利用纳米材料提高碳结合陶瓷的高温结构强度

A. Sen, B. Prasad, J. Sahu, J. N. Tiwari
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引用次数: 1

摘要

碳结合耐火材料用于钢铁、有色金属等行业的高温应用。碳的主要优点是对液态金属和炉渣不润湿,耐热剥落。亚入口喷嘴(SEN)是一种主要的碳结合耐火材料,在钢铁厂中使用。在连铸过程中,用于包裹钢从中间包到结晶器的流动。SEN的主体部分由铝碳制成,渣带部分浸在模具粉池中,由锆碳制成。氧化锆对模具粉中存在的新生氟化物具有优良的耐腐蚀性。本文主要研究了如何以纳米形式加入氧化物来提高SEN的寿命。这改善了其物理机械性能,并诱导其具有更高的机械强度和低弹性等特性。由于其致密的质地,耐腐蚀和抗侵蚀能力也得到了提高。最重要的是要注意的是,由于颗粒的高表面积,烧结过程在较低的温度下开始,机械性能得到改善,从而降低了产品的能耗和成本。通过微观研究研究了粘接模式,并结合现场实际试验得出了相关关系。
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Enhancement of high temperature structural strength of carbon bonded ceramics by using nano materials
Carbon bonded refractories are used for high temperature application in Iron & Steel, Non-ferrous & other industries. The main advantages of carbon are its non-wetting characteristic to liquid metal & slag and high thermal spalling resistance. One of the premier carbon bonded refractories is Sub-entry nozzle (SEN), which is used in the steel plant. It is used for shrouding the flow of steel from tundish to mould during continuous casting of steel. The body part of SEN is made of alumina-carbon and the slag band portion that remains immersed into the pool of mould powder, is made of zirconiacarbon. Zirconia has excellent corrosion resistance to nascent fluorides present in mould powder. This paper mostly focuses on how to enhance the life of SEN by incorporating the oxides in nano-form. This improves its physico-mechanical properties and induces properties like higher mechanical strength and low elasticity. Corrosion & erosion resistance also improves due to its dense texture. The most important thing to note is that due to high surface area of the particles, the sintering process starts at a low temperature with improved mechanical properties, thus lowering the energy consumption and cost of the product. Microscopic studies have been done to study the bonding patterns and co-relation has been made with actual field trials.
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