CN112457913A - Hierarchical extraction element of chinese mugwort grass juice - Google Patents

Hierarchical extraction element of chinese mugwort grass juice Download PDF

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Publication number
CN112457913A
CN112457913A CN202011144703.3A CN202011144703A CN112457913A CN 112457913 A CN112457913 A CN 112457913A CN 202011144703 A CN202011144703 A CN 202011144703A CN 112457913 A CN112457913 A CN 112457913A
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CN
China
Prior art keywords
rod
frame
connecting rod
sliding sleeve
sliding
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Pending
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CN202011144703.3A
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Chinese (zh)
Inventor
李堂海
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Individual
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Individual
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Priority to CN202011144703.3A priority Critical patent/CN112457913A/en
Publication of CN112457913A publication Critical patent/CN112457913A/en
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    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11BPRODUCING, e.g. BY PRESSING RAW MATERIALS OR BY EXTRACTION FROM WASTE MATERIALS, REFINING OR PRESERVING FATS, FATTY SUBSTANCES, e.g. LANOLIN, FATTY OILS OR WAXES; ESSENTIAL OILS; PERFUMES
    • C11B9/00Essential oils; Perfumes
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01FPROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
    • A01F29/00Cutting apparatus specially adapted for cutting hay, straw or the like
    • A01F29/02Cutting apparatus specially adapted for cutting hay, straw or the like having rotating knives with their cutting edges in a plane perpendicular to their rotational axis
    • A01F29/025Cutting apparatus specially adapted for cutting hay, straw or the like having rotating knives with their cutting edges in a plane perpendicular to their rotational axis with feeding direction parallel to axis
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01FPROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
    • A01F29/00Cutting apparatus specially adapted for cutting hay, straw or the like
    • A01F29/09Details
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B9/00Presses specially adapted for particular purposes
    • B30B9/02Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material
    • B30B9/04Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material using press rams
    • B30B9/06Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material using press rams co-operating with permeable casings or strainers
    • B30B9/062Extrusion presses
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11BPRODUCING, e.g. BY PRESSING RAW MATERIALS OR BY EXTRACTION FROM WASTE MATERIALS, REFINING OR PRESERVING FATS, FATTY SUBSTANCES, e.g. LANOLIN, FATTY OILS OR WAXES; ESSENTIAL OILS; PERFUMES
    • C11B9/00Essential oils; Perfumes
    • C11B9/02Recovery or refining of essential oils from raw materials

Abstract

The invention relates to a grading extraction device, in particular to a grading extraction device for wormwood juice. The invention provides a wormwood juice grading extraction device which simplifies extraction operation, automatically performs grading extraction, improves squeezing efficiency and has an obvious squeezing effect. A hierarchical extraction element of chinese mugwort juice includes: the supporting frame is provided with an in-out stressed screen frame; the cutting mechanism is arranged on the in-out stressed net frame and is meshed with the automatic extrusion mechanism; and the upper part of the in-out stressed screen frame is provided with a material pushing mechanism for automatically pushing the cut moxa into the in-out stressed screen frame, and the material pushing mechanism is connected with the cutting mechanism. According to the invention, the half gear is meshed with the first rack to drive the first rack to move downwards, so that the extrusion rod is driven to slide downwards along the first sliding sleeve, the first spring is stretched, and the effect of extruding juice from the wormwood entering and exiting the stressed net frame by the extrusion rod is realized.

Description

Hierarchical extraction element of chinese mugwort grass juice
Technical Field
The invention relates to a grading extraction device, in particular to a grading extraction device for wormwood juice.
Background
The wormwood is a plant of Compositae and Artemisia, the plant has strong fragrance, the whole plant can be used as a medicine, and has the effects of warming channels, removing dampness, stopping bleeding, diminishing inflammation, relieving asthma and relieving cough, the juice squeezed from branches and leaves of the wormwood can be used for preparing essential oil, incense and the like, and can also be used as a natural plant dye.
Therefore, there is a need to design a graded extraction device of mugwort juice, which can automatically extract mugwort juice and fractionally extract the mugwort juice, aiming at the disadvantages of the prior art.
Disclosure of Invention
In order to overcome the defects of complex operation, low manual squeezing efficiency and poor squeezing effect of the existing extraction technology, the invention aims to provide the wormwood juice grading extraction device which simplifies the extraction operation, automatically grades the extraction, improves the squeezing efficiency and has obvious squeezing effect.
A hierarchical extraction element of chinese mugwort juice includes: the supporting frame is provided with an in-out stressed screen frame; the extrusion rod is arranged in the stressed net frame in a sliding mode; the automatic extrusion mechanism is arranged on the supporting frame and connected with the in-out stressed net frame and the extrusion rod; the cutting mechanism is arranged on the in-out stressed net frame and is meshed with the automatic extrusion mechanism; and the upper part of the in-out stressed screen frame is provided with a material pushing mechanism for automatically pushing the cut moxa into the in-out stressed screen frame, and the material pushing mechanism is connected with the cutting mechanism.
As a further preferable mode, the automatic pressing mechanism includes: the first fixing rod is arranged on the supporting frame; the motor is arranged on the supporting frame; the first rotating shaft is rotatably arranged on one side, close to the first fixed rod, of the supporting frame; the upper part of the first rotating shaft and the upper part of the first fixing rod are respectively provided with a bevel gear, the two bevel gears are meshed, and the bevel gear on the upper part of the first fixing rod is rotatably connected with the first fixing rod; the first transmission assembly is connected between the upper part of the first rotating shaft and the output shaft of the motor; the upper part of the in-out stressed screen frame is provided with a second fixed rod; the top end of the second fixed rod is rotatably provided with a second rotating shaft; the second transmission assembly is connected between the second rotating shaft and the bevel gear on the first fixed rod; the half gear is arranged on the second rotating shaft; the top of the extrusion rod is provided with a first rack which is meshed with the half gear; the lower part of the extrusion rod is slidably provided with a first sliding sleeve which is connected with the in-out stressed net frame; the lower part of the extrusion rod is wound with a first spring, and the top end of the first spring is connected with the first sliding sleeve.
As a further preferable aspect, the cutting mechanism includes: the third fixed rods are symmetrically arranged at the upper parts of the in-out stressed net frame; the material receiving frame is arranged between the top ends of the two third fixing rods; the lower part of the material receiving frame is provided with two first connecting rods; the upper parts of the two first connecting rods are both provided with a second sliding sleeve in a sliding manner; the two first connecting rods are wound with the first springs, and the top ends of the two first springs are connected with the first sliding sleeve; the feeding type cutter is arranged in the material receiving frame in a sliding mode and used for cutting the moxa in a feeding mode, and two walls of the upper portion of the feeding type cutter are connected with the second sliding sleeves which are close to each other; the second connecting rods are connected between the inner sides of the two second sliding sleeves; the upper part of the second connecting rod is provided with a second rack meshed with the half gear; the end surface of the upper part of the material receiving frame, which is close to one side of the second rack, is provided with a fourth fixed rod; the push rod is arranged at the top end of the fourth fixing rod and is positioned on the inner side of the feeding type cutter.
As a further preferable aspect, the pusher mechanism includes: two first striker plates are connected between the material receiving frame and the in-out stressed net frame; the second material blocking plates are connected between the inner sides of the two first material blocking plates in a sliding manner and are in sliding contact with the material receiving frame; the top of the second baffle plate is provided with two fourth sliding sleeves; the upper parts of the two fourth sliding sleeves are both provided with a fourth connecting rod in a sliding manner, and the two fourth connecting rods are both connected with the outer wall of the material receiving frame; the two fourth connecting rods are wound with fourth springs, and one ends of the two fourth springs are connected with the fourth sliding sleeves which are close to each other; the second baffle plate is provided with two fifth connecting rods; the material pushing plate is arranged between the two fifth connecting rods and is in sliding contact with the material receiving frame; the pushing plate is provided with a third sliding sleeve; the material receiving frame is provided with a third connecting rod, and the left side of the third connecting rod is connected with the third sliding sleeve in a sliding manner; the third spring is wound on the third connecting rod, and two ends of the third spring are respectively connected with the third sliding sleeve and the material receiving frame; the upper part of the feeding type cutter is provided with a sixth connecting rod; the pushing plate is provided with a seventh connecting rod; the end parts of the first inclined block, the sixth connecting rod and the seventh connecting rod, which are close to each other, are respectively provided with a first inclined block, and the two first inclined blocks are in contact fit.
As a further preferable scheme, the net frame further comprises a rotary cutting mechanism, the rotary cutting mechanism is arranged on the in-out stressed net frame and is connected with the first rotating shaft, and the rotary cutting mechanism comprises: the rotating rod is rotatably arranged in the stress net frame; the third transmission assembly is connected between the lower part of the rotating rod and the first rotating shaft; the upper part of the rotating rod is uniformly provided with a rotating knife used for rotating and cutting the wormwood.
As a further preferred scheme, the device also comprises a watering mechanism, the support frame is provided with the watering mechanism, and the watering mechanism is connected with the first inclined block at the lower part of the in-out stressed net frame and comprises: the support frame is provided with a fifth fixed rod; a water bucket is arranged at the top of the fifth fixed rod; the connecting pipe is connected between the water bucket and the in-out stressed net frame; the connecting pipe is connected with the water retaining connecting rod in a sliding manner; the water retaining connecting rod is wound with a fifth spring, and one end of the fifth spring is connected with the connecting pipe; the first inclined block at the lower part of the eighth connecting rod is provided with an eighth connecting rod; the end parts of the water retaining connecting rod and the eighth connecting rod, which are close to each other, are provided with second inclined blocks, and the two second inclined blocks are in contact fit.
As a further preferred scheme, the device further comprises a grading collection mechanism, the support frame is provided with the grading collection mechanism, and the grading collection mechanism is connected with the extrusion rod and comprises: the support frame is provided with a fifth sliding sleeve; the support frame is provided with a sixth sliding sleeve; a ninth connecting rod is arranged at the upper part of the sixth sliding sleeve in a sliding manner; a sixth spring is wound on the ninth connecting rod, and one end of the sixth spring is connected with the sixth sliding sleeve; the end part of the ninth connecting rod, which is close to the fifth sliding sleeve, is provided with a connecting frame; a sixth fixed rod is arranged at the upper part of the ninth connecting rod and is connected with the fifth sliding sleeve in a sliding manner; the collecting barrel is arranged on the sixth fixed rod, and the collecting barrel close to one side of the fifth sliding sleeve is connected with the connecting frame; the support frame is provided with a seventh sliding sleeve; the top of the extrusion rod is provided with a tenth connecting rod, and the tenth connecting rod is connected with the seventh sliding sleeve in a sliding manner; and the bottom end of the tenth connecting rod and the top end of the connecting frame are both provided with a third inclined block, and the two third inclined blocks are in contact fit.
The invention has the following advantages: 1. according to the invention, the half gear is meshed with the first rack to drive the first rack to move downwards, so that the extrusion rod is driven to slide downwards along the first sliding sleeve, the first spring is stretched, and the effect of extruding juice from the wormwood entering and exiting the stressed net frame by the extrusion rod is realized;
2. the second material blocking plate is driven to slide rightwards by the right movement of the fifth connecting rod, so that the fourth sliding sleeve is driven to slide rightwards, and the effect that the cut wormwood is pushed into the in-out stressed net frame from the material receiving frame by the material pushing plate is achieved;
3. the third transmission assembly is driven to transmit through the rotation of the first rotating shaft, so that the rotating rod is driven to rotate, the rotating knife is used for rotatably cutting the cut moxa passing in and out of the stressed net frame, and the cutting effect is further enhanced;
4. the water retaining connecting rod is driven to slide leftwards by the left movement of the second inclined block at the upper part, and a channel between the water bucket and the connecting pipe is opened, so that the effect that water in the water bucket automatically flows into the in-out stressed net frame through the connecting pipe is realized, and the manual water adding operation is reduced;
5. move about simultaneously through two collecting vessels to the higher chinese mugwort grass juice of concentration that the collecting vessel of left part collected the extrusion, the lower chinese mugwort grass juice of concentration is collected to the collecting vessel of right part, realizes drawing chinese mugwort grass juice effect in grades.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
FIG. 2 is a schematic view of a three-dimensional mechanism of the support frame, the in-out force-bearing net frame and the extrusion rod of the present invention.
Fig. 3 is a schematic perspective view of the automatic pressing mechanism of the present invention.
Fig. 4 is a perspective view of the cutting mechanism of the present invention.
Fig. 5 is a schematic view of a separated three-dimensional mechanism of the feeding type cutter, the fourth fixing rod and the push rod.
Fig. 6 is a schematic perspective view of the pushing mechanism of the present invention.
Fig. 7 is a perspective view of the rotary cutting mechanism of the present invention.
Fig. 8 is a schematic perspective view of the watering mechanism of the present invention.
Fig. 9 is a perspective view of the graded collection mechanism of the present invention.
Wherein: 1-a support frame, 2-an in-out stressed net frame, 3-an extrusion rod, 4-an automatic extrusion mechanism, 41-a first fixed rod, 42-a motor, 43-a first rotating shaft, 44-a bevel gear, 45-a first transmission component, 46-a second fixed rod, 47-a second transmission component, 48-a half gear, 49-a first rack, 410-a first sliding sleeve, 411-a first spring, 412-a second rotating shaft, 5-a cutting mechanism, 51-a third fixed rod, 52-a material receiving frame, 53-a first connecting rod, 54-a second sliding sleeve, 55-a second spring, 56-a feeding type cutter, 57-a second connecting rod, 58-a second rack, 59-a fourth fixed rod, 510-a push rod and 6-a material pushing mechanism, 61-a first striker plate, 62-a third sliding sleeve, 63-a third connecting rod, 64-a third spring, 65-a pusher plate, 66-a fourth sliding sleeve, 67-a fourth connecting rod, 68-a fourth spring, 69-a second striker plate, 610-a fifth connecting rod, 611-a sixth connecting rod, 612-a seventh connecting rod, 613-a first inclined block, 7-a rotary cutting mechanism, 71-a rotating rod, 72-a third transmission assembly, 73-a rotary knife, 8-a watering mechanism, 81-a fifth fixing rod, 82-a water bucket, 83-a connecting pipe, 84-a water-blocking connecting rod, 85-a fifth spring, 86-an eighth connecting rod, 87-a second inclined block, 9-a graded collection mechanism, 91-a fifth sliding sleeve, 92-a sixth sliding sleeve, 93-ninth connecting rod, 94-sixth spring, 95-connecting frame, 96-sixth fixing rod, 97-collecting barrel, 98-seventh sliding sleeve, 99-tenth connecting rod and 910-third inclined block.
Detailed Description
The following further describes the technical solution with reference to specific embodiments, and it should be noted that: the words upper, lower, left, right, and the like used herein to indicate orientation are merely for the location of the illustrated structure in the corresponding figures. The serial numbers of the parts are themselves numbered herein, for example: first, second, etc. are used solely to distinguish one from another as to objects described herein, and do not have any sequential or technical meaning. The application states that: the connection and coupling, unless otherwise indicated, include both direct and indirect connections (couplings).
Example 1
The utility model provides a chinese mugwort grass juice is extraction element in grades, as shown in fig. 1 and fig. 2, including support frame 1, business turn over atress screen frame 2, extrusion stem 3, automatic extrusion mechanism 4, cutting mechanism 5 and pushing equipment 6, be equipped with business turn over atress screen frame 2 on the support frame 1, business turn over atress screen frame 2 internal sliding type is equipped with extrusion stem 3, be equipped with automatic extrusion mechanism 4 on the support frame 1, automatic extrusion mechanism 4 is connected with business turn over atress screen frame 2 and extrusion stem 3, the left side is equipped with cutting mechanism 5 on business turn over atress screen frame 2, cutting mechanism 5 meshes with automatic extrusion mechanism 4, business turn over atress screen frame 2 upper portion is equipped with pushing equipment 6, pushing equipment 6 is connected with cutting mechanism 5.
When people need to extract the wormwood juice from the wormwood, the extraction device can be used, firstly, a proper amount of wormwood is placed into the cutting mechanism 5, then the automatic extruding mechanism 4 is started, the automatic extruding mechanism 4 operates to drive the cutting part in the cutting mechanism 5 to cut the wormwood, the cutting mechanism 5 operates to drive the material pushing mechanism 6 to push the cut wormwood into the in-out stress net frame 2, at the moment, a proper amount of water is poured into the in-out stress net frame 2, the cutting mechanism 5 stops operating, the automatic extruding mechanism 4 moves downwards, the automatic extruding mechanism 4 drives the extruding rod 3 to intermittently press and beat the wormwood in the in-out stress net frame 2, accordingly, the wormwood juice is extruded, the automatic extruding mechanism 4 is closed after extrusion, and the wormwood juice is extracted next time if needed, and the steps are repeated.
Example 2
Based on the embodiment 1, as shown in fig. 3, 4, 5 and 6, the automatic squeezing mechanism 4 includes a first fixing rod 41, a motor 42, a first rotating shaft 43, a bevel gear 44, a first transmission assembly 45, a second fixing rod 46, a second transmission assembly 47, a half gear 48, a first rack 49, a first sliding sleeve 410, a first spring 411 and a second rotating shaft 412, the first fixing rod 41 is disposed on the front side of the supporting frame 1, the motor 42 is mounted on the left side of the supporting frame 1, the first rotating shaft 43 is rotatably disposed on the front portion of the supporting frame 1, the bevel gear 44 is disposed on the upper portion of the first rotating shaft 43 and the upper portion of the first fixing rod 41, the two bevel gears 44 are engaged, the bevel gear 44 on the upper portion of the first fixing rod 41 is rotatably connected with the first fixing rod 41, the first transmission assembly 45 is connected between the upper portion of the first rotating shaft 43 and the output shaft of the motor 42, the second fixing rod 46 is disposed, a second rotating shaft 412 is rotatably arranged at the top end of the second fixing rod 46, a second transmission assembly 47 is connected between the front side of the second rotating shaft 412 and the bevel gear 44 on the first fixing rod 41, a half gear 48 is arranged at the rear part of the second rotating shaft 412, a first rack 49 is arranged at the top part of the extrusion rod 3, the first rack 49 is meshed with the half gear 48, a first sliding sleeve 410 is slidably arranged at the lower part of the extrusion rod 3, the left end of the first sliding sleeve 410 is connected with the in-out stress net frame 2, a first spring 411 is wound at the lower part of the extrusion rod 3, and the top end of the first spring 411 is connected with the first sliding sleeve.
Starting the motor 42, the output shaft of the motor 42 rotates to drive the first transmission component 45 to transmit, thereby driving the first rotating shaft 43 to rotate, thereby driving the bevel gear 44 to rotate, further driving the second transmission component 47 to transmit, further driving the second rotating shaft 412 to rotate, further driving the half gear 48 to rotate, when the half gear 48 rotates to be not meshed with the cutting mechanism 5, the half gear 48 is meshed with the first rack 49 to drive the first rack 49 to move downwards, further driving the extrusion rod 3 to slide downwards along the first sliding sleeve 410, the first spring 411 is stretched, thereby realizing the effect that the extrusion rod 3 extrudes juice from the wormwood entering and exiting the stressed net frame 2, people can collect wormwood juice at the bottom of the entering and exiting stressed net frame 2, when the half gear 48 rotates to be not meshed with the first rack 49, the first spring 411 resets, the extrusion rod 3 slides upwards, thereby the first rack 49 moves upwards to reset, thus intermittent extrusion can be carried out on the wormwood, so that the juice in the wormwood is fully extracted, and the motor 42 is turned off after the juice extraction is finished.
The cutting mechanism 5 comprises a third fixed rod 51, a material receiving frame 52, a first connecting rod 53, a second sliding sleeve 54, a second spring 55, a feeding type cutter 56, a second connecting rod 57, a second rack 58, a fourth fixed rod 59 and a push rod 510, the third fixed rod 51 is symmetrically arranged on the front side and the rear side of the upper part of the stress screen frame 2, the material receiving frame 52 is arranged between the top ends of the two third fixed rods 51, the first connecting rods 53 are arranged on the front side and the rear side of the lower part of the material receiving frame 52, the second sliding sleeve 54 is arranged on the upper part of the two first connecting rods 53 in a sliding way, the second spring 55 is wound on the two first connecting rods 53, the top ends of the two second springs 55 are connected with the second sliding sleeve 54, the feeding type cutter 56 is arranged in the material receiving frame 52 in a sliding way, the front wall and the rear wall of the upper part of the feeding type cutter 56 are connected with the second sliding sleeve 54 which is close to each other, the second, the second rack 58 is engaged with the half gear 48, the right wall of the upper part of the material receiving frame 52 is provided with a fourth fixing rod 59, the top end of the fourth fixing rod 59 is provided with a push rod 510, and the push rod 510 is positioned at the inner side of the feeding type cutter 56.
People put the chinese mugwort grass into feeding formula cutter 56, half gear 48 rotates and second rack 58 meshing, thereby drive second rack 58 and move up, thereby drive second connecting rod 57 and move up, and then drive second sliding sleeve 54 and upwards slide along first connecting rod 53, second spring 55 is stretched, second sliding sleeve 54 moves up and drives feeding formula cutter 56 and move up to contact with push rod 510, the effect that feeding formula cutter 56 cuts the chinese mugwort when realizing that push rod 510 pushes away the chinese mugwort from feeding formula cutter 56 bottom, the chinese mugwort of being cut is pushed into in the material frame 52, after that when half gear 48 rotates to not mesh with second rack 58, second spring 55 resets and drives second sliding sleeve 54 and slides down, thereby drive feeding formula cutter 56 and second connecting rod 57 and move down, and then drive second rack 58 and move down and reset.
The pushing mechanism 6 comprises a first material blocking plate 61, a third sliding sleeve 62, a third connecting rod 63, a third spring 64, a pushing plate 65, a fourth sliding sleeve 66, a fourth connecting rod 67, a fourth spring 68, a second material blocking plate 69, a fifth connecting rod 610, a sixth connecting rod 611, a seventh connecting rod 612 and a first inclined block 613, the first material blocking plate 61 is connected between the material receiving frame 52 and the front wall and the rear wall of the in-out stressed net frame 2, the second material blocking plate 69 is connected between the inner sides of the two first material blocking plates 61 in a sliding manner, the second material blocking plate 69 is in sliding contact with the material receiving frame 52, the fourth sliding sleeves 66 are arranged on the front side and the rear side of the top of the second material blocking plate 69, the fourth connecting rods 67 are arranged on the upper portions of the two fourth sliding sleeves 66 in a sliding manner, the left ends of the two fourth connecting rods 67 are connected with the outer wall of the material receiving frame 52, the fourth springs 68 are wound on the two fourth connecting rods 67, and, the front and rear parts of the left wall of the second retainer plate 69 are both provided with fifth connecting rods 610, a pushing plate 65 is arranged between the left ends of the two fifth connecting rods 610, the pushing plate 65 is in sliding contact with the material receiving frame 52, the middle part of the left wall of the pushing plate 65 is provided with a third sliding sleeve 62, the upper part of the left wall of the material receiving frame 52 is provided with a third connecting rod 63, the left side of the third connecting rod 63 is in sliding connection with the third sliding sleeve 62, a third spring 64 is wound on the third connecting rod 63, the left end of the third spring 64 is connected with the third sliding sleeve 62, the right end of the third spring 64 is connected with the left wall of the material receiving frame 52, the upper rear wall of the feeding type cutter 56 is provided with a sixth connecting rod 611, the front side of the left wall of the pushing plate 65 is provided with a seventh connecting rod 612, the front end of the sixth connecting rod 611 and the.
The feeding type cutter 56 moves upwards to drive the sixth connecting rod 611 to move upwards, so as to drive the first inclined block 613 at the lower part to move upwards, so that the first inclined block 613 at the upper part moves rightwards, so as to drive the seventh connecting rod 612 to move rightwards, so as to drive the material pushing plate 65 to move rightwards, so as to drive the third sliding sleeve 62 to slide rightwards along the third connecting rod 63, the third spring 64 is compressed, the fifth connecting rod 610 moves rightwards, so as to drive the second material blocking plate 69 to slide rightwards along the first material blocking plate 61, the second material blocking plate 69 drives the fourth sliding sleeve 66 to slide rightwards along the fourth connecting rod 67, the fourth spring 68 is stretched, so that the effect that the cut wormwood is pushed into the stressed net frame 2 from the material receiving frame 52 by the material pushing plate 65 is realized, the first material blocking plate 61 can prevent the wormwood from falling from the front side and the rear side in the material pushing process, when the feeding type cutter 56 moves downwards to reset, the sixth connecting rod 611, thereby, the third spring 64 and the fourth spring 68 are both reset, and further the third sliding sleeve 62 is driven to slide left, the fifth connecting rod 610 is driven to move left, and further the material pushing plate 65 is driven to move left, the second material blocking plate 69 is driven to slide left, and further the seventh connecting rod 612 is driven to move left, and the fourth sliding sleeve 66 is driven to slide left, and further the first inclined block 613 at the upper portion is driven to move left.
Example 3
On the basis of the embodiment 2, as shown in fig. 7, 8 and 9, the device further includes a rotary cutting mechanism 7, the rotary cutting mechanism 7 is disposed on the in-out stressed screen frame 2, the rotary cutting mechanism 7 is connected to the first rotating shaft 43, the rotary cutting mechanism 7 includes a rotating rod 71, a third transmission assembly 72 and a rotary knife 73, the rotating rod 71 is rotatably disposed in the in-out stressed screen frame 2, the third transmission assembly 72 is connected between the lower portion of the rotating rod 71 and the first rotating shaft 43, and the rotary knife 73 is uniformly disposed on the upper portion of the rotating rod 71.
First pivot 43 rotates and drives the transmission of third drive assembly 72 to drive dwang 71 and rotate, and then drive rotatory sword 73 and rotate, realize that rotatory sword 73 carries out the rotation type to the chinese mugwort that has been cut in the business turn over atress screen frame 2 and cuts up, further reinforcing cutting effect, the chinese mugwort of being convenient for extrude juice.
Also comprises a watering mechanism 8, the support frame 1 is provided with the watering mechanism 8, the watering mechanism 8 is connected with the in-out stressed net frame 2 and the first inclined block 613 at the lower part, and comprises a fifth fixed rod 81, a water bucket 82 and a connecting pipe 83, the water retaining connecting rod 84, the fifth spring 85, eighth connecting rod 86 and second oblique piece 87, support frame 1 left side middle part is equipped with the fifth dead lever 81, fifth dead lever 81 top is equipped with cask 82, be connected with connecting pipe 83 between cask 82 rear portion and the business turn over atress screen frame 2 lower part left side, connecting pipe 83 left side slidingtype is connected with water retaining connecting rod 84, it has the fifth spring 85 to wind on the water retaining connecting rod 84, the fifth spring 85 right-hand member is connected with connecting pipe 83, the first oblique piece 613 rear wall of lower part is equipped with eighth connecting rod 86, the tip that water retaining connecting rod 84 and eighth connecting rod 86 are close to mutually all is equipped with second oblique piece 87, two second oblique pieces 87 contact cooperation.
When a sufficient amount of water is put into the water bucket 82, the first inclined block 613 at the lower part moves upwards to drive the eighth connecting rod 86 to move upwards, so as to drive the second inclined block 87 at the lower part to move upwards, further drive the second inclined block 87 at the upper part to move leftwards, further drive the water retaining connecting rod 84 to slide leftwards along the connecting pipe 83, and the fifth spring 85 is stretched, so that the channel between the water bucket 82 and the connecting pipe 83 is opened, the effect that the water in the water bucket 82 automatically flows into and out of the stressed net frame 2 through the connecting pipe 83 is realized, manual water adding is not needed, then the first inclined block 613 at the lower part moves downwards to drive the eighth connecting rod 86 to move downwards, further the second inclined block 87 at the lower part moves downwards, further the fifth spring 85 resets to drive the water retaining connecting rod 84 to slide rightwards, further drive the second inclined block 87 at the upper part to move rightwards, and further the channel.
The device also comprises a grading collection mechanism 9, the support frame 1 is provided with the grading collection mechanism 9, the grading collection mechanism 9 is connected with the extrusion rod 3 and comprises a fifth sliding sleeve 91, a sixth sliding sleeve 92, a ninth connecting rod 93, a sixth spring 94, a connecting frame 95, a sixth fixed rod 96, a collection barrel 97, a seventh sliding sleeve 98, a tenth connecting rod 99 and a third inclined block 910, the fifth sliding sleeve 91 is arranged on the right side of the upper front part of the support frame 1, the sixth sliding sleeve 92 is arranged on the left side of the upper front part of the support frame 1, the ninth connecting rod 93 is arranged on the upper part of the sixth sliding sleeve 92 in a sliding manner, the sixth spring 94 is wound on the ninth connecting rod 93, the left end of the sixth spring 94 is connected with the sixth sliding sleeve 92, the connecting frame 95 is arranged on the right end of the ninth connecting rod 93, the sixth fixed rod 96 is arranged on the upper part of the right side of the ninth connecting rod 93, the front part of, the collecting vessel 97 on right side is connected with the linking frame 95, and the rear portion right side is equipped with the seventh sliding sleeve 98 on support frame 1, and the extrusion stem 3 top is equipped with tenth connecting rod 99, and tenth connecting rod 99 and seventh sliding sleeve 98 sliding connection, tenth connecting rod 99 bottom and linking frame 95 top all are equipped with third sloping block 910, and two contact of third sloping block 910 coordinate.
The extrusion rod 3 moves down to drive the tenth connecting rod 99 to slide downwards along the seventh sliding sleeve 98, thereby driving the upper third inclined block 910 to move downwards, thereby driving the lower third inclined block 910 to move rightwards, further driving the connecting frame 95 to move rightwards, further driving the ninth connecting rod 93 to slide rightwards along the sixth sliding sleeve 92, the sixth spring 94 is stretched, the two collecting barrels 97 move rightwards, the left collecting barrel 97 moves to the position right under the force-bearing net frame 2 and receives the extruded moxa juice with higher concentration, further driving the sixth fixing rod 96 to slide rightwards along the fifth sliding sleeve 91, then the extrusion rod 3 moves upwards to drive the tenth connecting rod 99 to slide upwards, thereby the upper third inclined block 910 moves upwards, thereby the sixth spring 94 resets to drive the ninth connecting rod 93 to slide leftwards, further driving the connecting frame 95 to move leftwards and the sixth fixing rod 96 to slide leftwards, further the lower third inclined block 910 and the two collecting barrels 97 move leftwards, the collecting barrel 97 on the right part resets to the position under the in-out stress screen frame 2 and receives the lower wormwood juice in concentration, so that the effect of extracting wormwood juice in a grading manner is realized.
The above examples are merely representative of preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, various changes, modifications and substitutions can be made without departing from the spirit of the present invention, and these are all within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (8)

1. The utility model provides a hierarchical extraction element of chinese mugwort grass juice which characterized in that includes:
the supporting frame (1), the supporting frame (1) is provided with an in-out stressed net frame (2);
the extrusion rod (3) is arranged in the stressed screen frame (2) in a sliding manner;
the automatic extrusion mechanism (4) is arranged on the support frame (1), and the automatic extrusion mechanism (4) is connected with the in-out stressed net frame (2) and the extrusion rod (3);
the cutting mechanism (5) is arranged on the in-out stressed screen frame (2), and the part of the cutting mechanism (5) is meshed with the part of the automatic extrusion mechanism (4);
the upper part of the in-out stressed screen frame (2) is provided with a material pushing mechanism (6) for automatically pushing the cut moxa into the in-out stressed screen frame (2), and the material pushing mechanism (6) is connected with the cutting mechanism (5).
2. The graded extraction apparatus of mugwort juice according to claim 1, wherein the automatic pressing mechanism (4) comprises:
the first fixing rod (41) is arranged on the support frame (1);
the motor (42) is arranged on the support frame (1);
the first rotating shaft (43) is rotatably arranged on one side, close to the first fixing rod (41), of the support frame (1);
the upper parts of the first rotating shaft (43) and the first fixing rod (41) are respectively provided with a bevel gear (44), the two bevel gears (44) are meshed, and the bevel gear (44) on the upper part of the first fixing rod (41) is rotatably connected with the first fixing rod (41);
the first transmission component (45) is connected between the upper part of the first rotating shaft (43) and the output shaft of the motor (42);
a second fixing rod (46), wherein the upper part of the in-out stressed net frame (2) is provided with the second fixing rod (46);
a second rotating shaft (412), wherein the top end of the second fixing rod (46) is rotatably provided with the second rotating shaft (412);
a second transmission assembly (47), wherein a second transmission assembly (47) is connected between the second rotating shaft (412) and the bevel gear (44) on the first fixing rod (41);
a half gear (48) is arranged on the second rotating shaft (412);
the top of the extrusion rod (3) is provided with a first rack (49), and the first rack (49) is meshed with the half gear (48);
the lower part of the extrusion rod (3) is provided with a first sliding sleeve (410) in a sliding way, and the first sliding sleeve (410) is connected with the in-out stressed net frame (2);
the lower part of the extrusion rod (3) is wound with a first spring (411), and the top end of the first spring (411) is connected with the first sliding sleeve (410).
3. The graded extraction apparatus of mugwort juice according to claim 2, wherein the cutting mechanism (5) comprises:
the third fixing rods (51) are symmetrically arranged at the upper parts of the in-out stressed net frame (2);
a material receiving frame (52), wherein the material receiving frame (52) is arranged between the top ends of the two third fixing rods (51);
the lower part of the material receiving frame (52) is provided with two first connecting rods (53), and the number of the first connecting rods (53) is two;
the upper parts of the two first connecting rods (53) are both provided with a second sliding sleeve (54) in a sliding way;
the two first connecting rods (53) are wound with the second springs (55), and the top ends of the two second springs (55) are connected with the second sliding sleeve (54);
the feeding type cutter (56) is arranged in the material receiving frame (52) in a sliding mode and used for cutting moxa in a feeding mode, and two walls of the upper portion of the feeding type cutter (56) are connected with the second sliding sleeve (54) close to the feeding type cutter;
the second connecting rods (57) are connected between the inner sides of the two second sliding sleeves (54);
the upper part of the second connecting rod (57) is provided with a second rack (58) meshed with the half gear (48);
the end surface of the upper part of the material receiving frame (52) close to one side of the second rack (58) is provided with a fourth fixed rod (59);
the top end of the push rod (510) and the fourth fixing rod (59) is provided with the push rod (510), and the push rod (510) is positioned on the inner side of the feeding type cutter (56).
4. A moxa juice staged extraction device according to claim 3, wherein the pushing mechanism (6) comprises:
two first striker plates (61) are connected between the receiving frame (52) and the in-out stressed net frame (2);
the second material blocking plates (69) are connected between the inner sides of the two first material blocking plates (61) in a sliding mode, and the second material blocking plates (69) are in sliding contact with the material receiving frame (52);
the top of the second baffle plate (69) is provided with two fourth sliding sleeves (66);
the upper parts of the two fourth sliding sleeves (66) are respectively provided with a fourth connecting rod (67) in a sliding manner, and the two fourth connecting rods (67) are respectively connected with the outer wall of the material receiving frame (52);
the fourth springs (68) are wound on the two fourth connecting rods (67), and one ends of the two fourth springs (68) are connected with the fourth sliding sleeves (66) which are close to each other;
the second baffle plate (69) is provided with two fifth connecting rods (610);
the material pushing plate (65) is arranged between the two fifth connecting rods (610), and the material pushing plate (65) is in sliding contact with the material receiving frame (52);
the third sliding sleeve (62) is arranged on the material pushing plate (65);
a third connecting rod (63) is arranged on the material receiving frame (52), and the left side of the third connecting rod (63) is connected with a third sliding sleeve (62) in a sliding manner;
the third spring (64) is wound on the third connecting rod (63), and two ends of the third spring (64) are respectively connected with the third sliding sleeve (62) and the material receiving frame (52);
the upper part of the feed type cutter (56) is provided with a sixth connecting rod (611);
the seventh connecting rod (612) is arranged on the material pushing plate (65);
the first inclined blocks (613) are arranged at the end parts, close to the seventh connecting rod (612), of the sixth connecting rod (611), and the two first inclined blocks (613) are in contact fit.
5. The graded extraction device of mugwort juice according to claim 4, further comprising a rotary cut mechanism (7), wherein the rotary cut mechanism (7) is provided on the in-out force-bearing net frame (2), the rotary cut mechanism (7) is connected to the first rotating shaft (43), and the rotary cut mechanism (7) comprises:
the rotating rod (71) is arranged in the stressed screen frame (2) in and out in a rotating mode;
a third transmission assembly (72), wherein the third transmission assembly (72) is connected between the lower part of the rotating rod (71) and the first rotating shaft (43);
the upper part of the rotating rod (71) is uniformly provided with a rotating knife (73) for rotating and cutting the wormwood.
6. The graded extraction device of mugwort juice according to claim 5, further comprising a watering mechanism (8), wherein the watering mechanism (8) is provided on the support frame (1), the watering mechanism (8) is connected to the first inclined block (613) passing in and out the stressed net frame (2) and the lower part, and comprises:
a fifth fixing rod (81), wherein the support frame (1) is provided with the fifth fixing rod (81);
a water bucket (82), wherein the top of the fifth fixing rod (81) is provided with the water bucket (82);
the connecting pipe (83) is connected between the water bucket (82) and the in-out stressed net frame (2);
the connecting pipe (83) is connected with the water-retaining connecting rod (84) in a sliding way;
the water retaining connecting rod (84) is wound with a fifth spring (85), and one end of the fifth spring (85) is connected with the connecting pipe (83);
an eighth connecting rod (86), wherein the eighth connecting rod (86) is arranged on the first inclined block (613) at the lower part of the eighth connecting rod (86);
the end parts of the water retaining connecting rod (84) and the eighth connecting rod (86) which are close to each other are provided with second inclined blocks (87), and the two second inclined blocks (87) are in contact fit.
7. The graded extraction device of mugwort juice according to claim 6, further comprising a graded collection mechanism (9), wherein the graded collection mechanism (9) is provided on the support frame (1), and the graded collection mechanism (9) is connected to the extrusion rod (3), comprising:
a fifth sliding sleeve (91), wherein the support frame (1) is provided with the fifth sliding sleeve (91);
the sixth sliding sleeve (92), the support frame (1) is provided with the sixth sliding sleeve (92);
a ninth connecting rod (93), wherein the upper part of the sixth sliding sleeve (92) is provided with the ninth connecting rod (93) in a sliding manner;
a sixth spring (94), the ninth connecting rod (93) is wound with the sixth spring (94), and one end of the sixth spring (94) is connected with the sixth sliding sleeve (92);
the end part of the ninth connecting rod (93) close to the fifth sliding sleeve (91) is provided with a connecting frame (95);
a sixth fixing rod (96), a sixth fixing rod (96) is arranged at the upper part of the ninth connecting rod (93), and the sixth fixing rod (96) is connected with the fifth sliding sleeve (91) in a sliding manner;
two collecting barrels (97) are arranged on the sixth fixing rod (96), and the collecting barrel (97) close to one side of the fifth sliding sleeve (91) is connected with the connecting frame (95);
a seventh sliding sleeve (98), wherein the supporting frame (1) is provided with the seventh sliding sleeve (98);
a tenth connecting rod (99), wherein the top of the extrusion rod (3) is provided with the tenth connecting rod (99), and the tenth connecting rod (99) is connected with the seventh sliding sleeve (98) in a sliding manner;
the bottom end of the tenth connecting rod (99) and the top end of the connecting frame (95) are both provided with a third inclined block (910), and the two third inclined blocks (910) are in contact fit.
8. The graded extraction apparatus of mugwort juice according to claim 7, wherein the bottom of the force-receiving net frame (2) is uniformly provided with meshes.
CN202011144703.3A 2020-10-23 2020-10-23 Hierarchical extraction element of chinese mugwort grass juice Pending CN112457913A (en)

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Cited By (1)

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CN110433118A (en) * 2019-09-12 2019-11-12 王华敏 A kind of Chinese herbal medicine shampoo stoste extraction element
CN210021238U (en) * 2019-04-02 2020-02-07 湖北福络堂生物科技有限公司 Folium artemisiae argyi juice extraction element
CN111035019A (en) * 2019-12-11 2020-04-21 王卫星 Aloe dicing and juice extracting device

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CN208002042U (en) * 2017-09-30 2018-10-26 重庆安益佳实业股份有限公司 A kind of melon and fruit draining device with the function that removes slag
CN209449622U (en) * 2018-11-22 2019-10-01 安徽省乐饮食品有限公司 A kind of layering beating apparatus making jam
CN209333246U (en) * 2018-12-03 2019-09-03 江西省赣艾生物科技有限公司 A kind of high-efficiency device for extracting of wormwood extract
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CN114480046A (en) * 2022-02-15 2022-05-13 江西德裕生态食品有限公司 Rice wine extraction element for food processing

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Application publication date: 20210309