Material distributing and steaming equipment
By designing the sliding connection between the material separation funnel and the connecting funnel in the material separation and steaming equipment, the automatic separation of materials is achieved, solving the problem of low material sorting automation and improving production efficiency.
Patent Information
- Application Number
- CN202422179338.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-05
AI Technical Summary
In the prior art, the degree of automation of material sorting leads to low production efficiency.
Design a material separation and steaming equipment to automatically separate unqualified materials through the sliding connection between the material separation funnel and the connecting funnel to ensure that the qualified materials enter the next process.
Improve production efficiency, avoid the steps of manually sorting unqualified materials, and improve the degree of automation of production.
Smart Images

Figure CN223149628U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of processing equipment, and particularly to a material sorting and steaming equipment. Background Art
[0002] Currently, in many processing fields such as food and raw materials, precise control of the parameters of each portion of the material is required to ensure the consistency of the next process. However, currently, for qualified materials, the automation of sorting is insufficient, resulting in low production efficiency. Summary of the Utility Model
[0003] The purpose of the present application is to provide a material sorting and steaming equipment to solve the above problems. By setting a material sorting funnel and a connecting funnel, unqualified materials can be quickly separated, thereby improving production efficiency.
[0004] The material sorting and steaming equipment provided by the present application includes: a material sorting and steaming assembly, the material sorting and steaming assembly including a sorter and a steamer; the steamer includes an aggregate box, and a feed inlet is provided at the top of the aggregate box; the sorter is slidably connected to the aggregate box, the sorter includes a fixedly connected material sorting funnel and a connecting funnel, and the sorter can slide to the material sorting funnel to cover the feed inlet or slide to the connecting funnel to communicate with the feed inlet; when the material meets the standard, the sorter slides to make the connecting funnel communicate with the feed inlet, and the material enters the aggregate box through the connecting funnel; when the material does not meet the standard, the sorter slides to make the material sorting funnel cover the feed inlet, and the material is separated by the material sorting funnel.
[0005] In some embodiments, the material sorting and steaming assembly further includes a first driving device for driving the sorter to slide.
[0006] In some embodiments, the material sorting and steaming assembly further includes a recycling bin for recycling the materials separated by the material sorting funnel.
[0007] In some embodiments, the aggregate box includes an aggregate bin and a steaming bin that communicate with each other, and the feed inlet is provided at the top of the aggregate bin; the aggregate box further includes a push plate located in the aggregate bin, and the push plate can push the materials in the aggregate bin into the steaming bin.
[0008] In some embodiments, the push plate abuts against the inner wall of the aggregate bin.
[0009] In some embodiments, a steam inlet is provided at the bottom of the steaming bin, and a steam outlet is provided at the top of the steaming bin.
[0010] In some embodiments, the steaming device further includes an exhaust pipe, and the exhaust pipe is communicated with the steam outlet.
[0011] In some embodiments, the steaming device further includes a steam tank, and the steam tank is communicated with the steam inlet.
[0012] In some embodiments, the material distributing and steaming assembly further includes a feeder, and the feeder is located above the distributor; the feeder includes a feeding bin and a weighing device, and the weighing device is used for weighing the weight of the material in the feeding bin; the feeding bin has a discharge port, and the discharge port is directly opposite to the feeding port.
[0013] In some embodiments, there are two material distributing and steaming assemblies, and the two material distributing and steaming assemblies are arranged side by side.
[0014] In the embodiments of the present application, when unqualified materials enter, the unqualified materials are separated by the material distribution funnel, and when qualified materials enter, they enter the aggregate box through the communication funnel. In this way, manual sorting of unqualified materials can be avoided, thereby improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions of the present application, the drawings required for the embodiments will be briefly introduced below.
[0016] Figure 1 FIG. is a schematic diagram of the overall structure of the material distributing and steaming equipment provided by the embodiments of the present application.
[0017] Figure 2 FIG. is an exploded view of the material distributing and steaming equipment provided by the embodiments of the present application.
[0018] Figure 3 FIG. is a schematic diagram of the aggregation of the material distributing and steaming assembly provided by the embodiments of the present application.
[0019] Figure 4 FIG. is a schematic diagram of the steaming of the material distributing and steaming assembly provided by the embodiments of the present application.
[0020] Description of the drawing reference numerals: 10 - material distributing and steaming assembly, 20 - frame, 21 - mounting plate, 22 - fixing plate, 23 - moving plate, 24 - push rod, 25 - guide rod, 30 - tea leaves, 100 - material distributor, 110 - material distributing funnel, 111 - material guiding plate, 112 - material blocking plate, 120 - communicating funnel, 121 - side plate, 200 - steaming device, 210 - collecting box, 211 - feeding port, 212 - collecting bin, 213 - steaming bin, 214 - pushing plate, 215 - top plate, 216 - bottom plate, 217 - steam inlet, 218 - steam outlet, 220 - exhaust pipe, 230 - steam tank, 240 - steam valve, 300 - first driving device, 400 - recycling bucket, 410 - storage part, 420 - receiving part, 500 - feeding device, 510 - feeding bin, 511 - discharging port, 512 - bin body, 513 - switch door, 514 - third driving device, 520 - weighing device, 600 - second driving device. Detailed implementation manners
[0021] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application.
[0022] Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , the material distributing and steaming equipment provided by the embodiments of the present application includes: a material distributing and steaming assembly 10, and the material distributing and steaming assembly 10 includes a material distributor 100 and a steaming device 200; the steaming device 200 includes a collecting box 210, and a feeding port 211 is provided at the top of the collecting box 210; the material distributor 100 is slidably connected to the collecting box 210, and the material distributor 100 includes a fixedly connected material distributing funnel 110 and a communicating funnel 120. The material distributor 100 can slide to the position where the material distributing funnel 110 shields the feeding port 211, or slide to the position where the communicating funnel 120 communicates with the feeding port 211; when the material meets the standard, the material distributor 100 slides to make the communicating funnel 120 communicate with the feeding port 211, and the material enters the collecting box 210 through the communicating funnel 120.
[0023] In the case where the material does not meet the standard, the diverter 100 slides to cause the diverting funnel 110 to shield the feed inlet 211, and the material is separated by the diverting funnel 110. In the embodiment of the present application, when the material meets the standard, the diverter 100 can be moved to connect the feed inlet 211 that connects the communicating funnel 120 and the aggregate box 210, so that the material enters the aggregate box 210 for use in the next process; and when the material does not meet the standard, the diverter 100 can be moved to cause the diverting funnel 110 to shield the feed inlet 211, and the material is separated by the diverting funnel 110, thereby preventing the non-conforming material from entering the next process. In the embodiment of the present application, when separating the non-conforming material, it is not necessary for workers to manually perform the separation. Instead, the separation is automatically performed by the diverter 100, which can improve production efficiency.
[0024] The standard in the embodiment of the present application can be set by those skilled in the art according to the actual situation. For example, it can be set whether the weight of the material meets the standard; it can also be set whether the volume of the material meets the standard, etc. The embodiment of the present application does not make specific limitations. The embodiment of the present application will be described by taking the sorting of tea 30 as an example. In the production process of tea 30, a tea steaming process is involved. During the tea steaming process, it is necessary to ensure the weight consistency of tea 30. Therefore, before entering the tea steaming process, the tea 30 with an unqualified weight needs to be separated. Only in this way can the consistency of the steaming process be ensured.
[0025] Specifically, the aggregate box 210 is a rectangular box body. The aggregate box 210 may include a top plate 215 and a bottom plate 216 arranged oppositely, and the feed inlet 211 is opened on the top plate 215. The material distribution and steaming assembly 10 may further include a frame 20. Specifically, the frame 20 may include a mounting plate 21, and the bottom plate 216 of the aggregate box 210 may be fixed on the mounting plate 21, for example, fixed using bolts, etc., which will not be elaborated here.
[0026] In the embodiment of the present application, the diverter 100 is slidably connected to the aggregate box 210. It can be that the diverter 100 is slidably connected to the frame 20, or the diverter 100 is slidably connected to the top plate 215 of the aggregate box 210. The embodiment of the present application does not make specific limitations. Specifically in this embodiment, the case where the diverter 100 is slidably connected to the top plate 215 of the aggregate box 210 will be used as an example for description.
[0027] Specifically, the material distributor 100 includes a fixedly connected material distribution funnel 110 and a connecting funnel 120. Among them, the connecting funnel 120 is generally in the shape of a cuboid frame, that is, the connecting funnel 120 can be formed by enclosing four side plates 121. Obviously, the top of the connecting funnel 120 serves as the feed inlet of the connecting funnel 120, and the bottom serves as the discharge port of the connecting funnel 120, and the cross-sectional area of the feed inlet is larger than that of the discharge port. Of course, those skilled in the art should also understand that the connecting funnel 120 can also be of other shapes, and specifically, those skilled in the art can set it according to the actual situation. In the embodiment of the present application, the cross-sectional area of the discharge port of the connecting funnel 120 is smaller than the cross-sectional area of the feed inlet 211 of the aggregate box 210, so that the tea leaves 30 in the connecting funnel 120 can smoothly fall into the aggregate bin 212.
[0028] The material distribution funnel 110 is fixedly connected to the outside of one of the side plates 121 of the connecting funnel 120. Specifically, the material distribution funnel 110 may include a guiding plate 111 and a baffle plate 112. One fixed end of the guiding plate 111 is connected to one of the side plates 121 of the connecting funnel 120, and the other side of the guiding plate 111 is fixedly connected to the baffle plate 112. Obviously, in the embodiment of the present application, the guiding plate 111 is inclined, that is, the guiding plate 111 is arranged at an acute angle with the horizontal plane. When the material distribution funnel 110 is located above the feed inlet 211 of the aggregate box 210, the guiding plate 111 can shield the feed inlet 211 of the aggregate box 210. Therefore, the tea leaves 30 will not fall into the aggregate box 210 but are guided away by the guiding plate 111, thereby realizing the separation of the tea leaves 30.
[0029] In some embodiments, the material distribution and steaming assembly 10 further includes a first driving device 300, and the first driving device 300 is used to drive the material distributor 100 to slide. It can be understood that the first driving device 300 can be a motor, a hydraulic cylinder or a cylinder, etc. The first driving device 300 can be installed on the top plate 215 of the aggregate box 210. Specifically, the fixed end of the first driving device 300 is fixedly connected to the top plate 215 of the aggregate box 210. Of course, for the convenience of installation, those skilled in the art can also set a transfer plate, etc., and the embodiment of the present application does not make specific restrictions. The driving end of the first driving device 300 is fixedly connected to the material distributor 100.
[0030] Those skilled in the art can also understand that the driving end of the first driving device 300 is fixedly connected to the material distributor 100. It can be that the driving end of the first driving device 300 is fixedly connected to the material distribution funnel 110, or it can be that the driving end of the first driving device 300 is fixedly connected to the communicating funnel 120. In the embodiment of the present application, it is preferably that the driving end of the first driving device 300 is fixedly connected to the communicating funnel 120. Specifically, the material distribution funnel 110 is fixedly connected to the communicating funnel 120, and the material distribution funnel 110 is located on the side close to the fixed end of the first driving device 300. Since there is a spaced space between the guiding plate 111 of the material distribution funnel 110 and the top plate 215 of the aggregate box 210, the driving end of the first driving device 300 can pass through the space between the guiding plate 111 and the top plate 215 and then be fixedly connected to the side plate 121 of the communicating funnel 120. In this way, the installation space can be reduced. Of course, those skilled in the art can adopt other installation methods according to the actual situation, as long as it is ensured that the first driving device 300 can drive the material distribution funnel 110 to cover the feeding port 211 or the communicating funnel 120 to communicate with the feeding port 211.
[0031] In some embodiments, the material distribution and steaming component 10 further includes a recycling bucket 400, and the recycling bucket 400 is used to recycle the tea leaves 30 separated by the material distribution funnel 110. Specifically, the frame 20 can further include a first vertical plate (not shown in the figure), and the recycling bucket 400 can be fixedly connected to the first vertical plate, for example, by bolts or quick buckles, etc. Those skilled in the art can understand that since the recycling bucket 400 needs to be frequently replaced, in actual use, it is preferably fixed by a quick buckle. Of course, the recycling bucket 400 can also be directly placed on the installation base surface, such as the ground. Specifically, those skilled in the art can set it according to the actual situation, and the embodiment of the present application does not make specific limitations. Those skilled in the art can also understand that the shape of the recycling bucket 400 can also be designed by those skilled in the art according to the actual situation, and the embodiment of the present application does not make specific limitations either. Specifically in the embodiment of the present application, the recycling bucket 400 includes a storage part 410 and a receiving part 420 that are interconnected. The storage part 410 can be formed by enclosing four panels and is in the shape of a cuboid, with a fixed baffle at the bottom, so that the waste storage capacity and the installation convenience can be increased. The receiving part 420 is used to receive the waste separated by the material distribution funnel 110. Therefore, the cross-section of the receiving part 420 can be larger than the cross-section of the storage part 410 to facilitate receiving the waste. Specifically, the receiving part 420 can also be formed by enclosing four panels, and one of the panels can extend obliquely towards the side of the material distribution funnel 110 to facilitate receiving the waste separated by the material distribution funnel 110. It can be understood that the opening at the upper end of the receiving part 420 should be larger than the opening of the material distribution funnel 110 to facilitate the material distribution funnel 110 to introduce the non-standard tea leaves 30 into the recycling bucket 400.
[0032] In some embodiments, the aggregate box 210 includes an aggregate bin 212 and a steaming bin 213 that communicate with each other. The feed inlet 211 is provided at the top of the aggregate bin 212. The aggregate box 210 further includes a push plate 214. The push plate 214 is located in the aggregate bin 212, and the push plate 214 can push the tea leaves 30 in the aggregate bin 212 to the steaming bin 213. In the embodiments of the present application, the feed inlet 211 is opened on the top plate 215 and is in communication with the aggregate bin 212. When the tea leaves 30 meet the standard requirements, the material dropping port at the bottom of the connecting funnel 120 is directly opposite to the feed inlet 211. At this time, the qualified tea leaves 30 can enter the aggregate bin 212. Those skilled in the art can understand that at this time, the push plate 214 in the aggregate bin 212 is located on the side of the aggregate bin 212 away from the steaming bin 213, and the push plate 214 is also located on the side of the feed inlet 211 away from the steaming bin 213. That is, the tea leaves 30 falling from the feed inlet 211 into the aggregate bin 212 will not be blocked by the push plate 214. After the tea leaves 30 enter the aggregate bin 212, the tea leaves 30 need to be further steamed. At this time, the push plate 214 can be used to push the tea leaves 30 so that the tea leaves 30 enter the steaming bin 213 from the aggregate bin 212, thereby preventing the tea leaves 30 from overflowing from the feed inlet 211 during the steaming process.
[0033] In some embodiments, the push plate 214 abuts against the inner wall of the aggregate bin 212. It can be understood that the part of the push plate 214 in contact with the inner wall surface of the aggregate bin 212 can be made of a flexible material or an elastic material, so as to facilitate the contact between the push plate 214 and the inner wall of the aggregate bin 212, avoid damage to the inner wall of the aggregate bin 212 caused by the movement of the push plate 214, and in addition, ensure that the tea leaves 30 in the aggregate bin 212 can be completely pushed into the steaming bin 213; and during the steaming process of the tea leaves 30, the push plate 214 can restrain the tea leaves 30 to prevent the tea leaves 30 from overflowing from the side of the push plate 214.
[0034] Those skilled in the art can also understand that the material distribution and steaming assembly 10 may further include a second driving device 600. The second driving device 600 can be a motor, a hydraulic cylinder or a cylinder, etc. The second driving device 600 can be fixed on the mounting plate 21. Specifically, the fixed end of the second driving device 600 is fixed on the mounting plate 21, and the driving end of the second driving device 600 is fixedly connected to the push plate 214 to drive the push plate 214 to move.
[0035] In some embodiments, a steam inlet 217 is provided at the bottom of the steaming bin 213, and a steam outlet 218 is provided at the top of the steaming bin 213. Specifically, the steam inlet 217 is provided on the bottom plate 216 of the collecting box 210, and the steam outlet 218 is provided on the top plate 215 of the collecting box 210. Steam enters the steaming bin 213 from the steam inlet 217, and the tea leaves 30 are steamed in the steaming bin 213, and then the steam is discharged from the steaming bin 213 through the steam outlet 218. It can be understood by those skilled in the art that both the steam inlet 217 and the steam outlet 218 can be formed by arranging a plurality of fine holes. It should also be noted by those skilled in the art that the pores of the steam inlet 217 and the steam outlet 218 should have a small aperture to prevent the tea leaves 30 from overflowing the steaming bin 213 from the steam inlet 217 and / or the steam outlet 218.
[0036] In some embodiments, the steamer 200 further includes an exhaust pipe 220, which is connected to the steam outlet 218. Specifically, the exhaust pipe 220 can be fixed on the top plate 215 of the material collecting bin 212 and connected to the steam outlet 218, so that the steam in the steaming bin 213 can be discharged to prevent the steam from flowing randomly.
[0037] In some embodiments, the steamer 200 further includes a steam groove 230, and the steam groove 230 is connected to the steam inlet 217. Specifically, the steam groove 230 is fixed to the side of the bottom plate 216 of the material collecting bin 212 away from the material collecting bin 212, and is connected to the steam inlet 217. In the embodiment of the present application, by providing the steam groove 230, the pressure of the steam can be reduced, and the steam entering the steaming bin 213 can be ensured to be smooth, which is conducive to the steaming of the tea leaves 30.
[0038] The steamer 200 may further include a steam valve 240. It may be understood by those skilled in the art that, in the embodiment of the present application, an external steam source is also included, and the steam in the steam source is connected to the steam tank 230 through the steam valve 240, thereby providing steam for the steaming bin 213. The steam valve 240 can be provided to control the steam pressure and ensure the safety of steam use.
[0039] In some embodiments, the material distribution and steaming assembly 10 further includes a feeder 500, which is located above the distributor 100; the feeder 500 includes a feeding bin 510 and a weighing device 520, and the weighing device 520 is used to weigh the weight of the tea 30 in the feeding bin 510; the feeding bin 510 has a discharge port 511, and the discharge port 511 faces the feed port 211. Specifically, the weighing device 520 can be fixed on the frame 20. For example, the frame 20 can further include a second vertical plate (not shown in the figure), and the weighing device 520 can include a fixed part and a weighing part that are connected to each other, and the fixed part can be fixed on the second vertical plate. Those skilled in the art can understand that the weighing device 520 is a prior art and can be directly purchased, and the embodiments of the present application will not be specifically introduced hereinafter.
[0040] The feeding bin 510 can include a bin body 512, a switch door 513 and a third driving device 514. The discharge port 511 is located at the bottom of the bin body 512. The switch door 513 is hinged to the bin body 512 and is used to open and close the discharge port 511. The third driving device 514 can be installed outside the bin body 512 and is used to drive the switch door 513. The third driving device 514 can be a motor, a hydraulic cylinder or a cylinder, etc. One outer wall surface of the bin body 512 can be fixed on the weighing part through a connecting plate. In this way, the weighing device 520 can weigh the bin body 512 in real time, so that the weight of the tea 30 in the bin body 512 can be known in real time.
[0041] The working principle of the material distribution and steaming assembly 10 in the embodiments of the present application will be described below: When the tea 30 is put into the bin body 512, the weighing part of the weighing device 520 can weigh the weight of the tea 30 in the bin body 512 in real time. When the weight of the tea 30 in the bin body 512 is within the threshold range, that is, when the tea 30 in the bin body 512 meets the standard, further adding tea 30 into the bin body 512 is stopped; at this time, the first driving device 300 drives the distributor 100 to connect the communicating funnel 120 with the feed port 211, and then the third driving device 514 drives the switch door 513 to rotate, so that the discharge port 511 of the bin body 512 is opened. In this way, the tea 30 in the bin body 512 falls into the aggregate bin 212 through the communicating funnel 120, and then the second driving device 600 drives the push plate 214 to push the tea 30 in the aggregate bin 212 into the steaming bin 213, and then the steam valve 240 is opened, so that the steam enters the steaming bin 213 through the steam tank 230 and steams the tea 30 in the steaming bin 213, and the steam then discharges from the exhaust pipe 220. Thus, the sorting and steaming of the tea 30 are completed.
[0042] When too much tea 30 is put into the bin 512 and it is found by weighing with the weighing part of the weighing device 520 that the weight of the tea 30 in the bin 512 exceeds the threshold, it can be determined at this time that the tea 30 in the bin 512 does not meet the standard; in this case, first stop further adding tea 30 to the bin 512 to avoid excessive waste, and then drive the diverter 100 through the first driving device 300 so that the diverting funnel 110 shields the feed inlet 211. At this time, the diverting funnel 110 is communicated with the recycling bucket 400; then drive the switch door 513 to rotate through the third driving device 514 to open the discharge port 511. At this time, the non-standard tea 30 in the bin 512 will fall into the diverting funnel 110 and then enter the recycling bucket 400 through the diverting funnel 110, thus completing the automatic separation of the non-standard tea 30.
[0043] In some embodiments, there are two of the material dividing and steaming components 10, and the two material dividing and steaming components 10 are arranged side by side. Those skilled in the art can understand that when two material dividing and steaming components 10 are adopted, it can be considered whether some components can be shared by the two material dividing and steaming components 10. For example, the first driving device 300, the second driving device 600, the third driving device 514, etc. can be shared. In this way, cost and installation space can be saved. The embodiments of the present application will take sharing the second driving device 600 as an example for illustration.
[0044] Specifically, the frame 20 further includes a fixing plate 22, a moving plate 23 and two push rods 24. The fixing plate 22 is fixed on the mounting plate 21, the fixed end of the second driving device 600 is fixed on the fixing plate 22, and the driving end of the second driving device 600 is fixedly connected to the moving plate 23. One end of one push rod 24 is fixedly connected to one of the push plates 214, and the other end is fixedly connected to the side of the moving plate 23 away from the second driving device 600; one end of the other push rod 24 is fixedly connected to the other push plate 214, and the other end is fixedly connected to the side of the moving plate 23 away from the second driving device 600; in this way, one second driving device 600 drives two push plates 214, so that one second driving device 600 can be saved.
[0045] Furthermore, in order to ensure the smooth operation of the push plate 214, a guide rod 25 can also be provided. Specifically, the guide rod 25 can be fixed on the mounting plate 21, or the guide rod 25 can be provided between the fixing plate 22 and the aggregate box 210. The specific setting method and quantity can be set by those skilled in the art according to the actual situation. Then the moving plate 23 is sleeved on the guide rod 25, so as to realize the guiding of the moving plate 23, make the moving plate 23 drive the push rod 24 to operate smoothly, and also make the push plate 214 operate smoothly. Those skilled in the art can understand that the setting method of the guide rod 25 is the prior art, and the embodiments of the present application will not elaborate on it specifically.
[0046] The above has introduced the embodiments of the present application in detail. Specific examples are used herein 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 of the present application and its core idea.
Claims
1. A material distributing and steaming device, characterized in that Comprising: A material distributing and steaming component, which includes a material distributor and a steamer; The steamer includes an aggregate box, and a feed inlet is provided at the top of the aggregate box; The material distributor is slidably connected to the aggregate box. The material distributor includes a fixedly connected material distribution funnel and a communicating funnel. The material distributor can slide to cover the feed inlet with the material distribution funnel, or slide to communicate the communicating funnel with the feed inlet; When the material meets the standard, the material distributor slides to communicate the communicating funnel with the feed inlet, and the material enters the aggregate box through the communicating funnel; when the material does not meet the standard, the material distributor slides to cover the feed inlet with the material distribution funnel, and the material is separated by the material distribution funnel.
2. The material dividing and steaming device according to claim 1, characterized in that The material distributing and steaming component further includes a first driving device for driving the material distributor to slide.
3. The material distributing and steaming equipment according to claim 1, wherein The material distributing and steaming component further includes a recycling bucket for recycling the material separated by the material distribution funnel.
4. The material dividing and steaming equipment according to claim 1, characterized in that The aggregate box includes an aggregate bin and a steaming bin that communicate with each other. The feed inlet is provided at the top of the aggregate bin; the aggregate box further includes a push plate located in the aggregate bin, and the push plate can push the material in the aggregate bin into the steaming bin.
5. The material dividing and steaming device according to claim 4, characterized in that, The push plate abuts against the inner wall of the aggregate bin.
6. The material dividing and steaming device according to claim 4, wherein A steam inlet is provided at the bottom of the steaming bin, and a steam outlet is provided at the top of the steaming bin.
7. The material dividing and steaming device according to claim 6, characterized in that, The steamer further includes an exhaust pipe that communicates with the steam outlet.
8. The material dividing and steaming device according to claim 6, wherein The steamer further includes a steam tank that communicates with the steam inlet.
9. The material dividing and steaming equipment according to claim 1, wherein, The material distributing and steaming component further includes a feeder located above the material distributor; The feeder includes a feeding bin and a weighing device for weighing the weight of the material in the feeding bin; The feeding bin has a discharge port that faces the feed inlet.
10. The material dividing and steaming equipment according to any one of claims 1-9, characterized in that, There are two material distributing and steaming components, and the two material distributing and steaming components are arranged side by side.