CN213114983U - Steel frame fixed knot constructs for building engineering - Google Patents

Steel frame fixed knot constructs for building engineering Download PDF

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Publication number
CN213114983U
CN213114983U CN202021601370.8U CN202021601370U CN213114983U CN 213114983 U CN213114983 U CN 213114983U CN 202021601370 U CN202021601370 U CN 202021601370U CN 213114983 U CN213114983 U CN 213114983U
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steel frame
fixing
block
main body
sliding block
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符华娟
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Abstract

The utility model discloses a steel frame fixed knot constructs for building engineering, including the joint subject, the joint subject includes the fixed main part of first fixed main part and second, and the front of first fixed main part and the back have seted up first connection face and second respectively and have connected the face, first connection face and second are connected the face and are provided with slide mechanism, and slide mechanism includes first dead lever, first sliding block, second sliding block and first bolt pole, first connection face and second are connected inside block respectively of face and have first sliding block and second sliding block, and are run through fixedly by first bolt pole between first connection face and first sliding block, second connection face and the second sliding block. Thereby solved and need only to dock the coincidence back with the one end of steelframe and fixed connection structure usually, could insert and establish into to it is fixed to use the bolt. The utility model discloses reduce workman's operating time, reinforcing work efficiency, the steadiness is connected in the reinforcing and the later stage is demolishd and used repeatedly.

Description

Steel frame fixed knot constructs for building engineering
Technical Field
The utility model relates to a fixed knot constructs technical field, specifically is a steel frame fixed knot constructs for building engineering.
Background
Compared with the traditional concrete building, the steel plate replaces reinforced concrete, so that the steel structure building has higher strength and better shock resistance. And because the components can be manufactured in a factory and installed on site, the construction period is greatly reduced, and the labor cost is reduced. Due to the fact that steel can be recycled, building garbage can be greatly reduced, and the steel is more environment-friendly, so that the steel is widely used and applied to industrial buildings, civil buildings and other buildings, and the steel frame fixing structure for the building engineering on the market can basically meet the requirements of people, but still has some problems.
The traditional fixed knot who is used for the steelframe constructs, usually need with the one end of steelframe and fixed connection structure butt joint coincidence back, just can insert and establish into to use the bolt to fix it. However, when the butt joint is carried out, the steel frame is too large in size, a worker can spend a certain time when carrying out the butt joint, the butt joint is difficult, and the subsequent use efficiency of the device is influenced. Therefore, a steel frame fixing structure for construction engineering is needed to solve the above problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a steel frame fixed knot constructs for building engineering to the steel that proposes in solving above-mentioned background art docks comparatively difficult problem each other on the building site.
In order to achieve the above object, the utility model provides a following technical scheme: a steel frame fixing structure for building engineering comprises a connecting body, wherein the connecting body comprises a first fixing body and a second fixing body, a first connecting surface and a second connecting surface are respectively arranged on the front surface and the back surface of the first fixing body to facilitate fixed connection, sliding mechanisms are arranged on the first connecting surface and the second connecting surface and comprise a first fixing rod, a first sliding block, a second sliding block and a first bolt rod, the first sliding block and the second sliding block are respectively clamped inside the first connecting surface and the second connecting surface to facilitate sliding installation and removal, the first connecting surface, the first sliding block, the second connecting surface and the second sliding block are fixedly penetrated through by the first bolt rod to prevent sliding, steel frame bodies are fixedly connected inside the first fixing body and the second fixing body, and a first steel frame is fixedly connected inside the lower end of the first fixing body, and a second steel frame is fixedly connected inside the right side of the second fixing main body.
Preferably, threaded connection between first bolt pole and first fixed main part, first connecting face, first sliding block, second connecting face and the second sliding block respectively strengthens the steadiness and is convenient for install and demolish.
Preferably, the lower extreme of first fixed main part has all linked firmly first fixed plate, reinforcing steadiness, and first fixed plate is inside all linked firmly first dead lever, spacing first gyro wheel, first dead lever surface all overlaps and is equipped with first gyro wheel, and convenient the rotation, and one section that first fixed plate was kept away from to first gyro wheel all laminates with first steelframe surface, and the installation is convenient for in close contact with.
Preferably, first fixed main part openly has linked firmly the rubber button, protects the fixed block, and the inside fixed block that has linked firmly of rubber button, makes the fixed block resume original condition, the bottom laminating of fixed block lower surface has the stopper, and the atress of being convenient for, and the stopper bottom links firmly in the spring upper end, strengthens the steadiness, the spring bottom links firmly at the inside lower extreme of gag lever post, and the gag lever post bottom links firmly in the inboard bottom of second steelframe, restricts the stopper.
Preferably, the fixed main part right side of second is inserted and is established inside block mechanism, and the installation of being convenient for, and block mechanism includes block board and second fixed plate, reinforcing stability, the fixed main part right side of second is inserted and is established inside the block board, and the installation of being convenient for, and both ends have all linked firmly the second fixed plate about the block board right side, reinforcing steadiness, first spacing groove has all been seted up to second fixed plate internal surface, and the second gyro wheel of being convenient for rotates, and first spacing inslot portion has all linked firmly the second dead lever, restricts the working range of second gyro wheel, second dead lever surface all overlaps and is equipped with the second gyro wheel, is convenient for rotate.
Preferably, the first steel frame and the first fixing main body, the second steel frame and the second fixing main body are fixed through a fixing mechanism to enhance the stability, the fixing mechanism comprises a first clamping block, a second clamping block, a nut and a second bolt rod to facilitate clamping and installation, the first steel frame, the first fixing main body, the second steel frame and the second fixing main body are all embedded with the second bolt rod to enhance the stability, one side of the second bolt rod close to the rubber button is all attached to the inner side of the second limiting groove to facilitate clamping and installation, the second limiting grooves are all arranged on the first clamping block, one side of the first clamping block far away from the rubber button is all fixedly connected with a threaded rod to enhance the stability, the threaded rod is all sleeved with the second clamping block to facilitate installation, and both sides of the second clamping block are all provided with third limiting grooves matched with the second bolt rod to facilitate clamping and installation, one side that second latch pole was kept away from to second block piece all the butt has the nut, strengthens the steadiness, and nut and threaded rod threaded connection are convenient for install and demolish.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the steel frame fixing structure for the building engineering is provided with a first fixing main body, the first sliding block and the second sliding block can be mutually clamped in a sliding manner through the arrangement of the first sliding block and are convenient to connect, and the first sliding block and the second sliding block can be firmly jointed and do not slide through the stable limiting of two first bolt rods, when the first steel frame and the second steel frame are installed, after the first steel frame and the second steel frame are inserted into the first fixing main body, the outer walls of the first steel frame and the second steel frame can be jointed with a first roller, the first roller is driven to rotate through jointing, the insertion is more labor-saving, meanwhile, the limiting rods, the springs and the limiting blocks are installed on the outer surfaces of the first steel frame and the second steel frame, after the first steel frame and the second steel frame are inserted into the first fixing main body, the limiting blocks and the springs are pressed and jointed on the inner wall of the first fixing main body, when the positions of the fixing blocks and the rubber buttons are reached, the limiting blocks are upwards boun, the position of being convenient for find the second bolt pole, the second bolt pole inserts the block through first block, second block after spacing, the nut is further fixed with being connected of threaded rod, only need take first bolt pole when the later stage is demolishd with first sliding block and second sliding block slip separately can to solved and generally needed to dock the coincidence back with the one end of steelframe and fixed connection structure, just can insert and establish into, and use the bolt to fix it. However, when the steel frame is in butt joint, the steel frame is too large in size, workers can spend certain time in the butt joint, the butt joint is difficult, and the subsequent use efficiency of the device is affected, so that the butt joint is inconvenient when the steel frame is installed, the connection is not firm, the working time of the workers is shortened, the working efficiency is improved, and the connection stability and the later-stage dismantling and repeated use are improved.
2. The steel frame fixing structure for the building engineering is provided with a clamping mechanism, the clamping plate is clamped on the outer surface of the outer side of the first fixing main body through the arrangement of the clamping plate, when the first steel frame and the second steel frame are in butt joint with the first fixing main body, the first steel frame and the second steel frame can be directly placed on the second roller wheel, the first steel frame and the second steel frame can be more quickly and accurately butted with the first fixing main body through the rolling of the second roller wheel, thereby further solving the problem that one end of the steel frame can be inserted into the fixed connecting structure after being butted and overlapped with the fixed connecting structure, when in butt joint, the steel frame has overlarge volume, a worker can spend certain time when in butt joint, the butt joint is difficult, and the subsequent use efficiency of the device is influenced, thereby better assurance butt joint is inconvenient when the steelframe installation, reduces workman's operating time, strengthens work efficiency, and the steadiness is connected in the reinforcing and later stage is demolishd and used repeatedly.
Drawings
FIG. 1 is a schematic front view of the structure of the present invention;
FIG. 2 is a schematic bottom sectional view of the local structure of the present invention;
fig. 3 is an enlarged schematic view of the structure at a in fig. 1 according to the present invention;
fig. 4 is a left side sectional view of a partial structure of the first sliding block and the first latch rod in fig. 3 according to the present invention;
fig. 5 is an enlarged schematic view of the structure at B in fig. 1 according to the present invention;
fig. 6 is an enlarged schematic view of the structure at C in fig. 2 according to the present invention;
fig. 7 is a left side view schematically illustrating the structure of the engaging mechanism in fig. 1 according to the present invention;
fig. 8 is a schematic sectional view of the structure of the fastening mechanism in fig. 1 according to the present invention;
fig. 9 is an enlarged schematic view of the structure at D in fig. 1 according to the present invention.
In the figure: 100. a connecting body; 110. a first stationary body; 111. a first fixing plate; 112. a first connection face; 113. a second connection face; 120. a second stationary body; 200. a sliding mechanism; 210. a first fixing lever; 211. a first roller; 220. a first slider; 230. a second slider; 240. a first latch lever; 250. a fixed block; 260. a rubber button; 270. a limiting block; 280. a spring; 290. a limiting rod; 300. a clamping mechanism; 310. a clamping plate; 320. a second fixing plate; 321. a first limit groove; 322. a second fixing bar; 323. a second roller; 400. a steel frame main body; 410. a first steel frame; 420. a second steel frame; 500. a fixing mechanism; 510. a first engaging block; 511. a threaded rod; 512. a second limit groove; 520. a second engaging block; 521. a third limiting groove; 530. a nut; 540. a second latch lever.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-9, the present invention provides an embodiment: a steel frame fixing structure for building engineering comprises a connecting main body 100, wherein the connecting main body 100 comprises a first fixing main body 110 and a second fixing main body 120, the front surface and the back surface of the first fixing main body 110 are respectively provided with a first connecting surface 112 and a second connecting surface 113, so that the installation and the removal are convenient and the installation is simple and convenient, the first connecting surface 112 and the second connecting surface 113 are provided with a sliding mechanism 200, the sliding mechanism 200 comprises a first fixing rod 210, a first sliding block 220, a second sliding block 230 and a first bolt rod 240, the first sliding block 220 and the second sliding block 230 which are convenient to install and remove in a sliding mode are clamped in the first connecting surface 112 and the second connecting surface 113 respectively, the working time and the later-period reutilization are reduced, in addition, the first connecting surface 112 and the first sliding block 220, and the second connecting surface 113 and the second sliding block 230 are fixedly penetrated by the first bolt rod 240, the stability is enhanced, the first sliding block 220 and the second sliding block 230 are prevented from unstable, the first fixing body 110 and the second fixing body 120 are fixedly connected with a steel frame body 400 to enhance stability, the lower end of the first fixing body 110 is fixedly connected with a first steel frame 410, and the right side of the second fixing body 120 is fixedly connected with a second steel frame 420.
The first latch rod 240 is connected with the first fixing body 110, the first connecting surface 112, the first sliding block 220, the second connecting surface 113 and the second sliding block 230 by using threads which enhance stability and facilitate installation and removal, and facilitates operation and later recycling.
The lower extreme of first fixed main part 110 all links firmly first fixed plate 111 of reinforcing steadiness, make its connection fastening, and first fixed plate 111 is inside all to link firmly first dead lever 210 of spacing first gyro wheel 211, make it work in the certain limit, first dead lever 210 surface all overlaps and is equipped with the first gyro wheel 211 of being convenient for to rotate, make first gyro wheel 211 can the free rotation, and first gyro wheel 211 keeps away from one section of first fixed plate 111 and all laminates with first steelframe 410 surface, make the installation of the first steelframe 410 of being convenient for of in close contact with between the two.
First fixed main part 110 openly links firmly the rubber button 260 of protection fixed block 250, and rubber button 260 is inside to be linked firmly fixed block 250, can make fixed block 250 resume original operating condition fixed connection fixed block 250 and prevent it from dropping, the bottom laminating of fixed block 250 lower surface has stopper 270, atress conduction when the later stage of being convenient for is demolishd, and stopper 270 bottom links firmly in spring 280 upper end, the reinforcing is firm to make stopper 270 resume original condition, the spring 280 bottom links firmly at the inside lower extreme of gag lever post 290, and the gag lever post 290 bottom links firmly in the inboard bottom of second steelframe 420, the reinforcing steadiness limits the rise height of stopper 270.
The right side of the second fixing body 120 is inserted into the clamping mechanism 300, so that the installation and the removal are convenient, the workload is reduced, and the engaging mechanism 300 comprises an engaging plate 310 and a second fixing plate 320, the right side of the second fixing body 120 is inserted into the engaging plate 310, so as to facilitate the installation and removal of the first steel frame 410 for reducing the installation operation and the subsequent reuse, the upper and lower ends of the right side of the engaging plate 310 are fixedly connected with a second fixing plate 320 for enhancing stability, so as to prevent falling off more firmly, the inner surface of the second fixing plate 320 is provided with a first limiting groove 321, so that the second roller 323 has a certain rotating space, and the first limiting groove 321 is fixedly connected with a second fixing rod 322 for limiting the working range of the second roller 323, so that the second roller 323 can flexibly rotate at a fixed position, and the outer surface of the second fixing rod 322 is sleeved with the second roller 323, so that the second roller 323 can conveniently rotate on the outer surface of the second fixing rod 322.
Fixing mechanisms 500 for enhancing stability are arranged between the first steel frame 410 and the first fixing main body 110, and between the second steel frame 420 and the second fixing main body 120, so that the connection is more stable, and the fixing mechanisms 500 comprise first clamping blocks 510, second clamping blocks 520, nuts 530, and second plug rods 540 for facilitating clamping and installation, so that the installation and the removal are more convenient, the first steel frame 410, the first fixing main body 110, the second steel frame 420, and the second fixing main body 120 are all embedded with the second plug rods 540 for enhancing stability so that the connection is more secure, and the second plug rods 540 are provided with second limiting grooves 512 for facilitating clamping and installation near the rubber buttons 260, so that the installation and the removal are convenient, the second limiting grooves 512 are all arranged on the first clamping blocks 510, and one sides of the first clamping blocks 510 far away from the rubber buttons 260 are all fixedly connected with threaded rods 511 for enhancing stability, so that the connection is more stable, the threaded rods 511 are all sleeved with second clamping blocks 520 for facilitating installation, reduce the installation demand, and second block 520 both sides all offer with second bolt pole 540 mutually support and be convenient for the third spacing groove 521 of installation, easy to assemble with demolish, one side that second bolt pole 540 was kept away from to second block 520 all the butt have the nut 530 of reinforcing steadiness, make to connect more tightly, and nut 530 and threaded rod 511 use the threaded connection of being convenient for install and demolish, make the later stage installation with demolish more convenient.
The working principle is as follows: firstly, the two first fixing bodies 110 are slidably engaged together, the first bolt rod 240 is used to fix the first fixing bodies 110 to prevent the first fixing bodies 110 from sliding, the limit blocks 270 on the first steel frame 410 and the second steel frame 420 are pressed down, then the first steel frame 410 and the second steel frame 420 are inserted into the first fixing bodies 110, at this time, the first steel frame 410 and the second steel frame 420 are attached to the first roller 211 to drive the first roller 211 to rotate, so as to assist the first steel frame 410 and the second steel frame 420 to be inserted, and after the limit blocks 270 reach the position of the fixing block 250, the limit blocks 270 are upwards sprung and engaged due to the elasticity of the spring 280, therefore, the holes of the first and second steel frames 410 and 420 are the same as the holes of the first fixing body 110, so that the second latch rod 540 can be smoothly inserted into and fixed to the positions of the first and second steel frames 410 and 420 and the first fixing body 110, and the first and second steel frames 410 and 420 are fixed to the first fixing body 110.
The first steel frame 410 and the second steel frame 420 are placed on the second roller 323, and the first steel frame 410 and the second steel frame 420 are quickly and accurately attached to the first fixing body 110 by the rotation of the second roller 323.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. A steel frame fixing structure for construction engineering, comprising a connecting body (100), characterized in that: the connecting main body (100) comprises a first fixing main body (110) and a second fixing main body (120), the front surface and the back surface of the first fixing main body (110) are respectively provided with a first connecting surface (112) and a second connecting surface (113), the first connecting surface (112) and the second connecting surface (113) are provided with sliding mechanisms (200), each sliding mechanism (200) comprises a first fixing rod (210), a first sliding block (220), a second sliding block (230) and a first bolt rod (240), the first sliding block (220) and the second sliding block (230) are respectively clamped inside the first connecting surface (112) and the second connecting surface (113), the first connecting surface (112), the first sliding block (220), the second connecting surface (113) and the second sliding block (230) are fixedly penetrated through by the first bolt rod (240), and steel frame main bodies (400) are fixedly connected inside the first fixing main body (110) and the second fixing main body (120), and the inside of the lower end of the first fixing main body (110) is fixedly connected with a first steel frame (410), and the inside of the right side of the second fixing main body (120) is fixedly connected with a second steel frame (420).
2. The steel frame fixing structure for construction engineering according to claim 1, characterized in that: the first bolt rod (240) is in threaded connection with the first fixing body (110), the first connecting surface (112), the first sliding block (220), the second connecting surface (113) and the second sliding block (230) respectively.
3. The steel frame fixing structure for construction engineering according to claim 1, characterized in that: the lower extreme of first fixed main part (110) has all linked firmly first fixed plate (111), and first fixed plate (111) inside has all linked firmly first dead lever (210), first dead lever (210) surface all overlaps and is equipped with first gyro wheel (211), and first gyro wheel (211) keep away from one section of first fixed plate (111) and all laminate with first steelframe (410) surface.
4. The steel frame fixing structure for construction engineering according to claim 1, characterized in that: first fixed main part (110) openly has linked firmly rubber button (260), and rubber button (260) inside has linked firmly fixed block (250), the bottom laminating of fixed block (250) lower surface has stopper (270), and stopper (270) bottom links firmly in spring (280) upper end, spring (280) bottom links firmly at the inside lower extreme of gag lever post (290), and gag lever post (290) bottom links firmly in the inboard bottom of second steelframe (420).
5. The steel frame fixing structure for construction engineering according to claim 1, characterized in that: the fixed main part of second (120) right side is inserted and is established inside block mechanism (300), and block mechanism (300) including block board (310) and second fixed plate (320), the fixed main part of second (120) right side is inserted and is established inside block board (310), and both ends have all linked firmly second fixed plate (320) about block board (310) right side, first spacing groove (321) have all been seted up to second fixed plate (320) internal surface, and first spacing groove (321) inside has all linked firmly second dead lever (322), second dead lever (322) surface all overlaps and is equipped with second gyro wheel (323).
6. The steel frame fixing structure for construction engineering according to claim 1, characterized in that: the first steel frame (410) and the first fixing main body (110), the second steel frame (420) and the second fixing main body (120) are fixed through a fixing mechanism (500), the fixing mechanism (500) comprises a first clamping block (510), a second clamping block (520), a nut (530) and a second bolt rod (540), the first steel frame (410), the first fixing main body (110), the second steel frame (420) and the second fixing main body (120) are all embedded with the second bolt rod (540), the second bolt rod (540) close to the rubber button (260) is attached to the inner side of a second limiting groove (512), the second limiting groove (512) is arranged on the first clamping block (510), one side of the first clamping block (510) far away from the rubber button (260) is fixedly connected with a threaded rod (511), and the second clamping block (520) is sleeved on the threaded rod (511), and both sides of the second clamping block (520) are provided with third limiting grooves (521) which are matched with the second bolt rod (540), one side of the second clamping block (520) far away from the second bolt rod (540) is abutted with a nut (530), and the nut (530) is in threaded connection with the threaded rod (511).
CN202021601370.8U 2020-08-04 2020-08-04 Steel frame fixed knot constructs for building engineering Active CN213114983U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021601370.8U CN213114983U (en) 2020-08-04 2020-08-04 Steel frame fixed knot constructs for building engineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021601370.8U CN213114983U (en) 2020-08-04 2020-08-04 Steel frame fixed knot constructs for building engineering

Publications (1)

Publication Number Publication Date
CN213114983U true CN213114983U (en) 2021-05-04

Family

ID=75682888

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021601370.8U Active CN213114983U (en) 2020-08-04 2020-08-04 Steel frame fixed knot constructs for building engineering

Country Status (1)

Country Link
CN (1) CN213114983U (en)

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