Malus spectabilis juicer capable of removing juicing foam

By designing a defoaming mesh and scraper mechanism in the crabapple juicer, the problem of juicing foam affecting the taste of the juice is solved, achieving efficient foam removal and ensuring juice quality.

CN223504020UActive Publication Date: 2025-11-04HEBEI YUTANGYUAN ECOLOGICAL AGRI CO LTD
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Patent Information

Application Number
CN202422982927.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2025-11-04
Estimated Expiration
2034-12-04

AI Technical Summary

Technical Problem

The foam produced during the traditional crabapple juicing process affects the taste of the juice, and current technology is unable to effectively remove it.

Method used

A crabapple juicer was designed, comprising a juicing device, a crushing device, and a collection box. Foam is filtered using a defoaming mesh, and foam is scraped off by a combination of a lead screw slider and a slider-bar mechanism. The foam is then discharged from the guide plate by a scraper.

Benefits of technology

It effectively removes foam during the juicing process, ensuring the taste and quality of the crabapple juice.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a plum-leaf crab juicer capable of removing juicing foams, which belongs to the technical field of juicing and comprises a juicing device arranged on a workbench, a collecting box is arranged below the juicing device and comprises a box body, a defoaming wire mesh is slidably connected in the box body, and mounting plates are symmetrically arranged on the outer side wall of the box body front and back. A defoaming mechanism is arranged on the mounting plate; the defoaming mechanism comprises a lead screw and sliding block mechanism arranged on the front end mounting plate and a sliding block and sliding rod mechanism arranged on the rear end mounting plate, matched supporting columns are arranged on the lead screw and sliding block mechanism and the sliding block and sliding rod mechanism, a cross rod is inserted into the upper ends of the supporting columns and located above the defoaming wire mesh, a scraping plate is arranged on the lower end face of the cross rod, and the scraping plate is located above the defoaming wire mesh. The bottom of the scraping plate is propped against the defoaming silk screen; and an opening is formed in the top of the left side wall of the box body. The plum-leaf crab juicer capable of removing the juicing foam effectively removes the foam generated in the juicing process, and guarantees the taste of plum-leaf crab juice.
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Description

Technical Field

[0001] This utility model relates to the field of juicing technology, and in particular to a crabapple juicer that removes foam during juicing. Background Technology

[0002] Crabapples are rich in vitamins and have high nutritional value. Juicing them and then bottling them extends their shelf life and makes them convenient to drink. Traditional processing methods generally use mechanical juicing; however, in actual production, the juice often contains foam. If this foam is not removed before bottling, it will affect the taste and quality of the juice. To ensure a better taste for crabapple juice, this invention proposes a crabapple juicer that removes juicing foam. Utility Model Content

[0003] The purpose of this invention is to provide a crabapple juicer that removes foam during juicing, thus solving the aforementioned problems.

[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0005] This utility model discloses a crabapple juicer for removing juicing foam, including a juicing device set on a worktable, a collection box set below the juicing device, the collection box including a box body, arc-shaped protrusions set vertically at the four corners of the box body, a defoaming wire mesh slidably connected to the arc-shaped protrusions, and mounting plates symmetrically arranged front and back on the outer side wall of the box body, with a defoaming mechanism set on the mounting plates;

[0006] The defogging mechanism includes a lead screw and slider mechanism mounted on the front mounting plate and a slider and slide bar mechanism mounted on the rear mounting plate. Both the lead screw and slider mechanism and the slider and slide bar mechanism are equipped with matching support columns. A crossbar is inserted into the upper end of the support column. The crossbar is located above the defogging mesh. A scraper is provided on the lower end face of the crossbar. The bottom of the scraper abuts against the defogging mesh. An opening is provided at the top of the left side wall of the housing. A downwardly inclined guide plate is provided on the opening. The guide plate is located on the outside of the housing.

[0007] Furthermore, the lead screw and slider mechanism includes a base, on which slide rails are symmetrically arranged in the front-to-back direction, and a slider is slidably arranged on the slide rails. A lead screw is threadedly connected to the middle position of the slider. One end of the lead screw is fixedly connected to a forward and reverse motor, and the other end is rotatably arranged at the end of the base.

[0008] Furthermore, the slider mechanism includes a slide bar fixedly mounted on the mounting plate, and a matching sliding block is slidably mounted on the slide bar.

[0009] Furthermore, the bottom of the box is symmetrically provided with several casters.

[0010] Furthermore, the juicing device includes a juicing cylinder, with a second inlet located on the upper left side of the juicing cylinder and a second outlet located on the lower right side of the juicing cylinder; an auger mechanism is provided inside the juicing cylinder, and several through holes are opened on the lower end surface of the juicing cylinder located above the housing; the left and right ends of the juicing cylinder are mounted on the workbench via support frames.

[0011] Furthermore, a pulverizing device is provided above the juicing device. The pulverizing device includes a pulverizing chamber, with a feed inlet at the top and a discharge outlet at the bottom. The discharge outlet is located above the juicing device. A rotating shaft is rotatably mounted horizontally inside the pulverizing chamber, and several pulverizing blades are evenly spaced on the rotating shaft. Both ends of the pulverizing chamber are mounted on the worktable via support legs.

[0012] Furthermore, both the pulverizing device and the juicing device are connected to the drive mechanism via a transmission mechanism.

[0013] Compared with the prior art, the beneficial technical effects of this utility model are as follows:

[0014] This utility model relates to a crabapple juicer that removes foam during juicing. The crabapple is crushed before juicing, and the juice falls into a collection box below. Foam is blocked by a defoaming mesh, while the juice is collected below and eventually transported to a filling machine for bottling. When there is a lot of foam on the defoaming mesh, a screw-slider mechanism and a slider-rail mechanism work together to move the crossbar at the top of the support column from right to left. During this movement, a scraper removes the foam from the defoaming mesh, and the foam is finally discharged from the opening along the guide plate. In summary, this crabapple juicer effectively removes foam generated during the juicing process, ensuring the good taste of the crabapple juice. Attached Figure Description

[0015] The present invention will be further described below with reference to the accompanying drawings.

[0016] Figure 1 This is a front view of the crabapple juicer that removes juicing foam according to this utility model;

[0017] Figure 2 This is a partial structural diagram of the crabapple juicer for removing juicing foam according to this utility model;

[0018] Figure 3 This is a cross-sectional view of the crushing device;

[0019] Figure 4 This is a schematic diagram of a juicing device.

[0020] Figure 5 This is a cross-sectional view of the juicing device;

[0021] Figure 6 This is a schematic diagram of the collection box structure;

[0022] Explanation of reference numerals in the attached drawings: 1. Feed inlet 1; 2. Crushing device; 3. Discharge inlet 1; 4. Feed inlet 2; 5. Juicing device; 6. Workbench; 7. Collection box; 8. Transmission mechanism; 9. Drive mechanism;

[0023] 201. Crushing chamber; 202. Rotating shaft; 203. Crushing blades; 204. Support legs;

[0024] 501. Juicing cylinder; 502. Through hole; 503. Feed inlet 2; 504. Screw mechanism; 505. Support frame;

[0025] 701. Housing; 702. Defogging mesh; 703. Arc-shaped protrusion; 704. Mounting plate; 705. Forward and reverse motor; 706. Lead screw; 707. Slide rail; 708. Slider; 709. Support column; 710. Crossbar; 711. Scraper; 712. Opening; 713. Guide plate; 714. Caster wheel. Detailed Implementation

[0026] like Figure 1 , 2 As shown, a crabapple juicer for removing foam during juicing includes a juicing device 5 mounted on a workbench 6, with a collection box 7 installed below the juicing device 5. A crushing device 2 is mounted above the juicing device 5, and both the crushing device 2 and the juicing device 5 are connected to a drive mechanism 9 via a transmission mechanism 8. In actual operation, the drive mechanism 9 drives the crushing device 2 and the juicing device 5 through the transmission mechanism 8 to crush and juice the crabapple, ensuring both efficiency and quality in juicing.

[0027] like Figure 3As shown, the crushing device 2 includes a crushing chamber 201. A feed inlet 1 is installed at the top of the crushing chamber 201, and a discharge inlet 3 is installed at the bottom. The discharge inlet 3 is located above the juicing device 5. A rotating shaft 202 is rotatably mounted horizontally inside the crushing chamber 201. Several crushing blades 203 are evenly spaced on the rotating shaft 202. One end of the rotating shaft 202 is rotatably mounted on the inner wall of the crushing chamber 201, and the other end extends out of the crushing chamber 201 and is connected to a transmission mechanism 8. When the drive mechanism 9 is activated, the rotating shaft 202 rotates, thereby driving the crushing blades 203 to rotate. During rotation, the crabapples fed in through the feed inlet 1 are crushed, and the crushed crabapples are discharged through the discharge inlet 3. Both ends of the crushing chamber 201 are mounted on the worktable 6 via support legs 204. The support legs 204 provide four-corner support for the crushing chamber 201, ensuring its stability during operation.

[0028] like Figure 4 , 5 As shown, the juicing device 5 includes a juicing cylinder 501. A second inlet 4 is installed on the upper left side of the juicing cylinder 501, and a second outlet 503 is installed on the lower right side of the juicing cylinder 501. An auger mechanism 504 is installed inside the juicing cylinder 501. The main shaft of the auger mechanism 504 extends out of the juicing cylinder 501 and is connected to a drive mechanism 9 via a transmission mechanism 8. Several through holes 502 are opened on the lower end face of the juicing cylinder 501, located above the upper casing 701 of the collection box 7. The crushed crabapples enter the juicing cylinder 501 through the second inlet 4. Under the rotation of the auger mechanism 504, the juicing process is completed. The juice flows from the through holes 502 into the collection box 7 below, while impurities are transported by the auger mechanism 504 to the second outlet 503 and discharged from the juicing cylinder 501. The left and right ends of the juicing cylinder 501 are mounted on the workbench 6 via support frames 505 to ensure its operational stability.

[0029] like Figure 6 As shown, the collection box 7 includes a box body 701. Arc-shaped protrusions 703 are vertically mounted at the four corners of the box body 701. Demister mesh 702 is slidably connected to the arc-shaped protrusions 703. The four corners of the demister mesh 702 are provided with sliding grooves that match the arc-shaped protrusions 703, facilitating the installation and removal of the demister mesh 702. Mounting plates 704 are symmetrically mounted on the outer side wall of the box body 701, located at the upper part of the box body 701.

[0030] A defogging mechanism is installed on the mounting plate 704. The defogging mechanism includes a lead screw and slider mechanism installed on the front end of the mounting plate 704 and a slider and slide bar mechanism installed on the rear end of the mounting plate 704. Matching support columns 709 are installed on both the lead screw and slider mechanisms. A crossbar 710 is inserted into the upper end of each support column 709. The crossbar 710 is located above the defogging mesh 702. A scraper 711 is installed on the lower end face of the crossbar 710, and the bottom of the scraper 711 abuts against the defogging mesh 702. An opening 712 is provided at the top of the left side wall of the housing 701. A downwardly inclined guide plate 713 is installed on the opening 712, and the guide plate 713 is located on the outside of the housing 701. When defoaming is required, the scraper 711 is pressed against the defoaming mesh 702. With the cooperation of the screw-slider mechanism and the slider-rail mechanism, it moves from the right side of the defoaming mesh 702 to the left side at a constant speed. During the movement, the scraper 711 carries away the foam and finally discharges it from the opening 712 into the box 701, and then flows downward along the guide plate 713.

[0031] The lead screw and slider mechanism includes a base, on which slide rails 707 are symmetrically mounted in the front-to-back direction. A slider 708 is slidably mounted on the slide rails 707, and a lead screw 706 is threadedly connected to the middle position of the slider 708. One end of the lead screw 706 is fixedly connected to a forward / reverse motor 705, and the other end is rotatably mounted on the end of the base. The slider-slider mechanism includes a slide rod fixedly mounted on the mounting plate 704, on which a matching sliding block (this is a conventional technique and is not shown in the figure) is slidably mounted. According to the lead screw principle, when the forward / reverse motor 705 is started, the lead screw 706 rotates, and the slider 708 moves under the constraint of the slide rails 707. Through the connection of the support column 709 and the crossbar 710, the sliding block on the other side also moves under the constraint of the slide rod.

[0032] The bottom of the housing 701 is symmetrically equipped with several casters 714 to facilitate the movement of the housing 710.

[0033] The operation process of this utility model is as follows:

[0034] First, crabapples are fed into the crushing device 2 through inlet 1 for crushing. Then, the crushed crabapples are discharged from outlet 3 to inlet 4 and enter the juicing cylinder 501 for juicing. The juice flows from the through hole 502 into the collection box 7 below, while impurities are transported to outlet 503 by the auger mechanism 504. Finally, the juice flows into the lower box 701 after filtering out the foam through the demister mesh 702. When there is a lot of foam on the demister mesh 702, a scraper 711 is pressed against it. With the cooperation of the screw-slider mechanism and the slider-rail mechanism, the scraper moves from the right side of the demister mesh 702 to the left side at a constant speed. During the movement, the scraper 711 carries away the foam and finally discharges it from the box 701 through the opening 712, and then flows downward along the guide plate 713.

[0035] The embodiments described above are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Various modifications and improvements made to the technical solutions of the present utility model by those skilled in the art without departing from the spirit of the present utility model should fall within the protection scope defined by the claims of the present utility model.

Claims

1. A crabapple juicer for removing foam during juicing, characterized in that: The system includes a juicing device (5) mounted on a workbench (6), a collection box (7) below the juicing device (5), the collection box (7) including a box body (701), an arc-shaped protrusion (703) vertically mounted at the four corners of the box body (701), a defoaming mesh (702) slidably connected to the arc-shaped protrusion (703), and mounting plates (704) symmetrically mounted on the outer side wall of the box body (701), and a defoaming mechanism mounted on the mounting plate (704). The defogging mechanism includes a screw-slider mechanism on the front mounting plate (704) and a slider-slider mechanism on the rear mounting plate (704). Both the screw-slider mechanism and the slider-slider mechanism are provided with matching support columns (709). A crossbar (710) is inserted into the upper end of the support column (709). The crossbar (710) is located above the defogging mesh (702). A scraper (711) is provided on the lower end face of the crossbar (710). The bottom of the scraper (711) abuts against the defogging mesh (702). An opening (712) is provided at the top of the left side wall of the box (701). A guide plate (713) is provided on the opening (712) and tilted downwards. The guide plate (713) is located on the outside of the box (701).

2. The crabapple juicer for removing juicing foam according to claim 1, characterized in that: The lead screw and slider mechanism includes a base, on which slide rails (707) are symmetrically arranged in the front-back direction. A slider (708) is slidably arranged on the slide rails (707). A lead screw (706) is threadedly connected to the middle position of the slider (708). One end of the lead screw (706) is fixedly connected to a forward and reverse motor (705), and the other end is rotatably arranged at the end of the base.

3. The crabapple juicer for removing juicing foam according to claim 1, characterized in that: The slider mechanism includes a slider fixedly mounted on the mounting plate (704), and a matching slider block is slidably mounted on the slider.

4. The crabapple juicer for removing juicing foam according to claim 1, characterized in that: The bottom of the housing (701) is symmetrically provided with several casters (714).

5. The crabapple juicer for removing juicing foam according to claim 1, characterized in that: The juicing device (5) includes a juicing cylinder (501), with a feed inlet (4) on the upper left side of the juicing cylinder (501) and a discharge outlet (503) on the lower right side of the juicing cylinder (501); the juicing cylinder (501) is equipped with an auger mechanism (504) inside, and several through holes (502) are opened on the lower end face of the juicing cylinder (501) above the housing (701); the left and right ends of the juicing cylinder (501) are mounted on the workbench (6) by a support frame (505).

6. The crabapple juicer for removing juicing foam according to claim 1, characterized in that: A crushing device (2) is provided above the juicing device (5). The crushing device (2) includes a crushing box (201). The top of the crushing box (201) is provided with a feed inlet (1) and the bottom is provided with a discharge outlet (3). The discharge outlet (3) is located above the juicing device (5). A rotating shaft (202) is provided horizontally and rotatably inside the crushing box (201). Several crushing blades (203) are equidistantly arranged on the rotating shaft (202). Both ends of the crushing box (201) are mounted on the workbench (6) through support legs (204).

7. The crabapple juicer for removing juicing foam according to claim 6, characterized in that: The crushing device (2) and the juicing device (5) are both connected to the driving mechanism (9) through the transmission mechanism (8).