Rosa roxburghii tratt residue and pulp separating device

The slurry separation device driven by dual motors automatically completes the slurry separation by using blade cutting and centrifugal force from the rotating inner liner, solving the problem of time-consuming and labor-intensive manual filtration in existing technologies and achieving efficient slurry extraction.

CN223464538UActive Publication Date: 2025-10-24KAIYANG SHANYE AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202422857206.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-10-24
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The existing method of separating the pulp from the residue requires manual filtration, which is time-consuming and labor-intensive, and it is difficult to fully extract the pulp juice.

Method used

The slurry separation device is driven by two motors. The first motor drives the blades to cut the prickly pear pieces, and the second motor drives the inner tank to rotate at high speed to squeeze out the slurry from the residue using centrifugal force. Combined with the filter screen, the slurry separation is automated.

Benefits of technology

It automates the separation of slurry and pulp, saving time and labor, and enabling more complete extraction of juice while reducing waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of residue and pulp separation devices, in particular to a roxburgh rose residue and pulp separation device which comprises a machine shell, a machine head is arranged at the top end of the machine shell, a first motor is arranged on the surface of the machine head, an inner container is rotationally connected to the interior of the machine shell, a filter screen is movably arranged in the inner container, and a pulp outlet is formed in the bottom end of the inner container. A plug is movably inserted into the slurry outlet; the rosa roxburghii tratt juice extractor has the beneficial effects that rosa roxburghii tratt blocks are cut into residues, most juice enters the lower half part of the inner container through meshes of the filter screen, the inner container rotates at a high speed, the juice attached to the rosa roxburghii tratt residues is squeezed out, then the juice enters the lower half part of the inner container through the meshes of the filter screen, and the inner container is taken out of the machine shell; after the juice is taken out, the plug is drawn out from the juice outlet, the juice in the inner container is poured into a prepared bowl or cup through the juice outlet, and residues are poured out from the top of the inner container, so that the separation of the residues and the juice of the roxburgh rose can be completed, time and labor are saved, the juice can be squeezed more sufficiently, and waste is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a slurry separation device technical field, specifically is a roxburgh rose slurry separation device. BACKGROUND

[0002] Roxburgh rose is a traditional Chinese medicinal material, has the effect of invigorating stomach and promoting digestion, roxburgh rose can be decocted or used in water, also can be made into juice and drink, when making roxburgh rose juice, the residual residue after the pulp juice of roxburgh rose is pressed out is poor in taste, therefore residue and pulp juice need to be separated.

[0003] In the prior art, roxburgh rose slurry is usually made by using a juicer, during making, roxburgh rose is peeled and cut into pieces and then put into the body of the juicer, a motor is arranged on the head of the juicer, a blade is driven to rotate rapidly by the transmission shaft of the motor, and the roxburgh rose pieces in the body are cut, so that the slurry flows out from the fruit pulp, after the juicing is completed, the head is opened, the filter screen spoon is suspended above the prepared bowl or cup, the residue slurry mixture is poured into the filter screen spoon, the slurry flows into the bowl or cup below from the mesh, and the residue is blocked by the filter screen spoon, so that the residue and the slurry are separated.

[0004] However, the residue slurry separation method in the prior art needs to manually filter the residue slurry mixture, the residue needs to be poured out after the filter screen spoon is filled, and the filtering needs to be repeated many times, which is time-consuming and laborious. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a roxburgh rose residue slurry separation device to solve the problems in the above background.

[0006] To achieve the above object, the utility model provides the following technical scheme: a roxburgh rose residue slurry separation device, comprising: a shell, a head is arranged at the top end of the shell, a first motor is arranged on the surface of the head, the transmission shaft of the first motor is rotatably connected to the surface of the head, a blade is fixed to the bottom end of the transmission shaft of the first motor, an inner container is rotatably connected in the shell, a filter screen is movably arranged in the inner container, a pulp outlet is formed in the bottom end of the inner container, and a plug is movably inserted into the pulp outlet.

[0007] Preferably, a motor groove is arranged at the bottom end of the inner container, a plug-in hole is formed in the inner wall of the motor groove of the inner container, a pulp outlet is arranged on the inner wall of the bottom end of the shell, the pulp outlet is movably inserted into the motor groove of the inner container, and the transmission shaft of the pulp outlet is movably inserted into the plug-in hole.

[0008] Preferably, a key groove is formed in the groove inner wall of the plug-in hole, a flat key is fixed to the transmission shaft of the second motor, and the flat key is movably inserted into the key groove.

[0009] Preferably, the inner part of the inner container is divided into two parts, the upper half of the inner container is in a cylindrical structure, and the lower half of the inner container is in an annular structure, and the filter screen is arranged at the middle height of the inner container.

[0010] Preferably, sliding bearing outer rings and sliding bearing inner rings are arranged between the inner wall of the machine shell and the outer wall of the inner container, and the sliding bearing outer rings and the sliding bearing inner rings are in annular plate body structures.

[0011] Preferably, a limiting rod mounting groove is formed in the surface of the sliding bearing inner ring, a limiting groove is formed in the surface of the inner container, one end of the limiting rod is movably inserted into the limiting groove, the other end of the limiting rod is movably inserted into the limiting rod mounting groove, and a spring is fixed between the one end of the limiting rod extending into the limiting rod mounting groove and the groove inner wall of the limiting rod mounting groove.

[0012] Preferably, a push rod groove is formed in the top end of the sliding bearing inner ring, a push rod is slidably connected in the push rod groove, the bottom end of the push rod is fixed to the top end of the limiting rod, and the top end of the push rod extends out of the push rod groove.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] The prickly pear residue slurry separation device is used for cutting the prickly pear into pieces, then the machine head is buckled at the top end of the machine shell, the bottom end of the machine head is provided with a positioning rod, the top end of the machine shell is provided with a positioning groove, then the first motor is started, the transmission shaft of the first motor drives the blade to rotate at high speed to cut the prickly pear pieces into residues, most of the slurry has entered the lower half of the inner container through the mesh holes of the filter screen, but part of the slurry is still attached to the residues, the first motor is stopped, then the second motor is started, the transmission shaft of the second motor is inserted into the insertion hole, the inner container is driven to rotate at high speed through the key groove and the key, the prickly pear residues in the inner container rotate with the inner container and are compressed on the side wall of the inner container under the action of the centrifugal force, so that the slurry attached to the prickly pear residues is squeezed out and then enters the lower half of the inner container through the mesh holes of the filter screen, after the above steps are completed, the second motor is stopped, then the machine head is removed, the inner container is taken out of the machine shell, the plug is pulled out of the slurry outlet, the slurry in the inner container is poured into a prepared bowl or cup through the slurry outlet, and the residues are poured out of the top of the inner container, so that the residue slurry separation of the prickly pear is completed, time and labor are saved, and the slurry can be more fully squeezed out, and waste is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a structural schematic view of the utility model;

[0016] Figure 2 It is a sectional structural schematic view of the utility model;

[0017] Figure 3 It isFigure 2 Structure enlarged schematic view at middle A.

[0018] In the figure: the shell 1, the head 2, the first motor 3, the blade 4, the inner container 5, the filter screen 6, the plug hole 7, the keyway 8, the flat key 9, the second motor 10, the pulp outlet 11, the plug 12, the sliding bearing outer ring 13, the sliding bearing inner ring 14, the limiting rod installation slot 15, the limiting slot 16, the limiting rod 17, the spring 18, the lever slot 19, the lever 20. DETAILED DESCRIPTION

[0019] In order to make the purpose, technical scheme of the utility model to carry out clearly, completely describe, and the advantage is more clear and distinct, the following combining the drawings to the utility model embodiment carries out further detailed explanation.Should understand, the specific embodiment described here is a part of the embodiment of the utility model, rather than all the embodiments, only to explain the embodiment of the utility model, and is not used to limit the embodiment of the utility model, all other embodiments obtained by the ordinary skill in the art without doing the premise of the creative labor, belong to the scope of the protection of the utility model.

[0020] Embodiment one: please refer to Figures 1 to 3 The utility model provides a technical scheme: a hawthorn slag pulp separation device, include: shell 1, the top of shell 1 is provided with head 2, be provided with first motor 3 on the surface of head 2, the transmission shaft rotation of first motor 3 is connected on the surface of head 2, the transmission shaft bottom of first motor 3 is fixed with blade 4, the inside rotation of shell 1 is connected with inner container 5, the filter screen 6 is movably arranged in inner container 5, the bottom of inner container 5 is provided with pulp outlet 11, the plug 12 is movably inserted in pulp outlet 11, the bottom of inner container 5 is provided with motor groove, the inner wall of motor groove of inner container 5 is provided with plug hole 7, the bottom inner wall of shell 1 is provided with pulp outlet 11, pulp outlet 11 is movably inserted in the motor groove of inner container 5, the transmission shaft of pulp outlet 11 is movably inserted in plug hole 7, the groove inner wall of plug hole 7 is provided with keyway 8, the transmission shaft of second motor 10 is fixed with flat key 9, flat key 9 is movably inserted in keyway 8, the inside of inner container 5 is divided into two parts, the upper half of inner container 5 is cylindrical structure, the lower half of inner container 5 is annular structure, the filter screen 6 is set up on the middle height of inner container 5.

[0021] In actual use, after cutting the rose hips into pieces, the pieces are placed in the inner container 5, and then the machine head 2 is buckled at the top end of the machine shell 1. The bottom end of the machine head 2 is provided with a positioning rod, and the top end of the machine shell 1 is provided with a positioning groove. Then the first motor 3 is started, and the transmission shaft of the first motor 3 drives the blade 4 to rotate at high speed to cut the rose hip pieces into residues. At this time, most of the juice has passed through the mesh holes of the filter screen 6 into the lower half of the inner container 5, but part of the juice is still attached to the residues. After the first motor 3 is stopped, the second motor 10 is started. The transmission shaft of the second motor 10 is inserted into the insertion hole 7, and the inner container 5 is driven to rotate at high speed through the key groove 8 and the key 9. The rose hip residues in the inner container 5 rotate with the inner container 5 and are compressed on the side wall of the inner container 5 under the action of centrifugal force, so that the juice attached to the rose hip residues is squeezed out and then enters the lower half of the inner container 5 through the mesh holes of the filter screen 6. After the above steps are completed, the second motor 10 is stopped, the machine head 2 is removed, and the inner container 5 is taken out of the machine shell 1. After being taken out, the plug 12 is pulled out of the juice outlet 11, and the juice in the inner container 5 is poured into a bowl or a cup prepared through the juice outlet 11, and the residues are poured out from the top of the inner container 5. Thus, the separation of the juice and the residues of the rose hips is completed, which not only saves time and effort, but also can more fully extract the juice and reduce waste.

[0022] In example two, in order to prevent friction between the inner wall of the machine shell 1 and the outer wall of the inner container 5, a sliding bearing outer ring 13 and a sliding bearing inner ring 14 are arranged between the inner wall of the machine shell 1 and the outer wall of the inner container 5. The sliding bearing outer ring 13 and the sliding bearing inner ring 14 are both annular plate structures.

[0023] The sliding bearing outer ring 13 is fixedly connected to the inner wall of the machine shell 1, and the sliding bearing outer ring 13 and the sliding bearing inner ring 14 are rotatably connected. When the inner container 5 is installed in the machine shell 1, the sliding bearing inner ring 14 is limited on the outer wall of the inner container 5 and rotates with the inner container 5. When the limitation is released, the inner container 5 can be separated from the sliding bearing inner ring 14, which facilitates the installation and removal of the inner container 5.

[0024] In example three, in order to realize the installation and removal of the inner container 5 and the sliding bearing inner ring 14, a limiting rod mounting groove 15 is formed on the surface of the sliding bearing inner ring 14, a limiting groove 16 is formed on the surface of the inner container 5, one end of a limiting rod 17 is movably inserted into the limiting groove 16, the other end of the limiting rod 17 is movably inserted into the limiting rod mounting groove 15, a spring 18 is fixed between the end of the limiting rod 17 inserted into the limiting rod mounting groove 15 and the groove wall of the limiting rod mounting groove 15, a push rod groove 19 is formed at the top end of the sliding bearing inner ring 14, a push rod 20 is slidably connected in the push rod groove 19, the bottom end of the push rod 20 is fixed to the top end of the limiting rod 17, and the top end of the push rod 20 extends out of the push rod groove 19.

[0025] When the inner container 5 is to be detached from the sliding bearing inner ring 14, the push rods 20 are pushed away from the inner container 5, the push rods 20 slide in the push rod grooves 19 to pull the limiting rods 17 out of the limiting grooves 16, i.e. the limiting is released, and the inner container 5 is detached from the sliding bearing inner ring 14; when the inner container 5 is to be installed back into the sliding bearing inner ring 14, the two groups of push rods 20 are again pushed away from each other, the push rods 20 drive the limiting rods 17 to be completely retracted into the limiting rod installation grooves 15, so that the springs 18 are compressed, then the inner container 5 is inserted into the inner ring of the sliding bearing inner ring 14 and the limiting grooves 16 are aligned with the limiting rod installation grooves 15, after that the push rods 20 are released, the springs 18 push the one end of the limiting rods 17 back into the limiting grooves 16 and compress them in the limiting grooves 16 under the elastic action of the springs 18, i.e. the limiting is restored, and the installation of the inner container 5 back into the sliding bearing inner ring 14 is completed.

[0026] In actual use, the rose hips are cut into pieces and placed in the inner container 5, and then the machine head 2 is buckled at the top end of the machine shell 1, the bottom end of the machine head 2 is provided with a positioning rod, the top end of the machine shell 1 is provided with a positioning groove, and then the first motor 3 is started, the transmission shaft of the first motor 3 drives the blade 4 to rotate at high speed to cut the rose hip pieces into residues, at this time, most of the juice has entered the lower half of the inner container 5 through the mesh holes of the filter screen 6, but part of the juice is still attached to the residues, the first motor 3 is stopped, and then the second motor 10 is started, the transmission shaft of the second motor 10 is inserted into the insertion hole 7, the inner container 5 is driven to rotate at high speed through the key groove 8 and the key 9, the rose hip residues in the inner container 5 rotate with the inner container 5 and are compressed on the side wall of the inner container 5 under the action of centrifugal force, so that the juice attached to the rose hip residues is squeezed out and then enters the lower half of the inner container 5 through the mesh holes of the filter screen 6; after the above steps are completed, the second motor 10 is stopped, then the machine head 2 is removed, the inner container 5 is taken out of the machine shell 1, the plug 12 is pulled out of the juice outlet 11 after being taken out, the juice in the inner container 5 is poured into a prepared bowl or cup through the juice outlet 11, and the residues are poured out of the top of the inner container 5, so that the separation of the juice and residues of the rose hips is completed, which not only saves time and effort, but also can more fully extract the juice and reduce waste; the sliding bearing outer ring 13 and the sliding bearing inner ring 14 are arranged between the machine shell 1 and the inner container 5, the sliding bearing outer ring 13 is fixedly connected to the inner wall of the machine shell 1, the sliding bearing outer ring 13 and the sliding bearing inner ring 14 are rotatably connected, when the inner container 5 is installed in the machine shell 1, the sliding bearing inner ring 14 is limited on the outer wall of the inner container 5 and rotates with the inner container 5, when the limitation is released, the inner container 5 can be separated from the sliding bearing inner ring 14, which facilitates the installation and removal of the inner container 5; when the inner container 5 is to be removed from the sliding bearing inner ring 14, the push rod 20 is pushed away from the inner container 5, the push rod 20 slides in the push rod groove 19 to pull the limiting rod 17 out of the limiting groove 16, so that the limitation is released, and the inner container 5 is removed from the sliding bearing inner ring 14; when the inner container 5 is to be installed back into the sliding bearing inner ring 14, the two groups of push rods 20 are pushed away from each other again, the push rod 20 drives the limiting rod 17 to be completely retracted into the limiting rod mounting groove 15, so that the spring 18 is compressed, then the inner container 5 is inserted into the inner ring of the sliding bearing inner ring 14 and the limiting groove 16 is aligned with the limiting rod mounting groove 15, then the push rod 20 is released, the spring 18 pushes the one end of the limiting rod 17 back into the limiting groove 16 and compresses it in the limiting groove 16 under the elastic action of itself, so that the limitation is restored, and the inner container 5 is installed back into the sliding bearing inner ring 14.

[0027] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A roxburgh pear pomace slurry separation apparatus comprising: The shell (1), the top of the shell (1) is provided with a machine head (2), the surface of the machine head (2) is provided with a first motor (3), the transmission shaft of the first motor (3) is rotatably connected to the surface of the machine head (2), the bottom end of the transmission shaft of the first motor (3) is fixed with a blade (4), characterized in that: the inside of the shell (1) is rotatably connected with an inner container (5), the inner container (5) is movably provided with a filter screen (6), the bottom end of the inner container (5) is provided with a pulp outlet (11), and the pulp outlet (11) is movably inserted with a plug (12).

2. The malus micromalus pomace slurry separation device according to claim 1, characterized in that: The bottom end of the inner container (5) is provided with a motor groove, the inner wall of the motor groove of the inner container (5) is provided with a plug hole (7), the bottom end of the inner wall of the shell (1) is provided with a pulp outlet (11), the pulp outlet (11) is movably inserted into the motor groove of the inner container (5), and the transmission shaft of the pulp outlet (11) is movably inserted into the plug hole (7).

3. The malus micromalus pomace slurry separation device according to claim 2, characterized in that: The groove body wall of the plug hole (7) is provided with a key groove (8), and the transmission shaft of the second motor (10) is fixed with a flat key (9), and the flat key (9) is movably inserted into the key groove (8).

4. The malus micromalus pomace slurry separation device according to claim 1, characterized in that: The inner part of the inner container (5) is divided into two parts, the upper half of the inner container (5) is in a cylindrical structure, and the lower half of the inner container (5) is in an annular structure, and the filter screen (6) is arranged at the middle height of the inner container (5).

5. The malus micromalus pomace slurry separation device according to claim 1, characterized in that: The inner wall of the shell (1) and the outer wall of the inner container (5) are provided with a sliding bearing outer ring (13) and a sliding bearing inner ring (14), and the sliding bearing outer ring (13) and the sliding bearing inner ring (14) are both in an annular plate structure.

6. A malus micromalus pomace separation apparatus as claimed in claim 5, wherein: The surface of the sliding bearing inner ring (14) is provided with a limiting rod mounting groove (15), the surface of the inner container (5) is provided with a limiting groove (16), one end of the limiting rod (17) is movably inserted into the limiting groove (16), the other end of the limiting rod (17) is movably inserted into the limiting rod mounting groove (15), and the spring (18) is fixed between the one end of the limiting rod (17) extending into the limiting rod mounting groove (15) and the groove body wall of the limiting rod mounting groove (15).

7. A malus micromalus pomace separation apparatus as claimed in claim 6, wherein: The top end of the sliding bearing inner ring (14) is provided with a lever slot (19), the lever slot (19) is slidably connected with a lever (20), the bottom end of the lever (20) is fixed to the top end of the limiting rod (17), and the top end of the lever (20) extends out of the lever slot (19).