Feeding, charging and mixing system

By combining a segmented conveying mechanism and a quantitative feeding mechanism with a rotating impact device and a scraping mechanism, the problems of large footprint and poor mixing effect of the feeding mechanism are solved, realizing efficient, quantitative conveying and uniform mixing of materials, thereby improving brewing production efficiency and product quality.

CN223606399UActive Publication Date: 2025-11-28YIBIN ZHITE MASCH CO LTD
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Patent Information

Application Number
CN202520298063.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-11-28
Estimated Expiration
2035-02-24

AI Technical Summary

Technical Problem

Existing feeding mechanisms occupy a large area and have poor mixing effects, with materials easily adhering to the conveyor belt, affecting conveying efficiency and product quality.

Method used

It adopts a segmented conveying mechanism, including a horizontal conveying mechanism and an inclined conveying mechanism, combined with a quantitative feeding mechanism and a mixing device. It uses a rotating impact device to mix materials, and a scraping mechanism to prevent material adhesion. It also uses a hollow structure and a guide plate for rapid cleaning.

Benefits of technology

It reduces the footprint of the conveyor belt, ensures quantitative material delivery and uniform mixing, improves conveying efficiency and product quality, and reduces material adhesion problems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feeding, charging and mixing system, and relates to the technical field of wine brewing material conveying. The device comprises a sectional conveying mechanism, a quantitative feeding mechanism and a mixing device, the sectional type conveying mechanism comprises a horizontal conveying mechanism and an inclined conveying mechanism, and the lower feeding end of the inclined conveying mechanism is arranged below the discharging end of the horizontal conveying mechanism. The quantitative feeding mechanism is arranged above the inclined conveying mechanism and arranged in the conveying direction of the inclined conveying mechanism. A material mixing device is arranged on the side, close to the discharging end of the inclined conveying mechanism, of the inclined conveying mechanism, the material mixing device comprises a rotating striking device installed above the inclined conveying mechanism, and the striking end of the rotating striking device acts on a feeding part of the inclined conveying mechanism; the problems that an existing feeding mechanism is large in occupied area and poor in mixing effect are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to wine material conveying technical field, specifically, it is a feeding and feeding mixing system. BACKGROUND

[0002] At present, in the wine production process, the main wine raw materials include rice hull, Daqu, sorghum, etc., and how to efficiently and safely deliver them to the wine workshop or designated position to improve production efficiency, reduce labor cost and ensure product quality is the key to improve the production efficiency of the wine factory.

[0003] At present, in the process of conveying materials by using the conveyor belt, the problems of long conveying distance and high environmental humidity, and the material easily adhering to the conveyor belt are often encountered.

[0004] Among them, long distance transmission helps the material to be processed twice during the conveying process, such as the staff detecting the material state. However, long distance transmission is easy to cause the equipment to occupy a larger area of the factory building, which is not conducive to the arrangement of other equipment in the factory building. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a feeding and feeding mixing system to solve the problems of large floor area of the existing feeding mechanism and poor mixing effect.

[0006] In order to solve the above problems, the utility model adopts the following technical means:

[0007] A feeding and feeding mixing system, comprising a segmented conveying mechanism, a quantitative feeding mechanism and a mixing device;

[0008] The segmented conveying mechanism comprises a horizontal conveying mechanism and an inclined conveying mechanism, and the upper feeding end of the inclined conveying mechanism is below the discharging end of the horizontal conveying mechanism;

[0009] The quantitative feeding mechanism is arranged above the inclined conveying mechanism and along the conveying direction of the inclined conveying mechanism;

[0010] The inclined conveying mechanism is close to the side of the discharging end, and the mixing device is arranged on the side of the discharging end, the mixing device comprises a rotating and hitting device installed above the inclined conveying mechanism, and the hitting end of the rotating and hitting device acts on the feeding part of the inclined conveying mechanism.

[0011] As preferred, the mixing device further comprises a rotating motor installed on the inclined conveying mechanism, the rotating striking device comprises a rotating roller connected with the rotating end of the rotating motor, the axis of the rotating roller is arranged in parallel with the feeding direction of the inclined conveying mechanism, the outer wall of the rotating roller is installed with a striking rod, the axis of the striking rod is arranged in vertical and horizontal with the conveying direction of the inclined conveying mechanism, and the striking rod serves as the striking end;

[0012] At least two mixing devices are arranged in sequence along the feeding direction of the inclined conveying mechanism, and the striking rods of adjacent two mixing devices are in contact with the feeding part of the inclined conveying mechanism at staggered times.

[0013] Further, a first scraping mechanism is installed below the discharging end of the horizontal conveying mechanism, and the scraping end of the first scraping mechanism is in sliding contact with the lower side of the material belt of the horizontal conveying mechanism;

[0014] The upper end of the inclined conveying mechanism serves as a discharging end, and a second scraping mechanism is installed below the discharging end of the inclined conveying mechanism, and the scraping end of the second scraping mechanism is in sliding contact with the lower side of the material belt of the inclined conveying mechanism;

[0015] The horizontal conveying mechanism comprises a horizontal rack and a horizontal conveying belt, and the material belt of the horizontal conveying belt is in a hollow structure;

[0016] The inclined conveying mechanism comprises an inclined rack and an inclined conveying belt, and the material belt of the inclined conveying belt is in a hollow structure;

[0017] A first flow guide plate is installed on the bottom side of the horizontal rack, one end of the first flow guide plate is connected with the end of the horizontal rack away from the inclined conveying mechanism, and the other end of the first flow guide plate is inclined downward and close to the inclined conveying mechanism;

[0018] A second flow guide plate is installed on the bottom side of the inclined rack, and the second flow guide plate is arranged in parallel with the inclined rack.

[0019] Further, a water collecting vehicle is placed between the first flow guide plate and the second flow guide plate, and the bottom end of the first flow guide plate and the bottom end of the second flow guide plate are arranged above the water inlet of the water collecting vehicle.

[0020] Further, the first scraping mechanism comprises a first support plate installed on the horizontal rack, the first support plate is arranged in parallel with the horizontal conveying belt, a first scraper is installed on the first support plate, and one end of the first scraper is in sliding contact with the horizontal conveying belt;

[0021] The second scraping mechanism comprises a second support plate mounted on the inclined support, the second support plate is arranged in parallel with the inclined conveying belt, and a second scraper is mounted on the second support plate, one end of the second scraper is in sliding contact with the inclined conveying belt.

[0022] Further, the top surface of one side of the horizontal rack at the discharging end of the horizontal conveying mechanism is connected with the top surface of one side of the inclined rack at the feeding end of the inclined conveying mechanism through a connecting baffle.

[0023] The connecting baffle comprises a horizontal baffle arranged above the horizontal rack, and the horizontal baffle is connected with the inclined rack through an inclined baffle.

[0024] Further, the quantitative feeding mechanism comprises a positioning frame, a pair of support rods arranged on the same plane and horizontally arranged are arranged on the positioning frame, a material box is arranged between the two support rods, ear plates are mounted on the outer walls of the opposite sides of the material box, a weight scale is mounted on the support rod, the ear plate is placed on the weight scale, the box body of the material box is arranged away from the positioning frame and the support rod, and a quantitative unloading mechanism is communicated with the bottom end of the material box.

[0025] Further, the positioning frame clamps the two sides of the material box provided with the ear plates, at least two ear plates are arranged on one side of the material box, and the two ear plates arranged on the same side are symmetrically arranged about the center line of the material box.

[0026] Further, the quantitative unloading mechanism comprises a cylindrical box arranged at the bottom end of the material box, the top surface of the cylindrical box is communicated with the material box, the bottom surface of the cylindrical box is communicated with a discharging pipe, and a quantitative material moving device is coaxially and rotatably arranged in the cylindrical box, and the quantitative material moving device is used for moving the material in the material box to the discharging pipe.

[0027] The quantitative material moving device comprises a rotating roller arranged in the cylindrical box and arranged coaxially with the cylindrical box, the two ends of the rotating roller are abutted and rotatably connected with the two ends of the cylindrical box, a plurality of material distribution plates are mounted on the outer wall of the rotating roller around the axis line of the rotating roller, the two ends of the material distribution plate along the axis line of the rotating roller are in sliding abutment with the inner walls of the two ends of the cylindrical box, one end of the material distribution plate away from the rotating roller is in sliding abutment with the arc-shaped inner wall of the cylindrical box, adjacent two material distribution plates form a material moving cavity, and each material moving cavity is arranged in equal volume.

[0028] Further, when the communication port positions of the cylindrical box and the material box are the same, at least two material moving cavities are exposed.

[0029] In the process of use, the following beneficial effects are achieved:

[0030] First, the cooperation of horizontal conveying mechanism and inclined conveying mechanism is adopted to reduce the horizontal moving distance of the material when conveying along the same conveying belt direction, thereby reducing the floor area of the whole conveying belt, and the combination of horizontal conveying mechanism and inclined conveying mechanism avoids the material from rising to a too high height, so that the workers can easily handle the material on the inclined conveying mechanism. In addition, the first scraping mechanism is used to avoid the material from adhering to the horizontal conveying mechanism, so that the material can smoothly fall from the horizontal conveying mechanism to the inclined conveying mechanism, and the second scraping mechanism is used to scrape the inclined conveying mechanism, so that the material on the inclined conveying mechanism can be smoothly unloaded. Therefore, the first scraping mechanism and the second scraping mechanism are used to avoid the material from adhering to the conveying belt when the environmental humidity is too large or water remains on the conveying belt due to cleaning, so that the material cannot be quantitatively conveyed.

[0031] In addition, the material to be added is placed in the material box, and the material box is suspended and supported by the abutting of the supporting lug plate and the weight scale. In this way, the weight of the material box can be weighed in real time by the weight scale through the support of the supporting lug plate by the weight scale, so that the weight scale can stably support the material box while monitoring the unloading state of the material box, and the quantitative unloading mechanism is cooperated to realize quantitative unloading and the purpose of feeding material to the subsequent process.

[0032] Meanwhile, after the addition of the material is completed, the material to be added is placed in the quantitative feeding mechanism, and then the material is added to the feeding part of the inclined conveying mechanism through the quantitative feeding mechanism. The added material moves upward together with the material on the inclined conveying mechanism, and when the material moves to the position of the mixing device, the material belt is struck by the striking end of the rotating striking device under the action of the mixing device. At the same time of being struck, the added material is mixed with the original material on the inclined conveying mechanism by using the state of bouncing and then falling of the material. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 It is a structural schematic diagram of the utility model.

[0034] Figure 2 It is Figure 1 It is a local enlarged structure schematic diagram of position A in the middle.

[0035] Figure 3 It is Figure 1 It is a local enlarged structure schematic diagram of position B in the middle.

[0036] Figure 4 It is Figure 1 It is a local enlarged structure schematic diagram of position C in the middle.

[0037] Wherein, 110-horizontal conveying mechanism, 111-horizontal rack, 112-horizontal conveyor belt, 120-inclined conveying mechanism, 121-inclined rack, 122-inclined conveyor belt, 130-first material scraping mechanism, 131-first support plate, 132-first scraper, 140-second material scraping mechanism, 141-second support plate, 142-second scraper, 150-first flow guide plate, 160-second flow guide plate, 170-water receiving vehicle, 180-connection baffle, 181-horizontal baffle, 182-inclined baffle, 200-quantitative feeding mechanism, 210-positioning frame, 220-supporting rod, 230-material box, 240-ear plate, 250-weight scale, 260-quantitative unloading mechanism, 261-cylinder box, 262-discharge pipe, 263-rotating roller, 264-distributing plate, 265-removing cavity, 300-mixing device, 310-rotating striking device, 311-rotating roller, 312-striking rod, 320-rotating motor. DETAILED DESCRIPTION

[0038] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.

[0039] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0040] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.

[0041] It should be noted that: similar reference numerals and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in the subsequent drawings.

[0042] In the description of the utility model, it needs to explain, the term "center", "upper", "lower", "left", "right", "vertical", "horizontal", "internal", "external" and so on indicate the orientation or position relation is based on the orientation or position relation shown in the drawing, or it is the orientation or position relation that the utility model product uses usually, or it is the orientation or position relation that the person skilled in the art usually understands, just is for the convenience of describing the utility model and simplifying the description, and not indicate or imply the device or element indicated must have a particular orientation, with a particular orientation configuration and operation, therefore can not be understood as the limitation to the utility model.In addition, the term "first", "second" and so on are just used for distinguishing description, and can not be understood as indicating or implying relative importance.

[0043] In the description of the utility model, it also needs to explain that, unless otherwise explicitly specified and limited, the term "set", "installation", "connect", "connection" should be broad understanding, for example, can be fixed connection, can be detachable connection, or integrally connected;Can be mechanical connection, can be electrical connection;Can be directly connected, can be indirectly connected through intermediate medium, can be the communication inside two elements.For the person skilled in the art, the specific meaning of the above-mentioned terms in the utility model can be understood according to the specific circumstances.

[0044] Please refer to Figures 1 to 4 As shown in the figure, a feeding and feeding mixing system, characterized by, including segmented conveying mechanism, quantitative feeding mechanism 200 and mixing device 300;

[0045] The segmented conveying mechanism includes horizontal conveying mechanism 110 and inclined conveying mechanism 120, the lower feeding end of the inclined conveying mechanism 120 is arranged below the discharge end of the horizontal conveying mechanism 110;

[0046] The quantitative feeding mechanism 200 is arranged above the inclined conveying mechanism 120, and is arranged along the conveying direction of the inclined conveying mechanism 120;

[0047] The inclined conveying mechanism 120 is configured with a mixing device 300 on the side close to the discharge end, and the mixing device 300 includes a rotating striking device 310 installed above the inclined conveying mechanism 120, and the striking end of the rotating striking device 310 acts on the feeding part of the inclined conveying mechanism 120.

[0048] Thus, first, the cooperation of the horizontal conveying mechanism 110 and the inclined conveying mechanism 120 is adopted to reduce the horizontal moving distance of the material when conveying along the same conveying belt direction, thereby reducing the floor area occupied by the entire conveying belt, and the combination of the horizontal conveying mechanism 110 and the inclined conveying mechanism 120 avoids the material from rising to a too high height, so that the workers can easily handle the material on the inclined conveying mechanism 120. Furthermore, the first scraping mechanism 130 is used to avoid the material from adhering to the horizontal conveying mechanism 110, so that the material can smoothly fall from the horizontal conveying mechanism 110 to the inclined conveying mechanism 120, and the second scraping mechanism 140 is used to scrape the inclined conveying mechanism 120, so that the material on the inclined conveying mechanism 120 can be smoothly unloaded. Thus, the first scraping mechanism 130 and the second scraping mechanism 140 are used to avoid the material from adhering to the conveying belt when the environmental humidity is too large or water remains on the conveying belt due to cleaning, so that the material cannot be quantitatively conveyed.

[0049] Meanwhile, the material to be added is placed in the material box 230, and the material box 230 is suspended and kept in place by the abutment of the receiving lug plate 240 and the weight scale 250. Thus, the weight scale 250 can be used to weigh the material box 230 in real time by supporting the receiving lug plate 240, so that the weight scale 250 can be used to stably support the material box 230 while monitoring the unloading state of the material box 230, and the quantitative unloading mechanism 260 is used to realize quantitative unloading and the purpose of feeding material to the subsequent process.

[0050] During the addition of the material, the material is added to the feeding part of the inclined conveying mechanism 120 by the quantitative feeding mechanism 200, and the added material moves upward together with the material on the inclined conveying mechanism 120. When the material moves to the position of the mixing device 300, the material belt is struck by the striking end of the rotating striking device 310 under the action of the mixing device 300, and the added material is mixed with the original material on the inclined conveying mechanism 120 by using the state of bouncing and then falling of the material.

[0051] Furthermore, the mixing device 300 further comprises a rotating motor 320 installed on the inclined conveying mechanism 120, the rotating striking device 310 comprises a rotating roller 311 connected to the rotating end of the rotating motor 320, the axis of the rotating roller 311 is parallel to the feeding direction of the inclined conveying mechanism 120, the outer wall of the rotating roller 311 is provided with a striking rod 312, the axis of the striking rod 312 is perpendicular to and horizontally arranged with respect to the conveying direction of the inclined conveying mechanism 120, and the striking rod 312 serves as the striking end.

[0052] Further, at least two mixing devices 300 are arranged in sequence along the feeding direction of the inclined conveying mechanism 120, and the beating rods 312 of adjacent two mixing devices 300 are in contact with the feeding part of the inclined conveying mechanism 120 at staggered times.

[0053] In this way, the materials at different time periods located at different heights can be well mixed.

[0054] Meanwhile, the horizontal conveying mechanism 110 comprises a horizontal rack 111 and a horizontal conveying belt 112, and the material belt of the horizontal conveying belt 112 is in a hollow structure.

[0055] The inclined conveying mechanism 120 comprises an inclined rack 121 and an inclined conveying belt 122, and the material belt of the inclined conveying belt 122 is in a hollow structure.

[0056] The bottom side of the horizontal rack 111 is provided with a first flow guide plate 150, one end of the first flow guide plate 150 is connected to the end of the horizontal rack 111 away from the inclined conveying mechanism 120, and the other end of the first flow guide plate 150 is inclined downward and arranged close to the inclined conveying mechanism 120.

[0057] The bottom side of the inclined rack 121 is provided with a second flow guide plate 160, and the second flow guide plate 160 is arranged in parallel with the inclined rack 121.

[0058] The horizontal conveying belt 112 and the inclined conveying belt 122 in a hollow structure can be cleaned by flushing, and then the conveying belt can be quickly drained. The flushing water can be collected through the first flow guide plate 150 and the second flow guide plate 160, and the flushing water can be conveniently collected and treated.

[0059] Further, in order to facilitate the quick collection of flushing water, a water receiving cart 170 is arranged between the first flow guide plate 150 and the second flow guide plate 160, and the bottom end of the first flow guide plate 150 and the bottom end of the second flow guide plate 160 are arranged above the water inlet of the water receiving cart 170.

[0060] Further, the top surface of one side of the horizontal rack 111 at the discharging end of the horizontal conveying mechanism 110 is connected to the top surface of one side of the inclined rack 121 at the feeding end of the inclined conveying mechanism 120 through a connecting baffle 180.

[0061] Meanwhile, the connecting baffle 180 comprises a horizontal baffle 181 arranged above the horizontal rack 111, and the horizontal baffle 181 is connected to the inclined rack 121 through an inclined baffle 182.

[0062] Thus, the material is prevented from being thrown out of the conveying area when entering the joint section of the inclined conveying belt 122 from the horizontal conveying belt 112.

[0063] Further, the first material scraping mechanism 130 comprises a first support plate 131 mounted on the horizontal frame 111, the first support plate 131 is arranged in parallel with the horizontal conveying belt 112, and a first scraper 132 is mounted on the first support plate 131, one end of the first scraper 132 is in sliding contact with the horizontal conveying belt 112.

[0064] Meanwhile, the second material scraping mechanism 140 comprises a second support plate 141 mounted on the inclined frame, the second support plate 141 is arranged in parallel with the inclined conveying belt 122, and a second scraper 142 is mounted on the second support plate 141, one end of the second scraper 142 is in sliding contact with the inclined conveying belt 122.

[0065] Further, in order to make the material box 230 more stable in the suspended state, the positioning frame 210 clamps the two sides of the material box 230 provided with the receiving lug plate 240.

[0066] In this way, the clamping of the positioning frame 210 to the material box 230 can effectively prevent the material box 230 from shaking to a large extent and affecting the discharge position.

[0067] Further, in the direction where the positioning frame 210 does not clamp the material box 230, in order to improve its stability, one side of the material box 230 is provided with at least two receiving lug plates 240, and the two receiving lug plates 240 on the same side are symmetrically arranged about the center line of the material box 230.

[0068] In this way, the symmetrically arranged receiving lug plates 240 on one side of the material box 230 respectively form support parts of the material box 230 with the weight scale 250, and the edges of the aforementioned receiving lug plates 240 close to one side of the material box 230 are arranged, thereby cooperating with the aforementioned clamping of the positioning frame 210 to the material box 230 to make the material box 230 stable during operation.

[0069] Further, for the quantitative discharge mechanism 260, the quantitative discharge mechanism 260 comprises a cylindrical box 261 arranged at the bottom end of the material box 230, the top surface of the cylindrical box 261 is in communication with the material box 230, the bottom surface of the cylindrical box 261 is communicated with a discharge pipe 262, and a quantitative material moving device is coaxially and rotatably mounted in the cylindrical box 261, the quantitative material moving device is used to move the material in the material box 230 to the discharge pipe 262.

[0070] Meanwhile, the quantitative material moving device comprises a rotating roller 263 arranged in the cylindrical box 261 coaxially, both ends of the rotating roller 263 abutting and rotatingly connected with both ends of the cylindrical box 261, a plurality of material distributing plates 264 being mounted on the outer wall of the rotating roller 263 around the axis thereof, the material distributing plates 264 slidingly abutting with both ends of the inner wall of the cylindrical box 261 along the axis of the rotating roller 263, one end of the material distributing plates 264 away from the rotating roller 263 slidingly abutting with the arc-shaped inner wall of the cylindrical box 261, and the adjacent two material distributing plates 264 being a material moving cavity 265, and each material moving cavity 265 being arranged in equal volume.

[0071] Moreover, the cylindrical box 261 and the communicating port of the material box 230 are at least exposed with two material moving cavities 265 at the same time.

[0072] In this way, the material in the material box 230 can continuously enter the material moving cavities 265, and then follow the rotation of the rotating roller 263, the material in the material moving cavities 265 moves to the position of the discharging pipe 262 and falls into the discharging pipe 262 under the action of gravity, and then is discharged. Moreover, through the arrangement that the cylindrical box 261 and the communicating port of the material box 230 are at least exposed with two material moving cavities 265 at the same time, the precision of the quantitative discharging of the material moving cavities 265 can be greatly improved, and even when a small amount of material needs to be discharged, the small volume material moving cavities 265 can also be qualified.

[0073] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A feeding, charging and mixing system, characterized in that The device comprises a segmented conveying mechanism, a quantitative feeding mechanism (200) and a mixing device (300); The segmented conveying mechanism comprises a horizontal conveying mechanism (110) and an inclined conveying mechanism (120), and the lower feeding end of the inclined conveying mechanism (120) is arranged below the discharging end of the horizontal conveying mechanism (110); The quantitative feeding mechanism (200) is arranged above the inclined conveying mechanism (120) and is arranged along the conveying direction of the inclined conveying mechanism (120); The side of the inclined conveying mechanism (120) close to the discharging end is provided with the mixing device (300), and the mixing device (300) comprises a rotating striking device (310) arranged above the inclined conveying mechanism (120), and the striking end of the rotating striking device (310) acts on the feeding part of the inclined conveying mechanism (120).

2. A feeding, charging and mixing system according to claim 1, characterized in that The mixing device (300) further comprises a rotating motor (320) arranged on the inclined conveying mechanism (120), the rotating striking device (310) comprises a rotating roller (311) connected with the rotating end of the rotating motor (320), the axis of the rotating roller (311) is arranged in parallel with the feeding direction of the inclined conveying mechanism (120), the outer wall of the rotating roller (311) is provided with a striking rod (312), the axis of the striking rod (312) is arranged in vertical and horizontal with the conveying direction of the inclined conveying mechanism (120), and the striking rod (312) serves as the striking end; At least two mixing devices (300) are arranged along the feeding direction of the inclined conveying mechanism (120) in sequence, and the striking rods (312) of adjacent two mixing devices (300) contact the feeding part of the inclined conveying mechanism (120) at staggered times.

3. A feeding, charging and mixing system according to claim 1, characterized in that A first scraping mechanism (130) is arranged below the discharging end of the horizontal conveying mechanism (110), and the scraping end of the first scraping mechanism (130) is in sliding contact with the lower side of the material belt of the discharging end of the horizontal conveying mechanism (110); The upper end of the inclined conveying mechanism (120) serves as a discharging end, and a second scraping mechanism (140) is arranged below the discharging end of the inclined conveying mechanism (120), and the scraping end of the second scraping mechanism (140) is in sliding contact with the lower side of the material belt of the discharging end of the inclined conveying mechanism (120); The horizontal conveying mechanism (110) comprises a horizontal rack (111) and a horizontal conveying belt (112), and the material belt of the horizontal conveying belt (112) is in a hollow structure; The inclined conveying mechanism (120) comprises an inclined rack (121) and an inclined conveying belt (122), and the material belt of the inclined conveying belt (122) is in a hollow structure; The bottom side of the horizontal rack (111) is provided with a first flow guide plate (150), one end of the first flow guide plate (150) is connected with the end of the horizontal rack (111) away from the inclined conveying mechanism (120), and the other end of the first flow guide plate (150) is inclined downward and arranged close to the inclined conveying mechanism (120). The bottom side of the inclined rack (121) is provided with a second flow guide plate (160), which is arranged in parallel with the inclined rack (121).

4. A feeding, charging and mixing system according to claim 3, characterized in that A water receiving vehicle (170) is arranged between the first flow guide plate (150) and the second flow guide plate (160), and the bottom ends of the first flow guide plate (150) and the second flow guide plate (160) are arranged above the water inlet of the water receiving vehicle (170).

5. A feeding, charging and mixing system according to claim 3, characterized in that The first scraping mechanism (130) comprises a first support plate (131) arranged on the horizontal rack (111), which is arranged in parallel with the horizontal conveying belt (112), and a first scraper (132) is arranged on the first support plate (131), one end of which is in sliding contact with the horizontal conveying belt (112). The second scraping mechanism (140) comprises a second support plate (141) arranged on the inclined rack, which is arranged in parallel with the inclined conveying belt (122), and a second scraper (142) is arranged on the second support plate (141), one end of which is in sliding contact with the inclined conveying belt (122).

6. A feeding, charging and mixing system according to claim 3, characterized in that The horizontal rack (111) is connected to the top surface of one side of the discharge end of the horizontal conveying mechanism (110) and the top surface of one side of the loading end of the inclined conveying mechanism (120) through a connecting baffle (180). The connecting baffle (180) comprises a horizontal baffle (181) arranged above the horizontal rack (111), which is connected to the inclined rack (121) through an inclined baffle (182).

7. A feeding, charging and mixing system according to claim 1, characterized in that The quantitative feeding mechanism (200) comprises a positioning frame (210), which is provided with a pair of support rods (220) arranged in the same plane and horizontally, a material box (230) is arranged between the two support rods (220), ear plates (240) are arranged on the outer walls of the opposite sides of the material box (230), a weight scale (250) is arranged on the support rod (220), the ear plate (240) is placed on the weight scale (250), the box body of the material box (230) is arranged away from the positioning frame (210) and the support rod (220), and a quantitative unloading mechanism (260) is communicated with the bottom end of the material box (230).

8. A feeding, charging and mixing system according to claim 7, characterized in that The positioning frame (210) clamps the two sides of the material box (230) provided with the ear plates (240), and at least two ear plates (240) are arranged on one side of the material box (230), and the two ear plates (240) arranged on the same side are symmetrically arranged about the center line of the material box (230).

9. A feeding, charging and mixing system according to claim 7, characterized in that The quantitative discharging mechanism (260) comprises a cylindrical box (261) arranged at the bottom end of the material box (230), the top surface of the cylindrical box (261) is communicated with the material box (230), the bottom surface of the cylindrical box (261) is communicated with a discharging pipe (262), and a quantitative material moving device is coaxially and rotationally arranged in the cylindrical box (261), which is used for moving the material in the material box (230) to the discharging pipe (262); The quantitative material moving device comprises a rotating roller (263) arranged in the cylindrical box (261) and coaxially arranged with the cylindrical box (261), the two ends of the rotating roller (263) are abutted and rotationally connected with the two ends of the cylindrical box (261), a plurality of material distributing plates (264) are arranged on the outer wall of the rotating roller (263) around the axis, the two ends of the material distributing plates (264) along the axis of the rotating roller (263) are slidably abutted with the inner walls of the two ends of the cylindrical box (261), one end of the material distributing plate (264) away from the rotating roller (263) is slidably abutted with the arc-shaped inner wall of the cylindrical box (261), and adjacent two material distributing plates (264) form a material moving cavity (265), and each material moving cavity (265) is arranged in equal volume.

10. A feeding, charging and mixing system according to claim 9, characterized in that When the communication port positions of the cylindrical box (261) and the material box (230) are the same, at least two material moving cavities (265) are exposed.