Dryer with turnover structure

The dual-zone annealing furnace with gas purging mechanism addresses impurity removal challenges in copper foil production, enhancing efficiency and quality by controlling sulfur and oxygen levels in the annealing process.

CN223106635UActive Publication Date: 2025-07-15ANHUI XINGXIANG NEW MATERIAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421934862.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-07-15
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

The existing drying device for lead-acid battery processing has reduced the filtration effect after a long time of use in ceramic particle boards and activated carbon boards, and needs to be shut down and replaced, which affects the drying efficiency.

Method used

A dryer with a flip structure is designed, using alternating filtering components and replacement components. Through the cooperation of the tie rod and the rubber plug, the alternating filtering and replacement of activated carbon plates is achieved to avoid shutdown operations.

Benefits of technology

The seamless replacement of activated carbon plates is achieved, the continuity of the drying process is maintained, and the drying efficiency is improved.

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Abstract

The utility model relates to the technical field of lead-acid storage battery processing, and discloses a dryer with an overturning structure, the dryer comprises a drying box, the surface of the drying box is provided with a filtering assembly and a replacing assembly, the filtering assembly comprises a stabilizing box, a Y-shaped pipe, a connecting door, a partition plate, a bottom plate, an activated carbon plate and an air outlet pipe, and the replacing assembly comprises a fixing plate. According to the drying machine with the turnover structure, the replacement assembly is arranged, the pull rods are pulled, the two sets of pull rods move at the same time, one set of clamping blocks are limited by the fixing blocks, a rubber plug is separated from an air outlet of a Y-shaped pipe, and the drying efficiency is improved. According to the other set, limiting of the clamping block is relieved through the sliding block and the fixed block, a second spring drives a rubber plug to block the other air outlet of the Y-shaped pipe to block, the two sets of activated carbon plates can alternately conduct filtering work, replacement is convenient, drying work does not need to be stopped, and the drying efficiency of the activated carbon plates is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of lead-acid battery processing, in particular to a dryer with a flipping structure. Background Technique

[0002] A lead-acid battery is a storage battery whose electrodes are mainly made of lead and its oxides, and the electrolyte is a sulfuric acid solution. Its main advantages are stable voltage, easy availability of raw materials, and low price. It is mainly used in tractors, tricycles, automobile starting, electric bicycles, etc., with wide applications and great significance.

[0003] According to a disclosed drying device for lead-acid battery processing (publication number: CN213454651U), in the above application, ceramic particle plates and activated carbon plates adsorb solid particles and odors in the waste gas, and then a photocatalytic box decomposes harmful gases in the waste gas. This design treats harmful gases and protects the environment.

[0004] However, in the above application, when the ceramic particle plates and activated carbon plates are used for a long time, their filtering effect will decline, and personnel need to replace and clean them. However, when replacement is required, the drying work needs to be stopped for replacement, which will affect the drying efficiency. Content of the Utility Model

[0005] The purpose of the utility model is to provide a dryer with a flipping structure to solve the problems raised in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A dryer with a flipping structure, including a drying box, a filtering component and a replacement component are arranged on the surface of the drying box. The filtering component includes: a stable box, a Y-shaped pipe, a connecting door, a partition board, a bottom plate, an activated carbon plate, and an air outlet pipe. The replacement component includes:

[0007] Fixing plate, the fixing plate is fixed on the inner wall of the stable box. A fixing block is fixed on the surface of the fixing plate. A slider is slidably connected to the surface of the fixing plate. One end of a first spring is fixed to the side of the slider away from the fixing block. The other end of the first spring away from the slider is fixed to a connecting plate, and the connecting plate is fixed on the surface of the fixing plate. A stabilizing plate is slidably connected to the bottom of the inner wall of the stable box. A pull rod is arranged on the surface of the stabilizing plate. The pull rod penetrates through the stabilizing plate and is fixedly connected to the stabilizing plate. One end of the pull rod away from the stabilizing plate penetrates through the stable box and is slidably connected to the stable box. A second spring is fixed on the surface of the stabilizing plate. The other end of the second spring away from the stabilizing plate is fixed on the inner wall of the stable box. A rubber plug is fixed to the end of the pull rod away from the second spring. A chute is formed on the side of the pull rod close to the fixing plate. A clamping block is slidably connected to the inner wall of the chute. A third spring is fixed on the surface of the clamping block. The other end of the third spring away from the clamping block is fixed on the inner wall of the chute. When the pull rod is pulled, the two pull rods move simultaneously. One set of clamping blocks is limited by the fixing block, so that the rubber plug is separated from the air outlet of the Y-shaped pipe. The other set releases the limit on the clamping block by the slider and the fixing block, and the second spring drives the rubber plug to block the other air outlet of the Y-shaped pipe. This enables the two activated carbon plates to alternately perform the filtering work, facilitating replacement.

[0008] Preferably, a Y-shaped pipe is fixed on the surface of the drying box. The Y-shaped pipe communicates with the drying box. One end of the Y-shaped pipe away from the drying box is connected to a stable box, and the Y-shaped pipe communicates with the stable box. A partition is fixed on the inner wall of the stable box. Bottom plates are fixed to both the surface and the inner wall of the partition and the stable box. Activated carbon plates are placed on the surface of the bottom plates. An air outlet pipe is connected to the top of the stable box. A connecting door is connected to the surface of the stable box. During the drying operation, the waste gas can enter the stable box through the Y-shaped pipe, be filtered by the activated carbon plates, and then discharged through the air outlet pipe.

[0009] Preferably, the side of the fixing block close to the slider is beveled. The side of the clamping block away from the rubber plug is beveled. When the bevel of the fixing block contacts the surface of the clamping block, the clamping block enters the chute. The bevel of the clamping block cooperates with the fixing block to facilitate the clamping block to enter the chute.

[0010] Preferably, the cross-section of the slider is a right trapezoid. When the fixing block and the slider are in contact, it is convenient to release the limit on the clamping block.

[0011] Preferably, two sets of activated carbon plates are provided, and both sets of activated carbon plates are symmetrically arranged with respect to the center line of the stable box, enabling alternate filtering work.

[0012] Preferably, two sets of replacement components are provided, and both sets of replacement components are symmetrically arranged with respect to the center line of the stable box, facilitating the replacement of the activated carbon plates by personnel without stopping the drying operation.

[0013] Preferably, a hot air blower is fixed on the surface of the drying box. The output end of the hot air blower penetrates through the drying box. A motor is fixed on the surface of the drying box. The output shaft of the motor penetrates through the drying box. A rotating cylinder is rotatably connected to the inner wall of the drying box. The output shaft of the motor penetrates through the drying box and is fixedly connected to the surface of the rotating cylinder. A second sealing door is connected to the surface of the rotating cylinder. A first sealing door is connected to the surface of the drying box. Vent holes are formed on the surface of the rotating cylinder. The hot air blower and the motor enable the rotating cylinder to drive the raw materials to flip and perform the drying work.

[0014] Compared with the prior art, the utility model provides a dryer with a flipping structure, which has the following beneficial effects:

[0015] 1. For the dryer with a flipping structure, through the arranged replacement component, when pulling the pull rod, the two pull rods move simultaneously. One set of clamping blocks is limited by the fixed block, so that the rubber plug is separated from the air outlet of the Y-shaped pipe. The other set releases the limit on the clamping block by the slider and the fixed block, and the second spring drives the rubber plug to block the other air outlet of the Y-shaped pipe, enabling the two activated carbon plates to alternately perform the filtering work, which is convenient for replacement without stopping the drying work and improves the drying efficiency.

[0016] 2. For the dryer with a flipping structure, through the arranged filtering component, the waste gas enters the stabilizing box through the Y-shaped pipe. The hot gas rises and is filtered by the activated carbon plate and then discharged through the air outlet pipe. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a front view structural schematic diagram of the utility model;

[0018] Figure 2 It is a rear view structural schematic diagram of the utility model;

[0019] Figure 3 It is a front view internal structural schematic diagram of the utility model;

[0020] Figure 4 It is a partial internal structural schematic diagram of the utility model;

[0021] Figure 5 It is a partial cross-sectional structural schematic diagram of the utility model.

[0022] In the figure: 1, drying box; 2, hot air blower; 3, sealing door one; 4, motor; 5, rotating drum; 6, sealing door two; 7, filtering component; 70, stabilizing box; 71, Y-shaped pipe; 72, connecting door; 73, partition board; 74, bottom plate; 75, activated carbon plate; 76, air outlet pipe; 8, replacement component; 80, fixing plate; 81, fixing block; 82, slider; 83, first spring; 84, connecting plate; 85, stabilizing plate; 86, pull rod; 87, rubber plug; 88, second spring; 89, sliding groove; 800, clamping block; 801, third spring. Detailed implementation manner

[0023] As Figures 1 - 5 shown, the present utility model provides a technical solution: a dryer with a flipping structure, including a drying box 1, a filtering component 7 and a replacement component 8 are arranged on the surface of the drying box 1. The filtering component 7 includes: a stabilizing box 70, a Y-shaped pipe 71, a connecting door 72, a partition board 73, a bottom plate 74, an activated carbon plate 75, and an air outlet pipe 76. The replacement component 8 includes: a fixing plate 80, a fixing block 81, a slider 82, a first spring 83, a connecting plate 84, a stabilizing plate 85, a pull rod 86, a rubber plug 87, a second spring 88, a sliding groove 89, a clamping block 800, and a third spring 801.

[0024] The fixed plate 80 is fixed on the inner wall of the stabilizing box 70. A fixed block 81 is fixed on the surface of the fixed plate 80. A slider 82 is slidably connected to the surface of the fixed plate 80. A first spring 83 is fixed on the side of the slider 82 away from the fixed block 81. One end of the first spring 83 away from the slider 82 is fixed to a connecting plate 84, and the connecting plate 84 is fixed on the surface of the fixed plate 80. A stabilizing plate 85 is slidably connected to the bottom of the inner wall of the stabilizing box 70. A pull rod 86 is arranged on the surface of the stabilizing plate 85. The pull rod 86 penetrates through the stabilizing plate 85 and is fixedly connected to the stabilizing plate 85. One end of the pull rod 86 away from the stabilizing plate 85 penetrates through the stabilizing box 70 and is slidably connected to the stabilizing box 70. A second spring 88 is fixed on the surface of the stabilizing plate 85. One end of the second spring 88 away from the stabilizing plate 85 is fixed on the inner wall of the stabilizing box 70. A rubber plug 87 is fixed at one end of the pull rod 86 away from the second spring 88. A chute 89 is formed on the side of the pull rod 86 close to the fixed plate 80. A clamping block 800 is slidably connected to the inner wall of the chute 89. A third spring 801 is fixed on the surface of the clamping block 800. One end of the third spring 801 away from the clamping block 800 is fixed on the inner wall of the chute 89. When the pull rod 86 is pulled, the two pull rods 86 move simultaneously, the second spring 88 is compressed, driving the clamping block 800 to move synchronously. The side of the clamping block 800 away from the inclined surface abuts against the side of the fixed block 81 close to the slider 82, and the fixed block 81 limits the clamping block 800, stabilizing the pull rod 86 and the rubber plug 87. One rubber plug 87 disengages from the air outlet hole of the Y-shaped pipe 71. When the other pull rod 86 drives the clamping block 800 to move, when the clamping block 800 is located on the side where the slider 82 is away from the fixed block 81 and abuts, the second spring 88 is released, the pull rod 86 drives the clamping block 800 to drive the slider 82 to move closer to the inside of the stabilizing box 70. When the surface of the slider 82 abuts against the surface of the fixed block 81, the clamping block 800 will move along the surfaces of the slider 82 and the fixed block 81, releasing the limit on the clamping block 800, and the pull rod 86 drives the other rubber plug 87 to block the other air outlet hole of the Y-shaped pipe 71.

[0025] A Y-shaped pipe 71 is fixed on the surface of the drying box 1. The Y-shaped pipe 71 communicates with the drying box 1. One end of the Y-shaped pipe 71 away from the drying box 1 is connected to a stabilizing box 70, and the Y-shaped pipe 71 communicates with the stabilizing box 70. A partition plate 73 is fixed on the inner wall of the stabilizing box 70. Bottom plates 74 are fixed on both the surface and the inner wall of the stabilizing box 70 and the partition plate 73. An activated carbon plate 75 is placed on the surface of the bottom plate 74. An air outlet pipe 76 is connected to the top of the stabilizing box 70. A connecting door 72 is connected to the surface of the stabilizing box 70. The waste gas enters the stabilizing box 70 through the Y-shaped pipe 71. The hot air rises and is filtered through the activated carbon plate 75 and then discharged through the air outlet pipe 76.

[0026] One side of the fixed block 81 close to the slider 82 is arranged in an inclined plane shape, and one side of the clamping block 800 away from the rubber plug 87 is arranged in an inclined plane shape. When the inclined plane of the fixed block 81 abuts against the surface of the clamping block 800, the clamping block 800 can enter the sliding groove 89. The inclined plane of the clamping block 800 cooperates with the fixed block 81 to facilitate the clamping block 800 to enter the sliding groove 89. The cross-section of the slider 82 is a right trapezoid. When the fixed block 81 fits with the surface of the slider 82, the limit of the clamping block 800 can be released. The activated carbon plates 75 are arranged in two groups, and the two groups of activated carbon plates 75 are symmetrically arranged with the center line of the stable box 70 as the axis of symmetry, and can be alternately filtered. The replacement assemblies 8 are arranged in two groups, and the two groups of replacement assemblies 8 are symmetrically arranged with the center line of the stable box 70 as the axis of symmetry, and can alternately block the air outlet of the Y-shaped pipe 71.

[0027] A hot air blower 2 is fixed on the surface of the drying box 1. The output end of the hot air blower 2 penetrates through the drying box 1. A motor 4 is fixed on the surface of the drying box 1. The output shaft of the motor 4 penetrates through the drying box 1. A rotating cylinder 5 is rotatably connected to the inner wall of the drying box 1. The output shaft of the motor 4 penetrates through the drying box 1, and the output shaft of the motor 4 is fixedly connected to the surface of the rotating cylinder 5. A second sealing door 6 is connected to the surface of the rotating cylinder 5. A first sealing door 3 is connected to the surface of the drying box 1. Vent holes are formed on the surface of the rotating cylinder 5. The hot air blower 2 and the motor 4 are turned on, so that the rotating cylinder 5 drives the raw materials to flip and drying work is carried out, improving the drying efficiency.

[0028] When it is necessary to dry the raw materials of lead-acid batteries, the sealing door 1 3 and the sealing door 2 6 are opened at this time. The raw materials are placed into the rotating cylinder 5, the sealing door 1 3 and the sealing door 2 6 are closed, the hot air blower 2 and the motor 4 are started, so that the rotating cylinder 5 drives the raw materials to turn over and carry out the drying work, improving the drying efficiency. The waste gas generated at this time enters the stabilizing box 70 through the Y-shaped pipe 71. The hot air rises and is filtered through the activated carbon plate 75, and is discharged through the air outlet pipe 76. When the activated carbon plate 75 needs to be replaced after long-term use, at this time, the staff pulls the pull rod 86, and the two groups of pull rods 86 move simultaneously. At the same time, the spring 2 88 is compressed. At this time, it will drive the clamping block 800 to move synchronously. At this time, the inclined surface of the clamping block 800 abuts against the surface of the fixed block 81, and the clamping block 800 enters the sliding groove 89. When the side of the clamping block 800 away from the inclined surface abuts against the side of the fixed block 81 close to the sliding block 82, at this time, the fixed block 81 limits the clamping block 800, so as to stabilize the pull rod 86 and the rubber plug 87. At this time, one group of rubber plugs 87 is separated from the air outlet hole of the Y-shaped pipe 71. At the same time, the other group of pull rods 86 drives the clamping block 800 to move, so that the inclined surface of the clamping block 800 abuts against the surface of the sliding block 82. When the clamping block 800 abuts against the side of the sliding block 82 away from the fixed block 81, the spring 2 88 is released. At this time, the pull rod 86 drives the clamping block 800 to drive the sliding block 82 to move closer to the inside of the stabilizing box 70. When the surface of the sliding block 82 abuts against the surface of the fixed block 81, the clamping block 800 will move along the surfaces of the sliding block 82 and the fixed block 81, and further release the limit on the clamping block 800. At this time, the pull rod 86 drives the other group of rubber plugs 87 to block the other air outlet hole of the Y-shaped pipe 71, so that the other group of activated carbon plates 75 carry out the filtering work. At this time, the staff opens the connecting door 72 corresponding to the activated carbon plate 75 that needs to be replaced and pulls out the activated carbon plate 75 for replacement, without stopping the drying work, improving its drying efficiency.

[0029] The above generally describes the present invention in detail. However, based on the present invention, some modifications or improvements can be made, which are obvious to those of ordinary skill in the art. Therefore, the modifications or improvements that do not depart from the spirit of the present invention are all within the protection scope of the present invention.

Claims

1. A dryer with a flipping structure, comprising a drying box (1), characterized in that: A filter assembly (7) and a replacement assembly (8) are provided on the surface of the drying box (1). The filter assembly (7) includes: a stable box (70), a Y-shaped pipe (71), a connection door (72), a partition board (73), a bottom plate (74), an activated carbon plate (75), and an air outlet pipe (76). The replacement assembly (8) includes: a fixing plate (80). The fixing plate (80) is fixed on the inner wall of the stable box (70). A fixing block (81) is fixed on the surface of the fixing plate (80). A slider (82) is slidably connected to the surface of the fixing plate (80). A first spring (83) is fixed to the side of the slider (82) away from the fixing block (81). One end of the first spring (83) away from the slider (82) is fixed to a connection plate (84). The connection plate (84) is fixed on the surface of the fixing plate (80). A stable plate (85) is slidably connected to the bottom of the inner wall of the stable box (70). A pull rod (86) is provided on the surface of the stable plate (85). The pull rod (86) penetrates the stable plate (85) and is fixedly connected to the stable plate (85). One end of the pull rod (86) away from the stable plate (85) penetrates the stable box (70) and is slidably connected to the stable box (70). A second spring (88) is fixed to the surface of the stable plate (85). One end of the second spring (88) away from the stable plate (85) is fixed on the inner wall of the stable box (70). A rubber plug (87) is fixed to the end of the pull rod (86) away from the second spring (88). A chute (89) is formed on the side of the pull rod (86) close to the fixing plate (80). A clamping block (800) is slidably connected to the inner wall of the chute (89). A third spring (801) is fixed to the surface of the clamping block (800). One end of the third spring (801) away from the clamping block (800) is fixed on the inner wall of the chute (89).

2. The dryer with a flipping structure according to claim 1, characterized in that: A Y-shaped pipe (71) is fixed to the surface of the drying box (1). The Y-shaped pipe (71) communicates with the drying box (1). One end of the Y-shaped pipe (71) away from the drying box (1) is connected to the stable box (70), and the Y-shaped pipe (71) communicates with the stable box (70). A partition board (73) is fixed to the inner wall of the stable box (70). Bottom plates (74) are fixed to both the surface and the inner wall of the stable box (70). An activated carbon plate (75) is placed on the surface of the bottom plate (74). An air outlet pipe (76) is connected to the top of the stable box (70). A connection door (72) is connected to the surface of the stable box (70).

3. The dryer with a flipping structure according to claim 1, characterized in that: The side of the fixing block (81) close to the slider (82) is beveled. The side of the clamping block (800) away from the rubber plug (87) is beveled.

4. A dryer with a flipping structure according to claim 1, characterized in that: The cross-section of the slider (82) is a right trapezoid.

5. The dryer with a flipping structure according to claim 1, wherein: The activated carbon plates (75) are provided in two groups, and the two groups of activated carbon plates (75) are symmetrically arranged with the center line of the stable box (70) as the axis of symmetry.

6. The dryer with a flipping structure according to claim 1, characterized in that: The replacement assemblies (8) are provided in two groups, and the two groups of replacement assemblies (8) are symmetrically arranged with the center line of the stable box (70) as the axis of symmetry.

7. The dryer with a flipping structure according to claim 1, characterized in that: A hot air blower (2) is fixed on the surface of the drying box (1), the output end of the hot air blower (2) penetrates through the drying box (1), a motor (4) is fixed on the surface of the drying box (1), the output shaft of the motor (4) penetrates through the drying box (1), a rotating cylinder (5) is rotatably connected to the inner wall of the drying box (1), the output shaft of the motor (4) penetrates through the drying box (1), and the output shaft of the motor (4) is fixedly connected to the surface of the rotating cylinder (5). A second sealing door (6) is connected to the surface of the rotating cylinder (5), a first sealing door (3) is connected to the surface of the drying box (1), and air permeation holes are formed in the surface of the rotating cylinder (5).

Citation Information

Patent Citations

  • Drying device for lead-acid storage battery processing

    CN213454651U