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1)  formwork support
模板支撑体系
1.
The present,stability analysis of fastener-style steel pipe formwork support system is changed to single stand bar stability.
目前规范对扣件式钢管模板支撑体系整体的稳定性,是将其转化成单杆立杆的稳定性计算来考虑的。
2.
For high and long span of fastener-style steel pipe formwork supports, it is not sufficient to ensure it\'s stability and safety by only analyzing the stability of single standing poles and just taking necessary construction measures.
指出目前通过考虑单根立杆的稳定性和构造措施来分析超高大跨模板支撑体系是不够安全的,而必须对其进行整体稳定性计算。
2)  high formwork support system
模板高支撑体系
1.
The insufficient antilateral deformability under horizontal load is an important reason for collapse accident of the high formwork support system taking place in the construction.
施工期发生的扣件式钢管模板支撑体系倒塌事故一个重要的原因是高支撑体系在水平荷载作用下抗侧向变形能力不足,但现行计算方法对扣件式钢管模板高支撑体系设计只提出构造上的要求,未列入设计计算要求。
2.
With the highly development of the city construction , high formwork support system has been more and more extensively applied to the cast-in-piace concrete structure.
随着城乡建设的高度发展,模板高支撑体系在现浇混凝土结构施工中的应用越来越广泛,而扣件式钢管模板高支撑体系是我国目前使用量最大、应用最普遍的一种模板支撑形式。
3)  high-strut formwork system
高支撑模板体系
4)  mould plate and support system
模板及支撑体系
1.
The optimization design methods for mould plate and support system of reinforced concrete wall were introduced by contrasting two schemes for a project.
通过对一个工程两种施工方案的对比,阐述了模板及支撑体系的优化准则与优化方法,指出了只要进行科学的设计与管理,要达到既保证施工安全又降低施工成本的目标是完全可以实现的。
5)  High template support system
高大模板支撑体系
6)  multi-storey formwork supports system
多层模板支撑体系
1.
Safety control of high rise building multi-storey formwork supports system
高层建筑多层模板支撑体系安全性控制方法
2.
With the development of the construction technology, multi-storey formwork supports system has been applied more widely in the high rise construction, and the construction period has accelerated to one story per 7 to 5 days or more quick.
随着建筑工程技术的不断发展,工程进度不断加快,高层建筑施工中的多层模板支撑体系的应用越来越广泛,施工工期也达到7d一层、5d一层甚至更快。
3.
With the development of construction technology, multi-storey formwork supports system has been applied to make construction more efficient.
随着建筑工程技术的不断发展,工程进度不断加快,多层模板支撑体系的应用已经成为必然。
补充资料:多孔陶瓷支撑体膜
分子式:
CAS号:

性质:在多孔陶瓷体上附着的微孔陶瓷膜层。膜层厚度一般在几微米到几十微米,外径孔径一般为0.1~0.5μm,个别也有厚度达3~5μm、孔径10μm的。多采用氧化铝、二氧化钛和二氧化锆等作膜材料。制法是:用电机带动陶瓷支撑体旋转,当溶胶液(膜材料)滴落在支撑体上,就会迅速地敷覆到支撑体表面,待溶剂蒸发、凝胶化和干燥成膜后,经热处理而制成氧化物薄膜。现已为食品(含饮料)、医药、生物技术和环境保护等领域开发利用。

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