A multi-stage vibration draining device for clear water mustard

CN224819503UActive Publication Date: 2026-10-09HUAIBEI RUIMEI FOOD CO LTD
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Patent Information

Application Number
CN202522434155.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-17
Publication Date
2026-10-09
Estimated Expiration
2035-11-17

AI Technical Summary

Technical Problem

[0004]现有技术中主要通过振动筛对贡菜进行沥水,而单次沥水会存在残留,针对工厂的流水线生产多采用组合的方式形成多级沥水线,而现有技术中的支撑腿难以调整振动筛和输送带的高度,使得振动筛和流水线的布局(如坡度)受限,具有可优化空间

Benefits of technology

1.该一种清水贡菜多级振动沥水装置,通过多组支撑结构调整输送带或者振动筛的坡度,方便在振动筛的一侧布置与振动筛倾斜方向相反的另一输送带将贡菜运送至高处然后落在另一振动筛上继续沥干,根据需求可实现灵活的布局,通过用手指挑起止推环,止推环与转动环分离,止推环的凸起从止推槽内脱离,此时转动环可自由转动进而带动调节螺杆转动调整支撑体的高度,松开止推环后,止推环与转动环卡接,即转动环的凸起卡入对应位置的止推槽内,通过止推环在周向锁止转动环的方式,抑制转动环因机械振动旋转,进而调节位置后的调节螺杆稳定性强,不会出现高度漂移的情况,输送带和振动筛的坡度得以固定和限位。

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Abstract

The utility model relates to the technical field of production of preserved vegetable, and disclose a kind of clear water preserved vegetable multistage vibration draining device, comprising: alternately arranged several conveyer belts and vibrating screen;Support structure, it is used for adjusting the gradient of conveyer belt and vibrating screen to be arranged at the bottom of conveyer belt and vibrating screen, support structure includes outer sleeve, adjusting screw, rotating ring, thrust ring and support body, the gradient of conveyer belt or vibrating screen is adjusted by multiple sets of support structure, it is convenient to arrange another conveyer belt opposite to the inclination direction of vibrating screen on the side of vibrating screen, and preserved vegetable is transported to high place and then falls on another vibrating screen to continue draining, according to requirement, flexible layout can be realized, by the mode that thrust ring circumferentially locks rotating ring, inhibits rotating ring to rotate due to mechanical vibration, and then the stability of adjusting screw after adjusting position is strong, height drift situation does not appear, the gradient of conveyer belt and vibrating screen can be fixed and limited.
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Description

Technical Field

[0001] This utility model relates to the field of dried vegetable production technology, and in particular to a multi-stage vibration dewatering device for clear water dried vegetables. Background Technology

[0002] After being washed, the dried gongcai (a type of dried vegetable) needs to have any residual moisture removed to facilitate further processing.

[0003] According to the prior art, a vibrating dewatering screen for dehydrated vegetables (publication number: CN221203968U) is disclosed, which includes a dewatering mechanism. A feeding mechanism is fixedly connected to one side of the outer wall of the dewatering mechanism. The dewatering mechanism includes four legs. A spring damper is fixedly connected to the top of each of the four legs. A fixing block is fixedly connected to the top of each of the four spring dampers. A fixing frame is fixedly connected between the tops of the four fixing blocks. Two placement blocks are fixedly connected to one side of the inner wall of the fixing frame. Two blocking blocks are fixedly connected to one side of the inner wall of the fixing frame.

[0004] In existing technologies, the main method for draining dried vegetables is through a vibrating screen. However, a single draining process can leave residue. For factory production lines, a combination method is often used to form a multi-stage draining line. However, the support legs in existing technologies make it difficult to adjust the height of the vibrating screen and conveyor belt, which limits the layout of the vibrating screen and production line (such as the slope), leaving room for optimization.

[0005] Therefore, we propose a multi-stage vibration drainage device for clear water dried vegetables. Utility Model Content

[0006] The present invention mainly solves the technical problem of the difficulty in adjusting the slope of the conveyor belt and vibrating screen, and provides a multi-stage vibrating draining device for clear water dried vegetables.

[0007] To achieve the above objectives, this utility model adopts the following technical solution: a multi-stage vibration dewatering device for clear water dried vegetables, comprising: Several conveyor belts and vibrating screens are arranged alternately, and multiple conveyor belts and vibrating screens together form a draining production line; A support structure is installed at the bottom of the conveyor belt and the vibrating screen to adjust the slope of the conveyor belt and the vibrating screen. The support structure includes an outer sleeve, an adjusting screw, a rotating ring, a thrust ring, and a support body. The adjusting screw is threaded to the outer sleeve, the rotating ring is fixedly connected to the adjusting screw, the adjusting screw is axially connected to the support body, and the thrust ring is elastically connected to the support body and engaged with the rotating ring. The thrust ring effectively restricts the rotation of the rotating ring. The pad assembly is set on top of the support for installation and connection.

[0008] In a preferred embodiment of the present invention, the pad assembly includes a support seat and a rubber block. The top of the support body has a notch, the support seat is located in the notch and is rotatably connected to the support body through a rotating shaft, and the rubber block is locked to the support seat and the conveyor belt by bolts.

[0009] In a preferred embodiment of this utility model, the bottom of the outer sleeve is provided with an anti-slip block, and the inside of the outer sleeve is provided with a threaded hole, and the adjusting screw is threadedly connected to the threaded hole of the outer sleeve.

[0010] In a preferred embodiment of this utility model, the rotating ring is annular and integrally formed with the adjusting screw. The circumferential surface of the rotating ring is provided with an anti-slip groove, and the top surface of the rotating ring is provided with several thrust grooves. The bottom of the thrust ring is provided with several integrally formed protrusions, which can be inserted into the thrust grooves to restrict the rotation of the rotating ring.

[0011] In a preferred embodiment of this utility model, the thrust groove is a triangular groove, and the protrusion is in clearance fit with the thrust groove.

[0012] In a preferred embodiment of this utility model, the support structure further includes an elastic plate and paddles. The elastic plate is fixedly connected to the support body, and the end of the elastic plate abuts against the upper end of the thrust ring and applies downward pressure to the thrust ring. Several paddles are fixedly installed on the circumferential surface of the thrust ring.

[0013] In a preferred embodiment of the present invention, the support structure further includes a guide groove and a guide block. The guide groove is formed on the side wall of the support body. The guide block is fixedly connected to the thrust ring. The guide block and the guide groove are fitted with a clearance and the guide block is slidably disposed in the guide groove.

[0014] This utility model provides a multi-stage vibration drainage device for clear water dried vegetables. It has the following beneficial effects: 1. This multi-stage vibrating draining device for dried mustard greens uses multiple sets of support structures to adjust the slope of the conveyor belt or vibrating screen. It allows for the placement of another conveyor belt on one side of the vibrating screen, in the opposite direction of inclination, to transport the dried mustard greens to a higher position and then onto another vibrating screen for further draining. Flexible layouts are possible depending on requirements. By lifting the thrust ring with a finger, the thrust ring separates from the rotating ring, and the protrusion of the thrust ring disengages from the thrust groove. At this point, the rotating ring can rotate freely, thereby driving the adjusting screw to adjust the height of the support body. After releasing the thrust ring, the thrust ring and rotating ring engage, i.e., the protrusion of the rotating ring engages in the corresponding thrust groove. By locking the rotating ring circumferentially with the thrust ring, the rotation of the rotating ring due to mechanical vibration is suppressed. This results in strong stability of the adjusting screw after position adjustment, preventing height drift. The slope of the conveyor belt and vibrating screen is thus fixed and limited.

[0015] 2. This multi-stage vibration draining device for clear water dried vegetables provides downward pressure to the thrust ring through a curved elastic plate, ensuring the locking effect of the thrust ring on the rotating ring. A paddle is provided to facilitate the lifting of the thrust ring by fingers to separate it from the rotating ring, making operation convenient. The guide block slides in the guide groove to ensure that the thrust ring only slides radially along the support body and does not rotate circumferentially, further improving the limiting effect of the thrust ring on the rotating ring. Attached Figure Description

[0016] Figure 1 This is a perspective view of the entire utility model; Figure 2 This is a perspective view of the supporting structure of this utility model; Figure 3 This is a partial sectional view of the outer casing of this utility model; Figure 4 This is a partial sectional view of the support body of this utility model; Figure 5 This is a partial cross-sectional view of the support body and thrust ring of this utility model.

[0017] Legend: 10. Conveyor belt; 11. Vibrating screen; 20. Outer jacket; 21. Adjusting screw; 22. Rotating ring; 23. Thrust ring; 24. Support body; 25. Bearing seat; 26. Rubber block; 30. Thrust groove; 31. Elastic plate; 32. Paddle; 33. Guide groove; 34. Guide block. Detailed Implementation

[0018] A multi-stage vibration drainage device for clear water dried vegetables, such as Figure 1 As shown, it includes: Several conveyor belts 10 and vibrating screens 11 are alternately arranged, and multiple conveyor belts 10 and vibrating screens 11 together form a draining production line. The conveyor belts 10 and vibrating screens 11 are known prior art. Of course, the conveyor belts 10 and vibrating screens 11 need to be connected to control switches and power supplies. The vegetables are transported by the conveyor belts 10, and the vegetables fall onto the inclined vibrating screens 11, where they are shaken and drained under vibration and slide down the vibrating screens 11 to another conveyor belt 10. This process is repeated to achieve multi-stage draining.

[0019] like Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, a support structure is installed at the bottom of the conveyor belt 10 and the vibrating screen 11 to adjust their slope. The support structure includes an outer sleeve 20, an adjusting screw 21, a rotating ring 22, a thrust ring 23, and a support body 24. The adjusting screw 21 is threadedly connected to the outer sleeve 20, the rotating ring 22 is fixedly connected to the adjusting screw 21, and the adjusting screw 21 is axially connected to the support body 24. The thrust ring 23 is elastically connected to the support body 24 and engages with the rotating ring 22, thus limiting the rotation of the rotating ring 22. A pad assembly is installed on top of the support body 24 for installation and connection. The pad assembly includes a bearing seat 25 and a rubber block 26. An opening is provided on the top of the support body 24. The bearing seat 25 is located in the notch and is rotatably connected to the support body 24 via a rotating shaft. The rubber block 26 is locked to the bearing seat 25 and the conveyor belt 10 by bolts. The bottom of the outer sleeve 20 is provided with an anti-slip block. The inside of the outer sleeve 20 is provided with a threaded hole. The adjusting screw 21 is threaded into the threaded hole of the outer sleeve 20. The rotating ring 22 is annular and integrally formed with the adjusting screw 21. The circumferential surface of the rotating ring 22 is provided with an anti-slip groove. The top surface of the rotating ring 22 is provided with several thrust grooves 30. The bottom of the thrust ring 23 is provided with several integrally formed protrusions. The protrusions can be inserted into the thrust grooves 30 to restrict the rotation of the rotating ring 22. The thrust grooves 30 are triangular grooves. The protrusions and the thrust grooves 30 are clearance fit.

[0020] In this design, at least four sets of support structures and pad structures are required at the bottom of the conveyor belt 10 and the vibrating screen 11. Multiple sets of support structures adjust the slope of the conveyor belt 10 or the vibrating screen 11, facilitating the placement of another conveyor belt 10 on one side of the vibrating screen 11 with the opposite inclination direction to transport the dried vegetables to a higher position, where they fall onto another vibrating screen 11 for further draining. By lifting the thrust ring 23 with a finger, the thrust ring 23 separates from the rotating ring 22, and the protrusion of the thrust ring 23 disengages from the thrust groove 30. When the rotating ring 22 can rotate freely, it will drive the adjusting screw 21 to rotate and adjust the height of the support body 24. After the thrust ring 23 is released, the thrust ring 23 and the rotating ring 22 are engaged, that is, the protrusion of the rotating ring 22 is engaged in the corresponding thrust groove 30. By locking the rotating ring 22 in the circumference by the thrust ring 23, the rotation of the rotating ring 22 due to mechanical vibration is suppressed. As a result, the adjusting screw 21 after the position is adjusted has strong stability and will not drift in height. The slope of the conveyor belt 10 and the vibrating screen 11 is fixed and limited.

[0021] like Figure 5As shown, the support structure also includes an elastic plate 31 and a paddle 32. The elastic plate 31 is fixedly connected to the support body 24. The end of the elastic plate 31 abuts against the upper end of the thrust ring 23 and applies downward pressure to the thrust ring 23. Several paddles 32 are fixedly installed on the circumferential surface of the thrust ring 23. The support structure also includes a guide groove 33 and a guide block 34. The side wall of the support body 24 is provided with a guide groove 33. The guide block 34 is fixedly connected to the thrust ring 23. The guide block 34 is clearance-fitted with the guide groove 33 and the guide block 34 is slidably disposed in the guide groove 33. In this solution, as a supplement to the above solution, the elastic plate 31 is made of spring steel. The bent elastic plate 31 provides downward pressure to the thrust ring 23, ensuring the locking effect of the thrust ring 23 on the rotating ring 22. The paddle 32 is provided so that the thrust ring 23 can be lifted by the finger to separate it from the rotating ring 22, which is convenient for operation. The guide block 34 slides in the guide groove 33 to ensure that the thrust ring 23 will only slide along the radial direction of the support body 24 and will not rotate circumferentially, further improving the limiting effect of the thrust ring 23 on the rotating ring 22.

[0022] The working principle of this utility model is as follows: The conveyor belt 10 and the vibrating screen 11 need to be connected to a control switch and a power supply. The condiments are transported by the conveyor belt 10, and the condiments fall on the inclined vibrating screen 11. They are shaken and drained under the vibration environment and slide down the vibrating screen 11 to another conveyor belt 10. This process is repeated to achieve multi-stage drainage. At least four sets of support structures and pad structures are required at the bottom of the conveyor belt 10 and the vibrating screen 11. Multiple sets of support structures adjust the slope of the conveyor belt 10 or the vibrating screen 11, facilitating the placement of another conveyor belt 10 on one side of the vibrating screen 11 with the opposite inclination direction to transport the dried vegetables to a higher position and then onto another vibrating screen 11 for further draining. By lifting the thrust ring 23 with a finger, the thrust ring 23 separates from the rotating ring 22, and the protrusion of the thrust ring 23 disengages from the thrust groove 30. At this point, the rotating ring 22 can rotate freely, thus carrying... The height of the support body 24 is adjusted by rotating the adjusting screw 21. After the thrust ring 23 is released, the thrust ring 23 engages with the rotating ring 22. That is, the protrusion of the rotating ring 22 is engaged in the corresponding thrust groove 30. By locking the rotating ring 22 in the circumferential direction through the thrust ring 23, the rotation of the rotating ring 22 due to mechanical vibration is suppressed, and the stability of the adjusting screw 21 after adjustment is maintained. The rotatable bearing seat 25 ensures that the rubber block 26 will not be disturbed by the tilt of the conveyor belt 10 or the vibrating screen 11. The adjusting screw is horizontally rotatably connected to the support body 24 through the bearing.

[0023] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A multi-stage vibration dewatering device for clear water dried vegetables, characterized in that, include: Several conveyor belts (10) and vibrating screens (11) are arranged alternately, and multiple conveyor belts (10) and vibrating screens (11) together form a draining production line; A support structure is provided at the bottom of the conveyor belt (10) and the vibrating screen (11) to adjust the slope of the conveyor belt (10) and the vibrating screen (11). The support structure includes an outer sleeve (20), an adjusting screw (21), a rotating ring (22), a thrust ring (23), and a support body (24). The adjusting screw (21) is threaded to the outer sleeve (20). The rotating ring (22) is fixedly connected to the adjusting screw (21). The adjusting screw (21) is axially connected to the support body (24). The thrust ring (23) is elastically connected to the support body (24) and engages with the rotating ring (22). The thrust ring (23) effectively restricts the rotation of the rotating ring (22). A pad assembly is provided on top of the support (24) for installation and connection.

2. The multi-stage vibration dewatering device for clear water dried vegetables according to claim 1, characterized in that: The pad assembly includes a bearing seat (25) and a rubber block (26). The top of the support body (24) has a notch. The bearing seat (25) is located in the notch and is rotatably connected to the support body (24) through a rotating shaft. The rubber block (26) is locked to the bearing seat (25) and the conveyor belt (10) by bolts.

3. The multi-stage vibration dewatering device for clear water dried vegetables according to claim 1, characterized in that: The bottom of the outer jacket (20) is provided with an anti-slip block, and the inside of the outer jacket (20) is provided with a threaded hole. The adjusting screw (21) is threadedly connected to the threaded hole of the outer jacket (20).

4. The multi-stage vibration dewatering device for clear water dried vegetables according to claim 1, characterized in that: The rotating ring (22) is annular and is integrally formed with the adjusting screw (21). The circumferential surface of the rotating ring (22) is provided with anti-slip grooves, and the top surface of the rotating ring (22) is provided with several thrust grooves (30). The bottom of the thrust ring (23) is provided with several integrally formed protrusions, which can be inserted into the thrust grooves (30) to restrict the rotation of the rotating ring (22).

5. The multi-stage vibration dewatering device for clear water dried vegetables according to claim 4, characterized in that: The thrust groove (30) is a triangular groove, and the protrusion is in clearance fit with the thrust groove (30).

6. The multi-stage vibration dewatering device for clear water dried vegetables according to claim 1, characterized in that: The support structure also includes an elastic plate (31) and a paddle (32). The elastic plate (31) is fixedly connected to the support body (24). The end of the elastic plate (31) abuts against the upper end of the thrust ring (23) and applies downward pressure to the thrust ring (23). Several paddles (32) are fixedly installed on the circumferential surface of the thrust ring (23).

7. The multi-stage vibration draining device for clear water dried vegetables according to claim 6, characterized in that: The support structure also includes a guide groove (33) and a guide block (34). The side wall of the support body (24) has a guide groove (33). The guide block (34) is fixedly connected to the thrust ring (23). The guide block (34) and the guide groove (33) are in clearance fit and the guide block (34) is slidably disposed in the guide groove (33).

Citation Information

Patent Citations

  • Vibration draining screen for dehydrated vegetables

    CN221203968U