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氧化锆

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Influence of the composition of fused magnesia zirconia materials on its microstructure and properties were investigated.

研究了轻烧氧化镁和锆英砂的配料组成对电熔镁锆合成料的显微结构和性能的影响。

Rare precious metals company mainly engaged in electroplating and metal surface treatment, environmental treatment, washed clean of raw materials: silver nitrate, nitric acid and rhodium, palladium nitrate; Asia selenium acid, selenium dioxide, tellurium dioxide, mineral selenium powder Japan, Mitsubishi Se powder, Mitsui, Sumitomo, emerging, Germany selenium powder; molybdenum trioxide, DMF; TX-10, NP-9 series, EDTA series; sodium hypophosphite, nickel nitrate, metal thallium, rhodium, palladium, platinum , Beryllium, Ritek, zirconium products; sponge palladium; electrolytic nickel, nickel corner, hydrazine hydrate, Ultra-fine silver, nano-silver; Thallium sulfate, iodized Thallium sulfate, nickel, copper sulfate, copper chloride, copper oxide, nickel oxide , Lanthanum oxide, oxidation Er, bismuth oxide, bismuth ingots, tin ingots, indium ingot, indium foil, Xinding, zinc powder; SnCl2, sulfate-tin; hydrofluoric acid, white Vaseline, propylene glycol, dichloro Methane, the propylene glycol, triethanolamine, triethanolamine oleic acid soap, chloroform, pyrophosphate copper, Gioia sodium, polyacrylamide, PAC, oleic acid, Glycerol, phosphate and other domestic and imported chemical series.

公司主要经营稀贵金属及电镀金属表面处理、环保污水处理、洗涤清洗原料:硝酸银、硝酸铑、硝酸钯;亚硒酸、二氧化硒、二氧化碲、日本矿业硒粉、三菱硒粉、三井、住友、新兴、德国硒粉;三氧化钼、二甲基甲酰胺;TX-10、NP-9系列、EDTA系列;次亚磷酸钠、硝酸镍、金属铊、铑、钯、铂、铍、铼、锆系列产品;海绵钯;电解镍、镍角、水合肼、特细银粉、纳米银粉;硫酸铊、碘化铊、硫酸镍、硫酸铜、氯化铜、氧化铜、氧化镍、氧化镧、氧化铒、氧化铋、铋锭、锡锭,铟锭、铟箔、锌锭,锌粉;氯化亚锡、硫酸亚锡;氢氟酸、白凡士林、丙二醇,二氯甲烷,二丙二醇,三乙醇胺、三乙醇胺油酸皂、三氯甲烷、焦磷酸铜、焦亚硫酸钠、聚丙烯酰胺、聚合氯化铝、油酸、甘油、磷酸等国产、进口化工系列。

Manganese oxide and tantalum oxide are added to a piezoelectric ceramic composition based on lead zinc-niobate titanate zirconate.

向基于铌钛锆酸铅锌的一种压电陶瓷组合物中加入氧化锰和氧化钽。

The zirconium film withoul zirconia wasprePared and the removing technology of the zirconia on the zirconium suthees wasNned.The method of high temPeratUr vacuum hydrOgenization Which was firstlystudied was used tO remove the okide film of zirconium on the sdses.

本文针对这种情况,首次进行了以下几方面的研究:首次采用电化学法研究了锆膜基材表面氧化层的去除技术,制得去除了表面氧化膜的锆基材膜,获得了锆膜基材表面氧化层的去除工艺。

In the catalytic oxidation of hydrocarbons, titania-pillared zirconium phosphonate and phenylphosphonate had a catalytic activity higher than TiO2, they also showed a good stability during the reaction.

在烃类的催化氧化反应中,氧化钛层柱磷酸锆具有优于TiO2的选择氧化性能,并在反应中表现出较好的稳定性。

Chromia-pillared zirconium phenylphosphonate and phosphate were prepared via preswelling the layered phosphates by ethylamine prior to the intercalation of the pillaring species.

采用乙胺预胶体化方法合成了一系列氧化铬层柱苯膦酸锆和氧化铬层柱磷酸锆催化剂,其铬含量达到22.5%-36.5%,比表面为316-462m^2/g,中孔孔容占总孔容的70%以上,孔径集中在2nm左右。

The factors of temperature and humidity influenced on film thickness and order of layer were studied, in which pulling speed and pulling times were also included. It showed that the thickness of single dip-coating film reached 0.23 μm ~ 0.625 μm, and the degree of order of surface layer were still holding much higher.b Adopting calcined or uncalcined mesoporous silica membrane as matrix, nano zirconia particles were assembled through ion exchange method and ion-template exchange method.

结果表明,单次提拉膜膜厚0.23μm~0.625μm、8次提拉后表层膜仍有一定的有序性; b以自制的介孔氧化硅煅烧/未煅烧厚膜样为基体,采用离子交换法/离子模板交换法组装锆氧纳米粒子,选用DSC-TG、FT-IR、Uv-vis、SAXRD等对不同组装方法、锆源浓度、pH值等组装条件下ZrO_2/介孔氧化硅厚膜组装效果进行评价。

In this paper a computation model of corrosion rate versus grain size of nanocrystalline zircaloy -4 has been presented.

结果表明:与普通晶粒相比,纳米晶粒尺寸下锆合金的速率低于普通晶粒锆-4合金的腐蚀速率,随着纳米晶粒尺寸的减小,锆-4合金的腐蚀速率也降低;同时,纳米化组织处理推迟了锆-4合金氧化转折时间,使其抗氧化性能得到了提高。

This article discussed a superficial nanometer processing to the zircaloy corrosion resistance performance influence. For a surface nanometer and the ultra finer organization's zircaloy, its corrosion property influence factor not only includes the grain size, but also includes the alloy composition,the oxide film organization and the nature, the heat treatment technique, the surface condition, chemistry of reactor coolant, temperature of reactor coolant , heat flux through the cladding, irradiation effects and so on.

对于具有表面纳米及超细晶组织的锆合金来说,其腐蚀性能的影响因素不仅仅包括晶粒尺度,还包括合金成分、氧化膜的组织与性质、热处理工艺方法、表面状态、反应堆水化学、水冷却剂温度、通过包壳锆合金的热通量密度、辐照效应等等。

Because oxidize the nanometer products of zirconium is high in purity, the activation is good, quality is steady, Can apply to the ceramic field of high technology, the improvement of coating material of function( antimagnetic, environmental protection material ) and traditional material extensively , For instance: Prepare many kinds of ceramic components , carry on the transformation to coating, plastics, rubber material,etc., Improve wear-resisting degree and mechanics characteristic.

由于氧化锆纳米产品纯度高,活性好,品质稳定,可广泛应用于高技术陶瓷领域,功能涂层材料及传统材料的改进,如:制备多种陶瓷元件,对涂料、塑料、橡胶材料等进行改造,提高耐磨度及力学特性。

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