Quartz plate distributing equipment

By setting up multiple material distribution and feeding mechanisms in the quartz slab material distribution equipment, the problem of existing equipment being unable to separate materials into different zones has been solved. This enables the processing of quartz slabs with multi-zone material feeding and different stripe effects, improving the adaptability and aesthetics of the equipment.

CN223879043UActive Publication Date: 2026-02-06ZHAOQING BERGAMO MACHINERY CO LTD
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Patent Information

Application Number
CN202520201964.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-09
Publication Date
2026-02-06
Estimated Expiration
2035-02-09

AI Technical Summary

Technical Problem

Existing quartz slab cutting equipment cannot achieve zoned cutting at the discharge port, cannot cut in designated areas, and cannot meet the processing requirements of different stripe effects of quartz slabs, resulting in low applicability.

Method used

Multiple material distribution mechanisms are set at the discharge port of the material distribution box. The opening and closing of the discharge area are controlled by the material distribution drive component and the material distribution plate. Combined with the feeding mechanism and the weighing detection component, automated feeding and discharging control is realized to ensure that the raw materials are distributed as needed.

Benefits of technology

It enables multi-zone cutting of quartz slabs, forming the desired stripe effect, with high adaptability, excellent aesthetics, simple structure, and diverse functions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a quartz plate distributing device which comprises a machine frame, and a distributing box is arranged on the machine frame. A plurality of material distributing mechanisms are arranged on the lower portion of the material distributing box and used for dividing a discharging port of the material distributing box into a plurality of discharging areas; the material distributing mechanism comprises a material distributing driving assembly and a material distributing plate, and the material distributing driving assembly is connected with the material distributing plate and used for driving the material distributing plate to open or close the corresponding discharging areas. According to the utility model, the distributing port can be divided into a plurality of discharging areas, so that the blanking processing requirements of different areas of quartz plates can be met, the adaptability is high, and the structure is simple.
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Description

TECHNICAL FIELD

[0001] The utility model relates to quartz plate production technical field especially relates to a quartz plate material's distribution equipment. BACKGROUND

[0002] The current quartz plate blanking equipment includes mixing box, installation groove, baffle, blanking hopper and inclination mechanism, the installation groove is opened in the right side of mixing box, the baffle is inserted in the installation groove, the blanking hopper is arranged in the side end of installation groove, the inclination mechanism is arranged in the bottom of mixing box, the lifting mechanism is arranged on the mixing box, and the lifting mechanism is connected with the baffle, the shaking mechanism is arranged on the outside of mixing box, and the shaking mechanism is connected with blanking hopper. When the discharge is needed, the inclination mechanism will push the left side of mixing box to lift up, so that the raw materials in the mixing box are poured to the installation groove direction, at this time, the baffle can be driven to move by the lifting mechanism, so that the installation groove is no longer closed, and the raw materials can be discharged into the blanking hopper and discharged to the feeding conveyor belt outside.

[0003] However, the discharge area of the discharge port of the above-mentioned blanking equipment is fixed, and the partitioned discharge work of the discharge port cannot be realized. For the quartz plate material having multiple blanking laying areas (i.e., multiple areas divided along the width direction of the quartz plate material), the equipment cannot discharge in the specified area (such as a single or multiple areas) to lay the corresponding plate material area and finally form the required plate material stripe, and the required plate material stripe cannot be finally formed, so that the processing requirements of different stripe effects of the quartz plate material cannot be met, and the adaptability is low. SUMMARY

[0004] The technical problem to be solved by the utility model lies in providing a quartz plate material distribution equipment with a simple structure, which can divide the distribution port into multiple discharge areas, meet the different area discharging processing requirements of the quartz plate material, and has high adaptability.

[0005] In order to solve the above technical problems, the utility model provides a quartz plate material distribution equipment, which comprises a rack, a distribution box is arranged on the rack, a plurality of distribution mechanisms are arranged on the lower part of the distribution box, the distribution mechanisms are used for dividing the discharge port of the distribution box into a plurality of discharge areas, the distribution mechanism comprises a distribution drive assembly and a distribution plate, the distribution drive assembly is connected with the distribution plate and is used for driving the distribution plate to open or close the corresponding discharge area.

[0006] As an improvement of the above-mentioned scheme, the rack is provided with a feeding mechanism, and the feeding mechanism is located above the distribution mechanism; the feeding mechanism comprises a horizontal moving mechanism and a feeding hopper, when feeding, the horizontal moving mechanism drives the feeding hopper to move from the initial position to the position directly above the distribution box, and when the feeding is completed, the horizontal moving mechanism drives the feeding hopper to reset.

[0007] As an improvement of the above scheme, the horizontal moving mechanism comprises a moving motor device, a driving wheel, a driven wheel, a synchronous belt and horizontal guide rails arranged on both sides of the frame; the feeding hopper is located between the horizontal guide rails on both sides, and both ends of the feeding hopper are respectively provided with horizontal frames, a plurality of sliding seats adapted to the horizontal guide rails are arranged on the horizontal frames at intervals, the sliding seats are clamped into the horizontal guide rails and are in sliding connection with the horizontal guide rails; the moving motor device and the driven wheel are both mounted on the same side of the frame, the moving motor device is connected with the driving wheel, the driving wheel is in transmission connection with the driven wheel through the synchronous belt, the horizontal frame is provided with a clamping part fixedly connected with the synchronous belt, and the moving motor device is used to drive the feeding hopper to move back and forth along the direction of the horizontal guide rails.

[0008] As an improvement of the above scheme, the installation frame is arranged on both sides of the distribution box, the lower part of the installation frame is provided with an installation plate, the installation plate is provided with a distribution driving assembly, and the distribution plate is in sealing abutment with the bottom of the distribution box; the distribution driving assemblies on both sides are respectively connected with the corresponding distribution plates, and are used to drive the distribution plates on both sides to move away from each other or move close to each other, so as to open or close the corresponding discharge area.

[0009] As an improvement of the above scheme, the distribution driving assembly comprises a distribution pushing device and a guide rail plate, and the guide rail plates are respectively arranged on both sides of the lower part of the installation plate; a connecting installation plate is arranged between the guide rail plates on both sides, and the distribution pushing device is mounted on the connecting installation plate; one end of the distribution plate on both sides is respectively provided with a sliding groove seat corresponding to the guide rail plate, the sliding groove seat is clamped into the guide rail plate and is in sliding connection with the guide rail plate, and the driving rod of the distribution pushing device is connected with the connecting mounting seat on the distribution plate.

[0010] As an improvement of the above scheme, a plurality of weighing detection assemblies are arranged on the installation plate at intervals, the weighing detection assembly comprises a plurality of weighing detection devices; the distribution box is in a hollow structure and is respectively provided with openings at both ends, and the gravity of the raw materials in the distribution box acts on the distribution plate; the installation plate is connected with the installation frame through the weighing detection devices, and both ends of the weighing detection device are respectively connected with the installation plate and the bottom of the installation frame.

[0011] As an improvement of the above scheme, the bottom of the side plate on one side of the distribution box is provided with a discharge flow guide part, the discharge flow guide part extends downward along the height direction of the distribution box and extends in the opposite direction of the conveying direction of the feeding conveying belt; one end of the distribution plate away from the distribution driving assembly is provided with a flow guide part, and the flow guide part extends downward along the height direction of the distribution plate and extends along the opening direction of the distribution plate.

[0012] As an improvement of the above scheme, multiple said material distribution mechanisms are used to divide the discharge port of said material distribution box into multiple discharge areas.

[0013] As an improvement of the above scheme, the lower part of said rack is provided with lifting adjustment mechanisms, said lifting adjustment mechanisms are respectively located at both sides of said material distribution box, said lifting adjustment mechanisms comprise upper fixed seats, lower fixed seats, lifting driving devices and guide rods; one end of said lower fixed seat is installed on said rack, the other end of said lower fixed seat is installed with said lifting driving device, the driving rod of said lifting driving device is connected with said upper fixed seat, one end of said upper fixed seat is installed on said material distribution box; said guide rods are respectively located at both sides of said lifting driving device, one end of said guide rod is connected with said upper fixed seat, the other end penetrates through the guide sleeve of said lower fixed seat and is connected with the guide connecting plate below said lower fixed seat.

[0014] As an improvement of the above scheme, both ends of said horizontal guide rail are respectively provided with concertinas.

[0015] The beneficial effects of the present application are as follows:

[0016] The present application sets multiple material distribution mechanisms at the discharge end of the material distribution box, which can divide the material distribution port into multiple discharge areas, and by controlling the specified material distribution mechanism, the corresponding discharge area can be opened, so that the raw materials are discharged to the area to form the required discharge laying area, so as to finally form the required board stripe, which meets the processing requirements of different stripe effects of quartz boards, so as to ensure that the best placement of materials can make the finally formed quartz boards can reproduce the multi-shadow area of natural stone background, which has high adaptability, good aesthetic appearance, and various functions and simple structure. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is a structural schematic view of the weighing and material distribution equipment of the present application;

[0018] Figure 2 is a structural schematic view of the material distribution box of the present application Figure 1 ;

[0019] Figure 3 is a structural schematic view of the material distribution box of the present application Figure 2 ;

[0020] Figure 4 is a sectional view of the material distribution box of the present application;

[0021] Figure 5 is an enlarged structural schematic view of A part of Figure 3 ;

[0022] Figure 6 is a partial structural schematic view of the material distribution box and the material distribution plate of the present application;

[0023] Figure 7 is the installation and use structure diagram of the weighing and distributing equipment. DETAILED DESCRIPTION

[0024] To make the purpose, technical scheme and advantages of the present application clearer, the present application will be further described in detail below with reference to the drawings.

[0025] As shown in Figures 1 to 5 the embodiment of the present application provides a quartz plate distributing equipment, which comprises a rack 1, wherein a distributing box 3 is arranged on the rack 1; a plurality of distributing mechanisms 5 are arranged at the lower part of the distributing box 3, and the plurality of distributing mechanisms 5 are used for dividing the discharge port 32 of the distributing box 3 into a plurality of discharge areas 33, so that the raw materials can be discharged from a single, multiple or all areas to the conveying surface of the feeding conveyor belt below; through the conveying work of the feeding conveyor belt, the required raw material layer can be continuously laid on the conveying surface and conveyed to the subsequent processing procedure; wherein the laid material layer can be discharged and laid to fill all the areas by a single or multiple weighing and distributing equipment, so as to form a quartz plate processing material layer with a corresponding width.

[0026] The distributing mechanism 5 comprises a distributing drive assembly 51 and a distributing plate 52, the distributing drive assembly 51 is connected with the distributing plate 52, and is used for driving the distributing plate 52 to open or close the corresponding discharge area 33; by controlling the specified distributing drive assembly 51, the corresponding discharge area 33 can be opened, so that the raw materials are discharged to the area to form the required discharging and laying area, and the distributing plate 52 arranged can limit the raw materials on the conveying surface, so that the raw materials form a material layer with a corresponding thickness, thereby meeting the different area discharging and processing requirements of the quartz plate, and further ensuring that the best placement of the material can make the finally formed quartz plate can reproduce the multi-shading area of the natural stone background, has high adaptability and good aesthetic property.

[0027] Preferably, the plurality of distributing mechanisms 5 are used for equally dividing the discharge port 32 of the distributing box 3 into a plurality of discharge areas 33, but are not limited thereto, and the non-equal division mode can be adjusted according to actual requirements.

[0028] In the embodiment, the equipment comprises four distributing mechanisms 5, i.e. the discharge port 32 of the distributing box 3 is equally divided into four discharge areas 33, but is not limited thereto, and the equal division quantity can be adjusted according to actual conditions. Figure 7As shown, the feeding conveyor is provided with 4-division weighing and distributing equipment, 6-division weighing and distributing equipment and 8-division weighing and distributing equipment. For example, the 4-division weighing and distributing equipment includes four 4-division distributing mechanisms and has four 4-division discharge areas. The user can control the plurality of weighing and distributing equipment to open different discharge areas according to production requirements, so that raw materials of different colors are discharged to the corresponding areas to form the width area of the production board, thereby obtaining a striped board with different interval colors to meet the user's demand for the striped board.

[0029] In order to realize the feeding work, for example, Figure 1 As shown, the rack 1 is provided with a feeding mechanism 2 located above the distributing mechanism 5. The feeding mechanism 2 includes a horizontal moving mechanism 21 and a feeding hopper 22. When feeding, the horizontal moving mechanism 21 drives the feeding hopper 22 to move from the initial position to the position directly above the distributing box 3, so that the raw materials input by the external feeding device are conveyed to the distributing box 3 below through the feeding hopper 22 to prepare for the subsequent distributing work. The conical feeding hopper 22 is arranged to make the flow speed of the raw materials in the hopper more uniform, thereby reducing the blocking phenomenon of the raw materials and realizing the stable conveying of the raw materials. When the feeding is completed, the horizontal moving mechanism 21 drives the feeding hopper 22 to reset and stop the feeding work.

[0030] Further, the horizontal moving mechanism 21 includes a moving motor device 211, a driving wheel 212, a driven wheel 213, a synchronous belt 214 and horizontal guide rails 215 arranged on both sides of the rack 1. The feeding hopper 22 is located between the horizontal guide rails 215 on both sides, and the feeding hopper 22 is provided with horizontal frames 221 at both ends, and the horizontal frames 221 are provided with a plurality of sliding seats adapted to the horizontal guide rails 215 at intervals, and the sliding seats are clamped into the horizontal guide rails 215 and are slidingly connected, so that the feeding hopper 22 can move on the horizontal guide rails 215. The moving motor device 211 and the driven wheel 213 are both installed on the same side of the rack 1, i.e. close to the horizontal guide rail 215 on one side. The moving motor device 211 is connected with the driving wheel 212, the driving wheel 212 is drivingly connected with the driven wheel 213 through the synchronous belt 214, and the horizontal frame 221 is provided with a plurality of clamping portions 222 fixedly connected with the synchronous belt 214 at intervals. When the moving motor device 211 drives the synchronous belt 214 to rotate, the feeding hopper 22 can be driven to move back and forth along the direction of the horizontal guide rail 215 through the clamping portions 222, so as to realize the movement of the feeding hopper 22 to the feeding position for feeding work and the resetting for standby work.

[0031] As shown, Figures 2 to 4As shown, mounting brackets 34 are installed on both sides of the material distribution box 3. A mounting plate 35 is provided at the lower part of each mounting bracket 34. A material distribution drive assembly 51 is provided on the mounting plate 35. The material distribution plate 52 is sealed against the bottom of the material distribution box 3 to seal the raw materials in the material distribution box 3 and prevent leakage. The material distribution drive assemblies 51 on both sides are respectively connected to the corresponding material distribution plates 52, driving the material distribution plates 52 on both sides to move away from or towards each other, thereby opening or closing the corresponding discharge area 33. The moving direction of the material distribution plates 52 is on the same straight line as the conveying direction of the raw materials on the conveying surface. By simultaneously controlling the material distribution plates 52 on both sides to gradually open the corresponding discharge area 33 in a way that moves away from each other, a uniform material feeding effect can be achieved, spreading the material evenly from the center to both sides, improving the material feeding and laying effect.

[0032] The material distribution drive assembly 51 includes a material distribution push device 53 and guide rail plates 54. The guide rail plates 54 are respectively disposed on both sides of the lower part of the mounting plate 35. A connecting mounting plate 55 is provided between the two guide rail plates 54, and the material distribution push device 53 is mounted on the connecting mounting plate 55. One end of the material distribution plate 52 is provided with a sliding groove seat 56 corresponding to the guide rail plate 54 on both sides. The sliding groove seat 56 is engaged with the guide rail plate 54 and the two are slidably connected. The drive rod of the material distribution push device 53 is connected to the connecting mounting seat 57 on the material distribution plate 52. The material distribution push device 53 can drive the material distribution plate 52 to move back and forth horizontally along the horizontal guide direction of the guide rail plate 54, so that the two material distribution plates 52 on both sides move away from or closer to each other at the same time, thereby opening or closing the corresponding discharge area 33 to realize the discharge or non-discharge operation.

[0033] Preferably, the material dispensing and pushing device 53 is a pushing cylinder or a pushing electric cylinder, but is not limited thereto.

[0034] In order to control the feeding of the equipment, such as Figure 4 As shown, the mounting plate 35 is equipped with weighing detection components 6 at both ends, and each weighing detection component 6 includes multiple weighing detection devices 61. The distribution box 3 has a hollow structure and openings at both ends to facilitate feeding and discharging. The weight of the raw material in the distribution box 3 acts on the distribution plate 52. The mounting plate 35 is connected to the mounting frame 34 via the weighing detection devices 61, and the two ends of the weighing detection devices 61 are connected to the bottom of the mounting plate 35 and the mounting frame 34, respectively. When the weight of the raw material acts on all the distribution plates 52, since the mounting plate 35 is connected to the distribution mechanism 5 and the weighing detection devices 61, the weight of the raw material indirectly acts on the weighing detection devices 61, thus achieving the weighing detection function. The weighing detection devices 61 are preferably tension / compression sensors, but are not limited thereto.

[0035] In actual use, when the sum or average of the detection data obtained by the plurality of weighing detection assemblies 6 on the left and right sides of the distribution box is greater than or equal to a preset weight threshold for stopping feeding, feeding can be stopped, and when the sum or average of the detection data obtained is less than or equal to a preset weight threshold for starting feeding, feeding can be started, so that automatic feeding control of the equipment can be realized in the above manner, the degree of automation of the equipment is improved, and the labor cost is reduced. Secondly, after the equipment discharges, the weight of each discharge can also be determined by processing the detection data of the weighing detection assembly 6, so as to facilitate the staff to monitor the operation of the equipment.

[0036] Preferably, as shown in Figure 4 and Figure 6 , the bottom of one side of the distribution box 3 is provided with a discharge flow guide part 36, the discharge flow guide part 36 extends downward along the height direction of the distribution box 6 and extends in the opposite direction of the conveying direction of the feeding conveying belt, and the end of the distribution plate 52 away from the distribution drive assembly 51 is provided with a flow guide part 521, the flow guide part 521 extends downward along the height direction of the distribution plate 52 and extends along the opening direction of the distribution plate 52. When discharging, the two distribution plates 52 are away from each other, the flow guide starting point of the flow guide part 521 of the distribution plate 52 on the left side is connected with the flow guide starting point of the discharge flow guide part 36, forming a total flow guide part, so as to guide the raw materials to flow quickly and uniformly from the guide direction of the total flow guide part to the conveying surface, reduce the discharge resistance, improve the discharge efficiency and the discharge uniformity, and then conveyed quickly to the subsequent processing process through the feeding conveying belt, improving the processing efficiency.

[0037] Preferably, the discharge flow guide part 36 is a circular arc flow guide part, but it is not limited thereto.

[0038] Preferably, the flow guide part 521 is an inclined flow guide part, but it is not limited thereto.

[0039] In order to adjust the height of the distribution plate 52, as shown in Figure 1 , Figure 3 and Figure 5 , the lower part of the rack 1 is provided with a lifting adjustment mechanism 4, the lifting adjustment mechanism 4 is located on both sides of the distribution box 3, the lifting drive end of the lifting adjustment mechanism 4 is connected with the distribution box 3, for driving the distribution box 3 and the distribution plate 52 to make lifting movement, so as to adjust the height position of the distribution box 3 and the distribution plate 52. That is, by adjusting the distance between the bottom end surface of the distribution plate 52 and the conveying surface of the feeding conveying belt below, the thickness of the laid material layer is correspondingly adjusted, so as to ensure that the raw materials are uniformly distributed and not too thick, avoid excessive accumulation of raw materials to form large blocks, affect the subsequent processing effect, and the whole equipment has multiple functions and simple structure.

[0040] The lifting adjusting mechanism 4 comprises an upper fixing seat 41, a lower fixing seat 42, a lifting driving device 43 and a guide rod 44; one end of the lower fixing seat 42 is installed on the rack 1, the other end of the lower fixing seat 42 is installed with the lifting driving device 43, the driving rod of the lifting driving device 43 is connected with the upper fixing seat 41, and one end of the upper fixing seat 41 is installed on the distributing box 3; the guide rod 44 is located at two sides of the lifting driving device 43 respectively, one end of the guide rod 44 is connected with the upper fixing seat 41, the other end passes through the guide sleeve 45 of the lower fixing seat 42 and is connected with the guide connecting plate 46 below the lower fixing seat 42. When the lifting driving device 43 drives the upper fixing seat 41 to move, the distributing box 3 and the distributing plate 52 can be driven to move synchronously, the height adjustment of the distributing plate 52 is realized, and the thickness of the material layer to be laid is adjusted; the guide rods 44 at two sides play a guiding role, so that the lifting work moves along the specified lifting direction stably, and the height adjustment work is stably carried out.

[0041] Preferably, as shown in Figure 1 The two ends of the horizontal guide rail 215 are respectively provided with the concertina cover 7, so as to protect the horizontal guide rail 215, reduce the maintenance workload and improve the stability of the equipment.

[0042] In summary, the plurality of distributing mechanisms are arranged at the discharging end of the distributing box, the distributing port can be divided into a plurality of discharging areas, the specified distributing mechanism is controlled to open the corresponding discharging area, the raw material is discharged into the area to form the required discharging and laying area, the required board stripe is finally formed, the processing requirements of different stripe effects of the quartz board are met, the best placement of the material is ensured, the finally formed quartz board can reproduce the multi-shading area of the natural stone background, the adaptability is high, the aesthetic property is good, the functions are various, and the structure is simple.

[0043] The above is the preferred embodiment of the utility model, and it should be pointed out that, for ordinary skilled persons in the technical field, some improvements and decorations can be made without departing from the principle of the utility model, and these improvements and decorations are also regarded as the protection range of the utility model.

Claims

1. A quartz plate material dividing apparatus characterized by comprising: a quartz plate material feeding device; a cutting device; a quartz plate material dividing device; and a quartz plate material conveying device. The rack is provided with a distribution box; The lower part of the distribution box is provided with a plurality of distribution mechanisms for dividing the discharge port of the distribution box into a plurality of discharge areas; The distribution mechanism includes a distribution drive assembly and a distribution plate, the distribution drive assembly is connected with the distribution plate, and is used for driving the distribution plate to open or close the corresponding discharge area.

2. The apparatus of claim 1, wherein The rack is provided with a feeding mechanism above the distribution mechanism; The feeding mechanism includes a horizontal moving mechanism and a feeding hopper, when feeding, the horizontal moving mechanism drives the feeding hopper to move from the initial position to the position directly above the distribution box, and when feeding is completed, the horizontal moving mechanism drives the feeding hopper to reset.

3. The apparatus of claim 2, wherein The horizontal moving mechanism includes a moving motor device, a driving wheel, a driven wheel, a synchronous belt and horizontal guide rails, and the horizontal guide rails are arranged on both sides of the rack; The feeding hopper is located between the horizontal guide rails on both sides, and the feeding hopper is provided with horizontal frames at both ends, a plurality of sliding seats adapted to the horizontal guide rails are arranged on the horizontal frames at intervals, and the sliding seats are clamped into the horizontal guide rails and are slidably connected therewith; The moving motor device and the driven wheel are both mounted on the same side of the rack, the moving motor device is connected with the driving wheel, the driving wheel is in transmission connection with the driven wheel through the synchronous belt, the horizontal frame is provided with a clamping portion fixedly connected with the synchronous belt, and the moving motor device is used for driving the feeding hopper to move back and forth along the direction of the horizontal guide rail.

4. The apparatus of claim 1, wherein Both sides of the distribution box are provided with mounting frames, the lower part of the mounting frame is provided with a mounting plate, the mounting plate is provided with a distribution drive assembly, and the distribution plate is in sealing abutment with the bottom of the distribution box; The distribution drive assemblies on both sides are connected with the corresponding distribution plates respectively, and are used for driving the distribution plates on both sides to move away from or close to each other, so as to open or close the corresponding discharge area.

5. The apparatus of claim 4, wherein The distribution drive assembly includes a distribution pushing device and a guide rail plate, and the guide rail plates are arranged on both sides of the lower part of the mounting plate respectively; The distribution pushing device is mounted on the connecting mounting plate between the guide rail plates on both sides; One end of the distribution plate is provided with a sliding groove seat corresponding to the guide rail plate on both sides, the sliding groove seat is clamped into the guide rail plate and is slidably connected therewith, and the driving rod of the distribution pushing device is connected with the connecting mounting seat on the distribution plate.

6. A distribution apparatus according to claim 4 or 5, wherein A plurality of weighing detection assemblies are arranged on the mounting plate at intervals, and the weighing detection assembly includes a plurality of weighing detection devices; The distribution box is a hollow structure and is provided with openings at both ends, and the gravity of the raw materials in the distribution box acts on the distribution plate; The mounting plate is connected with the mounting frame through the weighing detection device, and both ends of the weighing detection device are connected with the mounting plate and the bottom of the mounting frame respectively.

7. The apparatus of claim 1, 4 or 5, wherein The bottom of the side plate on one side of the distribution box is provided with a discharge flow guide portion, the discharge flow guide portion extends downward along the height direction of the distribution box and extends in the opposite direction of the conveying direction of the conveying belt; The flow guide part is downwardly extended along the height direction of the distribution plate and extended along the opening direction of the distribution plate.

8. The apparatus of claims 1, 4 or 5, wherein, A plurality of the distribution mechanisms are used to divide the discharge port of the distribution box into a plurality of discharge areas.

9. The apparatus of claim 1, wherein The lower part of the rack is provided with a lifting adjustment mechanism, which is respectively located on both sides of the distribution box. One end of the lower fixed seat is mounted on the rack, and the other end of the lower fixed seat is mounted with the lifting drive device. The driving rod of the lifting drive device is connected with the upper fixed seat.

10. The apparatus of claim 3, wherein, The other end of the guide rod is connected with the guide connecting plate below the lower fixed seat.