期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
浸入式水口渣线ZrO2-C材料的侵蚀机制? 被引量:2
1
作者 Harald Harmuth Nathalie Kolbl +1 位作者 Barbara Rollinger Guangmin Xia 《耐火材料》 CAS 北大核心 2013年第3期173-176,共4页
通过观察损毁样品的侵蚀和渗透情况,研究浇铸TRIP钢时保护渣对ZrO2-C渣线材料的侵蚀机制。ZrO2及其稳定剂CaO的侵蚀溶解是渣线材料侵蚀的决定因素。氧化是石墨损毁的主要方式,石墨在钢水里的溶解对其损毁不起重要作用。ZrO2溶解量和石... 通过观察损毁样品的侵蚀和渗透情况,研究浇铸TRIP钢时保护渣对ZrO2-C渣线材料的侵蚀机制。ZrO2及其稳定剂CaO的侵蚀溶解是渣线材料侵蚀的决定因素。氧化是石墨损毁的主要方式,石墨在钢水里的溶解对其损毁不起重要作用。ZrO2溶解量和石墨氧化量的比值随着热面到钢水垂直距离的减少而减少。然而,与其他炼钢用碳结合耐火材料不同,在本研究的特殊情况下,石墨被保护渣浸润,它仍然充当耐火成分,但仅部分作为抗渣渗透剂。渣渗透后,ZrO2开始被侵蚀,降低了抗渣侵蚀性,然而渣中成分的气相传输可能导致CaO在未渗透区域脱溶。 展开更多
关键词 氧化锆 石墨 侵蚀机制 渣线
下载PDF
Energy and Material Flow Evaluation with CO2 Emissions in the Glass Production Process
2
作者 Gregor Berger Zlatko Raonic +2 位作者 Daniel Forthuber Harald Raupenstrauch Robert Hermann 《Advances in Materials Physics and Chemistry》 2022年第5期82-105,共24页
Glass manufacturing is an energy-intensive process with high demands on product quality. The wide usage of glass products results in a high end-product diversity. In the past, many models have been developed... Glass manufacturing is an energy-intensive process with high demands on product quality. The wide usage of glass products results in a high end-product diversity. In the past, many models have been developed to optimize specific process steps, such as glass melting or glass forming. This approach presents a tool for the modeling of the entire glass manufacturing process for container glass, flat glass, and glass fibers. The tool considers detailed bottom-up energy and material balance in each step of the processing route with the corresponding costs and CO<sub>2</sub> emissions. Subsequently, it provides the possibility to quantify optimization scenarios in the entire glass manufacturing process in terms of energy, material and cost flow efficiency. 展开更多
关键词 Energy Efficiency Glass Industry Energy Balance Container Glass Flat Glass Glass Fiber
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部