• Several silica raw materials with very different nature were used to produce xonotlite secondary particles.

    几种原料用于硬硅钙石二次粒子制备中。

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  • The effect of several zirconium compounds as additives on the morphology of xonotlite crystals was examined.

    考察几种类化合物添加剂硬硅钙石形貌影响

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  • However, hollow structure is harm to the study on the properties and applications of ultrafine xonotlite fibers.

    然而半中空进一步深入研究超细直径硬硅钙石纤维性能应用造成很大局限。

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  • The results were as follows: the needle crystal of xonotlite was controlled by reaction temperature, pressure and time.

    认为硬硅钙石针状晶体平衡反应最终产物 ,适当的温度压力下 ,经过一定的反应时间就能生成。

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  • Ultra_light calcium silicate insulation material is constructed with spherical agglomerates of fibrous xonotlite crystals.

    超轻硅酸材料实际上硬硅钙石纤维状晶体组成多孔球状团聚体构成

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  • The MFDJ calcium silicate boards are inorganic materials, the main crystal phase is the xonotlite, with excellent physical and chemical properties.

    产品无机材料石,理化性能稳定。

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  • The effective thermal conductivities of xonotlite-type calcium silicate, aerogel and xonotlite-aerogel composite insulation material were compared by model calculation.

    通过模型计算对硬硅硅酸钙、气凝胶硬硅钙石-气凝胶复合绝热材料导热系数进行对比研究。

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  • The secondary particle sphere of xonotlite yielded by konilite is of hollow structure, however, for the carbon white fibrous crystal just stacked densely and balling up is poor.

    石英制备硬硅钙石二次粒子具有中空结构,而炭黑对应样品则以纤维聚集的块体为主,成球差。

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  • Lime with high activity should be utilized as calcareous material to produce super-light xonotlite and the activity of siliceous material should match that of calcareous material.

    制备超轻硬石制品必须使用高活性石灰作为钙质原料所使用的硅质原料活性与之相匹配

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  • The formation of hollow secondary particles of xonotlite was controlled by kinetics. The dissolution speed of quartz is important in forming hollow secondary particles of xonotlite.

    中空二次粒子形成个动力学控制过程,整个成球反应过程中,石英粉溶解速度关键

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  • Xonotlite-based material is a very useful insulation material, because spherical xonotlite agglomerates which are synthesized with dynamic hydrothermal rrocess consist of many pores.

    通过动态合成出的球形硬硅钙石颗粒具有很高的气孔率,使轻制硬硅钙石材料成为用途广泛绝热(保温)材料。

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  • The results indicate that stirring evidently affects the formation and morphology of xonotlite secondary particles, and further affects the dry shrinkage and bulk density of xonotlite products.

    结果表明搅拌对上述性质影响非常显著并且进一步影响硬硅钙石制品干燥收缩率体积密度

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  • The results indicate that stirring evidently affects the formation and morphology of xonotlite secondary particles, and further affects the dry shrinkage and bulk density of xonotlite products.

    结果表明搅拌对上述性质影响非常显著并且进一步影响硬硅钙石制品干燥收缩率体积密度

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