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再加热炉步进梁机械系统改进设计
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作者 鞠全勇 张春雨 《机械设计与制造》 北大核心 2007年第11期42-44,共3页
针对加热炉的生产工艺要求,结合公司的现场实际生产情况,对再加热炉进行技术改造,从机械、液压和电气控制三个方面对原有的步进梁进行改进。经过将辊道8°倾斜角倾斜布置,让荒管旋转起来,有效地解决了荒管进入再加热炉时弯曲现象的... 针对加热炉的生产工艺要求,结合公司的现场实际生产情况,对再加热炉进行技术改造,从机械、液压和电气控制三个方面对原有的步进梁进行改进。经过将辊道8°倾斜角倾斜布置,让荒管旋转起来,有效地解决了荒管进入再加热炉时弯曲现象的出现。通过对炉内辊体结构的改进,延长辊体寿命三倍以上。在原有的液压系统上增加了缓衡阀组,实现液压系统缓冲,有效的减小了机械性的冲击;提高了产品质量和生产效率。 展开更多
关键词 再加热炉 步进梁 液压系统 改进设计
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钢管再加热炉加热能力分析和燃烧系统改造 被引量:1
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作者 彭小中 周维汉 《冶金能源》 北大核心 2006年第2期46-47,63,共3页
对步进式再加热炉煤气燃烧系统所存在的问题进行了分析,介绍了改造方案和使用效果。
关键词 再加热炉 加热能力分析 改造
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再加热炉双燃料燃烧系统的开发与应用
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作者 王丽艳 王朋 《冶金能源》 2013年第5期38-40,共3页
介绍了再加热炉双燃料燃烧系统技术的开发和应用实例,为低热值燃料提供了一种利用方式。
关键词 再加热炉 双燃料燃烧系统 两用燃气烧嘴
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一种大流量液压比例控制系统的分析 被引量:1
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作者 郭秀琴 黄效国 《液压与气动》 北大核心 2004年第4期22-24,共3页
该文分析了包钢再加热炉液压系统的工作原理及工作过程 ,讨论了比例系统对步进式梁的控制。
关键词 钢管再加热炉 轧钢 液压系统 步进梁 比例阀 插装阀 液压比例控制系统
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Dynamic simulation on effect of flame arrangement on thermal process of regenerative reheating furnace 被引量:5
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作者 欧俭平 马爱纯 +2 位作者 詹树华 周孑民 萧泽强 《Journal of Central South University of Technology》 EI 2007年第2期243-247,共5页
By analyzing the characteristics of combustion and billet heating process, a 3-D transient computer fluid dynamic simulation system based on commercial software CFX4.3 and some self-programmed codes were developed to ... By analyzing the characteristics of combustion and billet heating process, a 3-D transient computer fluid dynamic simulation system based on commercial software CFX4.3 and some self-programmed codes were developed to simulate the thermal process in a continuous heating furnace using high temperature air combustion technology. The effects of different switching modes on injection entrancement of multi burners, combustion and billet heating process in furnace were analyzed numerically, and the computational results were compared with on-site measurement, which verified the practicability of this numerical simulation system. The results indicate that the flow pattern and distribution of temperature in regenerative reheating furnace with partial same-side-switching combustion mode are favorable to satisfy the high quality requirements of reheating, in which the terminal heating temperature of billets is more than 1 460 K and the temperature difference between two nodes is not more than 10 K. But since the surface average temperature of billets apart fi'om heating zone is only about 1 350 K and continued heating is needed in soaking zone, the design and operation of current state are still needed to be optimized to improve the temperature schedule of billet heating. The distribution of velocity and temperature in regenerative reheating furnace with same-side-switching combustion mode cannot satisfy the even and fast heating process. The terminal heating temperature of billets is lower than that of the former case by 30 K. The distribution of flow and temperature can be improved by using cross-switching combustion mode, whose terminal temperature of billets is about 1 470 K with small temperature difference within 10 K. 展开更多
关键词 high temperature air combustion reheating furnace switched combustion numerical simulation
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