A conveyor for pet food processing
By combining the spreading auxiliary rods and spreading auxiliary plates, the problem of poor spreading effect of pet food is solved, and uniform conveying and consistent bag weight of pet food are achieved, enhancing the automation and cleanliness of the conveyor.
Patent Information
- Application Number
- CN202510721909.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2045-05-30
AI Technical Summary
The existing conveyor for pet food processing has a simple spreading roller structure, which results in poor spreading effect of pet food, leading to inconsistent weight during bagging and affecting the conveying operation.
The system uses a combination of spreading auxiliary rods and spreading auxiliary plates. The spreading auxiliary rods are driven to move back and forth by a single-rotation reciprocating screw. Combined with an inverted "U"-shaped spreading auxiliary plate, the pet food is spread evenly. The feeding plate is rotated by a rotating connecting component to achieve portion delivery. Magnet blocks are used to prevent the mesh from clogging.
It achieves even distribution of pet food, avoids piling up, ensures consistent weight during bagging, improves the efficiency of conveying operations, and prevents blockages through automatic filtration and cleaning functions.
Smart Images

Figure CN120328211B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of pet food processing, in particular to a conveyor for pet food processing. BACKGROUND
[0002] Pet food is food specially formulated to meet the nutritional needs of pets. During the processing of pet food, a conveyor is used to convey the pet food to assist in the subsequent bagging operation or other processing operation.
[0003] For example, the patent with the patent name "straight line out belt conveyor for pet food production and packaging" disclosed in the prior art with the announcement number "CN217920025U" discloses that the bristles fixed along the length direction of the brush rod can clean the outer surface of the conveyor. Since the brush rod is arranged at the upper end of the collecting hopper, the impurities after cleaning fall into the collecting hopper. The scraper fixedly installed at the upper end of the collecting hopper further scrapes the stubborn impurities on the surface of the conveyor, thus achieving double cleaning and further improving the cleaning effect. Since the conveyor is provided with an air suction pump at the bottom, an air suction port is formed at the bottom of the collecting hopper, and the air suction end of the air suction pump is connected with the air suction port, so that a negative pressure is generated at the upper end of the collecting hopper to adsorb and collect the dust floating at the upper end, thereby avoiding the overflow of impurities and dust, which affects the working environment. The patent with the patent name "conveying device for pet food processing" disclosed in the prior art with the announcement number "CN221894224U" discloses that the through hole is provided with two same through holes, the output shaft of the motor three is fixedly connected with the rotating disc, the center lines of the motor three, the rotating disc and the through hole are located on the same horizontal line, the through hole penetrating through the baffle two facilitates the installation of the spreading roller, the motor three drives the rotating disc to rotate, thereby driving the spreading roller to rotate, the rotating disc is provided with two same rotating discs, the two rotating discs are located in the front and rear two through holes, the spreading roller is provided with four same spreading rollers, the pet food on the conveying belt is spread by the four spreading rollers, thereby avoiding the accumulation of pet food, which causes the weight of the pet food to be inconsistent when the pet food is bagged, thereby affecting the sales.
[0004] The conveyor for pet food processing in the above-mentioned prior art can spread the pet food on the conveying belt by rotating the four spreading rollers, thereby avoiding the accumulation of pet food, which causes the weight of the pet food to be inconsistent when the pet food is bagged. However, since the structure of the spreading roller in the above-mentioned prior art is relatively simple, and the diameter of the spreading roller is fixed, after conveying for a period of time, the height of the pet food accumulated on the left side of the spreading roller will be higher than the highest point of the spreading roller. At this time, the pet food on the left side of the spreading roller will directly move above the spreading roller to the right side of the spreading roller, thereby causing poor spreading effect of the pet food, which still causes the weight of the pet food to be inconsistent when the pet food is bagged, thereby affecting the subsequent conveying operation. Therefore, the present application proposes a conveyor for pet food processing to solve the above-mentioned problems. SUMMARY
[0005] The present application aims to provide a pet food processing conveyor to solve the problem of poor spreading effect of pet food caused by the current market pet food processing conveyor, which also causes inconsistent weight of pet food during later bagging, thereby affecting the later conveying operation.
[0006] To achieve the above object, the present application provides the following technical scheme: a pet food processing conveyor, comprising an outer shell, a support frame installed on the bottom surface of the outer shell, a feeding conveying assembly installed on the left side of the upper part of the outer shell, an auxiliary control assembly installed inside the feeding conveying assembly for spreading and conveying pet food, four groups of feeding plates for conveying pet food arranged inside the outer shell, two vertical partitions symmetrically installed on the outer side of the feeding plate, a connecting sealing cloth and a rotary connecting assembly connected to the upper surface of the collecting hopper through the bottom surface of the feeding plate, the collecting hopper installed in the outer shell, and a discharge frame installed in the discharge port of the right side surface of the outer shell.
[0007] Preferably, the feeding conveying assembly is composed of a conveying belt, a conveying roller and a support frame, a row of conveying rollers connected by a chain wheel assembly is installed on the inner side of the support frame, and a conveying belt is connected to the outer side of the row of conveying rollers, the auxiliary control assembly comprises a spreading auxiliary plate installed on the inner side wall of the support frame, the spreading auxiliary plate is arranged in an inverted "U" shape, side baffles located above the conveying belt are symmetrically installed on the left and right sides of the spreading auxiliary plate, the shortest distance between the lower part of the spreading auxiliary plate and the side baffles and the conveying belt is 1 CM, a single-rotation reciprocating screw rod is installed through the groove on the left side of the upper part of the spreading auxiliary plate, the front end of the single-rotation reciprocating screw rod penetrates the front side of the feeding conveying assembly, and the front end of the single-rotation reciprocating screw rod and the front end of one of the conveying rollers in the feeding conveying assembly form a transmission structure through the chain wheel assembly.
[0008] Preferably, four groups of rotary connecting assemblies are installed through the groove in the inner part of the connecting sealing cloth, each group has two rotary connecting assemblies, the connecting sealing cloth made of umbrella cloth is arranged in a circular ring shape, the rotary connecting assembly comprises a sleeve installed on the upper surface of the collecting hopper, and also comprises a connecting column installed on the bottom surface of the feeding plate, the lower part of the connecting column is connected to the inner part of the sleeve through a return spring, the groove in the inner part of the sleeve and the connecting column are both arranged in a rectangular shape, and the sleeve and the connecting column are concave-convex matched.
[0009] Preferably, the feeding plate is arranged in an inclined shape, and the four groups of feeding plates form a conical shape, two adjacent vertical partitions are arranged in close contact, a control plate is arranged above the feeding plate, the two ends of the arc-shaped control plate are connected to the upper part of the vertical partition on the outer side of the feeding plate through a bearing frame, the bearing frame is arranged in a "7" shape structure, and the thickness of the vertical partition is 2 CM.
[0010] Preferably, a limiting vertical rod is installed in the groove inside the upper left side of the outer shell, a detection block is provided through the outer side of the limiting vertical rod, a connecting spring is nested and connected to the upper outer side of the limiting vertical rod, a pressure sensor is installed in the outer shell below the detection block, a rolling column is rotatably installed on one side of the detection block, a control plate is provided above the rolling column, and the support frame does not contact the rolling column.
[0011] Preferably, the lower inner wall of the outer casing is provided with a limiting groove in the shape of a ring.
[0012] Preferably, the collection hopper is funnel-shaped, and a rotating disk and a driven gear are installed sequentially from top to bottom on the lower outer side of the collection hopper. The outer side of the rotating disk is slidably connected to the limiting slide groove. A ring of balls for reducing friction is installed on both the upper and lower surfaces of the rotating disk. A driving gear is meshed with the left side of the driven gear, and the driving gear is installed through the inner side of the support frame.
[0013] Preferably, the space inside the collection hopper is connected to the space inside the feeding plate.
[0014] Preferably, a workbench is installed on the right side of the support frame, the discharge frame is set at an inclination, and a rotating rod is rotatably installed with slots on the front and rear sides of the right end of the discharge frame. An arc-shaped expansion component is fixed through the outer side of the rotating rod, and a spiral spring is nested above the rotating rod. The lowest point of the expansion component is lower than the lowest point of the discharge frame, and the expansion component is set above the workbench.
[0015] Preferably, the inside of the feeding plate is mesh-like, and the lowest point of the feeding plate is higher than the highest point of the discharge frame.
[0016] Preferably, a first magnet block is fixed above the control board, a row of second magnet blocks is installed on the inner side wall of the rear side of the outer casing, a second magnet block is disposed above the first magnet block, and the second magnet block and the first magnet block have the same magnetic poles.
[0017] Compared with the prior art, the beneficial effects of the present invention are: the pet food processing conveyor, through the combined use of spreading auxiliary rods and spreading auxiliary plates, can evenly spread and convey pet food on the conveyor belt within the feeding conveyor assembly, avoiding the accumulation of pet food on the conveyor belt that results in uneven distribution and thus preventing inconsistent weights when bagging pet food later. The specific details are as follows:
[0018] The single-rotor reciprocating screw drives the spreading auxiliary rod to move back and forth, thus allowing the spreading auxiliary rod to move and disperse the pet food on the conveyor belt. Combined with the spreading auxiliary plate with an inverted "U" shape below, the pet food on the conveyor belt in the feeding conveyor assembly can be evenly spread and conveyed, making the pet food on the conveyor belt of uniform height. This avoids the pet food piling up on the conveyor belt, resulting in some areas having more and some having less, so it will not cause inconsistent weight when bagging the pet food later. In addition, the spreading auxiliary plate is high enough that the pet food will not move to the right above the spreading auxiliary plate 20, which facilitates the conveying operation.
[0019] The collection hopper can simultaneously drive four sets of feeding plates to rotate through the rotating connecting component. This allows the four sets of feeding plates to deliver pet food in a well-balanced and intermittent manner, thereby further improving the weight consistency of pet food during subsequent bagging and facilitating efficient conveying operations, thus avoiding any impact on the subsequent bagging process.
[0020] The inclined feeding plate has a mesh-like interior to filter pet food, allowing the filtered residue and debris to fall into the collection hopper for collection.
[0021] When the control plate above the feeding plate rotates to the corresponding position, the first magnet block above the control plate and a row of second magnet blocks generate repulsive forces in sequence, thereby causing the control plate to drive the feeding plate to reciprocate up and down and shake, which helps to shake away impurities in the mesh of the feeding plate and prevents the mesh of the feeding plate from becoming blocked.
[0022] By using a sealing cloth made of umbrella fabric, not only can dust be prevented from leaking out, but the lifting and lowering of the feeding plate will also be unaffected, ensuring that the feeding plate can be used effectively. Attached Figure Description
[0023] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0024] Figure 2 This is a cross-sectional view of the feeding and conveying assembly of the present invention;
[0025] Figure 3 This is a schematic diagram of the three-dimensional structure of the auxiliary plate of the present invention.
[0026] Figure 4 This is a top view of the outer casing of the present invention;
[0027] Figure 5 This is a schematic diagram of the main cross-sectional structure of the outer shell of the present invention;
[0028] Figure 6 This is a partial cross-sectional view of the outer shell of the present invention from a bottom angle.
[0029] Figure 7 For the present invention Figure 6 Enlarged structural diagram at point A in the middle;
[0030] Figure 8 This is a schematic cross-sectional view of the discharge port structure of the present invention;
[0031] Figure 9 This is a schematic diagram of the feeding plate structure of the present invention;
[0032] Figure 10 This is a schematic diagram of the separation structure of the feeding plate and the connecting sealing cloth of the present invention;
[0033] Figure 11 This is a bottom view of the feeding plate structure of the present invention;
[0034] Figure 12 This is a bottom view of the control plate structure of the present invention;
[0035] Figure 13 This is a schematic diagram of the three-dimensional structure of the sealing cloth of the present invention;
[0036] Figure 14 This is a cross-sectional view of the connecting sealing layout of the present invention;
[0037] Figure 15 This is a schematic diagram of the separation structure of the material discharge frame and the supporting component of the present invention.
[0038] In the diagram: 1. Outer shell; 101. Limiting groove; 102. Discharge port; 2. Feeding and conveying assembly; 3. Support frame; 4. Discharge frame; 5. Spreading assembly; 51. Rotating rod; 52. Spiral spring; 6. Workbench; 7. Feeding plate; 8. Vertical partition; 9. Control panel; 91. Bearing frame; 92. First magnet block; 10. Connecting sealing cloth; 11. Collection hopper; 111. Rotary disk; 12. Driven gear; 13. Detection block; 131. Rolling column; 132. Limiting vertical rod; 133. Connecting spring; 14. Pressure sensor; 15. Second magnet block; 16. Driving gear; 17. Connecting column; 18. Sleeve; 19. Reset spring; 20. Spreading auxiliary plate; 21. Single-rotation reciprocating screw; 22. Side baffle; 23. Spreading auxiliary rod. Detailed Implementation
[0039] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0040] Please see Figures 1-15The present invention provides the following technical solution:
[0041] Example 1: The pet food processing conveyor in this example can evenly spread out the pet food during transport, preventing it from piling up on the conveyor belt and causing uneven distribution. This ensures consistent weight during later bagging. See attached diagram for the specific structure. Figures 1-11 and appendix Figures 13-15 As shown, the device includes an outer shell 1 and a support frame 3 mounted on the bottom surface of the outer shell 1. A feeding conveyor assembly 2 is mounted on the upper left side of the outer shell 1. An auxiliary control assembly for spreading and conveying pet food is installed inside the feeding conveyor assembly 2. Four sets of feeding plates 7 for conveying pet food are fitted inside the outer shell 1. Two vertical partitions 8 are symmetrically mounted on the outer sides of the feeding plates 7. The bottom surface of the feeding plates 7 is connected to the upper surface of a collection hopper 11 via a connecting sealing cloth 10 and a rotating connecting assembly. The collection hopper 11 is installed inside the outer shell 1. A discharge frame 4 is installed inside a discharge port 102 on the right side of the outer shell 1. A workbench 6 is mounted on the right side of the support frame 3. Four sets of rotating connecting assemblies, two in each set, are embedded through the internal slots of the connecting sealing cloth 10. The material is [material missing]. The umbrella fabric connecting sealing cloth 10 is arranged in a circular ring. The rotating connecting assembly includes a sleeve 18 installed on the upper surface of the collection hopper 11, and a connecting column 17 installed on the bottom surface of the feeding plate 7. The lower part of the connecting column 17 is connected to the inside of the sleeve 18 through a return spring 19. The groove inside the sleeve 18 and the connecting column 17 are both rectangular. The sleeve 18 and the connecting column 17 are in a concave-convex fit. The feeding plate 7 is inclined, and the four sets of feeding plates 7 form a conical shape. The two adjacent vertical partitions 8 are fitted together. A control plate 9 is provided above the feeding plate 7. The two ends of the arc-shaped control plate 9 are connected to the upper part of the vertical partition 8 on the outside of the feeding plate 7 through a support frame 91. The support frame 91 is arranged in a "7" shape. The thickness of the vertical partition 8 is 2 cm.
[0042] The feeding conveying assembly 2 consists of a conveyor belt, conveyor rollers, and a support frame. A row of conveyor rollers connected by a sprocket assembly is installed on the inner side of the support frame, and the outer side of the row of conveyor rollers is connected to the conveyor belt. The auxiliary control assembly includes a spreading auxiliary plate 20 installed on the inner side wall of the support frame. The lower part of the spreading auxiliary plate 20 is set in an inverted "U" shape, and side baffles 22 located above the conveyor belt are symmetrically installed on both the left and right sides of the spreading auxiliary plate 20. The shortest distance between the lower part of the spreading auxiliary plate 20 and the side baffles 22 and the conveyor belt is 1 cm. A single-rotation reciprocating screw 21 is installed through a groove opened on the upper left side of the spreading auxiliary plate 20. The front end of the single-rotation reciprocating screw 21 penetrates the front side of the feeding conveying assembly 2, and the front end of the single-rotation reciprocating screw 21 forms a transmission structure with the front end of one of the conveyor rollers in the feeding conveying assembly 2 through a sprocket assembly.
[0043] A limiting vertical rod 132 is installed in a slot on the upper left side of the outer casing 1. A detection block 13 is installed through the outer side of the limiting vertical rod 132. A connecting spring 133 is nested on the upper outer side of the limiting vertical rod 132. A pressure sensor 14 is installed inside the outer casing 1 below the detection block 13. A rolling column 131 is rotatably installed on one side of the detection block 13. A control plate 9 is installed above the rolling column 131. The support frame 91 does not contact the rolling column 131. A circular limiting groove 101 is opened on the lower inner side wall of the outer casing 1. The impurity hopper 11 is funnel-shaped. A rotating disk 111 and a driven gear 12 are installed sequentially from top to bottom on the lower outer side of the impurity hopper 11. The outer side of 1 is slidably connected to the limiting slide groove 101. A ring of balls for reducing friction is installed on both the upper and lower surfaces of the rotating disk 111. The driven gear 12 is meshed with the driving gear 16 on the left side. The driving gear 16 is installed through the inner side of the support frame 3. The space inside the collection hopper 11 is connected to the space inside the feeding plate 7. The discharge frame 4 is set in an inclined shape. The front and rear sides of the right end of the discharge frame 4 are slotted and rotatably installed with a rotating rod 51. An arc-shaped opening component 5 is fixed through the outer side of the rotating rod 51. A spiral spring 52 is nested above the rotating rod 51. The lowest point of the opening component 5 is lower than the lowest point of the discharge frame 4. The opening component 5 is set above the workbench 6.
[0044] First, connect the bottom end of the drive gear 16 to an external motor via a coupling. Then, manually rotate the two opening components 5 inward. At this time, the spiral spring 52 stores power. Place the packaging bag on the workbench 6, and then place the two opening components 5, which have been rotated inward, into the opening at the top of the packaging bag. Then, release the two opening components 5. Then, the spiral spring 52 automatically drives the two opening components 5 to rotate outward and reset. At this time, the two arc-shaped opening components 5 can effectively open the opening of the packaging bag.
[0045] Then, the pet food is placed on the feeding conveyor assembly 2. The front end of one of the conveyor rollers in the feeding conveyor assembly 2 is connected to an external motor. The motor is then started, and it drives one of the conveyor rollers to rotate. A row of conveyor rollers drives the conveyor belt to perform conveying operations through a sprocket assembly. At the same time, the front end of one of the conveyor rollers drives a single-rotor reciprocating screw 21 to rotate through another sprocket assembly. When the single-rotor reciprocating screw 21 rotates, it drives the spreading auxiliary rod 23 connected to the outer thread to move back and forth. This allows the spreading auxiliary rod 23 to move and disperse the pet food on the conveyor belt. Then, the pet food on the conveyor belt passes through the inverted "U"-shaped spreading auxiliary plate 20 below and continues... The food is conveyed to the right. At this point, the auxiliary plate 20 is used to evenly spread the pet food on the conveyor belt, ensuring a consistent height. This effectively prevents uneven distribution of pet food, avoiding piling up and ensuring consistent weight during bagging. The auxiliary plate 20 is also relatively high, preventing the pet food from shifting to the right. Next, the feeding conveyor assembly 2 evenly conveys the pet food to the leftmost feeding plate 7 inside the outer casing 1. When the amount of pet food on the leftmost feeding plate 7 reaches a certain level, the weight of the pet food itself will cause the leftmost feeding plate 7 to move downwards. Then, the leftmost feeding plate 7 drives the corresponding connecting post 17 installed on the bottom to move downwards within the sleeve 18, simultaneously compressing and storing force on the reset spring 19. The connecting sealing cloth 10 is compressed, and the leftmost feeding plate 7 drives the corresponding control plate 9 above to move downwards. Then, the control plate 9 drives the rolling column 131 and the detection block 13 to move downwards. At this time, the detection block 13 moves steadily downwards outside the limit vertical rod 132, applying a certain pressure to the pressure sensor 14. At this time, the connecting spring 133 is stretched and stored. When the pressure sensor 14 detects that the pressure reaches a certain value, it indicates that the pet food on the feeding plate 7 has reached a certain weight value. Then, the pressure sensor 14 transmits this signal to the central processing module. The module controls the feeding and conveying assembly 2 to stop conveying operations. At this time, the central processing module controls the motor connected to the bottom of the drive gear 16 to rotate. The motor drives the driven gear 12 to rotate 90° counterclockwise through the drive gear 16. The driven gear 12 drives the collection hopper 11 to rotate. At this time, the rotating disk 111 on the outside of the collection hopper 11 rotates in the limiting slide groove 101, thereby ensuring that the collection hopper 11 rotates stably. The collection hopper 11 drives the feeding plate 7 to rotate 90° counterclockwise through the rectangular connecting column 17 and the sleeve 18. At this time, the leftmost feeding plate 7 rotates to the front. At this time, the control plate 9 that has rotated to the front separates from the rolling column 131, and the detection block 13 is reset through the connecting spring 133.
[0046] Meanwhile, the control panel 9 and the feeding plate 7 on the far left rotate to the leftmost position. At this time, the feeding conveying assembly 2 is restarted, and the feeding conveying assembly 2 begins to convey pet food into another feeding plate 7. This operation is repeated. When the feeding plate 7 containing pet food on the far left rotates to the rightmost position, the pet food on the inclined feeding plate 7 automatically falls into the inclined discharge frame 4 through the setting of the discharge port 102. The discharge frame 4 conveys the pet food into the packaging bag below, which is convenient for the subsequent bagging operation. Therefore, the feeding plate 7 drives the pet food to be conveyed in a weighted and intermittent manner, which can further improve the consistency of weight when bagging pet food in the later stage and avoid affecting the subsequent bagging operation.
[0047] Example 2: The pet food processing conveyor in this example can automatically filter pet food, facilitating the collection of residue and crumbs. See attached diagram for the specific structure. Figures 9-12 As shown, based on Embodiment 1, the inside of the feeding plate 7 is set with a mesh, and the lowest point of the feeding plate 7 is higher than the highest point of the discharge frame 4. When the feeding and conveying assembly 2 conveys the pet food to the leftmost feeding plate 7 inside the outer shell 1, the pet food can be filtered through the feeding plate 7 with its mesh, so that the residue and debris fall into the funnel-shaped collection hopper 11 below for collection, and can be discharged through the slag discharge pipe at the bottom of the collection hopper 11 later.
[0048] Example 3: The pet food processing conveyor in this example can automatically clean impurities from the mesh inside the feeding plate 7, preventing clogging of the mesh and thus avoiding interference with the filtration process. See attached diagram for the specific structure. Figures 8-9As shown, based on Embodiment 1, a first magnet block 92 is fixed above the control plate 9, and a row of second magnet blocks 15 is installed on the inner wall of the rear side of the outer casing 1. The second magnet block 15 is positioned above the first magnet block 92, and the second magnet block 15 and the first magnet block 92 have the same magnetic poles. When the pet food on the rightmost feeding plate 7 is discharged, as the rightmost feeding plate 7 rotates to the rearmost side, the first magnet block 92 on the control plate 9 sequentially aligns with and separates from the row of second magnet blocks 15 installed on the inner wall of the rear side of the outer casing 1. When the first magnet block 92 moves to the position of the second magnet block 15... When the positions are aligned, the fixed second magnet 15 generates a repulsive force on the first magnet 92, causing the first magnet 92 to drive the control plate 9 and the feeding plate 7 to move downwards. Then, the feeding plate 7 drives the connecting column 17 to move downwards, pressing the reset spring 19 to store energy. When the first magnet 92 moves to a position that does not correspond to the second magnet 15, the stored energy of the reset spring 19 is used to drive the feeding plate 7 to rise and reset. This operation is repeated, so that the feeding plate 7 on the rear side can automatically swing up and down, which helps to shake away impurities in the mesh of the feeding plate 7 and prevents the mesh of the feeding plate 7 from becoming blocked.
[0049] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A conveyor for pet food processing, comprising a housing (1) and a support frame (3) mounted on the bottom surface of the housing (1), wherein a feeding conveying assembly (2) is mounted on the upper left side of the housing (1), characterized in that: The feeding conveying assembly (2) is internally equipped with an auxiliary control component for spreading and conveying pet food. The outer shell (1) is fitted with four sets of feeding plates (7) for conveying pet food. Two vertical partitions (8) are symmetrically installed on the outer side of the feeding plates (7). The bottom surface of the feeding plates (7) is connected to the upper surface of the collection hopper (11) via a connecting sealing cloth (10) and a rotating connecting assembly. The collection hopper (11) is installed inside the outer shell (1). A discharge frame (4) is installed inside the discharge port (102) on the right side of the outer shell (1). The feeding conveying assembly (2) consists of a conveyor belt, conveyor rollers, and a support frame. A row of conveyor rollers connected by a sprocket assembly is installed on the inner side of the support frame, and a conveyor belt is connected to the outer side of the row of conveyor rollers. The conveyor belt feeding system includes an auxiliary control component consisting of a spreading auxiliary plate (20) installed on the inner side wall of the support frame. The lower part of the spreading auxiliary plate (20) is arranged in an inverted "U" shape, and side baffles (22) are symmetrically installed on both the left and right sides of the spreading auxiliary plate (20) above the conveyor belt. The minimum distance between the lower part of the spreading auxiliary plate (20) and the side baffles (22) and the conveyor belt is 1 cm. A single-rotation reciprocating screw (21) is installed through a groove on the upper left side of the spreading auxiliary plate (20). The front end of the single-rotation reciprocating screw (21) penetrates the front side of the feeding conveyor assembly (2), and the front end of the single-rotation reciprocating screw (21) forms a transmission structure with the front end of one of the conveying rollers in the feeding conveyor assembly (2) through a sprocket assembly. Four sets of rotating connecting components are embedded in the internal slot of the sealing cloth (10), two in each set. The connecting sealing cloth (10) made of umbrella cloth is arranged in a ring shape. The rotating connecting components include a sleeve (18) installed on the upper surface of the collection hopper (11) and a connecting column (17) installed on the bottom surface of the feeding plate (7). The lower part of the connecting column (17) is connected to the inside of the sleeve (18) through a return spring (19). The groove inside the sleeve (18) and the connecting column (17) are both rectangular. The sleeve (18) and the connecting column (17) are in concave-convex fit. The feeding plate (7) is arranged in an inclined shape, and the four sets of feeding plates (7) form a conical shape. The two adjacent vertical partitions (8) are fitted together. The top of the feeding plate (7) is provided with The control panel (9) is arc-shaped. Both ends of the control panel (9) are connected to the upper part of the vertical partition (8) on the outside of the feeding plate (7) through the support frame (91). The support frame (91) is set in a "7" shape. The thickness of the vertical partition (8) is 2CM. The upper left side of the outer shell (1) has a slotted groove to install a limiting vertical rod (132). A detection block (13) is installed through the outer side of the limiting vertical rod (132). A connecting spring (133) is nested on the upper outer side of the limiting vertical rod (132). A pressure sensor (14) is installed in the outer shell (1) below the detection block (13). A rolling column (131) is rotatably installed on one side of the detection block (13). The control panel (9) is set above the rolling column (131).The support frame (91) does not contact the rolling column (131). The lower inner wall of the outer shell (1) is provided with a ring-shaped limiting groove (101). The collection hopper (11) is funnel-shaped. A rotating disk (111) and a driven gear (12) are installed from top to bottom on the lower outer side of the collection hopper (11). The outer side of the rotating disk (111) is slidably connected to the limiting groove (101). A ring is installed on both the upper and lower surfaces of the rotating disk (111) to reduce... Frictional ball bearings are meshed with a drive gear (16) on the left side of the driven gear (12). The drive gear (16) is installed through the inner side of the support frame (3). A first magnet block (92) is fixed above the control plate (9). A row of second magnet blocks (15) is installed on the inner side wall of the rear side of the outer shell (1). A second magnet block (15) is arranged above the first magnet block (92). The second magnet block (15) and the first magnet block (92) have the same magnetic poles.
2. The conveyor for pet food processing according to claim 1, characterized in that: The space inside the collection hopper (11) is connected to the space inside the feeding plate (7).
3. The conveyor for pet food processing according to claim 1, characterized in that: A workbench (6) is installed on the right side of the support frame (3). The discharge frame (4) is set at an inclination. The front and rear sides of the right end of the discharge frame (4) are slotted and rotatably installed with a rotating rod (51). An arc-shaped expansion component (5) is fixed through the outer side of the rotating rod (51). A spiral spring (52) is nested above the rotating rod (51). The lowest point of the expansion component (5) is lower than the lowest point of the discharge frame (4). The expansion component (5) is set above the workbench (6).
4. The conveyor for pet food processing according to claim 1, characterized in that: The inside of the feeding plate (7) is mesh-like, and the lowest point of the feeding plate (7) is higher than the highest point of the discharge frame (4).
Citation Information
Patent Citations
Linear belt outlet conveyor for pet food production and packaging
CN217920025U
Conveying device for pet food processing
CN221894224U
Raw material conveying equipment for food processing
CN116571424A
Novel powder biomass combustion furnace feeding equipment
CN118564940A