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普通钢纤维取代不锈钢纤维增强耐火混凝土的试验研究
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作者 杨龙 《江西建材》 1996年第1期18-20,共3页
本文通过改变取代不锈钢纤维的低碳钢纤维掺量,改变加热的温度,研究了不锈钢纤维耐火混凝土的失重,收缩以及力学性能。实验结果充分表明,采用低碳钢纤维取代40%-70%不锈钢纤维的增强耐火混凝土,当温度低于1000℃时,可... 本文通过改变取代不锈钢纤维的低碳钢纤维掺量,改变加热的温度,研究了不锈钢纤维耐火混凝土的失重,收缩以及力学性能。实验结果充分表明,采用低碳钢纤维取代40%-70%不锈钢纤维的增强耐火混凝土,当温度低于1000℃时,可保持强度,收缩、以及失重等性能基本不变,并降低了工程造价,达到经济、科学、合理的目的. 展开更多
关键词 纤维 不锈钢纤维 纤维耐火混凝土 试验
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Numerical simulation and combination optimization of aluminum holding furnace linings based on simulated annealing 被引量:2
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作者 王计敏 兰申 +2 位作者 陈涛 李文科 楚化强 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第6期880-889,共10页
To reduce heat loss and save cost, a combination decision model of reverb aluminum holding furnace linings in aluminum casting industry was established based on economic thickness method, and was resolved using simula... To reduce heat loss and save cost, a combination decision model of reverb aluminum holding furnace linings in aluminum casting industry was established based on economic thickness method, and was resolved using simulated annealing. Meanwhile, a three-dimensional mathematical model of aluminum holding furnace linings was developed and integrated with user-defined heat load distribution regime model. The optimal combination was as follows: side wall with 80 mm alumino-silicate fiber felts, 232 mm diatomite brick and 116 mm chamotte brick; top wall with 50 mm clay castables, 110 mm alumino-silicate fiber felts and 200 mm refractory concrete;and bottom wall with 232 mm high-alumina brick, 60 mm clay castables and 68 mm diatomite brick. Lining temperature from high to low was successively bottom wall, side wall, and top wall. Lining temperature gradient in increasing order of magnitude was refractory layer and insulation layer. It was indicated that the results of combination optimization of aluminum holding furnace linings were valid and feasible, and its thermo-physical mechanism and cost characteristics were reasonably revealed. 展开更多
关键词 Aluminum holding furnace linings Reaction engineering Transport processes Numerical simulation Combination optimization Simulated annealing
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