Combined glass fiber reinforced plastic building template

By using modular fiberglass building formwork with disc buckles and limiting components to connect columns, horizontal tie rods, and diagonal tie rods, the problem of cumbersome installation and disassembly in existing technologies is solved, enabling rapid installation and disassembly and improving operational efficiency.

CN224187181UActive Publication Date: 2026-05-01HUBEI JIAYE SUPPLY CHAIN MANAGEMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUBEI JIAYE SUPPLY CHAIN MANAGEMENT CO LTD
Filing Date
2025-05-29
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The installation and fixing process of existing fiberglass building formwork columns, horizontal bars and diagonal braces is cumbersome and involves many connecting parts, resulting in wasted time during installation and dismantling.

Method used

The modular fiberglass building formwork uses disc buckles and limiting components to connect columns, horizontal tie rods and diagonal tie rods. It can be quickly installed and disassembled through pins and connectors, and the limiting components prevent the pins from loosening.

Benefits of technology

It simplifies the installation and disassembly process, improves operational efficiency, reduces the number of connecting parts, and reduces wasted time.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224187181U_ABST
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Abstract

The utility model relates to the technical field of glass fiber reinforced plastic building templates, in particular to a combined type glass fiber reinforced plastic building template which comprises a supporting panel, a disc buckle and a limiting assembly, stand columns are arranged on one side of the supporting panel, a transverse pull rod is arranged on one side of each stand column, and the disc buckles are arranged at the connecting positions of the stand columns. The two ends of the transverse pull rod are provided with connectors used for being connected with disc buckles, the face, close to the supporting panel, of the supporting panel is also provided with a connector, the inner side of each connector is provided with a plug pin, and one side of the stand column is provided with a diagonal pull rod. The plate buckles are arranged at the connecting positions of the stand columns to vertically extend and install the multiple sets of stand columns, the transverse pull rods, the diagonal pull rods and the supporting panels form a frame structure to support the supporting panels, meanwhile, the connecting heads are arranged at the connecting positions of the transverse pull rods, the diagonal pull rods and the supporting panels with the plate buckles, and the connecting heads are connected with the plate buckles through the plug pins. And in addition, a limiting assembly is arranged to limit the plug pin so as to prevent the plug pin from loosening.
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Description

Modular fiberglass building formwork Technical Field

[0001] This utility model relates to the field of fiberglass building formwork technology, and in particular to combined fiberglass building formwork. Background Technology

[0002] Ordinary formwork will have a vertical seam after it is made, but formwork made of fiberglass can not only meet the standard in one go, but also will not have a seam. This is because fiberglass and concrete can bond to each other, and there will be no problem after the molding is completed. In addition, fiberglass has excellent performance. Although its density is only 1 / 4 of that of carbon steel, its strength is high and comparable to that of high-grade alloy steel. Therefore, fiberglass building formwork has been widely used in recent years.

[0003] When using construction formwork, the first step is to install a base rod, and then install the uprights on top of the base rod. Next, install horizontal bars and diagonal braces on one side of the uprights to form a frame structure with the uprights to improve the support strength. Finally, install the formwork panels inside the frame and seal them to form a box-like space for concrete pouring.

[0004] Currently, most columns, horizontal bars, and diagonal braces are fixed by binding wire, while some are fixed using T-shaped threaded fasteners. Both of these methods are quite troublesome to install and fix. Furthermore, the numerous connection points of columns, horizontal bars, and diagonal braces result in a large number of connecting parts, which further increases the time wasted during template installation and disassembly. Summary of the Invention

[0005] To overcome the fact that most column, horizontal bar, and diagonal brace installation methods are quite troublesome during both installation and fixing, and that the numerous connection points of columns, horizontal bars, and diagonal braces result in a large number of connecting parts, further increasing the time wasted during formwork installation and dismantling.

[0006] The technical solution of this utility model is as follows: a combined fiberglass building formwork, including a support panel, a snap fastener, and a limiting component. A column is provided on one side of the support panel, and a horizontal tie rod is provided on one side of the column. A snap fastener is provided at the connection between the columns. Connectors for connecting with the snap fastener are provided at both ends of the horizontal tie rod. Connectors are also provided on the side of the support panel close to the support panel. A pin is provided on the inner side of the connector to fix the connector to the snap fastener. A diagonal tie rod is provided on one side of the column to strengthen the frame. Connectors are also provided at both ends of the diagonal tie rod and are connected and fixed to the snap fastener by pins. The column, horizontal tie rod, and diagonal tie rod are all hollow structures designed for weight reduction.

[0007] Preferably, an auxiliary column is provided at the corner of the support panel, a first auxiliary crossbar is provided between the auxiliary column and the corner column, and a second auxiliary crossbar is provided between the corner columns.

[0008] Preferably, the first and second auxiliary crossbars are fixed to the disc buckle at both ends using connectors and pins, and the only difference between the first and second auxiliary crossbars and the tie rod is their length.

[0009] Preferably, the middle part of the disc buckle is provided with a connecting seat. The connecting seat is a hollow ring with an inner diameter that is the same as the outer diameter of the column. The two ends of the column and the connecting seat are provided with connecting holes and are connected and fixed with bolts and nuts.

[0010] Preferably, the buckle has a first insertion hole, the connector has a second insertion hole in the vertical direction, and the connector has an insertion groove in the horizontal direction.

[0011] Preferably, the limiting component includes a limiting block and a limiting buckle, the pin has a structure that is thicker at the top and thinner at the bottom, and a limiting block is provided at the bottom.

[0012] Preferably, the bottom of the connector is provided with a limit buckle, a lever is provided above the limit buckle, and a protruding block is provided at the bottom of the limit buckle for cooperating with the limit block for limiting. The center of gravity of the limit buckle is biased towards one side of the protruding block.

[0013] The beneficial effects of this utility model are:

[0014] Multiple columns are vertically extended and installed by setting disc buckles at the connection points of the columns. Horizontal and diagonal braces are set up to form a frame structure with the support panel to support the support panel. At the same time, connectors are set at the connection points of the horizontal and diagonal braces, the support panel and the disc buckles, and the connectors are connected to the disc buckles by pins, which facilitates the installation and disassembly by the operators. Limiting components are set to limit the pins to prevent them from loosening. Attached Figure Description

[0015] Figure 1 shows a three-dimensional structural diagram of this utility model;

[0016] Figure 2 shows a three-dimensional structural diagram of the horizontal tie rod of this utility model;

[0017] Figure 3 shows a three-dimensional structural diagram of the disc buckle of this utility model;

[0018] Figure 4 shows a three-dimensional structural diagram of the disc buckle connection state of this utility model;

[0019] Figure 5 shows a three-dimensional structural diagram of the pin of this utility model.

[0020] Explanation of reference numerals in the attached drawings: 1. Support panel; 2. Column; 201. Auxiliary column; 3. Horizontal tie rod; 301. First auxiliary horizontal bar; 302. Second auxiliary horizontal bar; 4. Diagonal tie rod; 5. Disc buckle; 501. Connecting seat; 502. Connecting hole; 503. First insertion hole; 6. Connector; 601. Second insertion hole; 602. Insertion slot; 7. Pin; 701. Limiting block; 8. Limiting buckle; 801. Protruding block; 802. Lever. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Please refer to Figures 1-5. This utility model provides an embodiment: a combined fiberglass building formwork, including a support panel 1, a snap fastener 5, and a limiting component. A column 2 is provided on one side of the support panel 1, and a horizontal tie rod 3 is provided on one side of the column 2. A snap fastener 5 is provided at the connection between the columns 2. Connecting heads 6 for connecting to the snap fastener 5 are provided at both ends of the horizontal tie rod 3. A connecting head 6 is also provided on the side of the support panel 1 closest to the support panel 1. A pin 7 is provided inside the connecting head 6 to fix the connecting head 6 to the snap fastener 5. A diagonal tie rod 4 for strengthening the frame is provided on one side of the column 2. The two ends of the diagonal tie rod 4 are... The sample is equipped with a connector 6 and is connected and fixed to the disc buckle 5 by a pin 7. The column 2, horizontal tie rod 3 and diagonal tie rod 4 are all hollow structures designed for weight reduction. Multiple sets of columns 2 are vertically extended and installed by setting disc buckles 5 at the connection points of the columns 2. The horizontal tie rod 3 and diagonal tie rod 4 are set to form a frame structure with the support panel 1 to support the support panel 1. At the same time, connectors 6 are set at the connection points of the horizontal tie rod 3, diagonal tie rod 4 and support panel 1 with disc buckles 5, and the connectors 6 are connected to the disc buckles 5 by pins 7, which facilitates the installation and disassembly by the operator. A limiting component is set to limit the pins 7 to prevent the pins 7 from loosening.

[0023] Please refer to Figure 2. In this embodiment, an auxiliary column 201 is provided at the corner of the support panel 1. A first auxiliary crossbar 301 is provided between the auxiliary column 201 and the corner column 2. A second auxiliary crossbar 302 is provided between the corner columns 2. The first auxiliary crossbar 301 and the second auxiliary crossbar 302 are connected and fixed to the disc buckle 5 at both ends using connectors 6 and pins 7. The only difference between the first auxiliary crossbar 301, the second auxiliary crossbar 302 and the horizontal tie rod 3 is their length. The support strength of the support panel 1 is improved at the corner of the template by the first auxiliary crossbar 301, the second auxiliary crossbar 302 and the auxiliary column 201.

[0024] Please refer to Figure 3. In this embodiment, a connecting seat 501 is provided in the middle part of the disc buckle 5. The connecting seat 501 is a hollow ring and its inner diameter is the same as the outer diameter of the column 2. The two ends of the column 2 and the connecting seat 501 are provided with connecting holes 502 and are connected and fixed with bolts and nuts. During installation, the two sets of columns 2 are inserted into the connecting seat 501 and the connecting holes 502 are aligned. Then, the disc buckle 5 and the column 2 are connected and fixed with bolts and nuts, thereby extending and fixing the column 2.

[0025] Please refer to Figure 5. In this embodiment, the disc buckle 5 has a first insertion hole 503, the connector 6 has a second insertion hole 601 in the vertical direction, and an insertion groove 602 in the horizontal direction. The limiting component includes a limiting block 701 and a limiting buckle 8. The pin 7 has a structure that is thicker at the top and thinner at the bottom, and a limiting block 701 is provided at the bottom. The bottom of the connector 6 is rotatably connected to the limiting buckle 8. A lever 802 is provided above the limiting buckle 8, and a protruding block 801 is provided at the bottom of the limiting buckle 8 for cooperating with the limiting block 701 for limiting. The center of gravity of the limiting buckle 8 is biased towards the protruding block 8. On one side of 01; insert the slot 602 into the disc buckle 5 and align the second insertion hole 601 with the first insertion hole 503. Then insert the pin 7 into the second insertion hole 601 and connect and fix the disc buckle 5 to the connector 6. Since the center of gravity of the limiting buckle 8 is biased towards the protruding block 801, under the action of gravity, the protruding block 801 is always in contact with the limiting block 701, thereby limiting the limiting block 701 and the pin 7 and preventing the pin 7 from loosening. When disassembling, the lever 802 can be moved to rotate the limiting buckle 8, so that the protruding block 801 and the limiting block 701 separate and contact the pin 7 for limiting.

[0026] During installation, insert the two sets of uprights 2 into the connecting seat 501 and align the connecting holes 502. Then, use bolts and nuts to connect and fix the disc buckle 5 to the uprights 2, thereby extending and fixing the uprights 2. After that, insert the connector 6 of the uprights 2 and the horizontal tie rod 3 into the disc buckle 5 and align the second insertion hole 601 with the first insertion hole 503. Then, insert the pin 7 into the second insertion hole 601 to connect and fix the disc buckle 5 to the connector 6. Since the center of gravity of the limiting buckle 8 is biased towards the protruding block 801, under the action of gravity, the protruding block 801 always fits against the limiting block 701, thereby limiting the limiting block 701 and the pin 7 and preventing the pin 7 from loosening. Finally, connect the support panel 1 to the disc buckle 5 in the same way. When disassembling, the lever 802 can be turned to rotate the limiting buckle 8, so that the protruding block 801 separates from the limiting block 701 and contacts the pin 7 to limit it, thereby enabling quick disassembly.

[0027] Through the above steps, multiple sets of columns 2 are vertically extended and installed by setting disc buckles 5 at the connection points of the columns 2, and horizontal tie rods 3 and diagonal tie rods 4 are set to form a frame structure with the support panel 1 to support the support panel 1. At the same time, connectors 6 are set at the connection points of the horizontal tie rods 3, diagonal tie rods 4 and support panel 1 with disc buckles 5, and pins 7 are used to connect the connectors 6 with disc buckles 5, which facilitates the installation and disassembly by the operators. In addition, a limiting component is set to limit the pins 7 to prevent them from loosening.

Claims

1. A modular fiberglass building formwork, comprising a supporting panel (1); characterized in that: It also includes a disc buckle (5) and a limiting component. A column (2) is provided on one side of the support panel (1), and a horizontal tie rod (3) is provided on one side of the column (2). A disc buckle (5) is provided at the connection between the columns (2). A connector (6) for connecting with the disc buckle (5) is provided at both ends of the horizontal tie rod (3). A connector (6) is also provided on the side of the support panel (1) close to the support panel (1). A pin (7) for fixing the connector (6) to the disc buckle (5) is provided on the inner side of the connector (6). A diagonal tie rod (4) for strengthening the frame is provided on one side of the column (2). A connector (6) is also provided at both ends of the diagonal tie rod (4) and is connected and fixed to the disc buckle (5) through the pin (7). The column (2), the horizontal tie rod (3) and the diagonal tie rod (4) are all hollow structures designed for weight reduction.

2. The combined fiberglass building formwork according to claim 1, characterized in that: An auxiliary column (201) is provided at the corner of the support panel (1), a first auxiliary crossbar (301) is provided between the auxiliary column (201) and the corner column (2), and a second auxiliary crossbar (302) is provided between the corner columns (2).

3. The combined fiberglass building formwork according to claim 2, characterized in that: The first auxiliary crossbar (301) and the second auxiliary crossbar (302) are connected and fixed to the disc buckle (5) at both ends using connectors (6) and pins (7). The first auxiliary crossbar (301), the second auxiliary crossbar (302) and the horizontal tie rod (3) are only different in length.

4. The combined fiberglass building formwork according to claim 1, characterized in that: A connecting seat (501) is provided in the middle part of the disc buckle (5). The connecting seat (501) is a hollow ring and its inner diameter is consistent with the outer diameter of the column (2). The two ends of the column (2) and the connecting seat (501) are provided with connecting holes (502) and are connected and fixed with bolts and nuts.

5. The combined fiberglass building formwork according to claim 1, characterized in that: The snap fastener (5) has a first insertion hole (503), the connector (6) has a second insertion hole (601) in the vertical direction, and the connector (6) has an insertion groove (602) in the horizontal direction.

6. The combined fiberglass building formwork according to claim 1, characterized in that: The limiting component includes a limiting block (701) and a limiting buckle (8). The pin (7) has a structure that is thicker at the top and thinner at the bottom, and a limiting block (701) is provided at the bottom.

7. The combined fiberglass building formwork according to claim 6, characterized in that: The bottom of the connector (6) is rotatably connected to a limit buckle (8). A lever (802) is provided above the limit buckle (8). The bottom of the limit buckle (8) is provided with a protruding block (801) for cooperating with the limit block (701) for limiting. The center of gravity of the limit buckle (8) is biased towards one side of the protruding block (801).