Concrete pouring lining die
By designing an inner lining mold for concrete pouring and utilizing a combination of steel plates and studs to enhance the stability of the mold, the problem of deformation or displacement of the mold during pouring was solved, ensuring the shape and dimensional accuracy of the concrete and improving the quality and durability of the concrete.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2026-04-07
AI Technical Summary
Existing casting formwork may lack stability, leading to deformation or displacement during the casting process, which affects the shape and dimensional accuracy of the concrete. At the same time, hollow areas and cracks may appear inside the concrete, reducing the overall quality and durability of the concrete.
A concrete pouring inner lining formwork is designed, including a formwork and a support module. By welding horizontal and vertical steel plates, as well as a combination of studs and nuts, the stability and support of the formwork are enhanced, ensuring that the formwork does not deform or shift during the pouring process.
It improves the stability of the formwork, ensures the precision and dimensional accuracy of concrete pouring, reduces construction errors, and enhances the overall quality and durability of the concrete.
Smart Images

Figure CN224092978U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to concrete pouring technical field especially relates to a concrete pouring lining mould. BACKGROUND
[0002] Concrete is a kind of building material, by cementitious material, granular aggregate and water, and necessary when adding admixture and admixture are prepared according to certain proportion, even stirring, compacting, curing and hardening and become a kind of artificial stone, in the process of concrete pouring, formwork is needed to guarantee the surface flatness of concrete internal structure, and help to fix the internal shape of concrete, at the same time, lining film is arranged between formwork and concrete, can provide specific decorative effect, texture or protective layer for concrete surface after concrete solidification.
[0003] The bearing capacity of the existing pouring formwork support can be insufficient, resulting in insufficient stability, which can cause the formwork to deform or displace during concrete pouring, thereby affecting the shape and size accuracy of the concrete, and also can cause hollowing and cracking in the concrete, affecting the overall quality and durability of the concrete.
[0004] Therefore, in view of the above-mentioned problems that the existing pouring formwork can be insufficient in stability, deformed or displaced during pouring, affecting the shape and size accuracy of the concrete, and the concrete can have hollowing and cracking inside, reducing the overall quality and durability of the concrete, a concrete pouring lining mould can be designed to set up a support structure to improve the stability of the formwork. SUMMARY
[0005] In order to overcome the problem that the existing pouring formwork can be insufficient in stability, deformed or displaced during pouring, affecting the shape and size accuracy of the concrete, and the concrete can have hollowing and cracking inside, reducing the overall quality and durability of the concrete.
[0006] The technical scheme of the utility model is as follows: a concrete pouring lining mould, comprising a formwork and a support module, the formwork is welded with a support module for providing stable support force, the support module comprises a horizontal steel plate, the horizontal steel plate is longitudinally provided with four groups, three groups of rectangular clamping grooves are horizontally and spaced apart on the horizontal steel plate, a vertical steel plate is provided in the middle of the rectangular clamping groove, a second threaded stud for connecting the four horizontal steel plates is provided at the connection between the vertical steel plate and the horizontal steel plate, and a second nut is provided outside the second threaded stud at both ends.
[0007] Preferably, the formwork is first positioned and connected to the position where concrete pouring is needed, then the support module is assembled and placed on the formwork, welded with the formwork, the top plate on the formwork is positioned and connected, and finally the support module and the top plate are welded, thereby improving the stable support force of the formwork.
[0008] As preferred, arc-shaped mounting plates are symmetrically mounted on both sides of the template, and first studs are arranged at both ends of the arc-shaped mounting plates.
[0009] As preferred, first nuts are arranged outside the first studs, and an inner lining film is arranged on the inner wall below the template.
[0010] As preferred, a top plate is arranged above the template, strip-shaped clamping grooves are arranged at both side edges of the top plate, and strip-shaped clamping plates are arranged at both side edges of the lower end of the top plate.
[0011] As preferred, the strip-shaped clamping plates drive the top plate to be positioned and clamped along the strip-shaped clamping grooves and the template.
[0012] As preferred, the transverse steel plates are welded and fixed at both ends of the template.
[0013] As preferred, the vertical steel plates are welded and fixed at both ends of the template and the top plate.
[0014] The template is first positioned and connected with a position where concrete needs to be poured, then the support module is assembled and placed on the template after being assembled, and the template is welded, then the top plate on the template is positioned and connected, and finally the support module and the top plate are also welded, thereby improving the stable supporting force of the template. By this method, it can be ensured that the lining template does not deform or displace during pouring, thereby ensuring the accuracy and size accuracy of the concrete pouring, and the template can be positioned and fixed more accurately by the construction personnel, reducing the construction error caused by the shaking or displacement of the template, and improving the overall quality and durability of the concrete. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 The overall structure of the pouring lining mold of the utility model is shown;
[0016] Figure 2 The arc-shaped mounting plate structure of the pouring lining mold of the utility model is shown;
[0017] Figure 3 The lining film structure of the pouring lining mold of the utility model is shown;
[0018] Figure 4 The vertical plate structure of the pouring lining mold of the utility model is shown.
[0019] Mark 1, template; 101, arc-shaped mounting plate; 102, first stud; 103, first nut; 104, top plate; 105, lining film; 106, strip-shaped clamping groove; 107, strip-shaped clamping plate; 201, transverse steel plate; 202, vertical steel plate; 203, rectangular clamping groove; 204, second stud; 205, second nut. DETAILED DESCRIPTION
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Please see Figures 1-4 This utility model provides an embodiment: a concrete pouring inner lining mold, including a template 1 and a support module; a support module for providing stable support force is welded on the top of the template 1, the support module includes a transverse steel plate 201, four sets of transverse steel plates 201 are arranged longitudinally, three sets of rectangular snap-fit grooves 203 are arranged transversely at intervals on the transverse steel plate 201, a vertical steel plate 202 is inserted through the middle of the rectangular snap-fit groove 203, a second stud 204 connecting the four sets of transverse steel plates 201 is inserted at the connection between the vertical steel plate 202 and the transverse steel plate 201, and a second nut 205 is sleeved on the outside of each end of the second stud 204.
[0022] Please see Figures 2-3 In this embodiment, arc-shaped mounting plates 101 are symmetrically installed on both sides of the template 1. First studs 102 are threaded through both ends of the arc-shaped mounting plates 101. The template 1 is first placed at the location where concrete needs to be poured. Then, the first studs 102 are passed through the arc-shaped mounting plates 101 to position them in relation to the concrete pouring location. Finally, they are tightened and fixed by first nuts 103. First nuts 103 are fitted onto the outside of the first studs 102. An inner lining membrane 105 is attached to the lower inner wall of the template 1. The inner lining membrane 105 prevents concrete from directly contacting the surface of the template 1, thereby reducing defects on the concrete surface. To make the concrete surface smoother and more aesthetically pleasing, a top plate 104 is provided above the formwork 1. Strip-shaped snap-fit grooves 106 are provided on both sides of the top edge of the formwork 1. Strip-shaped snap-fit plates 107 are installed on both sides of the lower end of the top plate 104. The strip-shaped snap-fit grooves 106 and the strip-shaped snap-fit plates 107 can position and connect the top plate 104 to the formwork 1. The strip-shaped snap-fit plates 107 drive the top plate 104 to be positioned and snapped into the formwork 1 along the strip-shaped snap-fit grooves 106. When the top plate 104 is lifted, the strip-shaped snap-fit plates 107 drive the top plate 104 to be positioned and snapped into the formwork 1 along the strip-shaped snap-fit grooves 106, thus completing the assembly of the top plate 104.
[0023] Please see Figure 4 In this embodiment, the two ends of the horizontal steel plate 201 are welded and fixed to the template 1, and the whole plate is placed on top of the template 1. The horizontal steel plate 201 is welded to the template 1, and the two ends of the vertical steel plate 202 are welded and fixed to the template 1 and the top plate 104 respectively, so as to provide stable support.
[0024] During the work, first, place the template 1 at the location where concrete needs to be poured. Then, pass the first stud 102 through the arc-shaped mounting plate 101 to position it at the concrete pouring location, and then tighten it with the first nut 103. After the template 1 is fixed in position, take out four sets of horizontal steel plates 201 and arrange them longitudinally. Then, position and connect the vertical steel plates 202 to the horizontal steel plates 201 through the rectangular snap-fit grooves 203. Then, pick up the second stud 204 and pass it through the connection between the vertical steel plate 202 and the horizontal steel plate 201, thereby connecting the four sets of horizontal steel plates 201. Then, the second nut 205 is tightened and fixed. After confirming that everything is correct, the whole thing is placed on top of the template 1. Finally, the top plate 104 is lifted, and the strip-shaped snap-fit plate 107 drives the top plate 104 to be positioned and snapped into the template 1 along the strip-shaped snap-fit groove 106. After all the assembly is completed, the horizontal steel plate 201 is welded to the template 1, and the two ends of the vertical steel plate 202 are welded to the template 1 and the top plate 104 respectively to provide stable support. Then, the concrete pouring operation is carried out. During this process, the inner lining membrane 105 can prevent the concrete from directly contacting the surface of the template 1, thereby reducing defects on the concrete surface.
[0025] Through the above steps, the template 1 is first positioned and connected to the location where concrete needs to be poured. Then, the support module is assembled and placed on the template 1 and welded to it. Next, the top plate 104 on the template 1 is positioned and connected to it. Finally, the support module is also welded to the top plate 104. This improves the stability and support of the template 1. This method ensures that the inner lining template 1 does not deform or shift during the pouring process, thereby guaranteeing the accuracy and dimensional precision of the concrete pouring. At the same time, construction personnel can more accurately position and fix the template 1, reducing construction errors caused by the shaking or displacement of the template 1, and improving the overall quality and durability of the concrete. This solves the problem that the existing pouring template 1 may lack stability, deform or shift during the pouring process, affecting the shape and dimensional accuracy of the concrete, and may also cause hollow areas and cracks inside the concrete, reducing the overall quality and durability of the concrete.
Claims
1. A concrete casting inner lining mold, comprising a template (1); characterized in that: It also includes a support module; a support module for providing stable support is welded on the top of the template (1). The support module includes a horizontal steel plate (201), which has four sets in the longitudinal direction. Three sets of rectangular snap-fit grooves (203) are horizontally spaced on the horizontal steel plate (201). A vertical steel plate (202) is inserted through the middle of the rectangular snap-fit groove (203). A second stud (204) connecting the four sets of horizontal steel plates (201) is inserted at the connection between the vertical steel plate (202) and the horizontal steel plate (201). A second nut (205) is fitted on the outside of each end of the second stud (204).
2. The concrete casting inner lining mold according to claim 1, characterized in that: The template (1) has symmetrical arc-shaped mounting plates (101) installed on both sides, and the arc-shaped mounting plates (101) have first studs (102) inserted at both ends.
3. The concrete casting inner lining mold according to claim 2, characterized in that: The first stud (102) is fitted with a first nut (103), and the inner wall below the template (1) is fitted with an inner lining membrane (105).
4. The concrete casting inner lining mold according to claim 1, characterized in that: A top plate (104) is provided above the template (1), and strip-shaped snap-fit grooves (106) are provided on both sides of the top of the template (1). Strip-shaped snap-fit plates (107) are installed on both sides of the bottom of the top plate (104).
5. A concrete casting inner lining mold according to claim 4, characterized in that: The strip snap plate (107) drives the top plate (104) to be positioned and snapped with the template (1) along the strip snap groove (106).
6. A concrete casting inner lining mold according to claim 1, characterized in that: The transverse steel plate (201) is welded and fixed to the template (1) at both ends.
7. A concrete casting inner lining mold according to claim 1, characterized in that: The vertical steel plate (202) is welded and fixed to the template (1) and the top plate (104) at both ends respectively.