Channel side plate supporting mold

The channel side plate support mold, which uses square template splicing and positioning pipe reinforcement, solves the problem of cumbersome construction of channel side plate pouring support mold, and improves construction efficiency and support strength.

CN224063363UActive Publication Date: 2026-03-31HUNAN ANJIAN CONSTRUCTION DEVELOPMENT CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The existing channel side plate pouring support mold construction is cumbersome and has low construction efficiency.

Method used

Multiple square templates are used, with ribs on the back of the templates to enhance the support strength. They are spliced ​​together by sleeves and clamps. The inner and outer templates are reinforced by positioning pipes to form a pouring groove. The outer positioning pipes are inserted deep into the ground to improve the support strength and flexibility.

Benefits of technology

It enables efficient installation and disassembly, provides high support strength, adapts to channel turning, and reduces the use of auxiliary reinforcement accessories.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a channel side plate supporting mold which comprises a plurality of mold plates, the back sides of the mold plates are provided with edge plates used for improving supporting strength, and the front sides of the mold plates are smooth sides. A sleeve is fixed on one side of each template, a clamping sleeve is arranged on the other side of each template, and the corresponding sleeve and clamping sleeve of the adjacent templates are clamped with each other; a first positioning pipe is inserted into the sleeve corresponding to the inner side formwork, and a second positioning pipe is inserted into the sleeve corresponding to the outer side formwork. In order to enable the vertical sides of the upper side formwork and the lower side formwork to have supporting force, the inner side formwork and the outer side formwork corresponding to the pouring groove are reinforced through the first positioning pipe and the second positioning pipe, and the second positioning pipe on the outer side is inserted into the corresponding sleeve and inserted into the deep position of the earth surface when used. A pouring groove formed by supporting through the mold system is high in supporting strength, the corresponding channel steering position can be adjusted, the mounting and dismounting efficiency is high, and auxiliary reinforcing accessories are not needed.
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Description

Technical Field

[0001] This utility model belongs to the technical field of engineering construction equipment, and in particular relates to a channel side plate support mold. Background Technology

[0002] Farmland irrigation, domestic sewage disposal, and lake diversion all require the construction of dedicated drainage ditches, which are dug on the ground. After digging the ditches, to prevent water seepage and silt accumulation, a cement layer needs to be poured at the ditches to isolate them from the soil layer, facilitating later channel cleaning. Existing ditches are typically U-shaped in cross-section, with the upper side being the open side, and the side in contact with the ditch is constructed using cement and concrete.

[0003] The construction of irrigation canals begins with pouring a concrete base slab on the ground to form the bottom of the canal after it is formed. Then, using the base slab as a foundation, concrete side slabs are poured along its edges. Unlike the base slab pouring, the construction of the canal side slabs requires molds for support. Existing support molds are cumbersome to install, assemble, and dismantle, resulting in high efficiency due to their time-consuming and labor-intensive nature. Therefore, this invention primarily aims to construct a canal side slab support mold system to solve the problems of cumbersome construction and low efficiency associated with existing side slab pouring support molds. Utility Model Content

[0004] The purpose of this utility model is to provide a channel side plate support mold, which solves the problems of cumbersome construction and low construction efficiency of existing side plate casting support molds.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0006] A channel side plate support mold includes multiple templates, each template having a square structure, with a ribbed plate on the back side for improving support strength, and a smooth front side.

[0007] The templates are spliced ​​together to form the casting groove for the channel side plate. One side of the template is fixed with a sleeve, and the other side has a clamp. The sleeves and clamps of adjacent templates are interlocked.

[0008] The inner template has a first positioning tube inserted into the corresponding sleeve, and the outer template has a second positioning tube inserted into the corresponding sleeve.

[0009] Furthermore, a support plate is connected between the first positioning tubes corresponding to the inner template, the support plate being located at the bottom, and the first positioning tubes being vertically fixed to the support plate. A first positioning plate is connected between the first positioning tubes corresponding to the inner template, and a first positioning hole for sleeved onto the upper end of the first positioning tube is provided at the corresponding end of the first positioning plate.

[0010] Furthermore, a second positioning plate is connected between the inner first positioning tube and the outer second positioning tube corresponding to the casting groove. The second positioning plate has a second positioning hole for sleeved with the first positioning tube, and also has a third positioning hole for sleeved with the second positioning tube. There are multiple third positioning holes, which are arranged extending along the length direction of the second positioning plate.

[0011] This invention offers the following advantages: It is constructed using template splicing, with the corresponding sleeves of the upper and lower templates aligned. Adjacent templates are engaged and installed via the snap-fit ​​connection between the sleeves and clamps. Furthermore, the templates can be rotated according to the curved sections of the channel. To ensure vertical support on the upper and lower templates, both the inner and outer templates corresponding to the casting trench are reinforced with first and second positioning pipes. The outer second positioning pipe is inserted into the corresponding sleeve and then deep into the ground. The casting trench formed by this mold system provides high support strength, allows for adjustable channel rotation positions, and offers high installation and disassembly efficiency without the need for auxiliary reinforcement components. Attached Figure Description

[0012] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.

[0013] Figure 1 : Schematic diagram of the construction structure of this utility model.

[0014] Figure 2 : Schematic diagram of the disassembly structure of the support component of this utility model.

[0015] Figure 3 : Schematic diagram of the template structure of this utility model.

[0016] Figure 4 : Schematic diagram of the supporting component structure of this utility model.

[0017] Figure 5 : Schematic diagram of the construction section structure of this utility model.

[0018] The components represented by each number in the attached diagram are listed below: template 1, sleeve 11, ferrule 12, first positioning tube 2, second positioning tube 3, support plate 4, first positioning plate 5, first positioning hole 51, second positioning plate 6, second positioning hole 61, and third positioning hole 62. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0020] like Figure 1-5As shown: A channel side plate support mold includes multiple templates 1. The template 1 has a square structure, and the back side of the template 1 has a rib plate for improving the support strength. The front side is a smooth side.

[0021] Templates 1 are spliced ​​together to form the casting groove for the channel side plate. One side of template 1 is fixed with a sleeve 11, and the other side has a clamping sleeve 12. The sleeves 11 and clamping sleeves 12 of adjacent templates 1 are interlocked. The smooth side of the template faces the casting groove, and the back side ribs are located on the side to form a frame structure. The inner side of the frame also has inner ribs distributed in a cross shape. The sleeve is a tubular structure that extends along the upper side of the template side and is fixed to the template side through a connecting part. The other side is a clamping sleeve with an arc-shaped cross section to form an arc-shaped clamping groove, which is clamped into the sleeve by external force.

[0022] The inner template 1 has a sleeve 11 with a first positioning tube 2 inserted into it, and the outer template 1 has a sleeve 11 with a second positioning tube 3 inserted into it.

[0023] This utility model's mold support system is constructed by splicing templates. The upper and lower templates have corresponding sleeves aligned, and adjacent templates are engaged and installed via the snap-fit ​​connection between the sleeves and clamps. Furthermore, the templates can be rotated according to the curved sections of the channel. To ensure vertical support on the upper and lower templates, both the inner and outer templates corresponding to the casting trench are reinforced with first and second positioning pipes. The outer second positioning pipe is inserted into the corresponding sleeve and driven deep into the ground. The casting trench supported by this mold system has high strength, adjustable channel rotation position, high installation and disassembly efficiency, and requires no auxiliary reinforcement accessories.

[0024] like Figure 4 As shown: A support plate 4 is connected between the first positioning tubes 2 corresponding to the inner template 1. The support plate 4 is located at the bottom, and the first positioning tubes 2 are vertically fixed to the support plate 4. The support plate is used to support the formed channel bottom plate and to provide bottom support between the inner first positioning tubes.

[0025] A first positioning plate 5 is connected between the inner template 1 and the corresponding first positioning tube 2. The first positioning plate 5 has a first positioning hole 51 at the corresponding end for sleeved onto the upper end of the first positioning tube 2. This provides upper support for the inner first positioning tube.

[0026] A second positioning plate 6 connects the inner first positioning tube 2 and the outer second positioning tube 3 corresponding to the pouring groove. The second positioning plate 6 has a second positioning hole 61 for sleeved with the first positioning tube 2, and a third positioning hole 62 for sleeved with the second positioning tube 3. This serves as support between the inner and outer templates of the pouring groove. Multiple third positioning holes 62 extend along the length of the second positioning plate 6. The position of the second positioning tube can be adjusted according to the thickness of the pouring groove.

[0027] These embodiments are selected and specifically described in this specification in order to better explain the principles and practical applications of this utility model, so that those skilled in the art can better understand and utilize this utility model.

Claims

1. A channel side plate support mold characterized in that: a plurality of templates (1) are included, the templates (1) are square structures, the back side of the templates (1) has a rib plate for improving the support strength, and the front side is a smooth side; the templates (1) are spliced with each other to form a pouring groove of a channel side plate, one side of the template (1) is fixed with a sleeve (11), and the other side has a clamping sleeve (12), the corresponding sleeve (11) and clamping sleeve (12) of adjacent templates (1) are clamped with each other; the corresponding sleeve (11) of the inner side template (1) is inserted with a first positioning pipe (2), and the corresponding sleeve (11) of the outer side template (1) is inserted with a second positioning pipe (3); a support plate (4) is connected between the corresponding first positioning pipes (2) of the inner side templates (1), the support plate (4) is located at the bottom, and the first positioning pipe (2) is vertically fixed on the support plate (4); a first positioning plate (5) is connected between the corresponding first positioning pipes (2) of the inner side templates (1), and the first positioning plate (5) is provided with a first positioning hole (51) at the corresponding end portion for sleeving the upper end of the first positioning pipe (2); a second positioning plate (6) is connected between the corresponding inner side first positioning pipe (2) and outer side second positioning pipe (3) of the pouring groove, the second positioning plate (6) is provided with a second positioning hole (61) for sleeving the first positioning pipe (2), and is also provided with a third positioning hole (62) for sleeving the second positioning pipe (3).

2. A channel side support form according to claim 1, characterised in that: The third positioning hole (62) is a plurality of holes arranged along the length direction of the second positioning plate (6).