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glass bead相关的网络例句

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

A new waterproof and thermal insulation paint made of materials such as elastic emulsion,hollow glass bead,diatomite,infrared reflection agent and amianthus is introduced.

利用弹性乳液、空心玻璃微珠、硅藻土、红外线反射剂、石棉绒等原料制得一种新型防水保温涂料。

Micro-glass bead, which is the key factor in this technique, is of utmost importance in its success.

玻璃微珠作为其中的关键因素,对该技术的成败有着关键作用。

Three protozoa (Bodo edax, Colpoda cucullus, Amoeba proteus) were isolated from soil. The porous simulation with glass bead, soil column and root box incubation experiments were made to study the association of protozoa movement with phosphorus translocation and its influencing factors. The effects of protozoa on corn growth and corn straw mineralization were also involved. The results showed that protozoa movement in glass bead column was greatly controlled by the pore sizes. Bodo edax, about 5-7 m, could pass through the pores of 28-20 11 m in diameters. Colpoda cucullus (30-60 m) could move through the pores of 155~116 m. However, no Amoebaproteus(100~150 m) was found in the effluents from all the columns. All the three protozoa made 32P redistribution in soil column.

本研究利用土壤中常见的3种原生动物(梨波豆虫Bodo edax、僧帽肾形虫Colpoda cucullus、大变形虫Amoeba proteus),通过玻璃珠孔隙模拟、土柱及根箱培养试验,研究3种原生动物运动与磷素运移之间的关系及其影响因素,以及原生动物对玉米磷素营养的影响,同时对3种原生动物在玉米秸秆分解中的作用做了初步的探索,研究结果表明:原生动物的运动与孔隙密切相关,Bodo edax(5~7μm)能够穿过28~20μm孔隙,Colpoda cucullus (30~60μm)只能穿过155~116μm的孔隙,而Amoeba proteus(100~150μm)不能从玻璃柱中流出。

The main application of glass beads is glass bead array retroreflective film, which has been widely used as marking materials in traffic signs and safety clothes.

目前,玻璃微珠最大的应用领域是用作标志材料的微珠列阵逆向反光膜,它已在各类逆向反光材料中占主导的地位。

With increasing the amount of hollow glass beads, the ratio of ultramicro iron-coated hollow glass bead decreased.

随着中空玻珠用量的增大,复合粒子包裹率逐渐降低。

Composites of hollow glass bead /ultramicro iron/ EP with three-layer structure were prepared by coating EP on the surface of composites of ultramicro iron-coated hollow glass bead.

通过在超微铁包裹中空玻珠复合粒子表面再包裹一层EP,制备出了中空玻珠/超微铁/EP三层结构复合粒子。

Having consulted all the available literature on the subject, according the basic principal and method of design of radar absorbing materials, composites of epoxy resin-coated ultramicro iron, ultramicro iron-coated hollow glass bead, and hollow glass bead /ultramicro iron/ EP with three-layer structure were prepared.

本文是在查阅了大量国内外文献的基础上,依据雷达波吸收材料研究的基本理论和设计方法,以羰基铁为重点研究对象,采用原位复合的方法制备环氧树脂包裹羰基铁、超微铁包裹中空玻珠以及中空玻珠/超微铁/EP三层结构复合粒子。

Composites of ultramicro iron-coated hollow glass bead were in-suit prepared using ATPU as surface agent by decomposing carbonyl iron in hollow glass beads and DMF mixed solution.

用ATPU作表面活性剂,在中空玻珠存在下&原位&热分解五羰基铁制备出中空玻珠/超微铁核壳复合粒子。

The effects of the addition level,particle size and modification technology of silver-coated glass bead and the curing degree of electrically conductive silicone rubber on the electrical conductivity of silver-coated glass bead/silicone rubber composite were investigated.

研究镀银玻璃微珠的用量、粒径、表面改性工艺以及导电硅橡胶硫化程度等对镀银玻璃微珠/硅橡胶复合材料导电性能的影响。

The preparation method provided by the invention is: firstly, to clean glass beads; secondly, to modify the surface property of the glass beads, such as sulfhydrylation; thirdly, to clean the modified glass beads; fourthly, to add reducing agent into the glass beads including the modified glass beads to prepare a reducing mixture; fifthly, to prepare silver salt solution; sixthly, to mix the reducing mixture with the silver salt solution. And silver-wrapped glass bead core-shell composite particles are obtained through the reaction, the air pump filtering, the washing and the drying.

本发明提供的制备方法为:(1)清洗玻璃微珠;(2)对玻璃微珠的表面进行改性,例如巯基化;(3)清洗表面改性后的玻璃微珠;(4)所得包含表面改性后的玻璃微珠中加入还原剂,配制成还原混合体;(5)另配制银盐溶液;(6)将还原混合体与银盐溶液混合搅拌,反应,抽滤、洗涤、干燥,得到银包玻璃微珠核壳复合粒子。

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