Shaking-up device for pressure vessel

Through the combination of auxiliary lifting structure and drive module, the problem of manual loading and unloading of existing pressure vessel shaking devices is solved, and the automatic processing of pressure vessels is realized, which improves efficiency and extends the service life of the equipment.

CN223069403UActive Publication Date: 2025-07-08HENAN TIANYUAN CHEMICAL EQUIPMENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422047554.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-07-08
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

The existing pressure vessel shaker device requires users to load and unload time and effortlessly, affecting the use efficiency.

Method used

The auxiliary lifting structure is adopted, including telescopic push rod, fixed ferrule, compact screw and drive module, to realize automatic lifting and clamping and fixing of the pressure vessel, and shake it well with the drive motor.

Benefits of technology

It realizes convenient loading and unloading of pressure vessels, improves the efficiency of shaking, avoids device deviation and shaking, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223069403U_ABST
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Abstract

The utility model provides a pressure vessel shaking device which comprises a U-shaped base frame, vertical rods are arranged at the corners of the bottom of the base frame respectively, a top plate is arranged on the tops of the vertical rods jointly, a plurality of telescopic push rods with output shafts extending to the position below the top plate, a vertical plate, a connecting shaft, a driving module, a fixing ferrule and a plurality of pressing and fixing screw rods are vertically arranged on the top plate. And the pressing plate and the screwing handle are fixed. According to the uniform shaking device for the pressure container disclosed by the utility model, the basic requirement of uniform shaking treatment on the pressure container can be met, and a user can conveniently lift the pressure container from the ground and put the pressure container back to the ground through the auxiliary lifting structure, so that the uniform shaking treatment on the pressure container can be more conveniently and efficiently carried out.
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Description

Technical Field

[0001] The utility model belongs to the technical field of shaking treatment of pressure vessels, and particularly relates to a pressure vessel shaking device. Background Art

[0002] During the use of a pressure vessel, it is necessary to perform a shaking treatment on the pressure vessel. Although the existing pressure vessel shaking devices can meet the basic requirements for shaking treatment of pressure vessels, during use, users often need to lift the pressure vessel to a certain height and then place it on a fixed structure, and also need to move the pressure vessel downward by a certain distance to move it to the ground. That is, users need to spend a lot of time and effort in loading and unloading the pressure vessel, which will bring great inconvenience to people's use and also affect the efficiency of shaking treatment of the pressure vessel.

[0003] For example, the utility model with the publication number CN 215654920 U discloses a pressure vessel shaking device. In the technical solution of this patent, users need to lift the pressure vessel to be shaken to a certain height and place it in a fixed plate, and also need to move the pressure vessel after shaking downward by a certain distance and transfer it from the fixed plate to the ground, which will bring inconvenience to people's use and also affect the efficiency of shaking treatment of the pressure vessel. Summary of the Utility Model

[0004] In view of this, aiming at the deficiencies of the prior art, the utility model provides a pressure vessel shaking device, which can not only meet the basic requirements for shaking treatment of pressure vessels, but also enable users to easily lift the pressure vessel from the ground and place it back on the ground through an auxiliary lifting structure, so as to more conveniently and efficiently perform shaking treatment on the pressure vessel.

[0005] To solve the above technical problems, the technical solution adopted by the utility model is: a pressure vessel shaking device, including a U-shaped base frame. Vertical rods are respectively arranged at the bottom corners of the base frame. The top parts of the vertical rods are jointly provided with a top plate. A plurality of telescopic push rods with output shafts extending below the top plate are vertically arranged on the top plate. The lower ends of the output shafts of the plurality of telescopic push rods on the left side and the plurality of telescopic push rods on the right side are respectively jointly provided with vertical plates. Connecting shafts are respectively horizontally and rotatably arranged at the left and right side ends of the vertical plates. A driving module for driving the corresponding connecting shafts is further arranged on the mounting frame. The inner ends of the two connecting shafts are jointly provided with a fixed collar. A plurality of pressing and fixing screws are respectively horizontally screwed on the fixed collar. Fixed pressing plates are respectively arranged at the inner ends of the plurality of pressing and fixing screws. Wrenches are respectively arranged at the outer ends of the plurality of pressing and fixing screws.

[0006] As a further improvement of the present utility model, bearings are respectively arranged on the inner side walls of the left and right ends of the vertical plate. The two connecting shafts are respectively connected to the inner rings of the corresponding bearings, pass through the side walls of the vertical plate and extend to the outside of the vertical plate. Through holes adapted to the connecting shafts are arranged on the vertical plate.

[0007] As a further improvement of the present utility model, the driving module includes a driving motor horizontally arranged on the outer side wall of the right end of the vertical plate. A driving gear is arranged on the output shaft of the driving motor. A driven gear adapted to the driving gear is arranged on the outer side end of the right connecting shaft.

[0008] As a further improvement of the present utility model, anti-slip pads are respectively arranged on the inner side walls of the plurality of fixed pressing plates.

[0009] As a further improvement of the present utility model, extension plates are respectively arranged at the left and right ends of the base frame. Anchor bolts for connecting to the ground are respectively arranged on the extension plates.

[0010] As a further improvement of the present utility model, guiding sliding plates which are slidably connected to the corresponding vertical rods are respectively arranged at the outer ends of the two vertical plates.

[0011] As a further improvement of the present utility model, connecting cylinders for clamping and fixing the inner ends of the corresponding pressing and fixing screws are respectively arranged on the plurality of fixed pressing plates. Connecting bolts for screwing and fixing the corresponding pressing and fixing screws are respectively arranged on the plurality of connecting cylinders. Threaded connecting holes adapted to the corresponding connecting bolts are respectively arranged on the plurality of pressing and fixing screws.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0013] Firstly, through the anti-slip pads, the pressure vessel can be clamped and fixed more stably; through the extension plates and the anchor bolts, the device can be prevented from shifting and tipping over during operation.

[0014] Secondly, after the user places the pressure vessel to be shaken on the ground and below the fixed ring, the fixed ring can be moved downward and sleeved on the outside of the pressure vessel by multiple telescopic push rods, and then the multiple pressing screws can be turned to drive the fixed pressure plate to move in the direction close to the outer wall of the pressure vessel, so that the multiple fixed pressure plates clamp and fix the pressure vessel, and then the vertical plate, connecting shaft, mounting ring, pressing screw, fixed pressure plate and pressure vessel can be moved upward to a certain height by multiple telescopic push rods, and then the two connecting shafts, mounting sleeve, pressing screw, fixed pressure plate and pressure vessel can be rotated by the driving module to shake the pressure vessel, and after completing the shaking of the pressure vessel, the pressure vessel can be restored to its original state, and then the pressure vessel can be returned to the ground by multiple telescopic push rods, and then the pressing screw can be turned in the opposite direction to release the clamping fixation of the pressure vessel by the fixed pressure plate, and then the fixed ring can be moved upward to the top of the pressure vessel by multiple telescopic push rods, and then the shaken pressure vessel can be removed from the ground.

[0015] Thirdly, the guide slide plate can prevent the vertical plate and the fixed ring from shaking during operation, thereby preventing the multiple telescopic push rods from being damaged, thereby extending the service life of the telescopic push rods.

[0016] Fourthly, the fixing plate and the pressing screw can be flexibly fixed by only clamping the inner end of the pressing screw with the connecting tube, and then passing the connecting bolt through the side wall of the connecting tube and screwing it with the threaded connecting hole. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The utility model is further described in detail below in conjunction with the accompanying drawings and specific implementation methods.

[0018] Figure 1 It is a schematic diagram of the structure of the utility model;

[0019] Figure 2 It is a structural schematic diagram of the connecting shaft, the fixing ring, the pressing screw, the fixing pressure plate, the twist handle, the connecting tube, and the connecting bolt of the utility model;

[0020] Figure 3 It is a structural schematic diagram of the pressing screw, the fixing pressing plate, the twist handle, the connecting tube and the connecting bolt of the utility model;

[0021] Figure 4 The utility model is a structural schematic diagram of a vertical rod, a top plate, a telescopic push rod, a vertical plate, a bearing, a through hole, and a guide slide plate.

[0022] In the figure: 101, base frame; 102, vertical rod; 103, top plate; 104, telescopic push rod; 105, vertical plate; 106, connecting shaft; 107, fixed collar; 108, pressing screw; 109, fixed pressing plate; 110, turning handle; 111, bearing; 112, through hole; 201, driving motor; 202, driving gear; 203, driven gear; 301, anti-slip pad; 302, extension plate; 303, anchor bolt; 304, guiding slide plate; 305, connecting cylinder; 306, connecting bolt. Detailed implementation mode

[0023] To better understand the present utility model, the content of the present utility model will be further clearly elaborated below in conjunction with embodiments. However, the protected content of the present utility model is not limited to the following embodiments. In the following description, a large number of specific details are given to provide a more thorough understanding of the present utility model. However, it is obvious to those skilled in the art that the present utility model can be implemented without one or more of these details.

[0024] As Figure 1 , 2 shown, a pressure vessel shaking device includes a U-shaped base frame 101. Vertical rods 102 are respectively arranged at the bottom corners of the base frame 101. A top plate 103 is jointly arranged at the tops of the vertical rods 102. A plurality of telescopic push rods 104 with output shafts extending below the top plate 103 are vertically arranged on the top plate 103. The lower ends of the output shafts of the plurality of telescopic push rods 104 on the left and the plurality of telescopic push rods 104 on the right are respectively jointly provided with vertical plates 105. Connecting shafts 106 are respectively horizontally rotatably arranged at the left and right side ends of the vertical plates 105. A driving module for driving the corresponding connecting shafts 106 is further arranged on the mounting frame. Fixed collars 107 are jointly arranged at the inner ends of the two connecting shafts 106. A plurality of pressing screws 108 are respectively horizontally screwed on the fixed collars 107. Fixed pressing plates 109 are respectively arranged at the inner ends of the plurality of pressing screws 108. Turning handles 110 are respectively arranged at the outer ends of the plurality of pressing screws 108.

[0025] As Figure 1 , 4 shown, bearings 111 are respectively arranged on the inner side walls at the left and right side ends of the vertical plates 105. The two connecting shafts 106 are respectively connected to the inner rings of the corresponding bearings 111, pass through the side walls of the vertical plates 105 and extend to the outside of the vertical plates 105. Through holes 112 adapted to the connecting shafts 106 are arranged on the vertical plates 105.

[0026] As Figure 1As shown in the figure, the driving module includes a driving motor 201 horizontally arranged on the outer side wall of the right end of the vertical plate 105. A driving gear 202 is arranged on the output shaft of the driving motor 201, and a driven gear 203 adapted to the driving gear 202 is arranged on the outer end of the connecting shaft 106 on the right side.

[0027] After the user places the pressure vessel to be shaken on the ground and at a position below the fixed collar 107, the output shafts of the plurality of telescopic push rods 104 can be extended downward by a certain length, so that the fixed collar 107 moves downward and sleeved on the outer side of the pressure vessel. Then, the plurality of pressing and fixing screws 108 can be driven by the turning handle 110 to drive the fixed pressing plate 109 to move towards the outer side wall of the pressure vessel, so that the plurality of fixed pressing plates 109 clamp and fix the pressure vessel. Then, the output shafts of the plurality of telescopic push rods 104 can be shortened downward by a certain length, so that the vertical plate 105, the connecting shaft 106, the mounting collar, the pressing and fixing screw 108, the fixed pressing plate 109 and the pressure vessel move upward by a certain height, so that the pressure vessel is lifted to a position a certain height above the ground. Then, the driving motor 201 can be started, and through the cooperation of the driving gear 202 and the driven gear, the two connecting shafts 106, the mounting sleeve, the pressing and fixing screw 108, the fixed pressing plate 109 and the pressure vessel are rotated, so as to shake the pressure vessel.

[0028] After the shaking treatment of the pressure vessel is completed, the pressure vessel can be restored to its original state. Then, the pressure vessel can be returned to the ground through the plurality of telescopic push rods 104. Then, the pressing and fixing screw 108 can be rotated in the reverse direction to release the clamping and fixing of the pressure vessel by the fixed pressing plate 109. Then, the fixed collar 107 can be moved upward above the pressure vessel through the plurality of telescopic push rods 104. Then, the shaken pressure vessel can be removed from the ground.

[0029] According to another embodiment of the present invention, as Figure 3 shown, anti-slip pads 301 are respectively arranged on the inner side walls of the plurality of fixed pressing plates 109. Through the anti-slip pads 301, the pressure vessel can be clamped and fixed more stably.

[0030] According to another embodiment of the present invention, as Figure 1 shown, extension plates 302 are respectively arranged at the left and right ends of the base frame 101, and anchor bolts 303 for connecting to the ground are respectively arranged on the extension plates 302. The anchor bolts 303 can pass through the extension plates 302 and be connected to the ground, so as to prevent the device from shifting and tipping over during operation.

[0031] According to another embodiment of the present invention, as Figure 4As shown, guide sliding plates 304 that are slidably connected to the corresponding vertical rods 102 are respectively provided at the outer ends of the two vertical plates 105. Through the guide sliding plates 304, it is possible to prevent the telescopic push rods 104 from being damaged due to the shaking and other effects generated during the operation of the vertical plates 105 and the fixed collar 107, thereby extending the service life of the telescopic push rods 104.

[0032] According to another embodiment of the present invention, as Figure 2 , 3 shown, connecting cylinders 305 for clamping and fixing the inner ends of the corresponding pressing and fixing screws 108 are respectively provided on the plurality of fixed pressing plates 109. Connecting bolts 306 for screwing and fixing the corresponding pressing and fixing screws 108 are respectively provided on the plurality of connecting cylinders 305. Threaded connection holes adapted to the corresponding connecting bolts 306 are respectively provided on the plurality of pressing and fixing screws 108. Just make the inner end of the pressing and fixing screw 108 be clamped and fixed with the connecting cylinder 305, and then make the connecting bolt 306 pass through the side wall of the connecting cylinder 305 and be screwed and fixed with the threaded connection hole, and the flexible fixation of the fixed pressing plate 109 and the pressing and fixing screw 108 can be achieved.

[0033] The above are the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can still be made, and these improvements and refinements should also be regarded as the protection scope of the present invention.

Claims

1. A pressure vessel shaking device, comprising a U-shaped base frame (101), characterized in that: Vertical rods (102) are respectively arranged at the bottom corners of the base frame (101). A top plate (103) is jointly arranged at the tops of the vertical rods (102). A plurality of telescopic push rods (104) with output shafts extending vertically downward to the lower side of the top plate (103) are arranged vertically on the top plate (103). The lower ends of the output shafts of the plurality of telescopic push rods (104) on the left side and the plurality of telescopic push rods (104) on the right side are respectively jointly provided with vertical plates (105). Connecting shafts (106) are respectively arranged horizontally and rotatably at the left and right side ends of the vertical plates (105). A driving module for driving the corresponding connecting shafts (106) is further arranged on the mounting frame. The inner ends of the two connecting shafts (106) are jointly provided with a fixed collar (107). A plurality of pressing and fixing screws (108) are respectively arranged horizontally and screwed on the fixed collar (107). Fixed pressing plates (109) are respectively arranged at the inner ends of the plurality of pressing and fixing screws (108). Knobs (110) are respectively arranged at the outer ends of the plurality of pressing and fixing screws (108).

2. The pressure vessel shaking device according to claim 1, wherein: Bearings (111) are respectively arranged on the inner side walls at the left and right side ends of the vertical plate (105). The two connecting shafts (106) are respectively connected to the inner rings of the corresponding bearings (111), pass through the side walls of the vertical plate (105) and extend to the outer side of the vertical plate (105). A through hole (112) adapted to the connecting shaft (106) is arranged on the vertical plate (105).

3. The pressure vessel shaking device according to claim 2, characterized in that: The driving module includes a driving motor (201) horizontally arranged on the outer side wall of the right end of the vertical plate (105). A driving gear (202) is arranged on the output shaft of the driving motor (201). A driven gear (203) adapted to the driving gear (202) is arranged at the outer end of the connecting shaft (106) on the right side.

4. The pressure vessel shaking device according to claim 3, characterized in that: Anti-slip pads (301) are respectively further arranged on the inner side walls of the plurality of fixed pressing plates (109).

5. The pressure vessel shaking device according to claim 4, wherein: Extension plates (302) are respectively arranged at the left and right side ends of the base frame (101). Anchor bolts (303) for connecting to the ground are respectively arranged on the extension plates (302).

6. The pressure vessel shaking device according to claim 5, wherein: Guide sliding plates (304) slidably connected to the corresponding vertical rods (102) are respectively further arranged at the outer ends of the two vertical plates (105).

7. The pressure vessel shaking device according to claim 6, wherein: Connecting cylinders (305) for clamping and fixing the inner ends of the corresponding pressing and fixing screws (108) are respectively arranged on the plurality of fixed pressing plates (109). Connecting bolts (306) for screwing and fixing the corresponding pressing and fixing screws (108) are respectively arranged on the plurality of connecting cylinders (305). Threaded connecting holes adapted to the corresponding connecting bolts (306) are respectively arranged on the plurality of pressing and fixing screws (108).