Vibration screening and impurity removing device
By designing a vibration screening and impurity removal device, and utilizing a magnetic filter cartridge and an iron removal mechanism, the problems of poor pepper screening effect and inability to recycle iron impurities were solved, achieving efficient pepper screening and recycling of iron impurities.
Patent Information
- Application Number
- CN202423059284.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-12
AI Technical Summary
Existing pepper screening and impurity removal devices are not effective. Smaller peppers or impurities are easily stuck on the screening plate, and iron impurities cannot be effectively recovered, resulting in resource waste.
A vibration screening and impurity removal device was designed, comprising a vibration screening mechanism and an iron removal mechanism. The device utilizes a magnetic filter cartridge for vibration and rotation screening, combined with the iron removal mechanism to attract and collect iron impurities. The separation and recovery of impurities are achieved through the vibration component and scraper.
This improved the efficiency and effectiveness of pepper screening, ensured the full separation of impurities, and enabled the recycling of iron impurities, thus avoiding resource waste.
Smart Images

Figure CN223571243U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a zanthoxylum bungeanum screening equipment technical field especially, relate to a vibrating screening and impurity removing device. BACKGROUND
[0002] Zanthoxylum bungeanum is a commonly used condiment, and its quality is crucial to the taste of dishes. In the production and processing of zanthoxylum bungeanum, screening and impurity removal is an essential link.
[0003] Chinese patent with publication number CN221714890U discloses a zanthoxylum bungeanum coarse screening device, which comprises a box body and a hopper. A screening assembly is installed in the box body, which comprises a screen and an outlet. A residue discharge assembly is installed at the bottom of the box body, which comprises an inclined plate and a discharge port. A drive assembly is installed on one side of the box body, which comprises a motor and a crankshaft. A material scattering assembly is installed at the bottom of the hopper, which comprises a through pipe and a ball joint. A dust collection assembly is installed on one side of the box body. The zanthoxylum bungeanum coarse screening device can prevent zanthoxylum bungeanum from blocking the through pipe or accumulating at the bottom of the hopper and falling onto the screen. The rotation of the through pipe can uniformly disperse zanthoxylum bungeanum on the screen, preventing the accumulation of zanthoxylum bungeanum on the screen and the successful screening of impurities in zanthoxylum bungeanum. The screening effect of zanthoxylum bungeanum is guaranteed, and the environmental hygiene around the equipment is ensured. The device can also prevent debris from harming the health and safety of personnel and causing discomfort. It is suitable for coarse screening of zanthoxylum bungeanum.
[0004] However, the above-mentioned disclosed scheme has the following disadvantages: the screening effect of the existing zanthoxylum bungeanum screening and impurity removing device is not good, and smaller zanthoxylum bungeanum or other impurities are easily stuck on the screening plate, resulting in worse subsequent zanthoxylum bungeanum screening effect. Moreover, iron impurities in zanthoxylum bungeanum cannot be recycled and utilized, wasting resources. UTILITY MODEL CONTENTS
[0005] The utility model aims at the problem of insufficient and effective screening of zanthoxylum bungeanum and recycling of iron materials in impurities in the background art, and provides a vibrating screening and impurity removing device.
[0006] The technical scheme of the utility model: a vibrating screening and impurity removing device, comprising a base and a collection box located above the base; further comprising:
[0007] A vibrating screening mechanism is arranged on the top of the base for cyclic vibration to screen zanthoxylum bungeanum.
[0008] A filter cartridge is arranged on the vibrating screening mechanism. The material of the filter cartridge is magnet, which is used to attract iron impurities in zanthoxylum bungeanum. A plurality of filter holes are arranged in a ring shape on the surface of the filter cartridge. The filter cartridge rotates and vibrates at the same time under the driving of the vibrating screening mechanism, and screens the impurities in zanthoxylum bungeanum.
[0009] And the iron removal mechanism is arranged in the interior of the vibrating screening mechanism, and is used for screening and collecting the iron impurities in the pepper.
[0010] Preferably, the feeding assembly comprises a connecting frame, a feeding pipe and a feeding port.
[0011] The connecting frame is arranged on the side of the vibrating screening mechanism, the feeding pipe is arranged on the end of the connecting frame away from the vibrating screening mechanism, and the feeding port is arranged on the top of the feeding pipe.
[0012] Preferably, the vibrating screening mechanism comprises a screening assembly and a vibrating assembly.
[0013] The screening assembly is arranged on the top of the base and is used for driving the filter cartridge to rotate.
[0014] The vibrating assembly is arranged on the side of the screening assembly and is used for driving the filter cartridge to vibrate.
[0015] Preferably, the screening assembly comprises a mounting frame one, a straight sliding rail one, a sliding block, a motor, a rotating shaft, a mounting frame two and a mounting disc.
[0016] The mounting frame one is arranged on the top of the base, the straight sliding rail one is symmetrically arranged on the inner side of the mounting frame one, the sliding block is slidingly arranged on the straight sliding rail one, the motor is arranged on the side of the sliding block, the rotating shaft is arranged on the output end of the motor, the mounting disc is arranged on the outer side of the rotating shaft, the side of the mounting disc is connected with the end of the filter cartridge, the end of the filter cartridge away from the mounting disc is provided with a connecting ring, the side of the connecting ring is rotatably provided with a circular sliding rail one, the side of the circular sliding rail one away from the connecting ring is provided with a mounting table, the inner side of the mounting table is slidingly connected with the outer side of the feeding pipe, and the top of the base is provided with the mounting frame two.
[0017] Preferably, the vibrating assembly comprises a vibrating piece, a spring and a disc.
[0018] The vibrating piece is arranged on the outer side of the rotating shaft, the disc is arranged on the top of the mounting frame one, and the spring is symmetrically arranged on the sliding block.
[0019] Preferably, the iron removal mechanism comprises a mounting rod, a connecting shaft, a sliding box, a baffle and a circular sliding rail two.
[0020] The mounting rod is arranged on the top of the mounting frame two, the connecting shaft is arranged on the side of the mounting rod, the sliding box is slidingly arranged on the outer side of the connecting shaft, the circular sliding rail two is arranged on the inner side of the filter cartridge, the baffle is slidingly arranged on the circular sliding rail two, the outer side of the baffle is slidingly connected with the inner side of the sliding box, the end of the sliding box is provided with a pull rod, the side of the baffle is provided with a scraper, the side of the mounting table is provided with a straight sliding rail two, the straight sliding rail two is slidingly provided with a sliding door, and the side of the sliding door is provided with a fixing block.
[0021] Compared with the prior art, the utility model has the advantages of the following beneficial technical effects:
[0022] 1、Through the setting of the vibration screening mechanism, the motor drives the filter cylinder and the vibrating piece to rotate through the rotating shaft, and the vibrating piece drives the filter cylinder to vibrate under the action of the disc and the spring when rotating, so that the impurities in the pepper can be effectively separated out, and the frequency and amplitude of vibration can be adjusted according to the impurity removal requirements of the pepper, so as to ensure the effective separation of impurities, and the rotation can further promote the relative movement between the pepper and the filter cylinder, increase the opportunity of impurities being thrown out, thereby improving the impurity removal efficiency, and the combination of vibration and rotation makes the movement of the pepper in the screening process more complex and efficient, thereby improving the production efficiency of the whole screening process.
[0023] 2、Through the setting of the iron removal mechanism, the rotating filter cylinder driven by the motor can attract the iron materials on the inner wall and continuously transport them upward, and the iron materials are collected into the sliding box through the scraper, so that the iron impurities can be recycled, avoiding the waste of resources, and the sliding box can be quickly disassembled and installed through the connecting shaft, so that the collection and screening are more convenient and efficient, and the screening efficiency of the pepper is improved. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is a structure schematic view of an embodiment of the utility model;
[0025] Figure 2 It is an internal structure schematic view of Figure 1 ; It is a back structure schematic view of
[0026] Figure 3 It is an internal structure schematic view of the vibration screening mechanism;
[0027] Figure 4 It is a back structure schematic view of Figure 3 ; It is a structure schematic view of the iron removal mechanism;
[0028] Figure 5 ; It is a back structure schematic view of the iron removal mechanism.
[0029] Figure 6 ; It is a back structure schematic view of the iron removal mechanism.
[0030] The drawings show that: 1, base; 2, collection box; 3, connecting frame; 4, feeding pipe; 5, feeding port; 601, mounting frame one; 602, motor; 603, disc; 604, rotating shaft; 605, sliding block; 606, spring; 607, vibrating piece; 608, mounting disc; 609, filter cylinder; 610, connecting ring; 611, circular slide rail one; 612, mounting table; 613, mounting frame two; 614, straight slide rail one; 701, mounting rod; 702, connecting shaft; 703, sliding box; 704, baffle; 705, circular slide rail two; 706, scraper; 707, straight slide rail two; 708, sliding door; 709, fixed block; 711, pull rod. DETAILED DESCRIPTION
[0031] Embodiment one
[0032] As Figures 1-4 shown, the utility model provides a vibration screening and impurity removing device, including base 1, collect box 2 located above base 1, vibration screening mechanism, filter cartridge 609 and iron removing mechanism:
[0033] Vibration screening mechanism sets up at the top of base 1, is used for carrying out cyclic vibration to screen pepper;
[0034] Filter cartridge 609 sets up on vibration screening mechanism, the material of filter cartridge 609 is magnet, is used for attracting the iron impurity in pepper, the surface annular of filter cartridge 609 is provided with a plurality of filter holes, and filter cartridge 609 rotates and vibrates simultaneously under the driving of vibration screening mechanism, and the impurity in pepper is screened;
[0035] Iron removing mechanism sets up inside vibration screening mechanism, is used for screening and collecting the iron impurity in pepper.
[0036] Feeding assembly includes connecting frame 3, feed pipe 4 and feeding port 5;Connecting frame 3 sets up at the side of vibration screening mechanism, feed pipe 4 sets up at the end of connecting frame 3 away from vibration screening mechanism, and feeding port 5 sets up at the top of feed pipe 4, and the end of feed pipe 4 away from feeding port 5 and vibration screening mechanism is slidably connected, and feeding port 5 is set as the taper shape of big up small, and the pepper is thrown from feeding port 5, and the pepper enters vibration screening mechanism through feed pipe 4 and is screened.
[0037] The vibrating screening mechanism comprises a screening assembly and a vibrating assembly; the screening assembly is arranged on the top of the base 1 and used to drive the filter cylinder 609 to rotate; and the vibrating assembly is arranged on the side of the screening assembly and used to drive the filter cylinder 609 to vibrate. The screening assembly comprises a mounting frame one 601, a straight sliding rail one 614, a sliding block 605, a motor 602, a rotating shaft 604, a mounting frame two 613 and a mounting disc 608; the mounting frame one 601 is arranged on the top of the base 1, the straight sliding rail one 614 is symmetrically arranged on the inner side of the mounting frame one 601, the sliding block 605 is slidingly arranged on the straight sliding rail one 614, the motor 602 is arranged on the side of the sliding block 605, the rotating shaft 604 is arranged on the output end of the motor 602, the outer side of the rotating shaft 604 is rotationally connected with the axis of the sliding block 605, the mounting disc 608 is arranged on the outer side of the rotating shaft 604, the side of the mounting disc 608 is connected with the end of the filter cylinder 609, the end, away from the mounting disc 608, of the filter cylinder 609 is provided with a connecting ring 610, the side of the connecting ring 610 is rotationally provided with a circular sliding rail one 611, one side, away from the connecting ring 610, of the circular sliding rail one 611 is provided with a mounting table 612, the inner side of the mounting table 612 is slidingly connected with the outer side of the feeding pipe 4, the inner side of the mounting disc 608 is provided with a tapered groove, the pepper falls into the mounting table 612 and can slide to the filter cylinder 609 through the tapered groove, so as to ensure the comprehensiveness of the screening, the top of the base 1 is provided with the mounting frame two 613, the inner side of the mounting frame two 613 is also provided with the straight sliding rail one 614 and the sliding block 605, and the side of the sliding block 605 is connected with the side of the mounting table 612; the sliding block 605 in the mounting frame two 613 and the end, away from the motor 602, of the rotating shaft 604 are rotationally connected, the pepper enters the filter cylinder 609 through the feeding pipe 4 and the mounting table 612, the motor 602 is started, the motor 602 drives the rotating shaft 604 to rotate, the rotating shaft 604 drives the filter cylinder 609 to rotate through the mounting disc 608, so that the filter cylinder 609 rotates on the circular sliding rail one 611 through the connecting ring 610, and the position of the mounting table 612 does not change and will not rotate.The vibration assembly comprises a vibrating piece 607, a spring 606 and a disc 603; the vibrating piece 607 is arranged outside the rotating shaft 604, and the side surface of the vibrating piece 607 is rotationally connected with the side surface of the sliding block 605; a plurality of protruding ends are arranged on the vibrating piece 607, and the end of each protruding end is in the shape of a circular arc; the disc 603 is arranged on the top of the mounting frame I 601, and the rotating track of the disc 603 and the protruding ends of the vibrating piece 607 has an overlapping part, so that the vibrating piece 607 moves downward under the extrusion of the fixed disc when rotating; the spring 606 is symmetrically arranged on the sliding block 605; the rotating shaft 604 drives the vibrating piece 607 to rotate; the vibrating piece 607 moves downward under the action of the disc 603, thereby driving the filter cylinder 609 to move downward through the rotating shaft 604; the sliding block 605 slides downward on the straight sliding rail I 614, at this time, all the springs 606 are deformed; the filter cylinder 609 drives the mounting disc 608 and the mounting table 612 to move downward; the vibrating piece 607 continues to rotate, so that the protruding ends are separated from the disc 603; the sliding block 605 rapidly rebounds under the action of the spring 606, thereby driving the filter cylinder 609 to rebound through the rotating shaft 604 and the mounting disc 608, and further making the filter cylinder 609 vibrate, thereby enhancing the filtering effect on the Chinese prickly ash.
[0038] Embodiment two
[0039] As Figures 5-6 shown, the utility model discloses a vibrating screening and impurity removing device, compared with embodiment one, this embodiment introduces the structure of the iron removing mechanism in detail.
[0040] The iron removing mechanism comprises a mounting rod 701, a connecting shaft 702, a sliding box 703, a baffle 704 and a circular ring sliding rail two 705; the mounting rod 701 is arranged on the top of the mounting frame two 613, the connecting shaft 702 is arranged on the side of the mounting rod 701, the end of the connecting shaft 702 away from the mounting rod 701 is attached to the mounting disc 608 but not connected, the sliding box 703 is slidingly arranged on the outside of the connecting shaft 702, the circular ring sliding rail two 705 is arranged on the inside of the filter cylinder 609, the baffle 704 is slidingly arranged on the circular ring sliding rail two 705, the outside of the baffle 704 is slidingly connected with the inside of the sliding box 703, the end of the sliding box 703 is provided with a pull rod 711, the top of the baffle 704 is attached to the inside of the filter cylinder 609, the side of the baffle 704 is provided with a scraper 706, the side of the mounting table 612 is provided with a straight sliding rail two 707, the sliding door 708 is slidingly arranged on the straight sliding rail two 707, the side of the sliding door 708 is provided with a fixing block 709, the sliding door 708 is symmetrically arranged on the straight sliding rail two 707, the bottom of the sliding door 708 is provided with a notch, when the two sliding doors 708 are combined together, the notch can close the connecting shaft 702, the left sliding door 708 is provided with a clamping groove, the right sliding door 708 is provided with a clamping block, the clamping block and the clamping groove can be connected together, the sliding door 708 is opened through the fixing block 709, then the sliding box 703 is clamped together through the upper surface of the connecting shaft 702 and slides, the end of the sliding box 703 is connected with the end of the baffle 704, when the filter cylinder 609 rotates, the iron impurities can be attracted and rotated to the top, the iron impurities on the inner wall of the filter cylinder 609 are scraped down by the scraper 706 and fall into the sliding box 703 to be collected, after the screening and impurity removing work is completed, the sliding box 703 can be taken out to recycle the iron impurities.
[0041] In summary, when the utility model is used, the two sliding doors 708 are opened by the fixed block 709, then the sliding box 703 and the connecting shaft 702 are clamped together and the sliding box 703 is controlled to slide on the connecting shaft 702 to the position where the end of the baffle 704 is flush, then the sliding door 708 is closed, the clamping block and the clamping groove on the two sliding doors 708 are connected together, then the pepper is put into from the feeding port 5, the pepper enters the installation table 612 through the feeding pipe 4 and slides to the filter cylinder 609 through the conical groove in the installation table 612, then the motor 602 is started, the motor 602 drives the rotating shaft 604 to rotate, the rotating shaft 604 drives the filter cylinder 609 to rotate through the mounting disc 608, at the same time, the rotating shaft 604 drives the vibrating piece 607 to rotate, the vibrating piece 607 is lowered under the action of the disc 603 after contacting the disc 603, so that the filter cylinder 609 is lowered through the rotating shaft 604, the sliding block 605 slides downward on the straight sliding rail one 614, the filter cylinder 609 drives the mounting disc 608 and the installation table 612 to move downward, then the vibrating piece 607 continues to rotate so that the extending end is separated from the disc 603, the sliding block 605 rapidly rebounds under the action of the spring 606, so that the filter cylinder 609 is rebounded through the rotating shaft 604 and the mounting disc 608, and the filter cylinder 609 is vibrated, the filter cylinder 609 attracts the iron impurities and rotates to the top in the process of rotating and vibrating, the iron impurities attracted on the inner wall of the filter cylinder 609 are scraped down by the scraper 706 and fall into the sliding box 703 to be collected, after the screening and impurity removing work is completed, the sliding box 703 is taken out to recycle the iron impurities.
[0042] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to this, various changes can be made within the knowledge range of the person skilled in the art without departing from the purpose of the utility model.
Claims
1. A vibrating sieve impurity removal device comprising a base (1) and a collection box (2) located above the base (1); characterized in that, Also comprising: A vibrating screening mechanism arranged on the top of the base (1) for performing cyclic vibration to screen the pepper; A filter cylinder (609) arranged on the vibrating screening mechanism, the filter cylinder (609) is made of magnet for attracting the iron impurities in the pepper, a plurality of filter holes are arranged annularly on the surface of the filter cylinder (609), the filter cylinder (609) rotates and vibrates at the same time under the driving of the vibrating screening mechanism to screen the impurities in the pepper; And an iron removing mechanism arranged in the vibrating screening mechanism for screening and collecting the iron impurities in the pepper.
2. The vibratory sieving device of claim 1, wherein, Also comprising a feeding assembly including a connecting frame (3), a feeding pipe (4) and a feeding port (5); The connecting frame (3) is arranged on the side of the vibrating screening mechanism, the feeding pipe (4) is arranged on the end of the connecting frame (3) away from the vibrating screening mechanism, and the feeding port (5) is arranged on the top of the feeding pipe (4).
3. The vibratory particle separation apparatus of claim 1, wherein, The vibrating screening mechanism comprises a screening assembly and a vibrating assembly; The screening assembly is arranged on the top of the base (1) for driving the filter cylinder (609) to rotate; The vibrating assembly is arranged on the side of the screening assembly for driving the filter cylinder (609) to vibrate.
4. The vibratory sieving device of claim 3, wherein, The screening assembly comprises a mounting frame one (601), a straight sliding rail one (614), a sliding block (605), a motor (602), a rotating shaft (604), a mounting frame two (613) and a mounting disc (608); The mounting frame one (601) is arranged on the top of the base (1), the straight sliding rail one (614) is symmetrically arranged on the inner side of the mounting frame one (601), the sliding block (605) is slidingly arranged on the straight sliding rail one (614), the motor (602) is arranged on the side of the sliding block (605), the rotating shaft (604) is arranged on the output end of the motor (602), the mounting disc (608) is arranged on the outer side of the rotating shaft (604), the side of the mounting disc (608) is connected with the end of the filter cylinder (609), the end of the filter cylinder (609) away from the mounting disc (608) is provided with a connecting ring (610), the side of the connecting ring (610) is rotatably provided with a circular sliding rail one (611), the side of the circular sliding rail one (611) away from the connecting ring (610) is provided with a mounting table (612), the inner side of the mounting table (612) is slidingly connected with the outer side of the feeding pipe (4), and the top of the base (1) is provided with the mounting frame two (613).
5. The vibratory sieving device of claim 4, wherein, The vibrating assembly comprises a vibrating piece (607), a spring (606) and a disc (603); The vibrating piece (607) is arranged on the outer side of the rotating shaft (604), the disc (603) is arranged on the top of the mounting frame one (601), and the spring (606) is symmetrically arranged on the sliding block (605).
6. The vibratory sieving device of claim 4, wherein, The iron removing mechanism comprises a mounting rod (701), a connecting shaft (702), a sliding box (703), a baffle (704) and a circular sliding rail two (705); The installation rod (701) is arranged on the top of the installation frame two (613), the connecting shaft (702) is arranged on the side of the installation rod (701), the sliding box (703) is arranged on the outside of the connecting shaft (702), the circular ring sliding rail two (705) is arranged on the inside of the filter drum (609), the baffle (704) is arranged on the circular ring sliding rail two (705), the outside of the baffle (704) and the inside of the sliding box (703) are slidably connected, the end of the sliding box (703) is provided with the pull rod (711), the side of the baffle (704) is provided with the scraper (706), the side of the installation table (612) is provided with the straight sliding rail two (707), the sliding door (708) is slidably arranged on the straight sliding rail two (707), and the side of the sliding door (708) is provided with the fixed block (709).
Citation Information
Patent Citations
Pepper coarse screening device
CN221714890U