Air conditioner panel punch forming equipment
By introducing an automatic loading and unloading system into the air-conditioning panel stamping equipment, including rotary transportation, stamping, material storage and waste treatment devices, the problem of manual loading and unloading is solved, automated operation and waste management are realized, and workers' labor intensity is reduced.
Patent Information
- Application Number
- CN202422415053.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-08
AI Technical Summary
Existing air-conditioning panel stamping equipment requires manual loading and unloading, resulting in higher labor intensity for workers.
Two handling devices are used to realize automatic loading and unloading, and are equipped with rotary transport device, stamping device, material storage device and waste treatment device to reduce manual operation.
Automatic loading and unloading of materials is realized, reducing workers' labor intensity, and automatic collection and crushing of stamping waste is further reduced.
Smart Images

Figure CN223185298U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air-conditioning panel stamping equipment, in particular to air-conditioning panel stamping forming equipment. Background Art
[0002] Air conditioning panels are generally made of polymers, and are usually formed by stamping during production.
[0003] For example, in a type of prior art represented by a Chinese utility model patent with authorization announcement number CN220144470U, which is an air-conditioning panel stamping device, its main structure includes an upper mold, two lower molds and a rotating plate. The upper mold stamps the air-conditioning panel, the two lower molds carry the air-conditioning panel for stamping and rotate to load and unload, and the rotating plate rotates the positions of the two lower molds.
[0004] However, the existing technical equipment still has the following problems when in use: manual loading and unloading of the machine is required, and the labor intensity of the workers is high. Utility Model Content
[0005] In order to solve the above technical problems, the utility model provides an air-conditioning panel stamping and forming device which automatically loads and unloads materials on the machine by setting two handling devices, thereby reducing the labor intensity of workers.
[0006] The utility model provides an air-conditioning panel stamping and forming device, comprising a fuselage; further comprising a rotating conveying device, a stamping device, two handling devices, two storage devices and a waste processing device, wherein the rotating conveying device, the stamping device, the two handling devices, the two storage devices and the waste processing device are all mounted on the fuselage; the fuselage provides support, the rotating conveying device rotates and transports the mold, the stamping device performs stamping processing on the panel, the two handling devices respectively load and unload the panel, the two storage devices respectively contain raw materials and finished products, and the waste processing device absorbs and crushes and stores stamping waste.
[0007] Preferably, the fuselage includes a base plate, bracket one, bracket two, two groups of bracket three, two bracket fours and bracket five, bracket one, bracket two, two groups of bracket three and bracket five are all installed on the top of the base plate, bracket one is provided with a mounting groove, and two bracket fours are respectively installed on the top of two groups of bracket threes; providing support.
[0008] Preferably, the rotating conveying device includes a bracket six, multiple mounting plates, multiple lower molds, a gear ring, a reducer, a gear and a motor. The bracket six is rotatably mounted on the top of the bracket one. Multiple mounting platforms are provided on the mounting plate. Multiple mounting plates are respectively mounted on the top of multiple mounting platforms. Multiple lower molds are respectively detachably mounted on the top of multiple mounting plates. The gear ring is fixedly mounted on the bottom of the base plate. The reducer is fixedly mounted in the mounting groove of the bracket one. The gear is rotatably mounted on the top of the reducer, and the gears between the gear ring and the gear are meshed. The motor is fixedly mounted on the bottom of the reducer, and the motor provides power to the gear through the reducer; the reducer provides power to drive the gear to rotate, and the rotation of the gear drives the gear ring to rotate. The rotation of the gear ring causes the bracket six to drive the lower mold to rotate between multiple processing positions, and the lower mold holds the panel and stamping waste.
[0009] Preferably, the stamping device includes bracket seven, bracket eight, bracket nine, a hydraulic cylinder, multiple guide pillars one and an upper mold, bracket seven is installed at the top of bracket two, bracket eight is installed at the right end of bracket seven, bracket nine is fixedly installed on bracket eight, bracket nine is provided with through hole one and multiple through holes two, the hydraulic cylinder is installed at one through hole, multiple guide pillars one are respectively slidably installed in multiple through holes two, and the upper mold is installed at the bottom end of the hydraulic cylinder and multiple guide pillars one; the hydraulic cylinder provides power to drive the upper mold to move up and down, and the upper mold moves down to perform stamping processing on the panel.
[0010] Preferably, the handling device includes a linear motor, two brackets (10), an optical bar, a slider, a bracket 11, a cylinder, multiple guide pillars (2), a vacuum suction cup, a vacuum generator and an air guide hose. The linear motor and the two brackets (10) are both mounted at the bottom end of the bracket (4), the optical bar is mounted on the two brackets (10), the slider is slidably mounted on the optical bar, the bracket 11 is mounted on the linear motor and the bottom end of the slider, the bracket 11 is provided with a through hole (3) and multiple through holes (4), the cylinder is mounted at the through hole (3), multiple guide pillars (2) are respectively slidably mounted in the multiple through holes (4), the vacuum suction cup is mounted on the cylinder and the bottom end of the multiple guide pillars (2), the vacuum generator is mounted at the top end of the bracket (4), the air guide hose passes through the bracket 11 to connect the vacuum suction cup and the vacuum generator, and the two handling devices are respectively mounted on the two brackets (4); the linear motor provides power to drive the bracket 11 to move back and forth, the cylinder provides power to drive the vacuum suction cup to move up and down, the vacuum generator provides vacuum suction, the air guide hose transmits vacuum suction, and the vacuum suction cup takes and places materials by vacuum suction.
[0011] Preferably, the material storage device includes a bracket twelve, a bracket thirteen and a storage trough, the bracket twelve is installed on a group of brackets three, the bracket thirteen is installed on the top of the bracket twelve, and the storage trough is installed on the top of the bracket thirteen; and the material is contained.
[0012] Preferably, the waste processing device includes a suction machine, a flow guide cover, a storage box and a crusher. The suction machine is installed at the top of the bracket five. The suction machine is provided with a feed port and a discharge port. The flow guide cover is installed at the feed port. The storage box is installed at the top of the bottom plate. The crusher is connected and installed at the top of the storage box, and the crusher and the discharge port are connected and installed; the flow guide cover guides the airflow and waste to facilitate the suction machine to collect waste. The suction machine collects waste and discharges the waste into the crusher. The crusher crushes the waste and discharges it into the storage box. The storage box stores the crushed waste for subsequent recycling.
[0013] Compared with the prior art, the present invention has the following beneficial effects: it can automatically carry out loading and unloading operations, with less labor intensity for workers; and it can automatically collect, crush and store stamping waste, with less labor intensity for workers. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is an axonometric structural diagram of the present utility model;
[0015] Figure 2 This is a schematic diagram of the axonometric structure of the fuselage
[0016] Figure 3 This is an enlarged axonometric structural diagram of the rotating conveyor
[0017] Figure 4 This is an enlarged axonometric structural diagram of the rotating conveyor
[0018] Figure 5 This is an axonometric enlarged structural diagram of the stamping device
[0019] Figure 6 This is an axonometric enlarged structural diagram of the handling device
[0020] Figure 7 This is an axonometric enlarged structural diagram of the storage device
[0021] Figure 8 It is an axonometric enlarged structural diagram of a waste treatment device.
[0022] Reference numerals in the accompanying drawings: 01, fuselage; 11, bottom plate; 12, bracket 1; 13, bracket 2; 14, bracket 3; 15, bracket 4; 16, bracket 5; 02, rotary conveyor; 21, bracket 6; 22, mounting plate; 23, lower mold; 24, ring gear; 25, reducer; 26, gear; 27, motor; 03, stamping device; 31, bracket 7; 32, bracket 8; 33, bracket 9; 34, hydraulic cylinder; 35, guide column 1; 36 , upper mold; 04, handling device; 41, linear motor; 42, bracket ten; 43, optical bar; 44, slider; 45, bracket eleven; 46, cylinder; 47, guide column two; 48, vacuum suction cup; 49, vacuum generator; 50, air guide hose; 05, storage device; 51, bracket twelve; 52, bracket thirteen; 53, storage trough; 06, waste handling device; 61, suction machine; 62, deflector cover; 63, storage box; 64, crusher. DETAILED DESCRIPTION
[0023] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.
[0024] Example 1
[0025] like Figure 1 As shown, it includes a fuselage 01; it also includes a rotating conveying device 02, a punching device 03, two handling devices 04, two storage devices 05 and a waste processing device 06. The rotating conveying device 02, the punching device 03, the two handling devices 04, the two storage devices 05 and the waste processing device 06 are all installed on the fuselage 01; the fuselage 01 provides support, the rotating conveying device 02 rotates and transports the mold, the punching device 03 performs stamping processing on the panel, the two handling devices 04 respectively load and unload the panel, the two storage devices 05 respectively contain raw materials and finished products, and the waste processing device 06 absorbs, crushes and stores stamping waste;
[0026] like Figure 2 As shown, the fuselage 01 includes a bottom plate 11, a bracket 12, a bracket 2 13, two groups of brackets 3 14, two brackets 4 15 and a bracket 5 16. The bracket 12, the bracket 2 13, the two groups of brackets 3 14 and the bracket 5 16 are all mounted on the top of the bottom plate 11. The bracket 12 is provided with a mounting groove. The two brackets 4 15 are respectively mounted on the top of the two groups of brackets 3 14.
[0027] like Figure 3 and Figure 4As shown, the rotating conveying device 02 includes a six-bracket 21, a plurality of mounting plates 22, a plurality of lower molds 23, a ring gear 24, a reducer 25, a gear 26 and a motor 27. The six-bracket 21 is rotatably mounted on the top of the first bracket 12. The mounting plate 22 is provided with a plurality of mounting platforms. The plurality of mounting plates 22 are respectively mounted on the top of the plurality of mounting platforms. The plurality of lower molds 23 are respectively detachably mounted on the top of the plurality of mounting plates 22. The ring gear 24 is fixedly mounted on the bottom of the base plate 11. The reducer 25 is fixedly mounted in the mounting groove of the first bracket 12. The gear 26 is rotatably mounted on the top of the reducer 25, and the ring gear 24 and the gear 26 are engaged with each other. The motor 27 is fixedly mounted on the bottom of the reducer 25, and the motor 27 provides power to the gear 26 through the reducer 25.
[0028] like Figure 5 As shown, the stamping device 03 includes a seventh bracket 31, an eighth bracket 32, a ninth bracket 33, a hydraulic cylinder 34, a plurality of guide pillars 35 and an upper mold 36. The seventh bracket 31 is mounted on the top of the second bracket 13, the eighth bracket 32 is mounted on the right end of the seventh bracket 31, the ninth bracket 33 is fixedly mounted on the eighth bracket 32, the ninth bracket 33 is provided with a through hole 1 and a plurality of through holes 2, the hydraulic cylinder 34 is mounted on one of the through holes, the plurality of guide pillars 1 35 are respectively slidably mounted in the plurality of through holes 2, and the upper mold 36 is mounted on the bottom ends of the hydraulic cylinder 34 and the plurality of guide pillars 1 35;
[0029] like Figure 6 As shown, the handling device 04 includes a linear motor 41, two brackets 10 42, an optical bar 43, a slider 44, a bracket 11 45, a cylinder 46, a plurality of guide pillars 2 47, a vacuum suction cup 48, a vacuum generator 49 and an air guide hose 50. The linear motor 41 and the two brackets 10 42 are all mounted on the bottom end of the bracket 4 15. The optical bar 43 is mounted on the two brackets 10 42. The slider 44 is slidably mounted on the optical bar 43. The bracket 11 45 is mounted on the bottom end of the linear motor 41 and the slider 44. A through hole 3 and a plurality of through holes 4 are provided on the bracket 11 45. The cylinder 46 is mounted at the through hole 3. A plurality of guide pillars 2 47 are respectively slidably mounted in the plurality of through holes 4. The vacuum suction cup 48 is mounted on the cylinder 46 and the bottom end of the plurality of guide pillars 2 47. The vacuum generator 49 is mounted on the top end of the bracket 4 15. The air guide hose 50 passes through the bracket 11 45 to connect the vacuum suction cup 48 and the vacuum generator 49. The two handling devices 04 are respectively mounted on the two brackets 4 15.
[0030] like Figure 7 As shown, the storage device 05 includes a bracket 12 51, a bracket 13 52 and a storage slot 53. The bracket 12 51 is installed on a group of brackets 3 14, the bracket 13 52 is installed on the top of the bracket 12 51, and the storage slot 53 is installed on the top of the bracket 13 52;
[0031] First, place the panel raw material in the storage slot 53 at the rear, then turn on the linear motor 41, the bracket 11 45 and the air hose 50, the linear motor 41 provides power to drive the bracket 11 45 to move back and forth, the cylinder 46 provides power to drive the vacuum suction cup 48 to move up and down, the vacuum generator 49 provides vacuum suction, the air hose 50 transmits vacuum suction, the vacuum suction cup 48 takes and places the panel raw material through vacuum suction, the linear motor 41, the bracket 11 45 and the air hose 50 cooperate to make the vacuum suction cup 48 place the panel raw material on the lower mold 23, then turn on the reducer 25, the reducer 25 provides power to drive the gear 26 to rotate, the gear 26 rotates to drive the ring gear 24 to rotate, the ring gear 24 rotates to make the bracket 6 21 drive the lower mold 23 to rotate between multiple processing positions, when the lower mold 23 with the panel raw material moves to the stamping position, the hydraulic cylinder 34 is turned on. The hydraulic cylinder 34 provides power to drive the upper mold 36 to move up and down. The upper mold 36 moves down to stamp the panel. The waste generated by the stamping process is stored in the lower mold 23. Then the reducer 25 provides power to move the lower mold 23 with the finished product to the unloading position. Then the linear motor 41, the bracket 11 45 and the air hose 50 are turned on. The linear motor 41 provides power to drive the bracket 11 45 to move back and forth. The cylinder 46 provides power to drive the vacuum suction cup 48 to move up and down. The vacuum generator 49 provides vacuum suction. The air hose 50 transmits vacuum suction. The vacuum suction cup 48 takes and places the finished panel through vacuum suction. The linear motor 41, the bracket 11 45 and the air hose 50 cooperate to enable the vacuum suction cup 48 to take the finished panel out of the lower mold 23 and place it in the storage slot 53. When there is a lot of waste accumulated in the lower mold 23, the worker can clean it manually.
[0032] Example 2
[0033] On the basis of Example 1, the following further aspects are included:
[0034] like Figure 8 As shown, the waste processing device 06 includes a suction machine 61, a deflector 62, a storage box 63 and a crusher 64. The suction machine 61 is installed at the top of the bracket 5 16. The suction machine 61 is provided with a feed port and a discharge port. The deflector 62 is installed at the feed port. The storage box 63 is installed at the top of the bottom plate 11. The crusher 64 is installed on the top of the storage box 63 in communication with the crusher 64, and the crusher 64 is installed in communication with the discharge port.
[0035] First, place the panel material in the storage slot 53 at the rear, then turn on the linear motor 41, the bracket 11 45 and the air hose 50. The linear motor 41 provides power to drive the bracket 11 45 to move forward and backward. The cylinder 46 provides power to drive the vacuum suction cup 48 to move up and down. The vacuum generator 49 provides vacuum suction. The air hose 50 transmits the vacuum suction. The vacuum suction cup 48 takes and places the panel material through the vacuum suction. The linear motor 41, the bracket 11 45 and the air hose 50 cooperate to make the vacuum suction cup 48 take the panel material. The raw material is placed on the lower mold 23, and then the reducer 25 is turned on. The reducer 25 provides power to drive the gear 26 to rotate. The rotation of the gear 26 drives the ring gear 24 to rotate. The rotation of the ring gear 24 causes the bracket 6 21 to drive the lower mold 23 to rotate between multiple processing positions. When the lower mold 23 with the panel raw material moves to the stamping position, the hydraulic cylinder 34 is turned on. The hydraulic cylinder 34 provides power to drive the upper mold 36 to move up and down. The upper mold 36 moves down to perform stamping processing on the panel. The waste generated by the stamping process is stored in the lower mold 23. Then, the reducer 25 provides power to move the lower mold 23 with the finished product to the unloading position, and then the linear motor 41, the bracket 11 45 and the air guide hose 50 are turned on. The linear motor 41 provides power to drive the bracket 11 45 to move forward and backward. The cylinder 46 provides power to drive the vacuum suction cup 48 to move up and down. The vacuum generator 49 provides vacuum suction. The air guide hose 50 transmits the vacuum suction. The vacuum suction cup 48 takes and places the panel finished product through vacuum suction. The linear motor 41, the bracket 11 45 and the air guide hose 50 are turned on. 0 cooperates to make the vacuum suction cup 48 take the finished panel out of the lower mold 23 and place it in the storage groove 53. Then the reducer 25 provides power to move the lower mold 23 with the waste to the cleaning position. Then the suction machine 61 and the crusher 64 are turned on. The guide cover 62 guides the airflow and waste to facilitate the suction machine 61 to collect the waste. The suction machine 61 collects the waste and discharges the waste into the crusher 64. The crusher 64 crushes the waste and discharges it into the storage box 63. The storage box 63 stores the crushed waste for subsequent recycling.
[0036] like Figures 1 to 8As shown, the utility model is an air conditioning panel stamping forming device. When it is working, the panel raw material is first placed in the rear storage slot 53, and then the linear motor 41, the bracket 11 45 and the air guide hose 50 are turned on. The linear motor 41 provides power to drive the bracket 11 45 to move forward and backward. The cylinder 46 provides power to drive the vacuum suction cup 48 to move up and down. The vacuum generator 49 provides vacuum suction. The air guide hose 50 transmits vacuum suction. The vacuum suction cup 48 takes and places the panel raw material through vacuum suction. The linear motor 41 and the bracket 11 45 and the air guide hose 50 cooperate to make the vacuum suction cup 48 place the panel raw material on the lower mold 23, then turn on the reducer 25, the reducer 25 provides power, the drive gear 26 rotates, the gear 26 rotates to drive the ring gear 24 to rotate, the ring gear 24 rotates to make the bracket 6 21 drive the lower mold 23 to rotate between multiple processing positions, when the lower mold 23 with the panel raw material moves to the stamping position, the hydraulic cylinder 34 is turned on, the hydraulic cylinder 34 provides power to drive the upper mold 36 to move up and down, the upper mold 36 moves down to perform stamping processing on the panel, and the stamping is performed. The waste generated during the process is stored in the lower mold 23. Then the reducer 25 provides power to move the lower mold 23 with the finished product to the unloading position. Then the linear motor 41, the bracket 11 45 and the air hose 50 are turned on. The linear motor 41 provides power to drive the bracket 11 45 to move forward and backward. The cylinder 46 provides power to drive the vacuum suction cup 48 to move up and down. The vacuum generator 49 provides vacuum suction. The air hose 50 transmits vacuum suction. The vacuum suction cup 48 takes and places the panel finished product through vacuum suction. The linear motor 41, the bracket 11 4 5 and the air guide hose 50 cooperate to enable the vacuum suction cup 48 to remove the finished panel from the lower mold 23 and place it in the storage groove 53. Then the reducer 25 provides power to move the lower mold 23 with the waste to the cleaning position, and then the suction machine 61 and the crusher 64 are turned on. The guide cover 62 guides the air flow and waste to facilitate the suction machine 61 to collect the waste. The suction machine 61 collects the waste and discharges the waste into the crusher 64. The crusher 64 crushes the waste and discharges it into the storage box 63. The storage box 63 stores the crushed waste for subsequent recycling.
[0037] The multiple lower molds 23, gear rings 24, gears 26, motors 27, hydraulic cylinders 34, upper molds 36, linear motors 41, cylinders 46, vacuum suction cups 48, vacuum generators 49, air guide hoses 50, suction machines 61 and crushers 64 of the utility model are purchased on the market. Technicians in this industry only need to install and operate them according to the accompanying instruction manuals, without the need for creative labor by technicians in this field.
[0038] The main functions achieved by the present invention are: automatically loading and unloading the machine by setting two handling devices 04, thereby reducing the labor intensity of workers; and solving the existing technical problem of requiring manual loading and unloading of the machine and high labor intensity of workers.
[0039] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. An air conditioner panel stamping forming device, comprising a body (01); characterized in that, The machine further comprises a rotating conveying device (02), a punching device (03), two handling devices (04), two storage devices (05) and a waste material processing device (06), wherein the rotating conveying device (02), the punching device (03), the two handling devices (04), the two storage devices (05) and the waste material processing device (06) are all installed on the machine body (01); the machine body (01) provides support, the rotating conveying device (02) rotates and transports the mold, the punching device (03) performs punching processing on the panel, the two handling devices (04) respectively load and unload the panel, the two storage devices (05) respectively contain raw materials and finished products, and the waste material processing device (06) absorbs, crushes and stores the punching waste.
2. The air conditioning panel stamping and forming equipment according to claim 1, characterized in that: The fuselage (01) includes a bottom plate (11), a bracket one (12), a bracket two (13), two groups of bracket three (14), two bracket fours (15) and a bracket five (16). The bracket one (12), the bracket two (13), the two groups of bracket threes (14) and the bracket five (16) are all installed on the top of the bottom plate (11). A mounting groove is provided on the bracket one (12). The two bracket fours (15) are respectively installed on the top of the two groups of bracket threes (14).
3. The air conditioning panel stamping and forming equipment according to claim 2, characterized in that: The rotating conveying device (02) includes a bracket six (21), a plurality of mounting plates (22), a plurality of lower molds (23), a gear ring (24), a reducer (25), a gear (26) and a motor (27). The bracket six (21) is rotatably mounted on the top of the bracket one (12). A plurality of mounting platforms are provided on the mounting plate (22). The plurality of mounting plates (22) are respectively mounted on the tops of the plurality of mounting platforms. The plurality of lower molds (23) are respectively detachably mounted on the tops of the plurality of mounting plates (22). The gear ring (24) is fixedly mounted on the bottom of the base plate (11). The reducer (25) is fixedly mounted in the mounting groove of the bracket one (12). The gear (26) is rotatably mounted on the top of the reducer (25), and the gear ring (24) and the gear (26) are meshed. The motor (27) is fixedly mounted on the bottom of the reducer (25), and the motor (27) provides power to the gear (26) through the reducer (25).
4. The air conditioning panel stamping and forming equipment according to claim 2, characterized in that: The punching device (03) includes a bracket seven (31), a bracket eight (32), a bracket nine (33), a hydraulic cylinder (34), a plurality of guide pillars one (35) and an upper mold (36), wherein the bracket seven (31) is mounted on the top of the bracket two (13), the bracket eight (32) is mounted on the right end of the bracket seven (31), the bracket nine (33) is fixedly mounted on the bracket eight (32), a through hole one and a plurality of through holes two are provided on the bracket nine (33), the hydraulic cylinder (34) is mounted on one of the through holes, the plurality of guide pillars one (35) are respectively slidably mounted in the plurality of through holes two, and the upper mold (36) is mounted on the bottom ends of the hydraulic cylinder (34) and the plurality of guide pillars one (35).
5. The air conditioning panel stamping and forming equipment according to claim 2, characterized in that: The handling device (04) comprises a linear motor (41), two brackets (42), a light bar (43), a slider (44), a bracket eleven (45), a cylinder (46), a plurality of guide posts (47), a vacuum suction cup (48), a vacuum generator (49) and an air guide hose (50), wherein the linear motor (41) and the two brackets (42) are mounted at the bottom end of the bracket four (15), the light bar (43) is mounted on the two brackets (42), the slider (44) is slidably mounted on the light bar (43), and the bracket eleven (45) is mounted on the linear motor (41). ) and the bottom of the slider (44), a through hole three and multiple through holes four are provided on the bracket eleven (45), the cylinder (46) is installed at the through hole three, multiple guide pillars two (47) are respectively slidably installed in the multiple through holes four, the vacuum suction cup (48) is installed at the bottom of the cylinder (46) and the multiple guide pillars two (47), the vacuum generator (49) is installed at the top of the bracket four (15), the air guide hose (50) passes through the bracket eleven (45) to connect the vacuum suction cup (48) and the vacuum generator (49), and the two conveying devices (04) are respectively installed on the two brackets four (15).
6. The air conditioning panel stamping and forming equipment according to claim 2, characterized in that: The material storage device (05) includes a bracket twelve (51), a bracket thirteen (52) and a storage trough (53), wherein the bracket twelve (51) is installed on a group of bracket three (14), the bracket thirteen (52) is installed on the top of the bracket twelve (51), and the storage trough (53) is installed on the top of the bracket thirteen (52).
7. The air conditioning panel stamping and forming equipment according to claim 2, characterized in that: The waste material processing device (06) includes a suction machine (61), a deflector (62), a storage box (63) and a crusher (64). The suction machine (61) is installed at the top of the bracket five (16). The suction machine (61) is provided with a feed port and a discharge port. The deflector (62) is installed at the feed port. The storage box (63) is installed at the top of the bottom plate (11). The crusher (64) is connected and installed at the top of the storage box (63), and the crusher (64) is connected and installed with the discharge port.
Citation Information
Patent Citations
Air conditioner panel stamping device
CN220144470U