A support frame for facilitating the gluing construction of different sizes of boards and a method of using the same
By designing an adaptable support frame, the problems of temporary support adaptability and stability during ceiling material installation were solved, achieving flexible support and safe and reliable board adhesion, which meets the requirements of green construction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- CHINA MCC5 GROUP CORP LTD
- Filing Date
- 2024-11-12
- Publication Date
- 2026-04-24
AI Technical Summary
The existing ceiling materials have poor adaptability to temporary supports and insufficient structural stability during installation, which affects the adhesion of the panels.
A support frame consisting of a wooden base, a vertical connecting rod, and a wooden top support was designed. The height and angle can be flexibly adjusted through a liftable sleeve, an angle-adjustable rocker arm, and a pulley system, while a locking device ensures stability.
It enables flexible support for boards of different sizes, prevents the support frame from slipping, saves labor, is safe and reliable, and meets the requirements of green construction.
Smart Images

Figure CN119332972B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building construction technology, and specifically to a support frame for facilitating the adhesive bonding of boards of different sizes, and its method of use. Background Technology
[0002] A ceiling is the interior top surface of a building. With technological advancements, more modern building materials are being used. Currently, large panels are often used as ceilings in industrial buildings. During ceiling installation, adhesives are typically used to bond these large panels. However, temporary supports are often needed to ensure proper adhesion. Currently, wooden poles are commonly used as temporary supports, but this method is not only unreliable, requiring on-site processing which is time-consuming and labor-intensive, but also lacks reliability and stability. They are prone to tipping over in case of contact, and in such cases, the wooden poles cannot effectively support the large panels, significantly impacting the bonding effect.
[0003] Therefore, developing a ceiling material support device that is both adaptable and structurally stable is of great practical significance. Summary of the Invention
[0004] Due to the aforementioned deficiencies in the existing technology, the present invention provides a ceiling material support device with good adaptability and structural stability. Specifically, it is a support frame and its usage method that facilitates the adhesive bonding of different sized panels, overcoming the shortcomings of poor adaptability and structural stability of existing temporary supports during the installation of large ceiling panels.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] A support frame for easy adhesive bonding of boards of different sizes, comprising a wooden support base, vertical connecting rods, and a wooden top support;
[0007] The wooden support base includes a vertical rod, which is a cylindrical structure. The liftable sleeve is fitted inside the vertical rod. A vertical lifting rocker is installed on the side of the vertical rod. By rotating the vertical lifting rocker, the liftable sleeve can be driven to extend and retract inside the vertical rod. A support base is provided on the side of the vertical rod away from the liftable sleeve.
[0008] The vertical connecting rod has a cylindrical structure, and the liftable sleeve is inserted into the vertical connecting rod;
[0009] The wooden top support includes a fixed vertical rod, which is a cylindrical structure. Its lower end is fixed with a tenon sleeve that inserts into a vertical connecting rod. At least three arc-shaped rods are connected to its upper end. Supporting top supports are provided at the ends of the arc-shaped rods away from the fixed vertical rod. Multi-phase springs for tensioning are provided between the multiple arc-shaped rods. The arc-shaped rods are hollow and have resilience. A pulley is installed in the hollow part of the arc-shaped rod, and the pulley is located on the side of the arc-shaped rod away from the fixed vertical rod. The pulley is fixedly connected to the supporting top supports via a fixed-length steel wire rope. An angle adjustment rocker is provided on the side of the fixed vertical rod. The rotation axis of the angle adjustment rocker is connected to a third pulley arranged inside the fixed vertical rod. An adjusting rope connects the third pulley and the first pulley. One end of the adjusting rope is fitted and fixed to the third pulley, and the other end passes through the first pulley and returns to be fixed to the third pulley.
[0010] This invention provides a support frame for convenient adhesive bonding of boards of different sizes. Its reasonable structural design and good adaptability allow for height adjustment and surface contraction, providing ample support for the boards. The angle adjustment rocker and vertical lifting rocker can be equipped with locking devices to prevent personnel from touching or bumping the support frame, which could cause it to slip and affect the bonding effect. It saves time and effort, is easy to operate, safe and reliable, and has promising application prospects.
[0011] As a preferred technical solution:
[0012] As described above, a support frame that facilitates the adhesive bonding of boards of different sizes is provided, wherein pulleys are installed at the connection between the fixed vertical rod and the arc-shaped rod, and the pulleys guide the adjusting rope.
[0013] There are at least three pulleys in total, and at least three adjusting ropes in total;
[0014] The second pulley is arranged between the adjusting ropes.
[0015] As described above, a support frame that facilitates the adhesive bonding of boards of different sizes includes a pulley steel sleeve core, a fixed pulley outer edge, a horizontal fixing rod, and a pulley steel shaft.
[0016] The pulley steel shaft is movably fixed inside the fixed vertical rod. One end of the shaft is connected to the rotation shaft of the angle adjustment rocker through the pulley steel sleeve core. Both ends of the pulley steel shaft are provided with the outer edge of the fixed pulley, and a horizontal fixing rod is provided between the outer edges of the two fixed pulleys.
[0017] As described above, a support frame is provided for easy adhesive bonding of boards of different sizes. One end of the adjusting rope is provided with a collar, which is fitted onto the steel shaft of the pulley. The other end passes through the pulley and is then fixed back onto the horizontal fixed rod.
[0018] As described above, a support frame is provided for easy adhesive bonding of boards of different sizes, wherein the adjusting rope includes an adjusting rope one and an adjusting rope two connected together;
[0019] The first adjusting rope is provided with a collar at the end away from the second adjusting rope, and the collar is fitted on the steel shaft of the pulley. The first adjusting rope passes through one side of the second pulley and one side of the third pulley in sequence, and is connected to the second adjusting rope at the side of the third pulley away from the second pulley. The second adjusting rope passes through the other side of the second pulley and the other side of the third pulley in sequence and is then fixed on the horizontal fixed rod.
[0020] The support frame described above is designed to facilitate the adhesive bonding of boards of different sizes, wherein the wooden top support and pulleys are all made of metal.
[0021] The horizontal fixing rod is welded to the outer edge of the fixed pulley, and the pulley steel shaft is welded to the pulley steel sleeve core;
[0022] The adjusting rope is a steel wire rope and is welded and fixed to the horizontal fixed rod.
[0023] As described above, a support frame that facilitates the adhesive bonding of boards of different sizes includes a scale arranged along the length of the vertical rod on its side. The operator can easily obtain the current height of the adjustable sleeve by using the scale. Specifically, the side of the vertical rod has a through hole with a transparent plate installed at the through hole. The transparent plate is engraved with a scale, and a height marker is provided on the adjustable sleeve. The current height of the adjustable sleeve can be obtained by observing the relationship between the marker and the height scale.
[0024] As described above, a support frame is provided for convenient adhesive bonding of boards of different sizes. The fixed vertical rod has an angle gauge for indicating the bending angle of the curved rod. The operator can easily obtain the bending angle of the curved rod by using the angle gauge. Specifically, the side of the fixed vertical rod has a through hole and a transparent plate is installed at the through hole. The angle gauge is engraved on the transparent plate. At the same time, an angle marker is tied to the adjusting rope. The bending angle of the curved rod can be obtained by the relationship between the angle marker and the angle gauge.
[0025] Furthermore, the present invention also provides a method for using a support frame that facilitates the adhesive bonding of boards of different sizes, as described above, comprising the following steps:
[0026] (1) Adhesive-bonded boards;
[0027] (2) Rotate the vertical lifting rocker arm to adjust the height of the support top to match the height of the plate;
[0028] (3) Rotate the rocker arm to adjust the bending angle of the arc rod and unfold the support top to make it fit the size of the plate;
[0029] (4) Place the support frame under the board and use the support top to support the board.
[0030] Specifically, the tenon sleeves at the top of the wooden support base and the bottom of the wooden top support are inserted into the cavities at the bottom and top of the vertical connecting rod for fixation. The height of the entire support is changed by the vertical lifting rocker with a limiting function on the side of the vertical lifting device. A scale will display the lifting height value of this support frame, thereby meeting different floor height requirements. By adjusting the angle of the rocker with the limiting device on the side of the fixed vertical rod, the rocker rotates clockwise. This rotation causes the pulley steel sleeve core, which is fixed to it, to rotate, driving the pulley steel shaft to rotate synchronously. This, in turn, causes the adjusting rope two, whose end is fixed to the pulley steel shaft, to wind and tighten along the pulley steel shaft. The end of the adjusting rope one is firmly welded to the horizontal fixed rod, and both ends of the horizontal fixed rod are respectively welded to the outer edge of the fixed pulley. The tension of the fixed adjusting rope two is transmitted upwards along the inner cavity of the fixed vertical rod, and continues diagonally upwards along the arc-shaped rod through pulley two. Pulley two then pulls the wooden top support downwards along the metal cavity wall with a spring-loaded function, causing the entire wooden top support to open downwards. The downward movement of pulley one causes the fixed-length steel wire rope fixedly connected to it to move downwards, thereby causing the supporting top support to rotate. The angle is adjusted according to the change in the angle of the arc-shaped rod to ensure that the top surface always maintains the same angle with the ceiling surface, thus meeting the support requirements of different sized boards. Rotating the angle adjustment lever counterclockwise adjusts the release length of rope two, and under the action of the multi-phase spring, the wooden top support naturally tightens upwards and inwards. The angle gauge will display the opening angle of the wooden top support.
[0031] The above technical solution is only one feasible technical solution of the present invention. The scope of protection of the present invention is not limited thereto. Those skilled in the art can reasonably adjust the specific design according to actual needs.
[0032] The above invention has the following advantages or beneficial effects:
[0033] (1) The support frame of the present invention is convenient for adhesive construction of boards of different sizes. It has a reasonable structural design and good adaptability. It can not only adjust the height, but also shrink the support surface, and provide sufficient support for the boards.
[0034] (2) The support frame of the present invention, which facilitates the adhesive application of boards of different sizes, can be equipped with a locking device for the angle adjustment rocker and the vertical lifting rocker to lock them. This can prevent the support frame from slipping due to personnel entering and exiting, thus affecting the adhesive application of the boards.
[0035] (3) The support frame of the present invention is convenient for adhesive bonding of different sized boards, which saves time and effort, saves labor, and is easy to operate and safe and reliable;
[0036] (4) The support frame of the present invention, which facilitates the adhesive construction of boards of different sizes, is mechanically driven, requires no electricity, avoids electrical safety accidents, can be reused, saves costs, meets the requirements of green construction, and has great application prospects. Attached Figure Description
[0037] The invention, its features, shape, and advantages will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings. Like reference numerals denote like parts throughout the drawings. The drawings are not drawn to scale; the emphasis is on illustrating the main points of the invention.
[0038] Figure 1 A schematic diagram of the overall structure of the support frame for facilitating the adhesive bonding of boards of different sizes according to the present invention;
[0039] Figure 2 This is a schematic diagram of the wooden top support structure;
[0040] Figure 3 This is a schematic diagram of the vertical connecting rod.
[0041] Figure 4 This is a structural diagram of a wooden support base;
[0042] Figure 5 This is a schematic diagram of the internal structure of the wooden top support;
[0043] Figure 6 A schematic diagram of the internal structure at the connection point between the support top and the arc-shaped rod;
[0044] Figure 7 This is a schematic diagram of the internal structure at the connection point between the curved rod and the vertical rod.
[0045] Figure 8 A schematic diagram of the internal structure at the connection point between the vertical rod and the angle adjustment device;
[0046] Numbered in the diagram: 1. Wooden top support; 2. Vertical connecting rod; 3. Wooden support base; 101. Support top support; 102. Arc rod; 1021. Fixed length steel wire rope; 1022. Pulley one; 1023. Metal cavity with spring-loaded function; 1024-1. Adjusting rope one; 1024-2. Adjusting rope two; 1025. Pulley two; 1026. Pulley three; 10261. Pulley steel sleeve core; 10262 10263. Fixed pulley outer edge; 10264. Horizontal fixed rod; 10265. Pulley steel shaft; 106. Angle ruler; 107. Fixed vertical rod; 108. Angle adjustment rocker arm; 109. Tenon rod sleeve; 1000. Multi-phase spring; 201. Cavity; 202. Double hole connecting vertical rod; 301. Liftable sleeve; 302. Scale; 303. Vertical lifting rocker arm; 304. Vertical rod; 305. Support base. Detailed Implementation
[0047] The structure of the present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention.
[0048] Example 1
[0049] A support frame that facilitates adhesive bonding of boards of different sizes, such as Figures 1-8 As shown, it includes a wooden support base 3, a vertical connecting rod 2, and a wooden top support 1;
[0050] The wooden support base 3 includes a vertical rod 304, which is a cylindrical structure. A liftable sleeve 301 is fitted inside the vertical rod 304. A vertical lifting rocker 303 is installed on the side of the vertical rod 304. By rotating the vertical lifting rocker 303, the liftable sleeve 301 can be driven to extend and retract inside the vertical rod 304. A support base 305 is provided on the side of the vertical rod 304 away from the liftable sleeve 301. A scale 302 is arranged on the side of the vertical rod 304 along the length of the vertical rod 304.
[0051] The vertical connecting rod 2 has a cylindrical structure, and the liftable sleeve core 301 is inserted into the vertical connecting rod 2;
[0052] The wooden top support 1 is made of metal and includes a fixed vertical rod 104. The fixed vertical rod 104 has a cylindrical structure, with a tenon sleeve 106 fixed at its lower end to be inserted into the vertical connecting rod 2. Three arc-shaped rods 102 are connected to its upper end. A supporting top support 101 is provided at the end of each arc-shaped rod 102 away from the fixed vertical rod 104. A multi-phase spring 107 for tensioning is provided between the three arc-shaped rods 102. The arc-shaped rods 102 have a hollow structure and possess elasticity. A pulley 1022 is installed in the hollow part of the arc-shaped rod 102, and the pulley 1022 is located on the side of the arc-shaped rod 102 away from the fixed vertical rod 104. A 1022 is fixedly connected to a support 101 via a fixed-length steel wire rope 1021. An angle-adjusting rocker arm 105 is provided on the side of the fixed vertical rod 104. The rotation axis of the angle-adjusting rocker arm 105 is connected to a pulley 3 1026 arranged inside the fixed vertical rod 104. (The pulley 3 1026 is made of metal and includes a pulley steel sleeve core 10261, a fixed pulley outer edge 10262, a horizontal fixing rod 10263, and a pulley steel shaft 10264. The pulley steel shaft 10264 is movably fixed inside the fixed vertical rod 104, and one end of it is connected to the pulley steel sleeve core 102 welded thereon.) 61 is connected to the rotating shaft of the angle adjustment rocker arm 105. The two ends of the pulley steel shaft 10264 are provided with fixed pulley outer edges 10262, and a horizontal fixed rod 10263 is welded between the two fixed pulley outer edges 10262. An adjusting rope (steel wire rope) connects the pulley three 1026 and pulley one 1022. Pulley two 1025 is installed at the connection points of the fixed vertical rod 104 and the arc-shaped rod 102. Pulley two 1025 is arranged between the adjusting ropes. The adjusting ropes include adjusting rope one 1024-1 and adjusting rope two 1024-2. Adjusting rope one 1024... -1. A collar is provided at the end away from the second adjusting rope 1024-2 and the collar is fitted onto the steel shaft of the pulley 10264. The first adjusting rope 1024-1 passes through one side of the second pulley 1025 and the third pulley 1026 in sequence. It is connected to the second adjusting rope 1024-2 on the side of the third pulley 1026 away from the second pulley 1025. The second adjusting rope 1024-2 passes through the other side of the second pulley 1025 and the other side of the third pulley 1026 in sequence and is then welded and fixed to the horizontal fixed rod 10263. An angle gauge 103 for indicating the bending angle of the arc rod 102 is opened on the fixed vertical rod 104.
[0053] The tenon sleeves at the top of the wooden support base and the bottom of the wooden top support are inserted into the cavities at the bottom and top of the vertical connecting rod for fixation. The height of the entire support is changed by the vertical lifting rocker with a limiting function on the side of the vertical lifting device. A scale will display the lifting height value of this support frame, thus meeting different floor height requirements. By adjusting the angle of the rocker with the limiting device on the side of the fixed vertical rod, the rocker rotates clockwise. This rotation causes the pulley steel sleeve core, which is fixed to it, to rotate, driving the pulley steel shaft to rotate synchronously. This, in turn, causes the adjusting rope two, whose end is fixed to the pulley steel shaft, to wind and tighten along the pulley steel shaft. The end of the adjusting rope one is firmly welded to the horizontal fixed rod. Both ends of the horizontal fixed rod are welded and fixed to the outer edge of the fixed pulley. The tension of the fixed adjusting rope two is transmitted upwards along the inner cavity of the fixed vertical rod, and continues diagonally upwards along the arc-shaped rod through pulley two. Pulley two then pulls the entire wooden top support downwards along the metal cavity wall with a spring-loaded function, causing the entire wooden top support to open downwards. The downward movement of pulley one causes the fixed-length steel wire rope fixedly connected to it to move downwards, thereby causing the supporting top support to rotate. The angle is adjusted according to the change in the angle of the arc-shaped rod to ensure that the top surface always maintains the same angle with the ceiling surface, thus meeting the support requirements of different sized boards. Rotating the angle adjustment lever counterclockwise adjusts the release length of rope two, and under the action of the multi-phase spring, the wooden top support naturally tightens upwards and inwards. The angle gauge displays the opening angle of the wooden top support.
[0054] The above-mentioned support frame, which facilitates the adhesive bonding of boards of different sizes, includes the following steps:
[0055] (1) Adhesive-bonded boards;
[0056] (2) Rotate the vertical lifting rocker arm to adjust the height of the support top to match the height of the plate;
[0057] (3) Rotate the rocker arm to adjust the bending angle of the arc rod and unfold the support top to make it fit the size of the plate;
[0058] (4) Place the support frame under the board and use the support top to support the board.
[0059] Verification has shown that the support frame of this invention, which facilitates the adhesive bonding of boards of different sizes, has a reasonable structural design and good adaptability. It not only allows for height adjustment but also enables the shrinkage of the support surface, providing ample support for the boards. The angle adjustment rocker and vertical lifting rocker can be equipped with locking devices to prevent personnel from touching or bumping the support frame, which could cause it to slip and affect the bonding effect. It saves time and effort, reduces labor costs, is easy to operate, and is safe and reliable. It is mechanically driven, requiring no electricity, thus avoiding electrical safety accidents. It is reusable, saves costs, meets green construction requirements, and has great application prospects.
[0060] Those skilled in the art should understand that variations can be implemented by combining existing technology with the above embodiments, which will not be elaborated here. Such variations do not affect the substantive content of the present invention, and will not be elaborated here.
[0061] The preferred embodiments of the present invention have been described above. It should be understood that the present invention is not limited to the specific embodiments described above, and the devices and structures not described in detail should be understood as being implemented in a conventional manner in the art. Any person skilled in the art can make many possible variations and modifications to the technical solutions of the present invention using the methods and techniques disclosed above, or modify them into equivalent embodiments with equivalent changes, without departing from the scope of the present invention. This does not affect the essential content of the present invention. Therefore, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the present invention's technical solutions still fall within the protection scope of the present invention.
Claims
1. A support frame for convenient adhesive bonding of boards of different sizes, characterized in that: Includes a wooden support base, vertical connecting rods, and a wooden top support; The wooden support base includes a vertical rod, which is a cylindrical structure. A liftable sleeve is fitted inside the vertical rod. A vertical lifting rocker is installed on the side of the vertical rod. By rotating the vertical lifting rocker, the liftable sleeve can be driven to extend and retract inside the vertical rod. A support base is provided on the side of the vertical rod away from the liftable sleeve. The vertical connecting rod has a cylindrical structure, and the liftable sleeve is inserted into the vertical connecting rod; The wooden top support includes a fixed vertical rod, which is a cylindrical structure. Its lower end is fixed with a tenon sleeve that inserts into a vertical connecting rod. At least three arc-shaped rods are connected to its upper end. Supporting top supports are provided at the ends of the arc-shaped rods away from the fixed vertical rod. Multi-phase springs for tensioning are provided between the multiple arc-shaped rods. The arc-shaped rods are hollow and have resilience. A pulley is installed in the hollow part of the arc-shaped rod, and the pulley is located on the side of the arc-shaped rod away from the fixed vertical rod. The pulley is fixedly connected to the supporting top supports via a fixed-length steel wire rope. An angle adjustment rocker is provided on the side of the fixed vertical rod. The rotation axis of the angle adjustment rocker is connected to a third pulley arranged inside the fixed vertical rod. An adjusting rope connects the third pulley and the first pulley. One end of the adjusting rope is fitted and fixed to the third pulley, and the other end passes through the first pulley and returns to be fixed to the third pulley.
2. The support frame for convenient adhesive bonding of boards of different sizes according to claim 1, characterized in that, Each of the fixed vertical rods and the arc rods is equipped with a pulley. There are at least three pulleys in total, and at least three adjusting ropes in total; The second pulley is arranged between the adjusting ropes.
3. The support frame for convenient adhesive bonding of boards of different sizes according to claim 2, characterized in that, The pulley three includes a pulley steel sleeve core, a fixed pulley outer edge, a horizontal fixing rod, and a pulley steel shaft; The pulley steel shaft is movably fixed inside the fixed vertical rod. One end of the shaft is connected to the rotation shaft of the angle adjustment rocker through the pulley steel sleeve core. Both ends of the pulley steel shaft are provided with the outer edge of the fixed pulley, and a horizontal fixed rod is provided between the outer edges of the two fixed pulleys.
4. The support frame for convenient adhesive bonding of boards of different sizes according to claim 3, characterized in that, One end of the adjusting rope is provided with a collar, which is fitted onto the steel shaft of the pulley, and the other end passes through the pulley and is then fixed back onto the horizontal fixed rod.
5. The support frame for convenient adhesive bonding of boards of different sizes according to claim 4, characterized in that, The adjusting rope includes two connected adjusting ropes: Adjusting Rope One and Adjusting Rope Two. The adjusting rope one has a collar at the end away from the adjusting rope two, and the collar is fitted on the steel shaft of the pulley. The adjusting rope one passes through one side of the pulley two and one side of the pulley three in sequence, and is connected to the adjusting rope two at the side of the pulley three away from the pulley two. The adjusting rope two passes through the other side of the pulley two and the other side of the pulley three in sequence and is then fixed on the horizontal fixed rod.
6. The support frame for convenient adhesive bonding of boards of different sizes according to claim 4, characterized in that, The wooden top support and pulleys are all made of metal. The horizontal fixing rod is welded to the outer edge of the fixed pulley, and the pulley steel shaft is welded to the pulley steel sleeve core; The adjusting rope is a steel wire rope and is welded and fixed to the horizontal fixed rod.
7. The support frame for convenient adhesive bonding of boards of different sizes according to claim 1, characterized in that, A scale is arranged on the side of the vertical rod along its length.
8. The support frame for convenient adhesive bonding of boards of different sizes according to claim 1, characterized in that, The fixed vertical rod has an angle gauge for indicating the bending angle of the curved rod.
9. A method for using a support frame as described in any one of claims 1 to 8, facilitating the adhesive bonding of boards of different sizes, characterized in that... Includes the following steps: (1) Adhesive-bonded boards; (2) Rotate the vertical lifting rocker arm to adjust the height of the support top to match the height of the plate; (3) Rotate the rocker arm to adjust the bending angle of the arc rod and unfold the support top to make it fit the size of the plate; (4) Place the support frame under the board and use the support top to support the board.
Citation Information
Patent Citations
Device for carrying construction pipe
CN107934819A
Supporting device convenient for ceiling construction of adhesive boards
CN118653722A