Impurity removal production device

By designing a purification production device with screening and oscillating components, the problem of low purification efficiency in the processing of candied fruit raw materials was solved, realizing multi-level purification and automated production, improving purification efficiency and equipment practicality.

CN224127856UActive Publication Date: 2026-04-17GUANGDONG JIABAO GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG JIABAO GRP CO LTD
Filing Date
2025-05-08
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In the existing technology, the impurity removal efficiency during the processing of candied fruit raw materials is low and it is difficult to carry out multi-level impurity removal. Manual selection is inefficient and it is difficult to ensure thoroughness.

Method used

A purification production device was designed, comprising a screening component and a swing component. The screening component enables multi-level screening and purification, while the swing component improves the purification efficiency. It is also equipped with a dust removal mechanism to collect dust and debris, and combined with a conveyor belt, it achieves automated production.

Benefits of technology

It improves the efficiency of impurity removal from candied fruit raw materials and the automation of production, ensuring thorough impurity removal and the practicality of the equipment, making it suitable for large-scale production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an impurity removal production device, belongs to the technical field of preserved fruit raw material processing, and aims to solve the problems that the impurity removal efficiency is low and multi-layer impurity removal operation cannot be carried out, the impurity removal production device comprises a mounting frame, a conveying belt, an impurity removal box and a feeding port, an impurity removal mechanism is arranged in the impurity removal box, and a dust removal mechanism is further arranged on the impurity removal box; through the arrangement of the impurity removal mechanism, raw materials entering the impurity removal box through the feeding port can be subjected to impurity removal operation conveniently, multi-layer screening and impurity removal work on the raw materials can be achieved through the screening assembly, the impurity removal efficiency of the raw materials is improved, meanwhile, the impurity removal efficiency of the interior of the impurity removal box is further improved through the swing assembly, and the impurity removal efficiency of the interior of the impurity removal box is improved. The dust removal mechanism is arranged, dust or other impurities generated by raw materials in the impurity removal box can be collected and cleaned in cooperation with operation of the impurity removal mechanism, automatic discharging and discharging operation can be conducted on the raw materials subjected to impurity removal through the arrangement of the conveying belt, and the automatic production capacity is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of candied fruit raw material processing technology, specifically relating to a purification production device. Background Technology

[0002] In the processing of candied fruit raw materials, impurity removal is a crucial step. Candied fruit raw materials typically come from various fruits and vegetables, and these materials inevitably become contaminated with impurities during harvesting, transportation, and storage, such as hair, ropes, small leaves, dust, insect eggs, and pesticide residues. These impurities not only affect the appearance and taste of the finished candied fruit but may also pose a potential threat to consumers' health.

[0003] Traditional methods for removing impurities from candied fruit raw materials mainly rely on manual selection, which has many drawbacks. First, manual selection is inefficient and cannot meet the needs of large-scale production; second, manual selection cannot guarantee the thoroughness of impurity removal and is prone to missing tiny impurities.

[0004] Therefore, a purification production device is needed to solve the problems of low purification efficiency and inability to perform multi-level purification operations in the existing technology. Utility Model Content

[0005] The purpose of this invention is to provide a purification production device to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a purification production device, comprising a mounting frame, a conveyor belt, a purification box, and a feed inlet. The conveyor belt is mounted on the mounting frame, the purification box is fixedly mounted on the upper part of the mounting frame and located above the conveyor belt, the feed inlet is fixedly mounted on the top left side of the purification box, a purification mechanism is provided inside the purification box, and a dust removal mechanism is also provided on the purification box.

[0007] The impurity removal mechanism includes a screening assembly and a swing assembly. The screening assembly is located inside the impurity removal box and is used to screen and remove impurities from the raw materials. The swing assembly is connected to the screening assembly and is located on the impurity removal box, and is used to vibrate and screen the raw materials through the screening assembly.

[0008] It should be noted in the solution that the screening assembly includes a first screen frame, which is located inside the impurity removal box and below the feed inlet. A first connecting seat is fixedly connected to the left side of the first screen frame, and the first screen frame is rotatably mounted inside the impurity removal box via the first connecting seat. A first collection frame is detachably mounted on the impurity removal box below the first connecting seat. A second screen frame is located on the right side below the first collection frame, and the second screen frame is symmetrically arranged inside the impurity removal box with the first screen frame on the left and right. A second connecting seat is fixedly connected to the right side of the second screen frame, and the second screen frame is rotatably mounted inside the impurity removal box via the second connecting seat. A second collection frame is detachably mounted on the impurity removal box below the second screen frame.

[0009] It is worth noting that both the bottom of the first and second screen frames are perforated plates, and the mesh diameter at the bottom of the first screen frame is larger than that at the bottom of the second screen frame.

[0010] It should be further noted that the first and second screen frames are staggered vertically within the impurity removal box via a swing assembly.

[0011] In a preferred embodiment, the oscillating assembly includes a mounting plate and a motor. The mounting plate is fixedly mounted on the front surface of the impurity removal box, and the motor is fixedly mounted on the front side of the mounting plate. A drive gear is fixedly connected to the rear end of the motor. Driven gears are respectively meshed on the upper and lower parts of the drive gear. A connecting shaft is fixedly connected to the driven gear. A rotating disk is fixedly connected to the rear end of the connecting shaft. A fixing rod is fixedly connected to the rear surface of the rotating disk. A connecting block is fixedly connected to the fixing rod on the front surface of the first or second screen frame, respectively. A limiting groove matching the fixing rod is provided on the connecting block.

[0012] In a preferred embodiment, the connecting shaft is rotatably mounted on the impurity removal box via bearings, and the rotating disk is disposed inside the impurity removal box via the connecting shaft.

[0013] In a preferred embodiment, the fixing rod is disposed near the outer periphery of the rotating disk surface.

[0014] In a preferred embodiment, the dust removal mechanism includes a dust collection box, which is fixedly connected to and communicates with the interior of the dust removal box. A fan is fixedly installed on the left side of the dust collection box, and a dust collection frame is detachably installed on the right side of the fan inside the dust collection box.

[0015] Compared with the prior art, the present invention provides a purification production device, which includes at least the following:

[0016] Beneficial effects:

[0017] (1) The impurity removal mechanism facilitates the impurity removal operation of the raw materials entering the impurity removal box through the feed inlet, and the screening component enables multi-level screening and impurity removal of the raw materials, thereby improving the impurity removal efficiency of the raw materials. At the same time, the swing component further improves the impurity removal efficiency inside the impurity removal box.

[0018] (2) By setting up a dust removal mechanism, the dust or other impurities generated by the raw materials in the impurity removal box can be collected and cleaned, thereby improving the practicality of the device. Furthermore, by setting up a conveyor belt, the raw materials that have been cleaned can be automatically unloaded and discharged, thereby improving its automated production capacity. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0020] Figure 2 This is a schematic diagram of the disassembled structure of this utility model;

[0021] Figure 3 This is a partial cross-sectional structural diagram of the present invention;

[0022] Figure 4 This is a schematic diagram of the disassembled structure of the impurity removal mechanism of this utility model.

[0023] In the diagram: 1. Mounting frame; 2. Conveyor belt; 3. Impurity removal box; 4. Feed inlet; 5. Impurity removal mechanism; 51. Screening assembly; 511. First screen frame; 512. First connecting seat; 513. First collection frame; 514. Second screen frame; 515. Second connecting seat; 516. Second collection frame; 52. Swing assembly; 521. Mounting plate; 522. Motor; 523. Drive gear; 524. Driven gear; 525. Connecting shaft; 526. Rotating disc; 527. Fixed rod; 528. Connecting block; 529. Limiting groove; 6. Dust removal mechanism; 601. Dust collection box; 602. Fan; 623. Dust collection frame. Detailed Implementation

[0024] The present invention will be further described below with reference to the embodiments.

[0025] Please see Figure 1-4 This utility model provides a purification production device, including a mounting frame 1, a conveyor belt 2, a purification box 3, and a feed inlet 4. The conveyor belt 2 is mounted on the mounting frame 1, the purification box 3 is fixedly mounted on the upper part of the mounting frame 1 and located above the conveyor belt 2, the feed inlet 4 is fixedly mounted on the top left side of the purification box 3, a purification mechanism 5 is provided inside the purification box 3, and a dust removal mechanism 6 is also provided on the purification box 3.

[0026] The impurity removal mechanism 5 includes a screening assembly 51 and a swing assembly 52. ​​The screening assembly 51 is located in the impurity removal box 3 and is used to screen and remove impurities from the raw materials. The swing assembly 52 is connected to the screening assembly 51 and is located on the impurity removal box 3. It is used to vibrate and screen the raw materials through the screening assembly 51.

[0027] Further as Figure 2 , Figure 3 and Figure 4 As shown, it is worth noting that the screening assembly 51 includes a first screen frame 511, which is located inside the impurity removal box 3 and below the feed inlet 4. A first connecting seat 512 is fixedly connected to the left side of the first screen frame 511, allowing the first screen frame 511 to rotate within the impurity removal box 3 via the first connecting seat 512. A first collecting frame 513 is detachably installed on the impurity removal box 3 below the first connecting seat 512. A second screen frame 514 is located on the right side below the first collecting frame 513, and the second screen frame 514 is symmetrically arranged with the first screen frame 511. Inside the impurity removal box 3, a second connecting seat 515 is fixedly connected to the right side of the second screen frame 514. The second screen frame 514 is rotatably installed inside the impurity removal box 3 through the second connecting seat 515. A second collection frame 516 is detachably installed on the impurity removal box 3 below the second screen frame 514. The bottom of the first screen frame 511 and the second screen frame 514 are both set with perforated plates. The mesh aperture at the bottom of the first screen frame 511 is larger than the mesh aperture at the bottom of the second screen frame 514. The first screen frame 511 and the second screen frame 514 are staggered vertically inside the impurity removal box 3 through the swing component 52.

[0028] In use, the swing assembly 52 can swing and dislodge impurities in the raw material, which are then screened out through the mesh plate and fall onto the first collection frame 513. The swing assembly then shakes the raw material onto the second screen frame 514 for further screening and impurity removal. The impurities can fall into the second collection frame 516. The first collection frame 513 and the second collection frame 516 can be disassembled to facilitate the collection and cleaning of impurities.

[0029] Further as Figure 2 , Figure 3 and Figure 4As shown, it is worth noting that the swing assembly 52 includes a mounting plate 521 and a motor 522. The mounting plate 521 is fixedly mounted on the front surface of the impurity removal box 3, and the motor 522 is fixedly mounted on the front side of the mounting plate 521. The rear end of the motor 522 is fixedly connected to a drive gear 523. The upper and lower parts of the drive gear 523 are respectively meshed with driven gears 524. A connecting shaft 525 is fixedly connected to the driven gear 524. A rotating disk 526 is fixedly connected to the rear end of the connecting shaft 525. The connecting shaft 525 is rotatably mounted on the impurity removal box 3 through bearings. The rotating disk 526 is located inside the impurity removal box 3 through the connecting shaft 525. A fixing rod 527 is fixedly connected to the rear surface of the rotating disk 526. The fixing rod 527 is located near the outer periphery of the rotating disk 526. A connecting block 528 is fixedly connected to the front surface of the first screen frame 511 or the second screen frame 514 respectively. A limiting groove 529 matching the fixing rod 527 is opened on the connecting block 528.

[0030] In use, the motor 522 operates, causing the drive gear 523 to rotate, which in turn drives the driven gear 524 to rotate. This causes the connecting shaft 525 to drive the rotating disk 526 to rotate, and the fixed rod 527 to make circular motion under the rotation of the rotating disk 526, making it slide back and forth in the limiting groove 529. The fixed rod 527 then drives the connecting block 528 to move, so that the first screen frame 511 and the second screen frame 514 swing back and forth in the impurity removal box 3 through the first connecting seat 512 and the second connecting seat 515, respectively. When the raw material is above the first screen frame 511, the swinging motion can shake off the impurities in the raw material and screen them out through the mesh plate, causing them to fall onto the first collection frame 513. The swinging motion then shakes the raw material onto the second screen frame 514 for a second screening and impurity removal operation. The impurities can fall onto the second collection frame 516. By disassembling the first collection frame 513 and the second collection frame 516, it is easy to collect and clean the impurities.

[0031] According to the above working process, the impurity removal mechanism 5 facilitates the impurity removal operation of the raw materials entering the impurity removal box 3 through the feed inlet 4, and the screening component 51 enables multi-level screening and impurity removal of the raw materials, thereby improving the impurity removal efficiency of the raw materials. At the same time, the swing component 52 further improves the impurity removal efficiency inside the impurity removal box 3.

[0032] Further as Figure 1 , Figure 2 and Figure 3 As shown, it is worth noting that the dust removal mechanism 6 includes a dust collection box 601, which is fixedly connected to the impurity removal box 3 and communicates with the inside of the impurity removal box 3. A fan 602 is fixedly installed on the left side of the dust collection box 601, and a dust collection frame 603 is detachably installed on the right side of the fan 602 inside the dust collection box 601.

[0033] During use, the blower 602 operates to adsorb and collect the dust generated during the impurity removal process in the impurity removal box 3. Smaller impurity particles and dust are collected and cleaned through the dust collection frame 603 to improve the efficiency of impurity removal in the impurity removal box 3. After the impurity removal is completed, the raw material falls onto the conveyor belt 2 for transportation, thereby improving its automated impurity removal production capacity.

[0034] This solution has the following working process: When this device is in use, the candied fruit raw materials are poured into the impurity removal box 3 through the feed inlet 4 for impurity removal. At this time, the motor 522 runs, causing the drive gear 523 to rotate, which in turn drives the driven gear 524 to rotate. This causes the connecting shaft 525 to drive the rotating disk 526 to rotate. Then, the fixed rod 527 makes a circular motion under the rotation of the rotating disk 526, causing it to slide back and forth in the limiting groove 529. This, in turn, causes the connecting block 528 to move through the fixed rod 527, so that the first screen frame 511 and the second screen frame 514 swing back and forth in the impurity removal box 3 through the first connecting seat 512 and the second connecting seat 515, respectively. When the raw material is above the first screen frame 511, its swing can remove impurities from the raw material. The impurities inside are shaken off and screened through a perforated plate, falling onto the first collection frame 513. The shaking then shakes the raw material onto the second screen frame 514 for further screening and impurity removal. The impurities can also fall onto the second collection frame 516. Disassembling the first and second collection frames 513 and 516 facilitates the collection and cleaning of impurities. During the impurity removal process, the fan 602 operates to adsorb and collect the dust generated during impurity removal in the impurity removal box 3. Smaller impurity particles and dust are collected and cleaned through the dust collection frame 603 to improve the efficiency of impurity removal in the impurity removal box 3. After impurity removal, the raw material falls onto the conveyor belt 2 for conveying, improving its automated impurity removal production capacity.

[0035] In summary: The impurity removal mechanism 5 facilitates the removal of impurities from the raw materials entering the impurity removal box 3 through the feed inlet 4. The screening assembly 51 enables multi-level screening and impurity removal of the raw materials, improving the impurity removal efficiency. The oscillating assembly 52 further enhances the impurity removal efficiency inside the impurity removal box 3. The dust removal mechanism 6, working in conjunction with the impurity removal mechanism 5, improves the collection and cleaning of dust or other impurities generated by the raw materials in the impurity removal box 3, thereby enhancing the practicality of the device. Furthermore, the conveyor belt 2 enables automatic unloading and discharge of the impurity-removed raw materials, improving its automated production capabilities.

Claims

1. A purification production apparatus, comprising a mounting frame (1), a conveyor belt (2), a purification box (3), and a feed inlet (4), wherein the conveyor belt (2) is mounted on the mounting frame (1), the purification box (3) is fixedly mounted on the upper part of the mounting frame (1) and located above the conveyor belt (2), and the feed inlet (4) is fixedly mounted on the top left side of the purification box (3), characterized in that: The impurity removal box (3) is equipped with an impurity removal mechanism (5), and the impurity removal box (3) is also equipped with a dust removal mechanism (6); The impurity removal mechanism (5) includes a screening assembly (51) and a swing assembly (52). The screening assembly (51) is located in the impurity removal box (3) for screening and removing impurities from the raw materials. The swing assembly (52) is connected to the screening assembly (51) and located on the impurity removal box (3) for vibrating and screening the raw materials through the screening assembly (51).

2. The device for removing impurities according to claim 1, characterized in that: The screening assembly (51) includes a first screen frame (511), which is located inside the impurity removal box (3) and below the feed inlet (4). A first connecting seat (512) is fixedly connected to the left side of the first screen frame (511). The first screen frame (511) is rotatably mounted inside the impurity removal box (3) via the first connecting seat (512). A first collection frame (513) is detachably installed below the first connecting seat (512) on the impurity removal box (3). A second screen frame (514) is provided on the lower right side of the frame (513). The second screen frame (514) is symmetrically arranged with the first screen frame (511) and is located in the impurity removal box (3). A second connecting seat (515) is fixedly connected to the right side of the second screen frame (514). The second screen frame (514) is rotatably installed in the impurity removal box (3) through the second connecting seat (515). A second collection frame (516) is detachably installed on the impurity removal box (3) below the second screen frame (514).

3. A device for removing impurities according to claim 2, characterized in that: The bottom of the first sieve frame (511) and the second sieve frame (514) are both perforated plates, and the bottom mesh diameter of the first sieve frame (511) is larger than that of the bottom mesh diameter of the second sieve frame (514).

4. The device according to claim 3, characterized in that: The first screen frame (511) and the second screen frame (514) are staggered vertically within the impurity removal box (3) via a swing assembly (52).

5. The impurity removal production apparatus according to claim 4, characterized in that: The swing assembly (52) includes a mounting plate (521) and a motor (522). The mounting plate (521) is fixedly mounted on the front surface of the impurity removal box (3). The motor (522) is fixedly mounted on the front side of the mounting plate (521). The rear end of the motor (522) is fixedly connected to a drive gear (523). The upper and lower parts of the drive gear (523) are respectively meshed with driven gears (524). The driven gear (524) is fixedly connected to a connecting shaft (525). The rear end of the connecting shaft (525) is fixedly connected to a rotating disk (526). The rear surface of the rotating disk (526) is fixedly connected to a fixing rod (527). The fixing rod (527) is respectively fixedly connected to a connecting block (528) on the front surface of the first screen frame (511) or the second screen frame (514). The connecting block (528) is provided with a limiting groove (529) matching the fixing rod (527).

6. A device for the removal of impurities according to claim 5, characterized in that: The connecting shaft (525) is rotatably mounted on the impurity removal box (3) via a bearing, and the rotating disk (526) is located inside the impurity removal box (3) via the connecting shaft (525).

7. A device for removing impurities according to claim 6, characterized in that: The fixing rod (527) is disposed on the surface of the rotating disk (526) near the outer periphery.

8. A device for removing impurities according to claim 7, characterized in that: The dust removing mechanism (6) comprises a dust suction box (601) fixedly connected to the impurity removing box (3) and in communication with the impurity removing box (3), a fan (602) fixedly installed at the left part in the dust suction box (601), and a dust collecting frame (603) detachably installed at the right side of the dust suction box (601).