说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 词典 -> 悬臂模板系统
1)  cantilever formwork system
悬臂模板系统
1.
With reference to the construction of the pier shafts of Caiyuanba Changjiang River Bridge in Chongqing, the structural types and features of the cantilever formwork system with wood I-beams are presented.
结合重庆菜园坝长江大桥墩柱施工,介绍工字木梁悬臂模板系统的结构形式与特点。
2)  cantilever formwork
悬臂模板
1.
Through construction practice of special-shaped main tower,construction technology of cantilever formwork and its application of control measures are discussed.
通过对异型截面主塔的施工实践,着重阐述悬臂模板对异型截面主塔施工的适用性及其施工工艺和控制措施。
3)  vibration of cantilever system
悬臂系统
1.
The vibration of cantilever system including elastic cantilever beam at-tached to mass is researched in this paper.
本文研究悬臂系统,包拓悬臂弹性梁及其附带的质块的振动特性。
4)  tilting cantilever climb form system
倾斜式悬臂爬模系统
1.
The construction method characteristics and applied scope of tilting cantilever climb form system were illustrated,and its process mechanism,process points and quality control measures were detail discussed.
阐述了倾斜式悬臂爬模系统的工法特点和适用范围,详细地论述了该工艺的工艺原理、工艺要点及质量控制措施,实践证明,该墩通过采用DP-180型倾斜式悬臂爬模工艺,圆满完成了墩身施工,实现了良好的经济和社会效益。
5)  cantilever formworks
大面悬臂模板
1.
During the construction of the intake tower project of the diversion system of Dongba hydro-power works in Guangxi,China,large-face cantilever formworks construction technology is adopted,which results in good engineering efficiency in respect of high construction speed,low construction investment and good appearance quality of the structure.
在广西洞巴水电站引水系统进水塔工程施工中,采用了大面悬臂模板施工技术,施工速度快,工程投入较低,结构物外观质量良好,取得了较好的工程效益。
6)  large form with light cantilever
轻型悬臂大模板
1.
This article introduces the application situation of large form with light cantilever in gravity dam,ship lock.
轻型悬臂大模板具有结构简单、重量轻、形式多样、拆装方便、工人劳动强度小、工作效率高及少占用大型起重机械设备等优点,是闸坝工程快速施工技术之一,适合在建设工期短、工程量大的闸坝工程施工中推广应用。
补充资料:悬臂梁冲击强度
分子式: 
CAS号:

性质:用悬臂梁形式测定的受试材料冲击强度。试验时将规定尺寸的试样一端夹在试样夹具上,然后释放一个摆锤对试样施加冲击负荷使试样破断。记录其吸收的能量而算得结果。试样可以有缺口,也可以无缺口。其结果分别称悬臂梁缺口冲击强度或悬臂梁无缺口冲击强度。试验中的有关条件都在标准试验方法中有明确规定,单位为kJ/m2。由于该试验方法中被打断的试样飞出带走的一部分能量(称飞出功)无法精确计算,因此不能获得材料破断的确切能量数据,但由于操作简便,故仍被广泛使用。特别是对用简支梁冲击得不到结果的材料,可使用悬臂梁冲击方法。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条