Air conditioner fan blade waste recovery device
By designing an air-conditioning fan blade waste recycling device, using a rotating disk, a fixing frame, a driving mechanism, an adsorption mechanism and a cutting mechanism, the automatic cutting and recycling of air-conditioning fan blade waste is realized, which solves the problem of time-consuming and labor-intensive manual cleaning and improves work efficiency.
Patent Information
- Application Number
- CN202422173657.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-09-04
AI Technical Summary
When removing waste from existing air conditioner fan blades, the waste is scattered all over the floor and needs to be cleaned manually, which is time-consuming and labor-intensive.
A waste recycling device for air conditioner fan blades is designed, which includes a workbench, a rotating disk, a fixing frame, a driving mechanism, an adsorption mechanism, a cutting mechanism and a recycling mechanism. Through the coordinated work of these mechanisms, the waste can be automatically cut and recycled, and the finished products can be collected.
It realizes the automatic cutting and recycling of waste materials, reduces the time and labor intensity of manual cleaning, and improves work efficiency.
Smart Images

Figure CN223383526U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air-conditioning cross-flow fan blade processing equipment, in particular to an air-conditioning fan blade waste recovery device. Background Art
[0002] Crossflow impellers are typically made of aluminum alloy or engineering plastic. Aluminum alloy impellers are strong, lightweight, and heat-resistant, enabling them to maintain stable operation for extended periods without deformation. Plastic impellers are injection molded and ultrasonically welded, and are generally used in lower speed applications and have larger diameters.
[0003] After the cross-flow fan blades are formed into products through injection molding, they need to be transferred to a waste removal device to remove excess waste to form the final product. Currently, the waste generated by common products during waste removal is directly scattered on the ground and can only be cleaned by staff, which is time-consuming and labor-intensive. Utility Model Content
[0004] In order to solve the above problems, the utility model adopts the following technical solutions: an air conditioner fan blade waste recovery device, comprising: a workbench, a rotating disk, a fixing frame, a first driving mechanism, a second driving mechanism, an adsorption mechanism, a cutting mechanism and a recovery mechanism;
[0005] A rotating motor is provided on one surface of the workbench, an output shaft of the rotating motor passes through the workbench and is connected to the rotating disk, the fixing frame is provided on the workbench, the first driving mechanism and the second driving mechanism are both provided on the workbench, the adsorption mechanism is provided on the workbench, and a part of the adsorption mechanism is movably located above the rotating disk and the fixing frame;
[0006] The cutting mechanism is arranged on the adsorption mechanism, and the recovery mechanism is spaced apart from the workbench.
[0007] Furthermore, the fixing frame is provided with two through-holes, and the two through-holes are provided at intervals.
[0008] Furthermore, the first driving mechanism includes a first driving cylinder, a second driving cylinder, a mounting plate, a connecting rod, two support rods and two support plates, the first driving cylinder is arranged on the workbench, the air rod of the first driving cylinder drives the mounting plate, the second driving cylinder is arranged on the mounting plate, the air rod of the second driving cylinder is connected to the connecting rod, one of the support rods is arranged at one end of the connecting rod, and the other support rod is arranged at the other end of the connecting rod, each of the support rods is connected to one of the support plates at one end away from the connecting rod, and each of the support plates moves through one of the through holes.
[0009] Furthermore, the second driving mechanism includes a third driving cylinder and a push plate. The third driving cylinder is arranged on the workbench, and the gas rod of the third driving cylinder is connected to the push plate.
[0010] Furthermore, the adsorption mechanism includes a support frame, a fourth driving cylinder, a fifth driving cylinder, two first adsorbents and two second adsorbents, the support frame is arranged on the workbench, the fourth driving cylinder is arranged on the support frame, the gas rod of the fourth driving cylinder drives a connecting block, the fifth driving cylinder is arranged on the connecting block, the gas rod of the fifth driving cylinder drives a connecting plate, the two first adsorbents are arranged at one end of the connecting plate, and the two second adsorbents are arranged at the other end of the connecting plate.
[0011] Furthermore, the two first absorbers are electric suction cups.
[0012] Furthermore, the two second absorbers are electric suction cups.
[0013] Furthermore, the cutting mechanism includes two annular cutting knives, and each of the annular cutting knives is arranged on the outside of the second adsorber.
[0014] Furthermore, the recycling mechanism includes a recycling rack, a first inclined plate, a second inclined plate, a recycling box and a finished product box. The recycling rack is arranged on one side of the workbench, the first inclined plate and the second inclined plate are both arranged on the recycling rack, and the first inclined plate is located above the second inclined plate, the end of the first inclined plate away from the workbench is connected to the recycling box, and the end of the second inclined plate away from the workbench is connected to the finished product box.
[0015] Furthermore, the recycling box and the finished product box are both detachably connected to the recycling rack.
[0016] The beneficial effects of the utility model are: using this air-conditioning fan blade waste recycling device, through the cooperation between the rotating disk, the fixing frame, the first drive mechanism, the second drive mechanism, the adsorption mechanism, the cutting mechanism and the recycling mechanism, the waste of the air-conditioning fan blades can be directly recycled after being cut, and the finished products can be collected at the same time. It is simple and convenient to use, saving time and effort. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The accompanying drawings further illustrate the present invention, but the embodiments in the accompanying drawings do not constitute any limitation to the present invention.
[0018] Figure 1 A schematic diagram of the overall structure of an air conditioner fan blade waste recycling device provided by one embodiment;
[0019] Figure 2A schematic diagram of one direction of a rotating disk provided by an embodiment;
[0020] Figure 3 A partial cross-sectional view in one direction of a first driving mechanism provided by an embodiment;
[0021] Figure 4 A schematic diagram of the positional relationship between the second adsorber and the annular cutting blade provided in one embodiment. DETAILED DESCRIPTION
[0022] The following will further describe the technical solution of the present invention in conjunction with the drawings of the embodiments of the present invention. The present invention is not limited to the following specific implementation methods. It should be noted that the embodiments of the present invention and the features in the embodiments can be combined with each other without conflict.
[0023] like Figures 1 to 4 As shown, a waste recycling device for air-conditioning fan blades includes: a workbench 100, a rotating disk 200, a fixing frame 300, a first driving mechanism, a second driving mechanism, an adsorption mechanism, a cutting mechanism and a recycling mechanism; a rotating motor 110 is arranged on one surface of the workbench 100, and the output shaft of the rotating motor 110 passes through the workbench 100 and is connected to the rotating disk 200, the fixing frame 300 is arranged on the workbench 100, the first driving mechanism and the second driving mechanism are both arranged on the workbench 100, the adsorption mechanism is arranged on the workbench 100, and the adsorption mechanism is partially movably located above the rotating disk 200 and the fixing frame 300; the cutting mechanism is arranged on the adsorption mechanism, and the recycling mechanism is spaced apart from the workbench 100.
[0024] Specifically, two through-holes are provided on the fixing frame 300, and the two through-holes are provided at intervals. The first driving mechanism includes a first driving cylinder 410, a second driving cylinder 420, a mounting plate 430, a connecting rod 440, two support rods 450, and two support plates 460. The first driving cylinder 410 is provided on the workbench 100, and the air rod of the first driving cylinder 410 drives the mounting plate 430. The second driving cylinder 420 is provided on the mounting plate 430. The air rod of the second driving cylinder 420 is connected to the connecting rod 440. One support rod 450 is provided at one end of the connecting rod 440, and another support rod 450 is provided at the other end of the connecting rod 440. Each support rod 450 is connected to a support plate 460 at one end away from the connecting rod 440, and each support plate 460 is movable through one of the through-holes. The second drive mechanism includes a third drive cylinder 510 and a push plate 520. The third drive cylinder 510 is mounted on the workbench 100, and the air rod of the third drive cylinder 510 is connected to the push plate 520. The suction mechanism includes a support frame 610, a fourth drive cylinder 620, a fifth drive cylinder 630, two first suction elements 640, and two second suction elements 650. The support frame 610 is mounted on the workbench 100, the fourth drive cylinder 620 is mounted on the support frame 610, the air rod of the fourth drive cylinder 620 drives a connecting block 621, the fifth drive cylinder 630 is mounted on the connecting block 621, and the air rod of the fifth drive cylinder 630 drives a connecting plate 631. The two first suction elements 640 are mounted on one end of the connecting plate 631, and the two second suction elements 650 are mounted on the other end of the connecting plate 631. Furthermore, the two first suction elements 640 are electric suction cups. The two second suction devices 650 are electric suction cups.
[0025] In the above embodiment, the cutting mechanism includes two annular cutting blades 700, each of which is disposed on the outside of a second adsorber 650. The recycling mechanism includes a recycling rack 810, a first inclined plate 820, a second inclined plate 830, a recycling box 840, and a finished product box 850. The recycling rack 810 is disposed on one side of the workbench 100. The first inclined plate 820 and the second inclined plate 830 are both disposed on the recycling rack 810, and the first inclined plate 820 is located above the second inclined plate 830. The end of the first inclined plate 820 away from the workbench 100 is connected to the recycling box 840, and the end of the second inclined plate 830 away from the workbench 100 is connected to the finished product box 850. The recycling box 840 and the finished product box 850 are both detachably connected to the recycling rack 810.
[0026] Using this air-conditioning fan blade waste recycling device, the air-conditioning fan blades that have been injection-molded by the injection molding machine are transported from the outside to the rotating disk 200. Specifically, a plurality of placement seats 210 are provided on the rotating disk 200, and the placement seats 210 are used to place the air-conditioning fan blades, that is, the air-conditioning fan blades are transported toward the cutting mechanism through the rotating disk 200. Furthermore, every two placement seats 210 are arranged at intervals. That is, when rotated to the bottom of the adsorption mechanism, the two placement seats 210 are simultaneously located below the two first adsorbents 640. When the placement seat 210 with the air-conditioning fan blades rotates to the bottom of the first adsorbent 640, the fifth driving cylinder 630 drives the connecting plate 631 to move downward, that is, the two first adsorbents 640 move downward, and eventually each first adsorbent 640 abuts against an air-conditioning fan blade, and then by starting the two first adsorbents 640, the air-conditioning fan blades are adsorbed respectively. After the adsorption is complete, the fifth drive cylinder 630 drives the connecting plate 631 upward, at which point the air conditioner fan blades are adsorbed from the placement seat 210. Then, by activating the fourth drive cylinder 620, the fourth drive cylinder 620 drives the entire fifth drive cylinder 630 toward the fixing frame 300. Simultaneously, the first drive cylinder 410 drives the mounting plate 430 toward the fixing frame 300, until the mounting plate 430 abuts the fixing frame 300. The first drive cylinder 410 stops driving, and the second drive cylinder 420 is activated. The second drive cylinder 420 retracts, driving the connecting rod 440 upward, thereby causing the two support rods 450 to move upward. In other words, each support rod 450 drives a support plate 460 through a through-hole. When the second drive cylinder 420 is retracted to its topmost position, it stops operating. At this point, the two first absorbers 640 are just above the two support plates 460. The fifth drive cylinder 630 drives the connecting plate 631 downward, placing the two air-conditioning blades on the two support plates 460. The two first absorbers 640 no longer absorb the air-conditioning blades. The fifth drive cylinder 630 then drives the connecting plate 631 upward again, and the fourth drive cylinder 620 drives the two first absorbers 640 back to above the rotating disk 200. It is worth noting that when the fifth drive cylinder 630 drives the connecting plate 631 downward again, the two first absorbers 640 abut against the two air-conditioning blades on the rotating disk 200, and the two second absorbers 650 abut against the air-conditioning blades on the two support plates 460. Before these abutments occur, the two annular cutting blades 700 have already cut the air-conditioning blades, i.e., removed the waste from the air-conditioning blades. At this time, each second adsorber 650 abuts against the waste.When the two first adsorbers 640 are started, the two second adsorbers 650 are also started. After adsorption, the fifth driving cylinder 630 drives the connecting plate 631 to move upwards. That is, the two first adsorbers 640 adsorb two new air-conditioning fan blades, and the two second adsorbers 650 adsorb two waste materials. When the fourth driving cylinder 620 drives the fifth driving cylinder 630 to move toward the fixing frame 300, the first driving cylinder 410 drives the mounting plate 430 to move downwards, and then the second driving cylinder 420 drives the connecting rod 440 to move downwards, so that the connecting rod 440 drives the two supporting plates 300 to move downwards. The support rod 450 moves downward, and eventually the two support plates 460 no longer support the two air-conditioning fan blades, that is, the air-conditioning fan blades are directly located on the mounting plate 430. By starting the third drive cylinder 510, the third drive cylinder 510 drives the push plate 520 to move toward the mounting plate 430, and eventually pushes the two air-conditioning fan blades to the second inclined plate 830. After pushing, the third drive cylinder 510 drives the push plate 520 to return to its initial position, and then the first drive cylinder 410 and the second drive cylinder 420 repeat the above operation, ready to re-support the two new air-conditioning fan blades. That is to say, when the two new air-conditioning fan blades are placed on the two support plates 460, the waste adsorbed by the two second adsorbers 650 is located on the first inclined plate 820. At this time, the two second adsorbers 650 no longer adsorb the waste, and the waste falls directly onto the first inclined plate 820 and falls into the recovery box 840 along the first inclined plate 820. The two air-conditioning fan blades pushed down by the push plate 520 fall into the finished product box 850 along the second inclined plate 830.
[0027] In summary, the above embodiments are not limitative embodiments of the present invention, and any modifications or equivalent variations made by those skilled in the art based on the essential content of the present invention are within the technical scope of the present invention.
Claims
1. An air conditioner fan blade waste recycling device, characterized in that: include: A workbench, a rotating disk, a fixing frame, a first driving mechanism, a second driving mechanism, an adsorption mechanism, a cutting mechanism, and a recovery mechanism; A rotating motor is provided on one surface of the workbench, an output shaft of the rotating motor passes through the workbench and is connected to the rotating disk, the fixing frame is provided on the workbench, the first driving mechanism and the second driving mechanism are both provided on the workbench, the adsorption mechanism is provided on the workbench, and a part of the adsorption mechanism is movably located above the rotating disk and the fixing frame; The cutting mechanism is arranged on the adsorption mechanism, and the recovery mechanism is spaced apart from the workbench.
2. The air conditioner fan blade waste recycling device according to claim 1, characterized in that: The fixing frame is provided with two through holes, and the two through holes are provided at intervals.
3. The air conditioner fan blade waste recycling device according to claim 2, characterized in that: The first driving mechanism includes a first driving cylinder, a second driving cylinder, a mounting plate, a connecting rod, two support rods and two support plates. The first driving cylinder is arranged on the workbench, and the air rod of the first driving cylinder drives the mounting plate. The second driving cylinder is arranged on the mounting plate. The air rod of the second driving cylinder is connected to the connecting rod. One support rod is arranged at one end of the connecting rod, and the other support rod is arranged at the other end of the connecting rod. Each support rod is connected to one support plate at one end away from the connecting rod, and each support plate moves through one through-hole.
4. The air conditioner fan blade waste recycling device according to claim 3, characterized in that: The second driving mechanism includes a third driving cylinder and a push plate. The third driving cylinder is arranged on the workbench, and the gas rod of the third driving cylinder is connected to the push plate.
5. The air conditioner fan blade waste recycling device according to claim 4, characterized in that: The adsorption mechanism includes a support frame, a fourth driving cylinder, a fifth driving cylinder, two first adsorbents and two second adsorbents. The support frame is arranged on the workbench, the fourth driving cylinder is arranged on the support frame, the air rod of the fourth driving cylinder drives a connecting block, the fifth driving cylinder is arranged on the connecting block, the air rod of the fifth driving cylinder drives a connecting plate, the two first adsorbents are arranged at one end of the connecting plate, and the two second adsorbents are arranged at the other end of the connecting plate.
6. The air conditioner fan blade waste recycling device according to claim 5, characterized in that: The two first absorbers are electric suction cups.
7. The air conditioner fan blade waste recycling device according to claim 6, characterized in that: The two second suction devices are electric suction cups.
8. The air conditioner fan blade waste recycling device according to claim 7, characterized in that: The cutting mechanism includes two annular cutting knives, and each of the annular cutting knives is arranged on the outside of the second adsorber.
9. The air conditioner fan blade waste recycling device according to claim 8, characterized in that: The recycling mechanism includes a recycling rack, a first inclined plate, a second inclined plate, a recycling box and a finished product box. The recycling rack is arranged on one side of the workbench. The first inclined plate and the second inclined plate are both arranged on the recycling rack, and the first inclined plate is located above the second inclined plate. The end of the first inclined plate away from the workbench is connected to the recycling box, and the end of the second inclined plate away from the workbench is connected to the finished product box.
10. The air conditioner fan blade waste recycling device according to claim 9, characterized in that: The recycling box and the finished product box are both detachably connected to the recycling rack.