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1)  channel girder bridge
槽形梁桥
1.
This paper has analyzed the disease harms of channel girder bridge and Zhangjiang bridge pavement deck, and introduced adopting two layer loading shear tendon measure etc, to reinforce and repair.
对章江大桥暨槽形梁桥的桥面系病害进行了分析,并详细介绍了采用双层加剪力筋等加固维修的措施,可供类似桥面维修加固时参考。
2)  channel girder
槽形梁
1.
The railway bridges at the basement waiting rooms of Qingdao Passenger Station include totally five independent and parallel double-track bridges that were designed as the simply-supported box channel girder structures with each of the bridges composed of a span of pre-stressed concrete girder 39.
青岛客站地下候车室铁路桥由5座独立、平行的双线铁路桥组成,采用简支箱式槽形梁结构,每座桥均由梁长39。
2.
To simultaneously cater for the requirements that the bridge can span the National Road in one span,the elevation of the railway station and tunnel will not be raised,the bridge is adopted with a single-track prestressed concrete(PC) continuous channel girder structure with span arrangement(40+.
由于受附近车站和隧道的高程控制,铜九铁路在以小角度跨越318国道时,不得不采用建筑高度低的大跨结构桥梁,为了同时满足一跨跨越318国道和不抬升隧道、车站的高程的要求,采用了建筑高度低、刚度大的(40+64+40)m单线预应力混凝土连续槽形梁结构,介绍该结构的设计情况。
3.
On the basis of the working drawing design of the channel girders for Line No.
结合上海市轨道交通6号线槽形梁施工图设计,着重介绍槽形梁设计、研究以及一些个人体会。
3)  trough girder
槽形梁
1.
In the present paper,a calculation of the internal forces of the simple supporting trough girder in some light track viaduct has with traditional theory been made by hand at first.
同时,还采用Midas Civil桥梁专用设计软件对槽形梁进行了电算,在对计算结果进行比较的基础上,对传统设计理论的可靠性进行了剖析和评价,并对实际的工程设计提出合理化的建议。
2.
The ballast deck of Minjiang River Bridge is achieved by the use of the trough girder supporting on the steel cross beam.
闽江桥通过支承在钢横梁上的槽形梁实现道碴桥面,槽形梁纵向设计成两跨一联,横向为两侧带翼板的“ш”形截面。
3.
A space grillage model for trough girder based on basic principles of grillage method is put forward.
采用基于梁格法的基本原理提出槽形梁的空间梁格模型,总结了梁格单元划分和截面特性计算的一般方法,并介绍了空间梁格模型横梁刚度的试算方法以确定出合理的横梁刚度值,最后通过工程实例验证了模型的有效性。
4)  channel beam
槽形梁
1.
Application of inherent stress concrete channel beam and its research;
预应力混凝土槽形梁应用及研究综述
2.
Combined with practical engineering,this paper analyzes channel beam with hand and computer calculation method,carries out contrast analysis between the two computing results,summarizes the advantages and disadvantages of the two methods,and proposes improved scheme for hand calculation method,which to offer a reference for the design and calculation of channel beam bridge in the future.
结合工程实例,对槽形梁用手算和电算两种方法进行了分析,并对两种计算结果进行了比较分析,总结了两种方法的优缺点,提出了手算需改进的方案,为今后槽形梁桥的设计计算提供了参考依据。
3.
In the light of a (40+64+40)m railway continuous channel beam in some line, this arti-cle introduces the analysis, calculation pr.
槽形梁是一种粱、板组合形式的预应力结构,具有建筑高度低、节省路基土石方工程投资、养护简便及减少噪声等特点,在解决立交跨线处净空受控制的工程中。
5)  U-shaped girder
槽形梁
1.
U-shaped girder has not yet been used in practice in urban rail traffic engineering in our country.
槽形梁在我国城市轨道交通领域尚无实际的应用,在上海市轨道交通6号线中的应用属于首次。
6)  tub-girder
槽形钢梁
1.
The Angola Cunene river bridge is an eighteen-span one-coupling continuous composite bridge composed of tub-girder and concrete deck slab.
安格拉库内内河桥为槽形钢梁与混凝土桥面板结合的多跨连续组合梁桥。
补充资料:CH系列槽形混和机

 

【主要用途】
  适用于制药、化工、食品等行业,均匀混合粉状或糊状物料。 
【工作原理】
  通过机械传动,使S式搅拌浆叶旋转,推动物料往复翻动,均匀混合。
【技术参数】 

型 号

CH-50

CH-100

CH-150
CH-200
CH-300

工作容积(L)

50

100

150
200
300
搅拌转速(rpm)
24

24

24
24
24
搅拌电机(kw)
1.5

2.2

3
4
5.5

倒料电机(kw)

0.55
0.55
0.75

外形尺寸
(长×宽×高)(mm)

1200×500×950

1400×580×1000

2000×630×1150
2300×750×1350
2700×850×1500

重量 (kg)

320

350

410
450
520
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