CN117328665A - A high-level reinforcement system for low exterior walls - Google Patents

A high-level reinforcement system for low exterior walls Download PDF

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Publication number
CN117328665A
CN117328665A CN202311234727.1A CN202311234727A CN117328665A CN 117328665 A CN117328665 A CN 117328665A CN 202311234727 A CN202311234727 A CN 202311234727A CN 117328665 A CN117328665 A CN 117328665A
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CN
China
Prior art keywords
frame
block
adjusting
sliding
driving
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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
CN202311234727.1A
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Chinese (zh)
Inventor
宁少波
周宁
周茂
郭正权
倪克
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Longshangcheng Construction Jiangsu Co ltd
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Longshangcheng Construction Jiangsu Co ltd
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Application filed by Longshangcheng Construction Jiangsu Co ltd filed Critical Longshangcheng Construction Jiangsu Co ltd
Priority to CN202311234727.1A priority Critical patent/CN117328665A/en
Publication of CN117328665A publication Critical patent/CN117328665A/en
Pending legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G11/00Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs
    • E04G11/06Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs for walls, e.g. curved end panels for wall shutterings; filler elements for wall shutterings; shutterings for vertical ducts
    • E04G11/08Forms, which are completely dismantled after setting of the concrete and re-built for next pouring
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G17/00Connecting or other auxiliary members for forms, falsework structures, or shutterings
    • E04G17/06Tying means; Spacers ; Devices for extracting or inserting wall ties
    • E04G17/065Tying means, the tensional elements of which are threaded to enable their fastening or tensioning
    • E04G17/0655Tying means, the tensional elements of which are threaded to enable their fastening or tensioning the element consisting of several parts
    • E04G17/0657Tying means, the tensional elements of which are threaded to enable their fastening or tensioning the element consisting of several parts fully recoverable
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G17/00Connecting or other auxiliary members for forms, falsework structures, or shutterings
    • E04G17/06Tying means; Spacers ; Devices for extracting or inserting wall ties
    • E04G17/12Tying means; Spacers ; Devices for extracting or inserting wall ties with arms engaging the forms

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Forms Removed On Construction Sites Or Auxiliary Members Thereof (AREA)

Abstract

本申请涉及一种外矮墙高处加固系统,涉及建筑施工辅助设备技术领域;其包括两排模板,还包括多个架体,每一所述架体均包括横向架与两个竖向架,两排所述模板均位于两个竖向架之间,两排所述模板相远离的一侧,均分别与对应竖向架的侧壁相抵,所述横向架位于模板的上侧,所述横向架与每一竖向架均连接。本申请具有如下效果:当需要对支撑外矮墙的模板进行加固时,相关人员能够拿取多个架体,从上到下将每一架体均插设于两排模板外侧,并使得每一竖向架均与对应的模板相抵,从而对模板进行夹紧加固,从而方便了相关人员对模板的加固,降低了对模板加固所需的时长,进而提高了对模板进行加固的效率。

This application relates to a high-place reinforcement system for external low walls, in the technical field of construction auxiliary equipment; it includes two rows of formwork, and also includes a plurality of frames, each of which includes a transverse frame and two vertical frames. , both rows of the formwork are located between the two vertical frames, and the sides of the two rows of formwork that are far apart are offset by the side walls of the corresponding vertical frames, and the transverse frame is located on the upper side of the formwork, so The horizontal frame is connected to each vertical frame. This application has the following effects: when it is necessary to reinforce the formwork supporting the outer low wall, the relevant personnel can take multiple racks and insert each rack on the outside of the two rows of formwork from top to bottom, so that each rack can Each vertical frame offsets the corresponding formwork, thereby clamping and strengthening the formwork, which facilitates relevant personnel to reinforce the formwork, reduces the time required to reinforce the formwork, and thereby improves the efficiency of reinforcing the formwork.

Description

Outer short wall eminence reinforcement system
Technical Field
The application relates to the technical field of building construction auxiliary equipment, in particular to an outer short wall high-place reinforcing system.
Background
Along with the continuous development of social economy and the increasing of the scientific and technical level, the construction industry in China is also continuously developed, and the outer short wall is used as a wall body formed by pouring concrete slurry and is generally built on a building body, thus having important effect on the construction industry.
For the related technology, as the external short wall in the prior art needs to be supported by the template during pouring, and when the external short wall is supported, an operator needs to build a scaffold outside the template, then the scaffold reaches the higher position of the template, the template is reinforced, and finally the reinforcement and the support of the external short wall are realized, so that the time required for pouring the external short wall is greatly increased, and the overall efficiency of construction is reduced.
Disclosure of Invention
In order to improve the efficiency of reinforcing the formwork, the application provides an outer short wall high-place reinforcing system.
The application provides an outer low wall eminence reinforcement system adopts following technical scheme:
the utility model provides an outer low wall eminence reinforcement system, includes two rows of templates, still includes a plurality of support bodies, each the support body all includes horizontal frame and two vertical framves, two rows the template all is located between two vertical framves, two rows one side that the template kept away from mutually, all offsets with the lateral wall that corresponds vertical frame respectively, horizontal frame is located the upside of template, horizontal frame all is connected with each vertical frame.
Through adopting above-mentioned technical scheme, compare in prior art and need operating personnel to build the scaffold frame in the outside of template, then rethread scaffold frame reaches the higher position department of template, the setting of this application to horizontal frame and vertical frame, make when need consolidate the template that supports outer short wall, a plurality of support bodies can be taken to relevant personnel, from the top down all insert each support body and locate two rows of template outsides, and make each extension all offset with corresponding template, thereby carry out the clamp fastening to the template, thereby the reinforcement of relevant personnel to the template has been made things convenient for, the required duration of template reinforcement has been reduced, and then the efficiency of reinforcing to the template has been improved.
Preferably, the upper side of the transverse frame is also provided with a connecting frame, the connecting frame is connected with the top end of the vertical frame, the connecting frames are respectively provided with a reinforcing frame along the two ends of the length direction of the connecting frames, the two ends of each reinforcing frame are respectively connected with the connecting frames and the bottom ends of the corresponding vertical frames, and the reinforcing frames and the vertical frames are arranged at an acute angle.
Through adopting above-mentioned technical scheme, to the setting of link and reinforcing frame for can constitute triangle-shaped structure between reinforcing frame, extension and the link, thereby increase the structural stability of extension, and then reduce the extension because offset with the template for a long time, and lead to the bottom to take place crooked probability, and then effectively guaranteed offset between extension and the template, finally guaranteed the reinforcement effect to the template.
Preferably, the top of each vertical frame is in sliding connection with the transverse frame, the sliding direction of the vertical frame is the length direction of the vertical frame, each top of the reinforcing frame is provided with a sliding block, the sliding block is rotationally connected with the corresponding reinforcing frame, each sliding block is sleeved on the connecting frame and is in sliding connection with the connecting frame, and the bottom of each reinforcing frame is rotationally connected with the corresponding vertical frame.
Through adopting above-mentioned technical scheme, set up extension and horizontal frame sliding connection, make relevant personnel can slide the extension, thereby adjust the overall height that adds the support body, thereby adapt to the needs of the outer low wall of co-altitude, consolidate the template of co-altitude, thereby the application scope of this application outer low wall eminence reinforcement system has been improved, and then the practicality of this application has been improved, simultaneously, concrete setting to sliding block and reinforcement frame, make the extension frame when sliding downwards, the reinforcement frame can take place the displacement, two sliding blocks are in opposite directions and go on this moment, and then the displacement of adaptation reinforcement frame, make between reinforcement frame, link and the extension frame be a triangle-shaped structure all the time, keep the structural stability of extension frame.
Preferably, one of the sliding blocks is further provided with a locking mechanism, the locking mechanism comprises an inserting block, an elastic piece and an unlocking component, the inserting block is located in the sliding block and is in sliding connection with the sliding block, a plurality of inserting grooves for inserting the inserting block are formed in the connecting frame, the elastic piece is located between the inserting block and the inner wall of the sliding block and is used for enabling the inserting block to reset, and the unlocking component is used for driving the inserting block to slide and move out of the inserting grooves.
Through adopting above-mentioned technical scheme, set up locking structure for after the extension frame slides downwards and accomplishes, insert and establish the piece and can take place to slide and insert and locate corresponding inserting under the elasticity effect of elastic component and establish the inslot, thereby lock the piece that slides, and then realize the locking to vertical frame through the locking to the piece that slides, thereby guarantee the stability of vertical frame, unlocking assembly's existence simultaneously, also can make relevant personnel outside the locking piece slips out inserting the inslot through unlocking assembly, realize the unblock to the piece that slides, make relevant personnel can withdraw the extension frame.
Preferably, the unlocking assembly comprises a driven rack, a driving gear, a rotating frame, a linkage frame and a driving block, wherein the driven rack is connected with the locking block and is in sliding connection with the sliding block, the sliding direction of the driven rack is the sliding direction of the locking block, the driving gear is rotationally connected with the sliding block and meshed with the driven rack, the rotating frame is connected with the driving gear, one end of the linkage frame is rotationally connected with the rotating frame, the other end of the linkage frame is rotationally connected with the driving block, and the driving block is in sliding connection with the sliding block. .
Through adopting above-mentioned technical scheme, to unlocking module's concrete setting for relevant personnel can slide through the drive slider, thereby make the slider drive the linkage frame and take place the displacement, make take place to rotate with the rotating frame, thereby drive driving gear's rotation, and then make driven rack take place to slide, and drive the locking piece roll-off insert the locking groove of establishing, and then realize the unblock to the slider, realize the unblock to the extension frame, make relevant personnel can withdraw the extension frame after using.
Preferably, the locking mechanism further comprises a pulling assembly, the pulling assembly comprises a pulling frame and an abutting block, the driving block is sleeved outside the pulling frame and is rotationally connected with the pulling frame, one end of the pulling frame extends out of the sliding block and is in sliding connection with the sliding block, the abutting block is connected with the outer side wall of the sliding block, one end of the pulling frame, which extends out of the sliding block, abuts against the abutting block, and the pulling frame is prevented from sliding to one side close to the driving block.
Through adopting above-mentioned technical scheme, to the setting of pulling subassembly for relevant personnel want to drive the driving piece and slide, thereby when carrying out the unblock to the sliding piece, relevant personnel can be through pulling the pulling frame, make the pulling frame drive the driving piece and slide, finally realize the unblock to the sliding piece, after the unblock is accomplished, rotate the pulling frame, make the lateral wall of pulling frame offset with the butt piece, thereby prevent to pull the frame to being close to the direction of driving piece and slide, and then make the sliding piece keep the unblock state, make the user accomodate the extension.
Preferably, the transverse frame comprises a middle frame and two adjusting frames, the two adjusting frames are respectively positioned at two ends of the middle frame and are in sliding connection with the middle frame, each adjusting frame is in sliding connection with the vertical frame, and an adjusting mechanism is further arranged on the middle frame and used for adjusting the sliding of the two adjusting frames.
Through adopting above-mentioned technical scheme, to the concrete setting of horizontal frame for when the thickness of outer short wall changes, relevant personnel can be through the alignment jig that slides, thereby adjust the whole width of support body, thereby adapt to the needs of the outer short wall of different thickness, adapt to two templates of different intervals, thereby improved the application scope of the outer short wall eminence reinforcement system of this application, and then improved the practicality of this application.
Preferably, the adjusting mechanism comprises an adjusting assembly and a driving assembly, the adjusting assembly comprises an adjusting screw, an adjusting slide block and two driving frames, the adjusting screw is rotationally connected with the middle frame, the adjusting screw is in threaded connection with the adjusting slide block, the adjusting slide block is in sliding connection with the middle frame, the two driving frames are rotationally connected with the adjusting slide block, the two driving frames are respectively rotationally connected with the two adjusting frames, and the driving assembly is used for driving the adjusting screw to rotate.
Through adopting above-mentioned technical scheme, setting up of adjustment mechanism for when the whole width of relevant personnel need adjust the support body, relevant personnel can rotate through drive assembly drive adjusting screw, thereby make with adjusting screw threaded connection's adjusting slide slip, make two drive frames all take place the displacement, and then drive two adjust frames and take place back to displacement, and then realize the regulation to the support body width.
Preferably, the driving assembly comprises a driving gear set, a rotating rod and a rotating handle, wherein the rotating rod is rotationally connected with the middle frame, the rotating handle is connected with the rotating rod, and the rotating rod drives the adjusting screw rod to rotate through the driving gear set.
Through adopting above-mentioned technical scheme, to drive assembly's concrete setting for when relevant personnel need adjust the whole width of support body, relevant personnel can rotate the handle through rotating, thereby drive the dwang and rotate, and then drive adjusting screw through drive gear train and rotate, thereby made things convenient for relevant personnel's operation, also improved the efficiency of relevant personnel's regulation support body whole width simultaneously.
Preferably, the rotating handle is in sliding connection with the rotating rod, the sliding direction of the rotating handle is the axis direction of the rotating rod, a plurality of locking blocks are further arranged on the peripheral wall of the rotating handle, locking grooves are further formed in the middle frame, and the locking blocks are inserted into the locking grooves to lock the rotating handle.
Through adopting above-mentioned technical scheme, setting to the locking piece for when relevant personnel adjust the completion, relevant personnel can rotate the handle through sliding, make the rotation handle be close to the middle frame, and make the locking piece on the rotation handle insert the locking inslot of locating on the middle frame, thereby lock the rotation handle, and then realize the locking to the dwang, finally realize the locking to the alignment jig.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the transverse frames and the vertical frames are arranged, so that when the templates supporting the outer short wall are required to be reinforced, related personnel can take a plurality of frames, each frame is inserted into the outer sides of two rows of templates from top to bottom, and each extension part is propped against the corresponding template, so that the templates are clamped and reinforced, the related personnel can conveniently reinforce the templates, the time required by reinforcing the templates is reduced, and the efficiency of reinforcing the templates is improved;
2. the extension part is arranged in sliding connection with the transverse frame, so that related personnel can slide the extension part, the overall height of the frame body is adjusted, the requirements of outer short walls with different heights are met, templates with different heights are reinforced, the application range of the outer short wall high reinforcing system is improved, and the practicability of the system is improved;
3. to the concrete setting of horizontal frame for when the thickness of outer short wall changes, relevant personnel can be through the alignment jig that slides, thereby adjust the whole width of support body, thereby adapt to the needs of the outer short wall of different thickness, adapt to two templates of different intervals, thereby improved the application scope of the outer short wall eminence reinforcement system of this application, and then improved the practicality of this application.
Drawings
Fig. 1 is a schematic diagram of the whole of the external short wall high-rise reinforcement system according to embodiment 1 of the present application.
Fig. 2 is a schematic structural diagram for embodying the frame in embodiment 2 of the present application.
Fig. 3 is a schematic structural view for embodying the adjusting assembly in embodiment 2 of the present application.
FIG. 4 is a schematic view showing the structure of a turning rod according to embodiment 2 of the present application
FIG. 5 is a schematic view of the structure for embodying the unlocking component in embodiment 2 of the present application
Reference numerals illustrate: 1. a template; 2. a frame body; 21. a transverse frame; 211. a middle frame; 2111. a locking groove; 212. an adjusting frame; 22. a vertical frame; 23. a connecting frame; 231. inserting grooves; 24. a reinforcing frame; 25. a synchronous frame; 251. a sliding part; 26. a pedal; 27. a sliding block; 3. an adjusting mechanism; 31. an adjustment assembly; 311. adjusting a screw; 312. an adjusting slide block; 313. a drive rack; 32. a drive assembly; 321. a drive gear set; 3211. a bevel gear; 322. a rotating lever; 323. rotating the handle; 3231. a locking block; 4. a locking mechanism; 41. inserting a block; 42. an elastic member; 43. unlocking the assembly; 431. a driven rack; 432. a drive gear; 433. a rotating frame; 434. a linkage frame; 435. a driving block; 44. a drive assembly; 441. a drive rack; 442. an abutment block; 4421. a limit groove; 45. pulling the block.
Detailed Description
The present application is described in further detail below in conjunction with figures 1-5.
Example 1:
the embodiment 1 of the application discloses an outer low wall high-altitude reinforcement system. Referring to fig. 1, the external short wall high reinforcement system includes two rows of formworks 1 and a plurality of frames 2, and a position between the two rows of formworks 1 is used for pouring the external short wall. Each frame body 2 comprises a transverse frame 21 and two vertical frames 22, the two vertical frames 22 are vertically arranged, and the two rows of templates 1 are located between the two vertical frames 22. One side of the two rows of templates 1, which are far away from each other, respectively props against the side wall of the corresponding vertical frame 22, the transverse frame 21 is positioned on the upper side of the templates 1, and the transverse frame 21 is connected with the top ends of the two vertical frames 22.
Referring to fig. 1, two vertical frames 22 are fixedly connected with both ends of the transverse frame 21 in the length direction thereof by welding, respectively. A connecting frame 23 is also arranged above the transverse frame 21, and the bottom ends of the connecting frames 23 are fixedly connected with the top ends of the two vertical frames 22 through welding. The connecting frame 23 is arranged in parallel with the transverse frame 21, the connecting frame 23 is perpendicular to the vertical frame 22, and reinforcing frames 24 are arranged at two ends of the connecting frame 23 along the length direction of the connecting frame.
Referring to fig. 1, the reinforcement frames 24 are disposed in one-to-one correspondence with the vertical frames 22, the top end of each reinforcement frame 24 is fixedly connected with the connection frame 23 by welding, and the bottom end of each reinforcement frame 24 is fixedly connected with the corresponding vertical frame 22 by welding. Each reinforcing frame 24 forms an acute angle with the corresponding vertical frame 22.
The implementation principle of the outer low wall high-place reinforcing system of the embodiment 1 of the application is as follows: when the formwork 1 supporting the outer low wall is required to be reinforced, relevant personnel take a plurality of frame bodies 2, each frame body 2 is inserted into the outer sides of the two rows of the formworks 1 from top to bottom, each vertical frame 22 is propped against the corresponding formwork 1, the formwork 1 is clamped and reinforced, the reinforcement of the formwork 1 by relevant personnel is facilitated, the time required for reinforcing the formwork 1 is reduced, and the efficiency of reinforcing the formwork 1 is improved.
Example 2:
example 2 of the present application differs from example 1 in that: referring to fig. 2 and 3, the transverse frame 21 includes a middle frame 211 and two adjusting frames 212, the middle frame 211 is sleeved on the two adjusting frames 212, and the two adjusting frames 212 are respectively located at two sides of the middle frame 211 along the length direction thereof. Each adjusting frame 212 is slidably connected to the middle frame 211, and the sliding direction of each adjusting frame 212 is the axial direction of the middle frame 211.
Referring to fig. 2 and 3, the number of the connection frames 23 is two, the connection frames 23 are arranged in one-to-one correspondence with the adjustment frames 212, and one end of each connection frame 23 close to the other connection frame 23 is fixedly connected with the top end of the adjustment frame 212 by welding. Each vertical frame 22 is provided with a synchronous frame 25, the bottom end of each synchronous frame 25 is fixedly connected with the lower side of the adjusting frame 212 of the vertical frame 22 through welding, and each synchronous frame 25 extends upwards and extends to the position of the top end of the connecting frame 23. Each of the synchronous frames 25 extends along a direction approaching the other synchronous frame 25 with a sliding portion 251, wherein one sliding portion 251 is sleeved on the other sliding portion 251, the two sliding portions 251 are in sliding connection, and the sliding direction of the sliding portion 251 is the sliding direction of the adjusting frame 212.
Referring to fig. 2 and 3, the vertical frames 22 are disposed in one-to-one correspondence with the adjusting frames 212, and each adjusting frame 212 is sleeved on the corresponding vertical frame 22 and is slidably connected with the vertical frame 22, and the sliding direction of the vertical frame 22 relative to the adjusting frame 212 is a vertical direction. A pedal 26 is arranged at the bottom end of one of the vertical frames 22, and the pedal 26 is fixedly connected with the vertical frame 22 through welding. Optionally, an end of the vertical frame 22 near another vertical frame 22 is coplanar with a sidewall of the adjusting frame 212 to better reinforce the form 1.
Referring to fig. 2 and 3, the bottom end of each reinforcement frame 24 is rotatably connected to the bottom end of the corresponding vertical frame 22 through a pin, and a sliding block 27 is disposed on the top end of each reinforcement frame 24, and the sliding block 27 is rotatably connected to the reinforcement frame 24 through a pin. Each sliding block 27 is sleeved on the corresponding connecting frame 23 and is in sliding connection with the corresponding connecting frame 23. When the vertical frame 22 slides downwards, the reinforcement frame 24 displaces, so that the sliding block 27 slides towards the direction close to the other sliding block 27, and the sliding of the vertical frame 22 is adapted.
Referring to fig. 2 and 3, the intermediate frame 211 is further provided with an adjusting mechanism 3 for driving the two adjusting frames 212 to slide. The adjusting mechanism 3 comprises an adjusting assembly 31 and a driving assembly 32, the adjusting assembly 31 comprises an adjusting screw 311, an adjusting sliding block 312 and two groups of driving frames 313, the top end and the bottom end of the adjusting screw 311 are respectively and rotatably connected with the middle frame 211 through bearings, and the adjusting screw 311 is vertically arranged. The adjusting screw 311 is provided with threads, the adjusting slide block 312 is sleeved on the adjusting screw 311 and is in threaded connection with the adjusting screw 311, and the adjusting slide block 312 is in sliding connection with the middle frame 211.
Referring to fig. 2 and 3, two sets of driving frames 313 are disposed in one-to-one correspondence with two adjusting frames 212, and optionally, two driving frames 313 in each set are disposed, and the two driving frames 313 are respectively disposed at opposite sides of the corresponding adjusting frame 212. The top end of each driving frame 313 is rotatably connected with the adjusting slide block 312 through a pin shaft, and the bottom end of each driving frame 313 is rotatably connected with the corresponding adjusting frame 212 through a pin shaft.
Referring to fig. 2 and 3, when the distance between two adjusting frames 212 needs to be adjusted, a person holds the middle frame 211 first, then drives the adjusting screw 311 to rotate through the driving assembly 32, the adjusting screw 311 rotates to drive the adjusting slide blocks 312 in threaded connection with the adjusting screw 312 to slide, and at the moment, the adjusting slide blocks 312 drive each driving frame 313 to displace, so that the two adjusting frames 212 slide oppositely or back to back at the same time, and further, the distance between the adjusting frames 212 is adjusted, so that the adjusting frames 212 can adapt to the thickness of an outer short wall.
Referring to fig. 3 and 4, the driving assembly 32 includes a driving gear set 321, a rotating lever 322 and a rotating handle 323, the driving gear set 321 includes two bevel gears 3211, the rotating lever 322 is rotatably connected with the middle frame 211 through a bearing, and an axis of the rotating lever 322 is perpendicular to an axis of the adjusting screw 311. One end of the rotating rod 322 extends out of the middle frame 211, one conical gear 3211 is fixedly sleeved on the top of the adjusting screw 311, the other conical gear 3211 is fixedly sleeved on the rotating rod 322, and the two conical gears 3211 are meshed.
Referring to fig. 3 and 4, a rotating handle 323 is sleeved on one end of the rotating rod 322 extending out of the middle frame 211 and is slidably connected with the rotating rod 322. A plurality of locking blocks 3231 are further arranged on a side wall of the rotating handle 323, which is close to the middle frame 211, and each locking block 3231 is fixedly connected with the rotating handle 323 through integral forming. The locking blocks 3231 are distributed around the axis circumference of the rotating rod 322 at equal angles, the side wall of the middle frame 211 is also provided with a plurality of locking grooves 2111 which are inserted by the locking blocks 3231, the locking grooves 2111 correspond to the locking blocks 3231 one by one, and the locking blocks 3231 are inserted in the corresponding locking grooves 2111.
Referring to fig. 2, 3 and 4, in an initial state, the rotating handle 323 slides against the side wall of the middle frame 211, at this time, the locking block 3231 is inserted into the locking groove 2111, when the distance between the two adjusting frames 212 needs to be adjusted, the related personnel holds the middle frame 211 first, then slides the rotating handle 323 to the end of the rotating rod 322 far away from the adjusting screw 311, at this time, the locking block 3231 slides out of the locking groove 2111, then rotates the rotating handle 323, the rotating handle 323 drives the rotating rod 322 to rotate together, and then drives one conical gear 3211 to rotate, and drives the adjusting screw 311 to rotate through the other conical gear 3211. After the adjustment, the turning handle 323 is slid in a direction approaching the intermediate frame 211, and the lock block 3231 is inserted into the corresponding lock groove 2111 to lock the turning handle 323.
Referring to fig. 2 and 5, a plurality of inserting grooves 231 are formed in the top wall and the bottom wall of the connecting frame 23 adjacent to the pedal 26, and the distribution direction of the inserting grooves 231 is the length direction of the connecting frame 23. The locking mechanism 4 is further arranged in the sliding block 27 on the connecting frame 23 close to the pedal 26, the locking mechanism 4 comprises an inserting block 41, an elastic piece 42, an unlocking component 43 and a pulling component 44, and the number of the inserting block 41, the number of the elastic piece 42 and the number of the unlocking component 43 are two and are arranged in a one-to-one correspondence mode. The two insertion blocks 41 are respectively located at the upper and lower sides of the connection frame 23 and are respectively inserted into the insertion grooves 231 of the upper and lower walls of the connection frame 23.
Referring to fig. 2 and 5, each inserting block 41 is slidably connected with the corresponding sliding block 27, the sliding direction of each inserting block 41 is vertical, and the bottom wall of one end of each inserting block 41, which is close to the other connecting frame 23, is provided with an arc-shaped guiding surface. Alternatively, the elastic member 42 is a pressure spring, the elastic member 42 is located at one side of the insertion block 41 away from the corresponding connection frame 23, the elastic member 42 is sleeved on one end of the insertion block 41, and two ends of the elastic member 42 respectively abut against the inner walls of the corresponding insertion block 41 and the sliding block 27.
Referring to fig. 2 and 5, the unlocking assembly 43 includes a driven rack 431, a driving gear 432, a rotating frame 433, a linkage frame 434 and a driving block 435, one end of the driven rack 431 is fixedly connected with the corresponding insertion block 41, the driven rack 431 is slidably connected with the inner wall of the sliding block 27, and the sliding direction of the driven rack 431 is the sliding direction of the insertion block 41. The driving gear 432 is rotatably connected with the sliding block 27 through a pin shaft, and the driving gear 432 is meshed with the driven rack 431. One end of the rotating frame 433 is fixedly connected with the side wall of the driving gear 432 through a welding machine, and the axis of the rotating frame 433 is intersected with the axis of the driving gear 432.
Referring to fig. 2 and 5, the other end of the rotating frame 433 is rotatably connected to one end of the link frame 434 by a pin, the other end of the link frame 434 is rotatably connected to the driving block 435 by a pin, and the driving block 435 is slidably connected to the inner wall of the sliding block 27. The sliding direction of the driving block 435 is perpendicular to the sliding direction of the driven rack 431. The pulling assembly 44 comprises a pulling frame 443 and an abutting block 442, wherein one end of the pulling frame 443 is sleeved in one end of the driving block 435 far away from the linkage frame 434, and is rotatably connected with the driving block 435 through a bearing.
Referring to fig. 2 and 5, the other end of the pulling frame 443 extends out of the sliding block 27 and is rotatably coupled to the sliding block 27 through a bearing. The pulling block 45 is provided at one end of the pulling frame 443 extending out of the sliding block 27, and the pulling block 45 is fixedly connected with the pulling frame 443 by integral molding. One side wall of the abutting frame is fixedly connected with the side wall of the sliding block 27 in an integrated mode, a limiting groove 4421 is formed in the abutting frame, and the pulling block 45 is embedded in the limiting groove 4421 to prevent the pulling block 45 from rotating.
Referring to fig. 2 and 5, in the initial state, the insertion block 41 is inserted into the insertion groove 231, and at this time, the pulling block 45 is inserted into the limiting groove 4421. When the person steps on the pedal 26 to slide the vertical frame 22 downwards, the reinforcement frame 24 is displaced, so that the two sliding blocks 27 are driven to move in opposite directions. At this time, the guide surface on the insertion block 41 abuts against the side end wall of the insertion groove 231, so that the insertion block 41 is pushed to slide, and the sliding block 27 is separated from the insertion groove 231, so that the sliding block can slide smoothly. At this time, the elastic member 42 is compressed, the driven rack 431 drives the driving gear 432 to rotate, so that the rotating frame 433 drives the linkage frame 434 to displace, and the rotation of the linkage frame 434 drives the driving block 435 to slide.
Referring to fig. 2 and 5, when the vertical rack 22 is required to slide upwards to be stored after the use is completed, a person pulls the pulling rack 443 to slide outwards through the pulling block 45, the pulling rack 443 drives the driving block 435 to slide, and then the linkage rack 434 drives the rotating rack 433 to rotate, so that the driving gear 432 drives the driven rack 431 to slide, and the inserting block 41 is separated from the inserting groove 231. At this time, the pulling block 45 is separated from the limiting groove 4421, and the related person rotates the pulling block 45 again, so that the pulling block 45 is dislocated from the limiting groove 4421, and further, the side wall of the pulling block 45 abuts against the side wall of the abutting block 442, so that the pulling frame 443 maintains the state, and further, the inserting block 41 maintains the state of unlocking the sliding block 27. Then, the related personnel slide the vertical frame 22 upwards again, and at this time, the two sliding blocks 27 move back and forth and slide to the end parts of the corresponding transverse frames 21 respectively, so that the storage is realized.
The implementation principle of the outer low wall high-place reinforcing system of the embodiment 2 of the application is as follows: when the adjustable bracket is used, the distance between the two adjusting brackets 212 is adjusted according to the distance between the templates 1, related personnel hold the middle bracket 211, then slide the rotating handle 323 to one end of the rotating rod 322 far away from the adjusting screw 311, at the moment, the locking block 3231 slides out of the locking groove 2111, then rotate the rotating handle 323, the rotating handle 323 drives the adjusting screw 311 to rotate through the driving gear set 321, and then the adjusting slide block 312 slides, so that the pulling bracket 443 drives the two adjusting brackets 212 to move opposite or opposite. After the adjustment is completed, the turning handle 323 is slid, so that the locking block 3231 is inserted into the corresponding locking groove 2111, and locking is completed.
Then, the related personnel steps on the pedal 26 according to the height of the outer short wall, so that when the vertical frame 22 slides downwards, the reinforcing frame 24 displaces, and the two sliding blocks 27 are driven to move in opposite directions. At this time, the guide surface on the insertion block 41 abuts against the side end wall of the insertion groove 231, so that the insertion block 41 is pushed to slide, and the sliding block 27 is separated from the insertion groove 231, so that the sliding block can slide smoothly. After the adjustment is completed, each frame body 2 is inserted into the outer sides of the two rows of templates 1 from top to bottom, and each vertical frame 22 is propped against the corresponding template 1, so that the templates 1 are clamped and reinforced.
The foregoing are all preferred embodiments of the present application, and are not intended to limit the scope of the present application in any way, therefore: all equivalent changes in structure, shape and principle of this application should be covered in the protection scope of this application.

Claims (10)

1. The utility model provides an outer low wall eminence reinforcement system, includes two rows of templates (1), its characterized in that: still include a plurality of support body (2), every support body (2) all include horizontal frame (21) and two vertical framves (22), two rows template (1) all are located between two vertical framves (22), two rows template (1) one side that keeps away from mutually all offsets with the lateral wall that corresponds vertical frame (22) respectively, horizontal frame (21) are located the upside of template (1), horizontal frame (21) all are connected with each vertical frame (22).
2. An exterior low wall elevation reinforcement system according to claim 1, wherein: the upper side of horizontal frame (21) still is provided with link (23), link (23) are connected with the top of vertical frame (22), link (23) all are provided with reinforcement frame (24) on the both ends of self length direction, the both ends of reinforcement frame (24) are connected with link (23) and the bottom of corresponding vertical frame (22) respectively, reinforcement frame (24) are an acute angle setting with vertical frame (22).
3. An exterior low wall elevation reinforcement system according to claim 2, wherein: each top of vertical frame (22) all with transverse frame (21) sliding connection, the slip direction of vertical frame (22) is self length direction, each the top of reinforcement frame (24) all is provided with slider (27), slider (27) rotate with corresponding reinforcement frame (24) and are connected, each slider (27) cover is located on link (23), and with link (23) sliding connection, each the bottom of reinforcement frame (24) all rotates with corresponding vertical frame (22) to be connected.
4. An exterior low wall elevation reinforcement system according to claim 3, wherein: one of the locking mechanisms (4) is further arranged on the sliding block (27), the locking mechanism (4) comprises an inserting block (41), an elastic piece (42) and an unlocking component (43), the inserting block (41) is located in the sliding block (27) and is in sliding connection with the sliding block (27), a plurality of inserting grooves (231) for inserting the inserting block (41) are formed in the connecting frame (23), the elastic piece (42) is located between the inserting block (41) and the inner wall of the reinforcing block and used for resetting the inserting block (41), and the unlocking component (43) is used for driving the inserting block (41) to slide out of the inserting grooves (231).
5. The exterior low wall elevation reinforcement system of claim 4, wherein: the unlocking component (43) comprises a driven rack (431), a driving gear (432), a rotating frame (433) and a linkage frame (434) and a driving block (435), wherein the driven rack (431) is connected with a locking block (3231) and is in sliding connection with the sliding block (27), the sliding direction of the driven rack (431) is the sliding direction of the locking block (3231), the driving gear (432) is rotationally connected with the sliding block and meshed with the driven rack (431), the rotating frame (433) is connected with the driving gear (432), one end of the linkage frame (434) is rotationally connected with the rotating frame (433), and the other end of the linkage frame (434) is rotationally connected with the driving block (435), and the driving block (435) is in sliding connection with the sliding block (27).
6. The exterior low wall elevation reinforcement system of claim 5, wherein: the locking mechanism (4) further comprises a pulling assembly (44), the pulling assembly (44) comprises a pulling frame (441) and an abutting block (442), the driving block (435) is sleeved outside the pulling frame (441) and is rotationally connected with the pulling frame (441), one end of the pulling frame (441) extends out of the sliding block (27) and is in sliding connection with the sliding block (27), the abutting block (442) is connected with the outer side wall of the sliding block (27), and one end of the pulling frame (441) extending out of the sliding block (27) abuts against the abutting block (442) to prevent the driving frame (313) from sliding to one side close to the driving block (435).
7. An exterior low wall elevation reinforcement system according to claim 1, wherein: the transverse frame (21) comprises a middle frame (211) and two adjusting frames (212), the two adjusting frames (212) are respectively located at two ends of the middle frame (211) and are in sliding connection with the middle frame (211), each adjusting frame (212) is in sliding connection with the vertical frame (22), an adjusting mechanism (3) is further arranged on the middle frame (211), and the adjusting mechanism (3) is used for adjusting the sliding of the two adjusting frames (212).
8. The exterior low wall elevation reinforcement system of claim 7, wherein: adjustment mechanism (3) are including adjusting part (31) and drive assembly (32), adjusting part (31) are including adjusting screw (311), adjusting slide (312) and two drive frames (313), adjusting screw (311) are connected with intermediate frame (211) rotation, adjusting screw (311) and adjusting slide (312) threaded connection, adjusting slide (312) and intermediate frame (211) sliding connection, two drive frames (313) all are connected with adjusting slide (312) rotation, two drive frames (313) are connected with two adjusting frames (212) rotation respectively, drive assembly (32) are used for driving adjusting screw (311) rotation.
9. The exterior low wall elevation reinforcement system of claim 8, wherein: the driving assembly (32) comprises a driving gear set (321), a rotating rod (322) and a rotating handle (323), the rotating rod (322) is rotationally connected with the middle frame (211), the rotating handle (323) is connected with the rotating rod (322), and the rotating rod (322) drives the adjusting screw (311) to rotate through the driving gear set (321).
10. The exterior low wall elevation reinforcement system of claim 9, wherein: the rotary handle (323) is in sliding connection with the rotary rod (322), the sliding direction of the rotary handle (323) is the axis direction of the rotary rod (322), a plurality of locking blocks (3231) are further arranged on the peripheral wall of the rotary handle (323), a locking groove (2111) is further formed in the middle frame (211), and the locking blocks (3231) are used for locking the rotary handle (323) through being inserted into the locking groove (2111).
CN202311234727.1A 2023-09-22 2023-09-22 A high-level reinforcement system for low exterior walls Pending CN117328665A (en)

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Application Number Priority Date Filing Date Title
CN202311234727.1A CN117328665A (en) 2023-09-22 2023-09-22 A high-level reinforcement system for low exterior walls

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Application Number Priority Date Filing Date Title
CN202311234727.1A CN117328665A (en) 2023-09-22 2023-09-22 A high-level reinforcement system for low exterior walls

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102493642A (en) * 2011-11-30 2012-06-13 中国建筑第六工程局有限公司 Method of adopting tool type clamp to support ground beam template side molds
CN109723217A (en) * 2019-02-22 2019-05-07 贵州黔航交通工程有限公司 Concrete blinding reinforcing, extracting apparatus
CN210342669U (en) * 2019-07-16 2020-04-17 中国建筑第七工程局有限公司 Anti-bank activity reinforcing apparatus of cast in situ concrete
CN212105136U (en) * 2020-04-08 2020-12-08 中交一公局集团有限公司 Template reinforcing apparatus and subassembly
CN212562472U (en) * 2020-06-19 2021-02-19 中冶建工集团有限公司 Deformation joint shaping template reinforcing system
KR102510222B1 (en) * 2022-04-14 2023-03-14 강흥구 Supporting apparatus for beam form

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102493642A (en) * 2011-11-30 2012-06-13 中国建筑第六工程局有限公司 Method of adopting tool type clamp to support ground beam template side molds
CN109723217A (en) * 2019-02-22 2019-05-07 贵州黔航交通工程有限公司 Concrete blinding reinforcing, extracting apparatus
CN210342669U (en) * 2019-07-16 2020-04-17 中国建筑第七工程局有限公司 Anti-bank activity reinforcing apparatus of cast in situ concrete
CN212105136U (en) * 2020-04-08 2020-12-08 中交一公局集团有限公司 Template reinforcing apparatus and subassembly
CN212562472U (en) * 2020-06-19 2021-02-19 中冶建工集团有限公司 Deformation joint shaping template reinforcing system
KR102510222B1 (en) * 2022-04-14 2023-03-14 강흥구 Supporting apparatus for beam form

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