CN116219878A - Large-span basket arch bridge suspender installation construction method - Google Patents

Large-span basket arch bridge suspender installation construction method Download PDF

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Publication number
CN116219878A
CN116219878A CN202211666035.XA CN202211666035A CN116219878A CN 116219878 A CN116219878 A CN 116219878A CN 202211666035 A CN202211666035 A CN 202211666035A CN 116219878 A CN116219878 A CN 116219878A
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China
Prior art keywords
suspender
tensioning
installing
arch
anchor
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李健
刘绍云
申旭明
林锐
赵鹏
吴京隆
王宽
李栋
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China Railway No 10 Engineering Group Co Ltd
Third Engineering Co Ltd of China Railway No 10 Engineering Group Co Ltd
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China Railway No 10 Engineering Group Co Ltd
Third Engineering Co Ltd of China Railway No 10 Engineering Group Co Ltd
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Priority to CN202211666035.XA priority Critical patent/CN116219878A/en
Publication of CN116219878A publication Critical patent/CN116219878A/en
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    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01DCONSTRUCTION OF BRIDGES, ELEVATED ROADWAYS OR VIADUCTS; ASSEMBLY OF BRIDGES
    • E01D21/00Methods or apparatus specially adapted for erecting or assembling bridges
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01DCONSTRUCTION OF BRIDGES, ELEVATED ROADWAYS OR VIADUCTS; ASSEMBLY OF BRIDGES
    • E01D4/00Arch-type bridges

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  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Bridges Or Land Bridges (AREA)

Abstract

The invention relates to the field of bridge suspender construction, in particular to a method for installing and constructing a large-span basket arch bridge suspender, which comprises the following steps: step S1, preparing work before construction is carried out; step S2, installing a suspender, which mainly comprises the following steps: s21, lifting the suspender to the corresponding position of the arch rib; s22, enabling a hoisting rod to pass through a tower end embedded pipe through a preset hole at the arch rib by a winch, and installing a tower end nut; s23, installing a pin shaft at the lower end of the suspender; s3, installing arch end tensioning equipment, debugging and checking, then symmetrically tensioning in batches according to requirements, and tightening a fixed nut after tensioning to a design cable force; and S4, repeating the step S3 until the tensioning of all the suspenders is completed. The hoisting machine is used for hoisting the boom, so that the hoisting machine is more convenient to install and set; meanwhile, by adopting a hoisting mode of a hoisting machine, the cost is reduced better, and the economy is saved.

Description

Large-span basket arch bridge suspender installation construction method
Technical Field
The invention relates to the field of bridge suspender construction, in particular to a method for installing and constructing a large-span basket arch bridge suspender.
Background
An arch bridge refers to a bridge that has an arch as the primary load bearing member of the structure in a vertical plane. The vertical load is transmitted to the arch abutment through the arch, and is not used for landscape architecture at the earliest time, but meets the purposes of flood discharge and navigation under the bridge in engineering. In the process of formation and development, the bridge body is curved, so that the bridge is often called a curved bridge. Modern arch bridge mainly includes arch rib and bridge floor, is connected with the jib and lifts up the bridge floor between arch rib and bridge floor, in the construction of arch bridge, the installation of jib is realized to direct loop wheel machine generally, and its in-process of installation adopts the loop wheel machine to hoist up usually, and its common practice is that lift up the jib through a loop wheel machine, then constructor takes hanging flower basket on another loop wheel machine to remove to vault department and go on dark yellow to the jib of lifting up, because need to adopt two loop wheel machines to carry out the construction simultaneously when carrying out the hoist of jib, has the shortcoming that occupation volume is great, hoist inconvenience exists.
Disclosure of Invention
The invention provides a large-span basket arch bridge suspender installation construction method which can overcome certain or certain defects in the prior art.
A large-span basket arch bridge suspender installation construction method comprises the following steps:
step S1, performing preparation work before construction, wherein the preparation work comprises checking the angle of the embedded pipe and the spacing between the earplates, and producing matched suspenders according to the specification of an arch bridge;
step S2, installing a suspender, which mainly comprises the following steps:
s21, lifting the suspender to the corresponding position of the arch rib;
s22, enabling a hoisting rod to pass through a tower end embedded pipe through a preset hole at the arch rib by a winch, and installing a tower end nut;
s23, installing a pin shaft at the lower end of the suspender;
s3, installing arch end tensioning equipment, debugging and checking, then symmetrically tensioning in batches according to requirements, and tightening a fixed nut after tensioning to a design cable force;
s4, repeating the step S3 until tensioning of all the suspenders is completed;
and S5, carrying out protection treatment on the anchor according to design requirements.
According to the invention, the hoisting rod is hoisted by the hoisting machine, compared with a hoisting mode by a crane, the hoisting machine is more convenient to install and set, the hoisting machine can be more simply and conveniently fixed at the bridge deck, compared with the larger size of the crane, the space occupied by the bridge deck is smaller, the hoisting machine is more convenient to use, and the interference to construction at the bridge deck caused by overlarge size is avoided; thereby the constructor has made things convenient for the construction of bridge floor, simultaneously, through adopting the hoist mode of hoist engine, the cost of having still preferred reduction has practiced thrift economy.
Preferably, the step S21 specifically includes the steps of:
step Z1, arranging a hoist steel wire rope hoisting reaction point right above an arch end anchor pad plate by utilizing an anchor box;
step Z2, installing a winch at the bridge abutment position of two banks and temporarily fixing the winch;
step Z3, starting a winch, winding a steel wire rope around a temporary lifting point on an arch after the steel wire rope is released, putting the steel wire rope to an outlet of a cable duct at the arch end after passing through a cable duct right below, and additionally arranging 2 chain blocks beside the cable duct;
and Z4, finishing the installation of the sling lifting equipment.
According to the invention, through the arrangement of the positions and the number of the windlass, the hoisting performance of the windlass on the boom is enhanced, so that the stability of the windlass in hoisting the boom is improved better.
Preferably, the step S22 specifically includes the steps of:
step G1, putting down a connecting device of a winch traction hoisting system, firmly connecting with an anchor head at the upper end of a sling, and releasing a hoop on the sling;
g2, starting a winch, pulling an upper anchor head to the position of an embedded pipe of an anchor box under an arch, and adjusting the direction of the anchor head at the upper end of a sling by a worker on a construction platform and centering so as to pass through the embedded pipe to reach a transverse arch rib baffle;
and G3, continuously lifting, lifting the upper anchor head to a design position, screwing the upper end nut, and temporarily anchoring the upper anchor head of the sling.
According to the invention, through the construction process, the hoisting of the anchor head at the upper end of the sling can be better realized.
Preferably, in the step S3, a shoulder pole tensioning mode is adopted, two jacks and a pull rod are used for tensioning synchronously, the pull rod and the jacks are arranged in parallel with the axial center line of the suspender, the jacks press loose the adjusting and connecting device of the suspender through the upper shoulder pole beam and the lower shoulder pole beam in the loading process, and then tensioning and releasing of the suspender cable force are realized through screwing and screwing of the connecting sleeve of the suspender adjusting device.
According to the invention, the tension of the suspender can be conveniently realized by arranging the shoulder pole type tension mode.
Preferably, in the step S3, the suspender is tensioned twice, firstly, the cable body is pre-tensioned and formally tensioned when the cable is hung, and secondly, the full-bridge suspension rod inhaul cable is supplemented or released according to the linear and actually measured cable force after the secondary constant load loading is completed.
According to the invention, the tensioning degree of the boom can be better lifted by tensioning the boom twice, so that the lifting capacity of the boom to the bridge deck is better ensured.
Preferably, the stretching sequence in step S2 is stretched from the middle to both sides.
According to the invention, the tensioning sequence is set to tension from the middle to the two sides, so that the lifting effect of the suspender on the bridge deck is better improved, meanwhile, the interference during construction is avoided, and the construction efficiency of the arch bridge is improved.
Preferably, in the step S5, after the stretching is finished, the slow release paste is smeared on the inner surface of the anchor cup by 250-300um; the surface of the exposed steel parts at the end parts of the anchor cup, the anchor ring and the anchor backing plate is coated with the slow release paste of 250-300 mu m, then the slow release tape is wrapped, the overlapping rate is 50%, and finally the steel parts are coated with the external protective agent for 2 times.
According to the invention, through the anti-corrosion operation, the anchor can be effectively subjected to anti-corrosion treatment, so that the service life of the anchor can be prolonged better.
Drawings
Fig. 1 is a flowchart of a method of installing and constructing a large span basket arch bridge boom in example 1.
Fig. 2 is a schematic structural view of the sling cage of example 1.
Fig. 3 is a layout of a hoist in embodiment 1.
Fig. 4 is a layout of the truck suspension in example 1.
Fig. 5 is a layout of an automobile crane in example 1.
Fig. 6 is a schematic diagram of lifting of the sling in example 1.
Fig. 7 is a schematic diagram of the lifting sequence of the sling in example 1.
Fig. 8 is a structural diagram of the tensioning device in example 1.
In the figure: 1. a hoist; 2. an automobile crane; 110, hoisting the guide pulley; 120, hoisting the steel wire rope; 130, boom anchor cup; 140, arch end pads; 150, hoisting a reaction frame; 160, hoisting the connector; 170, arch end tensioning end nuts; 180, arch ribs; 190, boom.
Detailed Description
For a further understanding of the present invention, the present invention will be described in detail with reference to the drawings and examples. It is to be understood that the examples are illustrative of the present invention and are not intended to be limiting.
Example 1
As shown in fig. 1, the present embodiment provides a method for installing and constructing a large-span basket arch bridge boom, which includes the following steps:
step S1, performing preparation work before construction, wherein the preparation work comprises checking the angle of the embedded pipe and the spacing between the earplates, and producing matched suspenders according to the specification of an arch bridge;
step S2, installing a suspender, which mainly comprises the following steps:
s21, lifting the suspender to the corresponding position of the arch rib;
s22, enabling a hoisting rod to pass through a tower end embedded pipe through a preset hole at the arch rib by a winch, and installing a tower end nut;
s23, installing a pin shaft at the lower end of the suspender;
s3, installing arch end tensioning equipment, debugging and checking, then symmetrically tensioning in batches according to requirements, and tightening a fixed nut after tensioning to a design cable force;
s4, repeating the step S3 until tensioning of all the suspenders is completed;
and S5, carrying out protection treatment on the anchor according to design requirements.
In the embodiment, the hoisting rod is hoisted by adopting the hoisting machine, compared with a hoisting mode by a crane, the hoisting machine is more convenient to install and set, the hoisting machine can be more simply and conveniently fixed at the bridge deck, compared with the large volume of the crane, the space occupied by the bridge deck is smaller, the hoisting machine is more convenient to use, and the interference to the construction at the bridge deck caused by the overlarge volume is avoided; thereby the constructor has made things convenient for the construction of bridge floor, simultaneously, through adopting the hoist mode of hoist engine, the cost of having still preferred reduction has practiced thrift economy.
The specific operation steps are as follows:
(1) Determining the construction period of a main line:
construction preparation, boom installation, tensioning, cable adjustment, boom protection and construction ending.
(2) Other procedures are as follows: the construction platform, the lifting rod transport, the lifting rod installation, the tensioning and the tensioning equipment transport.
(3) The transverse connection is enhanced, the coordination work with each main bridge construction unit is well performed, and the construction land, the construction channel, the construction platform and the large-scale carrying equipment are reasonably used.
And rechecking the angle of the embedded pipe and the spacing of the lug plates by a steel structure team, and blanking to produce the suspender according to the actual length.
Arch end construction platform
A suspension cage suspension point and a safety rope are arranged on the vault, and fig. 2 is a schematic diagram of a sling suspension cage, and the under-arch construction building suspension cage required for construction is prepared to be in place. The main body is formed by taking 25 # angle steel with the length of 70 meters and the length of 6 70 centimeters as the bottom.
The main equipment arranged on the deck comprises: the device comprises an automobile crane (the layout of the automobile crane is shown in fig. 4 and 5), a winch, a hoist and a guiding system, a tensioning jack, an oil pump and an assembly.
In order to ensure convenient operation and accurate control of procedures such as hanging the boom on the arch and hanging the beam end, a winch with good condition is selected as a winch of important construction equipment, and a pulley is arranged on each winch. According to the weight of the rope body, the hoisting machine is installed and arranged in the safety guarantee coefficient by the boom.
The sling hoisting equipment comprises a winch, a steel wire rope, beam end guide points, arch end guide points and the like, two 3T winches are respectively arranged on bridge decks on two sides, the steel wire rope enters an arch from a reserved hole of a bridge deck arch rib, temporary hoisting points are arranged in the arch through the welding angle guide of each diaphragm, the steel wire rope penetrates through a cable guide pipe, a steel wire rope traction system is arranged, and the sling hoisting equipment is shown in combination with fig. 3:
z1, the hanging point is arranged in an arch end anchor box, a hoist steel wire rope hanging counter-force point is arranged right above an arch end anchor pad plate by utilizing the anchor box, a steel wire rope with the diameter of phi 15.6mm is adopted as the steel wire rope, and the load of 4 tons can be borne maximally by the crane;
the Z2 and 3T windlass is arranged at the bridge abutment position of two banks and is temporarily fixed so as to avoid accidents in the hoisting operation process;
z3, winding the steel wire rope, winding around the temporary lifting point on the arch, putting the steel wire rope to the outlet of the cable guide pipe at the arch end after passing through the cable guide pipe right below, and additionally arranging 2 chain blocks with 2 tons beside;
and Z4, finishing the installation of the hoisting equipment.
Through the steps, the hoisting performance of the hoisting machine on the boom is enhanced, so that the stability of the hoisting machine in hoisting the boom is improved.
According to the requirement of a design drawing on the cable force of a lifting rod, a YCW200 jack is selected as a jack, the requirement of 170 tons of the maximum cable force is met, tensioning control is carried out according to a symmetrical principle, a double-suspender structure is adopted, 4 points are symmetrically and synchronously tensioned, 8 jacks and 8 oil pumps and 8 sets of tensioning tools are adopted for matching combination, the oil pumps can be arranged on a bridge deck in the tensioning process, an oil pipe enters an arch rib through a temporary manhole and is connected with the jack, the arch rib is in tensioning communication with bridge deck operators through interphones, and the jack and the tensioning tools are mainly matched with a chain block through manpower when moving in the arch rib, so that the space of the jack and the tools is small in the arch rib, the potential safety hazard is large, and special attention is required.
The heaviest in the tensioning tool and equipment is a jack, when the jack moves from the arch foot to the vault, auxiliary traction is needed by using a chain block, and the auxiliary manual hole is hung at the manhole position of the arch rib partition plate by using the chain block; the equipment and the tooling can be put into the arch rib in advance when the arch rib is hung to be heavy, so that one-time carrying is reduced.
Main construction method of suspender
Treatment of cable ducts
The outer diameter of the anchor head of the suspender is smaller than the inner diameter of the cable sleeve, so that position deviation is very easy to occur during the installation of the suspender, thereby causing damage to the outer screw teeth of the anchor head and the PE protective sleeve of the suspender, and the arch rib end cable sleeve is comprehensively inspected before the installation of the suspender, so that welding slag, burrs and the like in the cable sleeve are flattened and polished.
Beam end ear plate treatment
And checking the position, angle and aperture of the beam end lug plate.
Suspension cable upper end anchor head hoist (suspension cable hoist schematic view is shown in figure 6)
G1, slowly putting down a connecting device of a winch traction hoisting system, firmly connecting with an anchor head at the upper end of a sling, and releasing a hoop on the sling;
g2, starting a winch, slowly pulling an upper anchor head to the position of an embedded pipe of an anchor box under an arch, and adjusting the direction of the anchor head at the upper end of a sling by a worker on a construction platform and centering so as to smoothly pass through the embedded pipe to reach a transverse arch rib plate;
and G3, continuing to lift, lifting the upper anchor head to a design position, screwing the upper end nut, and temporarily anchoring the upper anchor head of the sling.
G4, boom installation procedure, in which the boom is installed from the abutment to the midspan side (a suspension cable hoisting procedure is schematically shown in fig. 7).
Through the construction process in this embodiment, the hoisting of the anchor head at the upper end of the sling can be realized better.
The anchor head at the lower end of the sling is installed
(1) And arranging a winch and a pulley according to the position of the suspender.
(2) An auxiliary clamp is arranged at the tail end of the suspender, and a hoist is used for pulling the suspender fork lug to be close to the lug plate. The beam surface staff adjusts the fork lug position and angle through the cooperation of chain block, inserts the round pin axle when the position is suitable.
Boom tensioning arrangement
According to the requirement of a design drawing on the cable force of the lifting rod, a YCW100 lifting jack is selected as the lifting jack, the requirement of 170 tons of the maximum cable force is met, the lifting control is carried out according to a symmetrical principle, the lifting jack is of a double-lifting-rod structure, 4 points are symmetrically and synchronously tensioned, 16 lifting jacks, 8 oil pumps and 8 sets of tensioning tools are adopted for matching combination, the oil pumps can be arranged on a bridge deck in the tensioning process by using ZB4-500, the lifting jacks are the heaviest of the tensioning tools and equipment, and the lifting jacks are used or manually installed.
Tensioning system
In order to ensure that the stress of the suspenders meets the design requirement, the tension error of each suspender in construction is not more than +/-2%, each suspender after bridging is not more than +/-1%, the tensioning is strictly controlled according to the process, and the following items are required to be provided before construction:
1. the boom installation control tension force is provided to the installation construction unit in the form of a monitoring instruction by the monitoring unit;
2. under the action of the tension force of the boom installation control, the relative displacement (or deformation) of the boom anchoring point is calculated, namely the vertical displacement of the lower end anchoring point and the vertical displacement of the upper anchoring point in the vertical plane where the boom is positioned are temporarily given by a monitoring unit;
3. the relevant physical parameters of the corresponding section of the girder are generally determined according to design;
4. the boom cable body geometric and physical parameters are provided by the boom product supplier.
Tensioning process
Boom tensioning process description: according to the structure of the suspender, the adjusting device of the suspender is arranged between the lower end fork lug and the lower anchor head, so that a tension mode of the shoulder pole is needed, two jacks and a pull rod are used for synchronous tension, the pull rod and the jack are arranged in parallel with the axial center line of the suspender, the adjusting connecting device of the suspender is loosened by the upper shoulder pole beam and the lower shoulder pole beam (shown in a structural diagram 8) in the loading process of the jack, and then tension and tension of the suspender are realized by screwing and screwing the connecting sleeve of the suspender adjusting device, and the length of the suspender can be adjusted by rotating the adjusting sleeve while pulling.
The device comprises the following components:
lower shoulder pole beam: is temporarily connected and fixed with the lower fork ear of the suspender. Upper shoulder pole beam: is temporarily connected and fixed with the lower anchor head of the suspender. Temporary pull rod: and full threads, wherein two ends respectively penetrate through the lower shoulder pole beam and the upper shoulder pole beam and are temporarily fixed by nuts. And (3) a jack: and loading the load, and pulling the suspender downwards to the design position or loosening to the design position through the pull rod.
Tensioning procedure
And in the tensioning process, the synchronous tensioning is performed according to the tensioning sequence given by the monitoring unit, and the asynchronous tension difference value of the synchronous tensioning does not exceed the design specified value. The synchronization difference of the jacks is not more than the minimum cell of the oil meter reading, and the median error of the cable force is less than +/-2%.
1. The suspension rod is tensioned twice, firstly, the cable body is pre-tensioned and formally tensioned when the cable is hung, and finally, the full-bridge suspension rod inhaul cable is supplemented or released according to the linear and actually measured cable force after the secondary constant load loading is completed. In this embodiment, through carrying out tensioning twice to the jib, the tensioning degree of lifting jib that can be preferred to the better assurance jib has further promoted the stability of arched bridge to the lifting capacity of bridge floor.
2. After receiving the design tensioning instruction, converting the tension value on the instruction into an oil pressure reading value on each group of tensioning equipment according to a regression equation on a jack calibration book, giving the tensioning operation instruction to a responsible person of each group of tensioning equipment in a written form, and substituting the attention items;
3. the stretching sequence is stretched from the middle to the two sides.
In this embodiment, through setting up the stretch-draw order to stretch-draw from the centre towards both sides, can make every jib homoenergetic stretch-draw the bridge floor that can be preferred to the better lifting effect of jib to the bridge floor has been promoted, simultaneously with stretch-draw order setting up to stretch-draw from the centre towards both sides, also make constructor can be under construction simultaneously from arch bridge center department to both ends, avoided appearing disturbing when the construction, promoted the efficiency of construction to the arch bridge.
Tensioning process
(1) The oil pipes of the oil pump and the jack are connected, whether the precision pressure gauge is consistent with the jack is checked, and before tensioning, the precision pressure gauge can move for two strokes under the condition of no load, so that the jack is ensured to have no problem during tensioning;
(2) the tensioning jack and the oil pressure gauge must be calibrated before tensioning;
(3) starting an oil pump, and synchronously grading, balancing and slowly loading the lifting rods according to tensioning instructions, wherein a grading tensioning program is as follows: 0→0.3σ→0.6σ→0.8σ→1.0σ; in the tensioning process, the boom cable slowly rises, and simultaneously, the boom cable nut is screwed up;
(4) when the design and monitoring requirements are met, the oil pressure is stabilized, and then the nut is screwed so that the nut and the anchor backing plate are fully combined. Finally, oil pressure is removed, oil return, shutdown and power failure are carried out, and tensioning work is completed;
(5) and in the tensioning process, the cable force measurement work of each cable is completed by matching with a detection unit.
4. After the hanger rod of one cable number is tensioned, carefully checking and recording, confirming that the tensioning equipment can be disassembled at the back without errors, and installing and tensioning the next cable number.
Boom cable-adjusting construction
The tuning rope may need to be phased and distributed after the boom is installed. The cable adjusting part and the cable controlling force are provided by a monitoring unit, the super-tension cable is released, and the cable force is insufficient to be supplemented.
Anti-corrosion operation
After tensioning, coating the inner surface of the anchor cup with slow release paste of 250-300um; the surface of the exposed steel parts at the end parts of the anchor cup, the anchor ring and the anchor backing plate is coated with the slow release paste of 250-300 mu m, then the slow release tape is wrapped, the overlapping rate is 50%, and finally the steel parts are coated with the external protective agent for 2 times.
Through the anticorrosive operation in this embodiment, can carry out anticorrosive treatment to the ground tackle effectively to the life of ground tackle that promotes that can be better.
Shock absorber installation
Built-in shock absorbers generally include shock absorbers, metal rings, wedges, tie rods, nuts, spring washers, and the like. When the shock absorber is installed, the shock absorber is firstly pushed into the embedded pipe in a flat mode, the movable wedge block is installed on the fixed wedge block, the shock absorber rubber is enabled to expand along the radial direction through pushing the shock absorber wedge block, so that the suspender is wedged, and meanwhile, the shock absorber also achieves the fixing effect.
The self-made suspension cage is adopted as an installation platform of the shock absorber, and the suspension cage is welded by using No. 5 angle steel. A temporary hanging point is welded above a cable number to be installed, then the phi 16 steel wire rope and a hoist are used for hanging a hanging cage, and a chain hoist is used for adjusting the height of the hanging cage so as to facilitate construction operation. The temporary welding hanging point puts down a phi 16 steel wire rope to bolt the hanging cage so as to prevent accidents.
The cage platform is considered to be installed and suspended using a truck crane.
It is to be understood that, based on one or several embodiments provided herein, those skilled in the art may combine, split, reorganize, etc. the embodiments of the present application to obtain other embodiments, which do not exceed the protection scope of the present application.
The invention and its embodiments have been described above by way of illustration and not limitation, and the examples are merely illustrative of embodiments of the invention and the actual construction is not limited thereto. Therefore, if one of ordinary skill in the art is informed by this disclosure, the structural mode and the embodiments similar to the technical scheme are not creatively designed without departing from the gist of the present invention.

Claims (7)

1. A large-span basket arch bridge suspender installation construction method comprises the following steps:
step S1, performing preparation work before construction, wherein the preparation work comprises checking the angle of the embedded pipe and the spacing between the earplates, and producing matched suspenders according to the specification of an arch bridge;
step S2, installing a suspender, which mainly comprises the following steps:
s21, lifting the suspender to the corresponding position of the arch rib;
s22, enabling a hoisting rod to pass through a tower end embedded pipe through a preset hole at the arch rib by a winch, and installing a tower end nut;
s23, installing a pin shaft at the lower end of the suspender;
s3, installing arch end tensioning equipment, debugging and checking, then symmetrically tensioning in batches according to requirements, and tightening a fixed nut after tensioning to a design cable force;
s4, repeating the step S3 until tensioning of all the suspenders is completed;
and S5, carrying out protection treatment on the anchor according to design requirements.
2. A method for installing and constructing a large-span basket arch bridge boom according to claim 1, wherein: the step S21 specifically includes the following steps:
step Z1, arranging a hoist steel wire rope hoisting reaction point right above an arch end anchor pad plate by utilizing an anchor box;
step Z2, installing a winch at the bridge abutment position of two banks and temporarily fixing the winch;
step Z3, starting a winch, winding a steel wire rope around a temporary lifting point on an arch after the steel wire rope is released, putting the steel wire rope to an outlet of a cable duct at the arch end after passing through a cable duct right below, and additionally arranging 2 chain blocks beside the cable duct;
and Z4, finishing the installation of the sling lifting equipment.
3. A method for installing and constructing a large-span basket arch bridge boom according to claim 1, wherein: the step S22 specifically includes the following steps:
step G1, putting down a connecting device of a winch traction hoisting system, firmly connecting with an anchor head at the upper end of a sling, and releasing a hoop on the sling;
g2, starting a winch, pulling an upper anchor head to the position of an embedded pipe of an anchor box under an arch, and adjusting the direction of the anchor head at the upper end of a sling by a worker on a construction platform and centering so as to pass through the embedded pipe to reach a transverse arch rib baffle;
and G3, continuously lifting, lifting the upper anchor head to a design position, screwing the upper end nut, and temporarily anchoring the upper anchor head of the sling.
4. A method for installing and constructing a large-span basket arch bridge boom according to claim 1, wherein: in the step S3, a shoulder pole tensioning mode is adopted, two jacks and a pull rod are used for tensioning synchronously, the pull rod is parallel to the axial center line of the suspender, the lifting jack is used for loosening an adjusting connecting device of the suspender through upper and lower shoulder pole beams in the loading process, and tensioning and releasing of the suspender cable force are achieved through screwing and screwing of a connecting sleeve of the suspender adjusting device.
5. A method for installing and constructing a large-span basket arch bridge boom according to claim 1, wherein: in the step S3, the suspender is tensioned twice, firstly, the cable body is pre-tensioned and formally tensioned when the cable is hung, and secondly, the full-bridge suspender inhaul cable is supplemented or released according to the linear and actually measured cable force after the secondary constant load loading is completed.
6. A method for installing and constructing a large-span basket arch bridge boom according to claim 1, wherein: the stretching sequence in step S2 should be stretched from the middle to both sides.
7. A method for installing and constructing a large-span basket arch bridge boom according to claim 1, wherein: step S5, after tensioning is finished, coating the inner surface of the anchor cup with slow release paste of 250-300um; the surface of the exposed steel parts at the end parts of the anchor cup, the anchor ring and the anchor backing plate is coated with the slow release paste of 250-300 mu m, then the slow release tape is wrapped, the overlapping rate is 50%, and finally the steel parts are coated with the external protective agent for 2 times.
CN202211666035.XA 2022-12-23 2022-12-23 Large-span basket arch bridge suspender installation construction method Pending CN116219878A (en)

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