Energy-saving transformation device for purifying air conditioner
By introducing a positioning support plate and a telescopic lower plate structure into the purification air-conditioning energy-saving renovation device, combined with the design of a cylinder drive and a rotating top plate, the problem of falling parts is solved, the stability of the operating platform and the flexible adjustment of the usable area are achieved, and the safe disassembly and assembly of the air conditioner are supported.
Patent Information
- Application Number
- CN202422756795.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-13
AI Technical Summary
During the disassembly and assembly process of the existing purification air conditioning energy-saving transformation device, parts are easily dropped from the operating platform, and there is a lack of effective protective structure.
The combined structure of the positioning support plate and the telescopic lower plate is adopted. The U-shaped connecting plate is driven by a cylinder to control the lifting and extension of the operating platform. The cooperation between the platform side baffles and the telescopic side plates can prevent parts from falling. The telescopic lower plate is driven to open by rotating the top plate to increase the usable area.
It effectively prevents parts from falling during the disassembly and assembly process, ensures the stability of the operating platform and the flexible adjustment of the use area, and supports the safe disassembly and assembly of air conditioners during purification and energy-saving transformation.
Smart Images

Figure CN223345665U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of purification air-conditioning energy saving, in particular to a purification air-conditioning energy-saving transformation device. Background Art
[0002] An existing patent (publication number: CN220103393U) proposes a noise reduction retrofit device for energy-saving air conditioners. The device includes a fan, a heat exchange tube, and a lubrication assembly. The heat exchange tube is fixed to one side of the fan, and the lubrication assembly is fixed to the side of the fan. This device has the beneficial effect of preventing noise caused by the fan's hydraulic oil drying up or even running out during long-term operation. The drive impeller is connected to the fan through a transmission structure. However, this device, when retrofitting energy-saving air conditioners, lacks a platform for its placement. Summary of the Invention
[0003] In response to the above-mentioned deficiencies in the prior art, the utility model provides a purification air conditioner energy-saving modification device that prevents parts used for energy-saving air conditioner modification from falling from an operating platform during the purification air conditioner energy-saving modification, ensures close contact between the operating platform and the telescopic lower plate through a positioning support plate, and prevents the two from being disconnected during the purification air conditioner energy-saving modification. The air conditioner is disassembled and modified on the device during the purification air conditioner energy-saving modification.
[0004] The purpose of this utility model is achieved through the following technical solutions:
[0005] A purification air conditioner energy-saving transformation device includes an operating platform, a telescopic lower plate, a positioning support plate, an upper telescopic rod, a lower telescopic sleeve, a bottom plate, a U-shaped mounting plate, a cylinder, a U-shaped connecting plate, and a strip limit plate. The lower part of the lower telescopic sleeve is connected to the bottom plate, a group of lower telescopic sleeves are distributed on the upper part of the bottom plate, the upper telescopic rod is adapted to the lower telescopic sleeve, the upper telescopic rod is inserted into the lower telescopic sleeve, the upper telescopic rod slides up and down in the lower telescopic sleeve, the upper part of the upper telescopic rod is connected to the operating platform, a group of upper telescopic rods are distributed at the bottom of the operating platform, a group of upper telescopic rods are connected to both ends of the U-shaped connecting plate, the bottom of the U-shaped connecting plate has a connecting plate convex plate, the lower part of the U-shaped mounting plate is connected to the bottom plate, the cylinder is connected to the cylinder by bolts, and the cylinder piston rod passes through the U-shaped mounting plate to connect to the connecting plate convex plate.
[0006] The side of the operating platform is provided with platform side baffles, which are symmetrically arranged on both sides of the operating platform. The lower surface of the operating platform is in contact with the telescopic lower plate, which is symmetrically arranged on both sides of the operating platform. The telescopic lower plate has telescopic side plates, and the platform side baffles are adapted to the telescopic side plates. The platform side baffles are inserted into the telescopic side plates, and the platform side baffles slide in the telescopic side plates.
[0007] The upper part of the positioning support plate is connected to the operating platform, and a group of positioning support plates are distributed at the bottom of the operating platform. The lower surface of the telescopic lower plate is in contact with the positioning support plate. The bottom of the telescopic lower plate is provided with a strip-shaped limiting plate, and the strip-shaped limiting plate has a strip-shaped giving hole. The bottom of the operating platform is provided with a circular boss, and the rotating top plate has a top plate convex plate, which is connected to the circular boss shaft.
[0008] The side surfaces of the rotating top plate are connected to the side connecting plates, which are symmetrically arranged on both sides of the rotating top plate. The side connecting plates are adapted to the strip-shaped clearance holes, and the side connecting plates are inserted into the strip-shaped clearance holes. The side connecting plates slide in the strip-shaped clearance holes. The side connecting plates have a No. 2 top column, and the No. 2 top column fits with the strip limiting plate. The side connecting plates are connected to the No. 1 top column, and the strip limiting plate fits with the No. 1 top column. The No. 2 top column and the No. 1 top column have the same diameter. Beneficial effects
[0009] The cam is fixed on the bottom of the operating platform, and the cam is fixed on the bottom of the operating platform, and the cam is fixed on the bottom of the operating platform, and the cam is fixed on the bottom of the operating platform, and the cam is fixed on the bottom of the operating platform.
[0010] 2. The top plate convex plate of the utility model is connected to the circular boss shaft, the top plate convex plate is rotatable, the side connecting plate is installed and fixed on the side of the rotating top plate, the side connecting plate passes through the strip-shaped clearance hole to connect the No. 1 top column, so that the two ends of the rotating top plate are connected to the strip limit plate, and the two sides of the rotating top plate are connected to the symmetrical strip limit plates through the No. 1 top column and the No. 2 top column, and the rotation of the rotating top plate drives the symmetrical telescopic lower plates to move in opposite directions at the same time. When the operating platform needs to be widened, the telescopic lower plate is pulled outward, so that the symmetrical telescopic lower plates move open at the same time to increase the use area of the operating platform. This device is used in the energy-saving transformation of purification air conditioners, and the air conditioner is disassembled and modified on this device. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 This is a top axonometric drawing of a purification air-conditioning energy-saving transformation device described in the utility model.
[0012] Figure 2This is a bottom-up axonometric drawing of a purification air-conditioning energy-saving transformation device described in the present utility model.
[0013] Figure 3 This is a front view of a purification air-conditioning energy-saving transformation device described in the utility model.
[0014] Figure 4 This is a side view of a purification air-conditioning energy-saving transformation device described in the utility model.
[0015] Figure 5 This is a bottom sectional view of a purification air-conditioning energy-saving transformation device described in the utility model. DETAILED DESCRIPTION
[0016] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments:
[0017] Example 1:
[0018] A purification air conditioner energy-saving transformation device includes an operating platform 01, a telescopic lower plate 03, a positioning support plate 05, an upper telescopic rod 06, a lower telescopic sleeve 07, a bottom plate 08, a U-shaped mounting plate 09, a cylinder 10, a U-shaped connecting plate 11, and a strip limit plate 13. The lower telescopic sleeve 07 is connected to the bottom plate 08 at the bottom, a group of lower telescopic sleeves 07 are distributed on the upper part of the bottom plate 08, the upper telescopic rod 06 is adapted to the lower telescopic sleeve 07, the upper telescopic rod 06 is inserted into the lower telescopic sleeve 07, and the upper telescopic rod 06 slides up and down in the lower telescopic sleeve 07. The upper part of the upper telescopic rod 06 is connected to the operating platform 01, a group of upper telescopic rods 06 are distributed at the bottom of the operating platform 01, and the upper telescopic rod 06 and the lower telescopic sleeve 07 form a telescopic rod. The upper and lower ends of the telescopic rod are respectively connected to the operating platform 01 and the bottom plate 08, so that the bottom plate 08 is connected to the group of telescopic rods. While supporting the operating platform 01, the operating platform 01 can slide up and down, so that the operating platform 01 can be lifted and lowered. A group of upper telescopic rods 06 are connected to both ends of the U-shaped connecting plate 11. The two telescopic rods are connected through the U-shaped connecting plate 11, so that the upper telescopic rods 06 distributed on the left and right can be extended and retracted at the same time. The bottom of the U-shaped connecting plate 11 has a connecting plate convex plate 12, and the lower part of the U-shaped mounting plate 09 is connected to the bottom plate 08. The cylinder 10 is connected to the cylinder 10 by bolts, and the piston rod of the cylinder 10 passes through the U-shaped mounting plate 09 to connect the connecting plate convex plate 12. The U-shaped mounting plate 09 is installed and fixed on the bottom plate 08. The cylinder 10 is installed on the U-shaped mounting plate 09. The piston rod of the cylinder 10 passes through the U-shaped mounting plate 09 to connect the connecting plate convex plate 12, so that the cylinder 10 drives the U-shaped connecting plate 11 to move up and down during work, thereby controlling the lifting and lowering of the operating platform 01.
[0019] Example 2:
[0020] The operating platform 01 described in the present invention has platform side baffles 02 on the sides, and the platform side baffles 02 are symmetrically arranged on both sides of the operating platform 01. The lower surface of the operating platform 01 is in contact with the telescopic lower plate 03, and the telescopic lower plate 03 is symmetrically arranged on both sides of the operating platform 01. The telescopic lower plate 03 has telescopic side panels 04. The platform side baffles 02 are adapted to the telescopic side panels 04, and the platform side baffles 02 are inserted into the telescopic side panels 04. The platform side baffles 02 slide in the telescopic side panels 04, and the telescopic lower plate 03 is arranged on both sides of the operating platform 01. The platform side baffles 02 and the telescopic side panels 04 cooperate to protect the outside of the operating platform 01, so as to prevent the parts used for the energy-saving air-conditioning transformation from falling from the operating platform 01 during the energy-saving transformation of the purification air-conditioning.
[0021] Example 3:
[0022] The upper part of the positioning support plate 05 described in the present invention is connected to the operating platform 01, and a group of positioning support plates 05 are distributed at the bottom of the operating platform 01. The lower surface of the telescopic lower plate 03 is in contact with the positioning support plate 05. A group of positioning support plates 05 are installed and fixed to the bottom of the operating platform 01. The positioning support plate 05 ensures that the operating platform 01 and the telescopic lower plate 03 are in close contact, and prevents the two from being disconnected during the energy-saving transformation of the purification air conditioner. The bottom of the telescopic lower plate 03 has a strip-shaped limiting plate 13, and the strip-shaped limiting plate 13 has a strip-shaped giving hole 14. The bottom of the operating platform 01 has a circular boss 19, and the rotating top plate 15 has a top plate boss 20. The top plate boss 20 is connected to the circular boss 19 axis, and the top plate boss 20 is rotatable.
[0023] Example 4:
[0024] The utility model is provided with a side connecting plate 18 on the side of the rotating top plate 15, and the side connecting plate 18 is installed and fixed on the side of the rotating top plate 15. The side connecting plate 18 is symmetrically arranged on both sides of the rotating top plate 15, and the side connecting plate 18 is adapted to the strip-shaped hole 14. The side connecting plate 18 is inserted into the strip-shaped hole 14 and slides in the strip-shaped hole 14. The side connecting plate 18 has a No. 2 top column 17, and the No. 2 top column 17 fits with the strip limiting plate 13. The side connecting plate 18 is connected to the No. 1 top column 16, and the strip limiting plate 13 fits with the No. 1 top column 16. The No. 2 top column 17 and the No. 1 top column 16 have the same diameter. The plate 18 passes through the strip-shaped clearance hole 14 and is connected to the No. 1 top column 16, so that the two ends of the rotating top plate 15 are connected to the strip-shaped limit plate 13. The two sides of the rotating top plate 15 are connected to the symmetrical strip-shaped limit plates 13 through the No. 1 top column 16 and the No. 2 top column 17. The rotation of the rotating top plate 15 drives the symmetrical telescopic lower plates 03 to move in opposite directions at the same time. When the operating platform 01 needs to be widened, the telescopic lower plates 03 are pulled outward, so that the symmetrical telescopic lower plates 03 are moved and opened at the same time to increase the use area of the operating platform 01. This device is used in the energy-saving transformation of purification air conditioners, and the air conditioner is disassembled and modified on this device.
[0025] Example 5:
[0026] The installation steps of the utility model are as follows: first, connect the cylinder 10 to the U-shaped mounting plate 09 by bolts, connect the lower part of the U-shaped mounting plate 09 to the bottom plate 08, connect the two ends of the U-shaped connecting plate 11 to the upper telescopic rod 06, connect the lower telescopic sleeve 07 to the bottom plate 08, insert the upper telescopic rod 06 into the lower telescopic sleeve 07, connect the piston rod of the cylinder 10 to the connecting plate convex plate 12, connect the upper part of the upper telescopic rod 06 to the operating platform 01, pass the side connecting plate 18 through the strip-shaped clearance hole 14 to the No. 1 top column 16, connect the top plate convex plate 20 to the circular boss 19 axis, connect the side of the rotating top plate 15 to the side connecting plate 18, insert the platform side baffle 02 into the telescopic side plate 04, and connect the upper part of the positioning support plate 05 to the operating platform 01.
[0027] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that ordinary technicians in this technical field can make several improvements and modifications without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A purification air conditioning energy-saving transformation device, characterized by : It includes an operating platform (01), a telescopic lower plate (03), a positioning support plate (05), an upper telescopic rod (06), a lower telescopic sleeve (07), a bottom plate (08), a U-shaped mounting plate (09), a cylinder (10), a U-shaped connecting plate (11), and a strip-shaped limiting plate (13). The lower telescopic sleeve (07) is connected to the bottom plate (08) at the bottom, a group of lower telescopic sleeves (07) are distributed on the upper part of the bottom plate (08), the upper telescopic rod (06) is adapted to the lower telescopic sleeve (07), the upper telescopic rod (06) is inserted into the lower telescopic sleeve (07), and the upper telescopic The rod (06) slides up and down in the lower telescopic sleeve (07), the upper telescopic rod (06) is connected to the operating platform (01) at the upper end, a group of upper telescopic rods (06) are distributed at the bottom of the operating platform (01), the two ends of the U-shaped connecting plate (11) are connected to the group of upper telescopic rods (06), the bottom of the U-shaped connecting plate (11) has a connecting plate convex plate (12), the lower part of the U-shaped mounting plate (09) is connected to the bottom plate (08), the cylinder (10) is connected to the cylinder (10) by bolts, and the piston rod of the cylinder (10) passes through the U-shaped mounting plate (09) and is connected to the connecting plate convex plate (12).
2. A purification air conditioning energy-saving transformation device according to claim 1, characterized in that The operating platform (01) has a platform side baffle (02) on the side, the platform side baffle (02) is symmetrically arranged on both sides of the operating platform (01), the lower surface of the operating platform (01) is in contact with the telescopic lower plate (03), the telescopic lower plate (03) is symmetrically arranged on both sides of the operating platform (01), the telescopic lower plate (03) has a telescopic side plate (04), the platform side baffle (02) is adapted to the telescopic side plate (04), the platform side baffle (02) is inserted into the telescopic side plate (04), and the platform side baffle (02) slides in the telescopic side plate (04).
3. A purification air conditioning energy-saving transformation device according to claim 2, characterized in that The upper portion of the positioning support plate (05) is connected to the operating platform (01), a group of positioning support plates (05) are distributed at the bottom of the operating platform (01), the lower surface of the telescopic lower plate (03) is in contact with the positioning support plate (05), the bottom of the telescopic lower plate (03) has a strip-shaped limiting plate (13), the strip-shaped limiting plate (13) has a strip-shaped giving hole (14), the bottom of the operating platform (01) has a circular boss (19), the rotating top plate (15) has a top plate convex plate (20), and the top plate convex plate (20) is axially connected to the circular boss (19).
4. A purification air conditioning energy-saving transformation device according to claim 3, characterized in that : The side of the rotating top plate (15) is connected to the side connecting plate (18), the side connecting plate (18) is symmetrically arranged on both sides of the rotating top plate (15), the side connecting plate (18) is adapted to the strip-shaped clearance hole (14), the side connecting plate (18) is inserted into the strip-shaped clearance hole (14), and the side connecting plate (18) slides in the strip-shaped clearance hole (14).
5. A purification air conditioning energy-saving transformation device according to claim 3, characterized in that : The side connecting plate (18) has a No. 2 top column (17), the No. 2 top column (17) is fitted with the strip limiting plate (13), the side connecting plate (18) is connected to the No. 1 top column (16), the strip limiting plate (13) is fitted with the No. 1 top column (16), and the No. 2 top column (17) and the No. 1 top column (16) have the same diameter.
Citation Information
Patent Citations
Noise reduction transformation device of energy-saving air conditioner
CN220103393U