CN111794080A - Novel stiffening structure of steel bridge box-shaped super-large pressure rod piece and construction method thereof - Google Patents

Novel stiffening structure of steel bridge box-shaped super-large pressure rod piece and construction method thereof Download PDF

Info

Publication number
CN111794080A
CN111794080A CN202010626103.4A CN202010626103A CN111794080A CN 111794080 A CN111794080 A CN 111794080A CN 202010626103 A CN202010626103 A CN 202010626103A CN 111794080 A CN111794080 A CN 111794080A
Authority
CN
China
Prior art keywords
steel bridge
pressure rod
bridge box
rod piece
shaped
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.)
Pending
Application number
CN202010626103.4A
Other languages
Chinese (zh)
Inventor
毛利炎
杨小飞
徐进
李雪南
何春林
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ZHEJIANG QUZHOU TRANSPORT CONSTRUCTION GROUP CO LTD
Original Assignee
ZHEJIANG QUZHOU TRANSPORT CONSTRUCTION GROUP CO LTD
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by ZHEJIANG QUZHOU TRANSPORT CONSTRUCTION GROUP CO LTD filed Critical ZHEJIANG QUZHOU TRANSPORT CONSTRUCTION GROUP CO LTD
Priority to CN202010626103.4A priority Critical patent/CN111794080A/en
Publication of CN111794080A publication Critical patent/CN111794080A/en
Pending legal-status Critical Current

Links

Images

Classifications

    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01DCONSTRUCTION OF BRIDGES, ELEVATED ROADWAYS OR VIADUCTS; ASSEMBLY OF BRIDGES
    • E01D19/00Structural or constructional details of bridges
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01DCONSTRUCTION OF BRIDGES, ELEVATED ROADWAYS OR VIADUCTS; ASSEMBLY OF BRIDGES
    • E01D19/00Structural or constructional details of bridges
    • E01D19/02Piers; Abutments ; Protecting same against drifting ice
    • 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
    • E01D2101/00Material constitution of bridges
    • E01D2101/30Metal

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Bridges Or Land Bridges (AREA)

Abstract

The invention discloses a novel stiffening structure of a steel bridge box-shaped super-large pressure rod piece, which comprises a first steel bridge box-shaped pressure rod piece, a stiffening installation outer frame, a second steel bridge box-shaped pressure rod piece and a third steel bridge box-shaped pressure rod piece. The invention is provided with a stiffening structure installation process outside the pressure member, can firmly install the stiffening structure on the outer side of the pressure member, is provided with a plurality of stiffening steel bars, can be directly communicated to the bottom of the pressure member, can play a good auxiliary supporting effect for the pressure member, also improves the overall structural strength of the pressure member to a certain extent, is not easy to deform, is designed into a sectional assembly type for the pressure member, can combine each pressure member when the pressure member is installed, and can effectively avoid the condition that the pressure member is installed in a dislocation way or the end surfaces can not be aligned through installing the positioning combined pin shaft on the pressure member, thereby improving the assembling accuracy of the pressure member.

Description

Novel stiffening structure of steel bridge box-shaped super-large pressure rod piece and construction method thereof
Technical Field
The invention belongs to the technical field of steel bridge box-shaped super-large pressure members, and particularly relates to a novel stiffening structure of a steel bridge box-shaped super-large pressure member and a construction method thereof.
Background
Steel bridges are bridges made of steel as a main building material. The steel bridge has the characteristics of high strength and high rigidity, can reduce the height and the dead weight of a beam relative to a concrete bridge, and can meet the working condition of the bridge with the assumption of calculation graphic representation due to the isotropy, uniform texture and high elastic modulus of steel. However, the steel bridge has poor fire resistance and corrosion resistance, frequent inspection and maintenance are required, the maintenance cost is high, and the box-shaped super-large pressure rod piece of the steel bridge is an important structure on the steel bridge and is a weight-bearing foundation of the steel bridge.
The traditional steel bridge box-shaped super-large pressure rod piece is not installed and constructed in a stiffening structure outside, so that the steel bridge box-shaped super-large pressure rod piece can only effectively support the steel bridge through the traditional steel bridge box-shaped super-large pressure rod piece, the strength of the whole structure cannot be enhanced, the traditional steel bridge box-shaped super-large pressure rod piece is not designed to be of a multi-section combined type, the pressure rod piece is troublesome to assemble, and certain improvement is needed.
Disclosure of Invention
The invention aims to provide a novel stiffening structure of a steel bridge box-shaped super large pressure rod piece and a construction method thereof, and aims to solve the problems that the traditional steel bridge box-shaped super large pressure rod piece in the background technology is not installed and constructed outside, so that the steel bridge box-shaped super large pressure rod piece can only effectively support the steel bridge through the traditional steel bridge box-shaped super large pressure rod piece, the integral structural strength cannot be enhanced, and the traditional steel bridge box-shaped super large pressure rod piece is not designed to be of a multi-section combined type, so that the pressure rod piece is troublesome to assemble.
In order to achieve the purpose, the invention provides the following technical scheme: a novel stiffening structure of a steel bridge box-shaped extra-large pressure rod piece comprises a first steel bridge box-shaped pressure rod piece, a stiffening installation outer frame, a second steel bridge box-shaped pressure rod piece and a third steel bridge box-shaped pressure rod piece, wherein the second steel bridge box-shaped pressure rod piece is fixedly welded at the top of the third steel bridge box-shaped pressure rod piece, the first steel bridge box-shaped pressure rod piece is fixedly welded at the top of the second steel bridge box-shaped pressure rod piece, and the stiffening installation outer frame is fixedly installed outside the first steel bridge box-shaped pressure rod piece through fixing screws.
Preferably, the external structures of the first steel bridge box-shaped pressure rod piece, the second steel bridge box-shaped pressure rod piece and the third steel bridge box-shaped pressure rod piece are all box-shaped.
Preferably, the bottom of the stiffening installation outer frame is fixedly provided with stiffening steel bars, and the stiffening steel bars are arranged in parallel with each other and provided with a plurality of reinforcing steel bars.
Preferably, the third steel bridge box-shaped pressure rod piece consists of a pressure bearing transverse frame, a pressure bearing middle frame and a pressure bearing longitudinal frame, and the pressure bearing transverse frame and the pressure bearing middle frame are welded and fixed on the side wall of the pressure bearing longitudinal frame.
Preferably, two pressure bearing cross frames are symmetrically arranged on the pressure bearing middle frame about the central axis.
Preferably, a connecting and reinforcing hole is formed in the pressure bearing longitudinal frame, and one end of the fixing screw is screwed into the connecting and reinforcing hole.
Preferably, a positioning combined pin shaft is welded and fixed at the top of the pressure bearing longitudinal frame, and the third steel bridge box-shaped pressure rod piece is connected with the second steel bridge box-shaped pressure rod piece in a positioning mode through the positioning combined pin shaft.
The invention also provides a construction method of the novel stiffening structure of the box-shaped super-large pressure rod piece of the steel bridge, and the manufacturing process comprises the following steps:
s1, blanking, cutting a plurality of large steel bridge box-shaped pressure rod pieces by using a cutting device, drilling a plurality of necessary connecting holes on the surfaces of the steel bridge box-shaped pressure rod pieces by using a drilling machine, further fixing the connecting parts of the pressure bearing frames of the steel bridge box-shaped pressure rod pieces by spot welding by using a spot welding machine, and storing the processed steel bridge box-shaped pressure rod pieces for later use;
s2, placing the reinforced box-shaped pressure rod pieces of the steel bridge into a cleaning machine one by one, increasing the temperature in the cleaning machine, and cleaning the box-shaped pressure rod pieces of the steel bridge for a period of time through cleaning liquid;
s3, taking out the cleaned steel bridge box-shaped pressure rod pieces and placing the steel bridge box-shaped pressure rod pieces into a spraying device one by one, increasing the temperature in the device, and carrying out baking intervention treatment on the steel bridge box-shaped pressure rod pieces for a period of time;
s4, after drying pretreatment, opening a spraying head, spraying anticorrosive finish paint on the steel bridge box-shaped pressure rod piece, and after spraying, increasing the temperature in the device to dry and cure the anticorrosive finish paint for a period of time;
s5, taking out the steel bridge box-shaped pressure rod pieces, installing the steel bridge box-shaped pressure rod pieces on a large hoisting machine, hoisting the steel bridge box-shaped pressure rod pieces to a water body by using the large hoisting machine, and inserting and combining other steel bridge box-shaped pressure rod pieces with the previous steel bridge box-shaped pressure rod piece through a positioning combination pin shaft to form a butt-joint combination of a plurality of steel bridge box-shaped pressure rod pieces;
s6, carrying out electric welding on the connecting nodes of each steel bridge box-shaped pressure rod piece by using an electric welding machine, and connecting and combining the steel bridge box-shaped pressure rod pieces into a whole;
s7, measuring the overall height of the finally assembled steel bridge box-shaped pressure rod piece by using a measuring instrument, and recording;
s8, according to the integral height of the steel bridge box-shaped pressure rod piece, performing equal-height cutting on the stiffening installation outer frame and the stiffening steel bars, and keeping the integral height of the stiffening steel bars and the steel bridge box-shaped pressure rod piece consistent;
s9, mounting the stiffening installation outer frame and the stiffening steel bars on a hoisting machine, lifting the stiffening installation outer frame and the stiffening steel bars by using the hoisting machine, and directly sleeving the stiffening installation outer frame and the stiffening steel bars above the first steel bridge box-shaped pressure rod piece until reaching the bottom of a third steel bridge box-shaped pressure rod piece;
s10, on the lifting tower, using the air gun to screw in the fixing screws at the joints with different heights, and fixing the stiffening installation outer frame stably to complete the whole construction process.
Preferably, in the step S2, the drying temperature is 40-60 ℃, the cleaning solution is a hydrocarbon metal degreasing cleaning solution, and the cleaning time is 10-15 min.
Preferably, in S3, the temperature in the device is increased to 60-80 ℃, the drying pretreatment time is 25-35min, in S4, the anticorrosion finish paint is alkyd finish paint, the temperature in the device is increased to 125-145 ℃, and the drying and curing time of the finish paint is 65-85 min.
Compared with the prior art, the invention has the beneficial effects that: the outer side of the steel bridge box-shaped super large pressure member is firmly provided with the stiffening structure by arranging the stiffening structure outside the steel bridge box-shaped super large pressure member, the stiffening structure is provided with a plurality of stiffening steel bars which can be directly communicated to the bottom of the steel bridge box-shaped super large pressure member, the steel bridge box-shaped super large pressure member can have good auxiliary supporting effect, the integral structural strength of the pressure member is improved to a certain extent, the pressure member is not easy to deform, the steel bridge box-shaped super large pressure member is designed into a sectional assembly type, when the steel bridge box-shaped super large pressure member is installed, each pressure member can be combined, and the combined pin shaft is arranged on the pressure member and can effectively position the combination of the pressure members, so that the conditions that the pressure members are installed and dislocated or the end faces cannot be aligned are avoided, the assembling accuracy of the pressure rod piece is improved.
Drawings
FIG. 1 is a front view of the present invention;
fig. 2 is a schematic structural view of the third steel bridge box-shaped pressure rod piece after being disassembled.
In the figure: 1. reinforcing steel bars; 2. a first steel bridge box pressure bar; 3. stiffening and installing an outer frame; 4. fixing screws; 5. a second steel bridge box-shaped pressure rod piece; 6. a third steel bridge box-shaped pressure rod piece; 61. positioning the combined pin shaft; 62. connecting reinforcing holes; 63. a pressure-bearing cross frame; 64. a pressure bearing middle rack; 65. The pressure bears the weight of the longitudinal frame.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
Referring to fig. 1-2, the present invention provides a technical solution: a novel stiffening structure of a steel bridge box-shaped super-large pressure rod piece comprises a first steel bridge box-shaped pressure rod piece 2, a stiffening installation outer frame 3, a second steel bridge box-shaped pressure rod piece 5 and a third steel bridge box-shaped pressure rod piece 6, wherein the top of the third steel bridge box-shaped pressure rod piece 6 is fixedly welded with the second steel bridge box-shaped pressure rod piece 5, the top of the second steel bridge box-shaped pressure rod piece 5 is fixedly welded with the first steel bridge box-shaped pressure rod piece 2, the stiffening installation outer frame 3 is fixedly installed outside the first steel bridge box-shaped pressure rod piece 2 through a fixing screw 4, the external structures of the first steel bridge box-shaped pressure rod piece 2, the second steel bridge box-shaped pressure rod piece 5 and the third steel bridge box-shaped pressure rod piece 6 are all box-shaped, the external structures of the first steel bridge box-shaped pressure rod piece 2, the second steel bridge box-shaped pressure rod piece 5 and the third steel bridge box-shaped pressure rod piece 6 are designed to be box, the bottom contact point and the area of each pressure rod piece are greatly improved, the stability of each pressure rod piece is improved, the bottom of the stiffening installation outer frame 3 is fixedly provided with a stiffening steel bar 1, the stiffening steel bars 1 are arranged in parallel, the stiffening steel bar 1 can play a good external supporting and reinforcing effect by installing a plurality of stiffening steel bars 1, the third steel bridge box-shaped pressure rod piece 6 consists of a pressure bearing transverse frame 63, a pressure bearing middle frame 64 and a pressure bearing longitudinal frame 65, the pressure bearing transverse frame 63 and the pressure bearing middle frame 64 are welded and fixed on the side wall of the pressure bearing longitudinal frame 65, the third steel bridge box-shaped pressure rod piece 6 consists of a pressure bearing transverse frame 63, a pressure bearing middle frame 64 and a pressure bearing longitudinal frame 65, the structural strength of the third steel bridge box-shaped pressure rod piece 6 is ensured, the pressure bearing transverse frame 63 is symmetrically arranged about the central axis of the pressure bearing middle frame 64, by installing the double pressure bearing cross frame 63, the stability of the installation of the pressure bearing middle placing frame 64 is ensured, a connecting reinforcing hole 62 is formed in the pressure bearing longitudinal frame 65, one end of the fixing screw 4 is screwed into the connecting reinforcing hole 62, one end of the fixing screw 4 is screwed into the connecting reinforcing hole 62 by being provided with the connecting reinforcing hole 62, the fixed installation of the stiffening installation outer frame 3 can be completed, the top of the pressure bearing longitudinal frame 65 is fixedly welded with a positioning combination pin shaft 61, the third steel bridge box-shaped pressure rod piece 6 and the second steel bridge box-shaped pressure rod piece 5 are connected in a positioning way through the positioning combination pin shaft 61, through the installation of the positioning combination pin shaft 61, this location combination round pin axle 61 can effectively fix a position the combination of pressure member, avoids appearing pressure member installation dislocation, or the unable condition of aliging of terminal surface, has improved the precision of pressure member equipment.
The invention also provides a construction method of the novel stiffening structure of the box-shaped extra-large pressure rod piece of the steel bridge, which comprises the following steps:
s1, blanking, cutting a plurality of large steel bridge box-shaped pressure rod pieces by using a cutting device, drilling a plurality of necessary connecting holes on the surfaces of the steel bridge box-shaped pressure rod pieces by using a drilling machine, further fixing the connecting parts of the pressure bearing frames of the steel bridge box-shaped pressure rod pieces by spot welding by using a spot welding machine, and storing the processed steel bridge box-shaped pressure rod pieces for later use;
s2, placing the reinforced box-shaped pressure rod pieces of the steel bridge into a cleaning machine one by one, raising the temperature in the cleaning machine to 40 ℃, and cleaning the box-shaped pressure rod pieces of the steel bridge for 10min by cleaning liquid;
s3, taking out the cleaned steel bridge box-shaped pressure rod pieces, placing the steel bridge box-shaped pressure rod pieces into a spraying device one by one, raising the temperature in the device to 60 ℃, and carrying out baking intervention treatment on the steel bridge box-shaped pressure rod pieces for 25 min;
s4, after drying pretreatment, opening a spraying head, spraying anticorrosive finish paint on the steel bridge box-shaped pressure rod piece, and after spraying, raising the temperature in the device to 125 ℃ to dry and cure the anticorrosive finish paint for 65 min;
s5, taking out the steel bridge box-shaped pressure rod pieces, installing the steel bridge box-shaped pressure rod pieces on a large hoisting machine, hoisting the steel bridge box-shaped pressure rod pieces to a water body by using the large hoisting machine, and inserting and combining other steel bridge box-shaped pressure rod pieces with the previous steel bridge box-shaped pressure rod piece through a positioning combination pin shaft to form a butt-joint combination of a plurality of steel bridge box-shaped pressure rod pieces;
s6, carrying out electric welding on the connecting nodes of each steel bridge box-shaped pressure rod piece by using an electric welding machine, and connecting and combining the steel bridge box-shaped pressure rod pieces into a whole;
s7, measuring the overall height of the finally assembled steel bridge box-shaped pressure rod piece by using a measuring instrument, and recording;
s8, according to the integral height of the steel bridge box-shaped pressure rod piece, performing equal-height cutting on the stiffening installation outer frame and the stiffening steel bars, and keeping the integral height of the stiffening steel bars and the steel bridge box-shaped pressure rod piece consistent;
s9, mounting the stiffening installation outer frame and the stiffening steel bars on a hoisting machine, lifting the stiffening installation outer frame and the stiffening steel bars by using the hoisting machine, and directly sleeving the stiffening installation outer frame and the stiffening steel bars above the first steel bridge box-shaped pressure rod piece until reaching the bottom of a third steel bridge box-shaped pressure rod piece;
s10, on the lifting tower, using the air gun to screw in the fixing screws at the joints with different heights, and fixing the stiffening installation outer frame stably to complete the whole construction process.
Example 2
Referring to fig. 1-2, the present invention provides a technical solution: a novel stiffening structure of a steel bridge box-shaped super-large pressure rod piece comprises a first steel bridge box-shaped pressure rod piece 2, a stiffening installation outer frame 3, a second steel bridge box-shaped pressure rod piece 5 and a third steel bridge box-shaped pressure rod piece 6, wherein the top of the third steel bridge box-shaped pressure rod piece 6 is fixedly welded with the second steel bridge box-shaped pressure rod piece 5, the top of the second steel bridge box-shaped pressure rod piece 5 is fixedly welded with the first steel bridge box-shaped pressure rod piece 2, the stiffening installation outer frame 3 is fixedly installed outside the first steel bridge box-shaped pressure rod piece 2 through a fixing screw 4, the external structures of the first steel bridge box-shaped pressure rod piece 2, the second steel bridge box-shaped pressure rod piece 5 and the third steel bridge box-shaped pressure rod piece 6 are all box-shaped, the external structures of the first steel bridge box-shaped pressure rod piece 2, the second steel bridge box-shaped pressure rod piece 5 and the third steel bridge box-shaped pressure rod piece 6 are designed to be box, the bottom contact point and the area of each pressure rod piece are greatly improved, the stability of each pressure rod piece is improved, the bottom of the stiffening installation outer frame 3 is fixedly provided with a stiffening steel bar 1, the stiffening steel bars 1 are arranged in parallel, the stiffening steel bar 1 can play a good external supporting and reinforcing effect by installing a plurality of stiffening steel bars 1, the third steel bridge box-shaped pressure rod piece 6 consists of a pressure bearing transverse frame 63, a pressure bearing middle frame 64 and a pressure bearing longitudinal frame 65, the pressure bearing transverse frame 63 and the pressure bearing middle frame 64 are welded and fixed on the side wall of the pressure bearing longitudinal frame 65, the third steel bridge box-shaped pressure rod piece 6 consists of a pressure bearing transverse frame 63, a pressure bearing middle frame 64 and a pressure bearing longitudinal frame 65, the structural strength of the third steel bridge box-shaped pressure rod piece 6 is ensured, the pressure bearing transverse frame 63 is symmetrically arranged about the central axis of the pressure bearing middle frame 64, by installing the double pressure bearing cross frame 63, the stability of the installation of the pressure bearing middle placing frame 64 is ensured, a connecting reinforcing hole 62 is formed in the pressure bearing longitudinal frame 65, one end of the fixing screw 4 is screwed into the connecting reinforcing hole 62, one end of the fixing screw 4 is screwed into the connecting reinforcing hole 62 by being provided with the connecting reinforcing hole 62, the fixed installation of the stiffening installation outer frame 3 can be completed, the top of the pressure bearing longitudinal frame 65 is fixedly welded with a positioning combination pin shaft 61, the third steel bridge box-shaped pressure rod piece 6 and the second steel bridge box-shaped pressure rod piece 5 are connected in a positioning way through the positioning combination pin shaft 61, through the installation of the positioning combination pin shaft 61, this location combination round pin axle 61 can effectively fix a position the combination of pressure member, avoids appearing pressure member installation dislocation, or the unable condition of aliging of terminal surface, has improved the precision of pressure member equipment.
The invention also provides a construction method of the novel stiffening structure of the box-shaped extra-large pressure rod piece of the steel bridge, which comprises the following steps:
s1, blanking, cutting a plurality of large steel bridge box-shaped pressure rod pieces by using a cutting device, drilling a plurality of necessary connecting holes on the surfaces of the steel bridge box-shaped pressure rod pieces by using a drilling machine, further fixing the connecting parts of the pressure bearing frames of the steel bridge box-shaped pressure rod pieces by spot welding by using a spot welding machine, and storing the processed steel bridge box-shaped pressure rod pieces for later use;
s2, placing the reinforced box-shaped pressure rod pieces of the steel bridge into a cleaning machine one by one, raising the temperature in the cleaning machine to 50 ℃, and cleaning the box-shaped pressure rod pieces of the steel bridge for 10min by cleaning liquid;
s3, taking out the cleaned steel bridge box-shaped pressure rod pieces, placing the steel bridge box-shaped pressure rod pieces into a spraying device one by one, raising the temperature in the device to 70 ℃, and carrying out baking intervention treatment on the steel bridge box-shaped pressure rod pieces for 30 min;
s4, after drying pretreatment, opening a spraying head, spraying anticorrosive finish paint on the steel bridge box-shaped pressure rod piece, and after spraying, raising the temperature in the device to 135 ℃ to dry and cure the anticorrosive finish paint for 75 min;
s5, taking out the steel bridge box-shaped pressure rod pieces, installing the steel bridge box-shaped pressure rod pieces on a large hoisting machine, hoisting the steel bridge box-shaped pressure rod pieces to a water body by using the large hoisting machine, and inserting and combining other steel bridge box-shaped pressure rod pieces with the previous steel bridge box-shaped pressure rod piece through a positioning combination pin shaft to form a butt-joint combination of a plurality of steel bridge box-shaped pressure rod pieces;
s6, carrying out electric welding on the connecting nodes of each steel bridge box-shaped pressure rod piece by using an electric welding machine, and connecting and combining the steel bridge box-shaped pressure rod pieces into a whole;
s7, measuring the overall height of the finally assembled steel bridge box-shaped pressure rod piece by using a measuring instrument, and recording;
s8, according to the integral height of the steel bridge box-shaped pressure rod piece, performing equal-height cutting on the stiffening installation outer frame and the stiffening steel bars, and keeping the integral height of the stiffening steel bars and the steel bridge box-shaped pressure rod piece consistent;
s9, mounting the stiffening installation outer frame and the stiffening steel bars on a hoisting machine, lifting the stiffening installation outer frame and the stiffening steel bars by using the hoisting machine, and directly sleeving the stiffening installation outer frame and the stiffening steel bars above the first steel bridge box-shaped pressure rod piece until reaching the bottom of a third steel bridge box-shaped pressure rod piece;
s10, on the lifting tower, using the air gun to screw in the fixing screws at the joints with different heights, and fixing the stiffening installation outer frame stably to complete the whole construction process.
Example 3
Referring to fig. 1-2, the present invention provides a technical solution: a novel stiffening structure of a steel bridge box-shaped super-large pressure rod piece comprises a first steel bridge box-shaped pressure rod piece 2, a stiffening installation outer frame 3, a second steel bridge box-shaped pressure rod piece 5 and a third steel bridge box-shaped pressure rod piece 6, wherein the top of the third steel bridge box-shaped pressure rod piece 6 is fixedly welded with the second steel bridge box-shaped pressure rod piece 5, the top of the second steel bridge box-shaped pressure rod piece 5 is fixedly welded with the first steel bridge box-shaped pressure rod piece 2, the stiffening installation outer frame 3 is fixedly installed outside the first steel bridge box-shaped pressure rod piece 2 through a fixing screw 4, the external structures of the first steel bridge box-shaped pressure rod piece 2, the second steel bridge box-shaped pressure rod piece 5 and the third steel bridge box-shaped pressure rod piece 6 are all box-shaped, the external structures of the first steel bridge box-shaped pressure rod piece 2, the second steel bridge box-shaped pressure rod piece 5 and the third steel bridge box-shaped pressure rod piece 6 are designed to be box, the bottom contact point and the area of each pressure rod piece are greatly improved, the stability of each pressure rod piece is improved, the bottom of the stiffening installation outer frame 3 is fixedly provided with a stiffening steel bar 1, the stiffening steel bars 1 are arranged in parallel, the stiffening steel bar 1 can play a good external supporting and reinforcing effect by installing a plurality of stiffening steel bars 1, the third steel bridge box-shaped pressure rod piece 6 consists of a pressure bearing transverse frame 63, a pressure bearing middle frame 64 and a pressure bearing longitudinal frame 65, the pressure bearing transverse frame 63 and the pressure bearing middle frame 64 are welded and fixed on the side wall of the pressure bearing longitudinal frame 65, the third steel bridge box-shaped pressure rod piece 6 consists of a pressure bearing transverse frame 63, a pressure bearing middle frame 64 and a pressure bearing longitudinal frame 65, the structural strength of the third steel bridge box-shaped pressure rod piece 6 is ensured, the pressure bearing transverse frame 63 is symmetrically arranged about the central axis of the pressure bearing middle frame 64, by installing the double pressure bearing cross frame 63, the stability of the installation of the pressure bearing middle placing frame 64 is ensured, a connecting reinforcing hole 62 is formed in the pressure bearing longitudinal frame 65, one end of the fixing screw 4 is screwed into the connecting reinforcing hole 62, one end of the fixing screw 4 is screwed into the connecting reinforcing hole 62 by being provided with the connecting reinforcing hole 62, the fixed installation of the stiffening installation outer frame 3 can be completed, the top of the pressure bearing longitudinal frame 65 is fixedly welded with a positioning combination pin shaft 61, the third steel bridge box-shaped pressure rod piece 6 and the second steel bridge box-shaped pressure rod piece 5 are connected in a positioning way through the positioning combination pin shaft 61, through the installation of the positioning combination pin shaft 61, this location combination round pin axle 61 can effectively fix a position the combination of pressure member, avoids appearing pressure member installation dislocation, or the unable condition of aliging of terminal surface, has improved the precision of pressure member equipment.
The invention also provides a construction method of the novel stiffening structure of the box-shaped extra-large pressure rod piece of the steel bridge, which comprises the following steps:
s1, blanking, cutting a plurality of large steel bridge box-shaped pressure rod pieces by using a cutting device, drilling a plurality of necessary connecting holes on the surfaces of the steel bridge box-shaped pressure rod pieces by using a drilling machine, further fixing the connecting parts of the pressure bearing frames of the steel bridge box-shaped pressure rod pieces by spot welding by using a spot welding machine, and storing the processed steel bridge box-shaped pressure rod pieces for later use;
s2, placing the reinforced box-shaped pressure rod pieces of the steel bridge into a cleaning machine one by one, raising the temperature in the cleaning machine to 60 ℃, and cleaning the box-shaped pressure rod pieces of the steel bridge for 15min by using a hydrocarbon metal degreasing cleaning agent;
s3, taking out the cleaned steel bridge box-shaped pressure rod pieces, placing the steel bridge box-shaped pressure rod pieces into a spraying device one by one, raising the temperature in the device to 80 ℃, and drying and pretreating the steel bridge box-shaped pressure rod pieces for 35 min;
s4, after drying pretreatment, opening a spraying head, spraying alkyd resin anticorrosive finish paint on the steel bridge box-shaped pressure rod piece, and after spraying, raising the temperature in the device to 145 ℃ to dry and cure the anticorrosive finish paint for 85 min;
s5, taking out the steel bridge box-shaped pressure rod pieces, installing the steel bridge box-shaped pressure rod pieces on a large hoisting machine, hoisting the steel bridge box-shaped pressure rod pieces to a water body by using the large hoisting machine, and inserting and combining other steel bridge box-shaped pressure rod pieces with the previous steel bridge box-shaped pressure rod piece through a positioning combination pin shaft to form a butt-joint combination of a plurality of steel bridge box-shaped pressure rod pieces;
s6, carrying out electric welding on the connecting nodes of each steel bridge box-shaped pressure rod piece by using an electric welding machine, and connecting and combining the steel bridge box-shaped pressure rod pieces into a whole;
s7, measuring the overall height of the finally assembled steel bridge box-shaped pressure rod piece by using a measuring instrument, and recording;
s8, according to the integral height of the steel bridge box-shaped pressure rod piece, performing equal-height cutting on the stiffening installation outer frame and the stiffening steel bars, and keeping the integral height of the stiffening steel bars and the steel bridge box-shaped pressure rod piece consistent;
s9, mounting the stiffening installation outer frame and the stiffening steel bars on a hoisting machine, lifting the stiffening installation outer frame and the stiffening steel bars by using the hoisting machine, and directly sleeving the stiffening installation outer frame and the stiffening steel bars above the first steel bridge box-shaped pressure rod piece until reaching the bottom of a third steel bridge box-shaped pressure rod piece;
s10, on the lifting tower, using the air gun to screw in the fixing screws at the joints with different heights, and fixing the stiffening installation outer frame stably to complete the whole construction process.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a novel structure of putting more energy into of super large pressure member of steel bridge box, includes first steel bridge box pressure member (2), puts more energy into installation outrigger (3), second steel bridge box pressure member (5) and third steel bridge box pressure member (6), its characterized in that: and a second steel bridge box-shaped pressure rod piece (5) is fixedly welded at the top of the third steel bridge box-shaped pressure rod piece (6), a first steel bridge box-shaped pressure rod piece (2) is fixedly welded at the top of the second steel bridge box-shaped pressure rod piece (5), and the stiffening installation outer frame (3) is fixedly installed outside the first steel bridge box-shaped pressure rod piece (2) through a fixing screw (4).
2. The novel stiffening structure of the steel bridge box-shaped extra-large pressure rod piece as claimed in claim 1, wherein: the external structures of the first steel bridge box-shaped pressure rod piece (2), the second steel bridge box-shaped pressure rod piece (5) and the third steel bridge box-shaped pressure rod piece (6) are all box-shaped.
3. The novel stiffening structure of the steel bridge box-shaped extra-large pressure rod piece as claimed in claim 1, wherein: the bottom fixed mounting of putting more energy into installation outrigger (3) has stiffening steel bar (1), and a plurality of are installed in parallel to each other in stiffening steel bar (1).
4. The novel stiffening structure of the steel bridge box-shaped extra-large pressure rod piece as claimed in claim 1, wherein: the third steel bridge box-shaped pressure rod piece (6) is composed of a pressure bearing transverse frame (63), a pressure bearing middle frame (64) and a pressure bearing longitudinal frame (65), and the pressure bearing transverse frame (63) and the pressure bearing middle frame (64) are welded and fixed on the side wall of the pressure bearing longitudinal frame (65).
5. The novel stiffening structure of the steel bridge box-shaped extra-large pressure rod piece as claimed in claim 4, wherein: two pressure bearing transverse frames (63) are symmetrically arranged about the central axis of the pressure bearing middle frame (64).
6. The novel stiffening structure of the steel bridge box-shaped extra-large pressure rod piece as claimed in claim 4, wherein: and a connecting reinforcing hole (62) is formed in the pressure bearing longitudinal frame (65), and one end of the fixing screw (4) is screwed into the connecting reinforcing hole (62).
7. The novel stiffening structure of the steel bridge box-shaped extra-large pressure rod piece as claimed in claim 4, wherein: and a positioning combined pin shaft (61) is welded and fixed at the top of the pressure bearing longitudinal frame (65), and the third steel bridge box-shaped pressure rod piece (6) is connected with the second steel bridge box-shaped pressure rod piece (5) in a positioning mode through the positioning combined pin shaft (61).
8. A construction method for a novel stiffening structure of a steel bridge box-shaped extra-large pressure rod piece according to any one of claims 1 to 7, which is characterized by comprising the following steps:
s1, blanking, cutting a plurality of large steel bridge box-shaped pressure rod pieces by using a cutting device, drilling a plurality of necessary connecting holes on the surfaces of the steel bridge box-shaped pressure rod pieces by using a drilling machine, further fixing the connecting parts of the pressure bearing frames of the steel bridge box-shaped pressure rod pieces by spot welding by using a spot welding machine, and storing the processed steel bridge box-shaped pressure rod pieces for later use;
s2, placing the reinforced box-shaped pressure rod pieces of the steel bridge into a cleaning machine one by one, increasing the temperature in the cleaning machine, and cleaning the box-shaped pressure rod pieces of the steel bridge for a period of time through cleaning liquid;
s3, taking out the cleaned steel bridge box-shaped pressure rod pieces and placing the steel bridge box-shaped pressure rod pieces into a spraying device one by one, increasing the temperature in the device, and carrying out baking intervention treatment on the steel bridge box-shaped pressure rod pieces for a period of time;
s4, after drying pretreatment, opening a spraying head, spraying anticorrosive finish paint on the steel bridge box-shaped pressure rod piece, and after spraying, increasing the temperature in the device to dry and cure the anticorrosive finish paint for a period of time;
s5, taking out the steel bridge box-shaped pressure rod pieces, installing the steel bridge box-shaped pressure rod pieces on a large hoisting machine, hoisting the steel bridge box-shaped pressure rod pieces to a water body by using the large hoisting machine, and inserting and combining other steel bridge box-shaped pressure rod pieces with the previous steel bridge box-shaped pressure rod piece through a positioning combination pin shaft to form a butt-joint combination of a plurality of steel bridge box-shaped pressure rod pieces;
s6, carrying out electric welding on the connecting nodes of each steel bridge box-shaped pressure rod piece by using an electric welding machine, and connecting and combining the steel bridge box-shaped pressure rod pieces into a whole;
s7, measuring the overall height of the finally assembled steel bridge box-shaped pressure rod piece by using a measuring instrument, and recording;
s8, according to the integral height of the steel bridge box-shaped pressure rod piece, performing equal-height cutting on the stiffening installation outer frame and the stiffening steel bars, and keeping the integral height of the stiffening steel bars and the steel bridge box-shaped pressure rod piece consistent;
s9, mounting the stiffening installation outer frame and the stiffening steel bars on a hoisting machine, lifting the stiffening installation outer frame and the stiffening steel bars by using the hoisting machine, and directly sleeving the stiffening installation outer frame and the stiffening steel bars above the first steel bridge box-shaped pressure rod piece until reaching the bottom of a third steel bridge box-shaped pressure rod piece;
s10, on the lifting tower, using the air gun to screw in the fixing screws at the joints with different heights, and fixing the stiffening installation outer frame stably to complete the whole construction process.
9. The construction method of the novel stiffening structure of the steel bridge box-shaped extra-large pressure rod piece according to the claim 8, is characterized in that: and in the step S2, the drying temperature is 40-60 ℃, the cleaning liquid is a hydrocarbon metal degreasing cleaning liquid, and the cleaning time is 10-15 min.
10. The construction method of the novel stiffening structure of the steel bridge box-shaped extra-large pressure rod piece according to the claim 8, is characterized in that: and in the step S3, the temperature in the device is increased to 60-80 ℃, the drying pretreatment time is 25-35min, in the step S4, the anticorrosive finish paint is alkyd finish paint, the temperature in the device is increased to 125-145 ℃, and the drying and curing time of the finish paint is 65-85 min.
CN202010626103.4A 2020-07-01 2020-07-01 Novel stiffening structure of steel bridge box-shaped super-large pressure rod piece and construction method thereof Pending CN111794080A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010626103.4A CN111794080A (en) 2020-07-01 2020-07-01 Novel stiffening structure of steel bridge box-shaped super-large pressure rod piece and construction method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010626103.4A CN111794080A (en) 2020-07-01 2020-07-01 Novel stiffening structure of steel bridge box-shaped super-large pressure rod piece and construction method thereof

Publications (1)

Publication Number Publication Date
CN111794080A true CN111794080A (en) 2020-10-20

Family

ID=72809913

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202010626103.4A Pending CN111794080A (en) 2020-07-01 2020-07-01 Novel stiffening structure of steel bridge box-shaped super-large pressure rod piece and construction method thereof

Country Status (1)

Country Link
CN (1) CN111794080A (en)

Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3322951A1 (en) * 1983-06-25 1985-01-03 Johannes Dörnen, Stahlbauwerk, 4600 Dortmund Truss bridge and method for producing it
JP2006183320A (en) * 2004-12-27 2006-07-13 Topy Ind Ltd Reinforcing structure and reinforcing method of corner part of existing steel pier
CN201433351Y (en) * 2009-06-09 2010-03-31 中国第一冶金建设有限责任公司 Unit truss segment for long-span steel truss arch centering
CN101691738A (en) * 2009-08-19 2010-04-07 中铁大桥勘测设计院有限公司 Novel stiffening structure of super-large box-shaped compression member of steel bridge and construction method thereof
CN201874153U (en) * 2010-08-30 2011-06-22 胡茂刚 Universal steel structure truss girder
CN201972237U (en) * 2011-03-03 2011-09-14 长安大学 Section prefabricated rectangular steel pipe concrete truss
CN104018427A (en) * 2014-05-14 2014-09-03 中铁大桥勘测设计院集团有限公司 All-welded box girder combination section constructing method
CN107640612A (en) * 2017-09-30 2018-01-30 西安贝雷钢桥制造有限公司 Shellfish thunder steel bridge warehouse-out method
CN107745227A (en) * 2017-09-26 2018-03-02 中亿丰建设集团股份有限公司 The more curve special steel bridge arch processing methods in space
CN207647029U (en) * 2017-11-21 2018-07-24 新金珠市政园林景观工程有限公司 A kind of two-way building detached column of putting more energy into
CN108677727A (en) * 2018-06-08 2018-10-19 中铁十八局集团第二工程有限公司 The installation method of the box-shaped rods buttcover plate of steel construction arch bridge
CN210140763U (en) * 2019-05-07 2020-03-13 上海振华港机重工有限公司 Steel trestle metal structure suitable for harbour

Patent Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3322951A1 (en) * 1983-06-25 1985-01-03 Johannes Dörnen, Stahlbauwerk, 4600 Dortmund Truss bridge and method for producing it
JP2006183320A (en) * 2004-12-27 2006-07-13 Topy Ind Ltd Reinforcing structure and reinforcing method of corner part of existing steel pier
CN201433351Y (en) * 2009-06-09 2010-03-31 中国第一冶金建设有限责任公司 Unit truss segment for long-span steel truss arch centering
CN101691738A (en) * 2009-08-19 2010-04-07 中铁大桥勘测设计院有限公司 Novel stiffening structure of super-large box-shaped compression member of steel bridge and construction method thereof
CN201874153U (en) * 2010-08-30 2011-06-22 胡茂刚 Universal steel structure truss girder
CN201972237U (en) * 2011-03-03 2011-09-14 长安大学 Section prefabricated rectangular steel pipe concrete truss
CN104018427A (en) * 2014-05-14 2014-09-03 中铁大桥勘测设计院集团有限公司 All-welded box girder combination section constructing method
CN107745227A (en) * 2017-09-26 2018-03-02 中亿丰建设集团股份有限公司 The more curve special steel bridge arch processing methods in space
CN107640612A (en) * 2017-09-30 2018-01-30 西安贝雷钢桥制造有限公司 Shellfish thunder steel bridge warehouse-out method
CN207647029U (en) * 2017-11-21 2018-07-24 新金珠市政园林景观工程有限公司 A kind of two-way building detached column of putting more energy into
CN108677727A (en) * 2018-06-08 2018-10-19 中铁十八局集团第二工程有限公司 The installation method of the box-shaped rods buttcover plate of steel construction arch bridge
CN210140763U (en) * 2019-05-07 2020-03-13 上海振华港机重工有限公司 Steel trestle metal structure suitable for harbour

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
杜永昌等: "《高速与客运专线铁路施工工艺手册》", 31 October 2006, 科学技术文献出版社 *

Similar Documents

Publication Publication Date Title
CN110670937B (en) Interval reinforcing device and method for service power transmission tower
CN210458916U (en) Bridge assembled bent cap prefabricated steel pedestal
CN111794080A (en) Novel stiffening structure of steel bridge box-shaped super-large pressure rod piece and construction method thereof
CN113482152A (en) Assembled steel node
CN113216646A (en) Assembling method of pipe truss
CN114016803B (en) Reinforcing method for improving net section strength of externally-attached plate type old line iron tower
CN215670149U (en) Assembled high-rise steel structure house beam column connection strenghthened type node
CN113123609B (en) Method for mounting steel structure dome net rack with two low ends and high middle
CN209703694U (en) A kind of antiacid anti-corrosion steel construction
CN212866332U (en) Steel construction factory building
CN114382231A (en) PVC-FRP pipe reinforced concrete column and steel plate shear wall connection structure with good stability
CN113833152A (en) Fabricated reinforced structure of standardized prefabricated member for building
CN210946527U (en) Composite assembling type bridge cantilever construction bracket
CN213174898U (en) Support arrangement for steel house building
CN218814725U (en) Steel construction factory building bearing roof beam
CN218028216U (en) Reinforced structure for assembling building steel column sealing plate
CN213979160U (en) Domestic water tank for urban secondary water supply system
CN221052992U (en) Steel structure beam
CN219080583U (en) Welding-free steel column-steel beam connecting structure
CN221031772U (en) Transmission tower reinforced structure
CN209989943U (en) High-rise building's shaped steel structure rigid connection node
CN220202966U (en) Small-diameter circular tube welding ball node reinforced by stiffening ribs
CN218234000U (en) Variable-cross-section energy-saving box-type steel beam
CN213709865U (en) Building steel structure convenient to installation
CN219059790U (en) Steel pipe stand tip internal support additional strengthening

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication
RJ01 Rejection of invention patent application after publication

Application publication date: 20201020