Discharging equipment
By setting up anti-winding devices in the cutting equipment and unwinding materials using the shaft and rack assembly, the problem of uneven cutting of long strip materials such as tea is solved, and the smooth continuous cutting of materials and the stability of production rhythm is achieved.
Patent Information
- Application Number
- CN202422179385.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-05
AI Technical Summary
During the cutting process, long and irregular materials such as tea are prone to wrap around, resulting in uneven and discontinuous cutting and affecting the production rhythm.
An anti-winding device is installed in the cutting equipment, including a rotating shaft and rack assembly. The rack comes into contact with the material on the conveyor belt, and the wound material is stirred through rotation to ensure smooth discharge of the material.
It achieves smooth and continuous material discharge, ensures the continuity of the production rhythm, avoids material entanglement, and improves production efficiency.
Smart Images

Figure CN223133235U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of production equipment, and particularly to a blanking device. Background Art
[0002] Currently, for long and irregular materials, such as tea leaves, during the blanking process, due to the mutual entanglement between the tea leaves, the blanking is uneven and discontinuous, thus affecting the production rhythm. Summary of the Utility Model
[0003] The purpose of the present application is to provide a blanking device to solve the above problems. By setting an anti-entanglement device on the blanking device, the phenomenon of uneven and discontinuous blanking is avoided, ensuring a smooth blanking process and thus ensuring a continuous production rhythm.
[0004] The blanking device provided by the present application includes a blanking component. The blanking component includes a feeding bin, a conveyor belt, and an anti-entanglement device. The conveyor belt is located below the feeding bin, and there is a gap between the conveyor belt and the bottom of the feeding bin. A first feeding port is provided at the top of the feeding bin, and an opening is provided at the bottom of the feeding bin. A first discharge port is provided at one end of the feeding bin, and the first discharge port is located at the end of the conveyor belt. The anti-entanglement device includes a rotating shaft and a rack assembly. The rotating shaft is rotatably connected to the feeding bin. The rack assembly includes a plurality of racks. The plurality of racks are all fixed to the rotating shaft and are arranged at intervals along the circumferential direction of the rotating shaft. At least part of the racks extends into the feeding bin, and there is a gap between the end of the rack away from the rotating shaft and the conveyor belt.
[0005] In some embodiments, there are a plurality of rack assemblies, and the plurality of rack assemblies are fixedly arranged on the rotating shaft at intervals along the axial direction of the rotating shaft.
[0006] In some embodiments, along the transmission direction of the conveyor belt, the width dimension of the feeding bin remains unchanged.
[0007] In some embodiments, along the direction from the opening to the first feeding port, the cross-section of the feeding bin gradually increases.
[0008] In some embodiments, the end of the conveyor belt is inclined away from the feeding bin.
[0009] In some embodiments, the blanking device further includes a vibrating plate. The vibrating plate is located below the conveyor belt, and the vibrating plate is used to receive the materials falling from the first discharge port.
[0010] In some embodiments, the blanking device further includes a detection sensor. The detection sensor is used to detect the materials in the vibrating plate.
[0011] In some embodiments, the blanking device further includes an aggregate bin, the vibrating bowl includes a second discharge port, the aggregate bin is located below the second discharge port, and the aggregate bin is used for collecting the materials falling from the vibrating bowl.
[0012] In some embodiments, the aggregate bin includes a bin body and a switch door, the switch door is hinged to the bottom of the bin body, the materials enter the bin body from the upper end of the bin body, and the switch door is used to open and close the bottom of the bin body so that the bin body can collect or discharge the materials.
[0013] In some embodiments, the blanking device further includes a weighing device, the weighing device includes a fixed seat and a weighing sensor, the weighing sensor is arranged on the fixed seat; the aggregate bin is fixed on the weighing sensor.
[0014] In some embodiments, the blanking device includes two blanking components, and the two blanking components are arranged side by side.
[0015] The present application provides a blanking device, which includes a blanking component. The blanking component includes a feeding bin, a conveyor belt and an anti-winding device. The conveyor belt is located below the feeding bin, and there is a gap between the conveyor belt and the bottom of the feeding bin; a first feeding port is arranged at the top of the feeding bin, and an opening is arranged at the bottom of the feeding bin; a first discharge port is arranged at one end of the feeding bin, and the first discharge port is located at the end of the conveyor belt; the anti-winding device includes a rotating shaft and a rack assembly, the rotating shaft is rotatably connected to the feeding bin; the rack assembly includes a plurality of racks, and the plurality of racks are all fixed on the rotating shaft and are arranged at intervals along the circumferential direction of the rotating shaft; at least part of the racks extend into the feeding bin, and there is a gap between the end of the rack far from the rotating shaft and the conveyor belt.
[0016] In the present application, by arranging an anti-winding device in the feeding bin, when the materials in the feeding bin are conveyed by the conveyor belt, the racks in the anti-winding device will contact the materials on the conveyor belt, and the winding materials will be stirred open by the rotation of the racks, so as to ensure that the materials falling from the first discharge port are not wound, making the discharge smooth and continuous, ensuring the smoothness of the blanking process, and thus ensuring the production rhythm. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the present application, the drawings required for use in the embodiments will be briefly introduced below.
[0018] Figure 1 It is a schematic diagram of the overall structure of the blanking device provided by the embodiment of the present application.
[0019] Figure 2 It is a schematic diagram of the structure of the blanking component in the embodiment of the present application.
[0020] Figure 3 It is a schematic structural diagram of another perspective of the blanking assembly in the embodiment of the present application.
[0021] Figure 4 It is a schematic installation diagram of the aggregate bin and the weighing device in the embodiment of the present application.
[0022] Explanation of reference numerals: 10 - blanking assembly, 20 - frame, 21 - bottom plate, 22 - vertical plate, 100 - feeding bin, 110 - first side plate, 120 - second side plate, 130 - baffle, 101 - first feed inlet, 102 - first discharge outlet, 200 - conveyor belt, 300 - anti - winding device, 310 - rotating shaft, 320 - rack assembly, 321 - rack, 330 - driving motor, 400 - vibrating disk, 410 - second feed inlet, 420 - second discharge outlet, 500 - detection sensor, 600 - aggregate bin, 610 - bin body, 620 - switch door, 630 - driving device, 700 - weighing device, 710 - fixing seat, 720 - weighing sensor, 730 - shock pad. Detailed implementation manners
[0023] Next, the technical solutions in the embodiments of the present application will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present application.
[0024] Please refer to Figure 1 , Figure 2 and Figure 3 , Figure 1 which is a schematic diagram of the overall structure of the blanking equipment provided by the embodiment of the present application, Figure 2 which is a schematic structural diagram of the blanking assembly 10 in the embodiment of the present application, Figure 3 which is a schematic structural diagram of another perspective of the blanking assembly 10 in the embodiment of the present application.
[0025] The blanking equipment provided by the embodiment of the present application includes a blanking assembly 10. The blanking assembly 10 includes a feeding bin 100, a conveyor belt 200, and an anti-winding device 300. The conveyor belt 200 is located below the feeding bin 100, and there is a gap between the conveyor belt 200 and the bottom of the feeding bin 100. A first feeding port 101 is provided at the top of the feeding bin 100, and an opening is provided at the bottom of the feeding bin 100. One end of the feeding bin 100 is provided with a first discharging port 102, and the first discharging port 102 is located at the end of the conveyor belt 200. The anti-winding device 300 includes a rotating shaft 310 and a rack assembly 320. The rotating shaft 310 is rotatably connected to the feeding bin 100. The rack assembly 320 includes a plurality of racks 321. The plurality of racks 321 are all fixed on the rotating shaft 310 and are arranged at intervals along the circumferential direction of the rotating shaft 310. At least part of the racks 321 extends into the feeding bin 100, and there is a gap between the end of the rack 321 away from the rotating shaft 310 and the conveyor belt 200.
[0026] Please refer to Figure 2 and Figure 3 In the embodiment of the present application, by providing the anti-winding device 300 on the feeding bin 100, when the material in the feeding bin 100 is being conveyed by the conveyor belt 200, the rack 321 in the anti-winding device 300 will contact the material on the conveyor belt 200. By rotating the rack 321, the entangled material is stirred open, so as to ensure that the material falling from the first discharging port 102 is not entangled, making the discharging smooth and continuous, ensuring the smoothness of the blanking process, and thus ensuring the production rhythm. Those skilled in the art can understand that the material in the embodiment of the present application can be long-strip-shaped materials that are easy to entangle with each other, such as tea leaves. The following will take tea leaves as an example for illustration.
[0027] Please continue to refer to Figure 2 and Figure 3 In the embodiment of the present application, the blanking equipment further includes a frame 20. Specifically, the frame 20 may include a bottom plate 21 and two vertical plates 22. The two bottom plates 21 are arranged opposite to each other and are both fixed on the bottom plate 21. The conveyor belt 200 can be installed between the two vertical plates 22. The installation method and function of the conveyor belt 200 both belong to the conventional technical means in the art and will not be elaborated in the embodiment of the present application.
[0028] Please continue to refer to Figure 2 and Figure 3, in the embodiments of the present application, the feeding bin 100 includes a first side plate 110 and a second side plate 120 that are opposite and spaced apart, and a baffle 130 connected between the first side plate 110 and the second side plate 120. The first side plate 110, the baffle 130, and the second side plate 120 are connected in a U shape. The opening of the U shape is the first discharge port 102, that is, the first discharge port 102 is disposed opposite to the baffle 130. More specifically, the baffle 130 is located at the front end of the conveyor belt 200, and the first discharge port 102 is located at the end of the conveyor belt 200. Those skilled in the art can understand that in the embodiments of the present application, the front end and the end of the conveyor belt 200 are defined in the direction in which the conveyor belt 200 conveys tea. The tea is on the conveyor belt 200 and is conveyed from the front end of the conveyor belt 200 to the end of the conveyor belt 200.
[0029] Those skilled in the art can also understand that the first side plate 110, the second side plate 120, and the baffle 130 can all be provided with flanges, and the flanges can facilitate the fixation of the feeding bin 100 to other equipment or the rack 20, etc. Of course, those skilled in the art can also set other ways to fix the feeding bin 100, and the embodiments of the present application do not make specific limitations. When the feeding bin 100 is fixed to the rack 20, the rack 20 can also include a cross plate (not shown in the figure) fixed to the vertical plate 22 to facilitate the fixation of the feeding bin 100.
[0030] In the embodiments of the present application, there is a gap between the bottom of the feeding bin 100 and the conveyor belt 200. In this way, it can be ensured that there is no interference between the conveyor belt 200 and the feeding bin 100 during the process of conveying tea. Those skilled in the art can also understand that the widths of the bottoms of the first side plate 110 and the second side plate 120 are smaller than the width of the conveyor belt 200. In this way, the tea can accurately fall onto the conveyor belt 200 from the opening formed by the first side plate 110 and the second side plate 120, and avoid the tea falling outside the conveyor belt 200.
[0031] Please continue to refer to Figure 2 and Figure 3 , in addition, those skilled in the art can also understand that the anti - entanglement device 300 is generally installed on one side of the feeding bin 100 close to the end of the conveyor belt 200. Of course, those skilled in the art can also appropriately adjust the installation position of the anti - entanglement device 300. However, it should be noted that the tea is generally fed into the feeding bin 100 between the baffle 130 and the anti - entanglement device 300. In this way, during the conveying process of the tea, it is necessary to pass through the anti - entanglement device 300. The entangled tea is dispersed by the rack 321 in the anti - entanglement device 300. As a result, after the tea passes through the anti - entanglement device 300, the entangled state is significantly improved, and the dispersed tea is then conveyed to the next process through the conveyor belt 200.
[0032] Please continue to refer to Figure 2 andFigure 3 The anti - entanglement device 300 further includes a driving motor 330. Of course, those skilled in the art can also use other ways for driving. The driving motor 330 can be fixed on the side of the first side plate 110 away from the second side plate 120. Those skilled in the art can also install and fix it according to the specific installation environment. For example, it can be fixed on the vertical plate 22 of the frame 20. The embodiments of the present application do not make specific limitations. By driving the rotation of the rotating shaft 310 by the driving motor 330, the rotating shaft 310 drives the rack 321 to rotate. When the tea passes by, it is scattered by the rack 321, thus realizing anti - entanglement. Of course, the ways of rotational connection between the rotating shaft 310 and the first side plate 110 and / or the second side plate 120 all belong to the prior art, such as using structures like bearings and bushings to achieve, which will not be elaborated here.
[0033] Please continue to refer to Figure 2 and Figure 3 It can also be understood that the interval between the end of the rack 321 away from the rotating shaft 310 and the conveyor belt 200 can prevent interference between the rack 321 and the conveyor belt 200. This interval can be set according to the experience of the user. For example, it can be matched according to the rotation speed of the rotating shaft 310 and the transmission speed of the conveyor belt 200, so as to adapt to different types of tea. Thus, it can not only ensure that the rack 321 can contact the tea on the conveyor belt 200 during rotation to ensure that the entangled tea can be scattered, but also avoid interference between the rack 321 and the conveyor belt 200.
[0034] Please continue to refer to Figure 2 and Figure 3 In some embodiments, there are multiple rack assemblies 320, and the multiple rack assemblies 320 are fixedly arranged on the rotating shaft 310 at intervals along the axial direction of the rotating shaft 310. Those skilled in the art can understand that when the width of the feeding bin 100 is relatively wide, that is, when the interval between the first side plate 110 and the second side plate 120 is relatively large, setting only one rack assembly 320 is not conducive to scattering the tea. In this case, the above - mentioned problem can be overcome by setting multiple rack assemblies 320. Those skilled in the art can also understand that the interval between adjacent rack assemblies 320 can be set with reference to the length of the tea being conveyed. Generally, the interval between adjacent rack assemblies 320 can be set to be equal to or close to the length of the tea being conveyed. Of course, those skilled in the art can also adjust according to the actual effect.
[0035] Please continue to refer to Figure 2 and Figure 3, in some embodiments, along the conveying direction of the conveyor belt 200, the width dimension of the feeding bin 100 remains unchanged. The width dimension of the feeding bin 100, that is, the interval dimension between the first side plate 110 and the second side plate 120. In a traditional conveying device, along the conveying direction, the width of the feeding bin 100 gradually decreases, thus forming a constricted form.
[0036] In the embodiments of the present application, it is set that the width of the feeding bin 100 remains unchanged. In this way, during the process of the tea leaves being conveyed by the conveyor belt 200, it is avoided that the tea leaves are squeezed by the feeding bin 100 in the traditional constricted form. That is, in the embodiments of the present application, the tea leaves will not be squeezed by the first side plate 110 and the second side plate 120 during the conveying process, thereby further avoiding the winding of the tea leaves during the conveying process.
[0037] Please continue to refer to Figure 2 and Figure 3 , in some embodiments, along the direction from the opening at the bottom of the feeding bin 100 to the first feed port 101, the cross-section of the feeding bin 100 gradually increases. That is, from the opening at the bottom of the feeding bin 100 to the first discharge port 102, the feeding bin 100 is trapezoidally arranged. In this way, the area of the first feed port 101 is larger than the area of the opening, which is convenient for feeding tea leaves into the feeding bin 100 and avoids the tea leaves from scattering outside.
[0038] Please continue to refer to Figure 2 and Figure 3 , in some embodiments, the end of the conveyor belt 200 is inclined away from the feeding bin 100. That is, at the first discharge port 102 of the feeding bin 100, the conveyor belt 200 is inclined downward. In this way, it is convenient for the tea leaves to fall from the first discharge port 102.
[0039] Please continue to refer to Figure 2 and Figure 3 , in some embodiments, the feeding device further includes a vibrating bowl 400. The vibrating bowl 400 is located below the conveyor belt 200, and the vibrating bowl 400 is used to receive the tea leaves falling from the first discharge port 102. Those skilled in the art can understand that the vibrating bowl 400 includes a second feed port 410 and a second discharge port 420. The second feed port 410 is communicated with the first discharge port 102. In this way, the tea leaves flowing out from the first discharge port 102 will enter the vibrating bowl 400 from the second feed port 410; the tea leaves fall from the second discharge port 420.
[0040] Those skilled in the art can understand that the vibrating bowl 400 is a prior art and will not be elaborated here.
[0041] In the embodiments of the present application, after the tea leaves enter the vibrating bowl 400, they are further vibrated and dispersed, thereby further ensuring that the tea leaves are not wound.
[0042] Please continue to refer to Figure 2 and Figure 3 In some embodiments, the blanking device further includes a detection sensor 500 for detecting the accumulation amount of tea leaves in the vibrating disk 400. Those skilled in the art can understand that when there is too much accumulation of tea leaves in the vibrating disk 400, more tea leaves may get entangled again in the vibrating disk 400. Therefore, in the embodiments of the present application, by setting the detection sensor 500 to detect the accumulation amount of tea leaves in the vibrating disk 400, when the accumulation amount of tea leaves in the vibrating disk 400 reaches a threshold, the conveyor belt 200 can stop running. At this time, no more tea leaves are conveyed to the vibrating disk 400. At this time, the tea leaves in the vibrating disk 400 are conveyed by the vibrating disk 400 and fall out from the second discharge port 420. And when the detection sensor 500 detects that the accumulation amount of tea leaves in the vibrating disk 400 is lower than a certain threshold, the conveyor belt 200 starts to run and continues to convey the tea leaves to the vibrating disk 400. In the embodiments of the present application, by setting the detection sensor 500, it is possible to avoid excessive accumulation of tea leaves in the vibrating disk 400, ensure that the tea leaves in the vibrating disk 400 are always within an appropriate range, and thus prevent the tea leaves from getting entangled in the vibrating disk 400.
[0043] Those skilled in the art can understand that when the conveyor belt 200 stops running, the anti-entanglement device 300 can also stop running to save energy. Of course, when the conveyor belt 200 is running, the anti-entanglement device 300 can also run together to ensure that the tea leaves falling from the first discharge port 102 are not entangled.
[0044] Those skilled in the art can also understand that the installation position of the detection sensor 500 is not specifically limited in the embodiments of the present application. For example, it can be installed on the first side plate 110 or on the frame 20. Specifically, those skilled in the art can install it according to the actual situation on site.
[0045] Please refer to Figure 2 and Figure 4 In some embodiments, the blanking device further includes an aggregate bin 600 located below the second discharge port 420 of the vibrating disk 400 for collecting the tea leaves falling from the vibrating disk 400. In the embodiments of the present application, the aggregate bin 600 can be installed on the bottom plate 21 of the frame 20. The specific installation method can be set by those skilled in the art according to the actual situation, and is not specifically limited in the embodiments of the present application. By setting the aggregate bin 600, it is convenient to collect the tea leaves falling from the second discharge port 420 of the vibrating disk 400.
[0046] Please continue to refer to Figure 2 and Figure 4, in some embodiments, the aggregate bin 600 includes a bin body 610 and a switch door 620. The switch door 620 is hinged to the bottom of the bin body 610. The tea enters the bin body 610 from the upper end of the bin body 610. The switch door 620 is used to open and close the bottom of the bin body 610 so that the bin body 610 can collect or discharge the tea. Specifically, the bin body 610 includes a third feed inlet and a third discharge outlet. The third feed inlet is located at the upper end of the bin body 610, and the third discharge outlet is located at the bottom of the bin body 610. That is, the tea falling from the second discharge outlet 420 enters the bin body 610 through the third feed inlet. The switch door 620 is used to open and close the third discharge outlet.
[0047] Please continue to refer to Figure 2 and Figure 4 , obviously, the aggregate bin 600 may further include a driving device 630, such as a motor, etc. The driving device 630 is used to drive the switch door 620 to open and close the third discharge outlet. In the embodiment of the present application, when the tea in the aggregate bin 600 is collected to a set amount, the driving device 630 can be used to drive the switch door 620 to open the third discharge outlet to discharge the tea in the aggregate bin 600. At this time, the vibrating disk 400 can stop running; when the discharge of the tea in the aggregate bin 600 is completed, the driving device 630 is used to drive the switch door 620 to close the third discharge outlet, and the next round of tea collection can be carried out.
[0048] Please continue to refer to Figure 2 and Figure 4 , in some embodiments, the blanking device further includes a weighing device 700. The weighing device 700 includes a fixed seat 710 and a weighing sensor 720. The weighing sensor 720 is arranged on the fixed seat 710; the aggregate bin 600 is fixed on the weighing sensor 720.
[0049] In the embodiment of the present application, by fixing the entire aggregate bin 600 on the weighing sensor 720, the aggregate bin 600 can be weighed at all times, that is, the tea in the aggregate bin 600 can be weighed at all times. In this way, the weight of the tea in the aggregate bin 600 can be accurately controlled. When the weight of the tea reaches the set value, the vibrating disk 400 can be stopped, and the tea in the aggregate bin 600 can be processed. For example, the third discharge outlet of the aggregate bin 600 can be opened through the switch door 620 to discharge the tea in the aggregate bin 600. Obviously, by setting the weighing device 700, the weight of the tea discharged from the aggregate bin 600 each time can be accurately controlled, so as to ensure the consistency of the tea weight in the next process.
[0050] Please continue to refer to Figure 2 and Figure 4, as can be known to those skilled in the art, the fixed seat 710 of the weighing device 700 can be installed on the bottom plate 21 of the frame 20, the weighing sensor 700 is arranged on the top of the fixed seat 710, and the aggregate bin 600 can be installed on the weighing sensor 720 of the weighing device 700. The weighing device 700 may further include a shock pad 730, and the shock pad 730 is arranged between the fixed seat 710 and the bottom plate 21. In this way, the influence of the vibration during the operation of the blanking device on the weighing device 700 can be reduced, thereby reducing the influence of the vibration on the weighing accuracy and improving the weighing precision. It can be understood that the structure of the weighing device 700 and its installation method are both prior arts. For example, the weighing device can be directly purchased and fixed with bolts, etc., which will not be elaborated here.
[0051] Please refer to Figure 1 and Figure 2 , in some embodiments, the blanking device includes two blanking components 10, and the two blanking components 10 are arranged side by side. Specifically, the two feeding bins 100 are arranged side by side and parallel, and the two conveyor belts 200 are respectively arranged below the two feeding bins 100. It should be noted that when two blanking components 10 are provided, the anti-winding device 300 can be shared. That is, the rotating shaft 310 of the anti-winding device 300 can pass through the two feeding bins 100. Such a setting can reduce costs. Of course, those skilled in the art can also further delete components according to the actual installation situation. Specifically, those skilled in the art can make adjustments according to the installation space and actual situation, and no specific limitations are made in the embodiments of the present application.
[0052] In addition, when two blanking components 10 are provided, the second discharge ports 420 of the two vibrating discs 400 can be made to be close to each other. In this way, space can be saved and the space utilization rate can be improved.
[0053] The embodiments of the present application have been introduced in detail above. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the method and its core idea of the present application.
Claims
1. A blanking device, characterized in that, Comprising: A blanking component, the blanking component includes a feeding bin, a conveyor belt and an anti-winding device. The conveyor belt is located below the feeding bin, and there is a gap between the conveyor belt and the bottom of the feeding bin. A first feeding port is provided at the top of the feeding bin, and an opening is provided at the bottom of the feeding bin. A first discharge port is provided at one end of the feeding bin, and the first discharge port is located at the end of the conveyor belt. The anti-winding device includes a rotating shaft and a rack assembly. The rotating shaft is rotatably connected to the feeding bin. The rack assembly includes a plurality of racks. The plurality of racks are all fixed to the rotating shaft and are arranged at intervals along the circumferential direction of the rotating shaft. At least part of the racks extend into the feeding bin, and there is a gap between the end of the rack away from the rotating shaft and the conveyor belt.
2. The blanking device according to claim 1, characterized in that, There are a plurality of the rack assemblies, and the plurality of rack assemblies are fixedly arranged on the rotating shaft at intervals along the axial direction of the rotating shaft.
3. The blanking device according to claim 1, wherein Along the transmission direction of the conveyor belt, the width dimension of the feeding bin remains unchanged. Along the direction from the opening to the first feeding port, the cross-section of the feeding bin gradually increases.
4. The blanking device according to claim 1, wherein The end of the conveyor belt is inclined away from the feeding bin.
5. The blanking device according to claim 1, characterized in that, The blanking equipment further includes a vibrating disk. The vibrating disk is located below the conveyor belt, and the vibrating disk is used to receive the materials falling from the first discharge port.
6. The blanking device according to claim 5, wherein The blanking equipment further includes a detection sensor. The detection sensor is used to detect the accumulation amount of the materials in the vibrating disk.
7. The blanking device according to claim 5, characterized in that The blanking equipment further includes an aggregate bin. The vibrating disk includes a second discharge port. The aggregate bin is located below the second discharge port, and the aggregate bin is used to collect the materials falling from the vibrating disk.
8. The blanking device according to claim 7, characterized in that, The aggregate bin includes a bin body and a switch door. The switch door is hinged to the bottom of the bin body. The materials enter the bin body from the upper end of the bin body. The switch door is used to open and close the bottom of the bin body so that the bin body can collect or discharge the materials.
9. The blanking device according to claim 7, wherein, The blanking equipment further includes a weighing device. The weighing device includes a fixed seat and a weighing sensor. The weighing sensor is arranged on the fixed seat. The aggregate bin is fixed on the weighing sensor.
10. The blanking device according to any one of claims 1-9, characterized in that, The blanking equipment includes two blanking components, and the two blanking components are arranged side by side.