首页> 外文会议>12th Biennial worldwide conference on refractories 2011. >EFFECT OF CALCIUM ALUMINATE BINDER AND MICROSILICA ON THERMO-MECHANICAL PROPERTIES OF LOW CEMENT CASTABLES
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EFFECT OF CALCIUM ALUMINATE BINDER AND MICROSILICA ON THERMO-MECHANICAL PROPERTIES OF LOW CEMENT CASTABLES

机译:铝酸钙粘合剂和微硅对低水泥稳定砖热力学性能的影响

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Use of castables is increasing significantly in ferrous, non-ferrous and other industries due to several advantages over shaped items. Different properties of refractories are key measure to assess its performance. The most important properties are HMOR (Hot modulus of rupture), RUL (Refractoriness under load), creep, thermal shock resistance etc along with other physical properties. Several works have been conducted both in ultra low cement and low cement systems to improve all these properties by designing products with different raw materials. But in most of the cases shaped items show superior thermo-mechanical properties over low or ultra low cement castables. Use of calcium aluminate binder is common for designing castables to get initial strength. Control addition of casting water can enhance the initial strength and other physical properties. Several super fine materials have been tried to reduce casting water like reactive/calcined alumina, spinel, micro-silica etc. Addition of micro-silica has certain advantages as it gives cost effective products and help to form secondary mullite by reacting with reactive/calcined alumina present in matrix. But the amount of calcium aluminate binder and micro-silica has remarkable effect on different thermo-mechanical properties of low cement castables. In present work, 70% Al_2O_3 low cement castable has been designed with different calcium aluminate binder and micro-silica. Total amount for both is kept at 10% varying micro-silica from 2% to 8%. All relevant properties are measured for each batch along with other thermo-mechanical properties particularly HMOR. Probable explanations are given for different thermo-mechanical properties due to different amount of calcium aluminate binder and micro- silica in the system on the basis of phases formed during firing and micro structure analysis.
机译:黑色金属,有色金属和其他行业中,浇铸料的使用量显着增加,这归因于其在成型制品方面的诸多优势。耐火材料的不同性质是评估其性能的关键措施。最重要的特性是HMOR(热断裂模量),RUL(负载下的耐火度),蠕变,抗热冲击性以及其他物理特性。通过设计具有不同原材料的产品,已经在超低水泥和低水泥体系中进行了几项工作,以改善所有这些性能。但是在大多数情况下,成型产品显示出比低或超低水泥浇注料优异的热机械性能。铝酸钙粘合剂通常用于设计浇铸料以获得初始强度。控制浇铸水的添加可以增强初始强度和其他物理性能。已经尝试了几种超细材料来减少浇铸水,例如反应性/煅烧氧化铝,尖晶石,微硅石等。添加微硅石具有一定优势,因为它可以提供具有成本效益的产品,并通过与反应性/煅烧硅石反应形成次级莫来石基质中存在氧化铝。但是,铝酸钙粘合剂和微硅粉的量对低水泥浇注料的不同热机械性能有显着影响。在目前的工作中,已经设计了70%的Al_2O_3低水泥浇注料,并使用了不同的铝酸钙粘合剂和微硅粉。两种硅的总量保持在10%的微二氧化硅(从2%到8%)之间。测量每批的所有相关性能以及其他热机械性能,尤其是HMOR。由于在焙烧和微观结构分析期间形成的相的基础上,由于体系中铝酸钙粘合剂和微二氧化硅的含量不同,对不同的热机械性能给出了可能的解释。

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