Chili sauce production filtering equipment for intelligent impurity separation

By designing intelligent filtering equipment for chili sauce production, the crushing box, miscellaneous separation box and optical sorting camera are used to solve the problem of intelligent separation of debris in the existing technology, and efficient and intelligent filtering effect is achieved, and product quality and equipment safety are improved.

CN120132986AInactive Publication Date: 2025-06-13MAANSHAN SHIYUEFENG FOOD
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Patent Information

Application Number
CN202510457796.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-06-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing crushing filter device for the production of chili sauce cannot intelligently separate debris, which is poor in practicality, affecting product quality.

Method used

A filtering device including a crushing box, a miscellaneous material separation box and a feeding box is designed to achieve intelligent separation of debris through centrifugal force, vibration of the feeding plate and optical sorting camera.

Benefits of technology

Efficient and intelligent filtration work is achieved, product quality is improved, pollution rate is reduced, and equipment safety is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses chilli sauce production filtering equipment for intelligent impurity separation, and belongs to the technical field of chilli sauce production. The chilli sauce production filtering equipment for intelligent impurity separation comprises a device main body, a crushing box is mounted above the device main body, an impurity separation box comprises a first centrifugal cylinder and a second centrifugal cylinder, a material receiving box is mounted at the bottom of the device main body, and an optical sorting camera is mounted in the material receiving box. The problems that an existing filtering device cannot intelligently separate impurities, is poor in practicability and affects the product quality are solved, secondary screening and filtering are conducted through a vibration discharging plate, the filtered chilli sauce falls into a material collecting box for material collecting work, detection can be conducted through an optical sorting camera in the material collecting box, and the detection efficiency is improved. And the chilli sauce material with impurities detected in the material receiving box is guided into the second centrifugal barrel for secondary separation work, so that efficient and intelligent filtering work is realized, and the product quality is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of chili sauce production, and specifically to a filtering device for chili sauce production for intelligent separation of sundries. Background Technique

[0002] Chili sauce is a sauce made from chili peppers and is a relatively common condiment on the table. There are two types: oil-based and water-based. The oil-based one is made from sesame oil and chili peppers, with a bright red color and a layer of sesame oil floating on it, which is easy to preserve.

[0003] A Chinese patent with the publication number CN214439836U discloses a crushing and filtering device for chili sauce production. In the actual use process of this filtering device, it cannot intelligently separate sundries, has poor practicability, and affects the product quality. Therefore, it does not meet the existing requirements, and for this reason, we propose a filtering device for chili sauce production for intelligent separation of sundries. Summary of the Invention

[0004] The purpose of the present invention is to provide a filtering device for chili sauce production for intelligent separation of sundries, which solves the problem that in the actual use process of the filtering device mentioned in the above background technique, it cannot intelligently separate sundries, has poor practicability, and affects the product quality.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A filtering device for chili sauce production for intelligent separation of sundries, including a device main body. Above the device main body, a crushing box is installed, and on one side inside the device main body, a sundry separation box is installed. The sundry separation box includes a first centrifugal cylinder and a second centrifugal cylinder, which perform a dispersion operation through centrifugal force. The dispersed chili sauce is introduced into a vibrating feeding plate through a guiding plate, and secondary screening and filtering are performed through the vibrating feeding plate. The filtered chili sauce falls into the inside of a receiving box for receiving work;

[0006] A receiving box is installed at the bottom of the device main body. A transfer box for repeated filtering is installed between the receiving box and the second centrifugal cylinder, and an optical sorting camera is installed inside the receiving box.

[0007] Preferably, a vibrating feeding plate is installed in the middle inside the device main body, and a medium-density sieve mesh is arranged inside the vibrating feeding plate, and the medium-density sieve mesh is used for screening materials into the inside of the receiving box.

[0008] Preferably, a vibration spring and a vibration motor are installed at the lower end of the vibrating feeding plate, and the vibration spring is fixedly connected to the device body and the vibrating feeding plate respectively; a guide plate is arranged at the upper end of the vibrating feeding plate, and the guide plate extends between the first centrifugal cylinder and the second centrifugal cylinder; the upper end of the guide plate is fixedly connected to the device body, and the lower end of the guide plate extends to the upper end of the vibrating feeding plate and fits with the vibrating feeding plate; the vibrating feeding plate is driven to discharge materials by the vibration spring and the vibration motor; during the feeding process, the chili sauce is filtered through a medium-density screen to perform filtering work.

[0009] Preferably, a feed hopper is installed at the upper end of the device body, and an integrally formed material guide port is arranged between the feed hopper and the device body, the material guide port is connected with a crushing box, two grinding rollers are installed inside the crushing box, a crushing cavity is arranged between the two grinding rollers, a first booster pump is arranged on one side of the crushing cavity, the first booster pump is respectively connected with the first centrifugal cylinder of the crushing cavity, a servo motor is installed outside the crushing box, the motor shaft of the servo motor is fixedly connected to the grinding roller, the chili sauce raw material is crushed, and subsequent filtering is carried out. Through the integrated installation structure, the structure is compact, the distance and time of raw material transportation can be reduced, and the filtering work can be continuously carried out in a sealed environment, thereby reducing the pollution rate and improving safety.

[0010] Preferably, a sealing plate is provided at the front end of the material receiving box, and the sealing plate is disassembled for installing an extruder for exporting work. A material extraction pipe and a material extraction pump are installed inside the material receiving box, and the material extraction pump is sealed and connected to the transfer box and the material extraction pipe respectively.

[0011] Preferably, the transfer box is fixedly connected to the first booster pump, and the first booster pump is used to pump the chili sauce in the transfer box into the second centrifugal cylinder. The surface of the first centrifugal cylinder is provided with a low-density screen, and the surface of the second centrifugal cylinder is provided with a high-density screen. The low-density screen is used for preliminary filtration, and the high-density screen is used for secondary filtration.

[0012] Preferably, the receiving box and the crushing chamber are both provided with optical sorting cameras, which are used to identify impurities with abnormal colors and shapes, and the optical sorting cameras also include electron microscope scanning for detecting plastics and hair;

[0013] The optical sorting camera is connected to the PLC module through a wireless transmission module, and the PLC module is used to control the material extraction pump, the first booster pump, and the second booster pump. The PLC module judges the impurity information detected by the optical sorting camera, and through controlling the material extraction pump, the first booster pump, and the second booster pump, it imports materials into the first centrifuge cylinder and the second centrifuge cylinder for secondary filtration, and conducts intelligent separation work according to the detection results. Through the cooperation of the second booster pump and the material extraction pump, the chili sauce with impurities detected in the material receiving box is imported into the second centrifuge cylinder for secondary separation work, thereby realizing efficient and intelligent filtration work and improving the product quality.

[0014] Preferably, two centrifugal motors are installed outside the miscellaneous material separation box, and the motor shafts of the two centrifugal motors are respectively fixedly connected to the first centrifuge cylinder and the second centrifuge cylinder. The first centrifuge cylinder and the second centrifuge cylinder are rotationally connected to the miscellaneous material separation box through bearings. One end of each of the first centrifuge cylinder and the second centrifuge cylinder is provided with a hollow tube, and the hollow tube is rotationally connected to the first centrifuge cylinder and the second centrifuge cylinder through bearings, and the hollow tube is used to connect the first booster pump and the second booster pump.

[0015] Preferably, a drying fan is installed outside the transfer box, and a blowing port is arranged at the upper end inside the transfer box. The blowing port is communicated with the drying fan, and the blowing port is used to dry the surface of the first centrifuge cylinder to prevent blockage inside the low-density screen. By drying the inside of the miscellaneous material separation box with the drying fan, it can prevent chili sauce from adhering to the inner surface of the first centrifuge cylinder and the second centrifuge cylinder, thus affecting the material guiding effect.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0017] 1. During the use of the filtering device of the present invention, crushing work is carried out through the crushing box. After crushing, the chili sauce is inside the crushing cavity and moves to the vicinity of the first booster pump through the inclined crushing cavity, and is pumped into the first centrifuge cylinder by the first booster pump. The first centrifuge cylinder rotates and conducts dispersion work through centrifugal force. The dispersed chili sauce is imported into the vibrating blanking plate through the material guiding plate, and secondary screening and filtration are carried out through the vibrating blanking plate. The filtered chili sauce falls into the material receiving box for material receiving work. Detection can be carried out through the optical sorting camera inside the material receiving box, and thus intelligent separation work can be carried out according to the detection results. Through the cooperation of the second booster pump and the material extraction pump, the chili sauce with impurities detected in the material receiving box is imported into the second centrifuge cylinder for secondary separation work, thereby realizing efficient and intelligent filtration work and improving the product quality.

[0018] 2. Before filtration, the filtering device of the present invention conducts material guiding work through the feed hopper above the device main body. After the material is introduced into the pulverizing box, it is rotated by two grinding rollers to pulverize the chili sauce raw materials, so as to carry out subsequent filtration work. Through the integrated installation structure, the structure is compact, which can reduce the distance and time of raw material transportation, and can continuously carry out filtration work in a sealed environment, reducing the pollution rate and improving safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 Isometric view of the front view of the present invention;

[0020] Figure 2 Isometric view of the side view of the present invention;

[0021] Figure 3 Isometric view of the front view of the present invention after sectioning;

[0022] Figure 4 Isometric view of the front view inside the miscellaneous material separation box of the present invention;

[0023] Figure 5 For the present invention Figure 4 Partial enlarged view of area A in;

[0024] Figure 6 Isometric view of the side view inside the device main body of the present invention;

[0025] Figure 7 Isometric view of the side view of the transfer box and the material receiving box of the present invention.

[0026] In the figure: 1. Device main body; 101. Vibrating blanking plate; 1011. Medium density sieve mesh; 1012. Vibrating spring; 1013. Vibrating motor; 1014. Material guiding plate; 102. First booster pump; 2. Feed hopper; 201. Material guiding port; 3. Pulverizing box; 301. Servo motor; 302. Grinding roller; 303. Pulverizing cavity; 4. Material receiving box; 401. Sealing plate; 402. Extraction pipe; 403. Extraction pump; 404. Optical sorting camera; 5. Miscellaneous material separation box; 501. First centrifugal cylinder; 5011. Low density sieve mesh; 502. Second centrifugal cylinder; 5021. High density sieve mesh; 6. Transfer box; 601. Drying fan; 602. Second booster pump; 603. Air blowing port. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0028] Example 1:

[0029] In order to solve the problems that in the actual use process of the existing filtering device, it is impossible to intelligently separate sundries, the practicability is poor, and the product quality is affected, please refer to Figure 1 、 Figure 4 - Figure 6 This embodiment provides the following technical solutions:

[0030] A chili sauce production filtering device for intelligent separation of sundries, including a device main body 1, a crushing box 3 is installed above the device main body 1, and a sundry separation box 5 is installed on one side inside the device main body 1. The sundry separation box 5 includes a first centrifugal cylinder 501 and a second centrifugal cylinder 502;

[0031] A receiving box 4 is installed at the bottom of the device main body 1. A transfer box 6 for repeated filtration is installed between the receiving box 4 and the second centrifugal cylinder 502. An optical sorting camera 404 is installed inside the receiving box 4. The first centrifugal cylinder 501 rotates to perform a dispersion operation through centrifugal force. The dispersed chili sauce is introduced into the vibrating feeding plate 101 through the guide plate 1014, and secondary screening and filtration are performed through the vibrating feeding plate 101. The filtered chili sauce falls into the inside of the receiving box 4 for receiving work.

[0032] A sealing plate 401 is provided at the front end of the receiving box 4. The sealing plate 401 is detachable for installing an extruder for export work. A pumping pipe 402 and a pumping pump 403 are installed inside the receiving box 4. The pumping pump 403 is hermetically connected to the transfer box 6 and the pumping pipe 402 respectively.

[0033] Optical sorting cameras 404 are provided inside both the receiving box 4 and the crushing cavity 303. The optical sorting cameras 404 are used to identify impurities with abnormal colors and shapes. The optical sorting cameras 404 also include electron microscope scanning for detecting plastics and hairs;

[0034] The optical sorting camera 404 is connected to the plc module through a wireless transmission module, and the plc module is used to control the material extraction pump 403, the first booster pump 102, and the second booster pump 602. The plc module judges the impurity information detected by the optical sorting camera 404, and through controlling the material extraction pump 403, the first booster pump 102, and the second booster pump 602, it is introduced into the first centrifuge cylinder 501 and the second centrifuge cylinder 502 for secondary filtration. The filtered chili sauce falls into the material receiving box 4 for material receiving work. It can be detected by the optical sorting camera 404 inside the material receiving box 4, so that intelligent separation work can be carried out according to the detection results. Through the cooperation of the second booster pump 602 and the material extraction pump 403, the chili sauce with impurities detected in the material receiving box 4 is introduced into the second centrifuge cylinder 502 for secondary separation work, thus realizing efficient and intelligent filtration work and improving the product quality.

[0035] Two centrifugal motors are installed outside the miscellaneous material separation box 5, and the motor shafts of the two centrifugal motors are respectively fixedly connected to the first centrifuge cylinder 501 and the second centrifuge cylinder 502. The first centrifuge cylinder 501 and the second centrifuge cylinder 502 are rotationally connected to the miscellaneous material separation box 5 through bearings. One end of each of the first centrifuge cylinder 501 and the second centrifuge cylinder 502 is provided with a hollow pipe, and the hollow pipe is rotationally connected to the first centrifuge cylinder 501 and the second centrifuge cylinder 502 through bearings, and the hollow pipe is used to connect the first booster pump 102 and the second booster pump 602. During the use of the filtering device, crushing work is carried out through the crushing box 3. The crushed chili sauce is inside the crushing cavity 303 and moves to the vicinity of the first booster pump 102 through the inclined crushing cavity 303, and is pumped into the first centrifuge cylinder 501 through the first booster pump 102, thus carrying out preliminary filtering work.

[0036] Specifically, during the use of the filtering device, crushing work is carried out through the crushing box 3. The crushed chili sauce is inside the crushing cavity 303 and moves to the vicinity of the first booster pump 102 through the inclined crushing cavity 303, and is pumped into the first centrifuge cylinder 501 through the first booster pump 102. The first centrifuge cylinder 501 rotates and disperses through centrifugal force. The dispersed chili sauce is introduced into the vibrating blanking plate 101 through the guide plate 1014, and secondary screening and filtering are carried out through the vibrating blanking plate 101. The filtered chili sauce falls into the material receiving box 4 for material receiving work. It can be detected by the optical sorting camera 404 inside the material receiving box 4, so that intelligent separation work can be carried out according to the detection results. Through the cooperation of the second booster pump 602 and the material extraction pump 403, the chili sauce with impurities detected in the material receiving box 4 is introduced into the second centrifuge cylinder 502 for secondary separation work, thus realizing efficient and intelligent filtration work and improving the product quality.

[0037] Embodiment 2:

[0038] In order to solve the problems that the existing filtering device is complex in structure, has a high pollution rate during the long-term production process, and affects the product quality during actual use, please refer to Figure 1 - Figure 3 , Figure 7 , this embodiment provides the following technical solutions:

[0039] A chili sauce production filtering device for intelligent separation of sundries, including a device main body 1, a crushing box 3 is installed above the device main body 1, and a sundry separation box 5 is installed on one side inside the device main body 1. The sundry separation box 5 includes a first centrifugal cylinder 501 and a second centrifugal cylinder 502;

[0040] A vibrating feeding plate 101 is installed in the middle inside the device main body 1. A medium-density sieve mesh 1011 is arranged inside the vibrating feeding plate 101. The medium-density sieve mesh 1011 is used to screen materials into the receiving box 4.

[0041] Vibrating springs 1012 and a vibrating motor 1013 are installed at the lower end of the vibrating feeding plate 101. The vibrating springs 1012 are fixedly connected to the device main body 1 and the vibrating feeding plate 101 respectively. A guide plate 1014 is arranged at the upper end of the vibrating feeding plate 101. The guide plate 1014 extends between the first centrifugal cylinder 501 and the second centrifugal cylinder 502. The upper end of the guide plate 1014 is fixedly connected to the device main body 1, and the lower end of the guide plate 1014 extends to the upper end of the vibrating feeding plate 101 and fits with the vibrating feeding plate 101. The vibrating feeding plate 101 is driven by the vibrating springs 1012 and the vibrating motor 1013 to feed materials. During the feeding process, the chili sauce is filtered through the medium-density sieve mesh 1011 to carry out the filtering work.

[0042] A feed hopper 2 is installed at the upper end of the device main body 1. An integrally formed material guiding port 201 is arranged between the feed hopper 2 and the device main body 1. The material guiding port 201 is communicated with the crushing box 3. Before filtering, the filtering device guides materials through the feed hopper 2 above the device main body 1. Two grinding rollers 302 are installed inside the crushing box 3. A crushing cavity 303 is arranged between the two grinding rollers 302. A first booster pump 102 is arranged on one side of the crushing cavity 303. The first booster pump 102 is communicated with the first centrifugal cylinder 501 of the crushing cavity 303 respectively. A servo motor 301 is installed outside the crushing box 3. The motor shaft of the servo motor 301 is fixedly connected to the grinding roller 302. The raw materials of the chili sauce are crushed to carry out the subsequent filtering work. Through the integrated installation structure, the structure is compact, the distance and time of raw material transportation can be reduced, and the filtering work can be continuously carried out in a sealed environment, reducing the pollution rate and improving the safety.

[0043] The transfer tank 6 is fixedly connected to the first booster pump 102. The first booster pump 102 is used to pump the chili sauce in the transfer tank 6 into the second centrifuge cylinder 502. A low-density screen 5011 is provided on the surface of the first centrifuge cylinder 501, and a high-density screen 5021 is provided on the surface of the second centrifuge cylinder 502. Preliminary filtration is carried out through the low-density screen 5011, and secondary filtration is carried out through the high-density screen 5021.

[0044] A drying fan 601 is installed outside the transfer tank 6, and a blowing port 603 is provided at the upper end inside the transfer tank 6. The blowing port 603 is communicated with the drying fan 601, and the blowing port 603 is used to dry the surface of the first centrifuge cylinder 501 to prevent blockage inside the low-density screen 5011. The inside of the miscellaneous material separation tank 5 is dried by the drying fan 601 to prevent the chili sauce from adhering to the inner surfaces of the first centrifuge cylinder 501 and the second centrifuge cylinder 502, affecting the material guiding effect.

[0045] Specifically, before filtration, the filtering device conducts the material guiding work through the feed hopper 2 above the device main body 1. After being introduced into the pulverizing box 3, the two grinding rollers 302 rotate to pulverize the chili sauce raw material, so as to carry out the subsequent filtration work. Preliminary filtration is carried out through the low-density screen 5011, secondary filtration is carried out through the high-density screen 5021, and the inside of the miscellaneous material separation tank 5 is dried by the drying fan 601 to prevent the chili sauce from adhering to the inner surfaces of the first centrifuge cylinder 501 and the second centrifuge cylinder 502, affecting the material guiding effect. Through the integrated installation structure, the structure is compact, which can reduce the distance and time of raw material transportation, and can continuously carry out the filtration work in a sealed environment, reducing the pollution rate and improving the safety.

[0046] Working principle: When in use, the feeding hopper 2 above the device main body 1 is used for guiding materials. After the materials are introduced into the crushing box 3, the two grinding rollers 302 rotate to crush the chili sauce raw materials. The crushed chili sauce is inside the crushing cavity 303 and moves to the vicinity of the first booster pump 102 through the inclined crushing cavity 303. Then it is pumped into the first centrifugal cylinder 501 by the first booster pump 102. The first centrifugal cylinder 501 rotates to perform the dispersion work through centrifugal force. The dispersed chili sauce is introduced into the vibrating feeding plate 101 through the guiding plate 1014. The vibrating feeding plate 101 performs secondary screening and filtering. The filtered chili sauce falls into the receiving box 4 for receiving work. It can be detected by the optical sorting camera 404 inside the receiving box 4, so that intelligent separation work can be carried out according to the detection results. Through the cooperation of the second booster pump 602 and the pumping pump 403, the chili sauce with detected impurities in the receiving box 4 is introduced into the second centrifugal cylinder 502 for secondary separation work, thus realizing efficient and intelligent filtering work, improving the product quality. It is initially filtered through the low-density screen 5011 and secondarily filtered through the high-density screen 5021. The drying fan 601 dries the inside of the miscellaneous material separation box 5 to prevent the chili sauce from adhering to the inner surface of the first centrifugal cylinder 501 and the second centrifugal cylinder 502, affecting the guiding effect. Through the integrated installation structure, the structure is compact, which can reduce the distance and time of raw material transportation, and can continuously carry out filtering work in a sealed environment, reducing the pollution rate and improving the safety.

[0047] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0048] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention.

Claims

1. A chili sauce production filtering device for intelligent separation of impurities, comprising a device body (1), characterized in that: A crushing box (3) is installed above the device body (1), and a miscellaneous material separation box (5) is installed on one side of the interior of the device body (1), and the miscellaneous material separation box (5) includes a first centrifugal cylinder (501) and a second centrifugal cylinder (502). A material receiving box (4) is installed at the bottom of the device body (1), and a transfer box (6) for repeated filtration is installed between the material receiving box (4) and the second centrifugal cylinder (502), and an optical sorting camera (404) is installed inside the material receiving box (4).

2. The chili sauce production filtering equipment for intelligent separation of debris according to claim 1 is characterized in that: A vibrating material discharge plate (101) is installed in the middle of the device body (1), and a medium-density screen (1011) is arranged inside the vibrating material discharge plate (101), and the medium-density screen (1011) is used to screen materials into the material receiving box (4).

3. The chili sauce production and filtering equipment for intelligent separation of debris according to claim 2 is characterized in that: A vibration spring (1012) and a vibration motor (1013) are installed at the lower end of the vibration blanking plate (101); the vibration spring (1012) is fixedly connected to the device body (1) and the vibration blanking plate (101) respectively; a guide plate (1014) is arranged at the upper end of the vibration blanking plate (101); the guide plate (1014) extends between the first centrifugal cylinder (501) and the second centrifugal cylinder (502); the upper end of the guide plate (1014) is fixedly connected to the device body (1), and the lower end of the guide plate (1014) extends to the upper end of the vibration blanking plate (101) and fits the vibration blanking plate (101).

4. The chili sauce production filtering equipment for intelligent separation of debris according to claim 1 is characterized in that: A feed hopper (2) is installed at the upper end of the device body (1); an integrally formed material guide port (201) is provided between the feed hopper (2) and the device body (1); the material guide port (201) is communicated with a grinding box (3); two grinding rollers (302) are installed inside the grinding box (3); an oblique grinding chamber (303) is provided between the two grinding rollers (302); a first booster pump (102) is provided on one side of the grinding chamber (303); the first booster pump (102) is respectively communicated with a first centrifugal cylinder (501) of the grinding chamber (303); a servo motor (301) is installed outside the grinding box (3); and a motor shaft of the servo motor (301) is fixedly connected to the grinding roller (302).

5. The chili sauce production filtering equipment for intelligent separation of debris according to claim 1 is characterized in that: A sealing plate (401) is provided at the front end of the material receiving box (4), and the sealing plate (401) is disassembled for installing an extruder for exporting work. A material extraction pipe (402) and a material extraction pump (403) are installed inside the material receiving box (4), and the material extraction pump (403) is sealed and connected to the transfer box (6) and the material extraction pipe (402) respectively.

6. The chili sauce production and filtering equipment for intelligent separation of debris according to claim 4 is characterized in that: The transfer box (6) is fixedly connected to the first booster pump (102), and the first booster pump (102) is used to pump the chili sauce in the transfer box (6) into the second centrifugal cylinder (502). The surface of the first centrifugal cylinder (501) is provided with a low-density screen (5011), and the surface of the second centrifugal cylinder (502) is provided with a high-density screen (5021).

7. The chili sauce production and filtering equipment for intelligent separation of debris according to claim 4 is characterized in that: The receiving box (4) and the crushing chamber (303) are both provided with an optical sorting camera (404), and the optical sorting camera (404) is used to identify impurities with abnormal colors and shapes. The optical sorting camera (404) also includes an electron microscope scan for detecting plastics and hair; The optical sorting camera (404) is connected to the PLC module via a wireless transmission module, and the PLC module is used to control the extraction pump (403), the first booster pump (102) and the second booster pump (602). The PLC module judges the impurity information detected by the optical sorting camera (404), and guides the impurities into the first centrifugal cylinder (501) and the second centrifugal cylinder (502) for secondary filtration by regulating the extraction pump (403), the first booster pump (102) and the second booster pump (602).

8. The chili sauce production and filtering equipment for intelligent separation of debris according to claim 1 is characterized in that: Two centrifugal motors are installed outside the miscellaneous material separation box (5), and the motor shafts of the two centrifugal motors are fixedly connected to the first centrifugal cylinder (501) and the second centrifugal cylinder (502) respectively. The first centrifugal cylinder (501) and the second centrifugal cylinder (502) are rotatably connected to the miscellaneous material separation box (5) through bearings. One end of the first centrifugal cylinder (501) and the second centrifugal cylinder (502) are both provided with a hollow tube, and the hollow tube is rotatably connected to the first centrifugal cylinder (501) and the second centrifugal cylinder (502) through bearings, and the hollow tube is used to connect the first booster pump (102) and the second booster pump (602).

9. The chili sauce production and filtering equipment for intelligent separation of debris according to claim 6 is characterized in that: A drying fan (601) is installed outside the transfer box (6), and a blowing port (603) is provided at the upper end of the interior of the transfer box (6). The blowing port (603) is connected to the drying fan (601), and the blowing port (603) is used to dry the surface of the first centrifugal cylinder (501) to prevent the low-density screen (5011) from being blocked internally.

Citation Information

Patent Citations

  • Crushing and filtering device for chili sauce production

    CN214439836U