milling; conducting sodium treatment, chemical modification and purification to obtain modified composite bentonite pulp; separating, drying, etc., to prepare the composite fibrous material.

本发明涉及一种路用秸秆复合纤维材料的制备方法,该制备方法是将植物秸秆经过粉碎、碱化、蒸煮后的纤维浆与膨润土经过磨细、纳化、化学改性和提纯后得到的改性膨润土浆复合,并经分离、干燥等制备出的复合纤维材料。

When the brominated polystyrene content was 3%,the horizontal burning velocity of the composite was 33 mm/min,which measured up to FR standard of our country,and the comprehensive properties of the composite were satisfactory.

当在共混物中添加质量分数为3%的BPS阻燃剂时,复合材料的水平燃烧速率为33 mm/min,满足了我国关于家用电器的阻燃法规(<40 mm/min),而且此时体系的综合性能也较好。

The nano-hydroxyapatite/silk fibroin composite scaffolds were prepared by the commixing process. The, and their in vitro degradation behavior and the biocompatibility was of nHA/SF composite scaffolds were investigated in this work.

应用共混法制备了纳米羟基磷灰石/丝素蛋白复合支架材料,通过体外降解和细胞培养实验研究了复合支架材料的降解特性和生物相容性。

College of Economics and Business Administration, Nanjing University of Technology, Nanjing 210009, ChinaAbstract: Steel and polyethylene can be really conglutinated together by using constructional conglutination steel-polyethylene composite pipe technology. Their interfacial intensity is far stronger than other composite pipes, and has no disadvantages compared with the others.

采用结构粘接型聚乙烯钢塑复合工艺技术,可使钢与聚乙烯得到真正意义的&复合&,其界面结合的强度远远大于其他复合管的结合强度,且克服了其他复合管技术所存在的缺点。

Through copolymerizing AA and AN in different mole ratio, and compare the PV performance with membrane of PVA acetal membrane, we can concluded that, the separation flux of composite membrane is less than PVA acetal membrane, however, when the mole ratio of AA and AN is 1:1, the separation factor is higher than PVA acetal membrane, from the view of PSI, the composite membrane is better, thats the reason of the hydrophilic functional group and hydrophobic functional group ratio proper, it achieved good balance.

经过研究得到相对最佳的制膜条件:PVA浓度10%,甲醛浓度36%,采用加热到75℃的方法缩醛和制膜,热处理时间为15min;AA与AN的投料摩尔比为1比1左右,复合膜厚为30gm。通过渗透汽化指数的综合衡量,得到对于共聚复合膜最佳的使用温度为50℃左右。

Correlating the effective properties of composite materials with their microstructures is a basis for optimization design of composite materials.

建立复合材料的有效性质与微结构参数的关联,是复合材料优化设计的基础。

The dry rubber transect made from composite latex was observed with SEM. It was discovered that large particles of the creaming composite latex syncretized very well, and formed dry rubber membrane.

采用扫描电镜观察了复合胶乳干胶膜的断面形貌,发现大粒径的膏化胶乳成膜后胶粒间可以较好地融合。

In deaerated buffer solutions, the cyclic voltammetry of the composite films of GOx-Au NP-CHIT showed a pair of well-behaved redox peaks that were assigned to the redox reaction of GOx, confirming the effective immobilization of GOx on the composite film.

研究表明:在除氧缓冲溶液中,葡萄糖氧化酶-壳聚糖-纳米金复合膜修饰电极表现出一对良好的氧化还原峰,这对峰归因于葡萄糖氧化酶的氧化还原,证明葡萄糖氧化酶被成功固载于复合膜内。

In this paper, several coloring pigments were synthesized and the sheet metal powders were coated by these pigments with the technology of super powder preparing and particle compositing. The coated composite particles were prepared by these, and the metallic luster of the metal powders were defiladed. The mechanism and the processing conditions of composite particles were researched.

本论文以超细粉体制备及粒子复合技术为基础,在金属粉表面包覆一层红外透明性较好的着色颜料,遮盖金属粉的金属光泽,制备出包覆式复合粒子,对复合粒子的制备的机理及工艺条件进行了研究。

The result shows that the hydrogen storage properties increase remarkably after pure magnesium ball-milled with 10% TiFe(subscript 1-x)Cr (x=0, 0.3). Moreover, the chromium content also influences the hydrogen storage characteristics. Furthermore, the ball-milled composite of Mg+10%TiFe0.7Cr0.3 has the best hydrogen storage properties with hydrogenation capacity of 7.14% and dehydrogenation capacity of 6.91% at 613 K. In addition, the lower temperature of 493-573 K, the Cr-contained composite exhibits the best dehydrogenating kinetics.

研究结果表明:在纯Mg中添加质量分数为10%的TiFe(下标 1-x)Cr(x=0, 0.3)进行复合球磨,可以明显提高其吸放氢性能;在相同温度条件下,x=0.3的含铬复相合金具有最佳的吸放氢性能,其中在613 K下的吸氢容量为7.14%,放氢容量为6.91%;在493~573 K的较低温度下,含铬复相合金表现出更好的放氢动力学性能。

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