Twenty-four-channel tape storage mechanism for edge sealing process
By designing a 24-channel belt storage mechanism, the problem of limited color selection of material storage devices in the traditional edge sealing machine process is solved, and the automatic storage and delivery of multi-color side belts is realized, which improves production efficiency and stability.
Patent Information
- Application Number
- CN202422298210.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-20
AI Technical Summary
The material storage device of the traditional edge sealing machine process can only place a few sidebands of patterns, which cannot meet the needs of multiple patterns, resulting in low production efficiency and frequent replacement or replenishment during mass production.
A twenty-four channel belt storage mechanism is designed, including a top-down storage device. Through the combination of the top-down silo and the bottom-up silo, the side-down silo is realized simultaneously and automatically switched, and the side-down silo is used to realize the automatic sending and pressing of the side-down silo is achieved by using components such as photoelectric switches and nylon guide wheels.
Improve production efficiency, reduce frequent material replacement or feeding time during different orders or large-scale production, and ensure the stability of sideband supply and production continuity.
Smart Images

Figure CN223173196U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of edge banding machines, and particularly relates to a twenty-four-channel tape storage mechanism for an edge banding process. Background Art
[0002] In the woodworking industry, especially in the panel edge banding process, the edge banding process can ensure the aesthetics of panel furniture. Through edge banding processing, the tabletop of furniture not only looks fashionable and beautiful, but also gives people a smooth and comfortable feeling during use, avoiding possible cuts during use. The edge banding process can also increase the aesthetic value of furniture and achieve a beautifying effect. Edge banding is an essential process in the production of panel furniture, and its functions include protecting the base material, preventing moisture from entering, sealing the release of harmful gases, and enhancing the stability of the product, etc. The edge banding process can further improve the stability and firmness of the board, and effectively slow down the time of wear and tear of the surface layer of artificial boards, thereby extending the service life of the board and the cabinet.
[0003] However, the traditional edge banding process has the following disadvantages:
[0004] The storage device of the traditional edge banding machine process generally can only place a few types of colored edge bands at a time. However, in the case of an increasing number of edge banding colors and an increasing number of customer choices for edge banding colors, the edge banding tapes in the storage device can only be frequently replaced according to production orders, which is not conducive to improving production efficiency; in addition, in the case of mass production, the edge banding tapes are consumed quickly, and the operator needs to frequently replenish the materials, which also affects the production efficiency. Content of the Utility Model
[0005] The purpose of the utility model is to provide a twenty-four-channel tape storage mechanism for an edge banding process to solve the problems raised in the above background art that the storage device of the traditional edge banding machine process generally can only place a few types of colored edge bands at a time. However, in the case of an increasing number of edge banding colors and an increasing number of customer choices for edge banding colors, the edge banding tapes in the storage device can only be frequently replaced according to production orders, which is not conducive to improving production efficiency; in addition, in the case of mass production, the edge banding tapes are consumed quickly, and the operator needs to frequently replenish the materials, which also affects the production efficiency.
[0006] To achieve the above object, the present utility model provides the following technical solutions: A twenty-four-channel tape storage mechanism for edge banding process, including a tape storage mechanism, the tape storage mechanism includes an upper storage device and a lower storage device, the bottom end of the upper storage device is connected to the top end of the lower storage device, the upper storage device includes an upper bin fixing frame and an upper bin fixing pipe, both ends of the upper bin fixing pipe are respectively fixedly connected to both sides of the inner wall of the upper bin fixing frame, a plurality of upper bins are fixedly installed on the surface of the upper bin fixing pipe, on both sides of the two upper bins located on the side, there are fixedly installed upper bin tape pressing frames on the opposite sides, the lower storage device includes a lower bin fixing frame and a lower bin fixing pipe, both sides of the inner wall of the lower bin fixing frame are respectively fixedly connected to both ends of the lower bin fixing pipe, a plurality of lower bins are installed on one side of the lower bin fixing pipe, a first triangular frame is fixedly installed on one side of the lower bin fixing frame, a second triangular frame is fixedly installed on the other side of the lower bin fixing frame, on both sides of the two lower bins located on the side, there are fixedly installed lower bin tape pressing frames on the opposite sides.
[0007] Preferably, a plurality of first wear-resistant strips are laid on the surface of the upper bin fixing pipe, and a plurality of second wear-resistant strips are laid on the surface of the lower bin fixing pipe.
[0008] Preferably, a plurality of the upper bins all include an upper bin fixing plate and an upper bin main body, a first return shaft sleeve is rotatably connected inside the upper bin fixing plate, the middle of the first return shaft sleeve is connected to the side of the upper bin main body facing each other, a first tape limiting block is installed at the bottom end of the other side of the upper bin main body, a first tape limiting block sliding shaft is slidably connected in the middle of the first tape limiting block, a first discharge guide wheel mechanism is installed at the bottom end of the first tape limiting block on the upper bin main body, a first photoelectric switch group is installed on the upper bin main body on one side of the displaced first tape limiting block, a plurality of first nylon guide wheels are fixedly installed on the other side of the upper bin main body, a first belt shoulder pin is installed in the middle of each of the plurality of first nylon guide wheels, the bottom ends of the plurality of upper bin fixing plates are all connected to the upper bin fixing pipe. Taking the upper bin main body as the main body, a first nylon guide wheel is fixed thereon through a first belt shoulder pin, the first return shaft sleeve is fixed inside the upper bin fixing plate and then fixed to the upper bin main body, the first side belt wheel shaft and the first tape limiting block sliding shaft are fixed to the upper bin main body, the first tape limiting block is fixed on the first tape limiting block sliding shaft, the first discharge guide wheel mechanism is installed on the back of the upper bin main body, and finally the first photoelectric switch group and the first side belt disc are installed in sequence.
[0009] Preferably, both of the upper bin tape pressing frames include a first side belt disc and a first side belt wheel shaft, one side of the first side belt disc is connected to one end of the first side belt wheel shaft, and the other side of the first side belt disc is connected to the facing upper bin.
[0010] Preferably, a plurality of the blanking bins each include a blanking bin fixing plate and a blanking bin body. A second rotating shaft sleeve is installed in the middle of the blanking bin fixing plate. The middle of the second rotating shaft sleeve is connected to one side of the blanking bin body. The top of the other side of the blanking bin body is equipped with a second discharge guide wheel mechanism. A second belt limiting block is installed on the blanking bin body below the second discharge guide wheel mechanism. A second belt limiting block sliding shaft is slidably connected to the middle of the second belt limiting block. A second photoelectric switch group is fixedly installed at the bottom end of the other side of the blanking bin body. A plurality of second nylon guide wheels are fixedly installed on the other side of the blanking bin body. A second shoulder shaft pin is installed inside each of the plurality of second nylon guide wheels. Each of the two blanking bin belt pressing frames includes a second side belt wheel shaft and a second side belt disc. One side of the second side belt disc is connected to the second side belt wheel shaft, and the other side of the second side belt disc is connected to the blanking bin. The blanking bin body is the main body, on which second nylon guide wheels are fixed through second shoulder shaft pins, the second rotating shaft sleeve is fixed on the blanking bin fixing plate and then fixed to the blanking bin body, the second side belt wheel shaft and the second belt limiting block sliding shaft are fixed to the blanking bin body, the second belt limiting block is fixed on the second belt limiting block sliding shaft, the second discharge guide wheel mechanism is installed on the back of the blanking bin body, and finally the second photoelectric switch group and the second side belt disc are installed in sequence.
[0011] Preferably, one end of the blanking bin fixing frame is fixedly installed with a front bin fixing frame. A blanking bin clamping plate is fixedly installed at the top of the front bin fixing frame. Blanking wheel group fixing plates are fixedly installed in the middle of the first triangular frame and the middle of the second triangular frame respectively. A discharge wheel guide shaft is rotatably connected to the top between the two blanking wheel group fixing plates. A plurality of blanking bin discharge guide wheels are rotatably connected to the surface of the discharge wheel guide shaft. A discharge wheel limiting shaft is rotatably connected to the bottom between the two blanking wheel group fixing plates. Support plates are fixedly installed at the bottom ends of one side of the first triangular frame and the bottom ends of one side of the second triangular frame respectively. Connecting shaft plates are installed at one ends of the two support plates respectively. A material blocking shaft is rotatably connected between the two connecting shaft plates. Twelve groups of blanking bins are connected in series through blanking bin fixing pipes and installed on a frame composed of the first triangular frame, the second triangular frame, the blanking bin fixing frame, the front bin fixing frame, the second wear-resistant strip, and the blanking bin clamping plate. Among them, directional wheels, universal wheels, and foot cups are respectively installed on the front and back of the first triangular frame and the second triangular frame. Blanking wheel group fixing plates, support plates, and connecting shaft plates are symmetrically installed on both sides of the frame. The material blocking shaft is connected to the connecting shaft plate. The discharge wheel limiting shaft is fixed to the blanking wheel group fixing plate. Finally, the twelve blanking bin discharge guide wheels are sequentially connected in series through the discharge wheel guide shaft and then fixed to the blanking wheel group fixing plate.
[0012] Preferably, foot cups are fixedly installed on both sides of the bottom ends of the first triangular frame and both sides of the bottom ends of the second triangular frame. Two universal wheels and two directional wheels are respectively fixedly installed at the bottom ends of the first triangular frame and the bottom ends of the second triangular frame.
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0014] Fixed to the edge banding machine, during the normal processing of workpieces, they are cut by a cutting saw; the forward feeding stop is used for calibration; a separating agent and a cleaner are sprayed; the pre-milling unit cuts and mills straight; then in the subsequent processes, glue is applied; for edge banding and pressing, this device mainly completes the process of sending out the corresponding edge banding through the tape feeding unit when the edge banding reaches the pressing position, waiting for the workpiece to come, and then completing the entire process of edge banding and fitting through pressing;
[0015] The number of bins is increased and stacked vertically, enabling more different colored edge banding materials to be placed on a single storage device or filling the storage device with edge banding strips during mass production, reducing the time required for frequent material change or replenishment due to different order requirements and mass production, and greatly improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 One of the three-dimensional views of the tape storage mechanism of the present utility model;
[0017] Figure 2 Another three-dimensional view of the tape storage mechanism of the present utility model;
[0018] Figure 3 The three-dimensional view of the upper storage device of the present utility model;
[0019] Figure 4 The front view of the upper bin of the present utility model;
[0020] Figure 5 The rear view of the upper bin of the present utility model;
[0021] Figure 6 One of the three-dimensional views of the lower storage device of the present utility model;
[0022] Figure 7 Another three-dimensional view of the lower storage device of the present utility model;
[0023] Figure 8 The front view of the lower bin of the present utility model;
[0024] Figure 9 The rear view of the lower bin of the present utility model.
[0025] In the figure: 1. Tape storage mechanism; 2. Upper storage device; 21. Upper storage bin fixing frame; 22. Upper storage bin fixing pipe; 23. Upper storage bin; 231. Upper storage bin main body; 232. First rotating shaft sleeve; 233. Upper storage bin fixing plate; 234. First photoelectric switch group; 235. First discharge guide wheel mechanism; 236. First belt limiting block sliding shaft; 237. First belt limiting block; 238. First nylon guide wheel; 239. First shoulder shaft pin; 24. Upper storage bin belt pressing frame; 241. First side belt pulley; 242. First side belt wheel shaft; 25. First wear-resistant strip; 3. Lower storage device; 301. First triangular frame; 302. Foot cup; 303. Lower storage bin; 30301. Lower storage bin main body; 30302. Lower storage bin fixing plate; 30303. Second rotating shaft sleeve; 30304. Second photoelectric switch group; 30305. Second belt limiting block; 30306. Second belt limiting block sliding shaft; 30307. Second discharge guide wheel mechanism; 30308. Second nylon guide wheel; 30309. Second shoulder shaft pin; 304. Second wear-resistant strip; 305. Lower storage bin fixing pipe; 306. Lower storage bin fixing frame; 307. Universal wheel; 308. Second triangular frame; 309. Directional wheel; 310. Discharge wheel guide shaft; 311. Discharge pulley group fixing plate; 312. Upper storage bin discharge guide wheel; 313. Discharge wheel limiting shaft; 314. Coupling plate; 315. Support plate; 316. Front fixing frame of storage bin; 317. Lower storage bin clamping plate; 318. Material blocking shaft; 319. Lower storage bin belt pressing frame; 3191. Second side belt wheel shaft; 3192. Second side belt pulley. Detailed implementation manners
[0026] 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.
[0027] Please refer to Figures 1-9, the utility model provides a twenty-four-channel tape storage mechanism for edge banding process, including a tape storage mechanism 1, the tape storage mechanism 1 includes an upper storage device 2 and a lower storage device 3, the bottom end of the upper storage device 2 is connected to the top end of the lower storage device 3, the upper storage device 2 includes an upper bin fixing frame 21 and an upper bin fixing pipe 22, both ends of the upper bin fixing pipe 22 are fixedly connected to both sides of the inner wall of the upper bin fixing frame 21 respectively, the surface of the upper bin fixing pipe 22 is fixedly installed with a plurality of upper bins 23, on both sides of the two upper bins 23 located on the side, there are fixedly installed upper bin tape pressing frames 24 respectively, the lower storage device 3 includes a lower bin fixing frame 306 and a lower bin fixing pipe 305, both sides of the inner wall of the lower bin fixing frame 306 are fixedly connected to both ends of the lower bin fixing pipe 305 respectively, one side of the lower bin fixing pipe 305 is installed with a plurality of lower bins 303, one side of the lower bin fixing frame 306 is fixedly installed with a first triangular frame 301, the other side of the lower bin fixing frame 306 is fixedly installed with a second triangular frame 308, on both sides of the two lower bins 303 located on the side, there are fixedly installed lower bin tape pressing frames 319 respectively.
[0028] A plurality of first wear-resistant strips 25 are laid on the surface of the upper bin fixing pipe 22, and a plurality of second wear-resistant strips 304 are laid on the surface of the lower bin fixing pipe 305.
[0029] A plurality of upper bins 23 all include an upper bin fixing plate 233 and an upper bin main body 231, a first return shaft sleeve 232 is rotatably connected inside the upper bin fixing plate 233, the middle part of the first return shaft sleeve 232 is connected to the side of the upper bin main body 231 opposite to it, the bottom end of the other side of the upper bin main body 231 is installed with a first tape limiting block 237, a first tape limiting block sliding shaft 236 is slidably connected to the middle part of the first tape limiting block 237, a first discharge guide wheel mechanism 235 is installed at the bottom end of the first tape limiting block 237 on the upper bin main body 231, a first photoelectric switch group 234 is installed on the upper bin main body 231 at the side of displacing the first tape limiting block 237, a plurality of first nylon guide wheels 238 are fixedly installed on the other side of the upper bin main body 231, a first shoulder shaft pin 239 is installed in the middle of each of the plurality of first nylon guide wheels 238, the bottom ends of the plurality of upper bin fixing plates 233 are all connected to the upper bin fixing pipe 22, taking the upper bin main body 231 as the main body, a first nylon guide wheel 238 is fixed on it through a first shoulder shaft pin 239, the first return shaft sleeve 232 is fixed inside the upper bin fixing plate 233 and then fixed to the upper bin main body 231, a first side belt wheel shaft 242 and a first tape limiting block sliding shaft 236 are fixed to the upper bin main body 231, the first tape limiting block 237 is fixed on the first tape limiting block sliding shaft 236, the first discharge guide wheel mechanism 235 is installed on the back of the upper bin main body 231, and finally the first photoelectric switch group 234 and a first side belt disc 241 are installed in sequence.
[0030] The two feeding bin belt pressing frames 24 both include a first side belt pulley 241 and a first side belt wheel shaft 242. One side of the first side belt pulley 241 is connected to one end of the first side belt wheel shaft 242, and the other side of the first side belt pulley 241 is connected to the feeding bin 23 facing it.
[0031] Each of the several discharging bins 303 includes a discharging bin fixing plate 30302 and a discharging bin main body 30301. A second rotating shaft sleeve 30303 is installed in the middle of the discharging bin fixing plate 30302. The middle of the second rotating shaft sleeve 30303 is connected to one side of the discharging bin main body 30301. At the top of the other side of the discharging bin main body 30301, a second discharging guide wheel mechanism 30307 is installed. A second belt limiting block 30305 is installed on the discharging bin main body 30301 below the second discharging guide wheel mechanism 30307. A second belt limiting block sliding shaft 30306 is slidably connected to the middle of the second belt limiting block 30305. A second photoelectric switch group 30304 is fixedly installed at the bottom end of the other side of the discharging bin main body 30301. Several second nylon guide wheels 30308 are fixedly installed on the other side of the discharging bin main body 30301. A second shoulder shaft pin 30309 is installed inside each of the several second nylon guide wheels 30308. Each of the two discharging bin belt pressing frames 319 includes a second side belt wheel shaft 3191 and a second side belt pulley 3192. One side of the second side belt pulley 3192 is connected to the second side belt wheel shaft 3191, and the other side of the second side belt pulley 3192 is connected to the discharging bin 303. The discharging bin main body 30301 is the main body, on which the second nylon guide wheels 30308 are fixed through the second shoulder shaft pins 30309, the second rotating shaft sleeve 30303 is fixed on the discharging bin fixing plate 30302 and then fixed to the discharging bin main body 30301, the second side belt wheel shaft 3191 and the second belt limiting block sliding shaft 30306 are fixed to the discharging bin main body 30301, the second belt limiting block 30305 is fixed on the second belt limiting block sliding shaft 30306, the second discharging guide wheel mechanism 30307 is installed on the back of the discharging bin main body 30301, and finally the second photoelectric switch group 30304 and the second side belt pulley 3192 are installed in sequence.
[0032] One end of the blanking bin fixing frame 306 is fixedly installed with a front bin fixing frame 316. The top of the front bin fixing frame 316 is fixedly installed with a blanking bin clamping plate 317. Belt output wheel group fixing plates 311 are fixedly installed in the middle of the first triangular frame 301 and the middle of the second triangular frame 308. The top end between the two belt output wheel group fixing plates 311 is rotatably connected with a blanking wheel guide shaft 310. A plurality of feeding bin blanking guide wheels 312 are rotatably connected to the surface of the blanking wheel guide shaft 310. The bottom end between the two belt output wheel group fixing plates 311 is rotatably connected with a blanking wheel limiting shaft 313. The bottom ends on one side of the first triangular frame 301 and the bottom ends on one side of the second triangular frame 308 are both fixedly installed with support plates 315. One end of each of the two support plates 315 is installed with a coupling plate 314. A material blocking shaft 318 is rotatably connected between the two coupling plates 314. Twelve blanking bins 303 are connected in series through blanking bin fixing pipes 305 and installed on a frame composed of the first triangular frame 301, the second triangular frame 308, the blanking bin fixing frame 306, the front bin fixing frame 316, the second wear-resistant strip 304, and the blanking bin clamping plate 317. Among them, directional wheels 309, universal wheels 307, and foot cups 302 are respectively installed on the front and back of the first triangular frame 301 and the second triangular frame 308. Belt output wheel group fixing plates 311, support plates 315, and coupling plates 314 are symmetrically installed on both sides of the frame. The material blocking shaft 318 is connected to the coupling plate 314. The blanking wheel limiting shaft 313 is fixed to the belt output wheel group fixing plate 311. Finally, the twelve feeding bin blanking guide wheels 312 are sequentially connected in series through the blanking wheel guide shaft 310 and fixed to the belt output wheel group fixing plate 311.
[0033] Foot cups 302 are fixedly installed on both sides of the bottom ends of the first triangular frame 301 and both sides of the bottom ends of the second triangular frame 308. Two universal wheels 307 and two directional wheels 309 are respectively fixedly installed at the bottom ends of the first triangular frame 301 and the second triangular frame 308.
[0034] When the embodiment of the present application is in use: The upper and lower layers cooperate to achieve the side belt exchange of twenty-four different channels. By using the belt changing mechanism on the belt feeding platform and cooperating with the detection mechanism for detecting the side belt state on the belt storage rack, the automatic action switching between each channel is realized. When the corresponding side belt is used up, the mechanism flips backward to implant a new side belt, replacing the side belt reel. The upper layer conveys the belt from top to bottom, and the lower layer conveys the belt from bottom to top, effectively ensuring that the belt outlet is at the same height as the platform. The side belt is hung in the middle and is pressed by the belt pressing frame to prevent it from spreading. At the same time, by adjusting its width, the switching of side belts at different heights is realized.
[0035] Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A twenty-four-channel tape storage mechanism for an edge banding process, comprising a tape storage mechanism (1), characterized in that: The tape storage mechanism (1) includes an upper storage device (2) and a lower storage device (3). The bottom end of the upper storage device (2) is connected to the top end of the lower storage device (3). The upper storage device (2) includes a feeding bin fixing frame (21) and a feeding bin fixing pipe (22). The two ends of the feeding bin fixing pipe (22) are respectively fixedly connected to the two sides of the inner wall of the feeding bin fixing frame (21). A number of feeding bins (23) are fixedly installed on the surface of the feeding bin fixing pipe (22). On the opposite sides of the two feeding bins (23) located on the sides, a feeding bin tape pressing frame (24) is fixedly installed on each side. The lower storage device (3) includes a discharging bin fixing frame (306) and a discharging bin fixing pipe (305). The two sides of the inner wall of the discharging bin fixing frame (306) are respectively fixedly connected to the two ends of the discharging bin fixing pipe (305). A number of discharging bins (303) are installed on one side of the discharging bin fixing pipe (305). A first triangular frame (301) is fixedly installed on one side of the discharging bin fixing frame (306), and a second triangular frame (308) is fixedly installed on the other side of the discharging bin fixing frame (306). On the opposite sides of the two discharging bins (303) located on the sides, a discharging bin tape pressing frame (319) is fixedly installed on each side.
2. The twenty-four-channel tape storage mechanism for edge banding process according to claim 1, characterized in that: A number of first wear-resistant strips (25) are laid on the surface of the feeding bin fixing pipe (22), and a number of second wear-resistant strips (304) are laid on the surface of the discharging bin fixing pipe (305).
3. A twenty-four-channel tape storage mechanism for an edge banding process according to claim 1, characterized in that: A number of the feeding bins (23) each include a feeding bin fixing plate (233) and a feeding bin main body (231). A first rotating shaft sleeve (232) is rotatably connected inside the feeding bin fixing plate (233). The middle of the first rotating shaft sleeve (232) is connected to the side of the feeding bin main body (231) facing it. A first tape limiting block (237) is installed at the bottom end of the other side of the feeding bin main body (231). A first tape limiting block sliding shaft (236) is slidably connected to the middle of the first tape limiting block (237). A first discharging guide wheel mechanism (235) is installed on the feeding bin main body (231) at the bottom end of the first tape limiting block (237). A first photoelectric switch group (234) is installed on the feeding bin main body (231) on one side of the displaced first tape limiting block (237). A number of first nylon guide wheels (238) are fixedly installed on the other side of the feeding bin main body (231). A first shoulder shaft pin (239) is installed in the middle of each of the number of first nylon guide wheels (238). The bottom ends of the number of feeding bin fixing plates (233) are all connected to the feeding bin fixing pipe (22).
4. A twenty-four-channel tape storage mechanism for an edge banding process according to claim 1, characterized in that: The two feeding bin tape pressing frames (24) each include a first side tape disc (241) and a first side tape wheel shaft (242). One side of the first side tape disc (241) is connected to one end of the first side tape wheel shaft (242), and the other side of the first side tape disc (241) is connected to the facing feeding bin (23).
5. A twenty-four-channel tape storage mechanism for an edge banding process according to claim 1, characterized in that: Each of the plurality of blanking bins (303) includes a blanking bin fixed plate (30302) and a blanking bin main body (30301). A second rotating shaft sleeve (30303) is installed in the middle of the blanking bin fixed plate (30302). The middle of the second rotating shaft sleeve (30303) is connected to one side of the blanking bin main body (30301). At the top of the other side of the blanking bin main body (30301), a second discharge guide wheel mechanism (30307) is installed. On the blanking bin main body (30301), a second belt limiting block (30305) is installed below the second discharge guide wheel mechanism (30307). A second belt limiting block sliding shaft (30306) is slidably connected to the middle of the second belt limiting block (30305). At the bottom end of the other side of the blanking bin main body (30301), a second photoelectric switch group (30304) is fixedly installed. On the other side of the blanking bin main body (30301), a plurality of second nylon guide wheels (30308) are fixedly installed. A second shoulder shaft pin (30309) is installed inside each of the plurality of second nylon guide wheels (30308). Each of the two blanking bin belt pressing frames (319) includes a second side belt wheel shaft (3191) and a second side belt disc (3192). One side of the second side belt disc (3192) is connected to the second side belt wheel shaft (3191), and the other side of the second side belt disc (3192) is connected to the blanking bin (303).
6. The twenty-four-channel tape storage mechanism for edge banding process according to claim 1, characterized in that: One end of the blanking bin fixing frame (306) is fixedly installed with a front bin fixing frame (316). At the top of the front bin fixing frame (316), a blanking bin clamping plate (317) is fixedly installed. At the middle of the first triangular frame (301) and the middle of the second triangular frame (308), a belt output wheel group fixing plate (311) is fixedly installed. At the top between the two belt output wheel group fixing plates (311), a discharge wheel guide shaft (310) is rotatably connected. A plurality of blanking bin discharge guide wheels (312) are rotatably connected to the surface of the discharge wheel guide shaft (310). At the bottom between the two belt output wheel group fixing plates (311), a discharge wheel limiting shaft (313) is rotatably connected. At the bottom end of one side of the first triangular frame (301) and the bottom end of one side of the second triangular frame (308), support plates (315) are fixedly installed. At one end of each of the two support plates (315), a connecting shaft plate (314) is installed. A material blocking shaft (318) is rotatably connected between the two connecting shaft plates (314).
7. A twenty-four-channel tape storage mechanism for an edge banding process according to claim 1, characterized in that: Foot cups (302) are fixedly installed on both sides of the bottom end of the first triangular frame (301) and both sides of the bottom end of the second triangular frame (308). Two universal wheels (307) and two directional wheels (309) are respectively fixedly installed at the bottom end of the first triangular frame (301) and the bottom end of the second triangular frame (308).