Drying agent regeneration device

By combining a rotating mechanism and a multi-stage push rod motor, the desiccant is automatically loaded and unloaded in the regeneration box, solving the problem of frequent start-stop devices in existing technologies, improving work efficiency and saving energy.

CN223945693UActive Publication Date: 2026-02-27INNER MONGOLIA BAOFENG COAL-BASED NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202520582579.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-02-27
Estimated Expiration
2035-03-31

AI Technical Summary

Technical Problem

Existing desiccant drying and regeneration equipment requires repeated start-stop cycles for loading and unloading, resulting in low efficiency and environmental pollution.

Method used

The system employs a rotating mechanism and a multi-stage push rod motor, with the rotating shaft driven by a servo motor to rotate periodically, enabling the desiccant to rotate periodically and automatically load and unload within the regeneration chamber, thus eliminating the need to open the chamber door.

Benefits of technology

The automated loading and unloading of desiccant has been achieved, which improves work efficiency and saves energy, and solves the problems of low efficiency and environmental protection caused by frequent start-stop in existing technologies.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a desiccant regeneration device, relates to the technical field of desiccant regeneration, and aims to solve the problems that in the prior art, when a desiccant is dried and regenerated, a device needs to be continuously and repeatedly started and stopped for feeding and discharging, so that the working efficiency is not improved, and energy conservation and environmental protection are also not facilitated, the following scheme is provided: the desiccant regeneration device comprises a regeneration box, a box door is hinged to one side of the front face of the regeneration box, and a feeding mechanism is fixed to the box door and comprises a fixing box. In the process that the rotating mechanism periodically rotates in the regeneration box to stop the gap, a drying agent is placed in the connecting frame in the fixed box, and the connecting frame pushes the drying agent to fall on the top of the stopped placing block through the multi-stage push rod motor, so that the aim of feeding from the outside of the regeneration box without opening the box door is fulfilled; and when the placing block rotates and moves to the fixed rod, due to blocking of the fixed rod, the placing block is turned over, and therefore the drying agent on the top of the placing block falls down.
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Description

TECHNICAL FIELD

[0001] The utility model relates to drying agent regeneration technical field especially relates to a drying agent regeneration device. BACKGROUND

[0002] Desiccant (Desiccant, alias: absorbent) refers to the substance that can remove water in wet material, commonly divided into two categories: the first is chemical desiccant, such as calcium sulfate and calcium chloride, etc., through the combination with water to generate hydrate and dry; the second is physical desiccant, such as silica gel and active alumina, etc., through physical adsorption water and dry. Part of the desiccant can be regenerated by drying after use.

[0003] Through the retrieval, patent (application number: 202320164658.0) discloses "a silica gel desiccant drying regeneration device", the device is generated by starting the hot blast machine hot air flow is respectively into the connecting pipe, make the connecting pipe hot air flow through multiple ventilation pipes hot air flow into to the inside of drying oven, the net board in the ventilation pipe can prevent silica gel desiccant from entering the inside of ventilation pipe, then start the motor, so that the stirring rod rotates and turns silica gel desiccant, so that silica gel desiccant can be quickly dried;

[0004] But the defect of the above-mentioned device is that when drying agent is dried and regenerated, it is necessary to repeatedly start and stop the device for feeding and discharging, which is not conducive to improving work efficiency and saving energy and environment. UTILITY MODEL CONTENT

[0005] In view of the deficiency of prior art, the utility model provides a drying agent regeneration device, overcome the deficiency of prior art, effectively solved the problem that when drying agent is dried and regenerated in prior art, it is necessary to repeatedly start and stop the device for feeding and discharging, which is not conducive to improving work efficiency and saving energy and environment.

[0006] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0007] The utility model provides a drying agent regenerating device, including the regenerating box, the front side of regenerating box is hinged with the box door, and the box door is fixed with feeding mechanism, the feeding mechanism includes fixed box, the multistage push rod motor of one end fixed in fixed box, the connecting frame of one end fixed in multistage push rod motor, the inner wall of both sides of regenerating box is all fixed with the roasting board, and is provided with rotating mechanism between two roasting boards, the rotating mechanism includes the rotary table, the pivot of welding fixed in the back of rotary table, the fixed plate of welding fixed in the front of rotary table along annular equidistance, the connecting rod of welding fixed in the one side outer wall of fixed plate, the placing block of rotation connection on the rod wall of connecting rod, the inclined plate of welding fixed in the both sides of the top of placing block, the outer wall of one side of regenerating box is welded with the fixed rod, and is provided with the discharge box under fixed rod.

[0008] The pivot is driven by the servo motor to rotate periodically, so that the rotating mechanism rotates periodically in the regenerating box, when the rotating mechanism rotates periodically stops, the drying agent is placed in the connecting frame in the fixed box, the connecting frame pushes the drying agent to drop down from the dropping port by the elongation of the multistage push rod motor, the dropped drying agent falls on the top of the stopped placing block, so that the feeding from the outside of the regenerating box without opening the box door is realized, when the placing block rotates to the fixed rod, the placing block is turned over due to the block of the fixed rod, so that the drying agent on the top of the placing block drops down, the dropped drying agent falls in the discharge box and slides down along the slope in the discharge box and is discharged from the discharge port of the box door.

[0009] Preferably, the front of the box door is respectively provided with a feeding port and a discharge port, and the fixed box is welded to the feeding port.

[0010] The feeding port and the discharge port provided on the box door facilitate the addition and removal of the drying agent.

[0011] Preferably, the bottom of the fixed box is provided with a dropping port away from the multistage push rod motor, and the size of the dropping port is larger than that of the connecting frame.

[0012] The drying agent is placed in the connecting frame in the fixed box, the connecting frame pushes the drying agent to drop down from the dropping port by the elongation of the multistage push rod motor, so that the feeding from the outside of the regenerating box without opening the box door is realized.

[0013] Preferably, the pivot is rotationally connected to the back of the regenerating box, and the pivot is connected to the servo motor fixed to the back of the regenerating box through the shaft coupling away from the rotary table.

[0014] The pivot is driven by the servo motor to rotate periodically, so that the rotating mechanism drives the drying agent to rotate periodically in the regenerating box.

[0015] Preferably, the center of gravity of the placement block is close to the bottom, and the size of the material discharge port is smaller than the size of the top of the placement block.

[0016] The placement block, with its center of gravity positioned low, ensures that its top remains facing upwards on the connecting rod, preventing the desiccant on top of the placement block from falling off during rotation and movement.

[0017] Preferably, the height of the fixing rod is lower than the height of the rotating shaft, and the placement block and the connecting rod are connected by a flipping fit through the fixing rod.

[0018] When the placement block rotates and moves to the fixed rod, the fixed rod obstructs the movement, causing the placement block to flip over, thus causing the desiccant on top of the placement block to fall downwards.

[0019] Preferably, the size of the discharge box is larger than the size of the top of the placement block, and support rods are welded and fixed at both ends of the bottom of the discharge box, with the bottom of the support rods welded and fixed to the bottom of the recycling box.

[0020] The desiccant falling downwards lands in the discharge box and slides down the ramp inside the discharge box.

[0021] Preferably, a controller is fixedly installed on one side of the outer wall of the regeneration box, and the multi-stage push rod motor and the servo motor are both electrically connected to the controller.

[0022] The controller controls the multi-stage push rod motor and servo motor, so that during the intermittent periodic drive of the servo motor, the multi-stage push rod motor extends and retracts to cooperate in feeding.

[0023] The beneficial effects of this utility model are as follows:

[0024] During the periodic rotation and stopping intervals within the regeneration chamber via a rotating mechanism, the desiccant is placed in the connecting frame within the fixed box. A multi-stage pusher motor causes the connecting frame to push the desiccant onto the top of the stopped placement block, achieving the purpose of loading material from outside the regeneration chamber without opening the door. When the placement block rotates and moves to the fixed rod, the fixed rod obstructs the movement, causing the placement block to flip, thus causing the desiccant on top of the placement block to fall downwards. The falling desiccant lands in the discharge box and slides down the ramp inside the discharge box. This effectively solves the problem of the need for repeated start-stop devices to load and unload material during desiccant drying and regeneration in existing technologies, which is not conducive to improving work efficiency or saving energy and protecting the environment. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the overall structure of a desiccant regeneration device proposed in this utility model;

[0026] Figure 2 This is a schematic diagram of the feeding mechanism of a desiccant regeneration device proposed in this utility model;

[0027] Figure 3 The whole structure box door removal schematic view of a drying agent regenerating device is provided in the utility model.

[0028] Figure 4 The rotating mechanism structure schematic view of a drying agent regenerating device is provided in the utility model.

[0029] In the drawing: 1, regenerating box; 2, box door; 3, feeding mechanism; 4, fixed box; 5, multistage push rod motor; 6, connecting frame; 7, baking plate; 8, rotating mechanism; 9, rotating disc; 10, rotating shaft; 11, servo motor; 12, fixed plate; 13, connecting rod; 14, placing block; 15, inclined plate; 16, fixed rod; 17, discharging box; 18, supporting rod. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments.

[0031] Embodiment:

[0032] With reference to Figures 1-4 A drying agent regenerating device, including regenerating box 1, the front side of regenerating box 1 is hinged with box door 2, box door 2 is fixed with feeding mechanism 3, feeding mechanism 3 includes fixed box 4, multistage push rod motor 5 installed and fixed in one end of fixed box 4, connecting frame 6 installed and fixed in one end of multistage push rod motor 5, the inner wall of both sides of regenerating box 1 is installed and fixed with baking plate 7, rotating mechanism 8 is arranged between two baking plates 7, rotating mechanism 8 includes rotating disc 9, rotating shaft 10 welded and fixed in the back of rotating disc 9, fixed plate 12 welded and fixed on the front of rotating disc 9 along annular equidistance, connecting rod 13 welded and fixed on one side outer wall of fixed plate 12, placing block 14 rotationally connected on the wall of connecting rod 13, inclined plate 15 welded and fixed on both sides of the top of placing block 14, fixed rod 16 is welded and fixed on one side outer wall of regenerating box 1, discharging box 17 is arranged below fixed rod 16;

[0033] The front of box door 2 is respectively provided with feeding port and discharging port, fixed box 4 is welded and fixed at feeding port, by setting feeding port and discharging port on box door 2, it is convenient to add and take out drying agent, the bottom of fixed box 4 is provided with blanking port away from one end of multistage push rod motor 5, the specification of blanking port is greater than the specification of connecting frame 6, drying agent is placed in connecting frame 6 in fixed box 4, by the elongation of multistage push rod motor 5, connecting frame 6 is pushed, drying agent falls down from blanking port, the purpose of feeding from the outside of regenerating box 1 without opening box door 2 is realized;

[0034] The rotating shaft 10 is rotationally connected with the back of the regeneration box 1, and the end of the rotating shaft 10, which is away from the rotating disc 9, is connected with a servo motor 11 which is fixed on the back of the regeneration box 1 through a shaft coupling, and the rotating shaft 10 is driven to rotate periodically by the servo motor 11, so that the rotating mechanism 8 is driven to rotate periodically in the regeneration box 1, the center of gravity of the placing block 14 is close to the bottom, and the size of the feeding opening is smaller than the size of the top of the placing block 14, so that the placing block 14 can always keep the top upward on the connecting rod 13, and the desiccant on the top of the placing block 14 is prevented from falling off in the process of rotating movement;

[0035] The height of the fixed rod 16 is lower than the height of the rotating shaft 10, and the placing block 14 and the connecting rod 13 are reversely matched through the fixed rod 16, when the placing block 14 rotates to the fixed rod 16, the placing block 14 is reversed due to the block of the fixed rod 16, so that the desiccant on the top of the placing block 14 falls down, the size of the discharging box 17 is larger than the size of the top of the placing block 14, and the bottom of the discharging box 17 is welded with support rods 18 at both ends, and the bottom of the support rods 18 is welded with the bottom in the regeneration box 1, the desiccant falling down falls into the discharging box 17 and slides down along the slope in the discharging box 17, and the controller is fixed on the side wall of the regeneration box 1, and the multi-stage push rod motor 5 and the servo motor 11 are electrically connected with the controller, so that the multi-stage push rod motor 5 is controlled to extend and retract to cooperate with feeding in the gap process of the periodic driving of the servo motor 11.

[0036] Working principle:

[0037] When working, the rotating shaft 10 is driven to rotate periodically by the servo motor 11, so that the rotating mechanism 8 rotates periodically in the regeneration box 1, when the rotating mechanism 8 stops in the gap process of periodic rotation, the desiccant is placed in the connecting frame 6 in the fixed box 4, the connecting frame 6 is pushed to make the desiccant fall down from the feeding opening by the extension of the multi-stage push rod motor 5, the falling desiccant falls on the top of the stopped placing block 14, so that the purpose of feeding from the outside of the regeneration box 1 without opening the door 2 is achieved, when the placing block 14 rotates to the fixed rod 16, the placing block 14 is reversed due to the block of the fixed rod 16, so that the desiccant on the top of the placing block 14 falls down, the falling desiccant falls into the discharging box 17 and slides down along the slope in the discharging box 17, and is discharged from the discharging opening of the door 2.

[0038] The above is only the preferred specific implementation manner of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A desiccant regenerator comprising a regenerator tank (1), characterized in that, The front side of the regeneration box (1) is hinged with a box door (2), and the box door (2) is fixed with a feeding mechanism (3), the feeding mechanism (3) comprises a fixed box (4), a multi-stage push rod motor (5) fixedly installed at one end in the fixed box (4), a connecting frame (6) fixedly installed at one end of the multi-stage push rod motor (5), both side inner walls of the regeneration box (1) are fixedly installed with baking plates (7), and a rotating mechanism (8) is arranged between the two baking plates (7), the rotating mechanism (8) comprises a rotating disc (9), a rotating shaft (10) welded and fixed on the back of the rotating disc (9), a fixed plate (12) welded and fixed on the front of the rotating disc (9) at equal distance along the annular, a connecting rod (13) welded and fixed on one side outer wall of the fixed plate (12), a placing block (14) rotatably connected on the rod wall of the connecting rod (13), and an inclined plate (15) welded and fixed on both sides of the top of the placing block (14), one side outer wall of the regeneration box (1) is welded with a fixed rod (16), and a discharge box (17) is arranged below the fixed rod (16).

2. A desiccant regenerator according to claim 1, wherein The front side of the box door (2) is respectively provided with a feeding port and a discharge port, and the fixed box (4) is welded and fixed at the feeding port.

3. A desiccant regenerator according to claim 1, wherein The bottom of the fixed box (4) is provided with a blanking port away from one end of the multi-stage push rod motor (5), and the size of the blanking port is larger than that of the connecting frame (6).

4. A desiccant regenerator according to claim 1, wherein The rotating shaft (10) is rotatably connected with the back of the regeneration box (1), and one end of the rotating shaft (10) away from the rotating disc (9) is connected with a servo motor (11) fixedly installed on the back of the regeneration box (1) through a shaft coupling.

5. A desiccant regenerator according to claim 3, wherein The center of gravity of the placing block (14) is close to the bottom, and the size of the blanking port is smaller than that of the top of the placing block (14).

6. A desiccant regenerator according to claim 1, wherein The height of the fixed rod (16) is lower than that of the rotating shaft (10), and the placing block (14) and the connecting rod (13) are reversely matched through the fixed rod (16).

7. A desiccant regenerator according to claim 1 wherein, The size of the discharge box (17) is larger than that of the top of the placing block (14), and support rods (18) are welded and fixed at both ends of the bottom of the discharge box (17), and the bottoms of the support rods (18) are welded and fixed with the bottom in the regeneration box (1).

8. A desiccant regenerator according to claim 4, wherein One side outer wall of the regeneration box (1) is fixedly installed with a controller, and the multi-stage push rod motor (5) and the servo motor (11) are electrically connected with the controller.

Citation Information

Patent Citations

  • A silica gel desiccant drying and regeneration device

    CN218834536U