Feed proportioning and concentrating production line
By designing a feed ratio concentration production line containing crushing and stirring, drying and concentrating and flow guide mechanisms, the problems of complex structure, non-energy saving and low mixing uniformity in the prior art are solved, and the production line is simplified and the uniformity of feed mixing is improved.
Patent Information
- Application Number
- CN202421890900.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-06
AI Technical Summary
The existing feed production line has a complex structure, which is not conducive to energy saving, is difficult to save processes, and the feed mixing uniformity is low.
A feed ratio concentration production line is designed, including a crushing and mixing mechanism, a drying and concentration mechanism and a flow guide mechanism. Through these mechanisms, the functions of crushing, stirring, drying and concentration and uniform dispersion of additives are realized, and the production line structure is simplified.
The structure of the production line is simplified, kinetic energy is saved, the separate drying and concentration process is eliminated, and the uniformity of feed mixing is improved.
Smart Images

Figure CN223010370U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of feed production, in particular to a feed ratio concentration production line. Background Technique
[0002] In a breeding farm, concentrated compound feed is generally used for feeding. The concentrated compound feed is premixed from protein raw materials and additives. The production steps of the concentrated compound feed basically include crushing, mixing and stirring, drying and concentrating, conveying, etc.
[0003] When the production line produces feed, the crushing and mixing and stirring processes are separate structures, which are not only complex in structure, but also not conducive to the energy saving of the production line; when producing feed, the mixed feed is generally stirred and then conveyed to the drying and concentrating structure, and it is not easy to dry and concentrate the feed during the conveying process, and it is not easy to save processes; when the concentrated compound feed is mixed and stirred, the additive generally enters the stirring tank through the liquid inlet pipe, and it is not easy to evenly disperse the liquid during liquid inlet, which easily affects the uniformity of feed mixing when the production line is used. Content of the Utility Model
[0004] The purpose of the utility model is to provide a feed ratio concentration production line to solve the problems of complex structure, not conducive to energy saving of the production line, not easy to save processes, and low uniformity of feed mixing proposed in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solution: a feed ratio concentration production line, including a base, a control panel is installed on the surface of the base, a stirring tank is fixed on the surface of the base, a crushing tank is fixed on the top of the stirring tank, a liquid inlet pipe is fixed on one side at the top position of the stirring tank, a conveying part is installed on the surface of the base, the conveying part is controlled by the control panel, a discharge pipe is fixed at the bottom of the stirring tank, a control valve is installed on the surface of the discharge pipe, the input end of the control valve is electrically connected to the output end of the control panel, a crushing and stirring mechanism is arranged on the surfaces of the stirring tank and the crushing tank, the inside of the crushing and stirring mechanism includes a stirring frame and a crushing component, a drying and concentrating mechanism is arranged on the surface of the conveying part, the drying and concentrating mechanism is composed of a drying and concentrating component, a material guiding box and a material guiding plate, a guiding mechanism is arranged inside the stirring tank, and the inside of the guiding mechanism includes a guiding component and a guiding box.
[0006] Preferably, a stirring frame is rotatably connected inside the stirring tank, and a crushing component is arranged on the surface of the crushing tank.
[0007] Preferably, the crushing assembly consists of a feed cover, a cover plate, a driving motor, a crushing frame and a screen. One side of the top position of the crushing tank is fixed with a feed cover, and the surface of the feed cover is covered with a cover plate. One side of the cover plate is rotatably connected to the feed cover, and the other side of the cover plate is fixed to the feed cover through a buckle.
[0008] Preferably, a crushing frame is rotatably connected inside the crushing tank. One end of the crushing frame is fixedly connected to one end of the stirring frame. The central axis of the crushing frame coincides with the central axis of the stirring frame. A driving motor is installed on the surface of the crushing tank. The input end of the driving motor is electrically connected to the output end of the control panel. The output end of the driving motor is fixed with a rotating shaft through a coupling. One end of the rotating shaft is fixedly connected to one end of the crushing frame. A screen is fixed on the surface of the crushing tank. The screen is located between the crushing frame and the stirring frame, and the surface of the screen is rotatably connected to the surface of the crushing frame.
[0009] Preferably, a material guiding box is fixed on the surface of the base. The material guiding box is communicated with the discharge pipe. The bottom position of the material guiding box is communicated with the feed inlet of the conveying part. Material guiding plates are fixed inside the material guiding box. A drying and concentration component is arranged on one side of the material guiding box.
[0010] Preferably, the drying and concentration component includes a heating cover, a temperature monitor, an electric heating wire, a baffle net and a heat conduction net. The outside of the conveying part is sleeved with a heating cover. The surface of the heating cover is fixedly connected to the surface of the material guiding box. Heat conduction nets are inlaid on the surfaces of the heating cover and the material guiding box.
[0011] Preferably, a baffle net is inlaid on the surface of the conveying part. The baffle net is located inside the heating cover. A temperature monitor is installed inside the heating cover. The input end of the temperature monitor is electrically connected to the output end of the control panel. An electric heating wire is installed inside the heating cover. The input end of the electric heating wire is electrically connected to the output end of the control panel.
[0012] Preferably, a diversion box is fixed inside the stirring tank. The structure of the diversion box is an annular structure. The diversion box is located below the liquid inlet pipe, and a diversion component is arranged on the surface of the diversion box.
[0013] Preferably, the diversion component consists of a liquid discharge hole and a diversion hole. Liquid discharge holes are formed at the bottom of the diversion box, and diversion holes are formed along the circumferential direction on one side of the diversion box.
[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows: This feed ratio concentration production line not only has a simple structure, saves the kinetic energy required during the use of the production line, can dry and concentrate the feed during the conveying process, eliminating the need for a separate drying and concentration process, but also improves the uniformity of feed mixing during the use of the production line.
[0015] By setting up a crushing and stirring mechanism, open the cover plate, pour the feed raw materials to be crushed into the interior of the crushing tank, then cover the cover plate, and fix the cover plate and the feed inlet cover through a buckle to prevent raw materials from splashing during crushing. Then operate the control panel to make the control panel control the driving motor to work. Under the action of the driving motor, drive the crushing frame to rotate to crush the raw materials. The crushed raw materials enter the interior of the stirring tank through the sieve mesh. Then, add a fixed amount of additive into the stirring tank through the liquid inlet pipe to mix the additive with the feed. At this time, when the crushing frame rotates, it drives the stirring frame to rotate. Under the action of the stirring frame, stir the additive and the feed to realize the function of integrating crushing and stirring in the production line, and only one motor is required for driving, with a simple structure and saving the kinetic energy required during the use of the production line;
[0016] By setting up a drying and concentrating mechanism, after the feed stirring is completed, the control valve can be controlled to open through the control panel, so that the feed falls into the interior of the guide box through the discharge pipe, and is guided under the action of the guide plate, so that the feed enters the interior of the conveying part. At the same time, control the temperature monitor, the heating wire and the conveying part to work through the control panel. Under the action of the heating wire, heat the interior of the heating cover, and monitor the temperature under the action of the temperature monitor. At this time, part of the hot air is guided into the interior of the guide box through the heat conduction net to pre-dry and concentrate the feed in the guide box. At the same time, under the action of the baffle net, the feed conveyed under the action of the conveying part can be dried and concentrated to realize the function of drying and concentrating the feed during the conveying process in the production line, without a separate drying and concentrating process;
[0017] By setting up a diversion mechanism, when the additive enters the interior of the stirring tank through the liquid inlet pipe, the additive is squeezed into the diversion box. At this time, part of the additive directly falls into the interior of the stirring tank through the drain hole below the liquid inlet pipe, part of the additive flows along the diversion box and is discharged through the drain holes far away from the liquid inlet pipe respectively. At the same time, part of the additive is discharged through the shunt holes, so that the additive is more dispersed when it falls into the interior of the stirring tank, and the additive is more evenly mixed with the raw materials, so as to realize the function of dispersing and guiding the additive in the production line, thereby improving the evenness of feed mixing during the use of the production line. Description of the Drawings
[0018] Figure 1 It is a three-dimensional external structure schematic diagram of the present utility model;
[0019] Figure 2 It is a front view sectional structure schematic diagram of the present utility model;
[0020] Figure 3 It is an enlarged structure schematic diagram of the drying and concentrating mechanism of the present utility model;
[0021] Figure 4Schematic enlarged structure diagram of the diversion mechanism of the present utility model.
[0022] In the figure: 1. Base; 101. Control panel; 102. Stirring tank; 103. Crushing tank; 104. Liquid inlet pipe; 105. Conveying part; 106. Control valve; 107. Discharge pipe; 2. Crushing and stirring mechanism; 201. Stirring frame; 202. Crushing assembly; 2021. Feed cover; 2022. Cover plate; 2023. Driving motor; 2024. Crushing frame; 2025. Screen; 3. Drying and concentrating mechanism; 301. Drying and concentrating component; 3011. Heating cover; 3012. Temperature monitor; 3013. Electric heating wire; 3014. Baffle; 3015. Heat conducting net; 302. Material guiding box; 303. Material guiding plate; 4. Diversion mechanism; 401. Diversion assembly; 4011. Drain hole; 4012. Shunt hole; 402. Diversion box. Detailed implementation manners
[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. In addition, the terms "first", "second", "third", "upper, lower, left, right", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. At the same time, in the description of the present utility model, unless otherwise clearly specified and limited, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0024] The structure of a feed ratio concentration production line provided by the present utility model is as Figure 1 and Figure 2As shown in the figure, it includes a base 1, on the surface of which a control panel 101 is installed. Inside the control panel 101, a lithium battery and a processor are embedded. The processor includes an amplifier tube, a protection resistor Rm, a filter, an A / D converter, and a single-chip microcomputer. The sensor and the protection resistor Rm are connected in parallel with the amplifier tube and then in series with the filter, and the signal is converted by the A / D converter and sent to the single-chip microcomputer. The display screen receives the processed signal sent by the single-chip microcomputer. On the surface of the base 1, a stirring tank 102 is fixed. On the top of the stirring tank 102, a crushing tank 103 is fixed. On one side of the stirring tank 102 at the top position, a liquid inlet pipe 104 is fixed. On the surface of the base 1, a conveying part 105 is installed, and the conveying part 105 is controlled by the control panel 101. At the bottom of the stirring tank 102, a discharge pipe 107 is fixed. On the surface of the discharge pipe 107, a control valve 106 is installed. The model of the control valve 106 can be selected from the TM series. The input end of the control valve 106 is electrically connected to the output end of the control panel 101.
[0025] Further, as Figure 2 shown in the figure, a crushing and stirring mechanism 2 is arranged on the surfaces of the stirring tank 102 and the crushing tank 103. The inside of the crushing and stirring mechanism 2 includes a stirring frame 201 and a crushing component 202. Inside the stirring tank 102, a stirring frame 201 is rotatably connected. On the surface of the crushing tank 103, a crushing component 202 is arranged. The crushing component 202 is composed of a feeding cover 2021, a cover plate 2022, a driving motor 2023, a crushing frame 2024, and a screen 2025. On one side of the crushing tank 103 at the top position, a feeding cover 2021 is fixed. On the surface of the feeding cover 2021, a cover plate 2022 is covered. One side of the cover plate 2022 is rotatably connected to the feeding cover 2021, and the other side of the cover plate 2022 is fixed to the feeding cover 2021 through a buckle. Inside the crushing tank 103, a crushing frame 2024 is rotatably connected. One end of the crushing frame 2024 is fixedly connected to one end of the stirring frame 201. The central axis of the crushing frame 2024 coincides with the central axis of the stirring frame 201. On the surface of the crushing tank 103, a driving motor 2023 is installed. The model of the driving motor 2023 can be selected from the JO series. The input end of the driving motor 2023 is electrically connected to the output end of the control panel 101. The output end of the driving motor 2023 is fixed with a rotating shaft through a coupling. One end of the rotating shaft is fixedly connected to one end of the crushing frame 2024. On the surface of the crushing tank 103, a screen 2025 is fixed. The screen 2025 is located between the crushing frame 2024 and the stirring frame 201, and the surface of the screen 2025 is rotatably connected to the surface of the crushing frame 2024.
[0026] During use, open the cover plate 2022, pour the feed raw materials to be crushed into the interior of the crushing tank 103, then cover the cover plate 2022, and fix the cover plate 2022 to the feed hood 2021 through a buckle to prevent raw materials from splashing during crushing. Then operate the control panel 101 to make the control panel 101 control the driving motor 2023 to work. Under the action of the driving motor 2023, drive the crushing frame 2024 to rotate and crush the raw materials. The crushed raw materials enter the interior of the stirring tank 102 through the sieve mesh 2025. Then, add a certain amount of additive into the stirring tank 102 through the liquid inlet pipe 104 to mix the additive with the feed. At this time, when the crushing frame 2024 rotates, it drives the stirring frame 201 to rotate. Under the action of the stirring frame 201, stir the additive and the feed to realize the function of integrating crushing and stirring in the production line, and only one motor is required for driving.
[0027] Further, as Figure 3 shown, a drying and concentration mechanism 3 is arranged on the surface of the conveying part 105. The drying and concentration mechanism 3 is composed of a drying and concentration component 301, a material guiding box 302 and a material guiding plate 303. The material guiding box 302 is fixed on the surface of the base 1. The material guiding box 302 is communicated with the discharge pipe 107. The bottom position of the material guiding box 302 is communicated with the feed inlet of the conveying part 105. Material guiding plates 303 are fixed inside the material guiding box 302. A drying and concentration component 301 is arranged on one side of the material guiding box 302. The interior of the drying and concentration component 301 includes a heating cover 3011, a temperature monitor 3012, an electric heating wire 3013, a baffle net 3014 and a heat conducting net 3015. The heating cover 3011 is sleeved on the outside of the conveying part 105. The surface of the heating cover 3011 is fixedly connected to the surface of the material guiding box 302. Heat conducting nets 3015 are inlaid on the surfaces of the heating cover 3011 and the material guiding box 302. The baffle net 3014 is inlaid on the surface of the conveying part 105. The baffle net 3014 is located inside the heating cover 3011. The temperature monitor 3012 is installed inside the heating cover 3011. The model of the temperature monitor 3012 can be selected from the SDN series. The input end of the temperature monitor 3012 is electrically connected to the output end of the control panel 101. The electric heating wire 3013 is installed inside the heating cover 3011. The model of the electric heating wire 3013 can be selected from the CR series. The input end of the electric heating wire 3013 is electrically connected to the output end of the control panel 101.
[0028] During use, after the feed mixing is completed, the control valve 106 can be controlled to open through the control panel 101, so that the feed falls into the inside of the material guide box 302 through the discharge pipe 107, and the material is guided under the action of the material guide plate 303, so that the feed enters the inside of the conveying part 105. At the same time, the temperature monitor 3012, the heating wire 3013 and the conveying part 105 are controlled to work through the control panel 101. Under the action of the heating wire 3013, the inside of the heating cover 3011 is heated, and the temperature is monitored under the action of the temperature monitor 3012. At this time, part of the hot air is guided into the inside of the material guide box 302 through the heat conduction net 3015 to pre-dry and concentrate the feed inside the material guide box 302. At the same time, under the action of the baffle net 3014, the feed conveyed under the action of the conveying part 105 can be dried and concentrated, so as to realize the function of drying and concentrating the feed during the conveying process of the production line.
[0029] Furthermore, as Figure 4 shown, a diversion mechanism 4 is arranged inside the mixing tank 102. The inside of the diversion mechanism 4 includes a diversion component 401 and a diversion box 402. The diversion box 402 is fixed inside the mixing tank 102. The structure of the diversion box 402 is an annular structure. The diversion box 402 is located below the liquid inlet pipe 104. The surface of the diversion box 402 is provided with a diversion component 401. The diversion component 401 is composed of a liquid discharge hole 4011 and a diversion hole 4012. The bottom of the diversion box 402 is provided with liquid discharge holes 4011, and a diversion hole 4012 is arranged along the circumferential direction on one side of the diversion box 402.
[0030] During use, when the additive enters the inside of the mixing tank 102 through the liquid inlet pipe 104, the additive is squeezed into the inside of the diversion box 402. At this time, part of the additive directly falls into the inside of the mixing tank 102 through the liquid discharge hole 4011 below the liquid inlet pipe 104, and part of the additive flows along the diversion box 402 and is discharged through the liquid discharge holes 4011 away from the liquid inlet pipe 104 respectively. At the same time, part of the additive is discharged through the diversion holes 4012, so that the additive is more dispersed when it falls into the inside of the mixing tank 102, and the additive is mixed with the raw material more evenly, so as to realize the function of dispersing and guiding the additive in the production line.
[0031] Working principle: When in use, first open the cover plate 2022, pour the feed raw materials to be crushed into the inside of the crushing tank 103, then cover the cover plate 2022, and fix the cover plate 2022 to the feed inlet cover 2021 through the buckle to prevent the raw materials from splashing during crushing. Then operate the control panel 101 to make the control panel 101 control the driving motor 2023 to work. Under the action of the driving motor 2023, drive the crushing frame 2024 to rotate and crush the raw materials. The crushed raw materials enter the inside of the stirring tank 102 through the sieve 2025. Then, add a certain amount of additive into the stirring tank 102 through the liquid inlet pipe 104 to mix the additive with the feed. At this time, when the crushing frame 2024 rotates, it drives the stirring frame 201 to rotate. Under the action of the stirring frame 201, the additive and the feed are stirred to realize the function of integrating crushing and stirring in the production line. Only one motor is required for driving, with a simple structure and saving the kinetic energy required during the use of the production line.
[0032] When the additive enters the inside of the stirring tank 102 through the liquid inlet pipe 104, the additive is squeezed into the inside of the diversion box 402. At this time, part of the additive directly falls into the inside of the stirring tank 102 through the drain hole 4011 below the liquid inlet pipe 104, and part of the additive flows along the diversion box 402 and is discharged through the drain holes 4011 away from the liquid inlet pipe 104 respectively. At the same time, part of the additive is discharged through the diversion holes 4012, so that the additive is more dispersed when it falls into the inside of the stirring tank 102, and the additive is more evenly mixed with the raw materials, so as to realize the function of dispersing and guiding the additive in the production line, thereby improving the uniformity of feed mixing during the use of the production line.
[0033] After the feed stirring is completed, the control valve 106 can be controlled to open through the control panel 101, so that the feed falls into the inside of the guide box 302 through the discharge pipe 107, and is guided under the action of the guide plate 303, so that the feed enters the inside of the conveying part 105. At the same time, the temperature monitor 3012, the heating wire 3013 and the conveying part 105 are controlled to work through the control panel 101. Under the action of the heating wire 3013, the inside of the heating cover 3011 is heated, and the temperature is monitored under the action of the temperature monitor 3012. At this time, part of the hot air is guided into the inside of the guide box 302 through the heat conduction net 3015 to pre-dry and concentrate the feed inside the guide box 302. At the same time, under the action of the baffle 3014, the feed conveyed under the action of the conveying part 105 can be dried and concentrated, so as to realize the function of drying and concentrating the feed during the conveying process in the production line, without a separate drying and concentrating process, and finally complete the use work of the production line.
[0034] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-mentioned exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.
Claims
1. A feed ratio concentration production line, comprising a base (1), characterized in that: A control panel (101) is mounted on the surface of the base (1), a stirring tank (102) is fixed on the surface of the base (1), a crushing tank (103) is fixed on the top of the stirring tank (102), a liquid inlet pipe (104) is fixed on one side of the top of the stirring tank (102), a conveying portion (105) is mounted on the surface of the base (1), the conveying portion (105) is controlled by the control panel (101), a discharge pipe (107) is fixed at the bottom of the stirring tank (102), a control valve (106) is mounted on the surface of the discharge pipe (107), and an input end of the control valve (106) is connected to a control valve (106). The output end of the panel (101) is electrically connected; a crushing and stirring mechanism (2) is arranged on the surface of the stirring tank (102) and the crushing tank (103); the crushing and stirring mechanism (2) comprises a stirring frame (201) and a crushing assembly (202); a drying and concentrating mechanism (3) is arranged on the surface of the conveying portion (105); the drying and concentrating mechanism (3) comprises a drying and concentrating component (301), a material guide box (302) and a material guide plate (303); a flow guide mechanism (4) is arranged inside the stirring tank (102); the flow guide mechanism (4) comprises a flow guide assembly (401) and a flow guide box (402).
2. A feed ratio concentration production line according to claim 1, characterized in that: The stirring tank (102) is rotatably connected to a stirring frame (201) inside, and a pulverizing assembly (202) is provided on the surface of the pulverizing tank (103).
3. A feed ratio concentration production line according to claim 2, characterized in that: The pulverizing assembly (202) is composed of a feed cover (2021), a cover plate (2022), a drive motor (2023), a pulverizing frame (2024), and a screen (2025); a feed cover (2021) is fixed to one side of the top position of the pulverizing tank (103); a cover plate (2022) is provided on the surface of the feed cover (2021); one side of the cover plate (2022) is rotatably connected to the feed cover (2021); and the other side of the cover plate (2022) is fixed to the feed cover (2021) by means of a buckle.
4. A feed ratio concentration production line according to claim 3, characterized in that: A crushing frame (2024) is rotatably connected inside the crushing jar (103); one end of the crushing frame (2024) is fixedly connected to one end of the stirring frame (201); the central axis of the crushing frame (2024) coincides with the central axis of the stirring frame (201); a driving motor (2023) is mounted on the surface of the crushing jar (103); the input end of the driving motor (2023) is electrically connected to the output end of the control panel (101); a rotating shaft is fixed to the output end of the driving motor (2023) via a coupling; one end of the rotating shaft is fixedly connected to one end of the crushing frame (2024); a screen (2025) is fixed to the surface of the crushing jar (103); the screen (2025) is located between the crushing frame (2024) and the stirring frame (201); and the surface of the screen (2025) is rotatably connected to the surface of the crushing frame (2024).
5. A feed ratio concentration production line according to claim 1, characterized in that: A material guide box (302) is fixed on the surface of the base (1); the material guide box (302) is connected to the discharge pipe (107); the bottom of the material guide box (302) is connected to the feed port of the conveying part (105); a material guide plate (303) is fixed inside the material guide box (302); and a drying and concentrating component (301) is provided on one side of the material guide box (302).
6. A feed ratio concentration production line according to claim 5, characterized in that: The drying and concentrating component (301) comprises a heating hood (3011), a temperature monitor (3012), a heating wire (3013), a blocking net (3014) and a heat-conducting net (3015) inside. The outer side of the conveying portion (105) is covered with a heating hood (3011). The surface of the heating hood (3011) is fixedly connected to the surface of the material guide box (302). The surfaces of the heating hood (3011) and the material guide box (302) are both inlaid with the heat-conducting net (3015).
7. A feed ratio concentration production line according to claim 6, characterized in that: The surface of the conveying portion (105) is inlaid with a blocking net (3014), the blocking net (3014) is located on the inner side of the heating cover (3011), a temperature monitor (3012) is installed inside the heating cover (3011), an input end of the temperature monitor (3012) is electrically connected to an output end of the control panel (101), and a heating wire (3013) is installed inside the heating cover (3011), an input end of the heating wire (3013) is electrically connected to an output end of the control panel (101).
8. A feed ratio concentration production line according to claim 1, characterized in that: A flow guide box (402) is fixed inside the stirring tank (102); the flow guide box (402) is a ring-shaped structure; the flow guide box (402) is located below the liquid inlet pipe (104); and a flow guide component (401) is provided on the surface of the flow guide box (402).
9. A feed ratio concentration production line according to claim 8, characterized in that: The flow guide component (401) is composed of a drainage hole (4011) and a diversion hole (4012); the bottom of the flow guide box (402) is provided with a drainage hole (4011); and one side of the flow guide box (402) is provided with a diversion hole (4012) along the circumferential direction.