An aluminum roll embossing apparatus
By introducing an automated traction device into the aluminum coil embossing equipment, the safety hazard problem caused by workers manually pulling aluminum sheets is solved, and the safety of the equipment is improved.
Patent Information
- Application Number
- CN202311317795.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-12
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2043-10-12
AI Technical Summary
Existing aluminum coil embossing equipment poses a safety hazard when workers manually pull the aluminum sheet, especially when inserting the end of the aluminum sheet between the embossing rollers, there is a risk of fingers being pinched.
A traction device is used, including a feed clamping claw cylinder, a discharge clamping claw cylinder, a feed drive mechanism and a discharge drive mechanism. The cylinders and drive mechanisms are used to automatically clamp and transfer aluminum sheets, reducing manual operation and ensuring safety.
There is no need for workers to manually pull the aluminum sheets, which improves the safety of the embossing equipment, reduces direct contact between people and equipment, and reduces safety risks.
Smart Images

Figure CN117207703B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of aluminum roll production equipment, and particularly relates to an aluminum roll embossing equipment. BACKGROUND
[0002] The aluminum roll is a metal product processed by a casting and rolling machine through calendering and bending, and is widely used in the fields of electronics, packaging, construction and machinery.
[0003] In the related art, the aluminum roll embossing equipment comprises a feeding roller for placing the aluminum roll, an embossing roller for embossing and a winding roller for winding the aluminum sheet after embossing. The feeding roller is sleeved with the aluminum roll. A worker pulls one end of the aluminum roll and inserts the end of the aluminum roll between the two embossing rollers. The two embossing rollers rotate to emboss the aluminum sheet. The two embossing rollers transmit the end of the aluminum sheet forward. The worker pulls the end of the aluminum sheet after embossing to the winding roller. The end of the aluminum sheet after embossing is fixed on the winding roller. Then, the winding roller rotates to wind the aluminum sheet after embossing.
[0004] In the related art, the embossing of the aluminum sheet needs to be pulled by the worker. In the pulling process, the worker needs to hold the end of the aluminum sheet and walk between the embossing equipment. The embossing equipment is in a running state, and there is a certain safety hazard. Especially when the end of the aluminum sheet is inserted between the two embossing rollers, since the embossing rollers need to rotate for embossing, the worker is at risk of having fingers clamped by the embossing rollers when inserting, causing a safety risk. SUMMARY
[0005] In order to improve the safety of the embossing equipment, the present application provides an aluminum roll embossing equipment.
[0006] The aluminum roll embossing equipment provided by the present application adopts the following technical scheme:
[0007] An aluminum coil embossing device comprises a workbench, a feeding roller, a receiving roller, an embossing roller and a traction device, wherein the feeding roller and the receiving roller are both rotatably arranged on the top surface of the workbench, the feeding roller is used to place the aluminum coil, and the receiving roller is used to wind the aluminum coil; two embossing rollers are provided, and the two embossing rollers are both rotatably arranged on the top surface of the workbench, the two embossing rollers are arranged up and down, the two embossing rollers are located between the feeding roller and the receiving roller, and the aluminum sheet of the aluminum coil extends between the two embossing rollers; relatively flat rollers are rotatably provided on both sides of the embossing roller, the relatively flat rollers are pressed against the upper surface of the aluminum sheet, and the relatively flat rollers trim the aluminum sheet entering and leaving between the two embossing rollers to be parallel to the workbench; the traction device The device includes a feed jaw cylinder, a discharging jaw cylinder, a feed drive mechanism and a discharging drive mechanism; the feed drive mechanism is installed between the embossing roller and the discharge roller, and two feed jaw cylinders are provided, and the two feed jaw cylinders are respectively used to clamp the two sides of the aluminum sheet, and the feed drive mechanism is used to drive the two feed jaw cylinders to move from the discharge roller to the embossing roller; the discharging drive mechanism is installed between the embossing roller and the receiving roller, and two discharging jaw cylinders are provided, and the two discharging jaw cylinders are respectively used to clamp the two sides of the embossed aluminum sheet, and the discharging drive mechanism is used to drive the two discharging jaw cylinders to move from the embossing roller to the receiving roller.
[0008] Optionally, a first driving mechanism for driving the embossing roller to rotate is installed on the workbench, and two first support plates are fixedly connected to the top surface of the workbench, and the two embossing rollers are rotatably connected between the two first support plates through a rotating shaft; the first driving mechanism includes a first motor, a first pulley, a second pulley, a first belt strip, a driving gear and a driven gear; the driving gear is coaxially connected to the rotating shaft of the embossing roller located below, and the driven gear is coaxially connected to the rotating shaft of the embossing roller located above, and the driving gear is meshed with the driven gear; the rotating shaft end of the embossing roller located below extends out of the first support plate, and the second pulley is coaxially connected to the rotating shaft end of the embossing roller located below, the first motor is installed on the top surface of the workbench, the first pulley is coaxially connected to the output shaft of the first motor, and the first belt strip is wound around the first pulley and the second pulley.
[0009] Optionally, the embossing roller is provided with an introduction mechanism for introducing the aluminum sheet between the two embossing rollers on the side close to the feeding roller; the introduction mechanism comprises a guide plate, a first upper clamp plate, a first lower clamp plate, a transmission roller and a driving assembly; two first support plates are provided with mounting plates on the side close to the feeding roller; the transmission roller is provided with two ends rotatably connected to the two mounting plates through shafts; the two transmission rollers are arranged in an upper-lower manner, the upper transmission roller is pressed against the upper surface of the aluminum sheet, and the lower transmission roller is pressed against the lower surface of the aluminum sheet; the driving assembly is mounted on the mounting plate and used for driving the transmission roller to rotate; the two ends of the guide plate are respectively connected to the sides of the two first support plates close to each other, the guide plate is arranged on the side of the lower transmission roller close to the feeding roller, and the side of the guide plate close to the transmission roller is attached to the peripheral surface of the transmission roller; the first upper clamp plate is arranged on the upper surface of the aluminum sheet, the first lower clamp plate is arranged on the lower surface of the aluminum sheet, the two ends of the first upper clamp plate and the first lower clamp plate are respectively connected to the two first support plates, the first upper clamp plate and the first lower clamp plate are located between the transmission roller and the embossing roller, the side of the first upper clamp plate close to the embossing roller extends into the two embossing rollers, and the side of the first lower clamp plate close to the transmission roller is attached to the peripheral surface of the transmission roller.
[0010] Optionally, the driving assembly comprises a driving motor, a first gear and a second gear, the shafts at the same end of the two transmission rollers extend out of the mounting plate, the first gear is coaxially connected to the end of the shaft of the lower transmission roller, the second gear is coaxially connected to the end of the shaft of the upper transmission roller, the driving motor is mounted on the side of the mounting plate away from the transmission roller, and the output shaft of the driving motor is coaxially connected to the end surface of the shaft of the lower transmission roller.
[0011] Optionally, the embossing roller is provided with an introduction mechanism for transmitting the end of the aluminum sheet to the two clamping jaws of the discharging clamping jaw cylinder on the side close to the collecting roller, the introduction mechanism comprises a second upper clamp plate and a second lower clamp plate, the second upper clamp plate and the second lower clamp plate are arranged on the side of the embossing roller close to the collecting roller, the two ends of the second upper clamp plate and the second lower clamp plate are respectively connected between the two first support plates, the second upper clamp plate is arranged on the upper surface of the aluminum sheet, the second lower clamp plate is arranged on the lower surface of the aluminum sheet, the side of the second upper clamp plate and the second lower clamp plate away from the embossing roller is flush, and the two clamping jaws of the discharging clamping jaw cylinder are flush with the second upper clamp plate and the second lower clamp plate.
[0012] Optionally, the top surface of the workbench is connected with two fourth support plates, the two fourth support plates are respectively located on the two sides of the aluminum sheet, the fourth support plates are located between the first support plates and the unwinding roller, the feeding driving mechanism is provided with two, and the two feeding driving mechanisms are respectively arranged on the top of the two fourth support plates.
[0013] Optionally, the top surface of the workbench is connected with two fourth support plates, the two fourth support plates are respectively located on the two sides of the aluminum sheet, the fourth support plates are located between the first support plates and the unwinding roller, the feeding driving mechanism is provided with two, and the two feeding driving mechanisms are respectively arranged on the top of the two fourth support plates.
[0014] Optionally, the top surface of the workbench is connected with two fourth support plates, the two fourth support plates are respectively located on the two sides of the aluminum sheet, the fourth support plates are located between the first support plates and the unwinding roller, the feeding driving mechanism is provided with two, and the two feeding driving mechanisms are respectively arranged on the top of the two fourth support plates.
[0015] Optionally, the top surface of the moving seat is provided with two second installation grooves, the bottom surface of the second installation grooves is provided with a second through hole penetrating through the moving seat, the bottom surface of the discharge jaw cylinder is connected with two second light rods, the two second light rods are respectively slid on the inner walls of the two second through holes, the bottom ends of the two second light rods are extended out of the second through holes and the end faces are connected with second limiting plates, the two second light rods are respectively sleeved with second return springs, one end of the second return spring is pressed against the groove bottom of the second installation groove, and the other end of the second return spring is pressed against the discharge jaw cylinder.
[0016] In summary, the present application includes at least one of the following beneficial technical effects:
[0017] 1. When embossing the aluminum roll, the aluminum roll is placed on the feeding roller, the worker pulls out one end of the aluminum sheet, the feeding drive mechanism drives the feeding jaw cylinder to move to the feeding roller, the end of the aluminum sheet is placed between the two clamping jaws of the feeding jaw cylinder, the clamping jaws of the feeding jaw cylinder clamp the aluminum sheet, the feeding drive mechanism drives the feeding jaw cylinder to move to the embossing roller, the feeding jaw cylinder drives the aluminum sheet to slide down from the flat roller, the feeding jaw cylinder transmits the aluminum sheet between the two embossing rollers, the embossing roller embosses the aluminum sheet, the embossed aluminum sheet is transmitted out by the two embossing rollers, the discharge drive mechanism drives the discharge jaw cylinder to move to the embossing roller, the embossed aluminum sheet is transmitted between the two clamping jaws of the discharge jaw cylinder, the discharge jaw cylinder clamps the embossed aluminum sheet, the discharge drive mechanism drives the discharge jaw cylinder to move to the collecting roller, the worker then takes the end of the aluminum sheet from the clamping jaws of the discharge jaw cylinder, and then fixes it on the collecting roller, without the worker pulling the aluminum sheet from the feeding roller to the collecting roller, reducing the contact between the worker and the embossing equipment, thereby improving the safety of the embossing equipment;
[0018] 2. When the aluminum sheet needs to be introduced between the embossing rollers, the end of the aluminum sheet is extended out of the clamping jaws of the feeding jaw cylinder, the feeding jaw cylinder drives the aluminum sheet to move towards the guide plate, the feeding jaw cylinder pushes the end of the aluminum sheet to be guided into between the two transmission rollers through the slope surface of the guide plate, the driving motor drives the lower transmission roller to rotate, the lower transmission roller drives the first gear to rotate, the first gear drives the second gear to rotate, the second gear drives the upper transmission roller to rotate, the two transmission rollers transmit the aluminum sheet between the first upper clamping plate and the first lower clamping plate through friction, the aluminum sheet is transmitted between the first upper clamping plate and the first lower clamping plate to the two embossing rollers, so that the aluminum sheet enters between the embossing rollers; Since it is difficult for the feeding jaw cylinder to directly send the aluminum sheet between the two embossing rollers, the first upper clamping plate and the first lower clamping plate are provided to guide the aluminum sheet to enter between the two embossing rollers, in order to enable the aluminum sheet to enter between the first upper clamping plate and the first lower clamping plate and be transmitted by the first upper clamping plate and the first lower clamping plate, the guide plate is provided to guide the aluminum sheet to enter between the two transmission rollers, and the two transmission rollers are used as power sources to move the aluminum sheet between the first upper clamping plate and the first lower clamping plate.
[0019] 3. The two embossing rollers transmit the embossed aluminum sheet to the top surface of the second lower clamping plate, the embossed aluminum sheet is transmitted between the second upper clamping plate and the second lower clamping plate, the aluminum sheet is guided to the second upper clamping plate and the second lower clamping plate through the slope surface of the second upper clamping plate, the aluminum sheet is transmitted out of the second upper clamping plate and the second lower clamping plate, the two clamping jaws of the discharge clamping jaw cylinder are opened, the aluminum sheet enters between the two clamping jaws of the discharge clamping jaw cylinder, and the two clamping jaws of the discharge clamping jaw cylinder clamp the aluminum sheet; the aluminum sheet is guided out of the two embossing rollers by the guide mechanism, so that the discharge clamping jaw cylinder clamps the aluminum sheet conveniently;
[0020] 4. When the discharge clamping jaw cylinder drives the aluminum sheet to move towards the material collecting roller, the clamping jaw of the discharge clamping jaw cylinder needs to pass through the flat roller, the flat roller hinders the clamping jaw of the discharge clamping jaw cylinder, the discharge motor drives the discharge gear to rotate, the discharge gear rolls on the rack, the second rotating tube rolls in the rolling groove, the first rotating tube and the second rotating tube provide support for the mounting seat, the mounting seat drives the moving seat to move, the moving seat drives the discharge clamping jaw cylinder to move, when the clamping jaw of the discharge clamping jaw cylinder contacts the flat roller, the flat roller extrudes the clamping jaw of the discharge clamping jaw cylinder downward, the discharge clamping jaw cylinder moves downward, the discharge clamping jaw cylinder presses the second return spring downward, the height of the clamping jaw of the discharge clamping jaw cylinder is lowered, until the clamping jaw of the discharge clamping jaw cylinder passes through the flat roller, the second return spring resets the discharge clamping jaw cylinder to the original position, and the mounting seat continues to drive the moving seat to move towards the material collecting roller. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a structural schematic diagram of the aluminum roll embossing equipment of the embodiment of the application;
[0022] Figure 2 is another perspective structural schematic diagram of the aluminum roll embossing equipment of the embodiment of the application;
[0023] Figure 3 is Figure 1 the enlarged schematic diagram of part A in FIG. 1;
[0024] Figure 4 is Figure 1 the enlarged schematic diagram of part B in FIG. 1;
[0025] Figure 5 is a structural schematic diagram of the first driving mechanism of the embodiment of the application;
[0026] Figure 6 is a structural schematic diagram of the guide mechanism and the feeding driving mechanism of the embodiment of the application;
[0027] Figure 7 is Figure 6 the enlarged schematic diagram of part C in FIG. 1;
[0028] Figure 8 is a structural schematic diagram of the sliding seat of the embodiment of the present application;
[0029] Figure 9 is a structural schematic diagram of the discharging driving mechanism of the embodiment of the present application;
[0030] Figure 10 is Figure 9 is an enlarged schematic diagram of part D in FIG. 6;
[0031] Figure 11 is a structural schematic diagram of the moving seat of the embodiment of the present application.
[0032] Legend of reference signs:
[0033] 01, aluminum roll; 02, aluminum sheet; 1, workbench; 11, feeding roller; 111, fourth pulley; 112, second motor; 113, third pulley; 114, second belt strip; 12, collecting roller; 121, sixth pulley; 122, third motor; 123, fifth pulley; 124, third belt strip; 13, first support plate; 131, mounting plate; 14, second support plate; 15, third support plate; 16, receiving roller; 17, fourth support plate; 18, fifth support plate; 2, embossing roller; 21, relatively flat roller; 3, feeding clamping jaw air cylinder; 31, feeding pressing plate; 4, discharging clamping jaw air cylinder; 41, discharging pressing plate; 5, feeding driving mechanism; 51, feeding motor; 52, linear guide rail; 53, lead screw; 54, sliding seat; 541, first mounting groove; 542, first through hole; 543, first light rod; 544, first limiting plate; 545, first return spring; 6, discharging driving mechanism; 61, guide plate; 611, rolling groove; 62, discharging motor; 63, discharging gear; 64, rack; 65, mounting seat; 651, first mounting rod; 652, second mounting rod; 653, first rotating pipe; 654, second rotating pipe; 655, baffle; 66, moving seat; 661, second mounting groove; 662, second through hole; 663, second light rod; 664, second limiting plate; 665, second return spring; 7, first driving mechanism; 71, first motor; 72, first pulley; 73, second pulley; 74, first belt strip; 75, driving gear; 76, driven gear; 8, leading-in mechanism; 81, guide plate; 82, first upper clamping plate; 83, first lower clamping plate; 84, transmission roller; 85, driving assembly; 851, driving motor; 852, first gear; 853, second gear; 9, leading-out mechanism; 91, second upper clamping plate; 92, second lower clamping plate. DETAILED DESCRIPTION
[0034] The following will be described in detail in combination with the accompanying Figures 1-11 The present application will be further described in detail.
[0035] The embodiment of the application discloses an aluminum roll embossing equipment. Figures 1-11 The aluminum roll embossing equipment comprises a workbench 1, a feeding roller 11, a collecting roller 12, two embossing rollers 2 and a traction device. The feeding roller 11 and the collecting roller 12 are both rotationally arranged on the top surface of the workbench 1, the feeding roller 11 is used for placing an aluminum roll 01, and the collecting roller 12 is used for winding the aluminum roll 01. The two embossing rollers 2 are both rotationally arranged on the top surface of the workbench 1, the two embossing rollers 2 are arranged in a top-down mode, the two embossing rollers 2 are located between the feeding roller 11 and the collecting roller 12, and an aluminum sheet 02 of the aluminum roll 01 extends into the two embossing rollers 2. A relatively flat roller 21 is rotationally arranged on each side of the embossing roller 2, the relatively flat roller 21 is tightly pressed against the upper surface of the aluminum sheet 02, and the relatively flat roller 21 is used for trimming the aluminum sheet 02, which enters or exits the two embossing rollers 2, to be parallel to the workbench 1. The traction device comprises a feeding clamp cylinder 3, a discharging clamp cylinder 4, a feeding driving mechanism 5 and a discharging driving mechanism 6. The feeding driving mechanism 5 is installed between the embossing roller 2 and the feeding roller 11, the feeding clamp cylinder 3 is provided with two feeding clamp cylinders 3, the two feeding clamp cylinders 3 are respectively used for clamping two sides of the aluminum sheet 02, and the feeding driving mechanism 5 is used for driving the two feeding clamp cylinders 3 to move from the feeding roller 11 to the embossing roller 2. The discharging driving mechanism 6 is installed between the embossing roller 2 and the collecting roller 12, the discharging clamp cylinder 4 is provided with two discharging clamp cylinders 4, the two discharging clamp cylinders 4 are respectively used for clamping two sides of the aluminum sheet 02 after embossing, and the discharging driving mechanism 6 is used for driving the two discharging clamp cylinders 4 to move from the embossing roller 2 to the collecting roller 12.
[0036] When the aluminum roll 01 is embossed, the aluminum roll 01 is placed on the feeding roller 11, one end of the aluminum sheet 02 is pulled out by a worker, the feeding driving mechanism 5 drives the feeding clamp cylinder 3 to move to the feeding roller 11, the end of the aluminum sheet 02 is placed between the two clamps of the feeding clamp cylinder 3, the clamp of the feeding clamp cylinder 3 clamps the aluminum sheet 02, the feeding driving mechanism 5 drives the feeding clamp cylinder 3 to move to the embossing roller 2, the feeding clamp cylinder 3 drives the aluminum sheet 02 to slide under the relatively flat roller 21, the feeding clamp cylinder 3 transmits the aluminum sheet 02 into the two embossing rollers 2, the embossing roller 2 embosses the aluminum sheet 02, the aluminum sheet 02 after embossing is transmitted out by the two embossing rollers 2, the discharging driving mechanism 6 drives the discharging clamp cylinder 4 to move to the embossing roller 2, the aluminum sheet 02 after embossing is transmitted into the two clamps of the discharging clamp cylinder 4, the discharging clamp cylinder 4 clamps the aluminum sheet 02 after embossing, the discharging driving mechanism 6 drives the discharging clamp cylinder 4 to move to the collecting roller 12, the worker takes the end of the aluminum sheet 02 from the clamp of the discharging clamp cylinder 4, and then fixes the aluminum sheet 02 on the collecting roller 12. The aluminum sheet 02 does not need to be pulled from the feeding roller 11 to the collecting roller 12 by the worker, the contact between the worker and the embossing equipment is reduced, and therefore the safety of the embossing equipment can be improved.
[0037] The workbench 1 is provided with a first driving mechanism 7 for driving the embossing rollers 2 to rotate, and two first supporting plates 13 are fixedly connected to the top surface of the workbench 1, and the two embossing rollers 2 are rotatably connected to the two first supporting plates 13 through shafts; the first driving mechanism 7 comprises a first motor 71, a first belt pulley 72, a second belt pulley 73, a first belt strip 74, a driving gear 75 and a driven gear 76; the driving gear 75 is coaxially connected to the shaft of the lower embossing roller 2, the driven gear 76 is coaxially connected to the shaft of the upper embossing roller 2, and the driving gear 75 is engaged with the driven gear 76; the shaft of the lower embossing roller 2 extends out of the first supporting plate 13, the second belt pulley 73 is coaxially connected to the end of the shaft of the lower embossing roller 2, the first motor 71 is installed on the top surface of the workbench 1, the first belt pulley 72 is coaxially connected to the output shaft of the first motor 71, and the first belt strip 74 is wound around the first belt pulley 72 and the second belt pulley 73.
[0038] The first motor 71 drives the first belt pulley 72 to rotate, the first belt pulley 72 drives the second belt pulley 73 to rotate through the first belt strip 74, the second belt pulley 73 drives the lower embossing roller 2 to rotate, the lower embossing roller 2 drives the driving gear 75 to rotate, the driving gear 75 drives the driven gear 76 to rotate, the driven gear 76 drives the upper embossing roller 2 to rotate, and the two embossing rollers 2 rotate to emboss and convey the aluminum sheet 02.
[0039] The top surface of the workbench 1 is provided with a second supporting plate 14, the feeding roller 11 is rotatably connected to the second supporting plate 14 through a shaft, the end of the shaft of the feeding roller 11 extends out of the second supporting plate 14 and is coaxially connected with a fourth belt pulley 111, a second motor 112 is installed on the top surface of the workbench 1, the output shaft of the second motor 112 is connected with a third belt pulley 113, and a second belt strip 114 is wound between the third belt pulley 113 and the fourth belt pulley 111; the second motor 112 drives the third belt pulley 113 to rotate, the third belt pulley 113 drives the fourth belt pulley 111 to rotate through the second belt strip 114, and the fourth belt pulley 111 can drive the feeding roller 11 to rotate.
[0040] The third support plate 15 is arranged on the top surface of the workbench 1, the collecting roller 12 is rotatably arranged on the third support plate 15 through a rotating shaft, the end of the rotating shaft of the collecting roller 12 extends out of the third support plate 15 and is coaxially connected with the sixth belt pulley 121, the third motor 122 is installed on the top surface of the workbench 1, the output shaft of the third motor 122 is connected with the fifth belt pulley 123, and the third belt strip 124 is arranged around the fifth belt pulley 123 and the sixth belt pulley 121; the third motor 122 drives the fifth belt pulley 123 to rotate, the fifth belt pulley 123 drives the sixth belt pulley 121 to rotate through the third belt strip 124, and the sixth belt pulley 121 can drive the collecting roller 12 to rotate; the collecting roller 12 is rotatably arranged with the receiving roller 16 on the side close to the embossing roller 2, and the lower surface of the aluminum sheet 02 is attached to the peripheral surface of the receiving roller 16; the feeding roller 11 and the collecting roller 12 are both arranged at the same height of the workbench 1, and the height of the lower embossing roller 2 is lower than the height of the feeding roller.
[0041] The embossing roller 2 is arranged with the introduction mechanism 8 for introducing the aluminum sheet 02 into the two embossing rollers 2 on the side close to the feeding roller 11; the introduction mechanism 8 comprises the guide plate 81, the first upper clamping plate 82, the first lower clamping plate 83, the transmission roller 84 and the driving assembly 85; the two first support plates 13 are both arranged with the mounting plate 131 on the side close to the feeding roller 11, the transmission roller 84 is arranged with two ends rotatably connected between the two mounting plates 131 through rotating shafts, and the two transmission rollers 84 are arranged in an up-down mode, the upper transmission roller 84 is pressed against the upper surface of the aluminum sheet 02, the lower transmission roller 84 is pressed against the lower surface of the aluminum sheet 02, and the transmission roller 84 is a rubber roller; the driving assembly 85 is installed on the mounting plate 131 and is used for driving the transmission roller 84 to rotate; the two ends of the guide plate 81 are respectively connected to the sides of the two first support plates 13 close to each other, the guide plate 81 is arranged on the side close to the feeding roller 11 of the lower transmission roller 84, the side of the guide plate 81 close to the transmission roller 84 is attached to the peripheral surface of the transmission roller 84, the top surface of the guide plate 81 is a slope surface and is used for guiding the end of the aluminum sheet 02 into the two transmission rollers 84; the first upper clamping plate 82 is arranged on the upper surface of the aluminum sheet 02, the first lower clamping plate 83 is arranged on the lower surface of the aluminum sheet 02, the two ends of the first upper clamping plate 82 and the first lower clamping plate 83 are respectively connected to the two first support plates 13, the first upper clamping plate 82 and the first lower clamping plate 83 are located between the transmission roller 84 and the embossing roller 2, the side of the first upper clamping plate 82 close to the transmission roller 84 is a slope surface, the side of the first upper clamping plate 82 close to the embossing roller 2 extends into the two embossing rollers 2 and does not contact the embossing roller 2, and the side of the first lower clamping plate 83 close to the transmission roller 84 is attached to the peripheral surface of the transmission roller 84, the side of the first lower clamping plate 83 close to the embossing roller 2 extends into the two embossing rollers 2 and does not contact the embossing roller 2.
[0042] The driving assembly 85 comprises a driving motor 851, a first gear 852 and a second gear 853, the rotating shafts of the two transmission rollers 84 at the same end extend out of the mounting plate 131, the first gear 852 is coaxially connected to the end of the rotating shaft of the lower transmission roller 84, the second gear 853 is coaxially connected to the end of the rotating shaft of the upper transmission roller 84, the driving motor 851 is mounted on the side of the mounting plate 131 away from the transmission rollers 84, and the output shaft of the driving motor 851 is coaxially connected to the end face of the rotating shaft of the lower transmission roller 84.
[0043] When it is needed to introduce the aluminum sheet 02 between the embossing rollers 2, the end of the aluminum sheet 02 extends out of the clamps of the feeding clamp cylinder 3 by a section, the feeding clamp cylinder 3 drives the aluminum sheet 02 to move towards the guide plate 81, the feeding clamp cylinder 3 pushes the end of the aluminum sheet 02 to be guided into the space between the two transmission rollers 84 through the slope surface of the guide plate 81, the driving motor 851 drives the lower transmission roller 84 to rotate, the lower transmission roller 84 drives the first gear 852 to rotate, the first gear 852 drives the second gear 853 to rotate, the second gear 853 drives the upper transmission roller 84 to rotate, the two transmission rollers 84 transmit the aluminum sheet 02 between the first upper clamp plate 82 and the first lower clamp plate 83 through friction, the aluminum sheet 02 is transmitted between the first upper clamp plate 82 and the first lower clamp plate 83 to the space between the two embossing rollers 2, so that the aluminum sheet 02 enters the space between the embossing rollers 2; since it is difficult for the feeding clamp cylinder 3 to directly send the aluminum sheet 02 into the space between the two embossing rollers 2, the first upper clamp plate 82 and the first lower clamp plate 83 are arranged to guide the aluminum sheet 02 to enter the space between the two embossing rollers 2, in order to enable the aluminum sheet 02 to enter the space between the first upper clamp plate 82 and the first lower clamp plate 83 and be transmitted by the first upper clamp plate 82 and the first lower clamp plate 83, the guide plate 81 is arranged to guide the aluminum sheet 02 to enter the space between the two transmission rollers 84, and the two transmission rollers 84 serve as a power source to move the aluminum sheet 02 between the first upper clamp plate 82 and the first lower clamp plate 83.
[0044] The side of the embossing roller 2 close to the collecting roller 12 is provided with an outlet mechanism 9 for transmitting the end of the aluminum sheet 02 to the space between the two clamps of the discharging clamp cylinder 4, the outlet mechanism 9 comprises a second upper clamp plate 91 and a second lower clamp plate 92, the second upper clamp plate 91 and the second lower clamp plate 92 are arranged on the side of the embossing roller 2 close to the collecting roller 12, the two ends of the second upper clamp plate 91 and the second lower clamp plate 92 are respectively connected between the two first support plates 13, the second upper clamp plate 91 is arranged on the upper surface of the aluminum sheet 02, the side of the second upper clamp plate 91 close to the embossing roller 2 is a slope surface, which facilitates guiding the aluminum sheet 02 to enter the space between the second upper clamp plate 91 and the second lower clamp plate 92, the second lower clamp plate 92 is arranged on the lower surface of the aluminum sheet 02, the side of the second lower clamp plate 92 close to the embossing roller 2 is close to the lower embossing roller 2 without contacting, and the sides of the second upper clamp plate 91 and the second lower clamp plate 92 away from the embossing roller 2 are flush, and the two clamps of the discharging clamp cylinder 4 are flush with the second upper clamp plate 91 and the second lower clamp plate 92.
[0045] The embossed aluminum sheet 02 is first transmitted to the top surface of the second lower clamping plate 92, and then transmitted between the second upper clamping plate 91 and the second lower clamping plate 92, and guided to the second upper clamping plate 91 and the second lower clamping plate 92 through the slope surface of the second upper clamping plate 91, and then transmitted out of the second upper clamping plate 91 and the second lower clamping plate 92, and then the two clamping jaws of the discharge clamping jaw air cylinder 4 are opened to allow the aluminum sheet 02 to enter between the two clamping jaws of the discharge clamping jaw air cylinder 4, and then the two clamping jaws of the discharge clamping jaw air cylinder 4 clamp the aluminum sheet 02; the aluminum sheet 02 is guided out of the two embossing rollers 2 by the lead-out mechanism 9, so as to facilitate the clamping of the aluminum sheet 02 by the discharge clamping jaw air cylinder 4.
[0046] The top surface of the workbench 1 is connected with two fourth support plates 17, and the two fourth support plates 17 are respectively located on both sides of the aluminum sheet 02. The fourth support plate 17 is located between the first support plate 13 and the discharging roller 11. The feeding driving mechanism 5 is provided with two feeding driving mechanisms 5, and the two feeding driving mechanisms 5 are respectively arranged on the top of the two fourth support plates 17. The feeding driving mechanism 5 comprises a feeding motor 51, a linear guide rail 52, a lead screw 53 and a sliding seat 54. The feeding motor 51 is installed on the top surface of the fourth support plate 17 and located at one end close to the discharging roller 11. The linear guide rail 52 is installed on the top surface of the fourth support plate 17. The lead screw 53 is coaxially connected to the output shaft of the feeding motor 51. The sliding seat 54 is connected to the top surface of the sliding block of the linear guide rail 52. The lead screw 53 penetrates through the sliding seat 54 and is in threaded transmission with the sliding seat 54. The feeding clamping jaw air cylinder 3 is installed on the sliding seat 54.
[0047] The top surface of the sliding seat 54 away from the discharging roller 11 is provided with two first installation grooves 541. The bottom surface of the first installation groove 541 is provided with a first through hole 542 penetrating through the sliding seat 54. The bottom surface of the feeding clamping jaw air cylinder 3 is connected with two first light rods 543. The two first light rods 543 are respectively slid on the inner walls of the two first through holes 542. The bottom ends of the two first light rods 543 extend out of the first through hole 542 and the end surfaces are connected with first limit plates 544. The first reset spring 545 is sleeved on the two first light rods 543. One end of the first reset spring 545 is pressed against the groove bottom of the first installation groove 541. The other end of the first reset spring 545 is pressed against the feeding clamping jaw air cylinder 3.
[0048] When the aluminum sheet 02 is driven by the feeding clamping cylinder 3 to move towards the embossing roller 2, the clamping jaw of the feeding clamping cylinder 3 needs to pass through the flat roller 21, which will hinder the clamping jaw of the feeding clamping cylinder 3. The feeding motor 51 drives the screw rod 53 to rotate, the screw rod 53 drives the sliding seat 54 to slide on the linear guide rail 52, and the sliding seat 54 drives the feeding clamping cylinder 3 to move. When the clamping jaw of the feeding clamping cylinder 3 contacts the flat roller 21, the flat roller 21 will press the clamping jaw of the feeding clamping cylinder 3 downward, so that the feeding clamping cylinder 3 moves downward, the first reset spring 545 is pressed downward by the feeding clamping cylinder 3, the height of the clamping jaw of the feeding clamping cylinder 3 is lowered, and the clamping jaw of the feeding clamping cylinder 3 passes through the flat roller 21. The first reset spring 545 resets the feeding clamping cylinder 3 to the original position.
[0049] The workbench 1 is connected with a plurality of fifth supporting plates 18, the plurality of fifth supporting plates 18 are evenly divided into two groups and are arranged on the two sides of the aluminum sheet 02 respectively, and the fifth supporting plate 18 is located between the embossing roller 2 and the material collecting roller 12. The discharging driving mechanism 6 is provided with two, and the two discharging driving mechanisms 6 are respectively installed on the fifth supporting plates 18 on the two sides of the aluminum sheet 02. The discharging driving mechanism 6 comprises a guide plate 61, a discharging motor 62, a discharging gear 63, a rack 64, a mounting seat 65 and a moving seat 66. The top end of the fifth supporting plate 18 is bent by 90° towards the aluminum sheet 02, one side surface of the guide plate 61 is installed on the end surface of the top bent end of the fifth supporting plate 18, one end of the guide plate 61 is close to the embossing roller 2, and the other end of the guide plate 61 is close to the material collecting roller 12. One side surface of the mounting seat 65 is connected with a first mounting rod 651, the circumferential surface of the first mounting rod 651 is connected with two second mounting rods 652, a first rotating pipe 653 is sleeved on the first mounting rod 651, the first rotating pipe 653 is located between the two second mounting rods 652, a second rotating pipe 654 is sleeved on the second mounting rod 652, and the end surface of the second mounting rod 652 away from the first mounting rod 651 is connected with a baffle 655. The guide plate 61 is provided with a rolling groove 611 extending from one end close to the embossing roller 2 to one end close to the material collecting roller 12, the first rotating pipe 653 rolls on the inner wall of the rolling groove 611, and the two second rotating pipes 654 are arranged on the two sides of the guide plate 61 respectively, and the two second rotating pipes 654 all roll on the side surface of the guide plate 61.
[0050] The discharging motor 62 is installed on the mounting seat 65, the discharging gear 63 is coaxially connected on the output shaft of the discharging motor 62, the rack 64 is installed on the bottom surface of the guide plate 61 and located below the rolling groove 611, and the discharging gear 63 is engaged with the rack 64. The moving seat 66 is installed on the side of the mounting seat 65 away from the discharging motor 62, and the discharging clamping cylinder 4 is installed on the moving seat 66.
[0051] The top surface of the moving base 66 is provided with two second installation grooves 661, the bottom surface of the second installation groove 661 is provided with a second through hole 662 penetrating through the moving base 66, the bottom surface of the discharging clamp cylinder 4 is connected with two second light rods 663, the two second light rods 663 are respectively slid on the inner wall of the two second through holes 662, the bottom end of the two second light rods 663 extends out of the second through hole 662 and is connected with a second limiting plate 664 in the end face, a second reset spring 665 is sleeved on the two second light rods 663, one end of the second reset spring 665 is pressed against the groove bottom of the second installation groove 661, and the other end of the second reset spring 665 is pressed against the discharging clamp cylinder 4.
[0052] When the discharging clamp cylinder 4 drives the aluminum sheet 02 to move towards the collecting roller 12, the clamp jaw of the discharging clamp cylinder 4 needs to pass through the flattening roller 21, and the flattening roller 21 will hinder the clamp jaw of the discharging clamp cylinder 4, the discharging motor 62 drives the discharging gear 63 to rotate, the discharging gear 63 rolls on the rack 64, the first rotating tube 653 rolls in the rolling groove 611, the second rotating tube 654 rolls on the side surface of the guide plate 61, the first rotating tube 653 and the second rotating tube 654 provide support for the mounting seat 65, the mounting seat 65 drives the moving base 66 to move, the moving base 66 drives the discharging clamp cylinder 4 to move, when the clamp jaw of the discharging clamp cylinder 4 contacts the flattening roller 21, the flattening roller 21 will press the clamp jaw of the discharging clamp cylinder 4 downward, then the discharging clamp cylinder 4 moves downward, the discharging clamp cylinder 4 presses the second reset spring 665 downward, so that the height of the clamp jaw of the discharging clamp cylinder 4 is reduced, until the clamp jaw of the discharging clamp cylinder 4 passes through the flattening roller 21, the second reset spring 665 resets the discharging clamp cylinder 4 to the original position, and the mounting seat 65 continues to drive the moving base 66 to move towards the collecting roller 12.
[0053] Two feeding pressing plates 31 are arranged between the two feeding clamp cylinders 3, one of the two feeding pressing plates 31 is pressed against the upper surface of the aluminum sheet 02 and the two ends of the feeding pressing plate 31 are respectively connected to the upper clamp end faces of the two feeding clamp cylinders 3, and the other feeding pressing plate 31 is pressed against the lower surface of the aluminum sheet 02 and the two ends of the feeding pressing plate 31 are respectively connected to the lower clamp end faces of the two feeding clamp cylinders 3. Two discharging pressing plates 41 are arranged between the two discharging clamp cylinders 4, one of the two discharging pressing plates 41 is pressed against the upper surface of the aluminum sheet 02 and the two ends of the discharging pressing plate 41 are respectively connected to the upper clamp end faces of the two discharging clamp cylinders 4, and the other discharging pressing plate 41 is pressed against the lower surface of the aluminum sheet 02 and the two ends of the discharging pressing plate 41 are respectively connected to the lower clamp end faces of the two discharging clamp cylinders 4. The aluminum sheet 02 is pressed by the feeding pressing plate 31, so that the aluminum sheet 02 is conveniently sent to the guide plate 81, and the discharging clamp cylinder 4 conveniently clamps the aluminum sheet 02 by the discharging pressing plate 41.
[0054] The two ends of the flatter roller 21 located on the side of the embossing roller 2 close to the feeding roller 11 are rotated between the two mounting plates 131 through the rotating shaft; the two ends of the flatter roller 21 located on the side of the embossing roller 2 close to the feeding roller 12 are rotated between the corresponding two fifth support plates 18 through the rotating shaft, and the rotating shaft of the flatter roller 21 passes through the guide plate 61; the two ends of the receiving roller 16 are rotated between the corresponding two fifth support plates 18 through the rotating shaft, and the rotating shaft of the flatter roller 21 passes through the guide plate 61.
[0055] The implementation principle of an aluminum coil embossing device in an embodiment of the present application is as follows: when embossing an aluminum coil 01, the aluminum coil 01 is placed on a discharge roller 11, a worker pulls out one end of an aluminum sheet 02, the feed drive mechanism 5 drives the feed clamp cylinder 3 to move to the discharge roller 11, and the end of the aluminum sheet 02 is placed between the two clamping jaws of the feed clamp cylinder 3, the clamping jaws of the feed clamp cylinder 3 clamp the aluminum sheet 02, the feed drive mechanism 5 drives the feed clamp cylinder 3 to move toward the embossing roller 2, the feed clamp cylinder 3 drives the aluminum sheet 02 to slide under the relatively flat roller 21, the feed clamp cylinder 3 transfers the aluminum sheet 02 between the two embossing rollers 2, and the embossing rollers 2 press the aluminum sheet 02 Embossing is carried out, and the embossed aluminum sheet 02 is transmitted out by the two embossing rollers 2. The discharging drive mechanism 6 drives the discharging claw cylinder 4 to move to the embossing roller 2. The embossed aluminum sheet 02 is transmitted between the two claws of the discharging claw cylinder 4. The discharging claw cylinder 4 clamps the embossed aluminum sheet 02. The discharging drive mechanism 6 drives the discharging claw cylinder 4 to move to the receiving roller 12. The worker then removes the end of the aluminum sheet 02 from the claws of the discharging claw cylinder 4, and then fixes it on the receiving roller 12. There is no need for the worker to pull the aluminum sheet 02 from the unloading roller 11 to the receiving roller 12, which reduces the contact between the workers and the embossing equipment, thereby improving the safety of the embossing equipment.
[0056] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. An aluminum coil embossing device, characterized by: The invention comprises a workbench (1), a feeding roller (11), a receiving roller (12), an embossing roller (2) and a traction device, wherein the feeding roller (11) and the receiving roller (12) are both rotatably arranged on the top surface of the workbench (1), the feeding roller (11) is used to place the aluminum coil (01), and the receiving roller (12) is used to rewind the aluminum coil (01); two embossing rollers (2) are provided, and the two embossing rollers (2) are both rotatably arranged on the top surface of the workbench (1), and the two embossing rollers (2) are rotatably arranged on the top surface of the workbench (1). (2) are arranged up and down, and the two embossing rollers (2) are located between the unwinding roller (11) and the receiving roller (12), and the aluminum sheet (02) of the aluminum coil (01) extends between the two embossing rollers (2); both sides of the embossing roller (2) are rotatably provided with relatively flat rollers (21), and the relatively flat rollers (21) are pressed against the upper surface of the aluminum sheet (02), and the relatively flat rollers (21) trim the aluminum sheet (02) entering and exiting between the two embossing rollers (2) to be parallel to the workbench (1); The traction device includes a feed clamp cylinder (3), a discharge clamp cylinder (4), a feed drive mechanism (5) and a discharge drive mechanism (6); The feed drive mechanism (5) is installed between the embossing roller (2) and the discharge roller (11), and two feed clamp cylinders (3) are provided. The two feed clamp cylinders (3) are respectively used to clamp the two sides of the aluminum sheet (02), and the feed drive mechanism (5) is used to drive the two feed clamp cylinders ( 3) moving from the discharge roller (11) to the embossing roller (2); the discharge drive mechanism (6) is installed between the embossing roller (2) and the receiving roller (12), two discharge clamping cylinders (4) are provided, and the two discharge clamping cylinders (4) are respectively used to clamp the two sides of the embossed aluminum sheet (02), and the discharge drive mechanism (6) is used to drive the two discharge clamping cylinders (4) to move from the embossing roller (2) to the receiving roller (12); The workbench (1) is provided with a first driving mechanism (7) for driving the embossing roller (2) to rotate. Two first support plates (13) are fixedly connected to the top surface of the workbench (1). The two embossing rollers (2) are rotatably connected between the two first support plates (13) via a rotating shaft. The first driving mechanism (7) comprises a first motor (71), a first pulley (72), a second pulley (73), a first belt strip (74), a driving gear (75) and a driven gear (76). The driving gear (75) is coaxially connected to the rotating shaft of the embossing roller (2) located below. The driven gear (76) ) is coaxially connected to the rotating shaft of the embossing roller (2) located above, and the driving gear (75) is meshed with the driven gear (76); the rotating shaft end of the embossing roller (2) located below extends out of the first supporting plate (13), and the second pulley (73) is coaxially connected to the rotating shaft end of the embossing roller (2) located below, the first motor (71) is installed on the top surface of the workbench (1), the first pulley (72) is coaxially connected to the output shaft of the first motor (71), and the first belt strip (74) is wound around the first pulley (72) and the second pulley (73); The side of the embossing roller (2) close to the discharge roller (11) is provided with an introduction mechanism (8) for introducing the aluminum sheet (02) between the two embossing rollers (2); the introduction mechanism (8) includes a guide plate (81), a first upper clamping plate (82), a first lower clamping plate (83), a transmission roller (84) and a driving assembly (85); the two first support plates (13) close to the discharge roller (11) are both installed with a mounting plate (131), two transmission rollers (84) are provided, and the two transmission rollers ( The two ends of the guide plate (81) are connected to the two mounting plates (131) through a rotating shaft, and the two transmission rollers (84) are arranged up and down, the transmission roller (84) located on the top is pressed against the upper surface of the aluminum sheet (02), and the transmission roller (84) located on the bottom is pressed against the lower surface of the aluminum sheet (02); the driving component (85) is installed on the mounting plate (131), and the driving component (85) is used to drive the transmission roller (84) to rotate; the two ends of the guide plate (81) are respectively connected to the two first support plates (131). The support plates (13) are close to each other on one side, the guide plate (81) is arranged on the side of the transmission roller (84) below close to the discharge roller (11), and the side of the guide plate (81) close to the transmission roller (84) is attached to the peripheral surface of the transmission roller (84); the first upper clamping plate (82) is arranged on the upper surface of the aluminum sheet (02), the first lower clamping plate (83) is arranged on the lower surface of the aluminum sheet (02), and the two ends of the first upper clamping plate (82) and the first lower clamping plate (83) are respectively connected to the two On the first supporting plate (13), the first upper clamping plate (82) and the first lower clamping plate (83) are located between the transmission roller (84) and the embossing roller (2), the side of the first upper clamping plate (82) close to the embossing roller (2) extends between the two embossing rollers (2), the side of the first lower clamping plate (83) close to the transmission roller (84) is attached to the circumferential surface of the transmission roller (84), and the side of the first lower clamping plate (83) close to the embossing roller (2) extends between the two embossing rollers (2); The driving assembly (85) includes a driving motor (851), a first gear (852) and a second gear (853). The rotating shafts at the same end of the two transmission rollers (84) extend out of the mounting plate (131). The first gear (852) is coaxially connected to the end of the rotating shaft of the lower transmission roller (84). The second gear (853) is coaxially connected to the end of the rotating shaft of the upper transmission roller (84). The driving motor (851) is installed on a side of the mounting plate (131) away from the transmission roller (84). The output shaft of the driving motor (851) is coaxially connected to the end face of the rotating shaft of the lower transmission roller (84).
2. The aluminum coil embossing equipment according to claim 1, characterized in that: The side of the embossing roller (2) close to the receiving roller (12) is provided with a lead-out mechanism (9) for transferring the end of the aluminum sheet (02) to between the two clamping jaws of the discharging clamping cylinder (4), and the lead-out mechanism (9) includes a second upper clamping plate (91) and a second lower clamping plate (92), and the second upper clamping plate (91) and the second lower clamping plate (92) are provided on the side of the embossing roller (2) close to the receiving roller (12), and the second upper clamping plate (91) and the second lower clamping plate (92) are provided on the side of the embossing roller (2) close to the receiving roller (12). The two ends of the clamping plate (92) are respectively connected between the two first support plates (13), the second upper clamping plate (91) is arranged on the upper surface of the aluminum sheet (02), and the second lower clamping plate (92) is arranged on the lower surface of the aluminum sheet (02). The second upper clamping plate (91) and the second lower clamping plate (92) are flush with one side away from the embossing roller (2), and the two clamping jaws of the discharge clamping jaw cylinder (4) are flush with the second upper clamping plate (91) and the second lower clamping plate (92).
3. The aluminum coil embossing equipment according to claim 1, characterized in that: The top surface of the workbench (1) is connected to two fourth support plates (17), the two fourth support plates (17) are respectively located on both sides of the aluminum sheet (02), and the fourth support plates (17) are located between the first support plate (13) and the unwinding roller (11). Two feed drive mechanisms (5) are provided, and the two feed drive mechanisms (5) are respectively provided on the top of the two fourth support plates (17); the feed drive mechanism (5) includes a feed motor (51), a linear guide rail (52), a lead screw (53) and a slide seat (54). The feeding motor (51) is mounted on the top surface of the fourth support plate (17) and is located at one end close to the discharge roller (11); the linear guide rail (52) is mounted on the top surface of the fourth support plate (17); the lead screw (53) is coaxially connected to the output shaft of the feeding motor (51); the slide (54) is connected to the top surface of the slider of the linear guide rail (52); the lead screw (53) passes through the slide (54) and is threadedly driven with the slide (54); the feeding jaw cylinder (3) is mounted on the slide (54).
4. The aluminum coil embossing equipment according to claim 3, characterized in that: The top surface of the slide (54) away from one end of the discharge roller (11) is provided with two first mounting grooves (541), and the bottom surface of the first mounting groove (541) is provided with a first through hole (542) penetrating the slide (54). The bottom surface of the feeding clamp cylinder (3) is connected with two first light rods (543), and the two first light rods (543) slide on the inner walls of the two first through holes (542) respectively. The bottom ends of the two first light rods (543) extend out of the first through hole (542) and the end faces are connected with a first limit plate (544). The two first light rods (543) are both sleeved with a first return spring (545), one end of the first return spring (545) presses the bottom of the first mounting groove (541), and the other end of the first return spring (545) presses the feeding clamp cylinder (3).
5. The aluminum coil embossing equipment according to claim 1, characterized in that: The top surface of the workbench (1) is connected to a plurality of fifth support plates (18), the plurality of fifth support plates (18) are arranged on both sides of the aluminum sheet (02), and the fifth support plates (18) are located between the embossing roller (2) and the receiving roller (12); two discharging drive mechanisms (6) are provided, and the two discharging drive mechanisms (6) are respectively installed on the fifth support plates (18) on both sides of the aluminum sheet (02); the discharging drive mechanism (6) includes a guide plate (61), a discharging motor ( 62), a discharging gear (63), a rack (64), a mounting seat (65) and a movable seat (66); one side of the guide plate (61) is mounted on the top of the fifth support plate (18); one side of the mounting seat (65) is connected to a first mounting rod (651), and the circumference of the first mounting rod (651) is connected to two second mounting rods (652), and a first rotating tube (653) is sleeved on the first mounting rod (651), and the first rotating tube (653) is located between the two second mounting rods (652). The second mounting rod (652) is provided with a second rotating tube (654) on the second mounting rod (652), and the end surface of the second mounting rod (652) away from the first mounting rod (651) is connected with a baffle (655); a rolling groove (611) is provided on the guide plate (61), the first rotating tube (653) rolls on the inner wall of the rolling groove (611), and the two second rotating tubes (654) roll on the two side surfaces of the guide plate (61); the discharging motor (62 ) is mounted on the mounting seat (65), the discharging gear (63) is coaxially connected to the output shaft of the discharging motor (62), the rack (64) is mounted on the bottom surface of the guide plate (61) and is located below the rolling groove (611), and the discharging gear (63) is engaged with the rack (64); the moving seat (66) is mounted on the side of the mounting seat (65) away from the discharging motor (62), and the discharging claw cylinder (4) is mounted on the moving seat (66).
6. The aluminum coil embossing equipment according to claim 5, characterized in that: The top surface of the movable seat (66) is provided with two second mounting grooves (661), and the bottom surface of the second mounting groove (661) is provided with a second through hole (662) penetrating the movable seat (66). The bottom surface of the discharging clamping cylinder (4) is connected with two second light rods (663), and the two second light rods (663) slide on the inner walls of the two second through holes (662) respectively. The bottom ends of the two second light rods (663) extend out of the second through holes (662) and the end faces are connected with second limit plates (664). The two second light rods (663) are both sleeved with second return springs (665), one end of the second return spring (665) presses the bottom of the second mounting groove (661), and the other end of the second return spring (665) presses the discharging clamping cylinder (4).
Citation Information
Patent Citations
Aluminum profile embossing device
CN213354064U
Aluminum plate embossing device
CN219360730U