Chassis mechanism of energy-saving air pipe machine

By designing a chassis mechanism with components including mounting plates, fixing plates, side plates, etc., the problems of low installation efficiency and vibration noise of traditional air ducts are solved, rapid installation, shock absorption and precise position adjustment are achieved, and the service life of the equipment is improved.

CN120368539AInactive Publication Date: 2025-07-25江苏三中科技有限公司
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Patent Information

Application Number
CN202510800741.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional air duct machines are inefficient in installation and vibrations produce noise and wear of parts, affecting the service life of the equipment.

Method used

The chassis mechanism is adopted that includes components such as installation plates, fixing plates, side plates, sliders, placement tables, telescopic rods and shock absorbing springs. The combination of the insertion plates and slots, the card blocks and the card slots is achieved quickly. Combined with control mechanisms such as lever and ropes, the duct machine is achieved quickly installation, adjustment and shock absorption.

Benefits of technology

It improves the installation efficiency of the duct machine base, reduces noise pollution and wear of parts, enhances the adaptability and installation accuracy of the device, and extends the service life of the equipment.

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Abstract

The invention discloses a chassis mechanism of an energy-saving air duct machine, which comprises a mounting plate, fixing plates are fixedly arranged on the two sides of the mounting plate, expansion screws are arranged on the two fixing plates in a penetrating manner, two side plates are symmetrically and fixedly arranged on the fixing plates, and the two side plates are fixedly arranged on the fixing plates through fixing mechanisms. The device comprises two side plates, sliding plates are arranged between the two side plates in a sliding mode, sliding grooves corresponding to the sliding plates are formed in the two side plates, the two sliding plates are symmetrically connected with two containing tables, each containing table is connected with the corresponding sliding plate through a telescopic rod, and each containing table is further connected with the corresponding sliding plate through a damping spring. And a first threaded rod is rotationally arranged on each placement table. According to the air duct type air conditioner, assembly and installation can be rapidly carried out, damping can be carried out on the air duct type air conditioner after installation, noise pollution and the part abrasion degree caused by the air duct type air conditioner are greatly reduced, and the service life is prolonged.
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Description

Technical Field

[0001] The present invention relates to the technical field of air duct machine installation, and particularly to a chassis mechanism of an energy-saving air duct machine. Background Art

[0002] When installing an air-conditioning air duct machine, in the traditional air duct machine, the machine is usually fixedly connected to the base first, and then directly fixed and installed on the wall with screws. This installation method requires overall installation, which is laborious and has low efficiency. Moreover, when the air duct machine is in use subsequently, it often generates relatively large noise due to the vibration of the air duct machine. At the same time, due to long-term vibration, wear will occur between the connecting parts, affecting the service life of the equipment. For this reason, we propose a chassis mechanism of an energy-saving air duct machine to solve the above problems. Summary of the Invention

[0003] The purpose of the present invention is to solve the disadvantages existing in the prior art, such as: the traditional air duct machine is installed after being integrally combined, with low installation efficiency, and the vibration of the air duct machine will generate relatively large noise and component wear, affecting the service life of the product. A chassis mechanism of an energy-saving air duct machine is proposed.

[0004] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0005] A chassis mechanism of an energy-saving air duct machine includes a mounting plate. Fixing plates are fixedly arranged on both sides of the mounting plate. Expansion screws are penetrated through both of the fixing plates. Two side plates are symmetrically and fixedly arranged on the fixing plates. Both of the two side plates are fixedly arranged on the fixing plates through a fixing mechanism. A sliding plate is slidably arranged between the two side plates. Chutes corresponding to the sliding plate are opened on both of the two side plates. Two placing platforms are symmetrically connected to both of the two sliding plates. Each placing platform is connected to the sliding plate through a telescopic rod and is also connected to the sliding plate through a shock-absorbing spring. A first threaded rod is rotatably arranged on each placing platform. A clamping plate is sleeved on each first threaded rod. A threaded through hole corresponding to the first threaded rod is opened on each clamping plate. Control mechanisms corresponding thereto are arranged on both of the two sliding plates.

[0006] Preferably, the fixing mechanism includes four card blocks, a plug plate is fixedly provided at one end of each of the side panels, two slots corresponding to the plug plates are symmetrically provided on the side wall of the mounting plate, two telescopic slots corresponding to the card blocks are symmetrically provided on the side walls of the two slots, four card blocks are slidably provided in the four telescopic slots respectively, and each of the card blocks is connected to the inner wall of the telescopic slot through a first spring, card slots corresponding to the card blocks are provided on both side walls of the two plug plates, the side wall of each card block close to the slot opening is inclined, and each of the card blocks is provided with a corresponding toggle mechanism.

[0007] Preferably, the toggle mechanism includes four toggle rods, which are respectively fixed on the side walls of the four blocks, and each of the toggle rods slides through the side wall of the mounting plate, and the side wall of the mounting plate is provided with four strip-shaped sliding openings corresponding to the toggle rods.

[0008] Preferably, the control mechanism includes two connecting plates, the two connecting plates are respectively fixed on the two slides, and each of the connecting plates is rotatably provided with a swivel, the mounting plate is fixedly provided with a control plate, the control plate is rotatably provided with a second threaded rod, one end of the second threaded rod rotates through the control plate and is fixedly connected with a turning handle, the end of the second threaded rod away from the turning handle rotates through the swivels on the two connecting plates, the two swivels are provided with threaded through holes corresponding to the second threaded rods, and the two connecting plates are provided with connecting mechanisms corresponding to the swivels.

[0009] Preferably, the connecting mechanism includes four connecting blocks, each of the connecting plates is provided with a rotating groove corresponding to the rotating ring, two receiving grooves corresponding to the connecting blocks are symmetrically provided on the side walls of the two rotating grooves, the four connecting blocks are respectively slidably arranged in the four receiving grooves, each of the connecting blocks is connected to the inner wall of the receiving groove through a second spring, a plurality of connecting grooves corresponding to the connecting blocks are circumferentially provided on the outer walls of the two rotating rings, and each of the connecting blocks is provided with a corresponding pulling mechanism.

[0010] Preferably, the pulling mechanism includes four pull ropes, which are respectively fixed on the side walls of four connecting blocks at one end close to the second spring, and the four pull ropes are all slidably penetrated through the side wall of the connecting plate, and the four pull ropes are all extended to the mounting plate.

[0011] Compared with the prior art, the beneficial effects of the present invention are as follows: the cooperation between the plug plate and the slot enables the side plate to be quickly connected to the mounting plate; the cooperation between the clamping block and the slot enables the plug plate to be restricted and fixed in the slot, thereby enabling the side plate to be quickly connected, assembled and fixed to the mounting plate, improving the installation efficiency of the duct machine base; the clamping block is controlled by setting a lever; the clamping block can be driven to slide out of the slot by toggling the lever, thereby releasing the fixed connection between the plug plate and the slot, facilitating the disassembly and transportation of the mounting plate and the side plate; the connection and fixation between the swivel and the connecting plate are achieved by the cooperation between the connecting block and the connecting slot; when the swivel and the connecting plate are fixed and relatively still, the connecting plate can be driven to move by rotating the second threaded rod, thereby driving the slide plate to move, and facilitating the adjustment of the distance between the two slide plates according to the size of the duct machine. The distance between the two plates is greatly improved, and the adaptability of the device is greatly improved. By setting a pull rope, the connection block can be controlled. By pulling the pull rope, the connection block can be driven into the storage groove, thereby releasing the connection between the swivel and the connecting plate. At this time, the rotation of the second threaded rod will not drive the connecting plate to move, so that the two slides can be controlled to move separately as needed, which is convenient for more accurate adjustment of the spacing and the installation position of the duct machine. By setting four placement tables, the load-bearing placement of the four corners of the duct machine is convenient. Through the cooperation of the telescopic rod and the shock-absorbing spring, the shock absorption of the duct machine is achieved, and the noise pollution and parts wear caused by the duct machine are reduced. The cooperation of the first threaded rod and the clamping plate can realize the clamping and fixing of the duct machine on the placing table. Through the cooperation of the fixing plate and the expansion screw, it is convenient to quickly install and fix the mounting plate on the wall. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 A schematic diagram of the three-dimensional structure of a chassis mechanism of an energy-saving duct air conditioner proposed by the present invention;

[0013] Figure 2 This is a schematic diagram of the three-dimensional structure of the chassis mechanism of an energy-saving duct air conditioner proposed by the present invention from another angle;

[0014] Figure 3 A schematic diagram of the top view of the chassis mechanism of an energy-saving duct air conditioner proposed by the present invention;

[0015] Figure 4 for Figure 3 The structural diagram at A in the middle;

[0016] Figure 5 for Figure 3 Schematic diagram of the structure at B in the figure.

[0017] In the figure: 1 mounting plate, 2 side plate, 3 sliding plate, 4 telescopic rod, 5 placing table, 6 shock-absorbing spring, 7 first threaded rod, 8 clamping plate, 9 connecting plate, 10 swivel ring, 11 second threaded rod, 12 fixing plate, 13 expansion screw, 14 control board, 15 turning handle, 16 pulling rope, 17 lever, 18 chute, 19 inserting plate, 20 inserting slot, 21 telescopic slot, 22 clamping block, 23 second spring, 24 first spring, 25 turning slot, 26 storage slot, 27 connecting block. Detailed implementation manner

[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0019] Refer to Figures 1 - 5A chassis mechanism of an energy-saving duct machine includes a mounting plate 1, a fixing plate 12 is fixedly arranged on both sides of the mounting plate 1, and expansion screws 13 are penetrated on the two fixing plates 12, and two side plates 2 are symmetrically fixedly arranged on the fixing plate 12, and the two side plates 2 are fixedly arranged on the fixing plate 12 through a fixing mechanism, and the fixing mechanism includes four card blocks 22, and a plug plate 19 is fixedly arranged at one end of each side plate 2, and two slots 20 corresponding to the plug plates 19 are symmetrically arranged on the side wall of the mounting plate 1, and two telescopic slots 21 corresponding to the card blocks 22 are symmetrically arranged on the side walls of the two slots 20, and the four card blocks 22 are respectively slidably arranged in the four telescopic slots 21, and each card block 22 is connected to the inner wall of the telescopic slot 21 through a first spring 24. The two side walls of the two plug boards 19 are provided with card slots corresponding to the card blocks 22, and the side walls of each card block 22 close to the opening of the slot 20 are inclined, and each card block 22 is provided with a corresponding toggle mechanism, and the toggle mechanism includes four toggle rods 17, and the four toggle rods 17 are respectively fixed on the side walls of the four card blocks 22, and each toggle rod 17 is slidably passed through the side wall of the mounting plate 1, and four strip sliding openings corresponding to the toggle rods 17 are provided on the side wall of the mounting plate 1, and a slide plate 3 is slidably arranged between the two side panels 2, and the two side panels 2 are provided with sliding grooves 18 corresponding to the slide plate 3, and two placement platforms 5 are symmetrically connected on the two slide plates 3, each placement platform 5 is connected to the slide plate 3 through a telescopic rod 4, and each Each placement platform 5 is also connected to the slide plate 3 through a shock-absorbing spring 6. A first threaded rod 7 is rotatably provided on each placement platform 5. A clamping plate 8 is sleeved on each first threaded rod 7. A threaded through hole corresponding to the first threaded rod 7 is opened on each clamping plate 8. A corresponding control mechanism is provided on the two slide plates 3. The control mechanism includes two connecting plates 9. The two connecting plates 9 are respectively fixed on the two slide plates 3, and a swivel 10 is rotatably provided on each connecting plate 9. A control plate 14 is fixedly provided on the mounting plate 1. A second threaded rod 11 is rotatably provided on the control plate 14. One end of the second threaded rod 11 rotates through the control plate 14 and is fixedly connected to a rotating handle 15. The end of the second threaded rod 11 away from the rotating handle 15 rotates through the two connecting plates 9. The swivel 10 is provided on the two swivels 10, and threaded through holes corresponding to the second threaded rod 11 are provided on the two connecting plates 9. The connecting mechanism corresponding to the swivel 10 is provided on the two connecting plates 9. The connecting mechanism includes four connecting blocks 27. Each connecting plate 9 is provided with a rotating groove 25 corresponding to the swivel 10. Two receiving grooves 26 corresponding to the connecting blocks 27 are symmetrically provided on the side walls of the two rotating grooves 25. The four connecting blocks 27 are respectively slidably arranged in the four receiving grooves 26. Each connecting block 27 is connected to the inner wall of the receiving groove 26 through a second spring 23. A plurality of connecting grooves corresponding to the connecting blocks 27 are circumferentially provided on the outer walls of the two swivels 10. Each connecting block 27 is provided with a pulling mechanism corresponding thereto, and the pulling mechanism includes four pull ropes 16.The four pull ropes 16 are respectively fixedly arranged on the side walls of one end of the four connecting blocks 27 close to the second spring 23, and the four pull ropes 16 are all slidably penetrated through the side wall settings of the connecting plate 9, and the four pull ropes 16 are all extended to the installation plate 1. Through the cooperation of the plug plate 19 and the slot 20, the side plate 2 and the mounting plate 1 are quickly connected. Through the cooperation of the clamping block 22 and the clamping slot, the plug plate 19 is restricted and fixed in the slot 20, thereby realizing the quick connection and assembly fixation of the side plate 2 and the mounting plate 1, improving the installation efficiency of the duct machine base. By setting the lever 17, the clamping block 22 is controlled. By toggling the lever 17, the clamping block 22 can be driven to slide out of the clamping slot, thereby releasing the fixed connection between the plug plate 19 and the slot 20, thereby facilitating the disassembly and transportation of the mounting plate 1 and the side plate 2. Through the cooperation of the connecting block 27 and the connecting slot, the connection and fixation of the swivel 10 and the connecting plate 9 are realized. When the swivel 10 and the connecting plate 9 are fixed and relatively stationary, the second threaded rod 11 can be rotated to drive the connecting plate 9 to move. The sliding plate 3 can be moved to drive the sliding plate 3 to move, so that the distance between the two sliding plates 3 can be adjusted according to the size of the air duct machine, which greatly improves the adaptability of the device. By setting the pull rope 16, the control of the connecting block 27 is realized. Pulling the pull rope 16 can drive the connecting block 27 to be stored in the storage groove 26, thereby releasing the connection between the swivel 10 and the connecting plate 9. At this time, the rotation of the second threaded rod 11 will not drive the connecting plate 9 to move, so that the two sliding plates 3 can be controlled to move according to the needs, which is convenient for more accurate adjustment of the distance and the installation position of the air duct machine. By setting four placement platforms 5, it is convenient to place the load at the four corners of the air duct machine. Through the cooperation of the telescopic rod 4 and the shock-absorbing spring 6, the shock absorption of the air duct machine is realized, and the noise pollution and parts wear caused by the air duct machine are reduced. The air duct machine can be clamped and fixed on the placement platform 5 by the cooperation of the first threaded rod 7 and the clamping plate 8. Through the cooperation of the fixing plate 12 and the expansion screw 13, it is convenient to quickly install and fix the mounting plate 1 on the wall.

[0020] In the present invention, when installing the duct machine, the cooperation between the fixing plate 12 and the expansion screw 13 facilitates the rapid installation and fixing of the mounting plate 1 on the wall. The cooperation between the plug plate 19 and the slot 20 realizes the rapid connection between the side plate 2 and the mounting plate 1. The cooperation between the clamping block 22 and the slot realizes the restricted fixation of the plug plate 19 in the slot 20, thereby realizing the rapid connection, assembly and fixing of the side plate 2 and the mounting plate 1, and improving the installation efficiency of the duct machine base. By setting the lever 17, the clamping block 22 is controlled. By toggling the lever 17, the clamping block 22 can be driven to slide out of the slot, thereby releasing the fixed connection between the plug plate 19 and the slot 20, and facilitating the disassembly and transportation of the mounting plate 1 and the side plate 2. The cooperation between the connecting block 27 and the connecting slot realizes the connection and fixing of the swivel 10 and the connecting plate 9. When the swivel 10 and the connecting plate 9 are fixed and relatively still, the second threaded rod 11 can be rotated to bring The movable connecting plate 9 is moved, thereby being able to drive the slide plate 3 to move, so as to facilitate the adjustment of the spacing between the two slide plates 3 according to the size of the duct machine, greatly improving the adaptability of the device, and by setting the pull rope 16, the control of the connecting block 27 is realized, and the pull rope 16 can be pulled to drive the connecting block 27 to be stored in the storage groove 26, thereby releasing the connection between the swivel 10 and the connecting plate 9, and at this time, the rotation of the second threaded rod 11 will not drive the connecting plate 9 to move, so that the two slide plates 3 can be controlled to move separately as needed, which is convenient for more accurate adjustment of the spacing and the installation position of the duct machine, and the four placement platforms 5 are provided to facilitate the loading and placement of the four corners of the duct machine, and the cooperation of the telescopic rod 4 and the shock-absorbing spring 6 is realized to reduce the shock of the duct machine, and the noise pollution and parts wear caused by the duct machine are reduced, and the duct machine can be clamped and fixed on the placement platform 5 by the cooperation of the first threaded rod 7 and the clamping plate 8.

[0021] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. The chassis mechanism of an energy-saving air duct machine, including a mounting plate (1), is characterized in that, The mounting plate (1) is fixedly provided with fixing plates (12) on both sides, and expansion screws (13) are provided through the two fixing plates (12). Two side plates (2) are symmetrically fixedly provided on the fixing plate (12), and the two side plates (2) are fixedly provided on the fixing plate (12) by a fixing mechanism, and a slide plate (3) is slidably provided between the two side plates (2), and the two side plates (2) are provided with slide grooves (18) corresponding to the slide plates (3), and the two slide plates (3) are symmetrically connected and provided with There are two placing platforms (5), each of which is connected to the slide plate (3) via a telescopic rod (4), and each of which is also connected to the slide plate (3) via a shock-absorbing spring (6). A first threaded rod (7) is rotatably arranged on each of the placing platforms (5), a clamping plate (8) is sleeved on each of the first threaded rods (7), and a threaded through hole corresponding to the first threaded rod (7) is opened on each of the clamping plates (8). The two slide plates (3) are provided with corresponding control mechanisms.

2. The chassis mechanism of an energy-saving air duct machine according to claim 1, characterized in that, The fixing mechanism comprises four card blocks (22), one end of each of the side plates (2) is fixedly provided with an inserting plate (19), two slots (20) corresponding to the inserting plates (19) are symmetrically provided on the side wall of the mounting plate (1), two telescopic slots (21) corresponding to the card blocks (22) are symmetrically provided on the side walls of the two slots (20), the four card blocks (22) are respectively slidably provided in the four telescopic slots (21), and each of the card blocks (22) is connected to the inner wall of the telescopic slot (21) through a first spring (24), card slots corresponding to the card blocks (22) are provided on the side walls of both sides of the two inserting plates (19), the side wall of each of the card blocks (22) close to the opening of the slot (20) is inclined, and each of the card blocks (22) is provided with a corresponding toggle mechanism.

3. The chassis mechanism of an energy-saving air duct machine according to claim 2, characterized in that, The toggle mechanism comprises four toggle rods (17), the four toggle rods (17) are respectively fixedly arranged on the side walls of four clamping blocks (22), and each of the toggle rods (17) is slidably arranged to penetrate the side wall of the mounting plate (1), and the side wall of the mounting plate (1) is provided with four strip-shaped sliding openings corresponding to the toggle rods (17).

4. The chassis mechanism of an energy-saving air duct machine according to claim 1, characterized in that, The control mechanism comprises two connecting plates (9), the two connecting plates (9) are respectively fixedly arranged on the two slide plates (3), and each connecting plate (9) is rotatably provided with a rotating ring (10), a control plate (14) is fixedly arranged on the mounting plate (1), a second threaded rod (11) is rotatably provided on the control plate (14), one end of the second threaded rod (11) is rotatably passed through the control plate (14) and is fixedly connected with a rotating handle (15), one end of the second threaded rod (11) away from the rotating handle (15) is rotatably passed through the rotating rings (10) on the two connecting plates (9), the two rotating rings (10) are each provided with a threaded through hole corresponding to the second threaded rod (11), and the two connecting plates (9) are each provided with a connecting mechanism corresponding to the rotating ring (10).

5. The chassis mechanism of an energy-saving air duct machine according to claim 4, characterized in that, The connecting mechanism includes four connecting blocks (27). Each of the connecting plates (9) is provided with a rotating groove (25) corresponding to the rotating ring (10). Two symmetrically arranged receiving grooves (26) corresponding to the connecting blocks (27) are provided on the side walls of the two rotating grooves (25). The four connecting blocks (27) are respectively slidably arranged in the four receiving grooves (26). Each connecting block (27) is connected to the inner wall of the receiving groove (26) through a second spring (23). A number of connecting grooves corresponding to the connecting blocks (27) are circumferentially provided on the outer walls of the two rotating rings (10). A corresponding pulling mechanism is provided on each connecting block (27).

6. The chassis mechanism of an energy-saving air duct machine according to claim 5, characterized in that, The pulling mechanism includes four pulling ropes (16). The four pulling ropes (16) are respectively fixedly arranged on the side walls of the four connecting blocks (27) close to the second spring (23). The four pulling ropes (16) all slidably penetrate through the side wall of the connecting plate (9) and are all extended to the mounting plate (1).