Aluminum shear wall formwork device

By using components such as screws, panels, and corner plates in the aluminum shear wall formwork device for splicing and fixing, the time-consuming and labor-intensive problem of traditional bolt fastening is solved, achieving time-saving and labor-saving installation and cost savings.

CN223767154UActive Publication Date: 2026-01-06GUANGDONG NEW DEV CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422956359.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2026-01-06
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

The existing fastening system of aluminum shear wall formwork devices uses steel ribs and numerous bolts for connection, which makes installation and disassembly time-consuming and labor-intensive. Bolts and fasteners are easily lost, increasing costs and causing property damage.

Method used

The planar template is fixed by splicing together components such as screws, panels, and grooves, and corner plates are used to fix it at the splicing corners, replacing the traditional bolt fastening method.

Benefits of technology

It simplifies the installation and dismantling process of the template, saves time and costs, avoids the loss of bolts and fasteners, and improves construction efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of building construction, and particularly relates to an aluminum shear wall formwork device which comprises plane formworks capable of being mutually spliced and assembled and an angle plate detachably assembled at the splicing corner of the two plane formworks, one side of each plane formwork is fixedly connected with a first vertical rib plate, and the other side of each plane formwork is fixedly connected with a second vertical rib plate. A second vertical rib plate is fixedly connected to one side of the first vertical rib plate, first screws are symmetrically connected to the two ends of the first vertical rib plate in a threaded mode, and a first embedded plate is rotationally connected to the position, located on the outer side of the plane formwork, of one end of each first screw. The plane formworks can be mutually spliced and fixed through the first screws, the first embedding plates, the first embedding grooves and other components, splicing and fixing can be achieved through the angle plates at the splicing corners, tedious operation of disassembling and assembling a large number of fasteners in the using process is avoided, a traditional bolt fastening mode is changed, more time and labor are saved during installation, the bolt fasteners are prevented from being lost, and the construction efficiency is improved. The cost is saved, and property loss is avoided.
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Description

Technical Field

[0001] This utility model belongs to the field of building construction technology, and specifically relates to an aluminum shear wall formwork device. Background Technology

[0002] Shear walls, also known as wind-resistant walls, earthquake-resistant walls, or structural walls, are an important type of wall in building structures. Their primary function is to withstand horizontal loads, such as wind and seismic forces, while also bearing a certain amount of vertical loads. Shear wall aluminum formwork is a highly efficient and environmentally friendly formwork system used in building construction. It mainly consists of four parts: the formwork system, the fastening system, the support system, and the accessory system. With its superior physical properties, environmental characteristics, and high construction efficiency, shear wall aluminum formwork plays an increasingly important role in modern construction engineering.

[0003] The existing fastening system of aluminum shear wall formwork devices uses steel ribs and a large number of bolts to splice the formwork together, which makes the installation and dismantling of the formwork very time-consuming and labor-intensive. In addition, the bolts and fasteners are small in size and weight, and are often lost during actual transportation or use, resulting in property damage and increased costs. Utility Model Content

[0004] The purpose of this utility model is to provide an aluminum shear wall formwork device. The planar formwork can be spliced ​​and fixed together by components such as screws, inserts, and grooves. At the splicing corners, corner plates can be used for splicing and fixing. This avoids the tedious operation of disassembling and assembling a large number of fasteners during use, changes the traditional bolt fastening method, makes installation more time-saving and labor-saving, avoids the loss of bolts and fasteners, saves costs, and avoids property damage.

[0005] The specific technical solution adopted by this utility model is as follows:

[0006] An aluminum shear wall formwork device includes two interlocking planar formworks and a detachable corner plate assembled at the corner where the two planar formworks meet. A first vertical stiffener plate is fixedly connected to one side of each planar formwork, and a second vertical stiffener plate is fixedly connected to one side of the first vertical stiffener plate. A screw rod is symmetrically threaded to both ends of the first vertical stiffener plate. A insert plate is rotatably connected to one end of the screw rod, located outside the planar formwork. Grooves are formed through both sides of each planar formwork, and slots are formed through both sides of each groove. The middle of the second stiffener is threaded with a second screw. One end of the second screw, located on the outside of the planar template, is rotatably connected to a second insert. Both the first insert and the second insert are C-shaped. Two grooves on the same side as the second screw are used for the first screw to be movably fitted. Two slots on the same side as the second screw are used for the first insert to be movably fitted. A groove on the same side as the first insert is used for the second screw to be movably fitted. A slot on the same side as the first insert is used for the first insert to be movably fitted.

[0007] The two ends of the vertical stiffener plate are provided with through slots, and a rotating rod is rotatably connected to the middle of the through slots.

[0008] One end of the rotating rod is threadedly connected to a screw rod three, and a base plate is symmetrically fixedly connected to one side of the planar template. An array of holes for the screw rod three to fit into is provided on one side of the base plate.

[0009] A beam frame is symmetrically fixedly connected to one side of the planar template, and an auxiliary insert rod for movably engaging with the groove is symmetrically fixedly connected to one side of the corner plate.

[0010] A groove 2 is provided through the two auxiliary rods and on the adjacent side, and a slot 2 is provided through both sides of the groove 2.

[0011] The two grooves located on the same side are respectively movably engaged with the screw, and the two slots located on the same side are used for the movable engagement of the panel.

[0012] The second groove located between the two auxiliary inserts is used for the second screw to be movably engaged, and the second slot located between the two auxiliary inserts is used for the second insert plate to be movably engaged.

[0013] The technical advantages achieved by this utility model are as follows: the planar templates can be spliced ​​and fixed together by components such as screws, inserts, and grooves. At the splicing corners, they can be spliced ​​and fixed by corner plates, which avoids the tedious operation of disassembling and assembling a large number of fasteners during use, changes the traditional bolt fastening method, makes installation more time-saving and labor-saving, avoids the loss of bolts and fasteners, saves costs, and avoids property damage. Attached Figure Description

[0014] Figure 1 This is a splicing display diagram of the template device provided in the embodiment of this utility model;

[0015] Figure 2 yes Figure 1 A magnified view of a section at point A in the middle;

[0016] Figure 3 This is a separate illustration of the template device provided in an embodiment of this utility model;

[0017] Figure 4 This is a structural diagram of the corner plate provided in an embodiment of this utility model.

[0018] The attached diagram lists the components represented by each number as follows:

[0019] 1. Plane template; 101. Vertical stiffener plate one; 102. Vertical stiffener plate two; 103. Screw rod one; 104. Panel one; 105. Beam frame; 106. Screw rod two; 107. Through groove; 108. Rotating rod; 109. Screw rod three; 110. Base plate; 111. Hole; 112. Groove one; 113. Groove one; 114. Panel two; 2. Corner plate; 201. Groove two; 202. Groove two; 203. Auxiliary insert rod. Detailed Implementation

[0020] To make the objectives and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the following text is merely used to describe one or more specific embodiments of this utility model and does not strictly limit the scope of protection specifically claimed by this utility model.

[0021] like Figures 1-3As shown, an aluminum shear wall formwork device includes a planar formwork 1 that can be assembled by splicing with each other, and a corner plate 2 that can be detachably assembled at the corner where the two planar formworks 1 are spliced. A vertical stiffener plate 101 is fixedly connected to one side of the planar formwork 1, and a vertical stiffener plate 2 is fixedly connected to one side of the vertical stiffener plate 101. A screw rod 103 is symmetrically threaded to both ends of the vertical stiffener plate 101. A plate 104 is rotatably connected to one end of the screw rod 103, located on the outside of the planar formwork 1. A groove 112 is opened through both sides of the planar formwork 1, and a slot 113 is opened through both sides of the groove 112. A through slot 107 is opened through both ends of the vertical stiffener plate 2102. A rotating rod 108 is rotatably connected to the middle of the through slot 107. A screw rod 3109 is threaded to one end of the rotating rod 108. A base plate 110 is symmetrically fixedly connected to one side of the template 1. An array of holes 111 for the engagement of screw rod 109 are opened on one side of the base plate 110. A screw rod 106 is threadedly connected to the middle of the vertical rib plate 102. A plate 114 is rotatably connected to one end of the screw rod 106 and located on the outside of the planar template 1. Both the plate 104 and the plate 114 are C-shaped. Two grooves 112 on the same side as the screw rod 106 are used for the movable engagement of screw rod 103. Two slots 113 on the same side as the screw rod 106 are used for the movable engagement of plate 104. A groove 112 on the same side as plate 104 is used for the movable engagement of screw rod 106. A slot 113 on the same side as plate 104 is used for the movable engagement of plate 104.

[0022] According to the above structure, rotating screw 103 and screw 2106 respectively causes insert 104 and insert 214 to protrude from the flat template 1, so that screw 103 is engaged with groove 112 of another flat template 1, and screw 2106 is engaged with groove 112 in the middle of another flat template 1. Rotating screw 103 drives insert 104 to move, insert 104 is embedded in groove 113 to connect and fix the two flat templates 1. Rotating screw 2106 drives insert 214 to move, so that insert 214 is embedded in groove 113 of another flat template 1, further fixing the two flat templates 1. By rotating rotating rod 108, one end of it is pressed against insert 104, and screw 3109 is rotated to be embedded in hole 111 to prevent rotating rod 108 from continuing to rotate, thus restricting the movement of insert 104, thereby making screw 103 more fixed.

[0023] See attached document Figures 3-4A beam frame 105 is symmetrically fixedly connected to one side of the flat template 1, and an auxiliary rod 203 for movably engaging with the groove 112 is symmetrically fixedly connected to one side of the corner plate 2. A groove 201 is provided through the two auxiliary rods 203 and on the adjacent side. A slot 202 is provided through the two sides of the groove 201. The two grooves 201 on the same side are movably engaged with the screw 103. The two slots 202 on the same side are used for the movable engagement of the panel 104. The groove 201 between the two auxiliary rods 203 is used for the movable engagement of the screw 106. The slot 202 between the two auxiliary rods 203 is used for the movable engagement of the panel 114.

[0024] According to the above structure, when the two planar templates 1 are spliced ​​at the corner, they are connected by the corner plate 2. The auxiliary insert rod 203 is embedded in the groove 112 at both ends of the planar template 1, and the screw 206 is embedded in the groove 201 between the two auxiliary insert rods 203. Rotating the screw 206 causes the plate 214 to be embedded in the groove 202 between the two auxiliary insert rods 203. The two screws 103 on the same side of the other planar template 1 are embedded in the groove 201 on the adjacent side of the auxiliary insert rod 203. Rotating the screw 103 causes the plate 104 to be embedded in the auxiliary insert rod 203. The two flat templates 1 can be connected and fixed by the corner plate 2 through the groove 202 on the adjacent side of the rod 203. The beam frame 105 is used to place the steel ribs. The flat templates 1 of this utility model can be spliced ​​and fixed to each other by components such as screw rod 103, plate 104, and groove 113. At the splicing corner, they can be spliced ​​and fixed by the corner plate 2, avoiding the tedious operation of disassembling and assembling a large number of fasteners during use, changing the traditional bolt fastening method, making the installation more time-saving and labor-saving, avoiding the loss of bolts and fasteners, saving costs, and avoiding property damage.

[0025] The working principle of this utility model is as follows: Rotating screw 103 and screw 106 causes insert 104 and insert 114 to protrude from the planar template 1, respectively. Screw 103 engages with groove 112 of another planar template 1, and screw 106 engages with groove 112 in the middle of another planar template 1. Rotating screw 103 moves insert 104, causing it to embed into groove 113, thus connecting and fixing the two planar templates 1. Rotating screw 106 moves insert 114, causing it to embed into groove 113 of another planar template 1, further fixing the two planar templates 1. Rotating rotating rod 108 causes one end to press against insert 104, and rotating screw 109 causes it to embed into hole 111, preventing the rotating rod 108 from being stopped. 8. Continue to rotate to restrict the movement of panel 104, thereby making screw 103 more fixed. When the two flat templates 1 are spliced ​​at the corner, they are connected by corner plate 2. Auxiliary insert rod 203 is embedded in the groove 112 at both ends of flat template 1. Screw 2 106 is embedded in the groove 201 between the two auxiliary insert rods 203. Rotate screw 2 106 to make panel 114 embedded in the groove 202 between the two auxiliary insert rods 203. Insert the two screws 103 on the same side of the other flat template 1 into the groove 201 on the adjacent side of the auxiliary insert rod 203. Rotate screw 103 to make panel 104 embedded in the groove 202 on the adjacent side of the auxiliary insert rod 203. The two flat templates 1 can then be connected and fixed by corner plate 2. Beam frame 105 is used to place steel ribs.

[0026] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model, unless otherwise specified or limited, shall be implemented using conventional methods in the field.

Claims

1. An aluminum shear wall formwork device, comprising planar forms (1) that can be assembled by being spliced with each other, and an angle plate (2) that is detachably assembled at a spliced corner of two planar forms (1), characterized in that: One side of the plane template (1) is fixedly connected with a vertical rib plate one (101), one side of the vertical rib plate one (101) is fixedly connected with a vertical rib plate two (102), both ends of the vertical rib plate one (101) are symmetrically screw-connected with screw rods one (103), one end of the screw rod one (103) and outside the plane template (1) are rotatably connected with a panel one (104), both sides of the plane template (1) are throughly provided with recesses one (112), both sides of the recesses one (112) are throughly provided with embedding grooves one (113), the middle part of the vertical rib plate two (102) is screw-connected with a screw rod two (106), one end of the screw rod two (106) and outside the plane template (1) are rotatably connected with a panel two (114), the panel one (104) and the panel two (114) are all provided with C-shaped, two recesses one (112) on the same side of the screw rod two (106) are used for movably embedding the screw rod one (103), two embedding grooves one (113) on the same side of the screw rod two (106) are used for movably embedding the panel one (104), the recess one (112) on the same side of the panel one (104) is used for movably embedding the screw rod two (106), the embedding groove one (113) on the same side of the panel one (104) is used for movably embedding the panel one (104).

2. The aluminum shear wall formwork apparatus of claim 1, wherein: Both ends of the vertical rib plate two (102) are throughly provided with through grooves (107), the middle part of the through groove (107) is rotatably connected with a rotating rod (108).

3. The aluminum shear wall formwork apparatus of claim 2, wherein: One end of the rotating rod (108) is screw-connected with a screw rod three (109), one side of the plane template (1) is symmetrically fixedly connected with a bottom plate (110), one side of the bottom plate (110) is arrayly provided with embedding holes (111) for embedding the screw rod three (109).

4. The aluminum shear wall formwork apparatus of claim 1, wherein: One side of the plane template (1) is symmetrically fixedly connected with a beam frame (105), one side of the angle plate (2) is symmetrically fixedly connected with auxiliary embedding rods (203) for movably embedding the recesses one (112).

5. The aluminum shear wall formwork apparatus of claim 4, wherein: Both between the two auxiliary embedding rods (203) and adjacent sides are throughly provided with recesses two (201), both sides of the recesses two (201) are throughly provided with embedding grooves two (202).

6. The aluminum shear wall formwork apparatus of claim 5, wherein: Two recesses two (201) on the same side are movably embedded with the screw rod one (103), two embedding grooves two (202) on the same side are used for movably embedding the panel one (104).

7. The aluminum shear wall formwork apparatus of claim 4, wherein: The recess two (201) between the two auxiliary embedding rods (203) is used for movably embedding the screw rod two (106), the embedding groove two (202) between the two auxiliary embedding rods (203) is used for movably embedding the panel two (114).