Double-rotation conveying belt

By designing a material input and output mechanism for a double rotary conveyor belt, and utilizing forward and reverse conveying mechanisms and rotary components, the problem of inconvenience for workers to pick up materials caused by unidirectional conveyor belt transmission was solved, and the cyclic conveying and efficient retrieval of steel basins were realized.

CN223575417UActive Publication Date: 2025-11-21ZHEJIANG FENGXI FOOD CO LTD
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Patent Information

Application Number
CN202520159308.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-11-21
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

The existing conveyor belt can only transport in one direction. The workers are slow in taking the steel basins containing dough or fillings from the conveyor belt, which causes the steel basins to continue to move along the conveyor direction and cannot be rotated for the workers to take them again, which is quite inconvenient.

Method used

A double rotary conveyor belt was designed, including a material discharge mechanism and a material input mechanism. The input mechanism consists of forward and reverse conveying mechanisms, with a rotary component between them. The rotary component enables the steel basin to be circulated between the forward and reverse conveying mechanisms.

Benefits of technology

This system enables the steel basins to be continuously transported on the conveyor belt, allowing workers to easily remove the basins for wrapping buns and improving work efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223575417U_ABST
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Abstract

The utility model discloses a double-rotation conveyor belt, which relates to the field of cooked wheaten food production, and is characterized by comprising a material conveying-out mechanism and a material conveying-in mechanism, and the material conveying-out mechanism is arranged right below the material conveying-in mechanism. According to the utility model, the steel basins filled with dough or sunken steel basins are placed on the forward conveying mechanism, the steel basins filled with the dough are conveyed to the front of a plurality of workers on one side of the material conveying mechanism, and then the steel basins which are not taken down from the forward conveying mechanism are continuously conveyed; the steel basins can be conveyed to the reverse conveying mechanism from the forward conveying mechanism until the steel basins are conveyed to one rotary assembly, the steel basins are conveyed to a plurality of workers located on the other side of the material conveying-out mechanism through the reverse conveying mechanism, and the steel basins which are not taken down from the reverse conveying mechanism are conveyed; and the steel basins can be conveyed from the reverse conveying mechanism to the forward conveying mechanism again until the steel basins are conveyed to the other rotary assembly, and the steel basins can be conveniently taken down by a plurality of workers located on the material conveying-out mechanism.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of flour production, more specifically, it relates to double gyration conveying belt. BACKGROUND

[0002] The conveying belt is a material handling equipment for continuously conveying materials on a fixed line, is a conveying appliance for material handling system mechanization and automation, and can be used in the food processing industry, for example, steamed buns can be transported after processing through the conveying belt. In the existing process, multiple workers sit on both sides of the workbench to wrap steamed buns, the dough and the inner part loaded separately in the steel basin need to be conveyed to the front of the workers through the conveying belt, and the steel basin loaded with the dough or the inner part is taken off for wrapping steamed buns. However, the existing conveying belt can only convey in one direction, and when the workers take the steel basin loaded with the dough or the inner part from the conveying belt at a slow speed, the steel basin loaded with the dough or the inner part can only continue to drive along the conveying direction of the conveying belt, and cannot be rotated to allow the workers to continue to take, which is inconvenient.

[0003] Therefore, a new scheme is needed to solve this problem. UTILITY MODEL CONTENT

[0004] In view of the deficiencies in the prior art, the purpose of the utility model is to provide a double gyration conveying belt.

[0005] The above technical purpose of the utility model is achieved through the following technical scheme: the double gyration conveying belt comprises a material conveying-out mechanism and a material conveying-in mechanism, the material conveying-out mechanism is arranged directly below the material conveying-in mechanism, the material conveying-in mechanism comprises a forward conveying mechanism and a reverse conveying mechanism arranged in the same plane, the conveying directions of the forward conveying mechanism and the reverse conveying mechanism are arranged in opposite directions, the conveying direction of the material conveying-out mechanism is arranged in the same direction as the conveying direction of the forward conveying mechanism, two rotation assemblies are arranged between the forward conveying mechanism and the reverse conveying mechanism, the two rotation assemblies are arranged close to the two sides of the material conveying-in mechanism, and a plurality of table plates are arranged on the material conveying-out mechanism.

[0006] Preferably, the material conveying-out mechanism comprises a bearing base, a transmission roller one rotatably connected to the two sides of the bearing base, and a conveying belt one sleeved on the two transmission rollers one, a containing groove for containing rotation of the transmission roller one is formed in the bearing base, the transmission roller one is rotatably connected to the bearing base through a motor one, and the table plates are fixedly connected to the two sides of the bearing base, respectively.

[0007] Preferably, the material feeding mechanism further comprises a bearing top seat, the forward conveying mechanism and the reverse conveying mechanism are arranged on the bearing top seat respectively, the bearing top seat is fixedly installed on the top of the bearing base through a support rod, the forward conveying mechanism comprises a conveying belt two and a transmission roller two, the conveying belt two is sleeved on the two transmission roller two, two accommodating grooves one for accommodating the rotation of the transmission roller two are arranged on the bearing top seat, the transmission roller two is rotatably connected in the accommodating groove one through a motor two, the conveying direction of the conveying belt one and the conveying belt two is the same.

[0008] Preferably, the reverse conveying mechanism comprises a conveying belt three and a transmission roller three, the conveying belt three is sleeved on the two transmission roller three, two accommodating grooves two for accommodating the rotation of the transmission roller three are arranged on the bearing top seat, the transmission roller three is rotatably connected in the accommodating groove two through a motor three, the conveying belt two and the conveying belt three are in the same plane and are flush arranged, the conveying direction of the conveying belt two and the conveying belt three is opposite, the rotary assembly is arranged at both ends of the bearing top seat.

[0009] Preferably, the rotary assembly comprises correspondingly arranged cross rods and inclined guide plates, the cross rods are arranged close to the end of the bearing top seat, the end of the cross rod is fixedly connected with a mounting block, the mounting block is fixedly connected with a mounting rod, one end of the mounting rod is installed on the side wall of the bearing top seat through bolts, the inclined guide plates are fixedly connected with the bottom of the cross rod through fixing rods, one of the inclined guide plates is located directly above the conveying belt two, the other inclined guide plate is located directly above the conveying belt three, and the two inclined guide plates are arranged in opposite parallel, the side wall of the bearing top seat is fixedly connected with two blocking strips through connecting rods, the axial direction of the blocking strips is perpendicular to the axial direction of the cross rods, the blocking strips are located above the bearing top seat, and the cross rods are located above the blocking strips.

[0010] Preferably, the bearing top seat and the bearing base are both provided with cleaning strips, the axial direction of the cleaning strips is opposite to the axial direction of the cross rods, both ends of the cleaning strips are fixedly connected with magnetic blocks, both sides of the bearing base are fixedly connected with mounting plates, the mounting plates and the blocking strips are both made of ferromagnetic metal, one of the cleaning strips is fixedly installed between the two blocking strips through the magnetic force of the magnetic blocks, the other cleaning strip is fixedly installed between the two mounting plates through the magnetic force of the magnetic blocks, and the bottom of the cleaning strip is provided with bristles, the bristles on one of the cleaning strips respectively abut against the conveying belt two and the conveying belt three, and the bristles on the other cleaning strip abut against the conveying belt one.

[0011] In summary, the utility model has the following beneficial effects: the utility model discloses a material conveying-out mechanism and material conveying-in mechanism are set up, and the material conveying-in mechanism is divided into a forward conveying mechanism and a reverse conveying mechanism, two rotating assemblies are arranged between the forward conveying mechanism and the reverse conveying mechanism, and a worker can place a steel basin containing dough or an indentation on the forward conveying mechanism, the steel basin containing dough or the indentation is conveyed to the front of a plurality of workers beside a table board on one side of the material conveying-out mechanism through the forward conveying mechanism, then the steel basin not taken off from the forward conveying mechanism is continuously conveyed until the steel basin is conveyed to one of the rotating assemblies, the steel basin is conveyed from the forward conveying mechanism to the reverse conveying mechanism through one of the rotating assemblies, then the steel basin is conveyed to the front of a plurality of workers beside a table board on the other side of the material conveying-out mechanism through the reverse conveying mechanism, and the steel basin not taken off from the reverse conveying mechanism is continuously conveyed until the steel basin is conveyed to the other rotating assembly, the steel basin is conveyed from the reverse conveying mechanism to the forward conveying mechanism through the other rotating assembly, so that the steel basin containing dough or the indentation can be circularly conveyed on the forward conveying mechanism and the reverse conveying mechanism through the two rotating assemblies, and a plurality of workers on the material conveying-out mechanism can conveniently take off the steel basin for making steamed buns. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a structural schematic view of the utility model;

[0013] Figure 2 It is a partial explosion view of the material conveying-out mechanism in the utility model;

[0014] Figure 3 It is a partial explosion view of the material conveying-in mechanism in the utility model;

[0015] Figure 4 It is a structural schematic view of the horizontal rod and the inclined guide plate in the utility model;

[0016] Figure 5 It is a structural schematic view of the cleaning strip in the utility model.

[0017] In the drawing: 1, bearing base; 2, transmission roller one; 3, conveying belt one; 4, containing groove; 5, motor one; 6, table board; 7, bearing top seat; 8, support rod; 9, conveying belt two; 10, transmission roller two; 11, containing groove one; 12, motor two; 13, conveying belt three; 14, transmission roller three; 15, containing groove two; 16, motor three; 17, horizontal rod; 18, inclined guide plate; 19, mounting block; 20, fixed rod; 21, baffle strip; 22, cleaning strip; 23, magnetic block; 24, mounting plate; 25, brush hair. DETAILED DESCRIPTION

[0018] The utility model will be described in detail in combination with the drawings and examples.

[0019] Example:

[0020] Double rotary conveyor belt, such as Figures 1 to 5 As shown, the device includes a material conveying mechanism and a material receiving mechanism. The material conveying mechanism is located directly below the material receiving mechanism and is arranged overlapping it. The material receiving mechanism includes a forward conveying mechanism and a reverse conveying mechanism arranged on the same plane, with the conveying directions of the forward and reverse conveying mechanisms being opposite. The conveying direction of the material conveying mechanism is the same as that of the forward conveying mechanism. Two rotating components are arranged between the forward and reverse conveying mechanisms, close to both sides of the material receiving mechanism. Two tabletops 6 are welded onto the material conveying mechanism.

[0021] The material conveying mechanism includes a support base 1, drive rollers 2 rotatably connected to both sides of the support base 1, and a conveyor belt 3 sleeved on the two drive rollers 2. The support base 1 has a receiving groove 4 to accommodate the rotation of the drive rollers 2. The drive rollers 2 are rotatably connected to the support base 1 via a motor 5. Tabletops 6 are welded to both sides of the support base 1. The material conveying mechanism also includes a support top seat 7. A forward conveying mechanism and a reverse conveying mechanism are respectively mounted on the support top seat 7. The support top seat 7 is welded to the top of the support base 1 via a support rod 8, with one end of the support rod 8 welded to the bottom of the support top seat 7. The forward conveying mechanism includes a second conveyor belt 9 and drive rollers 10. The second conveyor belt 9 is sleeved on the two drive rollers 10. The support top seat 7 has two receiving grooves for the drive rollers 10. A rotating trough 11 is formed. A second transmission roller 10 is rotatably connected to the trough 11 via a second motor 12. The two transmission rollers 10 are located on both sides of the bearing top seat 7. Conveyor belt 3 and conveyor belt 2 9 are arranged in the same conveying direction. A reverse conveying mechanism includes a third transmission belt 13 and transmission rollers 14. The third transmission belt 13 is fitted onto the two transmission rollers 14. Two troughs 15 are formed on the bearing top seat 7 to accommodate the rotation of the transmission rollers 14. The two transmission rollers 14 are located on both sides of the bearing top seat 7 and are rotatably connected to the troughs 15 via a third motor 16. Conveyor belt 2 9 and conveyor belt 3 13 are on the same plane and flush. The conveying directions of conveyor belt 2 9 and conveyor belt 3 13 are opposite. Rotary components are located at both ends of the bearing top seat 7.

[0022] The rotating assembly comprises corresponding transverse rods 17 and inclined guide plates 18, the transverse rods 17 are arranged near the ends of the bearing top seat 7, the ends of the transverse rods 17 are welded with mounting blocks 19, the mounting blocks 19 are welded with mounting rods, one end of the mounting rods is welded with connecting plates, the connecting plates are bolted on the side walls of the bearing top seat 7, the inclined guide plates 18 are welded on the bottoms of the transverse rods 17 through fixing rods 20, one of the inclined guide plates 18 is located directly above the conveying belt two 9, the other inclined guide plate 18 is located directly above the conveying belt three 13, and the two inclined guide plates 18 are arranged in parallel, the side walls of the bearing top seat 7 are welded with two blocking strips 21 through connecting rods, one end of the connecting rods is welded on the blocking strips 21, the other end of the connecting rods is welded on the side walls of the bearing top seat 7, the blocking strips 21 are perpendicular to the transverse rods 17, the blocking strips 21 are located directly above the bearing top seat 7, the transverse rods 17 are located above the blocking strips 21, the bearing top seat 7 and the bearing bottom seat 1 are both installed with cleaning strips 22, the cleaning strips 22 are arranged in parallel with the transverse rods 17, the cleaning strips 22 are both bonded with magnetic blocks 23 at the two ends, the bearing bottom seat 1 is welded with mounting plates 24 at the two sides, the mounting plates 24 and the blocking strips 21 are both made of metal iron, one of the cleaning strips 22 is fixed between the two blocking strips 21 through the magnetic force of the magnetic blocks 23, the other cleaning strip 22 is fixed between the two mounting plates 24 through the magnetic force of the magnetic blocks 23, the cleaning strips 22 are bonded with bristles 25 at the bottoms, the bristles 25 on one of the cleaning strips 22 are in contact with the conveying belt two 9 and the conveying belt three 13 respectively, and the bristles 25 on the other cleaning strip 22 are in contact with the conveying belt one 3.

[0023] The staff drives one of the transmission rollers 2 to rotate by starting the motor 5, because the conveyor belt 3 is sleeved on the two transmission rollers 2, so that when one of the transmission rollers 2 rotates, it can drive the conveyor belt 3 and the other transmission roller 2 to rotate, the transmission roller 2 rotates in the containing groove 4, so that the conveyor belt 3 rotates on the bearing base 1, and the staff drives one of the transmission rollers 10 to rotate by starting the motor 12, and can drive the conveyor belt 9 and the other transmission roller 10 to rotate respectively, the transmission roller 10 rotates in the containing groove 11, so that the conveyor belt 9 rotates on the bearing top 7, and the staff drives one of the transmission rollers 14 to rotate by starting the motor 16, the transmission roller 14 rotates in the containing groove 15, and can drive the conveyor belt 13 and the other transmission roller 14 to rotate respectively, so that the conveyor belt 13 rotates on the bearing top 7, at this time, the conveying direction of the conveyor belt 3 and the conveyor belt 9 is the same, and the conveying direction of the conveyor belt 9 and the conveyor belt 13 is opposite, then the staff can place the steel basin containing dough or stuffing on the conveyor belt 9, the conveyor belt 9 drives the steel basin to move away from the motor 5, and the steel basin containing dough or stuffing is conveyed to the front of the workers beside the table plate 6 on the side of the material conveying mechanism by the conveyor belt 9, at this time, the top of the bearing top 7 supports the conveyor belt 9 to avoid the concave phenomenon of the conveyor belt 9 when conveying objects, and the steel basin is in contact with the blocking strip 21 close to the side of the bearing base 1 to avoid the steel basin from falling off the conveyor belt 9, the staff can take out the steel basin containing dough or stuffing from the conveyor belt 9, then the steel basin not taken off from the forward conveying mechanism is continuously conveyed by the conveyor belt 9 until one of the steel basins is in contact with one of the cross rods 17 and abuts against the inclined guide plate 18, then the steel basin in contact with the inclined guide plate 18 is extruded by the rear steel basin to be conveyed from the conveyor belt 9 to the conveyor belt 13, and the steel basin abuts against the cross rod 17 during the conveying process from the conveyor belt 9 to the conveyor belt 13, when the steel basin is conveyed from the conveyor belt 9 to the conveyor belt 13, the steel basin is moved towards the motor 5 by the conveyor belt 13, at this time, the bearing top 7 supports the conveyor belt 13, and the steel basin is in contact with the blocking strip 21 close to the conveyor belt 13, and the steel basin is conveyed to the front of the workers on the other side of the bearing base 1, and the steel basin not taken off from the conveyor belt 13 is continuously conveyed by the conveyor belt 13 until one of the steel basins is in contact with the other inclined guide plate 18, and the steel basin in contact with the inclined guide plate 18 is extruded by the rear steel basin to be conveyed from the conveyor belt 13 to the conveyor belt 9, so that the steel basin containing dough or stuffing can be circularly conveyed on the forward conveying mechanism and the reverse conveying mechanism by the two rotating assemblies, which is convenient for the workers on the material conveying mechanism to take out the steel basin for making steamed buns.

[0024] After the dough or the recessed steel basin is taken off from the conveyor belt two 9 or the conveyor belt three 13, the dough or the recessed steel basin is placed on the two table plates 6 to make the steamed buns, and after the steamed buns are packaged, the steamed buns are placed in the steel basin, and the steel basin with the steamed buns is placed on the conveyor belt one 3 to be conveyed by the conveyor belt one 3 to the direction away from the motor one 5 for subsequent processing, and the conveyor belt one 3 supports the conveyor belt one 3 when conveying.

[0025] In the conveying process of the conveyor belt one 3, the conveyor belt two 9 and the conveyor belt three 13, the bristles 25 on one of the cleaning strips 22 can clean the top surface of the conveyor belt one 3, and the magnetic block 23 on the cleaning strip 22 is attracted to the mounting plate 24, and the bristles 25 on the other cleaning strip 22 clean the top surfaces of the conveyor belt two 9 and the conveyor belt three 13, respectively, so that the cleaning degree of the conveyor belt one 3, the conveyor belt two 9 and the conveyor belt three 13 can be improved, respectively, and when the bristles 25 need to be cleaned, the cleaning strip 22 is disassembled, so that the magnetic blocks 23 at both ends of the cleaning strip 22 are not attracted to the blocking strip 21 or the mounting plate 24, so that the cleaning strip 22 can be disassembled from the two blocking strips 21 or the two mounting plates 24 to clean the bristles 25.

[0026] The above only describes the preferred embodiments of the present application, and the protection scope of the present application is not limited to the above-mentioned embodiments. Any technical solution falling within the concept of the present application belongs to the protection scope of the present application. It should be noted that for ordinary skilled in the art, some improvements and decorations without departing from the principles of the present application can also be considered as the protection scope of the present application.

Claims

1. A double-rotating conveyor belt, characterized in that: It includes a material discharge mechanism and a material input mechanism. The material discharge mechanism is located directly below the material input mechanism. The material input mechanism includes a forward conveying mechanism and a reverse conveying mechanism arranged on the same plane. The forward conveying mechanism and the reverse conveying mechanism are arranged in opposite directions. The material discharge mechanism is arranged in the same direction as the forward conveying mechanism. Two rotating components are arranged between the forward conveying mechanism and the reverse conveying mechanism. The two rotating components are arranged close to both sides of the material input mechanism. Multiple tables (6) are arranged on the material discharge mechanism.

2. The double-rotating conveyor belt according to claim 1, characterized in that: The material conveying mechanism includes a support base (1), a transmission roller (2) rotatably connected to both sides of the support base (1), and a conveyor belt (3) sleeved on the two transmission rollers (2). The support base (1) has a receiving groove (4) for accommodating the rotation of the transmission roller (2). The transmission roller (2) is rotatably connected to the support base (1) via a motor (5). The table (6) is fixedly connected to both sides of the support base (1).

3. The double-rotating conveyor belt according to claim 2, characterized in that: The material conveying mechanism also includes a bearing top seat (7). The forward conveying mechanism and the reverse conveying mechanism are respectively set on the bearing top seat (7). The bearing top seat (7) is fixedly installed on the top of the bearing base (1) by a support rod (8). The forward conveying mechanism includes a second conveyor belt (9) and a second transmission roller (10). The second conveyor belt (9) is sleeved on the two second transmission rollers (10). The bearing top seat (7) has two accommodating grooves (11) for accommodating the rotation of the second transmission rollers (10). The second transmission rollers (10) are rotatably connected to the accommodating grooves (11) by a second motor (12). The conveying direction of the first conveyor belt (3) is the same as that of the second conveyor belt (9).

4. The double-rotating conveyor belt according to claim 3, characterized in that: The reverse conveying mechanism includes a conveyor belt three (13) and a transmission roller three (14). The conveyor belt three (13) is sleeved on the two transmission rollers three (14). The bearing top seat (7) has two accommodating grooves two (15) for accommodating the rotation of the transmission rollers three (14). The transmission rollers three (14) are rotatably connected to the accommodating grooves two (15) by a motor three (16). The conveyor belt two (9) and the conveyor belt three (13) are on the same plane and are flush. The conveying directions of the conveyor belt two (9) and the conveyor belt three (13) are opposite. The rotary assembly is located at both ends of the bearing top seat (7).

5. The double-rotating conveyor belt according to claim 4, characterized in that: The rotary assembly includes a crossbar (17) and an inclined guide plate (18) respectively. The crossbar (17) is located near the end of the bearing top seat (7). An installation block (19) is fixedly connected to the end of the crossbar (17). An installation rod is fixedly connected to the installation block (19). One end of the installation rod is installed on the side wall of the bearing top seat (7) by bolts. The inclined guide plate (18) is fixedly connected to the bottom of the crossbar (17) by a fixing rod (20). One of the inclined guide plates (18) is located directly above the second conveyor belt (9), and the other inclined guide plate (18) is located directly above the third conveyor belt (13). The two inclined guide plates (18) are arranged relatively parallel. Two baffles (21) are fixedly connected to the side wall of the bearing top seat (7) by a connecting rod. The axial direction of the baffles (21) is relatively perpendicular to the axial direction of the crossbar (17). The baffles (21) are located above the bearing top seat (7), and the crossbar (17) is located above the baffles (21).

6. The double-rotating conveyor belt according to claim 5, characterized in that: Cleaning strips (22) are provided on both the top support (7) and the base support (1). The axial direction of the cleaning strips (22) is relatively parallel to the axial direction of the crossbar (17). Magnetic blocks (23) are fixedly connected to both ends of the cleaning strips (22). Mounting plates (24) are fixedly connected to both sides of the base support (1). The mounting plates (24) and the baffles (21) are both made of ferromagnetic metal. One of the cleaning strips (22) is fixedly installed between the two baffles (21) by the magnetic force of the magnetic block (23). The other cleaning strip (22) is fixedly installed between the two mounting plates (24) by the magnetic force of the magnetic block (23). Brush bristles (25) are provided at the bottom of the cleaning strips (22). The brush bristles (25) on one of the cleaning strips (22) abut against the second conveyor belt (9) and the third conveyor belt (13) respectively. The brush bristles (25) on the other cleaning strip (22) abut against the first conveyor belt (3).