Steel woven net manufacturing mold
By designing a mold for making steel woven mesh and using a combination of support plates and channeled angle steel, the problems of time-consuming and labor-intensive steel woven mesh production and inconsistent spacing were solved, realizing convenient and efficient steel woven mesh production and ensuring the stability and adaptability of product quality.
Patent Information
- Application Number
- CN202520549562.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-27
AI Technical Summary
The current steel woven wire mesh production is time-consuming and labor-intensive, with low work efficiency, inconsistent spacing, and unstable product quality.
A steel mesh fabrication mold is used, which includes a support plate, a grooved angle steel and a supporting round steel. Through the combination of semi-circular groove design and fixed angle steel, the steel bars can be conveniently positioned and welded, ensuring consistent spacing.
It simplifies the production of steel woven mesh, improves efficiency, ensures the stability and consistency of product quality, and adapts to the needs of steel woven mesh of different sizes.
Smart Images

Figure CN223902843U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of production mould, specifically to a kind of steel mesh production mould. BACKGROUND
[0002] Steel mesh plays multiple roles in mine filling, such as strengthening structure, improving stability, ensuring safety and protecting environment, and is an indispensable part of modern mine filling technology. Currently, steel mesh is mostly made by manual weaving, but this method not only consumes time and effort, but also has low work efficiency, and the spacing of steel mesh is difficult to ensure consistent, so the product quality is unstable.
[0003] To improve this situation, a special steel mesh production mould is needed to effectively solve the above problems. CONTENT OF UTILITY MODEL
[0004] The technical problem to be solved by the utility model is to provide a steel mesh production mould, which realizes convenient steel mesh production, saves time and effort, improves production efficiency, ensures consistent spacing of steel mesh and maintains stability of product quality.
[0005] To solve this technical problem, the utility model adopts the following technical scheme:
[0006] A steel mesh production mould, comprising a support plate, an L-shaped front channel angle steel is fixed to the top front side of the support plate, and the L-shaped opening of the front channel angle steel faces forward; an L-shaped rear channel angle steel is fixed to the top rear side of the support plate, and the L-shaped opening of the rear channel angle steel faces backward, and the rear channel angle steel is parallel to the front channel angle steel;
[0007] A front support round steel and a rear support round steel are fixed to the support plate, the front support round steel is located at the rear side of the front channel angle steel, and the rear support round steel is located at the front side of the rear channel steel;
[0008] Left and right channel angle steels are further arranged between the front and rear channel angle steels, and the left and right channel angle steels are located at the top of the front and rear support round steels, and the left and right channel angle steels are higher than the front and rear channel angle steels, and the left, right, front and rear channel angle steels can form a closed square.
[0009] A plurality of semicircular grooves are equidistantly arranged at the top of the left, right, front and rear channel angle steels.
[0010] Preferably, the diameter of the semicircular groove is the same as the diameter of the steel bar used for steel mesh, and the semicircular groove at the top of the left channel angle steel corresponds to the semicircular groove at the top of the right channel angle steel one by one, and the semicircular groove at the top of the front channel angle steel corresponds to the semicircular groove at the top of the rear channel angle steel one by one.
[0011] Preferably, the diameter of the front supporting round steel and the diameter of the rear supporting round steel are the same as the diameter of the steel bar used for the steel mesh, and the left channel angle steel and the right channel angle steel are higher than the height of the steel bar used for one steel mesh of the front channel angle steel and the rear channel angle steel.
[0012] Preferably, the L-shaped opening of the front channel angle steel is fixed with an L-shaped front fixed angle steel, the L-shaped opening of the front fixed angle steel is in the same direction as the L-shaped opening of the front channel angle steel, and the front fixed angle steel is higher than the front channel angle steel; the L-shaped opening of the right channel angle steel is fixed with an L-shaped right fixed angle steel, the L-shaped opening of the right fixed angle steel is in the same direction as the L-shaped opening of the right channel angle steel, and the right fixed angle steel is higher than the right channel angle steel.
[0013] Further preferably, the length of the front channel angle steel is not less than the length of the front fixed angle steel, and the length of the right channel angle steel is not less than the length of the right fixed angle steel.
[0014] Preferably, the length of the front channel angle steel and the length of the rear channel angle steel are the same, the length of the left channel angle steel and the length of the right channel angle steel are the same, and the length of the front channel angle steel is not less than the length of the left channel angle steel.
[0015] Further preferably, the length of the front channel angle steel is greater than the length of the left channel angle steel; the fixed position of the rear channel angle steel on the supporting plate can be translated backward; the left channel angle steel and the right channel angle steel are spliced and fixed with a channel angle steel module for filling the gap caused by the backward translation of the rear channel angle steel.
[0016] Preferably, the bottom of the four corners of the supporting plate is respectively provided with a supporting round pipe.
[0017] Further preferably, a transverse connecting fixed rod is further provided between the two adjacent supporting round pipes.
[0018] The positive effect of the utility model lies in:
[0019] Firstly, the utility model sets four channel angle steels with a plurality of semicircular grooves on the top and surrounding a square, wherein the front channel angle steel and the rear channel angle steel are used for placing the bottom layer steel bar, the left channel angle steel and the right channel angle steel are used for placing the top layer steel bar, and then welding is carried out at the fixed point, so that the convenience of steel mesh production is realized, time and labor are saved, and the production efficiency is improved; and the device can ensure the uniformity of the spacing of the steel mesh, greatly improves the product quality, and ensures the stability of the product quality.
[0020] Secondly, the utility model sets the front supporting round steel and the rear supporting round steel with the same diameter as the steel bar used for the steel mesh, so that the bottom layer steel bar and the top layer steel bar are in contact during the production of the steel mesh, the production efficiency is further improved, and the product quality is ensured.
[0021] Third, the utility model discloses a support plate is translated to the position of the rear slotted angle steel, and the slotted angle steel module is fixed in one end of left slotted angle steel and right slotted angle steel splicing, can according to the size requirement of steel mesh product, the adaptability of the device is adjusted, make the device can be applicable to the production of various sizes steel mesh, increase its use range.
[0022] Fourth, the utility model discloses a front fixed angle steel and right fixed angle steel can play the limiting action to the reinforcing steel bar, guarantee the one end (fixed angle steel side) of all reinforcing steel bar flush, the overall length of each reinforcing steel bar in steel mesh can be guaranteed to be completely identical through the tailoring operation of another end, maintain the stability of product quality. BRIEF DESCRIPTION OF DRAWINGS
[0023] Fig. 1 It is the overall structure of the utility model top view;
[0024] Fig. 2 It is the overall structure of the utility model left view;
[0025] Fig. 3 It is the overall structure of the utility model front view. DETAILED DESCRIPTION
[0026] The technical scheme in the embodiments of the utility model will be described clearly and completely in conjunction with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the range of protection of the utility model.
[0027] As Figs. 1-3 The utility model discloses a support plate 3, and the bottom of four corners of support plate 3 is respectively provided with symmetrical support round pipe 5, and the adjacent two support round pipes 5 are also provided with transverse connecting fixed rod.
[0028] The top front side of support plate 3 is fixed with L type's front slotted angle steel 1, and the L type opening of front slotted angle steel 1 is forward. The L type opening of front slotted angle steel 1 is fixed with L type's front fixed angle steel 11, and the L type opening of front fixed angle steel 11 is same direction with the L type opening of front slotted angle steel 1, and front fixed angle steel 11 is higher than front slotted angle steel 1, and the length of front slotted angle steel 1 is not less than the length of front fixed angle steel 11.
[0029] The top rear side of support plate 3 is fixed with L type's rear slotted angle steel 4, and the L type opening of rear slotted angle steel 4 is backward, and rear slotted angle steel 4 is parallel to front slotted angle steel 1.
[0030] The support plate 3 is fixed with a front support round steel 9 and a rear support round steel 8, the front support round steel 9 is located at the rear side of the front channel angle steel 1, and the rear support round steel 8 is located at the front side of the rear channel angle steel 4. The diameter of the front support round steel 9 and the diameter of the rear support round steel 8 are the same as the diameter of the reinforcing steel used for the steel mesh. By setting the front support round steel 9 and the rear support round steel 8 with the same diameter as the reinforcing steel used for the steel mesh, it is ensured that the bottom reinforcing steel and the top reinforcing steel will be in contact during the production of the steel mesh, improving the production efficiency and ensuring the product quality.
[0031] The left channel angle steel 2 and the right channel angle steel 7 are further arranged between the front channel angle steel 1 and the rear channel angle steel 4, and the left channel angle steel 2 and the right channel angle steel 7 are located at the top of the front support round steel 9 and the rear support round steel 8, and the left channel angle steel 2 and the right channel angle steel 7 are higher than the front channel angle steel 1 and the rear channel angle steel 4 by a height of a reinforcing steel diameter used for a steel mesh. The L-shaped right fixed angle steel 10 is fixed in the L-shaped opening of the right channel angle steel 7, the L-shaped opening of the right fixed angle steel 10 is in the same direction as the L-shaped opening of the right channel angle steel 7, the right fixed angle steel 10 is higher than the right channel angle steel 7, and the length of the right channel angle steel 7 is not less than the length of the right fixed angle steel 10. By setting the front fixed angle steel 11 and the right fixed angle steel 10, the reinforcing steel can be limited, ensuring that one end (the side of the fixed angle steel) of all reinforcing steels is flush, and the overall length of each reinforcing steel in the steel mesh can be ensured to be completely consistent after cutting operation, maintaining the stability of the product quality.
[0032] The length of the front channel angle steel 1 is the same as the length of the rear channel angle steel 4, the length of the left channel angle steel 2 is the same as the length of the right channel angle steel 7, and the left channel angle steel 2, the right channel angle steel 7, the front channel angle steel 1 and the rear channel angle steel 4 can form a closed square. The length of the front channel angle steel 1 is not less than the length of the left channel angle steel 2, that is, the length of the front channel angle steel 1 is equal to the length of the left channel angle steel 2, or the length of the front channel angle steel 1 is greater than the length of the left channel angle steel 2.
[0033] When the length of the front channel angle steel 1 is equal to the length of the left channel angle steel 2, the rear channel angle steel 4 is welded and fixed at the rear side of the top of the support plate 3 (the fixed position of the rear channel angle steel 4 on the support plate 3 cannot be adjusted and moved).
[0034] When the length of the current slotted angle steel 1 is greater than the length of the left slotted angle steel 2, the rear slotted angle steel 4 is partially welded and fixed on the support plate 3 (the fixed position of the rear slotted angle steel 4 on the top of the support plate 3 can be translated backward, and before translation, the rear slotted angle steel 4 is completely cut off on the top of the support plate 3, and then welded and fixed on the new position on the top of the support plate 3). The left slotted angle steel 2 and the right slotted angle steel 7 are spliced and fixed with a slotted angle steel module to fill the gap caused by the rear slotted angle steel 4 translating backward. By translating the position of the rear slotted angle steel 4 on the support plate 3 backward and splicing and fixing the slotted angle steel module at one end of the left slotted angle steel 2 and the right slotted angle steel 7, the device can be adaptively adjusted according to the size requirements of the steel mesh product, so that the device can be applied to the production of steel meshes of various sizes, thereby increasing the use range.
[0035] The top of the left slotted angle steel 2, the right slotted angle steel 7, the front slotted angle steel 1 and the rear slotted angle steel 4 is provided with a plurality of semicircular grooves 6 at equal intervals, and the diameter of the semicircular groove 6 is the same as the diameter of the reinforcing steel bar used for the steel mesh. The semicircular groove 6 on the top of the left slotted angle steel 2 corresponds to the semicircular groove 6 on the top of the right slotted angle steel 7 one by one, and the semicircular groove 6 on the top of the front slotted angle steel 1 corresponds to the semicircular groove 6 on the top of the rear slotted angle steel 4 one by one.
[0036] By setting four slotted angle steels with a plurality of semicircular grooves 6 on the top and surrounding a square, the front slotted angle steel 1 and the rear slotted angle steel 4 are used to place the bottom reinforcing steel bar, and the left slotted angle steel 2 and the right slotted angle steel 7 are used to place the top reinforcing steel bar. Welding at the fixing point of the two layers of reinforcing steel bars can realize the convenience of steel mesh production, save time and effort, and improve the production efficiency; and the device can ensure the uniformity of the spacing of the steel mesh, greatly improve the product quality, and ensure the stability of the product quality.
[0037] The use method of the steel mesh production mold is as follows:
[0038] The length of the front slotted angle steel 1 is 1.2m, the front fixed angle steel 11 is fixed on the top of the front slotted angle steel 1, and the front support round steel 9 is fixed on the rear side of the front slotted angle steel 1.
[0039] The diameter of the front support round steel 9 is 1cm, and the diameter of the semicircular groove 6 on the top of the front slotted angle steel 1 is also 1cm, and the depth is 0.5cm.
[0040] When a square steel mesh with a side length of 1 m needs to be made, a large number of steel bars with a length of 1 m are cut. The rear channel angle steel 4 with a length of 1.2 m is fixed on the support plate 3 at a position 1 m away from the front channel angle steel 1, and the rear support round steel 8 is fixed on the front side of the rear channel angle steel 4, and the diameter of the rear support round steel 8 is the same as that of the front support round steel 9, that is, 1 cm. Then the left channel angle steel 2 and the right channel angle steel 7 with a length of 1 m are respectively fixed on the support plate 3 between the front channel angle steel 1 and the rear channel angle steel 4, so that the left channel angle steel 2, the right channel angle steel 7, the front channel angle steel 1 and the rear channel angle steel 4 can form a square with a side length of 1 m, and the right fixed angle steel 10 is fixed on the top front side of the right channel angle steel 7. Since the left channel angle steel 2 and the right channel angle steel 7 are both placed above the front support round steel 9 and the rear support round steel 8, the left channel angle steel 2 and the right channel angle steel 7 are both 1 cm higher than the front channel angle steel 1 and the rear channel angle steel 4. Because the four channel angle steels are all provided with semicircular grooves 6 with a depth of 0.5 cm on the top, when the bottom layer of steel bars are placed on the top of the front channel angle steel 1 and the rear channel angle steel 4 in sequence and the front ends of the steel bars are all abutted against the front fixed angle steel 11, and then the top layer of steel bars are placed on the top of the left channel angle steel 2 and the right channel angle steel 7 in sequence and the right ends of the steel bars are all abutted against the right fixed angle steel 10, at this time the bottom of the top layer of steel bars and the top of the bottom layer of steel bars are in contact, and after the fixing points of the two layers of steel bars are welded, a steel mesh is made.
[0041] When a square steel mesh with a side length of 1.2 m needs to be made, a large number of steel bars with a length of 1.2 m are cut. The rear channel angle steel 4 with a length of 1.2 m is fixed on the support plate 3 at a position 1.2 m away from the front channel angle steel 1, and then two channel angle steel modules with a length of 0.2 m are respectively spliced and fixed on one end of the left channel angle steel 2 and the right channel angle steel 7 with a length of 1 m, so that all the channel angle steels can form a square with a side length of 1.2 m. The other steps are the same as the above steps, and a steel mesh can be quickly made.
[0042] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not limited thereto. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced by equivalents. The modifications or replacements do not change the essence of the corresponding technical solutions beyond the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A steel mesh manufacturing mold, characterized in that: it comprises a support plate (3), the top front side of the support plate (3) is fixed with an L-shaped front belt groove angle steel (1), the L-shaped opening of the front belt groove angle steel (1) faces forward; the top rear side of the support plate (3) is fixed with an L-shaped rear belt groove angle steel (4), the L-shaped opening of the rear belt groove angle steel (4) faces backward, and the rear belt groove angle steel (4) is parallel to the front belt groove angle steel (1); the support plate (3) is fixed with a front support round steel (9) and a rear support round steel (8), the front support round steel (9) is located at the rear side of the front belt groove angle steel (1), and the rear support round steel (8) is located at the front side of the rear belt groove angle steel (4); a left belt groove angle steel (2) and a right belt groove angle steel (7) are further arranged between the front belt groove angle steel (1) and the rear belt groove angle steel (4), the left belt groove angle steel (2) and the right belt groove angle steel (7) are located at the top of the front support round steel (9) and the rear support round steel (8), the left belt groove angle steel (2) and the right belt groove angle steel (7) are higher than the front belt groove angle steel (1) and the rear belt groove angle steel (4), and the left belt groove angle steel (2), the right belt groove angle steel (7), the front belt groove angle steel (1) and the rear belt groove angle steel (4) can form a closed square; a plurality of semicircular grooves (6) are equally arranged at the top of the left belt groove angle steel (2), the right belt groove angle steel (7), the front belt groove angle steel (1) and the rear belt groove angle steel (4). The diameter of the semicircular groove (6) is the same as the diameter of the steel bar used for the steel mesh; the semicircular groove (6) at the top of the left belt groove angle steel (2) corresponds to the semicircular groove (6) at the top of the right belt groove angle steel (7) one by one, and the semicircular groove (6) at the top of the front belt groove angle steel (1) corresponds to the semicircular groove (6) at the top of the rear belt groove angle steel (4) one by one. The diameter of the front support round steel (9) and the diameter of the rear support round steel (8) are the same as the diameter of the steel bar used for the steel mesh, and the left belt groove angle steel (2) and the right belt groove angle steel (7) are higher than the front belt groove angle steel (1) and the rear belt groove angle steel (4) by the height of one steel bar diameter used for the steel mesh. The L-shaped opening of the front belt groove angle steel (1) is fixed with an L-shaped front fixed angle steel (11), the L-shaped opening of the front fixed angle steel (11) is in the same direction as the L-shaped opening of the front belt groove angle steel (1), and the front fixed angle steel (11) is higher than the front belt groove angle steel (1); the L-shaped opening of the right belt groove angle steel (7) is fixed with an L-shaped right fixed angle steel (10), the L-shaped opening of the right fixed angle steel (10) is in the same direction as the L-shaped opening of the right belt groove angle steel (7), and the right fixed angle steel (10) is higher than the right belt groove angle steel (7). The length of the front belt groove angle steel (1) is not less than the length of the front fixed angle steel (11), and the length of the right belt groove angle steel (7) is not less than the length of the right fixed angle steel (10).
2. The mesh manufacturing mold of claim 1, wherein: The length of the front belt groove angle steel (1) is the same as the length of the rear belt groove angle steel (4), the length of the left belt groove angle steel (2) is the same as the length of the right belt groove angle steel (7), and the length of the front belt groove angle steel (1) is not less than the length of the left belt groove angle steel (2).
3. The mesh manufacturing mold of claim 1, wherein: 4. The mesh manufacturing mold of claim 1, wherein: 5. The mesh manufacturing mold of claim 4, wherein: 6. The mesh manufacturing mold of claim 1, wherein: 7. The mesh manufacturing mold of claim 6, wherein: The length of the front channel angle steel (1) is greater than the length of the left channel angle steel (2); the fixed position of the rear channel angle steel (4) on the support plate (3) can be translated backward; the left channel angle steel (2) and the right channel angle steel (7) are spliced and fixed with a channel angle steel module for filling the vacancy caused by the backward translation of the rear channel angle steel (4).
8. The mesh manufacturing mold according to any one of claims 1 to 7, characterized in that: The bottom of each of the four corners of the support plate (3) is symmetrically provided with a support circular pipe (5).
9. The mesh manufacturing mold of claim 8, wherein: Transverse connecting fixing rods are further arranged between the two adjacent support circular pipes (5).