Side edge tensile rubber band
By using a side-strength rubber chain structure, the problems of poor strength and complex manufacturing of conveyor belts during use are solved, the connection strength and service life are improved, the manufacturing cost is reduced, the maintenance workload is reduced, and efficient material conveying is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- JINING CITY CUSTOMKEY ELECTROMECHANICAL TECH CO LTD
- Filing Date
- 2021-09-06
- Publication Date
- 2026-04-28
AI Technical Summary
Existing conveyor belts suffer from problems such as frequent adjustments to the positions of the drive and driven rollers, breakage due to excessive belt tension, motor burnout, belt misalignment, and poor structural strength during use. Furthermore, threaded conveyor belts are complex to manufacture, costly, and have large space requirements for their connection structures, resulting in low production efficiency and environmental pollution.
The conveyor belt adopts a side-strength rubber chain structure, including a conveyor belt, a drive chain, and a chain-connecting conveyor belt component. The side-strength rubber component is connected to the chain-connecting conveyor belt component separately or as a whole. It is set inside and outside the fixed chain link shaft or the ring chain belt to increase the connection strength. The side buckle groove and the side baffle of the chain belt improve the structural stability and material conveying efficiency.
It improves the structural strength and service life of the conveyor belt, reduces maintenance workload, lowers manufacturing costs and operating resistance, increases production efficiency, avoids belt breakage and motor failure, and reduces environmental pollution.
Smart Images

Figure CN115432360B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of machinery, and specifically relates to a side-strength rubber chain belt. Background Technology
[0002] Currently available conveyor belts include belt-type and strip-type conveyors. Belt-type conveyors rely on friction to drive and driven rollers for feeding. Due to the large stretching of the belt, the positions of the drive and driven rollers often need to be adjusted to match the belt tension for continued operation. On-site work often requires pulling the rollers at both ends of the belt too far apart, causing excessive belt load and tension, leading to belt breakage and serious production stoppages. Excessive tension also frequently causes motor overload when the belt starts rotating, resulting in motor burnout and other production stoppages. Furthermore, because the belt rotates based on friction attached to the rollers, problems such as non-parallelism between the drive and driven roller shafts and parallelogram-shaped ends can occur during installation. In addition, the belt lacks edge reinforcement and lateral tensile strength on the sides, resulting in poor belt structural strength. Under the influence of oblique tension and temperature changes, the belt inevitably runs off-center and breaks frequently, causing material spillage. Frequent maintenance and replacements on-site result in significant waste of manpower and resources, reducing production efficiency. This type of conveyor belt pollutes the environment. Because there are no tensile strength components connecting the belt to the drive chain on the sides, the transverse strips must pass through the middle of the belt to increase its strength. Therefore, the conveyor belt must be made relatively thick, resulting in heavy weight and high material costs. Special molds and manufacturing processes are required to cast the transverse strips into the belt, leading to high mold costs, complex manufacturing processes, and high material, labor, and time consumption, resulting in low efficiency, high manufacturing difficulty, and high costs. Furthermore, the rigidity of the transverse strips prevents the conveyor belt from achieving a central trough for transport. While some methods use pins to connect two U-shaped components to the drive chain for material transport, the complex and large size of the connection structure increases the width and running resistance of the conveyor belt, resulting in complex structures, numerous vulnerable parts, high maintenance requirements, and no practical value. To address these problems, through decades of research, development, manufacturing, and further study, this invention proposes a side-strength tensile rubber chain belt. Summary of the Invention
[0003] This invention is achieved using the following technical solution: The side-strength rubber chain belt includes a conveyor belt, a drive chain, and chain-connecting conveyor belt components, etc. The conveyor belt includes a side-strength rubber chain belt, etc. The side-strength rubber chain belt includes a fixed link shaft rubber belt or a fixed annular chain rubber belt, etc. The drive chain includes a roller chain or annular chain, etc. The drive chain is connected to the conveyor belt through the chain-connecting conveyor belt components. The drive chain rotates to drive the conveyor belt to transport materials. The side-strength rubber chain belt includes edge tensile members, etc. The edge tensile members are separately connected to the chain-connecting conveyor belt components or are integrated. The edge tensile members are disposed inside or outside the fixed link shaft rubber belt. The edge tensile members are disposed inside or outside the fixed annular chain rubber belt. The side-strength rubber chain belt includes a warp and weft mesh or a longitudinal mesh. Tensile-resistant components, including longitudinal tension bars, transverse tension bars, strong fabric, overlapping fabric, or strong rubber components, can be installed as follows: They can be connected to longitudinal tension bars or separately installed and then cast in rubber; connected to transverse tension bars or separately installed and then cast in rubber; connected to strong fabric or separately installed and then cast in rubber; connected to overlapping fabric or separately installed and then cast in rubber; or connected to strong rubber components or cast as a single piece; or installed at the top, middle, or bottom of the conveyor belt. These components can be metal rope, plastic rope, or hemp rope. Tensile strength components can be categorized as follows: cotton rope with edge, metal chain with edge, plastic chain with edge, cotton chain with edge, hemp chain with edge, metal mesh belt with edge, plastic mesh belt with edge, cotton mesh belt with edge, hemp mesh belt with edge, metal cloth belt with edge, plastic cloth belt with edge, cotton cloth belt with edge, hemp cloth belt with edge, blended fabric belt with edge, or zipper belt with edge, etc. Edged tensile strength components include buckle rope type tensile strength components, rope splice plate type tensile strength components, chain plate type tensile strength components, nail buckle type tensile strength components, bolt type tensile strength components, nut type tensile strength components, grooved type tensile strength components, mesh type tensile strength components, buckle chain type tensile strength components, pin type tensile strength components, plate screw type tensile strength components, plate nut type tensile strength components, plate pin type tensile strength components, or zipper / lock. Tensile components such as steel or fabric tensile components are used. When chain plate tensile components are used, they include tensile chains and chain stabilizing plates. The tensile chains connect to the chain stabilizing plates, which are located on the upper, middle, or lower part of the conveyor belt. The chain stabilizing plates may have threaded holes, nuts, or screws. Correspondingly, the chain-connecting conveyor belt components may have chain stabilizing screws, bolts, or nuts. The chain stabilizing screws cooperate with the threaded hole chain stabilizing plates to connect the conveyor belt to the drive chain. When the chain stabilizing plates are located in the middle or lower part of the conveyor belt, the chain-connecting conveyor belt components are located below the chain stabilizing plates and are fixedly connected to them.
[0004] The conveyor belt is provided with grooves or holes for placing side fasteners. Side fasteners are placed in the side fastener grooves, or side fasteners are placed with fixed sprocket shafts, etc. The side fastener grooves make the side rubber chain belt surface flat. The side fasteners include fastening groove protrusions, fastening plates, or fastening strips. When using fastening groove protrusions, the fastening groove protrusions are engaged on the conveyor belt. When using fastening plates, the fastening plates are set on the upper side, lower side, or middle of the side of the conveyor belt. When the fastening plates are fixed to the lower part of the conveyor belt, the upper surface of the conveyor belt is flat. When the fastening plates are fixed to the upper part of the conveyor belt, the lower surface of the conveyor belt is flat.
[0005] The conveyor belt includes sidewall belts or flat-side conveyor belts, etc. The chain connecting conveyor belt component and the roller chain are either separately connected or integrated. The chain connecting conveyor belt component and the annular chain are either separately connected or integrated. The roller chain includes roller chain buckles, roller chain shafts, etc. The roller chain shaft is threaded through the roller chain buckles, etc. The roller chain shaft and the chain connecting conveyor belt component are either separately connected or integrated. The roller chain buckle includes roller chain flat baffles or roller chain connecting conveyor belt plates, etc. The roller chain connecting conveyor belt plates are connected to the chain connecting conveyor belt component. The conveyor belt can be either a separate unit or an integrated unit. Sidewall belts include those with sidewalls and those connected to the sidewall belt. The sidewalls are located on one or both sides of the connected sidewall belt. The sidewalls and connected sidewall belts can be either separate units or an integrated unit. When the sidewalls and connected sidewall belts are separate units, the sidewalls include adhesive sidewalls or perforated sidewalls. Adhesive sidewalls are bonded to the side of the connected sidewall belt. Perforated sidewalls include those with holes for passing through roller chain shafts. The roller chain shaft passes through these holes, and the roller chain flat baffle is connected to… The conveyor belt can be connected in two ways: with separate or integrated sidewalls; roller chain flat baffles and sidewalls connected to the conveyor belt via chain connection; or the sidewalls connected to the conveyor belt via chain connection and drive chain; or annular chains connected to the conveyor belt via chain connection. The annular chain includes interlocking chain links and connecting conveyor belt chain links, which are interlocked to form an annular chain. The chain connection component connects the connecting conveyor belt chain links to the conveyor belt. The chain connection component and connecting conveyor belt chain links can be separate or integrated. The rotating annular chain drives the conveyor belt to transport materials. The conveyor belt includes fixed-link rubber belts, fixed-link polyester belts, or fixed-link plastic belts, etc. It can also include fixed-link cloth belts, fixed-link mesh belts, fixed-link steel wire belts, fixed-link cast rubber belts, or fixed-link steel plate belts, etc. The side-fastening rubber chain includes side-fastening components, which may include rubber belt fasteners, polyester belt fasteners, plastic belt fasteners, or steel belt fasteners, etc.
[0006] The conveyor belt includes chain belt side stops, which are set on the side of the conveyor belt or on the roller chain shaft. The chain belt side stops include side embedded stops or side through-shaft stops. The roller chain buckle plate is equipped with a material blocking plate. When the material blocking plate moves inward to the inside of the conveyor belt, the chain belt side stops prevent the roller chain buckle plate from moving inward to the inside of the conveyor belt. The material blocking plate prevents material from flowing out from the side of the material blocking plate. The chain belt side stops prevent the conveyor belt from moving left and right, and prevent the conveyor belt from moving left and right to shear the chain connecting the conveyor belt components.
[0007] Beneficial effects:
[0008] 1. The drive chain connects to the conveyor belt via a chain-connecting conveyor belt assembly. The rotation of the drive chain drives the conveyor belt to transport materials. The edge tensile strength member is either separately connected to the chain-connecting conveyor belt assembly or is integrated with it. The edge tensile strength member is located inside or outside the fixed chain link shaft belt. Alternatively, it can be located inside or outside the fixed annular chain belt. The edge tensile strength member can be connected to longitudinal tension bars, or separately installed and then cast in rubber. It can also be connected to transverse tension bars, or separately installed and then cast in rubber. Furthermore, it can be connected to high-strength fabric, or separately installed and then cast in rubber. Finally, it can be connected to overlapping fabric, or separately installed and then cast in rubber. Finally, it can be connected to or cast as a single piece with high-strength rubber components. The edge tensile strength component is installed at the top, middle, or bottom of the conveyor belt. When using a chain plate type tensile strength component, the tensile strength chain connects to the chain stabilizing plate, which is also located at the top, middle, or bottom of the conveyor belt. The chain stabilizing screw and the threaded hole of the chain stabilizing plate cooperate to connect the conveyor belt to the drive chain. When the chain stabilizing plate is located in the middle or bottom of the conveyor belt, the chain-connected conveyor belt component is located at the bottom of the chain stabilizing plate and is fixedly connected to it. The edge tensile strength component increases the connection strength between the chain-connected conveyor belt component and the conveyor belt, improving the service life of the conveyor belt. When the drive chain pulls the conveyor belt to transport materials, the edge tensile strength component prevents the belt between the chain-connected conveyor belt components from being torn and deformed, thus improving the structural strength and service life of the conveyor belt.
[0009] 2. The side fastening groove ensures a smooth surface for the side-mounted rubber chain belt. When using the buckle groove protrusion, it engages with the conveyor belt. When using the buckle plate, it is positioned on the upper, lower, or middle side of the conveyor belt. When the buckle plate is fixed to the lower part of the conveyor belt, the upper surface of the conveyor belt is flat; when the buckle plate is fixed to the upper part of the conveyor belt, the lower surface of the conveyor belt is flat. The side fastening groove ensures a smooth surface for the side-mounted rubber chain belt, preventing material scraping, damage to the conveyor belt, and return material, thus extending the service life of the side-mounted rubber chain belt.
[0010] 3. The chain-connected conveyor belt component and the roller chain are either separately connected or integrated. The chain-connected conveyor belt component and the annular chain are either separately connected or integrated. The roller chain shaft passes through the roller chain buckle plate. The roller chain shaft and the chain-connected conveyor belt component are either separately connected or integrated. The roller chain connecting conveyor belt plate and the chain-connected conveyor belt component are either separately connected or integrated. The belt side guard is set on one or both sides of the connecting side guard. The roller chain flat baffle and the belt side guard are either separately connected or integrated. The roller chain flat baffle and the belt side guard are connected by the chain-connected conveyor belt component. The conveyor belt is connected to the drive chain via a chain connection, or the conveyor belt plate is connected to the conveyor belt via a roller chain connection. The chain links and the connecting conveyor belt links are interlocked to form a ring chain. The chain connecting conveyor belt links are connected to the conveyor belt. The chain connecting conveyor belt links and the connecting conveyor belt links are either separate or integrated. The rotation of the ring chain drives the conveyor belt to transport materials. The side guards prevent materials from spilling from the side of the conveyor belt, increasing the amount of material carried and improving production efficiency.
[0011] 4. The chain belt side baffle is set on the side of the conveyor belt or on the roller chain shaft, etc. When the baffle plate moves inward to the inside of the conveyor belt, the chain belt side baffle prevents the roller chain buckle plate from moving inward to the inside of the conveyor belt. The baffle plate prevents the material from flowing out from the side of the baffle plate. The chain belt side baffle prevents the conveyor belt from moving left and right, and prevents the conveyor belt from moving left and right to cut the chain connection conveyor belt component.
[0012] 5. The side-strength rubber chain overcomes the serious problems of material leakage between conveyor belts and material return from gaps between conveyor belts. It changes the high cost and complexity of casting conveyor belts, the complex manufacturing process of stitching together small conveyor belts, and the significant waste of materials and labor. It also changes the structure where the attached belt is lifted and detached by raised conveyor belts, and the belt is prone to deviation and tearing due to material resistance. This saves manufacturing costs and avoids the problems of large-scale on-site shutdowns and maintenance, high labor and time consumption, and high operating costs. It also changes the structure of belt conveyors that rely on friction to drive the feed roller, avoiding the defects caused by large belt stretching, which often require adjustment of the drive and driven rollers, and the need for belt tension before continued operation. It avoids serious production stoppages caused by excessive belt tension and breakage, and avoids production stoppages caused by excessive belt tension leading to motor burnout when the belt rotates during motor start-up. Finally, it addresses the issues of belts without reinforcing edges, which are susceptible to deformation, deviation, tearing, and slippage due to oblique tension and temperature changes. The fracture structure avoids the serious waste of manpower and resources caused by frequent maintenance and replacement of belts on-site, improves production efficiency, reduces environmental pollution, and changes the structure of the belt-through conveyor belt, which requires a relatively thick belt because the through strip passes through the middle of the belt. This reduces the weight of the conveyor belt and lowers costs. It eliminates the need for the complex manufacturing process of casting the through strip into the belt using special molds and special production processes, reducing the high cost of molds and complex manufacturing processes, saving materials, labor and time, and improving production efficiency. It also changes the complex structure of connecting the conveyor belt drive chain with two U-shaped parts through a pin, and connects the conveyor belt and drive chain tightly, avoiding problems such as complex and large connection structure and large space occupation of the connection structure. It also changes the structure of excessive distance between the conveyor belt and drive chain and complex parts, reducing the running resistance of the drive chain driving the conveyor belt to transport materials, lowering production costs, reducing vulnerable parts and maintenance, and improving the use value and service life of the side-fastening rubber chain belt. Attached Figure Description
[0013] Figure 1 This is a partial structural diagram of the side tensile rubber chain belt described in Example 1;
[0014] Figure 2 This is a partial structural diagram of the fixed annular chain tape described in Example 1;
[0015] Figure 3 This is a partial structural diagram of the side tensile rubber chain belt described in Example 2;
[0016] Figure 4 This is a partial cross-sectional view of the side tensile rubber chain described in Example 2;
[0017] Figure 5This is a partial cross-sectional view of the side tensile rubber chain described in Example 2;
[0018] Figure 6 This is a partial cross-sectional view of the side tensile rubber chain described in Example 2;
[0019] Figure 7 This is a partial cross-sectional view of the side tensile rubber chain described in Example 2;
[0020] Figure 8 This is a partial structural diagram of the side tensile rubber chain belt described in Example 2;
[0021] Figure 9 This is a partial cross-sectional view of the side tensile rubber chain described in Example 2;
[0022] Figure 10 This is a partial cross-sectional view of the side tensile rubber chain described in Example 2;
[0023] Figure 11 This is a partial structural diagram of the fixed annular chain tape described in Example 2;
[0024] Figure 12 This is a partial structural diagram of the side tensile rubber chain described in Example 3;
[0025] Figure 13 yes Figure 12 A partial cross-sectional view of AA;
[0026] Figure 14 This is a partial structural diagram of the side tensile rubber chain belt described in Example 4;
[0027] Figure 15 This is a partial cross-sectional view of the side tensile rubber chain described in Example 4;
[0028] Figure 16 This is a partial cross-sectional view of the side tensile rubber chain described in Example 4;
[0029] Figure 17 This is a partial cross-sectional view of the side tensile rubber chain described in Example 4;
[0030] Figure 18 This is a partial cross-sectional view of the side tensile rubber chain described in Example 4;
[0031] Figure 19 This is a partial cross-sectional view of the side tensile rubber chain described in Example 4;
[0032] Figure 20 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 5;
[0033] Figure 21 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 5;
[0034] Figure 22 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 6;
[0035] Figure 23 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 6;
[0036] Figure 24 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 6;
[0037] Figure 25 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 7;
[0038] Figure 26 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 7;
[0039] Figure 27 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 7;
[0040] Figure 28 This is a partial structural diagram of the side tensile rubber chain belt described in Example 8;
[0041] Figure 29 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 8;
[0042] Figure 30 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 8;
[0043] Figure 31 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 9;
[0044] Figure 32 This is a partial cross-sectional view of the side tensile rubber chain belt described in Example 9;
[0045] Figure 33 This is a partial cross-sectional view of the side tensile rubber chain described in Example 9.
[0046] Among them: 1-Side tensile strength rubber chain belt, 2-Conveyor belt, 3-Drive chain, 4-Chain connection conveyor belt component, 5-Side buckle rubber chain belt, 6-Fixed chain link shaft rubber belt, 7-Roller chain, 8-Fixed annular chain belt, 9-Annular chain, 10-Side tensile strength component, 11-Warp and weft mesh, 12-Chain plate type tensile strength component, 13-Tensile chain, 14-Chain stabilizing plate, 15-Threaded hole chain stabilizing plate, 16-Chain stabilizing screw, 17-Side buckle groove, 18-Side buckle component, 19-Buckling groove protrusion, 20-Buckling plate, 21-Side guard belt, 22-Roller chain buckle. 23-Roller chain shaft, 24-Roller chain connecting conveyor belt plate, 25-With side guard, 26-With side guard belt, 27-Chain link fastener, 28-Connecting conveyor belt link, 29-Fixing chain link rubber belt, 30-Fastening belt component, 31-Chain belt side guard, 32-Side embedded guard, 33-Blocking belt plate, 34-Fixing fastening sprocket shaft component, 35-Strong cloth, 36-Overlapping cloth, 37-Roller chain flat guard plate, 38-Nut with chain stabilizing plate, 39-Screw with chain stabilizing plate, 40-Perforated side guard, 41-Through roller chain shaft hole, 42-Adhesive side guard. Detailed Implementation
[0047] Example 1
[0048] like Figures 1 to 2 As shown, the side tensile rubber chain belt 1 includes a conveyor belt 2, a drive chain 3, and a chain connecting conveyor belt component 4. The conveyor belt 2 includes a side rubber chain belt 5, which includes a fixed chain link shaft rubber belt 6. The drive chain 3 includes a roller chain 7. The drive chain 3 is connected to the conveyor belt 2 through the chain connecting conveyor belt component 4. The rotation of the drive chain 3 drives the conveyor belt 2 to transport materials.
[0049] It can also be a side-fastening rubber chain tape 5, including a fixed ring chain tape 8.
[0050] It can also be a driving chain 3 including a ring chain 9.
[0051] Example 2
[0052] like Figures 3 to 11 As shown, the side-fastening rubber chain belt 5 includes a side-strength tensile member 10. The side-strength tensile member 10 is separately connected to the chain-connecting conveyor belt 4 or is integrated with it. The side-strength tensile member 10 is set inside the fixed chain link shaft rubber belt 6. The side-strength tensile member 10 is set inside the fixed annular chain rubber belt 8. The side-fastening rubber chain belt 5 includes a warp and weft mesh 11. The side-strength tensile member 10 is connected to the warp and weft mesh 11.
[0053] Alternatively, the edge-strength tensile member 10 can be set outside the fixed chain link shaft tape 6.
[0054] Alternatively, the edge-strength tensile member 10 can be set outside the fixed ring chain tape 8.
[0055] It can also be a buckle side rubber chain belt 5 including longitudinal or transverse reinforcing bars or strong cloth 35 or overlapping edge cloth 36 or strong rubber parts.
[0056] Alternatively, the edge-strength tensile component 10 can be connected to the longitudinal tie bar, or the edge-strength tensile component 10 and the longitudinal tie bar can be separately set and then cast in rubber; the edge-strength tensile component 10 can be connected to the transverse tie bar, or the edge-strength tensile component 10 and the transverse tie bar can be separately set and then cast in rubber; the edge-strength tensile component 10 can be connected to the strong cloth 35, or the edge-strength tensile component 10 and the strong cloth 35 can be separately set and then cast in rubber; the edge-strength tensile component 10 can be connected to the overlapping edge cloth 36, or the edge-strength tensile component 10 and the overlapping edge cloth 36 can be separately set and then cast in rubber; the edge-strength tensile component 10 can be connected to the strong rubber component, or the edge-strength tensile component 10 and the strong rubber component can be cast as one piece.
[0057] The rest is the same as in Example 1.
[0058] Example 3
[0059] like Figures 12 to 13 As shown, the edge tensile member 10 is set in the middle of the conveyor belt 2.
[0060] The edge tensile strength component 10 includes a metal rope edge tensile strength component, a plastic rope edge tensile strength component, a hemp rope edge tensile strength component, a cotton rope edge tensile strength component, a metal chain edge tensile strength component, a plastic chain edge tensile strength component, a cotton chain edge tensile strength component, a hemp chain edge tensile strength component, a metal mesh edge tensile strength component, a plastic mesh edge tensile strength component, a cotton mesh edge tensile strength component, a hemp mesh edge tensile strength component, a metal cloth edge tensile strength component, a plastic cloth edge tensile strength component, or a cotton cloth edge tensile strength component. Tensile strength components can be woven fabric with edge, blended fabric with edge, or zipper with edge. These edge-stretching components include buckle rope type tensile strength components, rope-joint plate type tensile strength components, nail buckle type tensile strength components, bolt type tensile strength components, nut type tensile strength components, groove type tensile strength components, mesh type tensile strength components, chain type tensile strength components, pin type tensile strength components, plate screw type tensile strength components, plate nut type tensile strength components, plate pin type tensile strength components, zipper lock type tensile strength components, or fabric tensile strength components.
[0061] The edge tensile member 10 can also be set on the upper part of the conveyor belt 2 or on the lower part of the conveyor belt 2.
[0062] The rest is the same as in Example 1.
[0063] Example 4
[0064] like Figures 14 to 19As shown, the edge tensile member 10 includes a chain plate type tensile member 12, which includes a tensile chain 13 and a chain stabilizing plate 14. The tensile chain 13 connects to the chain stabilizing plate 14, which is located in the middle of the conveyor belt 2. The chain stabilizing plate 14 is provided with a threaded hole chain stabilizing plate 15. The corresponding chain connecting conveyor belt member 4 is provided with a chain stabilizing screw 16. The chain stabilizing screw 16 cooperates with the threaded hole chain stabilizing plate 15 to connect the conveyor belt 2 to the drive chain 3. When the chain stabilizing plate 14 is located in the middle of the conveyor belt 2, the chain connecting conveyor belt member 4 is located at the lower part of the chain stabilizing plate 14 and is fixedly connected to the chain stabilizing plate 14.
[0065] The chain stabilizing plate 14 can also be installed on the upper part of the conveyor belt 2 or on the lower part of the conveyor belt 2.
[0066] The chain-connecting conveyor belt 14 may also have a threaded hole, a threaded hole, a nut, or a screw. The corresponding chain-connecting conveyor belt 4 may have a chain-connecting bolt or a chain-connecting nut.
[0067] Alternatively, a chain-mounted stabilizing plate 14 can be installed at the lower part of the conveyor belt 2.
[0068] The rest is the same as in Example 1.
[0069] Example 5
[0070] like Figures 20 to 21 As shown, the conveyor belt 2 is provided with a side buckle groove 17, and a side buckle 18 is provided in the side buckle groove 17. The side buckle groove 17 makes the side rubber chain belt 5 flat. The side buckle 18 includes a buckle groove protrusion 19, which is engaged on the conveyor belt 2.
[0071] The conveyor belt 2 may also be provided with slots for placing side fasteners.
[0072] Alternatively, a side buckle 18 and a fixed buckle sprocket shaft 34 can be provided in the side buckle groove 17.
[0073] The rest is the same as in Example 1.
[0074] Example 6
[0075] like Figures 22 to 24 As shown, the side fastener 18 includes a fastening plate 20. When the fastening plate 20 is fixed to the lower part of the conveyor belt 2, the upper surface of the conveyor belt 2 is a plane.
[0076] Alternatively, when the buckle plate 20 is fixed on the upper part of the conveyor belt 2, the lower surface of the conveyor belt 2 is flat.
[0077] Alternatively, the buckle plate 20 can be fixed to the middle of the side of the conveyor belt 2.
[0078] It can also be a side buckle 18 including a buckle strip.
[0079] The rest is the same as in Example 1.
[0080] Example 7
[0081] like Figures 25 to 27 As shown, the conveyor belt 2 includes a sidewall belt 21, a chain-connected conveyor belt component 4 and a roller chain 7 that are separately connected, the roller chain 7 includes a roller chain buckle plate 22 and a roller chain shaft 23, the roller chain shaft 23 passes through the roller chain buckle plate 22, the roller chain shaft 23 and the chain-connected conveyor belt component 4 are separately connected, the roller chain buckle plate 22 includes a roller chain connecting conveyor belt plate 24, the roller chain connecting conveyor belt plate 24 and the chain-connected conveyor belt component 4 are separately connected, the sidewall belt 21 includes a sidewall 25 and a connecting sidewall belt 26, the sidewall 25 is disposed on both sides of the connecting sidewall belt 26, the roller chain buckle plate 22 includes a roller chain flat baffle 37, the roller chain flat baffle 37 and the sidewall 25 are separately connected, the roller chain flat baffle 37 and the sidewall 25 are connected by the chain-connected conveyor belt component 4.
[0082] When the flange 25 and the connecting flange belt 26 are connected separately, the flange 25 includes a perforated flange 40, the perforated flange 40 includes a roller chain shaft hole 41, and the roller chain shaft hole 41 passes through the connecting roller chain shaft 23.
[0083] It can also be a conveyor belt 2, including a flat-side conveyor belt 2.
[0084] It can also be a chain-connected conveyor belt 4 and roller chain 7 integrated into one unit.
[0085] Alternatively, the roller chain shaft 23 and the chain-connected conveyor belt component 4 can be integrated into one piece.
[0086] Alternatively, the roller chain-connected conveyor belt plate 24 and the chain-connected conveyor belt component 4 can be integrated into one unit.
[0087] Alternatively, the flange 25 can be set on one side of the connecting flange belt 26, and the roller chain flat baffle 37 and the flange 25 are integrated.
[0088] Alternatively, the conveyor belt 26 can be connected to the drive chain 3 via a chain connection between the conveyor belt component 4 and the side guard belt 26.
[0089] It can also be an integrated design with or without a retaining strip 25 and a retaining strip 26.
[0090] It can also be a strip with a retaining edge 25 including an adhesive strip retaining edge 42, which is bonded to the side of the strip with retaining edge 26.
[0091] The rest is the same as in Example 1.
[0092] Example 8
[0093] like Figures 28 to 30As shown, the chain connecting conveyor belt component 4 and the annular chain 9 are separately connected. The annular chain 9 and the conveyor belt 2 are connected through the chain connecting conveyor belt component 4. The annular chain 9 includes a chain link 27 and a connecting conveyor belt chain link 28. The chain link 27 and the connecting conveyor belt chain link 28 are interlocked to form the annular chain 9. The chain connecting conveyor belt component 4 connects the connecting conveyor belt chain link 28 to the conveyor belt 2. The chain connecting conveyor belt component 4 and the connecting conveyor belt chain link 28 are integrated. The rotation of the annular chain 9 drives the conveyor belt 2 to transport materials. The conveyor belt 2 includes a fixed chain link rubber belt 29. The side buckle rubber belt 5 includes a side buckle component 18. The side buckle component 18 includes a buckle rubber belt component 30.
[0094] It can also be a chain-connected conveyor belt component 4 and a ring chain 9 integrated into one unit.
[0095] Alternatively, the chain-connected conveyor belt component 4 can be separately connected to the connecting conveyor belt chain link 28.
[0096] It can also be a conveyor belt 2 including fixed link polyester belt, fixed link plastic belt, fixed link cloth belt, fixed link mesh belt, fixed link steel wire belt, fixed link cast rubber belt, or fixed link steel plate belt.
[0097] It can also be a side buckle 18 including a polyester buckle, a plastic buckle, or a steel buckle.
[0098] The rest is the same as in Example 1.
[0099] Example 9
[0100] like Figures 31 to 33 As shown, the conveyor belt 2 includes a chain belt side baffle 31, which is set on the side of the conveyor belt 2. The chain belt side baffle 31 includes a side embedded baffle 32. The roller chain buckle plate 22 is provided with a material blocking plate 33. When the material blocking plate 33 moves towards the inside of the conveyor belt 2, the chain belt side baffle 31 blocks the roller chain buckle plate 22 from moving towards the inside of the conveyor belt 2. The material blocking plate 33 prevents the material from flowing out from the side of the material blocking plate 33. The chain belt side baffle 31 prevents the conveyor belt 2 from moving left and right, and prevents the conveyor belt 2 from moving left and right to cut the chain connecting conveyor belt component 4.
[0101] Alternatively, the side stop 31 of the chain can be set on the roller chain shaft 23.
[0102] It can also be a side stop 31 for the chain belt, including a side through-shaft stop.
[0103] The rest is the same as in Example 1.
Claims
1. A side-strength rubber chain belt, characterized in that: The side-strength rubber chain belt includes a conveyor belt, a drive chain, and a chain-connecting conveyor belt component. The conveyor belt includes a snap-on side rubber chain belt, which includes a fixed chain link shaft rubber belt or a fixed ring chain rubber belt. The drive chain includes a roller chain or a ring chain. The drive chain is connected to the conveyor belt through the chain-connecting conveyor belt component. The rotation of the drive chain drives the conveyor belt to transport materials. The snap-on side rubber chain belt includes a snap-on tensile member. The snap-on tensile member is either separately connected to the chain connecting conveyor belt or is integrated with it. The snap-on tensile member is disposed inside or outside the snap-on side rubber chain belt. The snap-on side rubber chain belt includes an edge fabric. The snap-on tensile member is integrated with the edge fabric or the snap-on tensile member and the edge fabric are separately disposed and then coated with rubber.
2. The side-strengthened rubber chain belt according to claim 1, characterized in that: The conveyor belt includes a sidewall belt, a chain connecting conveyor belt component and a roller chain that are separately connected, the roller chain includes a roller chain buckle plate and a roller chain shaft, the roller chain shaft is connected to the roller chain buckle plate, the roller chain shaft is separately connected to the chain connecting conveyor belt component, the roller chain buckle plate includes a roller chain connecting conveyor belt plate, the roller chain connecting conveyor belt plate is separately connected to the chain connecting conveyor belt component, the sidewall belt includes a sidewall belt with a sidewall and a sidewall belt with a sidewall, the sidewall belt with a sidewall is set on both sides of the sidewall belt with a sidewall, the roller chain buckle plate also includes a roller chain flat baffle, the roller chain flat baffle is separately connected to the sidewall belt with a sidewall, and the roller chain flat baffle and the sidewall belt with a sidewall are connected by the chain connecting conveyor belt component; The belt with a retaining edge and the belt with a connecting retaining edge are connected separately. The retaining edge includes a perforated retaining edge, which includes a through-roller chain shaft hole, and the through-roller chain shaft hole is connected to the connecting roller chain shaft.
3. The side-strengthened rubber chain belt according to claim 1, characterized in that: The chain connecting conveyor belt component and the ring-lock chain are either separately connected or integrated. The ring-lock chain is connected to the conveyor belt through the chain connecting conveyor belt component. The ring-lock chain includes the chain link and the connecting conveyor belt chain link. The chain link and the connecting conveyor belt chain link are interlocked to form the ring-lock chain. The chain connecting conveyor belt component connects the connecting conveyor belt chain link to the conveyor belt. The chain connecting conveyor belt component and the connecting conveyor belt chain link are either separately connected or integrated. The rotation of the ring-lock chain drives the conveyor belt to transport materials.
4. The side-strength rubber chain belt according to claim 1, characterized in that: The conveyor belt includes chain side stops, which are set on the side of the conveyor belt or on the roller chain shaft. The chain side stops include side embedded stops. The roller chain buckle plate is equipped with a material blocking plate. When the material blocking plate moves inward to the inside of the conveyor belt, the chain side stops prevent the roller chain buckle plate from moving inward to the inside of the conveyor belt. The material blocking plate prevents material from flowing out from the side of the material blocking plate. The chain side stops prevent the conveyor belt from moving left and right, and prevent the conveyor belt from moving left and right to connect the shear chain to the conveyor belt component.
Citation Information
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