Supporting mechanism of chain type K2 mesh belt
By designing the support mechanism of the chain K2 mesh belt, the problem of collapse and deformation of the metal mesh belt when transporting materials is solved, the level maintenance of the mesh belt and the transportation efficiency are improved, while reducing maintenance costs and simplifying the cleaning and baking process.
Patent Information
- Application Number
- CN202421877037.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-05
AI Technical Summary
When transporting materials, the existing metal mesh belt collapses due to the weight of the materials and mesh belt, and cannot maintain its level. Long-term use will lead to deformation or breakage, affecting transportation efficiency and increasing maintenance costs.
A chain-type K2 mesh belt support mechanism is designed, including a mesh belt body, a chain mechanism connected to the mesh belt body and a plurality of support mechanisms arranged parallel to the space. Each support mechanism consists of a circular tube, a stage and a flat connecting mechanism. Through the design of these components, the mesh belt body can be kept horizontal and avoid collapse.
Through the design of the support mechanism, the mesh belt body can maintain level when transporting materials, avoid deformation or breakage, improve transportation efficiency and reduce maintenance costs. In addition, the design of the round tube makes post-cleaning and baking easier.
Smart Images

Figure CN223002154U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of metal mesh belts, and more specifically, to a supporting mechanism for a chain-type K2 mesh belt. Background Art
[0002] With the development of society, the transportation methods of goods are becoming more and more diverse. The metal mesh belt for transportation is one of the common transportation methods. It is commonly woven from metal materials and is used to transport items. During transportation, it is necessary to horizontally and uphill transport items as required. Using it, a material transportation process can be formed between the initial feeding point and the final discharging point on a certain transportation line. It can not only transport bulk materials but also transport finished items. In addition to pure material transportation, it can also be coordinated with the requirements of the technological processes of the production processes of various industrial enterprises to form a rhythmic flow operation transportation line.
[0003] For the existing metal mesh belt, when transporting materials, due to the self-weight of the materials and the mesh belt, the mesh belt will collapse downward, and the mesh belt cannot maintain a horizontal state. In the long run, the mesh belt will be deformed or broken, affecting the transportation efficiency, and at the same time, the maintenance cost will also be greatly increased. Content of the Utility Model
[0004] In view of this, in order to solve the above technical problems, the utility model provides a supporting mechanism for a chain-type K2 mesh belt, which includes a mesh belt body 10 and a chain mechanism 20 connected to both ends of the mesh belt body 10. A plurality of supporting mechanisms 30 are arranged below the mesh belt body 10 at intervals and in parallel. Each supporting mechanism 30 includes a round tube 301 and a carrier 303 extending outward from both side ends of the round tube 301. A flat connecting mechanism 302 is fixedly arranged on each carrier 303. The upper surface of the carrier 303 is lower than the arc top of the round tube 301, and the distance between the upper surface of the carrier 303 and the arc top of the round tube 301 is equal to the thickness of the flat connecting mechanism 302, so that the arc top of the round tube 301 and the flat connecting mechanisms 302 on both sides are on the same horizontal plane. The mesh belt body 10 is detachably connected to the flat connecting mechanism 302, and the flat connecting mechanism 302 is connected to the chain mechanisms 20 on both sides thereof. When the mesh belt body 10 transports materials, under the action of the supporting mechanism 30, the mesh belt body 10 is kept horizontal and will not collapse downward, effectively avoiding the deformation or breakage of the mesh belt body 10. On the other hand, due to the small contact area between the arc top of the round tube 301 and the mesh belt body 10, when cleaning the residue and debris on the mesh belt body 10 or baking materials in the later stage, due to the characteristics of the round tube 301, it is easier and more convenient to clean. When baking, the heat will easily pass through the surface of the round tube 301.
[0005] A supporting mechanism for a chain - type K2 mesh belt, comprising a mesh belt body 10 and a chain mechanism 20 connected to both ends of the mesh belt body 10. A plurality of supporting mechanisms 30 are provided below the mesh belt body 10. The plurality of supporting mechanisms 30 are arranged at intervals in parallel. Each supporting mechanism 30 includes a round tube 301 and a carrier 303 extending outward from both side ends of the round tube 301. A flat connecting mechanism 302 is fixedly arranged on each carrier 303. The upper surface of the carrier 303 is lower than the arc top of the round tube 301. The distance between the upper surface of the carrier 303 and the arc top of the round tube 301 is equal to the thickness of the flat connecting mechanism 302, so that the arc top of the round tube 301 and the two flat connecting mechanisms 302 on both sides are on the same horizontal plane. The mesh belt body 10 is detachably connected to the flat connecting mechanism 302. The flat connecting mechanism 302 is connected to the chain mechanisms 20 on both sides thereof. When the mesh belt body 10 transports materials, under the action of the supporting mechanism 30, the mesh belt body 10 is kept horizontal and will not collapse downward.
[0006] Further, a folding ear member 40 is provided on both sides of each supporting mechanism 30 and is symmetrically arranged. The vertical surface of the folding ear member 40 is detachably connected to the chain mechanism 20, and the horizontal surface of the folding ear member 40 is detachably connected to the flat connecting mechanism 302. The contact area between the chain mechanism 20 and the folding ear member 40 is larger than the contact area between the flat connecting mechanism 302 and the chain mechanism 20. Under the action of the folding ear member 40, the flat connecting mechanism 302 is stably supported.
[0007] Further, a plurality of first through - holes 70 are provided on the round tube 301 and are evenly spaced. When the mesh belt body 10 is laid flat on the round tube 301, the round tube 301 and the mesh belt body 10 are detachably connected by screws.
[0008] Further, a second through - hole 80 is provided on the flat connecting mechanism 302. The flat connecting mechanism 302 is detachably connected to the mesh belt body 10 by screws, and the flat connecting mechanism 302 is connected to the horizontal surface of the corresponding folding ear member 40, which is convenient for disassembly and maintenance at the same time.
[0009] Further, the cross - section of the carrier 303 is a U - shaped structure with an upward opening. The carrier 303 is communicated with the round tube 301. A shielding structure 50 matching its shape is welded at the free end of the carrier 303 for shielding the through - hole of the carrier 303. The shielding structure 50 is used to prevent residues of materials or waste water during the cleaning of the mesh belt body 10 from entering the interior of the round tube 301.
[0010] Furthermore, the top surface of the shielding structure 50 is welded to the flat connecting mechanism 302. A reinforcing block 60 is provided at the angle between the flat connecting mechanism 302 and the shielding structure 50. The top surface of the reinforcing block 60 is welded to the flat connecting mechanism 302, indirectly increasing the welding area between the circular tube 301 and the flat connecting mechanism 302, making the connection between the circular tube 301 and the flat connecting mechanism 302 more firm and not easily falling off.
[0011] Furthermore, the diameter of the circular tube 301 is 27 mm.
[0012] Furthermore, the width of the flat connecting mechanism 302 is 39 mm.
[0013] Furthermore, the mesh belt body 10 includes a first spiral line 101, a second spiral line 102, a first force rib 103, a second force rib 104 and a plurality of U-shaped clips 105. The first force rib 103 passes through the trough of the first spiral line 101 and the peak of the second spiral line 102. The second force rib 104 passes through the peak of the first spiral line 101 and the trough of the second spiral line 102. The U-shaped clip 105 is stuck in the spiral chamber formed by two adjacent first spiral lines 101 and the second spiral line 102 to limit the angle between two adjacent force ribs from opening too large. At the same time, the left and right ends of the mesh belt body 10 are bent upward to prevent the material from sliding off.
[0014] Furthermore, the mesh belt body 10 and the support mechanism 30 are made of stainless steel.
[0015] Advantages of the present utility model: The present utility model provides a supporting mechanism for a chain-type K2 mesh belt, which includes a mesh belt body 10 and a chain mechanism 20 connected to both ends of the mesh belt body 10. A plurality of supporting mechanisms 30 are provided below the mesh belt body 10, and the plurality of supporting mechanisms 30 are arranged parallel to each other at intervals. Each supporting mechanism 30 includes a round tube 301 and a carrier 303 extending outward from both side ends of the round tube 301. A flat connecting mechanism 302 is fixedly provided on each carrier 303. The upper surface of the carrier 303 is lower than the arc top of the round tube 301, and the distance between the upper surface of the carrier 303 and the arc top of the round tube 301 is equal to the thickness of the flat connecting mechanism 302, so that the arc top of the round tube 301 and the flat connecting mechanisms 302 on both sides are on the same horizontal plane. The mesh belt body 10 is detachably connected to the flat connecting mechanism 302, and the flat connecting mechanism 302 is connected to the chain mechanisms 20 on both sides thereof. When the mesh belt body 10 transports materials, under the action of the supporting mechanism 30, the mesh belt body 10 is kept horizontal and will not collapse downward, effectively avoiding deformation or breakage of the mesh belt body 10. On the other hand, since the contact area between the arc top of the round tube 301 and the mesh belt body 10 is small, when cleaning the residue and debris on the mesh belt body 10 or baking materials in the later stage, due to the characteristics of the round tube 301, it is easier and more convenient to clean. When baking, heat can easily pass through the surface of the round tube 301. Description of the Drawings
[0016] Figure 1 It is a schematic diagram of the overall structure of a supporting mechanism for a chain-type K2 mesh belt of the present utility model.
[0017] Figure 2 It is a schematic diagram of the structure of the mesh belt body of a supporting mechanism for a chain-type K2 mesh belt of the present utility model.
[0018] Figure 3 It is a front view of the overall structure of a supporting mechanism for a chain-type K2 mesh belt of the present utility model.
[0019] Figure 4 It is a schematic diagram of the connection structure between the round tube and the flat connecting mechanism of a supporting mechanism for a chain-type K2 mesh belt of the present utility model.
[0020] Figure 5 It is a schematic diagram of the structure of the supporting device of a supporting mechanism for a chain-type K2 mesh belt of the present utility model.
[0021] Figure 6 It is a side sectional view of the mesh belt body of a supporting mechanism for a chain-type K2 mesh belt of the present utility model.
[0022] Main Element Symbol Description
[0023] Mesh belt body 10, first helical line 101, second helical line 102, first force rib 103, second force rib 104, U-shaped clamp 105, chain mechanism 20, support mechanism 30, round tube 301, flat connection mechanism 302, carrier 303, folding ear part 40, shielding structure 50, strengthening block 60, first through hole 70, second through hole 80.
[0024] The following specific embodiments will further illustrate the present invention in conjunction with the above-mentioned drawings. Specific embodiments
[0025] The following embodiments are described to assist in understanding the present application, and the embodiments are not and should not be construed in any way as limiting the scope of protection of the present application.
[0026] In the following description, those skilled in the art will recognize that throughout this discussion, components may be described as separate functional units (which may include sub-units), but those skilled in the art will recognize that various components or portions thereof may be divided into separate components or may be integrated together (including being integrated within a single system or component).
[0027] At the same time, the connections between components or systems are not intended to be limited to direct connections. On the contrary, the data between these components may be modified, reformatted, or otherwise changed by intermediate components. Additionally, additional or fewer connections may be used. It should also be noted that the terms "coupled", "connected", or "input" should be understood to include direct connections, indirect connections through one or more intermediate devices, and wireless connections. Embodiment 1:
[0028] As Figure 1 described, it is a schematic diagram of the overall structure of the support mechanism of a chain-type K2 mesh belt of the present invention; as Figure 2 described, it is a schematic diagram of the mesh belt body structure of the support mechanism of a chain-type K2 mesh belt of the present invention; as Figure 3 described, it is a front view of the overall structure of the support mechanism of a chain-type K2 mesh belt of the present invention; as Figure 4 described, it is a schematic diagram of the connection structure between the round tube and the flat connection mechanism of the support mechanism of a chain-type K2 mesh belt of the present invention; as Figure 5 described, it is a schematic diagram of the structure of the support device of the support mechanism of a chain-type K2 mesh belt of the present invention; as Figure 6 described, it is a side cross-sectional view of the mesh belt body of the support mechanism of a chain-type K2 mesh belt of the present invention.
[0029] A supporting mechanism for a chain-type K2 mesh belt, comprising a mesh belt body 10 and a chain mechanism 20 connected to both ends of the mesh belt body 10. A plurality of supporting mechanisms 30 are provided below the mesh belt body 10. The plurality of supporting mechanisms 30 are arranged in parallel at intervals. Each supporting mechanism 30 includes a round tube 301 and a carrier 303 extending outward from both side ends of the round tube 301. A flat connecting mechanism 302 is fixedly provided on each carrier 303. The upper surface of the carrier 303 is lower than the arc top of the round tube 301. The distance between the upper surface of the carrier 303 and the arc top of the round tube 301 is equal to the thickness of the flat connecting mechanism 302, so that the arc top of the round tube 301 and the flat connecting mechanisms 302 on both sides are on the same horizontal plane. The mesh belt body 10 is detachably connected to the flat connecting mechanism 302. The flat connecting mechanism 302 is connected to the chain mechanisms 20 on both sides thereof. When the mesh belt body 10 transports materials, under the action of the supporting mechanism 30, the mesh belt body 10 is kept horizontal and will not collapse downward.
[0030] On both sides of each supporting mechanism 30, there is a folding ear member 40 and they are symmetrically arranged. The vertical surface of the folding ear member 40 is detachably connected to the chain mechanism 20. The horizontal surface of the folding ear member 40 is detachably connected to the flat connecting mechanism 302. The contact area between the chain mechanism 20 and the folding ear member 40 is larger than the contact area between the flat connecting mechanism 302 and the chain mechanism 20. Under the action of the folding ear member 40, the flat connecting mechanism 302 is stably supported.
[0031] A plurality of first through holes 70 are provided on the round tube 301 and are arranged at equal intervals. When the mesh belt body 10 is laid flat on the round tube 301, the round tube 301 and the mesh belt body 10 are detachably connected by screws.
[0032] A second through hole 80 is provided on the flat connecting mechanism 302. The flat connecting mechanism 302 is detachably connected to the mesh belt body 10 by screws, and the flat connecting mechanism 302 is connected to the horizontal surface of the corresponding folding ear member 40, which is convenient for disassembly and maintenance at the same time.
[0033] The cross section of the carrier 303 is a U-shaped structure with an upward opening. The carrier 303 is communicated with the round tube 301. A shielding structure 50 matching its shape is welded at the free end of the carrier 303 for shielding the through hole of the carrier 303. The shielding structure 50 is used to block the residue of materials or the waste water during the cleaning of the mesh belt body 10 from entering the inside of the round tube 301.
[0034] The top surface of the shielding structure 50 is welded to the flat connecting mechanism 302. A reinforcing block 60 is provided at the angle between the flat connecting mechanism 302 and the shielding structure 50. The top surface of the reinforcing block 60 is welded to the flat connecting mechanism 302, indirectly increasing the welding area between the circular tube 301 and the flat connecting mechanism 302, making the connection between the circular tube 301 and the flat connecting mechanism 302 more firm and not easily falling off.
[0035] The diameter of the circular tube 301 is 27 mm.
[0036] The width of the flat connecting mechanism 302 is 39 mm.
[0037] The mesh belt body 10 includes a first spiral line 101, a second spiral line 102, a first force rib 103, a second force rib 104 and a plurality of U-shaped clamps 105. The first force rib 103 horizontally passes through the troughs of the first spiral line 101 and the peaks of the second spiral line 102. The second force rib 104 horizontally passes through the peaks of the first spiral line 101 and the troughs of the second spiral line 102. The U-shaped clamp 105 is stuck in the spiral chamber formed by two adjacent first spiral lines 101 and second spiral lines 102, used to limit the angle between two adjacent force ribs from opening too large. At the same time, the left and right ends of the mesh belt body 10 are bent upward to prevent the material from slipping.
[0038] The mesh belt body 10 and the support mechanism 30 are made of stainless steel.
[0039] Advantages of the present utility model: The present utility model provides a support mechanism for a chain-type K2 mesh belt, which includes a mesh belt body 10 and a chain mechanism 20 connected to both ends of the mesh belt body 10. A plurality of support mechanisms 30 are provided below the mesh belt body 10, and the plurality of support mechanisms 30 are arranged parallel to each other at intervals. Each support mechanism 30 includes a round tube 301 and a carrier 303 extending outward from both side ends of the round tube 301. A flat connection mechanism 302 is fixedly provided on each carrier 303. The upper surface of the carrier 303 is lower than the arc top of the round tube 301, and the distance between the upper surface of the carrier 303 and the arc top of the round tube 301 is equal to the thickness of the flat connection mechanism 302, so that the arc top of the round tube 301 and the two flat connection mechanisms 302 on both sides are on the same horizontal plane. The mesh belt body 10 is detachably connected to the flat connection mechanism 302, and the flat connection mechanism 302 is connected to the chain mechanisms 20 on both sides thereof. When the mesh belt body 10 transports materials, under the action of the support mechanism 30, the mesh belt body 10 is kept horizontal and will not collapse downward, effectively avoiding the deformation or fracture of the mesh belt body 10. On the other hand, since the contact area between the arc top of the round tube 301 and the mesh belt body 10 is small, when cleaning the residue and debris on the mesh belt body 10 or baking materials in the later stage, due to the characteristics of the round tube 301, it is easier and more convenient to clean. When baking, heat can easily pass through the surface of the round tube 301.
[0040] The above embodiments only represent several implementation manners of the present utility model, and the description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the patent of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several deformations and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the patent of the present utility model shall be subject to the appended claims.
Claims
1. A chain-type K2 mesh belt support mechanism, comprising a mesh belt body (10) and a chain mechanism (20) connected to both ends of the mesh belt body (10), characterized in that: A plurality of supporting mechanisms (30) are arranged below the mesh belt body (10), and the plurality of supporting mechanisms (30) are arranged in parallel at intervals, and each of the supporting mechanisms (30) comprises a circular tube (301) and a carrier (303) extending outwardly from both sides of the circular tube (301), and each of the carriers (303) is fixedly provided with a flat connecting mechanism (302), and the upper surface of the carrier (303) is lower than the top of the circular arc of the circular tube (301), and the upper surface of the carrier (303) is in contact with the top of the circular arc of the circular tube (301). The distance between the two ends of the flat connecting mechanism (302) is equal to the thickness of the flat connecting mechanism (302), so that the arc top of the circular tube (301) and the flat connecting mechanisms (302) on both sides are on the same horizontal plane, the mesh belt body (10) and the flat connecting mechanism (302) are detachably connected, and the flat connecting mechanism (302) is connected to the chain mechanisms (20) on both sides thereof. When the mesh belt body (10) transports materials, under the action of the supporting mechanism (30), the mesh belt body (10) remains horizontal and does not collapse downward.
2. The supporting mechanism of the chain-type K2 mesh belt according to claim 1 is characterized in that: Each of the supporting mechanisms (30) is provided with a folding ear piece (40) on both sides and is symmetrically arranged; the vertical surface of the folding ear piece (40) is detachably connected to the chain mechanism (20); the horizontal surface of the folding ear piece (40) is detachably connected to the flat connecting mechanism (302); the contact area between the chain mechanism (20) and the folding ear piece (40) is greater than the contact area between the flat connecting mechanism (302) and the chain mechanism (20); under the action of the folding ear piece (40), the flat connecting mechanism (302) is stably supported.
3. The supporting mechanism of the chain-type K2 mesh belt according to claim 1 is characterized in that: The circular tube (301) is provided with a plurality of first through holes (70) which are evenly spaced. When the mesh belt body (10) is laid flat on the circular tube (301), the circular tube (301) and the mesh belt body (10) are detachably connected by screws.
4. The supporting mechanism of the chain-type K2 mesh belt according to claim 2 is characterized in that: The flat connection mechanism (302) is provided with a second through hole (80), and the flat connection mechanism (302) is detachably connected to the mesh belt body (10) by means of screws, and the flat connection mechanism (302) is connected to the horizontal plane of the corresponding folding ear member (40), which facilitates disassembly and maintenance.
5. The supporting mechanism of the chain-type K2 mesh belt according to claim 1 is characterized in that: The cross section of the carrier (303) is a U-shaped structure with an opening facing upwards; the carrier (303) is connected to the circular tube (301); a shielding structure (50) matching its shape is welded to the free end of the carrier (303) for shielding the through hole of the carrier (303); the shielding structure (50) is used to prevent material residues or waste water from cleaning the mesh belt body (10) from entering the interior of the circular tube (301).
6. The supporting mechanism of the chain-type K2 mesh belt according to claim 5 is characterized in that: The top surface of the shielding structure (50) is welded to the flat connecting mechanism (302); a reinforcing block (60) is provided at the angle between the flat connecting mechanism (302) and the shielding structure (50); the top surface of the reinforcing block (60) is welded to the flat connecting mechanism (302), thereby indirectly increasing the welding area between the round tube (301) and the flat connecting mechanism (302), thereby making the connection between the round tube (301) and the flat connecting mechanism (302) more secure and less likely to fall off.
7. The supporting mechanism of the chain-type K2 mesh belt according to claim 6 is characterized in that: The diameter of the circular tube (301) is 27 mm.
8. The supporting mechanism of the chain-type K2 mesh belt according to claim 6 is characterized in that: The width of the flat connection mechanism (302) is 39 mm.
9. The supporting mechanism of the chain-type K2 mesh belt according to claim 1 is characterized in that: The mesh belt body (10) comprises a first spiral line (101), a second spiral line (102), a first force bone (103), a second force bone (104) and a U-shaped clip (105), and there are a plurality of the first force bone (103) and the U-shaped clip (105). The first force bone (103) crosses the trough of the first spiral line (101) and the crest of the second spiral line (102). The second force bone (104) crosses the crest of the first spiral line (101) and the trough of the second spiral line (102). The U-shaped clip (105) is clamped in a spiral chamber formed by two adjacent first spiral lines (101) and the second spiral lines (102) to limit the angle between two adjacent force bones from being too large. At the same time, the left and right ends of the mesh belt body (10) are bent upward to prevent materials from sliding off.
10. The supporting mechanism of the chain type K2 mesh belt according to claim 1 is characterized in that: The mesh belt body (10) and the support mechanism (30) are made of stainless steel.