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无基坑静态轨道衡在贸易计量中的应用——论本钢老专用线有基坑轨道衡改造成无基坑轨道衡
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作者 赵国君 《衡器》 2015年第4期38-40,共3页
本钢板材股份有限公司(以下简称"本钢")老专用线原先安装一台贸易用的有基坑静态轨道衡。使用的时间不长,但已经出现刚性台面变形等机械方面的问题。计量准确度不稳定,维护周期逐渐频繁,维护工作量在增加,半年检定压力增大。... 本钢板材股份有限公司(以下简称"本钢")老专用线原先安装一台贸易用的有基坑静态轨道衡。使用的时间不长,但已经出现刚性台面变形等机械方面的问题。计量准确度不稳定,维护周期逐渐频繁,维护工作量在增加,半年检定压力增大。因此,本钢决定对该轨道衡进行无基坑改造,来保证轨道衡的稳定性,减少维护工作量。改造中,还增加了动态计量的功能,动态计量性能达到《JJG 234-2012自动轨道衡》的1级。 展开更多
关键词 有基坑改造 基坑 动静两用
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铁水轨道衡在高炉的实践与应用 被引量:1
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作者 袁静 《自动化与仪器仪表》 2009年第6期51-52,共2页
着重介绍了无基坑与有基坑2种轨道衡在高炉上的应用特点,阐述了高炉出铁场特殊环境对轨道衡的影响,以及在采购、安装和维护过程中的注意事项。
关键词 高炉 铁水轨道衡 有基坑 基坑
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浅析轨道衡结构的发展历程 被引量:4
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作者 张勇 戴明新 《衡器》 2021年第2期45-49,共5页
本文介绍了轨道衡结构的发展历程,以及各种结构轨道衡的优缺点和应用场合。
关键词 轨道衡 结构 有基坑 基坑
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Differential uplift and settlement between inner column and diaphragm wall in top-down excavation 被引量:5
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作者 王丽 郑刚 欧若楠 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3578-3590,共13页
Top structure and basement will confront the risk of being damaged on account of large stress and strain fields incurred by differential uplift and settlement between inner column and diaphragm wall in top-down method... Top structure and basement will confront the risk of being damaged on account of large stress and strain fields incurred by differential uplift and settlement between inner column and diaphragm wall in top-down method. Top-down excavation of the Metro Line 10 in Shanghai was modeled with finite element analysis software ABAQUS and parameters of subsoil were obtained by inverse analysis. Based on the finite element model and parameters, changes in the following factors were made to find more effective methods to restrain differential uplift and settlement: length of diaphragm wall, thickness of jet-grouting reinforcement layer, ways of subsoil reinforcement, sequence of pit excavation, connection between slabs and diaphragm wall or column and width of pit. Several significant results are acquired. The longer the diaphragm wall is, the greater the differential uplift between column and diaphragm wall is. Rigidity of roof slab is in general not strong enough to keep diaphragm wall and column undergoing the same uplift during excavation; Uplift at head of column and differential uplift between column and diaphragm wall decrease when subsoil from-16.6 to-43 m in pit is reinforced through jet-grouting. But, as excavation proceeds to a lower level, benefit from soil reinforcement diminishes. During the process applying vertical load, the larger the depth of diaphragm wall is, the smaller the settlement is at head of column and diaphragm wall, and the greater the differential settlement is between column and diaphragm wall. When friction connection is implemented between column, diaphragm wall and floor slabs, uplifts at head of column and diaphragm wall are larger than those of the case when tie connection is implemented, and so does differential uplift between column and diaphragm wall. The maximum deflection of diaphragm wall decreases by 58% on account of soil reinforcement in pit. The maximum deflection of diaphragm wall decreases by 61.2% when friction connection is implemented instead of tie connection. 展开更多
关键词 top-down method differential uplift differential settlement jump-layer excavation diaphragm wall with outriggers
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