Concrete formwork erecting device
By designing a combination of base bracket, supporting base plate and clamp, the problems of poor supporting effect and rollover of traditional concrete formwork supporting devices are solved, diversified support and up and down adjustment are achieved, and the stability and adaptability of the device are enhanced.
Patent Information
- Application Number
- CN202511271429.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-08
- Publication Date
- 2025-10-17
AI Technical Summary
Traditional concrete formwork support devices have poor support effects during use, are difficult to meet diverse needs, cannot be adjusted up and down, and are prone to tipping over without counterweights, and cannot adapt to different types of concrete formwork.
A concrete formwork support device is designed, which includes a base bracket, a supporting base plate, a shock-absorbing buffer, a lifting frame and a clamp. Through the combination of a counterweight block, a telescopic hydraulic press and a clamp, multi-angle support and up and down adjustment can be achieved to enhance stability and adapt to different formworks.
It improves the diversity and stability of concrete formwork support, reduces the risk of rollover, can adapt to different types of formwork, and meet complex support needs.
Smart Images

Figure CN120797972A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of concrete formwork, and particularly relates to a concrete formwork erecting device. BACKGROUND
[0002] Concrete has the characteristics of rich raw materials, low price and simple production process, so its use is becoming more and more large. At the same time, concrete also has the characteristics of high compressive strength, good durability, wide strength grade range, etc. These characteristics make it widely used not only in various civil engineering, but also in shipbuilding industry, mechanical industry, ocean development, geothermal engineering, etc. Concrete is an important material.
[0003] The traditional concrete formwork erecting device has poor overall erecting effect, cannot meet the diversification of overall erecting, cannot erect from multiple angles, cannot be adjusted up and down during use, is prone to side turning without counterweight during erecting, cannot meet the use requirements, cannot erect different concrete formworks, and has poor overall erecting condition, which cannot meet the overall use requirements.
[0004] Therefore, the technical personnel in the art provide a concrete formwork erecting device to solve the problems in the background art. SUMMARY
[0005] The present application aims to provide a concrete formwork erecting device to solve the problems in the background art that the traditional concrete formwork erecting device has poor overall erecting effect, cannot meet the diversification of overall erecting, cannot erect from multiple angles, cannot be adjusted up and down during use, is prone to side turning without counterweight during erecting, cannot meet the use requirements, cannot erect different concrete formworks, and has poor overall erecting condition, which cannot meet the overall use requirements.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: The utility model provides a concrete formwork erecting device, including base support, support bottom plate, shock absorber A and shock absorber B, the top surface fixed connection of base support has concrete formwork four side support, concrete form board lifting frame A and concrete form board lifting frame B, the top surface fixed connection of support bottom plate has side edge support plate A and side edge support plate B, the top surface fixed connection of side edge support plate A and side edge support plate B has support cross bar, the bottom surface fixed connection of support cross bar has counterweight, one side fixed connection of support cross bar has fixed top block, the top surface fixed connection of support cross bar has base mounting block, one side fixed connection of fixed top block has push telescopic hydraulic pressure ware, one side fixed connection of push telescopic hydraulic pressure ware has telescopic mounting block, one side of telescopic mounting block is inserted with base mounting block, the top surface of shock absorber A is equipped with link plate A, the top surface of link plate A is equipped with telescopic regulator A, the top surface of telescopic regulator A is equipped with top side edge block A and top side edge block B, the outside fixed connection of top side edge block A has transverse holder B and longitudinal holder B, the outside fixed connection of top side edge block B has transverse holder A and longitudinal holder A, the top surface fixed connection of shock absorber B has link plate B, the top surface fixed connection of link plate B has telescopic regulator B, the top surface fixed connection of telescopic regulator B has top side edge block C and top side edge block D, one side fixed connection of top side edge block C has longitudinal holder C, one side fixed connection of top side edge block D has longitudinal holder D.
[0007] As a preferred embodiment of the utility model: the structure of concrete form board lifting frame A and concrete form board lifting frame B is same, and concrete formwork four side support and concrete form board lifting frame A are located at same height.
[0008] As a preferred embodiment of the utility model: base support includes support bottom plate, side edge support plate A, side edge support plate B, counterweight, support cross bar, base mounting block, telescopic mounting block, push telescopic hydraulic pressure ware and fixed top block.
[0009] As a preferred embodiment of the utility model: side edge support plate A and side edge support plate B are arranged in parallel, and counterweight is located between side edge support plate A and side edge support plate B.
[0010] As a preferred embodiment of the utility model: concrete formwork four side support includes shock absorber A, link plate A, telescopic regulator A, top side edge block A, top side edge block B, transverse holder A, transverse holder B, longitudinal holder A and longitudinal holder B.
[0011] As a preferred embodiment of the present application: the relative arrangement between the transverse clamps A and B, the relative arrangement between the longitudinal clamps A and B, and the vertical arrangement between the transverse clamps A and B and the longitudinal clamps A and B.
[0012] As a preferred embodiment of the present application: the concrete formwork lifting frame A includes shock absorber B, adapter plate B, telescopic adjuster B, top side block C, top side block D, longitudinal clamp C and longitudinal clamp D.
[0013] As a preferred embodiment of the present application: the four sides of the adapter plate A are provided with telescopic adjuster A, and the four sides of the adapter plate B are provided with telescopic adjuster B.
[0014] Compared with the prior art, the present application has the following advantages: The concrete formwork setting device can change the poor overall setting effect of traditional concrete formwork setting, meet the overall setting diversification, set from multiple angles, adjust up and down during use, reduce the risk of side overturning without counterweight during setting of traditional concrete formwork setting device, better meet the use requirements, set different concrete forms, make the overall setting more convenient, and better meet the overall use requirements. BRIEF DESCRIPTION OF DRAWINGS
[0015] Other features, objects and advantages of the present application will become more apparent from the following detailed description of non-limiting embodiments, with reference to the following drawings: Fig. 1 It is a three-dimensional structural schematic view of the overall structure of a concrete formwork setting device. Fig. 2 It is an isometric side view structural schematic view of the overall structure of a concrete formwork setting device. Fig. 3 It is a three-dimensional structural schematic view of the four-side support of a concrete formwork in a concrete formwork setting device. Fig. 4 It is an isometric side view structural schematic view of the four-side support of a concrete formwork in a concrete formwork setting device.
[0016] Fig. 5 It is a three-dimensional structural schematic view of the concrete formwork lifting frame A in a concrete formwork setting device.
[0017] Fig. 6 It is an isometric side view structural schematic view of the concrete formwork lifting frame A in a concrete formwork setting device.
[0018] Figure: 1, base support; 101, support bottom plate; 102, side support plate A; 103, side support plate B; 104, counterweight; 105, support crossbar; 106, base mounting block; 107, telescopic mounting block; 108, push telescopic hydraulic device; 109, fixed top block; 2, concrete formwork four-side support; 201, shock absorber A; 202, adapter plate A; 203, telescopic adjuster A; 204, top side block A; 205, top side block B; 206, horizontal clamping device A; 207, horizontal clamping device B; 208, vertical clamping device A; 209, vertical clamping device B; 3, concrete formwork lifting frame A; 301, shock absorber B; 302, adapter plate B; 303, telescopic adjuster B; 304, top side block C; 305, top side block D; 306, vertical clamping device C; 307, vertical clamping device D; 4, concrete formwork lifting frame B. DETAILED DESCRIPTION
[0019] Please refer to Figs. 1-6The embodiment of the application discloses a concrete formwork erecting device which comprises a base support 1, a supporting bottom plate 101, a shock absorber A 201 and a shock absorber B 301, the top surface of the base support 1 is fixedly connected with a concrete formwork four-side support 2, a concrete formwork lifting frame A 3 and a concrete formwork lifting frame B 4, the concrete formwork erecting device can change the characteristics that the traditional concrete formwork erecting device has poor overall erecting effect when in use, can satisfy overall erecting diversification, and can erect from multiple angles, the top surface of the supporting bottom plate 101 is fixedly connected with a side edge support plate A 102 and a side edge support plate B 103, the top surface of the side edge support plate A 102 and the side edge support plate B 103 is fixedly connected with a supporting cross rod 105, the bottom surface of the supporting cross rod 105 is fixedly connected with a counterweight 104, one side of the supporting cross rod 105 is fixedly connected with a fixed top block 109, the top surface of the supporting cross rod 105 is fixedly connected with a base mounting block 106, one side of the fixed top block 109 is fixedly connected with a pushing telescopic hydraulic device 108, one side of the pushing telescopic hydraulic device 108 is fixedly connected with a telescopic mounting block 107, one side of the telescopic mounting block 107 is inserted into the base mounting block 106, when in use, the counterweight 104 can play a placing rollover effect, then under the action of the supporting cross rod 105, a supporting effect is played, the pushing telescopic hydraulic device 108 can play a pushing effect on the telescopic mounting block 107, the base mounting block 106 can facilitate installation, the pushing telescopic mounting block 107 can drive the position of the concrete formwork lifting frame A 3 and the concrete formwork lifting frame B 4 to change, meanwhile, the concrete formwork lifting frame A 3 and the concrete formwork lifting frame B 4 can be double-adjusted, the top surface of the shock absorber A 201 is provided with a connecting plate A 202, the top surface of the connecting plate A 202 is provided with a telescopic adjuster A 203, the top surface of the telescopic adjuster A 203 is provided with a top side block A 204 and a top side block B 205, the outer side of the top side block A 204 is fixedly connected with a horizontal clamping device B 207 and a vertical clamping device B 209, the outer side of the top side block B 205 is fixedly connected with a horizontal clamping device A 206 and a vertical clamping device A 208, the top surface of the shock absorber B 301 is fixedly connected with a connecting plate B 302, the top surface of the connecting plate B 302 is fixedly connected with a telescopic adjuster B 303, the top surface of the telescopic adjuster B 303 is fixedly connected with a top side block C 304 and a top side block D 305, one side of the top side block C 304 is fixedly connected with a vertical clamping device C 306, and one side of the top side block D 305 is fixedly connected with a vertical clamping device D 307.
[0020] Please refer to Figs. 1-6, the concrete formwork four side support 2 and the concrete formwork lifting frame A3 are located at the same height. The base support 1 comprises a supporting bottom plate 101, a side edge support plate A 102, a side edge support plate B 103, a counterweight 104, a supporting cross bar 105, a base mounting block 106, a telescopic mounting block 107, a telescopic hydraulic pusher 108 and a fixed top block 109. The concrete formwork four side support 2 can play a whole supporting effect, can clamp and support on four sides, can be more stable, the concrete formwork four side support 2, the concrete formwork lifting frame A3 and the concrete formwork lifting frame B4 can be suitable for different concrete formwork supporting environments, the shock absorber B301 and the shock absorber A201 can play a shock absorbing effect, the horizontal clamping device A206, the horizontal clamping device B207, the longitudinal clamping device A208 and the longitudinal clamping device B209 can play a four-edge clamping effect, the longitudinal clamping device C306 and the longitudinal clamping device D307 can also play a side clamping effect, the side edge support plate A 102 and the side edge support plate B 103 are arranged in parallel, and the counterweight 104 is located between the side edge support plate A 102 and the side edge support plate B 103. The concrete formwork four side support 2 comprises a shock absorber A201, a connecting plate A202, a telescopic adjuster A203, a top side block A204, a top side block B205, a horizontal clamping device A206, a horizontal clamping device B207, a longitudinal clamping device A208 and a longitudinal clamping device B209. The horizontal clamping device A206 and the horizontal clamping device B207 are oppositely arranged, the longitudinal clamping device A208 and the longitudinal clamping device B209 are oppositely arranged, and the horizontal clamping device A206 and the horizontal clamping device B207 are perpendicularly arranged between the longitudinal clamping device A208 and the longitudinal clamping device B209. When in use, it can play a role of up and down adjustment, and can reduce the side overturning of the traditional concrete formwork supporting device in the process of supporting without counterweight, better meet the use demand, at the same time, different concrete formworks can be supported, the whole supporting condition can be more convenient, and the whole use demand can be better met. The concrete formwork lifting frame A3 comprises a shock absorber B301, a connecting plate B302, a telescopic adjuster B303, a top side block C304, a top side block D305, a longitudinal clamping device C306 and a longitudinal clamping device D307. The connecting plate A202 is provided with the telescopic adjuster A203 around, and the connecting plate B302 is provided with the telescopic adjuster B303 around.
[0021] It needs to be explained that the present application is a concrete formwork supporting device, including 1, base support; 101, support bottom plate; 102, side support plate A; 103, side support plate B; 104, counterweight; 105, support cross bar; 106, base mounting block; 107, telescopic mounting block; 108, push telescopic hydraulic device; 109, fixed top block; 2, concrete formwork four-side support; 201, shock absorber A; 202, adapter plate A; 203, telescopic adjuster A; 204, top side block A; 205, top side block B; 206, horizontal clamping device A; 207, horizontal clamping device B; 208, longitudinal clamping device A; 209, longitudinal clamping device B; 3, concrete formwork lifting frame A; 301, shock absorber B; 302, adapter plate B; 303, telescopic adjuster B; 304, top side block C; 305, top side block D; 306, longitudinal clamping device C; 307, longitudinal clamping device D; 4, concrete formwork lifting frame B, the components are general standard components or components known to those skilled in the art, and the structure and principle thereof can be known by technical personnel through technical manual or through conventional experimental method.
[0022] The working principle of the present application is that the traditional concrete formwork supporting device can be changed to have poor overall supporting effect, can meet the overall supporting diversification, can be supported from multiple angles, and can be placed and turned over by the counterweight 104 when in use. Then, under the action of the support cross bar 105, the supporting effect is achieved. The telescopic mounting block 107 can be pushed by the push telescopic hydraulic device 108. The base mounting block 106 can facilitate installation. The telescopic mounting block 107 can drive the position of the concrete formwork lifting frame A 3 and the concrete formwork lifting frame B 4 to change. At the same time, the concrete formwork lifting frame A 3 and the concrete formwork lifting frame B 4 can be double-adjusted. The concrete formwork four-side support 2 can achieve the overall supporting effect and can clamp and support four sides to be more stable. The concrete formwork four-side support 2, the concrete formwork lifting frame A 3 and the concrete formwork lifting frame B 4 can be suitable for different concrete formwork supporting environments. The shock absorber B 301 and the shock absorber A 201 can achieve the shock absorption effect. The horizontal clamping device A 206, the horizontal clamping device B 207, the longitudinal clamping device A 208 and the longitudinal clamping device B 209 can achieve the four-edge clamping effect. The longitudinal clamping device C 306 and the longitudinal clamping device D 307 can also achieve the side clamping effect. When in use, the up-down adjustment effect can be achieved, and the traditional concrete formwork supporting device can be prevented from being easily turned over without counterweight when supporting, which can better meet the use requirements and support different concrete forms. The overall supporting condition can be more convenient, and the overall use requirements can be better met.
[0023] The above merely provides the preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any person skilled in the art can make equivalent substitutions or changes according to the technical scheme and the inventive concept of the present application within the technical scope disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A concrete formwork support device, comprising a base support (1), a supporting base plate (101), a shock absorbing buffer A (201) and a shock absorbing buffer B (301), characterized in that: The top surface of the base support (1) is fixedly connected to the four side supports (2) of the concrete formwork, the concrete formwork lifting frame A (3) and the concrete formwork lifting frame B (4); the top surface of the support bottom plate (101) is fixedly connected to the side support plate A (102) and the side support plate B (103); the top surfaces of the side support plate A (102) and the side support plate B (103) are fixedly connected to the support cross bar (105); the bottom surface of the support cross bar (105) is fixedly connected to the counterweight block (104); One side of the crossbar (105) is fixedly connected to a fixed top block (109), the top surface of the supporting crossbar (105) is fixedly connected to a base mounting block (106), one side of the fixed top block (109) is fixedly connected to a telescopic hydraulic actuator (108), one side of the telescopic hydraulic actuator (108) is fixedly connected to a telescopic mounting block (107), one side of the telescopic mounting block (107) is plugged into the base mounting block (106), and the top surface of the shock-absorbing buffer A (201) is provided with a connecting plate. A (202), the top surface of the connecting plate A (202) is provided with a telescopic adjuster A (203), the top surface of the telescopic adjuster A (203) is provided with a top side block A (204) and a top side block B (205), the outer side of the top side block A (204) is fixedly connected with a transverse clamper B (207) and a longitudinal clamper B (209), the outer side of the top side block B (205) is fixedly connected with a transverse clamper A (206) and a longitudinal clamper A (208), the reducing The top surface of the shock absorber B (301) is fixedly connected to a connecting plate B (302), the top surface of the connecting plate B (302) is fixedly connected to a telescopic adjuster B (303), the top surface of the telescopic adjuster B (303) is fixedly connected to a top side block C (304) and a top side block D (305), one side of the top side block C (304) is fixedly connected to a longitudinal clamp C (306), and one side of the top side block D (305) is fixedly connected to a longitudinal clamp D (307).
2. A concrete formwork supporting device according to claim 1, characterized in that: The concrete formwork lifting frame A (3) and the concrete formwork lifting frame B (4) have the same structure, and the four side supports (2) of the concrete formwork and the concrete formwork lifting frame A (3) are located at the same height.
3. A concrete formwork supporting device according to claim 1, characterized in that: The base support (1) comprises a supporting bottom plate (101), a side support plate A (102), a side support plate B (103), a counterweight (104), a supporting crossbar (105), a base mounting block (106), a telescopic mounting block (107), a telescopic hydraulic actuator (108), and a fixed top block (109).
4. A concrete formwork supporting device according to claim 1, characterized in that: The side support plate A (102) and the side support plate B (103) are arranged in parallel, and the counterweight (104) is located between the side support plate A (102) and the side support plate B (103).
5. A concrete formwork supporting device according to claim 1, characterized in that: The four-side brackets (2) of the concrete formwork include a shock-absorbing buffer A (201), a connecting plate A (202), a telescopic adjuster A (203), a top side block A (204), a top side block B (205), a transverse clamp A (206), a transverse clamp B (207), a longitudinal clamp A (208), and a longitudinal clamp B (209).
6. A concrete formwork supporting device according to claim 1, characterized in that: The transverse clamp A (206) and the transverse clamp B (207) are arranged relative to each other, the longitudinal clamp A (208) and the longitudinal clamp B (209) are arranged relative to each other, and the transverse clamp A (206) and the transverse clamp B (207) are arranged perpendicular to the longitudinal clamp A (208) and the longitudinal clamp B (209).
7. A concrete formwork supporting device according to claim 1, characterized in that: The concrete formwork lifting frame A (3) comprises a shock-absorbing buffer B (301), a connecting plate B (302), a telescopic adjuster B (303), a top side block C (304), a top side block D (305), a longitudinal clamp C (306) and a longitudinal clamp D (307).
8. A concrete formwork supporting device according to claim 1, characterized in that: The connecting plate A (202) is provided with telescopic adjusters A (203) on all four sides, and the connecting plate B (302) is provided with telescopic adjusters B (303) on all four sides.