Multi-orifice adsorption tower

By using components such as supports and dual-head motors in multi-port adsorption towers, mechanical energy is used to clamp and fix the connection between the pipe and the adsorption tower, solving the corrosion problem at the connection and achieving sealing protection and anti-detachment effects.

CN223861596UActive Publication Date: 2026-02-03KUNMING LONGFENG ZINC IND DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202520200889.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-02-03
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

When using existing multi-port adsorption towers, the connection between the pipe and the adsorption tower is easily corroded by foreign objects in the external environment, which weakens the sealing performance and affects normal use.

Method used

The system employs components such as supports, dual-head motors, drive rods, gears, bidirectional lead screws, support rods, arc plates, and rope chains. It converts mechanical energy into clamping force to fix the connection between the pipeline and the adsorption tower, ensuring a tight seal.

Benefits of technology

It effectively protects the connection between the pipeline and the adsorption tower, prevents detachment, improves sealing, and ensures normal equipment operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of adsorption towers, in particular to a multi-orifice adsorption tower which comprises an adsorption tower main body, one side of the adsorption tower main body is provided with a gas inlet for enabling gas to enter the adsorption tower main body, and one end of the adsorption tower main body far away from the gas inlet is provided with a gas outlet. A steam outlet for discharging steam is formed in the top of the adsorption tower main body, a steam inlet for feeding the steam is formed in the bottom of the adsorption tower main body, and a support for supporting the adsorption tower main body is in bolted connection with the outer side of the adsorption tower main body; through the arrangement of the support, the double-end motor, the driving rod, the gear A, the gear B, the bidirectional lead screw, the supporting rod A, the supporting rod B, the arc plate A, the arc plate B, the movable plate, the fixed plate, the rope chain and the winding sleeve, the problem that when an existing multi-orifice adsorption tower is used, the joint of a pipeline and the adsorption tower main body is inconvenient to protect is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to adsorption tower technical field, concretely relates to a multi -tube mouth adsorption tower. BACKGROUND

[0002] Adsorption tower is a kind of equipment for removing specific components in gas or liquid, it is filled with solid adsorbent in tower, make the gas or liquid entering the tower certain components be adsorbed by the porous structure of adsorbent, to realize component separation, adsorption tower has wide application in industry and environmental protection field.

[0003] But the existing multi -tube mouth adsorption tower uses, adsorption tower is connected with multiple pipelines, and the connecting place of pipeline and adsorption tower is exposed in external environment, foreign matter in external environment can adhere to the connecting place of pipeline and adsorption tower, can corrode the connecting place, make the connecting place of pipeline and adsorption tower sealing weaken, cause certain influence to the normal use of adsorption tower, thus set up a kind of multi -tube mouth adsorption tower. UTILITY MODEL CONTENTS

[0004] The utility model discloses a kind of multi -tube mouth adsorption towers, the utility model is equipped with pedestal, double-head motor, driving rod, gear A, gear B, bidirectional screw rod, support rod A, support rod B, arc plate A, arc plate B, moving plate, fixed plate, rope chain and winding sleeve, solve the problem that the connecting place of pipeline and adsorption tower main body is inconvenient to protect when the existing multi -tube mouth adsorption tower is used.

[0005] The utility model discloses a kind of multi-port adsorption towers, including adsorption tower main body, the adsorption tower main body one side is provided with the gas inlet that makes gas enter adsorption tower main body inside, the adsorption tower main body is provided with gas outlet at one end away from gas inlet, the adsorption tower main body top is provided with the steam outlet that makes steam discharge, the adsorption tower main body bottom is provided with the steam inlet that makes steam enter, the adsorption tower main body outside bolt connection has the support of supporting adsorption tower main body, and support inside bolt connection has the double-head motor of power supply, the power output end of double-head motor is all keyed connection with driving rod, the end of driving rod is sleeved with gear A, and gear A outside is engaged with gear B, the inside of gear B is clamped with bidirectional screw rod, the outside of bidirectional screw rod is connected with screw sleeve A and screw sleeve B with screw, and screw sleeve A outside is welded with support rod A, the end away from screw sleeve A of support rod A is welded with the arc plate A that is contacted with gas outlet, screw sleeve B outside is welded with support rod B, and the end away from screw sleeve B of support rod B is welded with the arc plate B that is contacted with gas outlet, rubber arc piece that improves the sealing property between gas outlet and pipeline is all bonded inside arc plate A and arc plate B, rubber block that improves the sealing property between arc plate A and arc plate B is all bonded on one side of arc plate A and arc plate B, the fixed plate connected with pipeline is sleeved with steam outlet outside, driving rod outside is sleeved with winding sleeve, and winding sleeve outside is wound with rope chain, the end away from winding sleeve of rope chain is fixed with moving plate with screw.

[0006] By adopting the above technical scheme, when the gas inlet and the gas outlet outside the adsorption tower main body are provided with two groups, and the adsorption tower main body top is provided with the steam outlet, and the adsorption tower main body bottom is provided with the steam inlet, the multi-pipeline is connected with the adsorption tower main body;

[0007] When the pipeline is connected with the adsorption tower body, the double-head motor in the support is controlled by an external controller to convert the received electric energy into mechanical energy, the double-head motor drives the driving rods on both sides to drive gear A to rotate, gear A drives the bidirectional screw rod in gear B to rotate, then the screw sleeves A and B outside the bidirectional screw rod are limited by the external symmetrical structure, then the screw sleeve A drives the arc plate A outside the support rod A to move, the screw sleeve B drives the arc plate B outside the support rod B to move, so that the arc plates A and B move to the connection position of the pipeline and the gas outlet on the adsorption tower body, the external structure of the gas inlet on the adsorption tower body is the same as that of the gas outlet, so that the connection of the gas inlet and the pipeline is clamped, at the same time, the winding sleeve outside the driving rod drives the rope chain to wind, the rope chain drives the moving plate to move, so that the fixed plate on the top of the adsorption tower body and the moving plate clamp and fix the connection position of the steam outlet and the pipeline, the external structure of the steam inlet at the bottom of the adsorption tower body is the same as that of the steam outlet at the top of the adsorption tower body, so that the connection position of the steam inlet and the pipeline is clamped, so as to clamp and process the connection position of the pipeline and the adsorption tower body, thereby protecting the connection position of the pipeline and the adsorption tower body, and avoiding the pipeline from falling off.

[0008] Specifically, the shaft sleeve for stabilizing the rotation of the driving rod is clamped in the support.

[0009] By adopting the above technical scheme, when the double-head motor drives the driving rod to rotate, the driving rod rotates in the shaft sleeve clamped in the support, and the shaft sleeve is also arranged outside the bidirectional screw rod in the support, thereby improving the stability of the rotation of the driving rod and the bidirectional screw rod, and the bearing is arranged at the end of the bidirectional screw rod.

[0010] Specifically, the pulley for stabilizing the movement of the rope chain is fixed on the outside of the adsorption tower body by screws.

[0011] By adopting the above technical scheme, when the winding sleeve drives the rope chain to wind, the rope chain slides outside the pulley on the outside of the adsorption tower body, and the winding sleeve and the rope chain outside the driving rod and the pulley on the upper side of the outside of the adsorption tower body are arranged in two groups, thereby improving the stability of the movement of the moving plate driven by the rope chain.

[0012] Specifically, the convex particle pad for increasing friction is fixed on the bottom of the support by screws.

[0013] By adopting the above technical scheme, the support on the outside of the adsorption tower body supports the adsorption tower body, the convex particle pad on the bottom of the support increases the friction of the bottom of the support, and the stability of the support of the adsorption tower body is improved.

[0014] Specifically, the input end of the double-head motor is electrically connected with the power supply end of the external power supply.

[0015] By adopting the above technical scheme, the electric equipment works normally by connecting the external power supply.

[0016] The utility model discloses a beneficial effect:

[0017] The utility model discloses a kind of multi-tube mouth adsorption tower, when pipeline is connected with adsorption tower main body, double-end motor in support is under the action of external controller with the electrical energy received is converted into mechanical energy, double-end motor drives the driving rod of two sides to drive gear A rotation, gear A drives the rotation of bidirectional screw rod in gear B, then the screw sleeve A and screw sleeve B outside bidirectional screw rod are limited by external symmetrical structure, then screw sleeve A drives arc plate A outside support rod A to move, screw sleeve B drives arc plate B outside support rod B to move, so that arc plate A and arc plate B move to the connecting place of pipeline and the gas outlet on adsorption tower main body, the external structure of adsorption tower main body on gas inlet is same with the external structure of gas outlet, so that the connection of gas inlet and pipeline is clamped, simultaneously, the winding sleeve outside driving rod drives rope chain to be wound, rope chain drives moving plate to move, so that the fixed plate on the top of adsorption tower main body and moving plate clamp and fix the connecting place of steam outlet and pipeline, the external structure of steam inlet on the bottom of adsorption tower main body is same with the external structure of steam outlet on the top of adsorption tower main body, so that the connecting place of steam inlet and pipeline is clamped, to facilitate clamping treatment to the connecting place of pipeline and adsorption tower main body, to facilitate the protection of the connecting place of pipeline and adsorption tower main body, simultaneously, avoid that pipeline falls off. BRIEF DESCRIPTION OF DRAWINGS

[0018] The utility model is further illustrated below in connection with drawing and embodiment.

[0019] Figure 1 It is whole structure schematic diagram for the utility model a kind of multi-tube mouth adsorption tower;

[0020] Figure 2 It is inside structure schematic diagram for the utility model a kind of multi-tube mouth adsorption tower support;

[0021] In the drawing: 1, gas inlet;2, steam inlet;3, adsorption tower main body;4, rubber arc piece;5, support;6, moving plate;7, steam outlet;8, fixed plate;9, arc plate A;10, rubber block;11, support rod A;12, gas outlet;13, arc plate B;14, support rod B;15, pulley;16, rope chain;17, double-end motor;18, winding sleeve;19, shaft sleeve;20, driving rod;21, gear A;22, gear B;23, screw sleeve A;24, bidirectional screw rod;25, screw sleeve B;26, convex particle pad. DETAILED DESCRIPTION

[0022] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in connection with specific implementation ways.

[0023] In order to improve the sealing between pipeline and adsorption tower main body 3, as an embodiment of the utility model, as shown inFigure 1 、 Figure 2 The utility model discloses a multi -tube mouth adsorption tower, including adsorption tower main part 3, the adsorption tower main part 3 one side is provided with the gas inlet 1 of making gas enter adsorption tower main part 3 inside, the adsorption tower main part 3 is provided with the gas outlet 12 away from the gas inlet 1 one end, the adsorption tower main part 3 top is provided with the steam outlet 7 of making steam discharge, the adsorption tower main part 3 bottom is provided with the steam inlet 2 of making steam enter, the adsorption tower main part 3 outside bolt connection has the support 5 of supporting adsorption tower main part, and the support 5 inside bolt connection has the double -end motor 17 of providing power, the power output of double -end motor 17 all key connection has the drive rod 20, the end of drive rod 20 is sleeved with gear A 21, and gear A 21 outside meshing connection has the gear B 22, the inside of gear B 22 is clamped with bidirectional screw rod 24, the outside screw thread connection of bidirectional screw rod 24 has screw sleeve A 23 and screw sleeve B 25, and screw sleeve A 23 outside welding has the support rod A 11, the end away from screw sleeve A 23 of support rod A 11 welding has the arc plate A 9 of contact with gas outlet 12, screw sleeve B 25 outside welding has the support rod B 14, and the end away from screw sleeve B 25 of support rod B 14 welding has the arc plate B 13 of contact with gas outlet 12, the inside of arc plate A 9 and arc plate B 13 all are bonded with the rubber arc piece 4 of improving the leakproofness between gas outlet 12 and pipeline, arc plate A 9 and arc plate B 13 one side all are bonded with the rubber block 10 of improving the leakproofness between arc plate A 9 and arc plate B 13, the steam outlet 7 outside sleeve has the fixed plate 8 connected with pipeline, the drive rod 20 outside sleeve has the winding sleeve 18, and winding sleeve 18 outside winding has the rope chain 16, the end away from winding sleeve 18 of rope chain 16 screw fixed has the moving plate 6.

[0024] In use, when the gas inlet 1 and the gas outlet 12 outside the adsorption tower main part 3 are provided with two groups, and the adsorption tower main part 3 top is provided with the steam outlet 7, the adsorption tower main part 3 bottom is provided with the steam inlet 2, so that the multi -pipeline is connected with the adsorption tower main part 3;

[0025] When the pipeline is connected with the adsorption tower body 3, the double-head motor 17 in the support 5 is controlled by an external controller to convert the received electric energy into mechanical energy, the double-head motor 17 drives the driving rods 20 on both sides to drive the gear A 21 to rotate, the gear A 21 drives the bidirectional screw rod 24 in the gear B 22 to rotate, then the screw sleeve A 23 and the screw sleeve B 25 outside the bidirectional screw rod 24 are limited by the external symmetrical structure, then the screw sleeve A 23 drives the arc plate A 9 outside the support rod A 11 to move, the screw sleeve B 25 drives the arc plate B 13 outside the support rod B 14 to move, so that the arc plate A 9 and the arc plate B 13 move to the connection position of the pipeline and the gas outlet 12 on the adsorption tower body 3, the external structure of the gas inlet 1 on the adsorption tower body 3 is the same as that of the gas outlet 12, so that the connection of the gas inlet 1 and the pipeline is clamped, and the winding sleeve 18 outside the driving rod 20 drives the rope chain 16 to wind, the rope chain 16 drives the moving plate 6 to move, so that the fixed plate 8 at the top of the adsorption tower body 3 and the moving plate 6 clamp and fix the connection position of the steam outlet 7 and the pipeline, the external structure of the steam inlet 2 at the bottom of the adsorption tower body 3 is the same as that of the steam outlet 7 at the top of the adsorption tower body 3, so that the connection position of the steam inlet 2 and the pipeline is clamped, so that the connection position of the pipeline and the adsorption tower body 3 is clamped and treated, and the connection position of the pipeline and the adsorption tower body 3 is protected, and the pipeline is prevented from falling off.

[0026] In order to improve the stability of the driving rod 20 and the bidirectional screw rod 24, as shown in Figure 2 The utility model discloses still include, the support 5 inboard is clamped with the shaft sleeve 19 that makes driving rod 20 rotate stability.

[0027] When the double-head motor 17 drives the driving rod 20 to rotate, the driving rod 20 rotates in the shaft sleeve 19 that is screwed and clamped in the support 5, and the shaft sleeve 19 is also arranged outside the bidirectional screw rod 24 in the support 5, so that the stability of the driving rod 20 and the bidirectional screw rod 24 is improved.

[0028] In order to improve the stability of the rope chain 16 driving the moving plate 6 to move, as shown in Figure 1 The utility model discloses still include, the screw of adsorption tower body 3 outside is fixed with the pulley 15 that makes rope chain 16 move stability.

[0029] When the winding sleeve 18 drives the rope chain 16 to wind, the rope chain 16 slides outside the pulley 15 outside the adsorption tower body 3, and the winding sleeve 18 and the rope chain 16 outside the driving rod 20 and the pulley 15 on the upper side of the adsorption tower body 3 are all arranged with two groups, so that the stability of the rope chain 16 driving the moving plate 6 to move is improved.

[0030] In order to improve the stability of the adsorption tower body 3 support, as shown in Figure 1As shown, the utility model still includes, the bottom screw of support 5 is fixed with the convex grain pad 26 of increasing friction.

[0031] In use, the support 5 outside the adsorption tower body 3 supports the adsorption tower body 3, and the convex grain pad 26 at the bottom of the support 5 increases the friction at the bottom of the support 5, thereby improving the stability of the support of the adsorption tower body 3.

[0032] In order to use the electric equipment to work normally, for example, Figure 2 As shown, the utility model still includes, the input end of double -end motor 17 is connected with the power supply end electricity of external power supply.

[0033] In use, through connecting external power supply, the electric equipment works normally.

[0034] The utility model in use, when the adsorption tower body 3 outside the air inlet 1 and the air outlet 12 are all provided with two groups, and the adsorption tower body 3 top is provided with steam outlet 7, the adsorption tower body 3 bottom is provided with steam inlet 2, make the multi -pipeline with the connection of adsorption tower body 3;

[0035] When the pipeline is connected with the adsorption tower body 3, the double -end motor 17 in the support 5 is converted into mechanical energy by the electric energy received under the action of external controller, the double -end motor 17 drives the driving rod 20 on both sides to drive gear A 21 to rotate, gear A 21 drives the bidirectional screw rod 24 in gear B 22 to rotate, then the screw sleeve A 23 and the screw sleeve B 25 outside the bidirectional screw rod 24 are all received external symmetrical structure limit, then the screw sleeve A 23 drives the arc plate A 9 outside the support rod A 11 to move, the screw sleeve B 25 drives the arc plate B 13 outside the support rod B 14 to move, so that the arc plate A 9 and the arc plate B 13 move to the connecting place of the pipeline and the air outlet 12 on the adsorption tower body 3, the external structure of the air inlet 1 on the adsorption tower body 3 is same with the external structure of the air outlet 12, so that the connection of the air inlet 1 and the pipeline is clamped, and the winding sleeve 18 outside the driving rod 20 drives the rope chain 16 to wind, the rope chain 16 drives the moving plate 6 to move, so that the fixed plate 8 on the top of the adsorption tower body 3 and the moving plate 6 clamp and fix the connecting place of the steam outlet 7 and the pipeline, the external structure of the steam inlet 2 at the bottom of the adsorption tower body 3 is same with the external structure of the steam outlet 7 on the top of the adsorption tower body 3, so that the connecting place of the steam inlet 2 and the pipeline is clamped, thereby facilitating the clamping treatment of the connecting place of the pipeline and the adsorption tower body 3, protecting the connecting place of the pipeline and the adsorption tower body 3, and avoiding the pipeline from falling off simultaneously.

[0036] When the double -end motor 17 drives the driving rod 20 to rotate, the driving rod 20 rotates in the shaft sleeve 19 screwed in the support 5, and the shaft sleeve 19 is also arranged outside the bidirectional screw rod 24 in the support 5, thereby improving the stability of the rotation of the driving rod 20 and the bidirectional screw rod 24.

[0037] When the winding sleeve 18 drives the rope chain 16 to wind, the rope chain 16 slides outside the pulley 15 outside the adsorption tower body 3, and the winding sleeve 18 and the rope chain 16 outside the driving rod 20 and the pulley 15 on the upper side outside the adsorption tower body 3 are provided with two groups, which improves the stability of the rope chain 16 driving the moving plate 6 to move;

[0038] The support 5 outside the adsorption tower body 3 supports the adsorption tower body 3, the convex particle pad 26 at the bottom of the support 5 increases the friction force at the bottom of the support 5, and the stability of the support of the adsorption tower body 3 is improved.

[0039] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principle of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A multi-port adsorption tower, characterized in that, The system includes an adsorption tower body (3), with an inlet (1) on one side for gas to enter the adsorption tower body (3), an outlet (12) at the end of the adsorption tower body (3) away from the inlet (1), a steam outlet (7) at the top for steam discharge, and a steam inlet (2) at the bottom for steam to enter. The outer side of the adsorption tower body (3) is bolted with a support for the adsorption tower body (3). The support (5) is bolted to a double-headed motor (17) that provides power. The power output ends of the double-headed motor (17) are keyed to drive rods (20). Gear A (21) is sleeved at the end of the drive rod (20), and gear B (22) is meshed with the outside of gear A (21). A double-ended lead screw (24) is snapped into the inside of gear B (22). Threaded sleeve A (23) and threaded sleeve B (25) are threaded to the outside of the double-ended lead screw (24). The threaded sleeve A (23) is welded with a support rod A (11) on the outside. The end of the support rod A (11) away from the threaded sleeve A (23) is welded with an arc plate A (9) that contacts the air outlet (12). The threaded sleeve B (25) is welded with a support rod B (14) on the outside. The end of the support rod B (14) away from the threaded sleeve B (25) is welded with an arc plate B (13) that contacts the air outlet (12). The inner sides of the arc plate A (9) and the arc plate B (13) are both bonded with materials that raise the air outlet (12) and the pipe. The rubber arc sheet (4) provides inter-channel sealing. Rubber blocks (10) that improve the sealing between arc plate A (9) and arc plate B (13) are bonded to one side. A fixing plate (8) connected to the pipeline is sleeved on the outside of the steam outlet (7). A take-up sleeve (18) is sleeved on the outside of the drive rod (20), and a rope chain (16) is wound around the outside of the take-up sleeve (18). A moving plate (6) is screwed to one end of the rope chain (16) away from the take-up sleeve (18).

2. The multi-port adsorption tower according to claim 1, characterized in that, The inner side of the support (5) is fitted with a bushing (19) that stabilizes the rotation of the drive rod (20).

3. The multi-port adsorption tower according to claim 1, characterized in that, The adsorption tower body (3) is screwed to a pulley (15) on the outside to stabilize the movement of the rope chain (16).

4. The multi-port adsorption tower according to claim 1, characterized in that, The bottom of the support (5) is screwed with a protruding pad (26) to increase friction.

5. The multi-port adsorption tower according to claim 1, characterized in that, The input terminal of the dual-head motor (17) is electrically connected to the power supply terminal of an external power source.