Rotary separation type anti-blocking vegetable dehydrator

The rotary separation anti-clogging vegetable dehydrator design solves the problems of cumbersome material handling and clogging in existing vegetable dehydrators, enabling rapid material handling and convenient cleaning, thus improving ease of use.

CN223515703UActive Publication Date: 2025-11-07YANGZHOU YOUSUO MASCH TECH CO LTD
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Patent Information

Application Number
CN202423125272.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-07
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

The existing vegetable dehydrator has a combined feeding and discharging port, which makes material handling cumbersome, prone to clogging, and difficult to clean.

Method used

A rotary separation anti-clogging vegetable dehydrator was designed, which enables rapid vegetable loading and convenient cleaning through a freely lifting conical door and a separation structure.

Benefits of technology

It increases the output speed of the vegetable dehydrator, simplifies the cleaning process, prevents vegetable blockage, and improves ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rotary separation type anti-blocking vegetable dehydrator. The dehydrator comprises a frame, a base for supporting the frame and a rotary dehydration mechanism mounted in the frame, the frame comprises a motor mounting seat, an air cylinder mounting seat, a sleeve supporting frame, a ring-shaped upper frame body, a ring-shaped lower frame body, a supporting column and a supporting lug seat, and the rotary dehydration mechanism comprises a driving mechanism, a dehydration mechanism and a discharging mechanism. The driving mechanism comprises a driving motor and a spline shaft, the dewatering mechanism comprises a first spline shaft sleeve, a first sealing bearing sleeve, a dewatering inner cylinder, an inner cylinder mounting frame and a dewatering outer cylinder, and the discharging mechanism comprises a conical cylinder door, a second spline shaft sleeve, a second sealing bearing sleeve, a third sealing bearing sleeve, a sleeve mounting seat and an air cylinder. The water throwing inner barrel and the conical barrel door are separated up and down through the conical barrel door which vertically ascends and descends, material blockage is prevented, dehydrated vegetables are taken, the material taking difficulty is simplified, and meanwhile the water throwing inner barrel is convenient to clean.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a vegetable dehydrator technical field, concretely relates to a rotary separation type anti -blocking vegetable dehydrator. BACKGROUND

[0002] With the development of economy, the improvement of living standard, the acceleration of life rhythm, the instant food is more and more popular, and the need of the dehydrated vegetable as the instant food is increasing, and part of the products is processed into dehydrated vegetable for sale due to storage and transportation and the influence of slack season after the production of greenhouse vegetable product, and the dehydrated vegetable is a kind of dried vegetable made by washing, drying and other processing of fresh vegetable, and the most water in the vegetable is removed, and the original color and nutrient of the vegetable are basically unchanged, so the vegetable dehydration becomes a kind of storage mode commonly used at present.

[0003] Most of the vegetable dehydrators currently have a combined discharge opening and discharge opening, and most of them are arranged at the uppermost part of the dehydrator, which is convenient for discharging, but when taking out the vegetables, the special tool needs to be manually called to take out the vegetables at the bottom of the dehydrator, which is very cumbersome and inconvenient, and the vegetables are easy to block in the bottom connecting part or interstice of the dehydrator, which is not easy to take out and clean. UTILITY MODEL CONTENTS

[0004] The utility model aims at the deficiency of prior art, and provides a rotary separation type anti-blocking vegetable dehydrator which is convenient for taking out, easy to clean and prevents vegetable blocking.

[0005] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of a vegetable dehydrator, which comprises a frame, a base supporting the frame and a rotary dehydration mechanism installed in the frame.

[0006] The frame comprises a motor mounting seat, a cylinder mounting seat, a sleeve support frame, a ring-shaped upper frame body, a ring-shaped lower frame body, a support column and a support lug seat, the sleeve support frame is circumferentially distributed in equal parts with the motor mounting seat as the center, the top of the sleeve support frame is fixedly connected with a diagonal brace, the motor mounting seat corresponds to the position of the diagonal brace, the diagonal brace is fixedly connected to the motor mounting seat and supports the motor mounting seat, the end of the sleeve support frame is fixedly connected to the ring-shaped upper frame body vertically downward, the ring-shaped lower frame body is arranged directly below the ring-shaped upper frame body, the ring-shaped upper frame body and the ring-shaped lower frame body are fixedly connected by the support column, the support column corresponds to the position of the sleeve support frame, the lower end of the support column extends to the cylinder mounting seat obliquely to the center and is fixedly connected thereto, the cylinder mounting seat is on the same vertical line as the motor mounting seat, and the same height of the outer wall of the support column is fixedly connected with the support lug seat.

[0007] The rotary dehydration mechanism comprises a driving mechanism, a dehydration mechanism and a discharge mechanism.

[0008] The driving mechanism comprises a driving motor and a spline shaft, the output end of the driving motor is connected to the mounting flange through a key, the bottom of the driving motor is fixed to a motor mounting flange seat, the motor mounting flange seat is fixed to a motor mounting seat, the spline shaft comprises a top flange end and a longitudinal key groove, and the mounting flange is fixed to the top flange end of the spline shaft.

[0009] The dewatering mechanism comprises a first spline shaft sleeve, a first sealing bearing sleeve, a water throwing inner cylinder, an inner cylinder mounting frame, and a water throwing outer cylinder, the first spline shaft sleeve is sleeved in the key groove, the outer wall of the first spline shaft sleeve is threadedly connected with the inner wall of the first sealing bearing sleeve, the top end flange connecting portion of the first sealing bearing sleeve is fixed to a sleeve support frame, the bottom of the first spline shaft sleeve also has a flange connecting portion, the flange connecting portion of the first spline shaft sleeve is connected to the inner cylinder mounting frame, the inner cylinder mounting frame comprises a connecting flange, a connecting cross frame and a connecting vertical frame, the connecting flange is fixed to the flange connecting portion of the first spline shaft sleeve, the connecting cross frame is circumferentially arranged with the connecting flange as the center, the water throwing inner cylinder is holed at the position corresponding to the connecting cross frame and is sleeved on the connecting cross frame through the hole, the connecting vertical frame is vertically arranged and fixed at the end of the connecting cross frame, and the inner side of the connecting vertical frame is tightly pressed against the outer wall of the water throwing inner cylinder.

[0010] The outer wall of the water throwing outer cylinder is fixed on the support column, the water throwing outer cylinder wraps the water throwing inner cylinder, the top of the water throwing outer cylinder is provided with a top cover, the bottom center of the water throwing outer cylinder is inwardly recessed, the inner side of the recess is provided with a discharge port, and the outer side of the recess, the bottom edge and the outer wall of the water throwing outer cylinder jointly form a water draining groove, and the bottom of the water draining groove is provided with a water outlet.

[0011] The discharging mechanism comprises a conical cylinder door, a second spline shaft sleeve, a second sealing bearing sleeve, a third sealing bearing sleeve, a sleeve mounting seat and a pneumatic cylinder, the flange connecting portion of the second spline shaft sleeve is fixed to the conical cylinder door, the third sealing bearing sleeve is sleeved on the spline shaft, the bottom of the third sealing bearing sleeve is bolted to the sleeve mounting seat, the sleeve mounting seat is bolted to a cylinder flange seat, the cylinder flange seat is vertically upwardly provided with the pneumatic cylinder, the piston rod end of the pneumatic cylinder is provided with a floating joint, and the floating joint is fixed to the flange connecting portion of the second sealing bearing sleeve.

[0012] Preferably, a spring mounting seat is arranged above the base, the spring mounting seat extends inwardly to the position directly below the support lug seat and corresponds to the support lug seat one by one, a shock absorber is arranged on the side wall of the support column and faces the spring mounting seat, and a damping spring is arranged between the spring mounting seat and the support lug seat.

[0013] Preferably, the bottom of the water throwing inner cylinder extends outwardly and is vertically downwardly provided with a double-position retaining ring, and the double-position retaining ring is formed by two retaining rings with different radii.

[0014] Preferably, the top of the recess is provided with a vertically upward outer cylinder retaining ring, and the radius of the outer cylinder retaining ring is between the radii of the double-position retaining ring.

[0015] Preferably, the outer cylinder check ring is inserted into the double-position check ring, and the outer cylinder check ring and the double-position check ring jointly constitute the non-contact occlusion posture.

[0016] Preferably, the middle opening of the top cover leaves space for the first sealing sleeve and the opening is not in contact with the first sealing sleeve.

[0017] Preferably, the peripheral wall of the water throwing outer cylinder is provided with an observation window.

[0018] Preferably, the upper portion of the second spline shaft sleeve is provided with a first limiting shaft sleeve, and the lower portion of the second spline shaft sleeve is provided with a second limiting shaft sleeve.

[0019] Preferably, the cylinder flange seat is provided with a guide sleeve, and the top end of the guide column sleeve is fixedly connected to the flange connecting portion of the second sealing bearing sleeve.

[0020] Compared with the prior art, the utility model has the following advantages: the utility model discloses a cone-shaped cylinder door which can be freely lifted, separates the bottom of the water throwing inner cylinder from the peripheral wall of the water throwing inner cylinder, and when dehydration is completed, the dehydrated vegetables fall through the cone-shaped cylinder door under the action of the cylinder, realize the rapid taking of the dehydrated vegetables, and improve the discharging speed.

[0021] And due to the separated structure, when the dehydration machine is cleaned, the bottom of the water throwing inner cylinder which is difficult to clean can be lowered by the cylinder, and the clearance of the water throwing inner cylinder is conveniently cleaned by manpower. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is the overall sectional view of the utility model.

[0023] Figure 2 It is the overall isometric view of the utility model.

[0024] Figure 3 It is the sectional view of the dehydration mechanism and the driving mechanism in the utility model.

[0025] Figure 4 It is the sectional view of the discharging mechanism in the utility model.

[0026] Figure 5 It is the sectional view of the water throwing outer cylinder in the utility model.

[0027] Figure 6 It is Figure 1 The enlarged schematic view of A-A.

[0028] Wherein, 1-frame, 11-motor mounting seat, 12-cylinder mounting seat, 13-sleeve support frame, 14-loop upper frame body, 15-loop lower frame body, 16-support column, 17-support ear seat, 2-base, 21-damping spring, 22-spring mounting seat, 23-shock absorber, 3-rotary dewatering mechanism, 31-driving motor, 32-motor mounting flange seat, 33-spline shaft, 34-mounting flange, 40-dewatering mechanism, 41-first spline shaft sleeve, 42-first sealing bearing sleeve, 43-inner cylinder mounting frame, 431-connection flange, 432-connection cross frame, 433-connection vertical frame, 44-water throwing inner cylinder, 45-two-position retainer, 50-discharging mechanism, 51-cone-shaped cylinder door, 52-first limit shaft sleeve, 53-second limit shaft sleeve, 54-second spline shaft sleeve, 55-second sealing bearing sleeve, 56-third sealing bearing sleeve, 57-guide column, 58-guide sleeve, 59-cylinder, 60-cylinder flange seat, 61-sleeve mounting seat, 62-floating joint, 70-water throwing outer cylinder, 71-feeding port, 72-top cover, 73-observation window, 74-drainage groove, 75-water outlet, 76-outer cylinder retainer. DETAILED DESCRIPTION

[0029] The utility model will be further illustrated below in combination with the drawings and specific embodiments, and it should be understood that these embodiments are only used for illustrating the utility model and are not used for limiting the scope of the utility model, and after reading the utility model, the modification of various equivalent forms of the utility model by the person skilled in the art falls within the range defined by the claims attached to the present application.

[0030] As Figure 1 The rotary separation type anti-blocking vegetable dewatering machine shown in the figure comprises a frame 1, a base 2 supporting the frame 1, and a rotary dewatering mechanism 3 installed inside the frame 1.

[0031] As Figure 2 The frame 1 comprises a motor mounting seat 11, a cylinder mounting seat 12, a sleeve support frame 13, a loop-shaped upper frame body 14, a loop-shaped lower frame body 15, a support column 16, and a support ear seat 17.

[0032] The sleeve support frame 13 is provided with four, which are circumferentially distributed in the way of four equidistribution with the motor mounting seat 11 as the center, the top of the sleeve support frame 13 is welded with a diagonal brace, the motor mounting seat 11 is a square frame, the four right angles of the motor mounting seat 11 correspond to the position of the diagonal brace, the diagonal brace is welded to the motor mounting seat 11 and supports the motor mounting seat 11, the end of the sleeve support frame 13 is welded to the circle-shaped upper frame body 14 vertically downward, the circle-shaped lower frame body 15 is arranged directly below the circle-shaped upper frame body 14, the circle-shaped upper frame body 14 and the circle-shaped lower frame body 15 are welded and fixed through the four support columns 16, the four support columns 16 correspond to the position of the sleeve support frame 13, the lowermost end of the four support columns 16 extends to the center obliquely and is welded to the cylinder mounting seat 12, the cylinder mounting seat 12 is also a square frame, the cylinder mounting seat 12 is on the same vertical line with the motor mounting seat 11, the same height of the outer side wall of the four support columns 16 is welded with a support lug 17.

[0033] The base 2 is a square frame, four corners of the base 2 above are provided with spring mounting seats 22, the spring mounting seats 22 extend inwardly to the lower side of the support lug 17 and correspond to the support lug 17 one by one, the spring mounting seats 22 are provided with shock absorbers 23 facing the side wall of the support column 16, the spring mounting seats 22 and the support lug 17 are provided with shock absorbing springs 21, the flexible connection between the frame 1 and the base 2 is formed through the shock absorbing springs 21, the transverse force of the frame 1 to the base 2 is reduced through the shock absorbers 23, the base 2 is not shaken by the centrifugal force in the whole operation process of the dewatering machine, and the operation stability of the device is ensured.

[0034] As shown in Figures 3-4 , the rotary dewatering mechanism 3 includes a driving mechanism, a dewatering mechanism 40 and a discharging mechanism 50.

[0035] The driving mechanism includes a driving motor 31 and a spline shaft 33, the output end of the driving motor 31 is connected to a mounting flange 34 through a key, the bottom of the driving motor 31 is connected to a motor mounting flange seat 32 through a bolt, the motor mounting flange seat 32 is connected to the motor mounting seat 11 through a bolt, the spline shaft 33 includes a top flange end and a longitudinal key groove, and the mounting flange 34 is connected to the top flange end of the spline shaft 33 through a bolt.

[0036] The dewatering mechanism 40 comprises a first spline shaft sleeve 41, a first sealing bearing sleeve 42, a water throwing inner cylinder 44, an inner cylinder mounting frame 43, and a water throwing outer cylinder 70. The first spline shaft sleeve 41 is sleeved on a keyway. The outer wall of the first spline shaft sleeve 41 is threadedly connected with the inner wall of the first sealing bearing sleeve 42. The top flange connecting portion of the first sealing bearing sleeve 42 is welded to the sleeve support frame 13. The first sealing bearing sleeve 42 is fixed and supported by the sleeve support frame 13. The bottom of the first spline shaft sleeve 41 also has a flange connecting portion. The flange connecting portion of the first spline shaft sleeve 41 is connected to the inner cylinder mounting frame 43. The inner cylinder mounting frame 43 comprises a connecting flange 431, connecting cross frames 432, and connecting vertical frames 433. The connecting flange 431 is bolted to the flange connecting portion of the first spline shaft sleeve 41. There are six connecting cross frames 432. The connecting cross frames 432 are distributed in a circle around the connecting flange 431. The water throwing inner cylinder 44 is holed at positions corresponding to the connecting cross frames 432 and is sleeved on the connecting cross frames 432. The connecting vertical frames 433 are perpendicular and welded at the ends of the connecting cross frames 432. The inner side of the connecting vertical frames 433 tightly presses the outer wall of the water throwing inner cylinder 44. The water throwing inner cylinder 44 is mounted and fixed by the inner cylinder mounting frame 43 and rotates with the spline shaft 33. The bottom of the water throwing inner cylinder 44 extends outward and is vertically downward provided with a double-position retaining ring 45 formed by two retaining rings with different radii.

[0037] The outer wall of the water throwing outer cylinder 70 is welded and fixed on the support column 16. The water throwing outer cylinder 70 wraps the water throwing inner cylinder 44. The top of the water throwing outer cylinder 70 is provided with a top cover 72. The middle hole of the top cover 72 leaves space for the first sealing sleeve and does not contact the first sealing sleeve. The peripheral cylinder wall of the water throwing outer cylinder 70 is provided with an observation window 73. The bottom center of the water throwing outer cylinder 70 is concave upward. The inner side of the concave portion is provided with a discharge port. The outer side of the concave portion and the bottom edge and the outer wall of the water throwing outer cylinder 70 together form a water drainage groove 74. The bottom of the water drainage groove 74 is provided with a water outlet 75. The top of the concave portion is provided with an outer cylinder retaining ring 76 vertically upward. The radius of the outer cylinder retaining ring 76 is between the radii of the double-position retaining ring 45. The outer cylinder retaining ring 76 is inserted into the double-position retaining ring 45. The outer cylinder retaining ring 76 and the double-position retaining ring 45 together form a non-contact engagement posture to block the materials and water on both sides.

[0038] The discharge mechanism 50 comprises a tapered cylinder door 51, a second spline shaft sleeve 54, a second sealing bearing sleeve 55, a third sealing bearing sleeve 56, a sleeve mounting seat 61 and a cylinder 59, the flange connection part of the second spline shaft sleeve 54 is welded and fixed with the tapered cylinder door 51, the upper part of the second spline shaft sleeve 54 is provided with a first limiting shaft sleeve 52, the lower part of the second spline shaft sleeve 54 is provided with a second limiting shaft sleeve 53, the first limiting shaft sleeve 52 and the second limiting shaft sleeve 53 are both sleeved on the spline shaft 33 to limit the wobble gap of the tapered cylinder door 51, the third sealing bearing sleeve 56 is sleeved on the spline shaft 33, the bottom of the third sealing bearing sleeve 56 is bolted in the sleeve mounting seat 61, the sleeve mounting seat 61 is bolted to the cylinder flange seat 60, the cylinder flange seat 60 is vertically upwardly installed with the cylinder 59, the piston rod end of the cylinder 59 is installed with a floating joint 62, the floating joint 62 is fixed to the flange connection part of the second sealing bearing sleeve 55, the cylinder flange seat 60 is provided with a guide sleeve 58, the guide column 57 is sleeved to the guide sleeve 58, the top end of the guide column 57 is fixed to the flange connection part of the second sealing bearing sleeve 55, when the cylinder 59 is started, since the bottom of the cylinder 59 is fixed on the cylinder mounting seat 12, with the contraction of the piston rod, the second sealing bearing sleeve 55 drives the second spline shaft sleeve 54 to move vertically downward, under the guidance of the guide column 57 guide sleeve 58, the second spline shaft sleeve 54 moves vertically downward along the key groove of the spline shaft 33, and then the tapered cylinder door 51 moves away from the bottom of the water throwing inner cylinder 44, on the other hand, with the stretching of the piston rod, the second sealing bearing sleeve 55 drives the second spline shaft sleeve 54 to move vertically upward, under the guidance of the guide column 57 guide sleeve 58, the second spline shaft sleeve 54 moves vertically upward along the key groove of the spline shaft 33, and then the tapered cylinder door 51 moves close to the bottom of the water throwing inner cylinder 44 until completely adheres.

[0039] The first sealing bearing sleeve, the second sealing bearing sleeve 55 and the third sealing bearing sleeve 56 which need to be further explained are all composed of an outer wall cylinder, an inner wall cylinder, a sealing ring and a rolling bearing, the end part of the outer wall cylinder is provided with a flange connection part, when the spline shaft 33 is sleeved and rotates with the spline shaft 33, the rolling bearing inner ring which is closely adhered with the spline shaft 33 sleeve rotates, and the outer wall cylinder does not rotate.

[0040] The working process and principle of the utility model: the vegetables needing spin-drying treatment are put into the spin water inner cylinder 44 from the feeding port 71, the driving motor 31 is started, the spline shaft 33 rotates with the driving motor 31, the first spline shaft sleeve 41 connected with the key groove of the spline shaft 33 rotates, the inner cylinder mounting frame 43 connected with the first spline shaft sleeve 41 rotates with the first spline shaft sleeve 41, namely the spin water inner cylinder 44 rotates with the inner cylinder mounting frame 43, at this time, the conical cylinder door 51 is closely attached to the spin water inner cylinder 44, and because the second spline shaft sleeve 54 connected with the conical cylinder door 51 also rotates with the rotation of the spline shaft 33, the conical cylinder door 51 rotates with the spin water inner cylinder 44 at the same speed, the distance between the first limiting shaft sleeve 52 and the second limiting shaft sleeve 53 is set to limit the shaking of the conical cylinder door 51 in high-speed rotation, under the action of centrifugal force, the vegetables in the spin water inner cylinder 44 are dehydrated, after dehydration is completed, the cylinder 59 is controlled and the piston rod of the cylinder 59 is contracted, the second sealing shaft sleeve connected with the floating joint 62 moves vertically downward under the guidance of the guide column 57 guide sleeve 58, so that the conical cylinder door 51 is opened downward, the vegetables after dehydration are taken out, the cylinder 59 is controlled again and the piston rod of the cylinder 59 is stretched, so that the conical cylinder door 51 is lifted upward and then the conical cylinder door 51 is completely attached to the spin water inner cylinder 44, the above operation is repeated to carry out the next vegetable dehydration process.

[0041] It should be readily understood that "on," "over," and "above" in the present disclosure should be interpreted in the broadest context possible, such that "on" means not only "directly on" but also includes the meaning of "on" with intervening features or layers therebetween, and "over" or "above" includes not only the meaning of "over" or "above" but also the meaning of "over" or "above" without intervening features or layers therebetween (i.e., directly on).

[0042] In addition, spatially relative terms, such as "under", "below", "lower", "over", "upper" and the like, can be used herein for ease of description to describe one element or feature's relationship to another element(s) or feature(s) as illustrated in the figures. Spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientations depicted in the figures. The devices can be otherwise oriented (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein can likewise be interpreted according to the same.

[0043] It should be noted that, in the present document, relational terms such as "first" and "second", and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.

[0044] Finally, it should be noted that the above-described embodiments are merely intended for describing and illustrating, not limiting, the technical solutions of the present application; even though the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or equivalently replace some or all of the technical features thereof; and such modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A rotary separation type anti-clogging vegetable dehydrator, characterized by: The frame, the base supporting the frame and the rotary dewatering mechanism installed inside the frame; The frame comprises a motor mounting seat, a cylinder mounting seat, a sleeve support frame, a ring-shaped upper frame body, a ring-shaped lower frame body, a support column and a support lug seat. The sleeve support frame is circumferentially distributed in equal parts with the motor mounting seat as the center. The top of the sleeve support frame is fixedly connected with a diagonal brace. The motor mounting seat corresponds to the position of the diagonal brace. The diagonal brace is fixedly connected to the motor mounting seat and supports the motor mounting seat. The end of the sleeve support frame is fixedly connected to the ring-shaped upper frame body vertically downward. The ring-shaped lower frame body is arranged directly below the ring-shaped upper frame body. The ring-shaped upper frame body and the ring-shaped lower frame body are fixedly connected by the support column. The support column corresponds to the position of the sleeve support frame. The lowermost end of the support column extends to the cylinder mounting seat obliquely to the center. The cylinder mounting seat is on the same vertical line with the motor mounting seat. The same height of the outer side wall of the support column is fixedly connected with the support lug seat. The rotary dewatering mechanism comprises a driving mechanism, a dewatering mechanism and a discharging mechanism. The driving mechanism comprises a driving motor and a spline shaft. The output end of the driving motor is connected to the mounting flange through a key. The bottom of the driving motor is fixedly connected to the motor mounting flange seat. The motor mounting flange seat is fixedly connected to the motor mounting seat. The spline shaft comprises a top flange end and a longitudinal key groove. The mounting flange is fixedly connected to the top flange end of the spline shaft. The dewatering mechanism comprises a first spline shaft sleeve, a first sealing bearing sleeve, a water throwing inner cylinder, an inner cylinder mounting frame and a water throwing outer cylinder. The first spline shaft sleeve is sleeved on the key groove. The outer wall of the first spline shaft sleeve is threadedly connected with the inner wall of the first sealing bearing sleeve. The top flange connecting portion of the first sealing bearing sleeve is fixedly connected to the sleeve support frame. The bottom of the first spline shaft sleeve also has a flange connecting portion. The flange connecting portion of the first spline shaft sleeve is connected to the inner cylinder mounting frame. The inner cylinder mounting frame comprises a connecting flange, a connecting horizontal frame and a connecting vertical frame. The connecting flange is fixedly connected to the flange connecting portion of the first spline shaft sleeve. The connecting horizontal frame is circumferentially distributed with the connecting flange as the center. The water throwing inner cylinder is holed at the position corresponding to the connecting horizontal frame and is sleeved on the connecting horizontal frame through the hole. The connecting vertical frame is vertically and fixedly connected to the end of the connecting horizontal frame. The inner side of the connecting vertical frame tightly presses the outer wall of the water throwing inner cylinder. The outer wall of the water throwing outer cylinder is fixedly connected to the support column. The water throwing outer cylinder wraps the water throwing inner cylinder. The top of the water throwing outer cylinder is provided with a top cover. The bottom center of the water throwing outer cylinder is concave upward. The inner side of the concave portion is provided with a discharge port. The outer side of the concave portion, the bottom edge and the outer wall of the water throwing outer cylinder jointly form a water draining groove. The bottom of the water draining groove is provided with a water outlet. The discharging mechanism comprises a conical cylinder door, a second spline shaft sleeve, a second sealing bearing sleeve, a third sealing bearing sleeve, a sleeve mounting seat and a cylinder. The flange connecting portion of the second spline shaft sleeve is fixedly connected with the conical cylinder door. The third sealing bearing sleeve is sleeved on the spline shaft. The bottom of the third sealing bearing sleeve is bolted to the sleeve mounting seat. The sleeve mounting seat is bolted to the cylinder flange seat. The cylinder flange seat is vertically upwardly provided with the cylinder. The piston rod end of the cylinder is provided with a floating joint. The floating joint is fixedly connected to the flange connecting portion of the second sealing bearing sleeve.

2. The rotary, disengaging, anti-clogging, vegetable dehydrator of claim 1, wherein: The base is provided with spring mounting seats which extend inwardly to the bottom of the support lug seat and correspond to the support lug seat one by one, a shock absorber is mounted on the side wall of the support column facing the spring mounting seat, and a shock spring is mounted between the spring mounting seat and the support lug seat.

3. The rotary, disengaging, anti-clogging, vegetable dehydrator of claim 1, wherein: The bottom of the water throwing inner cylinder extends outwardly and is provided with a double-position retaining ring vertically downward, which is formed by two retaining rings with different radii.

4. The rotary, disengaging, anti-jamming, vegetable dehydrator of claim 3, wherein: The top of the inner recess is provided with an outer cylinder retaining ring vertically upward, and the radius of the outer cylinder retaining ring is between the radii of the double-position retaining ring.

5. The rotary, disengaging, anti-jamming, vegetable dehydrator of claim 4, wherein: The outer cylinder retaining ring is inserted into the double-position retaining ring, and the outer cylinder retaining ring and the double-position retaining ring jointly constitute a non-contact occlusion posture.

6. The rotary, disengaging, anti-jamming, vegetable dehydrator of claim 1, wherein: The middle hole of the top cover leaves space for the first sealing sleeve and the hole is not in contact with the first sealing sleeve.

7. The rotary, disengaging, anti-jamming, vegetable dehydrator of claim 1, wherein: The peripheral wall of the water throwing outer cylinder is provided with an observation window.

8. The rotary, disengaging, anti-jamming, vegetable dehydrator of claim 1, wherein: The upper part of the second spline shaft sleeve is provided with a first limiting shaft sleeve, and the lower part of the second spline shaft sleeve is provided with a second limiting shaft sleeve.

9. The rotary, disengaging, anti-jamming, vegetable dehydrator of claim 1, wherein: The cylinder flange seat is provided with a guide sleeve, and the top end of the guide column sleeve is fixedly connected to the flange connecting part of the second sealing bearing sleeve.