Construction formwork deformation correcting device

The construction formwork deformation correction device, which integrates the feeding, straightening, discharging, and stacking mechanisms, solves the problem of formwork deformation during construction, achieves efficient formwork straightening and stacking, and reduces construction costs.

CN223629261UActive Publication Date: 2025-12-05刘小波 +2
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Patent Information

Application Number
CN202423283215.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-05
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In the construction process, the deformation of formwork leads to problems with its service life. Existing technologies cannot effectively solve the deformation problem, and there is an urgent need to provide a formwork deformation correction device.

Method used

The construction formwork deformation correction device is a construction formwork deformation correction device that integrates a plate feeding, correction, plate discharging and plate stacking mechanism. Through the combination of the plate pushing mechanism, the correction mechanism and the plate stacking mechanism, the formwork can be corrected and stacked, thereby improving the formwork utilization rate and reducing construction costs.

Benefits of technology

It achieves efficient correction of formwork and stacked construction formwork, thereby increasing the service life of formwork and reducing construction costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a construction formwork deformation correcting device which comprises a rack, a feeding roller, a belt wheel transmission mechanism I, a feeding motor, a baffle, a plate pushing mechanism, a support, an adjusting lead screw, a mounting block, a correcting driven wheel, a correcting driving wheel, a correcting motor and a belt wheel transmission mechanism II. According to the template straightening device, a template needing to be straightened can be accurately fed into the straightening channel through the template pushing mechanism, and the template is straightened by the straightening driving wheel 11 and the straightening driven wheel 10, so that the utilization rate of the template is improved, and the construction cost is reduced. And the corrected templates can be tidily stacked through cooperation of the template pushing mechanism and the template hooking mechanism, so that mechanical stacking of the templates is realized while efficient correction of the deformed templates is realized, and the labor cost is greatly reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to template correction technical field, concretely relates to a construction template deformation correction device. BACKGROUND

[0002] In the concrete pouring process of building construction, a large number of templates are usually used, and wood templates are prone to deformation due to uneven stress in the use process, which affects the service life of the template, and if used again, it will cause quality problems to the construction process and the quality of concrete structure, and the disposal of the deformed template will inevitably increase the construction cost of the project, therefore, in order to make the deformed template be used again in the construction process, a construction template deformation correction device is urgently needed. CONTENT OF THE UTILITY MODEL

[0003] In order to solve the problems in the background art, the utility model provides a construction template deformation correction device integrating feeding plate, correction, plate outlet and plate stacking mechanism, so that the deformed template can be used again, effectively reducing the construction cost.

[0004] In order to achieve the above-mentioned purpose, the utility model is realized by the following technical scheme:

[0005] A construction template deformation correction device comprises a rack 1, a feeding roller 2, a belt wheel transmission mechanism I 3, a feeding motor 4, a baffle 5, a push plate mechanism 6, a support 7, an adjusting screw rod 8, a mounting block 9, a correction driven wheel 10, a correction driving wheel 11, a correction motor 12 and a belt wheel transmission mechanism II 13, the feeding roller 2 is evenly arranged at equal intervals on the rack 1 to form a feeding channel, and two adjacent feeding rollers 2 are connected through the belt wheel transmission mechanism I 3, wherein the belt wheel transmission mechanism of one of the feeding rollers 2 is connected with the driving shaft fixedly installed on the feeding motor 4; a baffle 5 is fixedly installed at the end of the discharge end of the feeding channel, a push plate mechanism 6 is installed on the feeding channel corresponding to the discharge port of the feeding channel, a double-layer support 7 is fixedly installed on the rack 1 at the discharge port of the feeding channel, the lower layer of the support 7 is evenly provided with correction driving wheels 11 at equal intervals, two adjacent correction driving wheels 11 are connected through the belt wheel transmission mechanism II 13, one of the correction driving wheels 11 is connected with the driving shaft of the correction motor 12 fixedly installed at the bottom of the support 7 through the belt wheel transmission mechanism, the upper layer of the support 7 is provided with correction driven wheels 10 corresponding to the correction driving wheels 11, the correction driving wheels 11 and the correction driven wheels 10 form a template correction channel, the two ends of the correction driven wheels 10 are rotatably installed on the mounting blocks 9, and each mounting block 9 is fixedly installed at the lower end of an adjusting screw rod 8, and the adjusting screw rod 8 is installed in the thread formed in the upper layer of the support 7.

[0006] Further, the push plate mechanism 6 includes guide rod I 6-1, electric push rod 6-2, push plate frame 6-3, push plate 6-4, two guide rod I 6-1 is fixedly installed on the rack 1, the push plate frame 6-3 is slidably installed on the two guide rod I 6-1, the electric push rod 6-2 is fixedly installed on the rack 1, the telescopic end of the electric push rod 6-2 is fixed on the push plate frame 6-3, the push plate frame 6-3 is installed with two push plates 6-4, the sidewall of the rack 1 is provided with an opening for placing the push plate 6-4, the upper part of the two push plates 6-4 extends from the gap of the feeding roller 2.

[0007] Further, the output of the template correction channel formed by the correction driving wheel 11 and the correction driven wheel 10 is provided with a stacking mechanism 14, the stacking mechanism 14 includes a bottom plate 14-1, a U-shaped mounting frame 14-2, a guide column 14-3, a screw rod 14-4, a support frame 14-5, a lifting motor 14-6, an output roller 14-7, a U-shaped baffle 14-8, the bottom plate 14-1 is fixedly installed with four guide columns 14-3, the U-shaped mounting frame 14-2 is fixedly installed on the top of the four guide columns 14-3, the opening of the U-shaped mounting frame 14-2 is opposite to the correction channel, the opening of the U-shaped mounting frame 14-2 is respectively installed with a lifting motor 14-6 on the two side rods, the power output end of the lifting motor 14-6 is connected with the upper end of the screw rod 14-4, the lower end of the screw rod 14-4 is installed on the bottom plate 14-1 through a bearing, the two side rods of the opening of the U-shaped mounting frame 14-2 are respectively slidably installed with a support frame 14-5 corresponding to the two guide columns 14-3, and the support frame 14-5 is provided with a threaded hole corresponding to the screw rod 14-4, and the two support frames 14-5 are uniformly installed with the output roller 14-7 at equal intervals.

[0008] Further, the upper part of the correction driving wheel 11 is installed with a hook plate mechanism 15, the hook plate mechanism 15 includes a fixed frame 15-1, an output guide rod 15-2, an electric push rod II 15-3, an output frame II 15-4, a cross rod 15-5, a hook plate grab 15-6, a pin shaft 15-7, the fixed frame 15-1 is fixedly installed on the support 7, the two ends of the two output guide rods 15-2 are respectively fixed on the fixed frame 15-1 and the support 7, the output frame II 15-4 is slidably installed on the two output guide rods 15-2, the electric push rod II 15-3 is fixedly installed on the fixed frame 15-1, the telescopic end of the electric push rod II 15-3 is fixed on the output frame II 15-4, the output frame II 15-4 is provided with two cross rods 15-5, the front end of the two cross rods 15-5 is installed with a hook plate grab 15-6 through a pin shaft 15-7, the front side of the hook plate grab 15-6 opposite to the correction channel is provided with an arc-shaped structure, the rear side of the hook plate grab 15-6 is a vertical plane structure, the top of the hook plate grab 15-6 is a horizontal plane structure parallel to the bottom surface of the cross rod 15-5, and the distance between the lower end surface of the hook plate grab 15-6 and the diameter top end of the output roller 14-7 is less than the thickness of a template.

[0009] Further, the inner side of the U-shaped mounting frame 14-2 is provided with an opening U-shaped baffle 14-8 opposite the correction channel, and the upper end of the U-shaped baffle 14-8 is higher than the upper end of the U-shaped mounting frame 14-2.

[0010] The utility model discloses the beneficial effects of:

[0011] The utility model discloses a construction template deformation correction device, including frame 1, feed roller 2, pulley drive mechanism I 3, feed motor 4, baffle 5, push plate mechanism 6, support 7, adjusting screw 8, mounting block 9, correction driven wheel 10, correction driving wheel 11, correction motor 12, pulley drive mechanism II 13.

[0012] The utility model discloses a construction template deformation correction device, including frame 1, feed roller 2, pulley drive mechanism I 3, feed motor 4, baffle 5, push plate mechanism 6, support 7, adjusting screw 8, mounting block 9, correction driven wheel 10, correction driving wheel 11, correction motor 12, pulley drive mechanism II 13. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is the structure schematic diagram of the utility model;

[0014] Figure 2 It is the rear side structure schematic diagram of the utility model;

[0015] Figure 3 It is the structure schematic diagram of the utility model after removing the stack board mechanism;

[0016] Figure 4 It is the structure schematic diagram of the utility model push plate mechanism;

[0017] Figure 5 It is the structure schematic diagram of the utility model stack board mechanism;

[0018] Figure 6 It is the structure schematic diagram of the utility model hook board mechanism. DETAILED DESCRIPTION

[0019] In order to make the purpose, technical scheme and beneficial effect of the utility model more clearly, the preferred embodiment of the utility model will be explained in detail below, with the drawings, to facilitate the understanding of the technical personnel.

[0020] As Figures 1-3 The utility model discloses a construction template deformation correction device, including frame 1, feed roller 2, pulley drive mechanism I 3, feed motor 4, baffle 5, push plate mechanism 6, support 7, adjusting screw 8, mounting block 9, correction driven wheel 10, correction driving wheel 11, correction motor 12, pulley drive mechanism II 13.

[0021] The equidistantly uniform feeding rollers 2 are installed on the frame 1 to form a feeding channel, and two adjacent feeding rollers 2 are connected by a belt wheel transmission mechanism I 3, one of which is connected with the driving shaft of the feeding motor 4; a baffle 5 is fixedly installed at the end of the feeding channel. The template to be corrected is placed on the feeding rollers 2 of the feeding channel, and the feeding motor 4 is started to work, and the feeding rollers 2 connected with the feeding motor 4 are driven to rotate by the belt wheel transmission mechanism, and the remaining feeding rollers 2 are driven to rotate by the belt wheel transmission mechanism I 3, so that the feeding rollers 2 on the whole frame 1 rotate, and the template to be corrected placed thereon can be conveyed from one end to the other end under the rotation transmission of the rotating feeding rollers 2, and when the template to be corrected touches the baffle 5, the template to be corrected cannot be conveyed forward, so that the template to be corrected can be conveyed to the correct position.

[0022] A push plate mechanism 6 is installed on the feeding channel corresponding to the feeding outlet, as shown in Figure 4 The push plate mechanism 6 includes guide rods I 6-1, an electric push rod 6-2, a push plate frame 6-3, and push plates 6-4, two guide rods I 6-1 are fixedly installed on the frame 1, the push plate frame 6-3 is slidably installed on the two guide rods I 6-1, the electric push rod 6-2 is fixedly installed on the frame 1, the extension end of the electric push rod 6-2 is fixed on the push plate frame 6-3, the push plate frame 6-3 is provided with two push plates 6-4, and an opening for placing the push plates 6-4 is formed in the side wall of the frame 1, and the upper parts of the two push plates 6-4 extend from the gap between the feeding rollers 2. When the template to be corrected is conveyed to touch the baffle 5 and cannot be conveyed forward, the electric push rod 6-2 is started, and under the guidance and limiting action of the guide rods I 6-1, the electric push rod 6-2 drives the push plate frame 6-3 to move to the side of the feeding outlet of the feeding channel, and at this time the template conveyed to this position is pushed out from the feeding outlet of the feeding channel by the two push plates 6-4 on the push plate frame 6-3.

[0023] The rack 1 at the discharge port of the feeding channel is fixedly provided with a double-layer support 7, the lower layer of the support 7 is uniformly provided with correction driving wheels 11 at equal intervals, two adjacent correction driving wheels 11 are connected through a belt wheel transmission mechanism II 13, one of the correction driving wheels 11 is connected with the driving shaft of a correction motor 12 fixedly arranged at the bottom of the support 7 through a belt wheel transmission mechanism, and the upper layer of the support 7 is provided with correction driven wheels 10 corresponding to the correction driving wheels 11, the correction driving wheels 11 and the correction driven wheels 10 correspondingly form a template correction channel, and the two ends of the correction driven wheels 10 are rotatably arranged on mounting blocks 9, each mounting block 9 is fixedly arranged at the lower end of an adjusting lead screw 8, and the adjusting lead screw 8 is arranged in the thread of the upper layer of the support 7. The template needing to be corrected pushed out from the discharge port of the feeding channel enters between the correction driving wheels 11 and the correction driven wheels 10, the correction motor 12 drives the connected correction driving wheels 11 to rotate through the belt wheel transmission mechanism, the correction driving wheels 11 are rotationally connected through the belt wheel transmission mechanism II 13, the template entering the template correction channel moves forward under the rotation of the correction driving wheels 11, and the deformed part is corrected under the rolling of the correction driving wheels 11 and the correction driven wheels 10 during the forward movement.

[0024] In the utility model, like Figure 5As shown, the correction driving wheel 11 and the correction driven wheel 10 correspond to form a template correction channel The discharge port of the template stacking mechanism 14 is provided with a stacking mechanism 14, the stacking mechanism 14 includes a bottom plate 14-1, a U-shaped mounting frame 14-2, a guide column 14-3, a screw rod 14-4, a support frame 14-5, a lifting motor 14-6, a discharge roller 14-7, a U-shaped baffle 14-8, the bottom plate 14-1 is fixedly installed with four guide columns 14-3, the U-shaped mounting frame 14-2 is fixedly installed at the top of the four guide columns 14-3, the opening of the U-shaped mounting frame 14-2 is opposite to the correction channel, the opening of the U-shaped mounting frame 14-2 is respectively installed with a lifting motor 14-6 on the two side rods, the power output end of the lifting motor 14-6 is connected with the upper end of the screw rod 14-4, the lower end of the screw rod 14-4 is installed on the bottom plate 14-1 through a bearing, the two side rods of the opening of the U-shaped mounting frame 14-2 are respectively slidably installed with a support frame 14-5 corresponding to the two guide columns 14-3, and the support frame 14-5 is provided with a threaded hole corresponding to the screw rod 14-4, a plurality of discharge rollers 14-7 are uniformly arranged at equal intervals between the two support frames 14-5, and a plurality of discharge rollers 14-7 form a stacking table.

[0025] In the utility model, such as Figure 6As shown, the upper of the correction driving wheel 11 is provided with a hook plate mechanism 15, which comprises a fixed frame 15-1, two discharge guide rods 15-2, an electric push rod II 15-3, a discharge frame II 15-4, a cross rod 15-5, a hook plate grab 15-6, and a pin shaft 15-7. The fixed frame 15-1 is fixedly installed on the support 7, the two ends of the two discharge guide rods 15-2 are respectively fixed on the fixed frame 15-1 and the support 7, the discharge frame II 15-4 is slidably installed on the two discharge guide rods 15-2, the electric push rod II 15-3 is fixedly installed on the fixed frame 15-1, the telescopic end of the electric push rod II 15-3 is fixed on the discharge frame II 15-4, two cross rods 15-5 are arranged on the discharge frame II 15-4, the front ends of the two cross rods 15-5 are provided with the hook plate grab 15-6 through the pin shaft 15-7, the front side of the hook plate grab 15-6 facing the correction channel is provided with an arc-shaped structure, the rear side of the hook plate grab 15-6 is a vertical plane structure, the top of the hook plate grab 15-6 is a horizontal plane structure parallel to the bottom surface of the cross rod 15-5, and the distance between the lower end surface of the hook plate grab 15-6 and the diameter top end of the discharge roller 14-7 is less than the thickness of a template. The template conveyed out of the correction channel will stop without transmission power, and the template may not completely enter the stacking table of the stacking mechanism 14. At this time, the electric push rod II 15-3 can be started to drive the discharge frame II 15-4 and the hook plate grab 15-6 to move to the side of the correction channel. Since the hook plate grab 15-6 is installed on the cross rod 15-5 through the pin shaft 15-7, the distance between the lower end surface of the hook plate grab 15-6 and the diameter top end of the discharge roller 14-7 is less than the thickness of a template, the front side of the hook plate grab 15-6 facing the correction channel is provided with an arc-shaped structure, and when the hook plate grab 15-6 moves to the side of the correction channel, the hook plate grab 15-6 is not in a vertical state under the friction force of the template. After the hook plate grab 15-6 is pushed away from the template, it can restore to a vertical state under its own force. The vertical face of the hook plate grab 15-6 hooks the end of the template, the direction of the electric push rod II 15-3 is changed, the hook plate grab 15-6 is driven by the electric push rod II 15-3 to move together with the electric push rod II 15-3, and since the top of the hook plate grab 15-6 is a horizontal plane structure parallel to the bottom surface of the cross rod 15-5, the rotation of the hook plate grab 15-6 is limited by the cross rod 15-5 under the action of the electric push rod II 15-3, and the hook plate grab 15-6 will not rotate around the pin shaft 15-7 to the side away from the template, so that the template can be accurately moved to the side of the stacking table.

[0026] In the utility model, the inside of the U-shaped mounting frame 14-2 is provided with the U-shaped baffle 14-8 which is opposite the correction channel, and the upper end of the U-shaped baffle 14-8 is higher than the upper end of the U-shaped mounting frame 14-2. By setting the U-shaped baffle 14-8 which is matched with the stacking table in the U-shaped mounting frame 14-2, when the electric push rod II 15-3 drives the hook plate 15-6 to stack the corrected template on the stacking table, the template can be neatly stacked under the action of the U-shaped baffle 14-8.

[0027] Finally, it is explained that the above preferred embodiments are only used to illustrate the technical scheme of the utility model and are not limited. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made in form and details without departing from the range defined by the utility model claims.

Claims

1. A construction form deformation correction device, characterized by: The construction template deformation correction device includes a rack (1), a feeding roller (2), a pulley transmission mechanism I (3), a feeding motor (4), a baffle (5), a push plate mechanism (6), a support (7), an adjusting screw rod (8), a mounting block (9), a correction driven wheel (10), a correction driving wheel (11), a correction motor (12), and a pulley transmission mechanism II (13).

2. The construction form deformation correction device of claim 1, wherein: The feeding roller (2) is evenly arranged on the rack (1) to form a feeding channel, and two adjacent feeding rollers (2) are connected through the pulley transmission mechanism I (3), wherein one feeding roller (2) is connected with the driving shaft of the feeding motor (4) through the pulley transmission mechanism. A baffle (5) is fixedly arranged at the outlet end of the feeding channel, a push plate mechanism (6) is arranged on the feeding channel corresponding to the outlet of the feeding channel, a double-layer support (7) is fixedly arranged on the rack (1) at the outlet of the feeding channel, the lower layer of the support (7) is evenly arranged with the correction driving wheel (11), two adjacent correction driving wheels (11) are connected through the pulley transmission mechanism II (13), one correction driving wheel (11) is connected with the driving shaft of the correction motor (12) fixedly arranged at the bottom of the support (7) through the pulley transmission mechanism, the upper layer of the support (7) is arranged with the correction driven wheel (10) corresponding to the correction driving wheel (11), the correction driving wheel (11) and the correction driven wheel (10) form a template correction channel, and the two ends of the correction driven wheel (10) are rotatably arranged on the mounting block (9). Each mounting block (9) is fixedly arranged at the lower end of the adjusting screw rod (8), and the adjusting screw rod (8) is arranged in the thread of the upper layer of the support (7). The push plate mechanism (6) includes a guide rod I (6-1), an electric push rod (6-2), a push plate frame (6-3), and a push plate (6-4). Two guide rods I (6-1) are fixedly arranged on the rack (1), the push plate frame (6-3) is slidably arranged on the two guide rods I (6-1), the electric push rod (6-2) is fixedly arranged on the rack (1), the telescopic end of the electric push rod (6-2) is fixedly arranged on the push plate frame (6-3), the push plate frame (6-3) is arranged with two push plates (6-4), an opening for placing the push plate (6-4) is arranged on the side wall of the rack (1), and the upper parts of the two push plates (6-4) extend out of the gap of the feeding roller (2).

3. A deformation correction device for a construction form according to claim 1 or 2, characterised in that: The discharge outlet of the template correction channel formed by the correction driving wheel (11) and the correction driven wheel (10) is provided with a stacking plate mechanism (14), the stacking plate mechanism (14) comprises a bottom plate (14-1), a U-shaped mounting frame (14-2), a guide column (14-3), a screw rod (14-4), a support frame (14-5), a lifting motor (14-6), a discharge roller (14-7), a U-shaped baffle (14-8), the bottom plate (14-1) is fixedly installed with four guide columns (14-3), the U-shaped mounting frame (14-2) is fixedly installed at the top of the four guide columns (14-3), the opening of the U-shaped mounting frame (14-2) is opposite to the correction channel, the opening of the U-shaped mounting frame (14-2) is provided with a lifting motor (14-6) on each side rod, the power output end of the lifting motor (14-6) is connected with the upper end of the screw rod (14-4), the lower end of the screw rod (14-4) is installed on the bottom plate (14-1) through a bearing, the opening of the U-shaped mounting frame (14-2) is slidably provided with a support frame (14-5) on each of the two guide columns (14-3) corresponding to the two side rods, and the support frame (14-5) is provided with a threaded hole corresponding to the screw rod (14-4), and the two support frames (14-5) are uniformly provided with the discharge roller (14-7) at equal intervals.

4. The construction form deformation correction device of claim 3, wherein: The upper side of the correction driving wheel (11) is provided with a hook plate mechanism (15), the hook plate mechanism (15) comprises a fixed frame (15-1), a discharge guide rod (15-2), an electric push rod II (15-3), a discharge frame II (15-4), a cross rod (15-5), a hook plate grab (15-6), a pin shaft (15-7), the fixed frame (15-1) is fixedly installed on the support (7), the two ends of the two discharge guide rods (15-2) are fixedly installed on the fixed frame (15-1) and the support (7), the discharge frame II (15-4) is slidably installed on the two discharge guide rods (15-2), the electric push rod II (15-3) is fixedly installed on the fixed frame (15-1), the telescopic end of the electric push rod II (15-3) is fixedly installed on the discharge frame II (15-4), the discharge frame II (15-4) is provided with two cross rods (15-5), the front end of the two cross rods (15-5) is provided with the hook plate grab (15-6) through the pin shaft (15-7), the front side of the hook plate grab (15-6) opposite to the correction channel is provided with an arc-shaped structure, the rear side of the hook plate grab (15-6) is provided with a vertical plane structure, the top of the hook plate grab (15-6) is provided with a horizontal plane structure parallel to the bottom surface of the cross rod (15-5), and the distance between the lower end surface of the hook plate grab (15-6) and the diameter top end of the discharge roller (14-7) is less than the thickness of a template.

5. A construction form deformation correction device as claimed in claim 4, wherein: The inner side of the U-shaped mounting frame (14-2) is provided with a U-shaped baffle (14-8) opposite to the correction channel, and the upper end of the U-shaped baffle (14-8) is higher than the upper end of the U-shaped mounting frame (14-2).