CN205893830U - Low solid formula support rail girder construction of circuit of putting of well low -speed maglev traffic engineering - Google Patents
Low solid formula support rail girder construction of circuit of putting of well low -speed maglev traffic engineering Download PDFInfo
- Publication number
- CN205893830U CN205893830U CN201620799589.0U CN201620799589U CN205893830U CN 205893830 U CN205893830 U CN 205893830U CN 201620799589 U CN201620799589 U CN 201620799589U CN 205893830 U CN205893830 U CN 205893830U
- Authority
- CN
- China
- Prior art keywords
- armored concrete
- solid beam
- concrete solid
- reinforced concrete
- support rail
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Landscapes
- Railway Tracks (AREA)
Abstract
The utility model belongs to support rail roof beam field to a low solid formula support rail girder construction of circuit of putting of well low -speed maglev traffic engineering is disclosed, including reinforced concrete bottom plate, reinforced concrete solid beam, multirow sleeper pedestal, the section of track and water conservancy diversion rail support, the reinforced concrete solid beam integrated into one piece be in reinforced concrete bottom plate is last, and reinforced concrete solid beam direction merogenesis in way along the line is arranged, establishes the expansion joint between the adjacent reinforced concrete solid beam, the top of reinforced concrete solid beam sets up a plurality ofly the sleeper pedestal, the reinforced concrete solid beam left and right sides still evenly is provided with the roof beam upper groove respectively, the left and right sides of reinforced concrete solid beam still sets up a plurality ofly respectively water conservancy diversion rail support. The utility model discloses rigidity is big, and anti deformability is strong, can adopt cast -in -place or prefabrication and lifting, and structural style and construction process are simple, construction precision easily controls.
Description
Technical field
This utility model belongs to support rail beam field, puts line more particularly, to a kind of middle low speed magnetic suspension traffic engineering is low
Road solid support rail girder construction.
Background technology
Middle low speed magnetic suspension track traffic belongs to a kind of novel traffic mode, and achievement in research both domestic and external is less, the whole world
The circuit opening operation is even more minority.The middle low speed magnetic suspension railway business that only in March, 2005 Japan's construction at present is opened is transported
The middle low speed magnetic suspension railway business operating line that line-the East Hillside Line and in June, 2014 Korea S will open.And in China
Low speed magnetic suspension traffic only has National University of Defense technology's test wire, Green City Mountain test wire, Tangshan experiment line at present, there is no formal input
The circuit of operation.
Middle low speed magnetcisuspension suspension traffic civil engineering partly mainly comprise bridge, low put circuit, station and rolling stock section, low put circuit
It is made up of roadbed under the section of track, support rail beam and support rail beam, the support rail beam of supporting track is arranged on the roadbed being made up of earth structure
On, the operation of middle low speed magnetic suspension train includes suspending, guiding, drive and braking is required for completing on support rail beam.Magnetic
Aerotrain is very high to line construction deformation requirements, because the deformation of structure very little may affect comfortableness by bus or even prestige
Side of body traffic safety, so the design of support rail beam is particularly significant.Existing bridge rail beam is to erect between two bridge piers, by freely-supported
Beam or Continuous beam design, for meeting deformation and stability requirement, its physical dimension is typically very greatly hence it is evident that cannot be directly used to low
Put on circuit.Existing bridge rail beam mostly is both sides and has the structures such as the box beam of complete web, u beam, I-beam, this several knot
The track girder of structure, is respectively provided with good stability, the advantages of rigidity is big.Low circuit support rail beam of putting makes case also referring to bridge rail beam
The structures such as beam, u beam, I-beam, are placed on the road bed of ground composition, then show outward appearance heavy also unsightly.
Existing buttress type support rail beam, sleeper pedestal is arranged on buttress top, bears track structure transmission by buttress
Load, by longitudinal and transverse binder the stablizing come enhancing structure at its top.But there is also problems with:
(1) it is the ability with resistance to deformation for the rigidity increasing buttress, a socle is often provided with longitudinal and transverse binder, for saving work
Cheng Liang, less than the sectional dimension of buttress more than the sectional dimension of these longitudinal and transverse binders, it is difficult to make integral mold plate in construction,
Pier and longitudinal and transverse binder carry out one-piece casting, buttress of need to first constructing, more longitudinal and transverse binder of constructing, and working procedure is many.
(2) press the buttress type support rail beam of beam on elastic foundation design, top buttress is arranged on the armored concrete under it mostly
On base plate, its integral rigidity is little, in lifting, transportation, the yielding cracking of structure, and should not be applied using prefabrication mode
Work, can only be confined to field cast-in-place construction.
(3) Maglev Project track structure be located at support rail beam on, track structure can carry out small range be adapted to magnetic float
The requirement of train, but its adjustment degree is with grade precision controlling, so requiring and track requirement for meeting line position, support rail beam
Construction must controllable precise.But buttress type support rail beam is very many due to primary structural component, it is using cast-in-place form of construction work simultaneously, its
Construction precision is difficult to control, the driving safety of this construction quality directly influencing track and train.
(4) upper track version is limited to the structure of buttress type support rail beam, section of track arrangement can not arbitrarily put it is necessary to
Accurately arranged according to the position of buttress, structure transverse width.This increases difficulty for construction, especially in 3 in Curve Segment enforcement difficulty
Bigger.
(5) upper track version does not consider the temperature impact that field colds and heat succeed each other under the conditions of environment etc., easily deforms
With crack, there is potential safety hazard.
Utility model content
Disadvantages described above for prior art or Improvement requirement, this utility model provides a kind of middle low speed magnetic suspension traffic
Engineering is low to put circuit solid support rail girder construction, and support rail girder construction rigidity is big, and non-deformability is strong, can be using cast-in-place or prefabricated hang
Dress, version and working procedure are simple, construction precision is easily controllable.
For achieving the above object, according to this utility model, there is provided a kind of middle low speed magnetic suspension traffic engineering is low to put circuit
Solid formula support rail girder construction is it is characterised in that include reinforced concrete floor, armored concrete solid beam, sleeper pedestal, the section of track
With water conservancy diversion rail bearing, wherein,
Described armored concrete solid beam is integrally formed on described reinforced concrete floor, and described armored concrete
Solid beam is arranged along line direction merogenesis, is provided with expansion joint between adjacent armored concrete solid beam;
The top of described armored concrete solid beam arranges multiple rows of described sleeper pedestal, and often row's sleeper pedestal along described
Being longitudinally arranged of armored concrete solid beam, described armored concrete solid beam passes through these described sleeper pedestals and connects described rail
Row;
The left and right sides of described armored concrete solid beam is respectively arranged with beam upper groove, for changing armored concrete
Solid beam temperature field, reduce armored concrete solid beam in pouring forming process and field colds and heat succeed each other the temperature producing under environment
Degree stress, and the beam upper groove in the left side of described armored concrete solid beam and the beam upper groove on the right side of it symmetrical set
Put, additionally, beam upper groove being longitudinally arranged along described armored concrete solid beam of the every side of described armored concrete solid beam;
The left and right sides of described armored concrete solid beam also has multiple water conservancy diversion rail bearings respectively and these water conservancy diversion rails prop up
Seat is symmetrical set.
Preferably, also include being arranged on the transponder on the top of described armored concrete solid beam, described transponder is located at
Between described armored concrete solid beam and the described section of track.
Preferably, described armored concrete solid beam is in integrally rectangular shape.
Preferably, described sleeper pedestal is in integrally rectangular shape.
Preferably, align one by one in the expansion joint of described armored concrete solid beam and the expansion joint of the described section of track.
Preferably, the distance at adjacent two expansion joints in described armored concrete solid beam is two neighboring rail in the section of track
The integral multiple of pillow distance.
Preferably, described reinforced concrete floor, armored concrete solid beam collectively form monolithic reinforced-concrete knot
Structure.
In general, by the contemplated above technical scheme of this utility model compared with prior art, can obtain down
Row beneficial effect:
(1) reinforced concrete floor of the present utility model and armored concrete solid beam be all using Reinforced Concrete Materials,
Both are integrally formed, and the integral reinforced concrete rigidity of structure of formation is big, and resistance capacity to deformation is strong, disclosure satisfy that Maglev Project
Structural stability, intensity, the requirement of deformation.
(2) this utility model is evenly arranged beam upper groove along the longitudinal direction of armored concrete solid beam, can change support rail beam
Thermo parameters method, can reduce mass concrete component in pouring forming process and field colds and heat succeed each other and produces under the conditions of environment etc.
Raw temperature stress, thus reducing component surface and the internal deformation occurring and crack, is conducive to improving the durable of support rail beam
Property, the driving safety of the smooth-going and train that meet track requires.
(3) longitudinally adopt armored concrete solid beam along it on reinforced concrete floor, can be pre- using integral mold plate factory
System, also can field cast-in-place construction, it is to avoid the loaded down with trivial details shortcoming of conventional support rail beam construction.
(4) sleeper pedestal is arranged in the solid top surface of the beam of armored concrete, unlike buttress type structure is tight to buttress position limitation
Lattice, positioning control accuracy are high, reduce sleeper pedestal positioning difficulty, and Construction control is more convenient.
(5) adopt the armored concrete solid beam of rectangular shape, version and working procedure simple, be relatively suitable for length
The arrangement of the sleeper pedestal of cube shape, can not be subject to sleeper pedestal size Control, also solve 3 in Curve Segment curved beam song simultaneously and do
When, sleeper pedestal Positioning Precision Control difficulty problem.
Brief description
Fig. 1 is front view of the present utility model;
Fig. 2 is side view of the present utility model.
Specific embodiment
In order that the purpose of this utility model, technical scheme and advantage become more apparent, below in conjunction with accompanying drawing and enforcement
Example, is further elaborated to this utility model.It should be appreciated that specific embodiment described herein is only in order to explain this
Utility model, is not used to limit this utility model.Additionally, it is involved in each embodiment of this utility model disclosed below
As long as and to technical characteristic each other do not constitute conflict just can be mutually combined.
With reference to Fig. 1, Fig. 2, a kind of middle low speed magnetic suspension traffic engineering is low to put circuit solid formula support rail girder construction, and its feature exists
In, including reinforced concrete floor 1, armored concrete solid beam 2, sleeper pedestal 5, the section of track 7 and water conservancy diversion rail bearing 4, wherein,
Described armored concrete solid beam 2 is integrally formed on described reinforced concrete floor 1, and described reinforced concrete
Native solid beam 2 is arranged along line direction merogenesis, is provided with expansion joint between adjacent armored concrete solid beam 2;
The top of described armored concrete solid beam 2 arranges multiple rows of described sleeper pedestal 5, and often arranges sleeper pedestal 5 edge
Being longitudinally arranged of described armored concrete solid beam 2, described armored concrete solid beam 2 passes through these described sleeper pedestals 5 even
Connect the described section of track 7;
The left and right sides of described armored concrete solid beam 2 is respectively arranged with beam upper groove 3, for changing reinforced concrete
Native solid beam 2 temperature field, reduce armored concrete solid beam 2 in pouring forming process and field colds and heat succeed each other and produces under environment
Temperature stress, and the beam upper groove 3 in the left side of described armored concrete solid beam 2 and the beam upper groove 3 about on the right side of it
It is symmetrical arranged, additionally, the beam upper groove 3 of the every side of described armored concrete solid beam 2 is vertical along described armored concrete solid beam 2
To arrangement;
The left and right sides of described armored concrete solid beam 2 also has multiple water conservancy diversion rail bearings 4 and these water conservancy diversion rails respectively
Bearing 4 is symmetrical set.
Further, also include being arranged on the transponder 6 on the top of described armored concrete solid beam 2, described transponder 6
Between described armored concrete solid beam 2 and the described section of track 7, described armored concrete solid beam 2 is overall to be in rectangular shape,
Described sleeper pedestal 5 is overall to be in rectangular shape, the expansion joint of described armored concrete solid beam 2 and the described section of track 7 flexible
Seam aligns one by one, and in described armored concrete solid beam 2, the distance at two adjacent expansion joints is two neighboring sleeper in the section of track 7
The integral multiple of distance, described reinforced concrete floor 2, armored concrete solid beam 2 collectively form monolithic reinforced-concrete knot
Structure.
After the upper loads such as train, track reach reinforced concrete floor 1 by armored concrete solid beam 2, then reach
Roadbed under beam, due to the integral reinforced concrete rigidity of structure of reinforced concrete floor 1 and armored concrete solid beam 2 formation
Greatly, resistance capacity to deformation is strong, can meet magnetic suspension traffic engineering structure stability, intensity, rigidity, deformation and vehicle operation comfortable
The requirement of property is it is ensured that the driving safety of construction quality and train.
This structure is longitudinally armored concrete solid beam 2, and beam upper groove 3 is evenly distributed in solid girder construction along longitudinal,
Can change the thermo parameters method of support rail beam, reduce mass concrete component in pouring forming process and field colds and heat succeed each other ring
The temperature stress producing under the conditions of border etc., thus reducing component surface and the internal deformation occurring and crack, is conducive to improving
The durability of support rail beam, the driving safety of the smooth-going and train that meet track requires;Beam upper groove 3 groove body is along longitudinal length and horizontal stroke
According to structure and requirement adjustment can be calculated to depth.
Using armored concrete solid beam 2 compared to buttress type structure, the arrangement of sleeper pedestal 5 is more convenient, Construction control
More convenient, easily meet and limit requirement strict, that positioning control accuracy is high, meanwhile, this structure can adopt integral mold plate field cast-in-place
Or place is prefabricated, working procedure is simple, construction precision is easily controllable.
This utility model main part is made up of armored concrete, and main part includes reinforced concrete floor 1, reinforcing bar mixes
The longitudinal beam upper groove 3 being evenly distributed on solid girder construction both sides of solidifying soil solid beam 2 and edge forms, and can adopt cast-in-place or factory
The technique of lifting after prefabricated;During using cast in place process, its specific implementation step is:
1) reinforcing bar, the reinforcing bar of armored concrete solid beam 2 of design requirement colligation good support rail beam steel concrete floor 1 are pressed
And the reinforcing bar that armored concrete solid beam 2 is connected with sleeper pedestal 5, and make template, described template bag by design size requirement
Include the first template and the second template;
2) reinforcing bar, the steel of armored concrete solid beam 2 of built-in fitting and support rail beam steel concrete floor 1 are carried out before pouring
The positioning of muscle and installation, then recycle the first template to pour concrete and the reinforced concrete of support rail beam steel concrete floor 1
The concrete of native solid beam 2, by design requirement maintenance, wherein, described built-in fitting includes water conservancy diversion rail bearing 4 and transponder 6;
3) concrete of the concrete and reinforced concrete solid beam 2 of support rail beam steel concrete floor 1 reaches design by force
The first template is removed, then the reinforcing bar of colligation sleeper pedestal 5 carry out secondary pouring sleeper pedestal 5 using the second template again after degree
Concrete;
4) concrete curing of sleeper pedestal 55, to reaching after design strength, removes the second template;
5) water conservancy diversion rail bearing 4, transponder 6 and the section of track are installed, after installing, define middle low speed magnetic suspension traffic work
Journey is low to put circuit solid formula support rail girder construction.
Preferably, step 1) in increase the embedded of lifting reinforcing bar, complete above-mentioned steps 4) when lifting reinforcing bar is lifted to setting
Meter position, then carry out step 5) construction.
As it will be easily appreciated by one skilled in the art that the foregoing is only preferred embodiment of the present utility model, not
In order to limit this utility model, all any modifications made within spirit of the present utility model and principle, equivalent and change
Enter, should be included within protection domain of the present utility model.
Claims (7)
1. a kind of middle low speed magnetic suspension traffic engineering is low puts circuit solid formula support rail girder construction it is characterised in that inclusion reinforcing bar mixes
Solidifying soil base plate (1), armored concrete solid beam (2), sleeper pedestal (5), the section of track (7) and water conservancy diversion rail bearing (4), wherein,
Described armored concrete solid beam (2) is integrally formed on described reinforced concrete floor (1), and described reinforced concrete
Native solid beam (2) is arranged along line direction merogenesis, is provided with expansion joint between adjacent armored concrete solid beam (2);
The top of described armored concrete solid beam (2) arranges multiple rows of described sleeper pedestal (5), and often row's sleeper pedestal (5)
Along being longitudinally arranged of described armored concrete solid beam (2), described armored concrete solid beam (2) passes through these described sleeper platforms
Seat (5) connects the described section of track (7);
The left and right sides of described armored concrete solid beam (2) is respectively arranged with beam upper groove (3), for changing reinforced concrete
Native solid beam (2) temperature field, reducing armored concrete solid beam, (2) in pouring forming process and field colds and heat succeed each other under environment
The temperature stress producing, and the beam upper groove (3) in the left side of described armored concrete solid beam (2) and the beam fovea superior on the right side of it
Groove (3) is symmetrical set, additionally, the beam upper groove (3) of the every side of described armored concrete solid beam (2) is along described reinforced concrete
Being longitudinally arranged of native solid beam (2);
The left and right sides of described armored concrete solid beam (2) also has multiple water conservancy diversion rail bearing (4) and these water conservancy diversion rails respectively
Bearing (4) is symmetrical set.
2. a kind of middle low speed magnetic suspension traffic engineering according to claim 1 is low puts circuit solid formula support rail girder construction, its
It is characterised by, also include being arranged on the transponder (6) on the top of described armored concrete solid beam (2), described transponder (6) position
Between described armored concrete solid beam (2) and the described section of track (7).
3. a kind of middle low speed magnetic suspension traffic engineering according to claim 1 is low puts circuit solid formula support rail girder construction, its
It is characterised by, described armored concrete solid beam (2) is in integrally rectangular shape.
4. a kind of middle low speed magnetic suspension traffic engineering according to claim 1 is low puts circuit solid formula support rail girder construction, its
It is characterised by, described sleeper pedestal (5) is in integrally rectangular shape.
5. a kind of middle low speed magnetic suspension traffic engineering according to claim 1 is low puts circuit solid formula support rail girder construction, its
It is characterised by, align one by one in the expansion joint of described armored concrete solid beam (2) and the expansion joint of the described section of track (7).
6. a kind of middle low speed magnetic suspension traffic engineering according to claim 5 is low puts circuit solid formula support rail girder construction, its
It is characterised by, in described armored concrete solid beam (2), the distance at two adjacent expansion joints is two neighboring rail in the section of track (7)
The integral multiple of pillow distance.
7. a kind of middle low speed magnetic suspension traffic engineering according to claim 1 is low puts circuit solid formula support rail girder construction, its
It is characterised by, described reinforced concrete floor (1), armored concrete solid beam (2) collectively form monolithic reinforced-concrete knot
Structure.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620799589.0U CN205893830U (en) | 2016-07-27 | 2016-07-27 | Low solid formula support rail girder construction of circuit of putting of well low -speed maglev traffic engineering |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620799589.0U CN205893830U (en) | 2016-07-27 | 2016-07-27 | Low solid formula support rail girder construction of circuit of putting of well low -speed maglev traffic engineering |
Publications (1)
Publication Number | Publication Date |
---|---|
CN205893830U true CN205893830U (en) | 2017-01-18 |
Family
ID=57785382
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201620799589.0U Active CN205893830U (en) | 2016-07-27 | 2016-07-27 | Low solid formula support rail girder construction of circuit of putting of well low -speed maglev traffic engineering |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN205893830U (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106049201A (en) * | 2016-07-27 | 2016-10-26 | 中铁第四勘察设计院集团有限公司 | Medium and low speed maglev traffic engineering low line solid bearing-trail beam structure and construction method thereof |
CN109056432A (en) * | 2018-10-12 | 2018-12-21 | 中铁二院工程集团有限责任公司 | A kind of adjustable track beam structure of rigidity and magnetic-levitation test wire |
-
2016
- 2016-07-27 CN CN201620799589.0U patent/CN205893830U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106049201A (en) * | 2016-07-27 | 2016-10-26 | 中铁第四勘察设计院集团有限公司 | Medium and low speed maglev traffic engineering low line solid bearing-trail beam structure and construction method thereof |
CN109056432A (en) * | 2018-10-12 | 2018-12-21 | 中铁二院工程集团有限责任公司 | A kind of adjustable track beam structure of rigidity and magnetic-levitation test wire |
CN109056432B (en) * | 2018-10-12 | 2023-09-22 | 中铁二院工程集团有限责任公司 | Rigidity-adjustable track beam structure and magnetic levitation track test line |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN106049201A (en) | Medium and low speed maglev traffic engineering low line solid bearing-trail beam structure and construction method thereof | |
CN105887586A (en) | Low implantation line double-wire section terminal spine type bearing rail beam limiting structure in medium and low speed magnetic levitation transportation engineering | |
CN105951537A (en) | Rib column distributed turnout foundation structure of middle-low speed magnetic levitation low-arranged line | |
CN104480810A (en) | Medium-and-low speed magnetic levitation railway low route continuous framework type bearing rail beam structure and construction method | |
CN204325821U (en) | Middle low speed magnetic suspension is low puts circuit continuous frame formula support rail girder construction | |
CN207793771U (en) | Middle low speed magnetic suspension traffic engineering is low to set circuit support rail beam | |
CN205893830U (en) | Low solid formula support rail girder construction of circuit of putting of well low -speed maglev traffic engineering | |
CN206219897U (en) | Medium-and low-speed maglev two-wire excavation location pile foundation combined type support rail beam transition section structure | |
CN206157496U (en) | Moderate -low speed magnetic levitation traffic engineering single line location pile foundation combined type support rail girder construction of filling | |
CN105442457A (en) | Construction structure and method for extending bridge floor plate bridge filled with fine sand | |
CN205603974U (en) | Low circuit single line location support rail girder segment limit structure within a definite time that puts of well low -speed maglev traffic engineering | |
CN106400615B (en) | Medium-and low-speed maglev single line excavation location independence pier stud type support rail beam transition section structure | |
CN206127736U (en) | Moderate -low speed magnetic levitation double -line compound framing formula support rail roof beam transition section structure of location pile foundation that fills | |
CN206157485U (en) | Moderate -low speed magnetic levitation single line excavation location pile foundation combined type support rail roof beam transition section structure | |
CN106283952B (en) | Medium-and low-speed maglev two-wire excavation location pile foundation joist framing type support rail girder construction | |
CN206157495U (en) | Moderate -low speed magnetic levitation double -line compound framing type support rail girder construction of location pile foundation of filling | |
CN205617160U (en) | Low distributed switch foundation structure of circuit rib post that puts of moderate -low speed magnetic levitation | |
CN205348002U (en) | Adopt extension bridge floor slab bridge construction structures of fine sand packing | |
CN210507007U (en) | Roadbed structure suitable for unilateral heavy-load transportation | |
CN206127741U (en) | Moderate -low speed magnetic levitation single line excavation location detached pier column type support rail roof beam transition section structure | |
CN206127759U (en) | Moderate -low speed magnetic levitation double -line location detached pier column type support rail roof beam transition section structure that fills | |
CN206127757U (en) | Moderate -low speed magnetic levitation single line location detached pier column type support rail roof beam transition section structure that fills | |
CN206157480U (en) | Moderate -low speed magnetic levitation traffic engineering double -line excavation location pile foundation combined type support rail girder construction | |
CN106283938A (en) | Medium-and low-speed maglev two-wire excavation location pile foundation is combined framing type support rail girder construction | |
CN205617164U (en) | Low circuit single line location end thorn formula support rail girder segment limit structure within a definite time that puts of well low -speed maglev traffic engineering |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant |