Building aluminum formwork structure integrated with vibrating function
By integrating a vibrating device into the aluminum formwork of the building, the problems of difficulty in controlling the speed, duration and spacing of manual vibration are solved, the uniformity of concrete vibration is achieved and the construction quality is improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-27
AI Technical Summary
In the construction process of existing aluminum formwork, the speed, duration and spacing of concrete vibration are difficult to control accurately during manual vibration, resulting in uneven concrete vibration and affecting construction quality.
Design a building aluminum formwork structure with integrated vibration function. By installing a vibration device inside the aluminum formwork, and using the cooperation of transmission components and double-headed screws, the limit block and L-shaped block are driven to stabilize the position of the vibrator on the aluminum formwork and achieve uniform transmission of vibration waves.
It improves the accuracy of vibration during construction, reduces the possibility of uneven concrete vibration, and enhances the quality of concrete molding.
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Figure CN224048656U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building aluminium formwork field, specifically, relate to a kind of integrated vibrating function's building aluminium formwork structure. BACKGROUND
[0002] Building formwork is a kind of temporary support structure, according to design requirement, make, so that concrete structure, component is shaped according to specified position, geometric dimension, keep its correct position, and bear building formwork self-weight and external load acting on it, the purpose of formwork engineering, guarantee concrete engineering quality and construction safety, speed up construction progress and reduce engineering cost.
[0003] At present, the existing building aluminium formwork is generally vibrated by artificial to the cast concrete, which leads to difficult to accurately control the speed, time length, spacing of vibration in the construction process, often causes uneven concrete vibration, easy to make concrete molding component quality deviation is larger, affect the construction quality of concrete, thereby produce economic loss. UTILITY MODEL CONTENTS
[0004] In order to make up for the above shortcomings, the utility model provides a kind of integrated vibrating function's building aluminium formwork structure, to improve the existing building aluminium formwork is generally vibrated by artificial to the cast concrete, which leads to difficult to accurately control the speed, time length, spacing of vibration in the construction process, often causes uneven concrete vibration.
[0005] The utility model is realized as follows:
[0006] The utility model provides a kind of integrated vibrating function's building aluminium formwork structure, including aluminium formwork body and vibrating device.
[0007] The aluminium formwork body is connected with support plate, the vibrating device includes transmission part and double-end screw rod, the transmission part and the double-end screw rod are rotatably connected in the support plate, and the transmission part is connected with the double-end screw rod, the surface of the two threaded segments of the double-end screw rod is all threadedly connected with limit block, the limit block is slidably arranged on the surface of the support plate, the vibrator is arranged in the aluminium formwork body, the surface of the vibrator is provided with fixed ring group, the surface of the fixed ring group is connected with L-shaped block, the L-shaped block is attached to the limit block, the side surface of the support plate is connected with restriction block, and the L-shaped block is attached to the support plate and the restriction block respectively.
[0008] In one embodiment of the utility model, the transmission part includes connecting rod, first bevel gear and knob, the connecting rod is rotatably connected in the support plate, and the connecting rod is connected with the first bevel gear and the knob respectively, the first bevel gear is connected with the double-end screw rod, and the knob is located outside the support plate.
[0009] In an embodiment of the utility model, the double -end screw surface is connected with second bevel gear, second bevel gear is engaged with first bevel gear meshing connection.
[0010] In an embodiment of the utility model, the support plate is T-shaped, and a cavity is formed in the support plate, the first bevel gear and the second bevel gear are arranged in the cavity.
[0011] In an embodiment of the utility model, the limiting block surface is connected with the guide block, the support plate surface is provided with the limiting slot, the guide block is arranged in the limiting slot slidingly, and the L-shaped block one end is attached to the limiting slot inner wall.
[0012] In an embodiment of the utility model, the vibrator is slidably provided with a fixing rod, one end of the fixing rod is provided with a bottom plate, the bottom plate is attached to the inner wall of the aluminum formwork body and the vibrator respectively, a nut is threadedly connected to the surface of the fixing rod, and the nut is attached to the surface of the vibrator.
[0013] In an embodiment of the utility model, the fixing rod is provided with a plurality of protrusions, and one end of the fixing rod is connected with a protrusion, and the surface of the bottom plate is provided with a groove corresponding to the protrusion.
[0014] In an embodiment of the utility model, the fixing ring group includes a first fixing ring and a second fixing ring, the first fixing ring and the second fixing ring are sleeved on the surface of the vibrator, the first fixing ring and the second fixing ring are connected by bolts, and the L-shaped block is fixedly connected with the first fixing ring.
[0015] The utility model discloses a building aluminum formwork structure with integrated vibration function, which has the following beneficial effects: when used, the fixing ring group is installed on the surface of the vibrator, the L-shaped block is inserted into the support plate, the transmission member drives the double -end screw to rotate through the cooperation of the transmission member and the double -end screw, and then drives two limiting blocks to be attached to the side surface of the corresponding L-shaped block. Since the L-shaped block is attached to the support plate and the limiting block, the stability of the L-shaped block and the vibrator on the aluminum formwork body is improved. By starting the vibrator, the vibration wave generated by the vibrator is indirectly transmitted to the concrete through the aluminum formwork body. In the construction process, it is difficult to accurately control the vibration speed, time length and spacing, which often causes uneven vibration of the concrete. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings used in the embodiments of the present application will be briefly introduced as follows. Obviously, the following drawings only show some of the embodiments of the present application, and should not be considered as limiting the scope. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0017] Figure 1 is a structural schematic view of the building aluminum formwork structure provided by the embodiments of the present application with integrated vibrating function;
[0018] Figure 2 is a structural partial sectional view of the structure provided by the embodiments of the present application with support plate and double-end screw connection;
[0019] Figure 3 is a structural schematic view of the structure provided by the embodiments of the present application with support plate and L-shaped block connection;
[0020] Figure 4 is a structural partial schematic view of the structure provided by the embodiments of the present application with double-end screw and transmission member connection;
[0021] Figure 5 is a structural partial schematic view of the structure provided by the embodiments of the present application with vibrator and fixed ring group connection.
[0022] In the drawings: 100-aluminum formwork body; 110-support plate; 111-cavity; 112-limiting groove; 120-limiting block; 200-vibrating device; 210-transmission member; 211-connection rod; 212-first bevel gear; 213-knob; 220-double-end screw; 221-second bevel gear; 230-limiting block; 231-guiding block; 240-vibrator; 241-bottom plate; 250-fixed ring group; 251-first fixed ring; 252-second fixed ring; 253-bolt; 260-L-shaped block; 270-fixed rod; 271-nut; 272-protruding block. DETAILED DESCRIPTION
[0023] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0024] EMBODIMENT
[0025] Please refer toFigures 1-5 The utility model provides a kind of integrated building aluminum formwork structure of vibrating function, including aluminum formwork body 100 and vibrating device 200.
[0026] Wherein, vibrating device 200 is installed on the support plate 110 of aluminum formwork body 100, by vibrating device 200, the vibration wave generated by it indirectly gives concrete through aluminum formwork body 100, reduce in construction process, it is difficult to accurately control the speed, time length, spacing of vibrating, often cause the possibility of uneven concrete vibrating.
[0027] Please refer to Figures 1-3 Aluminum formwork body 100 is connected with support plate 110.
[0028] Please refer to Figures 1-5 Vibrating device 200 includes transmission member 210 and double-end screw 220, transmission member 210 and double-end screw 220 are rotatably connected in support plate 110, and transmission member 210 is drivingly connected with double-end screw 220, the surface of the two threaded segments of double-end screw 220 is all threadedly sleeved with limit block 230, limit block 230 is slidably arranged on the surface of support plate 110, vibrator 240 is provided in aluminum formwork body 100, fixed ring group 250 is sleeved on the surface of vibrator 240, L-shaped block 260 is connected on the surface of fixed ring group 250, L-shaped block 260 is attached with limit block 230, support plate 110 side is connected with limit block 120, L-shaped block 260 is attached with support plate 110 and limit block 120 respectively, in specific implementation, fixed ring group 250 is sleeved on the surface of vibrator 240, vibrator 240 is placed in aluminum formwork body 100, then L-shaped block 260 on fixed ring group 250 is inserted into support plate 110, by rotating transmission member 210, it drives double-end screw 220 to rotate, and then drives two limit blocks 230 to move relatively along the surface of support plate 110, two limit blocks 230 will be attached with the side of corresponding L-shaped block 260, by the cooperation of limit block 230 and support plate 110, the movement of L-shaped block 260 can be limited, then by limit block 120, L-shaped block 260 can be fixed, benefit the stability of L-shaped block 260 and vibrator 240 on aluminum formwork body 100, by starting vibrator 240, the vibration wave generated by it indirectly gives concrete through aluminum formwork body 100, reduce in construction process, it is difficult to accurately control the speed, time length, spacing of vibrating, often cause the possibility of uneven concrete vibrating, it needs to be explained that the battery (not shown) for providing power for vibrator 240 is provided in the support plate 110.
[0029] In the embodiment, the transmission member 210 comprises a connecting rod 211, a first bevel gear 212 and a knob 213, the connecting rod 211 is rotationally connected in the support plate 110, and the connecting rod 211 is connected with the first bevel gear 212 and the knob 213 respectively, the first bevel gear 212 is in transmission connection with the double-headed screw rod 220, and the knob 213 is located outside the support plate 110; the double-headed screw rod 220 is connected with a second bevel gear 221 on the surface, and the second bevel gear 221 is in meshing connection with the first bevel gear 212.
[0030] The support plate 110 is T-shaped, and a cavity 111 is formed in the support plate 110, and the first bevel gear 212 and the second bevel gear 221 are arranged in the cavity 111; in the specific implementation, the first bevel gear 212 and the second bevel gear 221 are placed in the cavity 111, so that the possibility of wear of the first bevel gear 212 and the second bevel gear 221 due to external influence is reduced; the limiting block 230 is connected with a guide block 231 on the surface, a limiting groove 112 is formed on the surface of the support plate 110, the guide block 231 is slidingly arranged in the limiting groove 112, one end of the L-shaped block 260 is attached to the inner wall of the limiting groove 112, in the specific implementation, the one end of the L-shaped block 260 is inserted into the limiting groove 112 of the support plate 110, so that the one end of the L-shaped block 260 is attached to the side wall of the limiting groove 112, and then the L-shaped block 260 is attached to the support plate 110, the limiting block 230 and the limiting block 120, so as to improve the stability of the L-shaped block 260, the fixing ring set 250 and the vibrator 240 in the aluminum formwork body 100; when the double-headed screw rod 220 rotates, the guide block 231 on the surface of the limiting block 230 can move along the inner wall of the limiting groove 112, so as to stabilize the limiting block 230 during movement; when the guide block 231 moves along the inner wall of the limiting groove 112, the guide block 231 can be attached to the inner wall of one side of the limiting groove 112, so as to reduce the possibility that the limiting block 230 falls off the surface of the double-headed screw rod 220.
[0031] The vibrator 240 is slidingly arranged with a fixing rod 270, one end of the fixing rod 270 is provided with a bottom plate 241, the bottom plate 241 is attached to the inner wall of the aluminum formwork body 100 and the vibrator 240 respectively, a nut 271 is threadedly connected to the surface of the fixing rod 270, and the nut 271 is attached to the surface of the vibrator 240; in the specific implementation, the vibrator 240 is connected to the bottom plate 241 through the fixing rod 270, a convex block 272 is attached to the inner wall of the groove on the surface of the bottom plate 241, and then the vibrator 240 is fixed through the nut 271, so as to stabilize the connection between the vibrator 240 and the bottom plate 241; the vibrator 240 is started to indirectly transmit the vibration wave generated by the vibrator 240 to the concrete through the bottom plate 241 and the aluminum formwork body 100, so as to vibrate the concrete; the fixing rod 270 is provided with a plurality of fixing rods 270, and one end of the fixing rod 270 is connected with the convex block 272; the surface of the bottom plate 241 is provided with a groove corresponding to the convex block 272.
[0032] The fixed ring set 250 comprises a first fixed ring 251 and a second fixed ring 252, both of which are sleeved on the surface of the vibrator 240, and the first fixed ring 251 and the second fixed ring 252 are connected through a bolt 253, and the L-shaped block 260 is fixedly connected with the first fixed ring 251, and in specific implementation, the first fixed ring 251 and the second fixed ring 252 can be disassembled from the vibrator 240 by disassembling the bolt 253, which facilitates disassembling and replacing the vibrator 240.
[0033] Specifically, the working principle of the building aluminum formwork structure integrated with the vibrating function is as follows: in use, the first fixed ring 251 and the second fixed ring 252 are installed on the surface of the vibrator 240 through the bolt 253, the L-shaped block 260 is inserted into the limiting groove 112 on the surface of the support plate 110 and is attached to the side wall of the limiting groove 112, the knob 213 is rotated to drive the connecting rod 211 and the first bevel gear 212 to rotate, the first bevel gear 212 drives the second bevel gear 221 and the double-headed screw rod 220 to rotate, and then the two limiting blocks 230 are relatively moved and attached to the side of the corresponding L-shaped block 260, because the L-shaped block 260 is attached to the support plate 110 and the limiting block 120, the L-shaped block 260 and the vibrator 240 are stable on the aluminum formwork body 100, the vibrator 240 is started to indirectly transmit the vibration wave generated by the bottom plate 241 and the aluminum formwork body 100 to the concrete, which is beneficial to vibrating the concrete and reducing the difficulty in accurately controlling the speed, time length and spacing of vibration in the construction process, and the possibility of uneven vibration of the concrete is reduced.
[0034] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and various modifications and changes can be made by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A construction aluminum formwork structure integrated with a vibrating function, characterized by, The utility model relates to an aluminum formwork body (100) is connected with support plate (110) in the aluminum formwork body (100); Vibrating device (200), the vibrating device (200) includes transmission part (210) and stud bolt (220), transmission part (210) and stud bolt (220) are all rotatably connected in support plate (110), and transmission part (210) is drivingly connected with stud bolt (220), the surface of the two threaded segments of stud bolt (220) is all threadedly connected with limit block (230), limit block (230) is slidably arranged on the surface of support plate (110), and the vibrating device (240) is arranged in the aluminum formwork body (100), the surface of vibrating device (240) is sleeved with fixed ring group (250), the surface of fixed ring group (250) is connected with L-shaped block (260), L-shaped block (260) is attached to limit block (230), and the side surface of support plate (110) is connected with limiting block (120), and L-shaped block (260) is attached to support plate (110) and limiting block (120) respectively. Transmission part (210) includes connecting rod (211), first bevel gear (212) and knob (213), connecting rod (211) is rotatably connected in support plate (110), and connecting rod (211) is connected with first bevel gear (212) and knob (213) respectively, first bevel gear (212) is drivingly connected with stud bolt (220), and knob (213) is located outside support plate (110).
2. The building aluminum formwork structure integrated with the vibrating function according to claim 1, characterized in that, The surface of stud bolt (220) is connected with second bevel gear (221), and second bevel gear (221) is meshingly connected with first bevel gear (212).
3. The building aluminum formwork structure integrated with the vibrating function according to claim 2, characterized in that, Support plate (110) is T-shaped, and a cavity (111) is formed in support plate (110), and first bevel gear (212) and second bevel gear (221) are arranged in the cavity (111).
4. The building aluminum formwork structure integrated with the vibrating function according to claim 3, characterized in that, The surface of limit block (230) is connected with guide block (231), and a limiting groove (112) is formed in the surface of support plate (110), guide block (231) is slidably arranged in the limiting groove (112), and one end of L-shaped block (260) is attached to the inner wall of limiting groove (112).
5. The building aluminum formwork structure integrated with the vibrating function according to claim 1, characterized in that, A fixing rod (270) is slidably arranged in vibrating device (240), one end of fixing rod (270) is provided with a bottom plate (241), the bottom plate (241) is attached to the inner wall of vibrating device (240) and the aluminum formwork body (100) respectively, and a nut (271) is threadedly connected to the surface of fixing rod (270), and the nut (271) is attached to the surface of vibrating device (240).
6. The construction aluminum formwork structure integrated with a vibrating function according to claim 1, characterized in that, A plurality of fixing rods (270) are arranged, and one end of fixing rod (270) is connected with a protrusion (272), and a groove corresponding to protrusion (272) is formed in the surface of bottom plate (241).
7. The building aluminum formwork structure integrated with the vibrating function according to claim 6, characterized in that, 8. The building aluminum formwork structure integrated with the vibrating function according to claim 1, characterized in that, The fixed ring set (250) comprises a first fixed ring (251) and a second fixed ring (252), the first fixed ring (251) and the second fixed ring (252) are sleeved on the surface of the vibrator (240), and the first fixed ring (251) and the second fixed ring (252) are connected through bolts (253), and the L-shaped block (260) is fixedly connected with the first fixed ring (251).