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1)  Hollow brick structure
空心砖结构
2)  structural tile
结构空心砖
3)  sintered hollow block
烧结空心砖
1.
The feasibility study on the production of sintered hollow block's raw material is analysized by extracting the chlorite and the hyalite from the waste of Qidashan Open-pit Mine with the modern test method and analytical procedure, which is based on the integration with the theory analysis, experimental investigation and cost-effectiveness analysis.
论文选取齐大山铁矿矿业废渣为研究对象,以综合利用齐大山铁矿矿业废渣生产烧结空心砖为出发点,采用理论分析、试验研究及技术经济分析相结合的研究路线,利用现代测试手段和分析方法,分析金属矿山剥离废渣中的绿泥石、千枚岩制取空心砖的原料可行性;试验研究了铁矿矿业废渣掺量及尺寸效应对空心砖物理、力学性能的影响。
4)  hollow brick wall
空斗砖结构
5)  hollow tile floor construction
空心砖楼板构造
6)  Hollow structure
空心结构
1.
The results show that the size of molten titanium particles is smaller than that of HA particles, which is mainly caused by the formation of hollow structure due to aggregation of gaseous P2O5 and H2O within molten HA particles.
结果表明,经等离子熔融喷射入水后,钛粒子的尺寸小于HA粒子,主要原因之一是HA内形成了空心结构。
2.
Fe3O4 microspheres with hollow structure were prepared by the glycol solvothermal method using FeCl3-6H2O and NH4Ac as reactants.
以FeCl3-6H2O和NH4Ac为反应物,乙二醇为溶剂热介质,制备了Fe3O4空心结构微球。
3.
In this dissertation, valuable explorations have been carded out onthe synthesis of highly active TiO_2 photocatalysts, the immobilization of TiO_2nanoparticles, the facile preparation of one-dimensional TiO_2 hollow structures andNa-free anatase TiO_2 films with highly photocatalytic activity.
本论文针对TiO_2在实际应用中存在的各种问题,重点在高活性纳米TiO_2光催化剂的制备、纳米TiO_2粒子光催化剂的固载、一维TiO_2空心结构和高活性无钠TiO_2薄膜的简易合成等方面进行了有益的探索,其主要内容如下: 第二章,为了制备高活性纳米TiO_2光催化剂,发展了大比表面积锐钛矿TiO_2纳米光催化剂的制备新技术。
补充资料:空心球砖
分子式:
CAS号:

性质:用耐火空心球制成的轻质耐火材料。空心球砖显气孔率低,导热系数小,抗热震性能好,高温结构强度高,可直接砌筑在与火焰接触的高温窑炉内衬,以及制造高温炉管、托盘、保护罩等。常用的空心球砖有氧化铝空心球砖和氧化锆空心球砖。

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