CN213454549U - Vertical circulation hydroextractor - Google Patents

Vertical circulation hydroextractor Download PDF

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Publication number
CN213454549U
CN213454549U CN202022311739.8U CN202022311739U CN213454549U CN 213454549 U CN213454549 U CN 213454549U CN 202022311739 U CN202022311739 U CN 202022311739U CN 213454549 U CN213454549 U CN 213454549U
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China
Prior art keywords
dewatering
cylinder
dehydrating
dehydration
centrifugal
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CN202022311739.8U
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Chinese (zh)
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仇孟莆
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Shandong Hengshan Lifeng Food Co ltd
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Shandong Hengshan Lifeng Food Co ltd
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Abstract

The utility model discloses a vertical circulation dehydrator, which comprises a dehydrating main body, wherein a dehydrating mechanism is arranged in the dehydrating main body, the dehydrating main body is also connected with a supporting shell through a damping mechanism, the dehydrating mechanism comprises an upper cover, the lower end of the upper cover is provided with a magnetic plate I, the dehydrating main body is provided with a magnetic ring I, the magnetic plate I and the magnetic ring I have opposite magnetism, the upper end of the upper cover is connected with a handle, the upper cover is also connected with a dehydrating cylinder, the push-out part of the dehydrating cylinder is connected with the dehydrating plate, the lower end of the dehydrating plate is connected with a sealing gasket, the vertical circulation dehydrator also comprises a centrifugal cylinder, the side wall of the centrifugal cylinder is uniformly provided with a dehydrating hole III, the lower end of the centrifugal cylinder is connected with the rotating part of a centrifugal motor, the centrifugal motor is connected with the dehydrating main body, the upper end of the centrifugal cylinder is provided with a leakage-proof sloping plate, the side wall of the centrifugal, the water collecting box collects the separated water, and a box door is arranged on the water collecting box.

Description

Vertical circulation hydroextractor
Technical Field
The utility model relates to a hydroextractor field of relevance specifically is a vertical circulation hydroextractor.
Background
The dehydrator generally refers to the centrifugal dehydrator for the coal mine in the field, and vibration centrifugal dehydrator and scraper discharge centrifugal dehydrator are two kinds of centrifugal dehydrator commonly used in the coal mine, in the work progress in the coal mine, are comparatively common industrial machinery, and are closely related with it.
The existing dehydrator has the problem of low efficiency in the working process, and the existing dehydrator vibrates in the working process and can have adverse effect on the dehydration process, so that the vertical circulating dehydrator capable of solving the problems is urgently needed.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a vertical circulation hydroextractor to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
a vertical circulating dehydrator comprises a dehydrating main body, wherein a dehydrating mechanism is arranged in the dehydrating main body, the dehydrating main body is further connected with a supporting shell through a vibration damping mechanism, four supporting legs are arranged at the lower end of the supporting shell, the lower ends of the four supporting legs are connected with a moving wheel through rotating shafts, the dehydrating mechanism comprises an upper cover, a first magnetic plate is arranged at the lower end of the upper cover, a first magnetic ring is arranged on the dehydrating main body, the first magnetic plate and the first magnetic ring are opposite in magnetism, the upper end of the upper cover is connected with a handle, the upper cover is further connected with a dehydrating cylinder, a pushing part of the dehydrating cylinder is connected with the dehydrating plate, the lower end of the dehydrating plate is connected with a sealing gasket, a plurality of first dehydrating protrusions are uniformly distributed at the lower end of the sealing gasket, the lower ends of the first dehydrating protrusions are connected with a second dehydrating protrusion, and the first dehydrating protrusions are larger than the second dehydrating, the centrifugal water separator further comprises a centrifugal cylinder, the side wall of the centrifugal cylinder is connected with a water collecting box, the water collecting box collects separated water, and a box door is arranged on the water collecting box.
As a further aspect of the present invention: the sealing gasket is a rubber gasket.
As a further aspect of the present invention: damping mechanism includes a plurality of elastic component one, and is a plurality of one end of elastic component is connected with the dehydration main part, and one end is connected with support housing in addition, still includes outer pole of multiunit complex damping and interior pole of damping one by one, the outer pole cover of damping is established in the outside of pole in the damping, pole is connected with support housing and dehydration main part respectively in outer pole of damping and the damping, be provided with the spread groove in the outer pole of damping, the pole passes through elastic component two and is connected with the spread groove in the damping.
As a further aspect of the present invention: the number of the first elastic pieces is five, and the first elastic pieces and the second elastic pieces are both springs.
As a further aspect of the present invention: still be provided with spacing cylinder, spacing cylinder is connected with supporting shell, spacing cylinder's ejecting portion and spacing mainboard connection, the side of spacing mainboard is provided with a plurality of and removes the spacing bent plate of wheel one-to-one, the lower extreme of spacing bent plate is provided with spacing pad.
As a further aspect of the present invention: the limiting pad is a rubber pad.
Compared with the prior art, the beneficial effects of the utility model are that: be provided with dehydration mechanism in the dehydration main part, the dehydration main part is still connected with support housing through damping mechanism, the user puts the raw materials that need the dehydration in the dehydration section of thick bamboo one earlier, then cover the upper cover, the release portion of dehydration cylinder drives the dehydration board downstream, through dehydration arch one, dehydration arch two and dehydration hole one, the mating reaction in dehydration hole two, carry out the dehydration operation, rethread centrifugal motor's rotation, it rotates to drive the centrifuge bowl, carry out the dehydration of degree of depth, setting through elastic component one and elastic component two, effectively reduce the vibration that the dehydration operation produced, vertical circulation hydroextractor in this application, can the efficient dehydration operation, and the vibration that produces when can preventing to dewater, very big progress has.
Drawings
Fig. 1 is a schematic structural view of a vertical circulation dehydrator.
Fig. 2 is a schematic structural diagram of the connection of the vibration-damping outer rod and the vibration-damping inner rod in the vertical circulating dehydrator.
In the figure: 1-dehydration cylinder, 2-magnetic plate I, 3-dehydration plate, 4-dehydration bulge I, 5-dehydration main body, 6-dehydration hole II, 7-dehydration hole I, 8-leakage-proof inclined plate, 9-vibration-damping outer rod, 10-vibration-damping inner rod, 11-limit curved plate, 12-limit pad, 13-moving wheel, 14-dehydration hole III, 15-centrifugal motor, 16-limit cylinder, 17-centrifugal cylinder, 18-box door, 19-limit main plate, 20-handle, 21-upper cover, 22-magnetic ring I, 23-dehydration cylinder I, 24-sealing pad, 25-dehydration bulge II, 26-connecting rod I, 27-dehydration cylinder II, 28-connecting rod II, 29-water collecting box, 30-supporting shell, 31-elastic piece I, 32-supporting leg, 33-connecting groove and 34-elastic piece II.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example 1
Please refer to fig. 1-2, in the embodiment of the present invention, a vertical circulation dehydrator comprises a dehydrating main body 5, a dehydrating mechanism is provided in the dehydrating main body 5, the dehydrating operation is performed through the dehydrating mechanism, the dehydrating main body 5 is further connected with a supporting shell 30 through a damping mechanism, the damping mechanism reduces the vibration generated during the operation, the lower end of the supporting shell 30 is provided with four supporting legs 32, four the lower ends of the supporting legs 32 are all connected with a moving wheel 13 through a rotating shaft, and the vertical circulation dehydrator is moved through the moving wheel 13.
The specific form of the dewatering mechanism is not limited, in this embodiment, preferably, the dewatering mechanism includes an upper cover 21, the lower end of the upper cover 21 is provided with a magnetic plate one 2, the dewatering body 5 is provided with a magnetic ring one 22, the magnetic plate one 2 and the magnetic ring one 22 have opposite magnetism and have attraction acting force, the upper end of the upper cover 21 is connected with a handle 20, the upper cover 21 is further connected with the dewatering cylinder 1, the pushing part of the dewatering cylinder 1 is connected with the dewatering plate 3, the lower end of the dewatering plate 3 is connected with a sealing gasket 24, preferably, the sealing gasket 24 is a rubber gasket, the lower end of the sealing gasket 24 is uniformly provided with a plurality of dewatering protrusions one 4, the lower end of the dewatering protrusions one 4 is connected with dewatering protrusions two 25, the dewatering protrusions one 4 are larger than the dewatering protrusions two 25, and a dewatering cylinder one 23 is further included, the dewatering cylinder one 23 is connected with the dewatering body 5 through a plurality of connecting rods one 26, the bottom end of the first dewatering cylinder 23 is uniformly provided with a first dewatering hole 7 matched with a plurality of first dewatering protrusions 4, the second dewatering cylinder 27 is sleeved outside the first dewatering cylinder 23, the second dewatering cylinder 27 is connected with a dewatering main body 5 through a plurality of second connecting rods 28, the bottom end of the second dewatering cylinder 27 is uniformly provided with a second dewatering hole 6 matched with a plurality of second dewatering protrusions 25, the centrifugal cylinder 17 is further provided, the side wall of the centrifugal cylinder 17 is uniformly provided with a third dewatering hole 14, the lower end of the centrifugal cylinder 17 is connected with a rotating part of a centrifugal motor 15, the centrifugal motor 15 is connected with the dewatering main body 5, the upper end of the centrifugal cylinder 17 is provided with a leakage-proof inclined plate 8, the side wall of the centrifugal cylinder 17 is connected with a water collecting box 29, the water collecting box 29 collects the dewatered water, the water collecting box 29 is provided with a box door 18, the water is treated through the box door 18, and the raw materials needing dewatering by a user are firstly put into the first dewatering cylinder 23, then the upper cover 21 is covered, the pushing-out part of the dehydration cylinder 1 drives the dehydration plate 3 to move downwards, dehydration operation is carried out through the cooperation of the dehydration bulge I4, the dehydration bulge II 25, the dehydration hole I7 and the dehydration hole II 6, and then the centrifugal cylinder 17 is driven to rotate through the rotation of the centrifugal motor 15, so that deep dehydration is carried out.
The specific form of damping mechanism does not restrict, and in this embodiment, it is preferred that damping mechanism includes a plurality of elastic component 31, and is a plurality of elastic component 31 one end is connected with dehydration main part 5, and one end is connected with support shell 30 in addition, still includes outer pole 9 of multiunit complex damping and pole 10 in the damping one by one, the outside of pole 10 is established in the outer cover of damping to damping 9, outer pole 9 of damping and pole 10 in the damping are connected with support shell 30 and dehydration main part 5 respectively, be provided with spread groove 33 in the outer pole 9 of damping, the pole 10 is connected with spread groove 33 through elastic component two 34 in the damping, it is preferred, the quantity of elastic component 31 is five, elastic component 31 and elastic component two 34 are the spring, through the setting of elastic component one 31 and elastic component two 34, effectively reduce the vibration that the dehydration operation produced.
The working principle of the embodiment is as follows: be provided with dehydration mechanism in the dehydration main part 5, dehydration main part 5 still is connected with support housing 30 through damping mechanism, the user puts the raw materials that need the dehydration in dehydration section of thick bamboo 23 earlier, then cover upper cover 21, the release portion of dehydration cylinder 1 drives dehydration board 3 downstream, through dehydration arch one 4, two protruding 25 of dehydration and dehydration hole one 7, the mating reaction in dehydration hole two 6, carry out the dehydration operation, rethread centrifugal motor 15's rotation, it rotates to drive centrifugal section of thick bamboo 17, carry out the dehydration of the degree of depth, through the setting of elastic component one 31 and two 34 of elastic component, effectively reduce the vibration that the dehydration operation produced.
Example 2
This embodiment makes the improvement on embodiment 1's basis, still is provided with spacing cylinder 16, spacing cylinder 16 is connected with supporting shell 30, spacing cylinder 16's ejecting portion is connected with spacing mainboard 19, spacing mainboard 19's side is provided with a plurality of and the spacing bent plate 11 that removes wheel 13 one-to-one, the lower extreme of spacing bent plate 11 is provided with spacing pad 12, and is preferred, spacing pad 12 is the rubber pad.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (6)

1. The utility model provides a vertical circulation hydroextractor, its characterized in that includes dehydration main part (5), be provided with dewatering mechanism in dehydration main part (5), dehydration main part (5) still is connected with support housing (30) through damping mechanism, the lower extreme of support housing (30) is provided with four supporting legs (32), four the lower extreme of supporting leg (32) all is connected with removal wheel (13) through the pivot, dewatering mechanism includes upper cover (21), the lower extreme of upper cover (21) is provided with magnetic force board (2), be provided with magnetic force ring (22) on dehydration main part (5), magnetic force board (2) is opposite with the magnetism of magnetic force ring (22), the upper end and the handle (20) of upper cover (21) are connected, upper cover (21) still are connected with dehydration cylinder (1), the release portion and the dehydration board (3) of dehydration cylinder (1) are connected, the lower end of the dewatering plate (3) is connected with a sealing gasket (24), the lower end of the sealing gasket (24) is uniformly provided with a plurality of dewatering protrusions I (4), the lower end of each dewatering protrusion I (4) is connected with a dewatering protrusion II (25), the dewatering protrusions I (4) are larger than the dewatering protrusions II (25), the dewatering device further comprises a dewatering tube I (23), the dewatering tube I (23) is connected with a dewatering main body (5) through a plurality of connecting rods I (26), the bottom end of the dewatering tube I (23) is uniformly provided with dewatering holes I (7) matched with the dewatering protrusions I (4), the dewatering device further comprises a dewatering tube II (27), the dewatering tube II (27) is sleeved outside the dewatering tube I (23), the dewatering tube II (27) is connected with the dewatering main body (5) through a plurality of connecting rods II (28), the bottom end of the dewatering tube II (27) is uniformly provided with dewatering holes II (6) matched with the dewatering protrusions II (25), the centrifugal machine is characterized by further comprising a centrifugal cylinder (17), dewatering holes III (14) are evenly distributed in the side wall of the centrifugal cylinder (17), the lower end of the centrifugal cylinder (17) is connected with a rotating portion of a centrifugal motor (15), the centrifugal motor (15) is connected with a dewatering main body (5), a leakage-proof inclined plate (8) is arranged at the upper end of the centrifugal cylinder (17), the side wall of the centrifugal cylinder (17) is connected with a water collecting box (29), the water collecting box (29) collects separated water, and a box door (18) is arranged on the water collecting box (29).
2. The vertical hydroextractor of claim 1, wherein the gasket (24) is a rubber gasket.
3. The vertical type circulating dehydrator according to claim 1, wherein the vibration reduction mechanism comprises a plurality of first elastic members (31), one ends of the first elastic members (31) are connected with the dehydrating main body (5), the other ends of the first elastic members are connected with the supporting shell (30), the vertical type circulating dehydrator further comprises a plurality of groups of vibration reduction outer rods (9) and vibration reduction inner rods (10) which are matched one by one, the vibration reduction outer rods (9) are sleeved outside the vibration reduction inner rods (10), the vibration reduction outer rods (9) and the vibration reduction inner rods (10) are respectively connected with the supporting shell (30) and the dehydrating main body (5), connecting grooves (33) are arranged in the vibration reduction outer rods (9), and the vibration reduction inner rods (10) are connected with the connecting grooves (33) through second elastic members (34).
4. The vertical type circulating dehydrator according to claim 3, wherein the number of the first elastic members (31) is five, and the first elastic members (31) and the second elastic members (34) are both springs.
5. The vertical type circulating dehydrator according to claim 1, further comprising a limiting cylinder (16), wherein the limiting cylinder (16) is connected with the support housing (30), a push-out part of the limiting cylinder (16) is connected with a limiting main plate (19), a plurality of limiting curved plates (11) corresponding to the moving wheels (13) one by one are arranged on the side surface of the limiting main plate (19), and a limiting pad (12) is arranged at the lower end of each limiting curved plate (11).
6. The vertical hydroextractor of claim 5, wherein the limiting pad (12) is a rubber pad.
CN202022311739.8U 2020-10-16 2020-10-16 Vertical circulation hydroextractor Active CN213454549U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022311739.8U CN213454549U (en) 2020-10-16 2020-10-16 Vertical circulation hydroextractor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022311739.8U CN213454549U (en) 2020-10-16 2020-10-16 Vertical circulation hydroextractor

Publications (1)

Publication Number Publication Date
CN213454549U true CN213454549U (en) 2021-06-15

Family

ID=76291671

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022311739.8U Active CN213454549U (en) 2020-10-16 2020-10-16 Vertical circulation hydroextractor

Country Status (1)

Country Link
CN (1) CN213454549U (en)

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