Square cap freezing mesh belt

By designing a horseshoe-shaped connecting plate and a square-headed freezing conveyor belt with a round bar structure, the problem of poor structural strength at the weld points was solved, improving transportation efficiency and structural stability, and reducing wear and deformation.

CN223560418UActive Publication Date: 2025-11-18KANSHAI WIRE NETTING TECHNOLOGY (KUNSHAN) CO LTD
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Patent Information

Application Number
CN202423038703.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-18
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

The existing mesh belts have poor weld joint structure strength, resulting in a high probability of slippage, which reduces transportation efficiency, and they are also prone to deformation and wear due to the small force of point contact.

Method used

A square-head freezing conveyor belt is designed, which adopts a horseshoe connecting plate and a round bar structure. The two ends of the round bar are connected to the horseshoe connecting plate, and the spiral is wound around the round bar. The contact surface between the square head and the upper baffle assembly of the rotating conveyor is a vertical plane, which increases the stress area and reduces wear and deformation.

Benefits of technology

It improves the transport efficiency of the conveyor belt, reduces wear and deformation of the baffle assembly and the conveyor belt, and enhances the stability of the structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a square cap freezing mesh belt which comprises a horseshoe mesh belt, the horseshoe mesh belt comprises horseshoe connecting plates, a round bar and a spiral line, the horseshoe connecting plates are connected to the two ends of the round bar, each horseshoe connecting plate is of a semi-closed bent structure, and each bent structure is formed by connecting a baffle side, a bent side and a fixed side in an end-to-end mode. The bent side of any horseshoe connecting plate is arranged in a cavity formed by the bent structures of the adjacent horseshoe connecting plates, and one end of each round bar sequentially penetrates through the baffle side of one horseshoe connecting plate, the bent side of the adjacent horseshoe connecting plate and the fixed side of the horseshoe connecting plate and is fixed to the fixed side. The square cap is arranged at the end, close to the rotating dragon, of the round bar, the abutting face of the square cap and the blocking strip assembly arranged on the rotating dragon is a perpendicular plane, the face, making contact with the blocking strip assembly in the moving direction, of the square cap is a plane, the stress area of the blocking strip assembly is large, the blocking strip assembly and the mesh belt are not prone to abrasion deformation, and the conveying efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of mesh belt, more specifically, relate to a square head frozen mesh belt. BACKGROUND

[0002] With the development of society, the delivery of goods is more and more diversified, and the conveying net is a kind of mechanical device that uses static friction to drive the material in a continuous manner. By using it, the material can be transported from the initial feeding point to the final unloading point to form a material conveying process. It can not only transport scattered materials, but also transport whole goods, and is commonly used in the food processing industry.

[0003] Publication No. CN113511463A, a spiral tower mesh belt suitable for food processing, discloses a first connecting piece, a second connecting piece, a connecting rod, and a spiral net. The two end faces of the first connecting piece are symmetrically U-shaped, the two end faces of the second connecting piece are asymmetrically U-shaped, the two end parts of the second connecting piece are respectively provided with third and fourth through holes, the connecting rod is respectively connected to the first and second connecting pieces to form a group of mesh belts, and the connecting rod is also connected to the second through hole of the first connecting piece and the fourth through hole of the second connecting piece of another group when it is connected to the first through hole of the first connecting piece and the third through hole of the second connecting piece of the first group, and is sequentially stacked.

[0004] Publication No. CN217262463U, a high-efficiency mesh belt, discloses a plurality of mesh strips, a plurality of connecting rods, and a plurality of limiting pieces. Each mesh strip includes two groups of spacer blocks, which are sequentially staggered between the two groups of spacer blocks, and the side walls of the two groups of spacer blocks are connected. The side walls of the spacer blocks are provided with rotating holes for the insertion of connecting rods, and the rotating holes are coaxially arranged. The connecting rods are inserted into the rotating holes, and the side of the spacer block close to the connecting rod is provided with an embedding groove. The inner side wall of the embedding groove is communicated with the inner side wall of the rotating hole, and the limiting pieces are respectively located at both ends of the connecting rod.

[0005] The above two mesh belts are provided with welding points on the left and right sides of the connecting rod, which cooperate with the transportation equipment on both sides to move. The welding point structure has poor strength, greatly increases the probability of mesh belt slipping, reduces the transportation efficiency, and the welding point structure has poor strength, small point contact stress, and is easy to deform and wear. UTILITY MODEL CONTENTS

[0006] Therefore, in order to solve the above problems, the utility model provides a square head frozen net belt, through set up square head 9 and the abutting surface of square head 9 with the stop strip subassembly 8 set up on the rotating dragon is vertical plane, make square head 9 and the plane of stop strip subassembly 8 along the direction of movement contact, the stress area of stop strip subassembly 8 is big, it is not easy to cause the abrasion deformation of stop strip subassembly 8 and net belt 5, improve transportation efficiency.

[0007] A square head frozen net belt, including horseshoe net belt, the horseshoe net belt includes horseshoe connecting plate 1, round bar 6, helical line 5, the round bar 6 has several column settings, both ends of the round bar 6 are connected with horseshoe connecting plate 1, the left and right ends of the helical line 5 are around the adjacent two round bar 6, the horseshoe connecting plate 1 is all half-closed bending structure, the bending structure is composed of baffle side 2, bending side 3 and fixed side 4 connected in head and tail, the bending side 3 of any horseshoe connecting plate 1 is placed in the chamber formed by the bending structure of the adjacent horseshoe connecting plate 1, one end of each round bar 6 sequentially passes through the baffle side 2 of one horseshoe connecting plate 1, the bending side 3 of adjacent horseshoe connecting plate 1 and the fixed side 4 of the horseshoe connecting plate 1 and is fixed with the fixed side 4, characterized by: one end of the round bar 6 close to the rotating dragon is provided with a square head 9, and the abutting surface of the square head 9 and the stop strip subassembly 8 provided on the rotating dragon is a vertical plane, so that the square head 9 and the plane of the stop strip subassembly 8 along the direction of movement contact, the stress area of the stop strip subassembly 8 is big, it is not easy to cause the abrasion deformation of the stop strip subassembly 8 and the net belt 5, improve transportation efficiency.

[0008] In some embodiments, the square head 9 is rectangular in addition to the four faces other than the face contacted with the stop strip subassembly 8 along the direction of movement, facilitating processing.

[0009] Further, the baffle side 2 is a bending structure protruding inward, for strengthening the strength of the baffle side 2, any baffle side 2 and its adjacent baffle side 2 abut in head and tail and are arranged staggered, so that the plurality of horseshoe connecting plates 1 are closely attached while having a moving space.

[0010] Further, the baffle side 2 is provided with a first waist-shaped hole, the fixed side 4 is provided with a second waist-shaped hole 21, the first waist-shaped hole and the second waist-shaped hole 21 are symmetrically arranged, one end of the round bar 6 sequentially passes through the first waist-shaped hole of one horseshoe connecting plate 1, the bending side 3 of adjacent horseshoe connecting plate 1 and the second waist-shaped hole 21 of the horseshoe connecting plate 1 and is fixed with the fixed side 4 of the horseshoe connecting plate 1.

[0011] Further, the fixed side 4 is a bending structure protruding outward, for strengthening the strength of the fixed side 4.

[0012] Further, the fixed side 4 and the square head 9 are a welded integral molding structure.

[0013] Further, the said baffle assembly 8 includes square tube 81, baffle 83, the side of the rotating dragon is provided with a plurality of square tubes 81, and the side of each square tube 81 is vertically provided with a baffle 83.

[0014] Further, the said baffle 83 is inverted trapezoidal or square.

[0015] Further, the said baffle 83 is ultra-high molecular polyethylene material.

[0016] Further, the said horseshoe connecting plate 1, round bar 6, mesh belt 5 are 304 stainless steel material.

[0017] The utility model discloses a square head freezing mesh belt, including horseshoe mesh belt, the horseshoe mesh belt includes horseshoe connecting plate 1, round bar 6, helical line 5, and the round bar 6 has a plurality of column settings, the both ends of round bar 6 are connected with horseshoe connecting plate 1, the left and right ends of helical line 5 are around the adjacent two round bars 6, the horseshoe connecting plate 1 is all half-closed bending type structure, the bending type structure is connected by the tail of baffle side 2, bending side 3 and fixed side 4, and the bending side 3 of any horseshoe connecting plate 1 is placed in the chamber formed by the bending type structure of adjacent horseshoe connecting plate 1, and one end of each round bar 6 is sequentially passed through the baffle side 2 of one horseshoe connecting plate 1, the bending side 3 of adjacent horseshoe connecting plate 1 and the fixed side 4 of the horseshoe connecting plate 1 and is fixed with the fixed side 4, one end of the round bar 6 close to rotating dragon is equipped with square head 9, the abutting surface of square head 9 and the baffle assembly 8 set up on rotating dragon is vertical plane, so that the surface of square head 9 and baffle assembly 8 along the direction of contact is plane, the stress area of baffle assembly 8 is big, and it is not easy to cause abrasion deformation to baffle assembly 8 and mesh belt 5, improves transportation efficiency. ACCURACY OF DRAWINGS

[0018] Figure 1 It is the structure diagram of square head freezing mesh belt of the utility model.

[0019] Figure 2 It is the A of the utility model's part enlarged view. Figure 1

[0020] Figure 3 It is the side view of square head freezing mesh belt of the utility model.

[0021] Figure 4 It is the connection diagram of square head freezing mesh belt and baffle assembly of the utility model.

[0022] MAIN ELEMENT SYMBOL EXPLANATION

[0023] ​Horse's hoof connecting plate 1, baffle side 2, second waist-shaped hole 21, bending side 3, fixed side 4, spiral line 5, round bar 6, baffle assembly 8, square tube 81, baffle 83, square head 9.

[0024] The following specific embodiments will further illustrate the present application in conjunction with the above-mentioned drawings. Specific embodiments

[0025] Example 1:

[0026] As Figure 1 , 2 , 4, a square head frozen net belt, comprising a horse's hoof net belt, the horse's hoof net belt comprises a horse's hoof connecting plate 1, a round bar 6, a spiral line 5, the round bar 6 has a plurality of columns, both ends of the round bar 6 are connected with the horse's hoof connecting plate 1, the spiral line 5 is wound on the adjacent two round bars 6, the horse's hoof connecting plate 1 is a semi-closed bending structure, the bending structure is composed of a baffle side 2, a bending side 3 and a fixed side 4 connected end to end, the bending side 3 of any horse's hoof connecting plate 1 is placed in the cavity formed by the bending structure of the adjacent horse's hoof connecting plate 1, one end of each round bar 6 sequentially passes through the baffle side 2 of one of the horse's hoof connecting plates 1, the bending side 3 of the adjacent horse's hoof connecting plate 1 and the fixed side 4 of the horse's hoof connecting plate 1 and is fixed with the fixed side 4, characterized in that: one end of the round bar 6 close to the rotating dragon is provided with a square head 9, the abutting surface of the square head 9 and the baffle assembly 8 provided on the rotating dragon is a vertical plane, so that the surface of the square head 9 and the baffle assembly 8 in contact along the movement direction is a plane, the baffle assembly 8 has a large stress area and is not easy to cause wear and deformation of the baffle assembly 8 and the net belt 5, thereby improving the transportation efficiency.

[0027] The four surfaces of the square head 9 except the surface in contact with the baffle assembly 8 along the movement direction are rectangular, facilitating processing.

[0028] As Figure 2 indicated, the baffle side 2 is a bending structure protruding inward, used for strengthening the strength of the baffle side 2, any baffle side 2 and the baffle side 2 adjacent thereto are abutting end to end and are arranged in a staggered manner, so that the plurality of horse's hoof connecting plates 1 are closely attached while having a moving space.

[0029] As Figure 3 indicated, the baffle side 2 is provided with a first waist-shaped hole, the fixed side 4 is provided with a second waist-shaped hole 21, the first waist-shaped hole and the second waist-shaped hole 21 are symmetrically arranged, one end of the round bar 6 sequentially passes through the first waist-shaped hole of one of the horse's hoof connecting plates 1, the bending side 3 of the adjacent horse's hoof connecting plate 1 and the second waist-shaped hole 21 of the horse's hoof connecting plate 1 and is fixed with the fixed side 4 of the horse's hoof connecting plate 1.

[0030] The fixed side 4 is a bent structure that protrudes outward to strengthen the fixed side 4.

[0031] The fixed side 4 and the square cap 9 are welded together as a single structure.

[0032] like Figure 4 As shown, the baffle assembly 8 includes square tubes 81 and baffles 83. Multiple square tubes 81 are spaced apart on the side of the rotating dragon, and baffles 83 are vertically arranged on the side of each square tube 81.

[0033] The retaining strip 83 is an inverted trapezoid or a square.

[0034] The baffle 83 is made of ultra-high molecular weight polyethylene.

[0035] The horseshoe connecting plate 1, round bar 6, and mesh belt 5 are made of 304 stainless steel.

[0036] The beneficial effects of this utility model are as follows: This utility model proposes a square-headed freezing conveyor belt, including a horseshoe-shaped conveyor belt. The horseshoe-shaped conveyor belt includes horseshoe connecting plates 1, round bars 6, and spirals 5. Several round bars 6 are arranged in a row, and both ends of each round bar 6 are connected to horseshoe connecting plates 1. The spirals 5 are wound around two adjacent round bars 6 at their left and right ends. Each horseshoe connecting plate 1 is a semi-closed bent structure. The bent structure is composed of a baffle side 2, a bent side 3, and a fixed side 4 connected end to end. The bent side 3 of any horseshoe connecting plate 1 is placed on the adjacent horseshoe connecting plate 1. Within the cavity formed by the bent structure, one end of each of the round bars 6 passes sequentially through the baffle side 2 of one of the horseshoe connecting plates 1, the bent side 3 of the adjacent horseshoe connecting plates 1, and the fixed side 4 of the horseshoe connecting plate 1 and is fixed to the fixed side 4. The end of the round bar 6 near the rotating duct is provided with a square cap 9. The contact surface between the square cap 9 and the baffle assembly 8 provided on the rotating duct is a perpendicular plane, so that the contact surface between the square cap 9 and the baffle assembly 8 along the direction of movement is a plane. The baffle assembly 8 has a large force-bearing area, which makes it less likely to cause wear and deformation to the baffle assembly 8 and the mesh belt 5, thereby improving the transportation efficiency.

[0037] Example 2:

[0038] like Figure 1 , 2, 4, a square head frozen net belt, including horseshoe net belt, the horseshoe connecting plate 1, round bar 6, helical wire 5, the round bar 6 has several columns, both ends of the round bar 6 are connected with the horseshoe connecting plate 1, the helical wire 5 left and right two ends are around the adjacent two round bars 6, the horseshoe connecting plate 1 is all half-closed bending type structure, the bending type structure is composed of baffle side 2, bending side 3 and fixed side 4 connected in order, the bending side 3 of any horseshoe connecting plate 1 is placed in the cavity formed by the bending type structure of the adjacent horseshoe connecting plate 1, one end of each round bar 6 passes through the baffle side 2 of one of the horseshoe connecting plates 1, the bending side 3 of the adjacent horseshoe connecting plate 1 and the fixed side 4 of the horseshoe connecting plate 1 in turn and is fixed with the fixed side 4, characterized in that: the end of the round bar 6 close to the rotating dragon is provided with a square head 9, the abutting surface of the square head 9 and the baffle assembly 8 arranged on the rotating dragon is a vertical plane, so that the surface of the square head 9 and the baffle assembly 8 in contact along the movement direction is a plane, the baffle assembly 8 has a large stress area, and is not easy to cause abrasion and deformation of the baffle assembly 8 and the net belt 5, thereby improving the transportation efficiency.

[0039] As shown in Figure 2 , the baffle side 2 is a bending structure protruding inward, used for strengthening the strength of the baffle side 2, any baffle side 2 and its adjacent baffle side 2 abut and are arranged in staggered manner, so that the plurality of horseshoe connecting plates 1 are closely attached while having a moving space.

[0040] As shown in Figure 3 , the baffle side 2 is provided with a first waist-shaped hole, the fixed side 4 is provided with a second waist-shaped hole 21, the first waist-shaped hole and the second waist-shaped hole 21 are symmetrically arranged, one end of the round bar 6 passes through the first waist-shaped hole of one of the horseshoe connecting plates 1, the bending side 3 of the adjacent horseshoe connecting plate 1 and the second waist-shaped hole 21 of the horseshoe connecting plate 1 in turn and is fixed with the fixed side 4 of the horseshoe connecting plate 1.

[0041] The fixed side 4 is a bending structure protruding outward, used for strengthening the strength of the fixed side 4.

[0042] The fixed side 4 and the square head 9 are a welded integral molding structure.

[0043] As shown in Figure 4 , the baffle assembly 8 includes square tube 81, baffle 83, the rotating dragon side is provided with a plurality of square tubes 81 at intervals, and each square tube 81 is vertically provided with a baffle 83.

[0044] The baffle 83 is inverted trapezoidal or square.

[0045] The baffle 83 is made of ultrahigh molecular polyethylene material.

[0046] The horse-shoe connecting plate 1, the round stick 6 and the mesh belt 5 are made of 304 stainless steel.

[0047] The utility model discloses a square head freezing mesh belt, including horse-shoe mesh belt, horse-shoe mesh belt including horse-shoe connecting plate 1, round stick 6, helical line 5, and round stick 6 has a plurality of column settings, the both ends of round stick 6 are connected with horse-shoe connecting plate 1, the left and right two ends of helical line 5 are around and set on two adjacent round sticks 6, horse-shoe connecting plate 1 is all the semi-closed bending type structure, the bending type structure is connected by baffle side 2, bending side 3 and fixed side 4 head and tail, and the bending side 3 of any horse-shoe connecting plate 1 is placed in the chamber formed by the bending type structure of adjacent horse-shoe connecting plate 1, and one end of each round stick 6 is in turn passed through the baffle side 2 of one horse-shoe connecting plate 1, the bending side 3 of adjacent horse-shoe connecting plate 1 and the fixed side 4 of this horse-shoe connecting plate 1 and is fixed with fixed side 4, the one end of round stick 6 close to zhuanglong is equipped with square head 9, the abutting surface of square head 9 and the stop strip subassembly 8 set up on zhuanglong is vertical plane, so that the surface of square head 9 and stop strip subassembly 8 along the direction of contact is plane, and the stop strip subassembly 8 stress area is big, and it is not easy to cause abrasion deformation to stop strip subassembly 8 and mesh belt 5, improves transportation efficiency.

[0048] The above-mentioned embodiments only express several implementation manners of the utility model, and the description is more specific and detailed, but it can not be understood as the limitation of the utility model patent scope. It should be pointed out that for ordinary skilled person in the art, without departing from the utility model concept, can make several deformation and improvement, and these all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent should be according to the attached claim.

Claims

1. A square head frozen mesh belt, comprising a horseshoe mesh belt, the horseshoe mesh belt comprises horseshoe connecting plates (1), round bars (6) and helical wires (5), the round bars (6) are arranged in rows, both ends of the round bars (6) are connected with the horseshoe connecting plates (1), the helical wires (5) are wound around the adjacent two round bars (6), the horseshoe connecting plates (1) are all semi-closed bending structures, the bending structure is composed of a baffle side (2), a bending side (3) and a fixed side (4) connected in sequence, the bending side (3) of any horseshoe connecting plate (1) is arranged in a cavity formed by the bending structure of the adjacent horseshoe connecting plate (1), one end of each round bar (6) sequentially passes through the baffle side (2) of one horseshoe connecting plate (1), the bending side (3) of the adjacent horseshoe connecting plate (1) and the fixed side (4) of the horseshoe connecting plate (1) and is fixed with the fixed side (4), characterized in that: The end of the round bar (6) close to the rotating dragon is provided with a square head (9), the abutting surface of the square head (9) and the stop strip assembly (8) provided on the rotating dragon is a vertical plane, so that the surface of the square head (9) and the stop strip assembly (8) contacted along the movement direction is a plane, the force area of the stop strip assembly (8) is large, the stop strip assembly (8) and the mesh belt are not easy to be abraded and deformed, the transportation efficiency is improved.

2. The square toe freeze netting of claim 1, wherein: The four surfaces of the square head (9) except the surface contacted with the stop strip assembly (8) along the movement direction are rectangular.

3. The square toe freeze netting of claim 1 wherein: The baffle side (2) is a bending structure protruding inward, used for strengthening the strength of the baffle side (2), any baffle side (2) and the adjacent baffle side (2) are abutted and arranged in a staggered manner, so that the plurality of horseshoe connecting plates (1) are closely fitted while having a moving space.

4. The square toe freeze netting of claim 1 wherein: The baffle side (2) is provided with a first waist-shaped hole, the fixed side (4) is provided with a second waist-shaped hole (21), the first waist-shaped hole and the second waist-shaped hole (21) are symmetrically arranged, one end of the round bar (6) sequentially passes through the first waist-shaped hole of one horseshoe connecting plate (1), the bending side (3) of the adjacent horseshoe connecting plate (1) and the second waist-shaped hole (21) of the horseshoe connecting plate (1) and is fixed with the fixed side (4) of the horseshoe connecting plate (1).

5. The square toe freeze netting of claim 1 wherein: The fixed side (4) is a bending structure protruding outward, used for strengthening the strength of the fixed side (4).

6. The square toe freeze netting of claim 1 wherein: The fixed side (4) and the square head (9) are a welded integrated structure.

7. The square toe freeze netting of claim 1 wherein: The stop strip assembly (8) comprises a square tube (81) and a stop strip (83), a plurality of square tubes (81) are arranged at intervals on the side of the rotating dragon, and a stop strip (83) is vertically arranged on the side of each square tube (81).

8. The square toe frozen webbing of claim 7, wherein: The stop strip (83) is an inverted trapezoid or a square.

Citation Information

Patent Citations

  • Spiral tower mesh belt suitable for food processing

    CN113511463A

  • Efficient mesh belt

    CN217262463U