Fruit juice production raw material squeezing device

By introducing rotating rollers and crushed leaves into the juice production device to pretreat the broken fruit, and installing an auxiliary pressing mechanism at the end of the extraction pipeline for extrusion, the problem of incomplete pressing of the fruit is solved, the juice yield and device life are improved, and the juice production efficiency is improved.

CN223219887UActive Publication Date: 2025-08-15CHAOYANG BEIHE FOOD CO LTD
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Patent Information

Application Number
CN202422598735.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-15
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The existing spiral pressing device has not been pre-treated in the juice production, resulting in incomplete pressing of the fruit, low juice yield, short life of the pressing device and many residues.

Method used

A rotating roller and crushed blade are installed in the feeding mechanism to pretreat the broken fruit, and an auxiliary pressing mechanism is installed at one end of the pressing pipe for extrusion, thereby improving the extraction efficiency and juice output of the spiral strand.

Benefits of technology

It improves the juice yield and service life of the spiral extraction mechanism, improves the juice production efficiency and durability of the pressing device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The fruit juice production raw material squeezing device comprises a bearing frame, a spiral squeezing mechanism is installed at the top of the bearing frame, a feeding mechanism is installed at the top of the spiral squeezing mechanism, a fruit juice storage box is installed on the portion, below the spiral squeezing mechanism, of the bearing frame, and the spiral squeezing mechanism comprises a squeezing pipeline which makes contact with the top of the bearing frame. A filtering groove hole is formed in the bottom of the squeezing pipeline, a squeezing feeding opening and a squeezing discharging opening are formed in the squeezing pipeline, fruits in a feeding groove are pretreated and crushed through a rotating roller and crushing blades installed in the feeding mechanism, and the fruit squeezing degree of a spiral auger in the spiral squeezing mechanism is improved; meanwhile, the auxiliary squeezing mechanism installed at one end of the squeezing pipeline can squeeze water at the tail end of the squeezing pipeline in the squeezing process, fruit residues are squeezed again before being discharged from a squeezing discharging opening, the juice yield is increased, the service life of the spiral squeezing mechanism is prolonged, and meanwhile the juice squeezing efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of juice squeezing, in particular to a juice production raw material squeezing device. Background Art

[0002] In the process of producing juice, the fruit needs to be squeezed. At present, the existing spiral squeezing devices of enterprises generally do not pre-process the fruit by cutting it into pieces. The whole fruit is squeezed directly, resulting in incomplete squeezing of the fruit and low juice yield. The squeezing device is subjected to excessive load and resistance, which affects the service life of the squeezing device. In addition, pulp residue is easily left after the squeezing process, affecting the efficiency of juice squeezing production.

[0003] Therefore, in view of the shortcomings of the existing technology, it is necessary to provide a juice production raw material squeezing device to solve the shortcomings of the existing technology. Utility Model Content

[0004] The purpose of the utility model is to avoid the shortcomings of the existing technology and provide a juice production raw material squeezing device, which pre-treats and crushes the fruit in the feed trough by the rotating roller and crushing blades installed in the feeding mechanism, thereby improving the degree of fruit squeezing by the spiral auger in the spiral squeezing mechanism. At the same time, the auxiliary squeezing mechanism installed at one end of the squeezing pipe can squeeze the water at the end of the squeezing pipe during the squeezing process, and squeeze the fruit residue again before it is discharged from the squeezing feed port, thereby improving the juice yield and the service life of the spiral squeezing mechanism while improving the juice squeezing efficiency.

[0005] The above-mentioned purpose of the present invention is achieved through the following technical means.

[0006] Provided is a juice production raw material squeezing device, comprising a carrier frame, a spiral squeezing mechanism mounted on the top of the carrier frame, a feeding mechanism mounted on the top of the spiral squeezing mechanism, and a juice storage box mounted on the carrier frame below the spiral squeezing mechanism;

[0007] The spiral squeezing mechanism includes an squeezing pipe, which is in contact with the top of the supporting frame. A filter slot is provided at the bottom of the squeezing pipe. A squeezing feed port and a squeezing discharge port are respectively provided on the squeezing pipe. A rotating shaft is installed at one end of the squeezing pipe, which passes through the squeezing pipe. A driving motor is connected to the outside of the rotating shaft. Spiral augers are evenly arranged on the rotating shaft inside the squeezing pipe. An auxiliary squeezing mechanism is installed at the other end of the squeezing pipe, and the auxiliary squeezing mechanism is close to the squeezing discharge port.

[0008] The feeding mechanism includes a feeding trough, a feeding channel is opened on one side of the feeding trough, a rotating motor is installed on the top of the feeding trough, a rotating roller is connected to the rotating motor, the rotating roller passes through the feeding trough, crushing blades are set on the rotating roller, and a conical feeding port is set below the rotating roller, which is connected to the extraction feeding port.

[0009] The auxiliary extraction mechanism includes a mounting part, which is arranged at one end of the extraction pipe. A positioning block is arranged inside the mounting part. A threaded through hole is arranged in the center of the positioning block. A threaded screw is installed through the threaded through hole. A rotating handle is installed at one end of the threaded screw. The other end of the threaded screw passes through the extraction pipe and an extrusion block is installed.

[0010] Two groups of support frames are arranged in the center of the carrier frame. Filters are arranged on the support frames. The filters are installed in parallel with the squeezing pipes and are installed just above the juice storage box.

[0011] The utility model pre-processes and crushes the fruits in the feed trough by means of the rotating rollers and crushing blades installed in the feeding mechanism, thereby improving the degree of fruit squeezing by the spiral auger in the spiral squeezing mechanism. At the same time, the auxiliary squeezing mechanism installed at one end of the squeezing pipe can squeeze the water at the end of the squeezing pipe during the squeezing process, and squeeze the fruit residue again before it is discharged from the squeezing outlet, thereby improving the juice yield and the service life of the spiral squeezing mechanism while improving the juice squeezing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] The present invention is further described with reference to the accompanying drawings, but the contents in the accompanying drawings do not constitute any limitation to the present invention.

[0013] Figure 1 This is a front view of a juice production raw material squeezing device of the utility model.

[0014] Figure 2 The utility model is a structural schematic diagram of a spiral squeezing mechanism in a juice production raw material squeezing device.

[0015] Figure 3 This utility model is a juice production raw material squeezing device Figure 1 A partial enlarged view of the auxiliary extraction mechanism.

[0016] from Figures 1 to 3 Including:

[0017] 1. Carrying frame;

[0018] 2. Spiral extraction mechanism;

[0019] 3. Feeding mechanism;

[0020] 4. Juice storage box;

[0021] 5. Extraction pipeline;

[0022] 6. Filter slots;

[0023] 7. Extraction feed port;

[0024] 8. Extraction outlet;

[0025] 9. Rotating shaft;

[0026] 10. Drive motor;

[0027] 11. Auger;

[0028] 12. Auxiliary extraction mechanism;

[0029] 13. Feed chute;

[0030] 14. Feed channel;

[0031] 15. Rotate the motor;

[0032] 16. Rotating roller;

[0033] 17. Broken leaves;

[0034] 18. Conical feed mouth;

[0035] 19. Installation department;

[0036] 20. Positioning block;

[0037] 21. Threaded through hole;

[0038] 22. Threaded screw;

[0039] 23. Turn the handle;

[0040] 24. Extrusion block;

[0041] 25. Support frame;

[0042] 26. Filter. DETAILED DESCRIPTION

[0043] The present invention will be further described with reference to the following embodiments.

[0044] Example 1:

[0045] like Figure 1-3 As shown, a juice production raw material squeezing device includes a carrier frame 1, a spiral squeezing mechanism 2 is installed on the top of the carrier frame 1, a feeding mechanism 3 is installed on the top of the spiral squeezing mechanism 2, and a juice storage box 4 is installed on the carrier frame 1 below the spiral squeezing mechanism 2.

[0046] When in use, the fruit to be squeezed is added from the feeding mechanism 3, and after being pre-processed by the feeding mechanism 3, it enters the spiral squeezing mechanism 2. After the spiral squeezing mechanism 2 squeezes the fruit, the juice enters the juice storage box 4 for unified collection.

[0047] The spiral extraction mechanism 2 includes an extraction pipe 5, which contacts the top of the supporting frame 1. A filter slot 6 is provided at the bottom of the extraction pipe 5. An extraction feed port 7 and an extraction discharge port 8 are respectively provided on the extraction pipe 5. A rotating shaft 9 is installed at one end of the extraction pipe 5. The rotating shaft 9 passes through the extraction pipe 5. A driving motor 10 is connected to the outside of the rotating shaft 9. Spiral screws 11 are evenly arranged inside the extraction pipe 5 on the rotating shaft 9. An auxiliary extraction mechanism 12 is installed at the other end of the extraction pipe 5. The auxiliary extraction mechanism 12 is close to the extraction discharge port 8.

[0048] The fruit pre-processed by the feeding mechanism 3 will enter the squeezing pipe 5 from the squeezing feed port 7. The spiral auger 11 installed in the squeezing pipe 5 can be driven by the external drive motor 10 to rotate the rotating roller 16. The spiral auger 11 squeezes the fruit while rotating. During the squeezing process, the juice will flow downward from the filter slot 6 set at the bottom of the squeezing pipe 5, and the residue after squeezing can be discharged to the outside from the squeezing feed port 8. The auxiliary squeezing mechanism 12 set on the squeezing pipe 5 can cooperate with the spiral auger 11 to improve the squeezing efficiency of the fruit and increase the juice yield.

[0049] The feeding mechanism 3 includes a feeding trough 13, a feeding channel 14 is opened on one side of the feeding trough 13, a rotating motor 15 is installed on the top of the feeding trough 13, and a rotating roller 16 is connected to the rotating motor 15. The rotating roller 16 passes through the feeding trough 13, and a crushing blade 17 is provided on the rotating roller 16. A conical feeding port 18 is provided below the rotating roller 16, and the conical feeding port 18 is connected to the extraction feeding port 7.

[0050] The feeding mechanism 3 adds fruit from the feeding channel 14, causing the fruit to fall into the feeding trough 13. The crushing blades 17 provided in the feeding trough 13 can be driven to rotate by the rotating motor 15 and the rotating roller 16 to crush the fruit in the feeding trough 13. The crushed fruit will enter the squeezing feed port 7 from the conical material port 18, and then the juice will be squeezed out by the spiral squeezing mechanism 2. The crushed fruit can be easily squeezed, thereby improving the squeezing efficiency, while reducing the squeezing burden of the spiral squeezing mechanism 2 and improving the service life.

[0051] The auxiliary extraction mechanism 12 includes a mounting portion 19, which is arranged at one end of the extraction pipe 5. A positioning block 20 is arranged inside the mounting portion 19. A threaded through hole 21 is arranged in the center of the positioning block 20. A threaded screw 22 is installed through the threaded through hole 21. A rotating handle 23 is installed at one end of the threaded screw 22, and an extrusion block 24 is installed inside the other end of the threaded screw 22 through the extraction pipe 5.

[0052] When the auxiliary squeezing mechanism is used, the rotating handle 23 is operated. The rotating handle 23 is integrally connected with the threaded screw 22. When the rotating handle 23 is rotated, the threaded screw 22 can be driven to rotate. During the rotation process, the threaded screw 22 cooperates with the threaded through hole 21 opened in the center of the positioning block 20. Since the positioning block 20 is fixed inside the mounting portion 19, the threaded screw 22 can be pushed forward during rotation. The forward-moving threaded screw 22 can drive the squeezing block 24 installed thereon to cooperate with the spiral auger 11 inside the squeezing pipe 5 to improve the squeezing efficiency of the fruit and increase the juice output.

[0053] Two groups of support frames 25 are provided in the center of the carrier frame 1, and a filter screen 26 is provided on the support frame 25. The filter screen 26 is installed in parallel with the extraction pipe 5 and is installed directly above the juice storage box. The filter screen 26 movably installed on the support frame 25 can be replaced manually to perform secondary residue filtration on the juice flowing out of the filter slot 6, and then the filtered juice flows into the juice storage box 4 to ensure the quality of juice squeezing.

[0054] During the production process, the fruits in the feed trough 13 are pre-processed and crushed by the rotating roller 16 and the crushing blades 17 installed in the feeding mechanism 3, thereby improving the degree of fruit squeezing by the spiral auger 11 in the spiral squeezing mechanism 2. At the same time, the auxiliary squeezing mechanism 12 installed at one end of the squeezing pipe 5 can squeeze the water at the end of the squeezing pipe 5 during the squeezing process, and squeeze the fruit residue again before it is discharged from the squeezing outlet 8, thereby improving the juice yield and the service life of the spiral squeezing mechanism 2 while improving the juice squeezing efficiency.

[0055] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention and are not intended to limit the scope of protection of the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solution of the present invention may be modified or replaced by equivalents without departing from the essence and scope of the technical solution of the present invention.

Claims

1. A juice production raw material squeezing device, characterized by: It comprises a supporting frame, a spiral squeezing mechanism is installed on the top of the supporting frame, a feeding mechanism is installed on the top of the spiral squeezing mechanism, and a juice storage box is installed on the supporting frame below the spiral squeezing mechanism; The spiral squeezing mechanism includes an squeezing pipe, which is in contact with the top of the supporting frame. A filter slot is provided at the bottom of the squeezing pipe. A squeezing feed port and a squeezing discharge port are respectively provided on the squeezing pipe. A rotating shaft is installed at one end of the squeezing pipe, and the rotating shaft passes through the squeezing pipe. A driving motor is connected to the outside of the rotating shaft. Spiral augers are evenly arranged on the rotating shaft inside the squeezing pipe. An auxiliary squeezing mechanism is installed at the other end of the squeezing pipe, and the auxiliary squeezing mechanism is close to the squeezing discharge port.

2. The juice production raw material squeezing device according to claim 1, characterized in that: The feeding mechanism includes a feeding trough, a feeding channel is opened on one side of the feeding trough, a rotating motor is installed on the top of the feeding trough, a rotating roller is connected to the rotating motor, the rotating roller passes through the feeding trough, crushing blades are provided on the rotating roller, and a conical feeding port is provided below the rotating roller, and the conical feeding port is connected to the squeezing feeding port.

3. The juice production raw material squeezing device according to claim 2, characterized in that: The auxiliary extraction mechanism includes a mounting portion, which is arranged at one end of the extraction pipe. A positioning block is arranged inside the mounting portion. A threaded through hole is arranged in the center of the positioning block. A threaded screw is installed through the threaded through hole. A rotating handle is installed at one end of the threaded screw. The other end of the threaded screw passes through the extraction pipe and an extrusion block is installed.

4. The juice production raw material squeezing device according to claim 3, characterized in that: Two groups of support frames are arranged in the center of the carrier frame. Filter screens are arranged on the support frames. The filter screens are installed in parallel with the squeezing pipes and are installed just above the juice storage box.