Aluminum profile frame producing and machining equipment and machining method thereof

Precise drilling is achieved through the combination of electric actuators and multi-axis drilling rigs, while a negative pressure dust extraction system cleans up cutting dust. Electric stop levers and conveyor belts synchronously control the cutting length, and robotic arms and vision systems ensure accurate installation of corner brackets. This approach solves the problems of low automation and cutting dust pollution in aluminum profile frame production, thereby improving processing accuracy and efficiency.

CN120962361APending Publication Date: 2025-11-18SHANGHAI MONEYPANTHER MECHANICAL & ELECTRICAL EQUIP
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Patent Information

Application Number
CN202511252916.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

The current aluminum profile frame production and processing process suffers from low automation, unstable processing accuracy, reliance on manual operation leading to low efficiency, severe dust pollution during cutting, and complex corner bracket installation, which is prone to human error.

Method used

Precise drilling is achieved by using electric actuators and multi-axis drilling rigs, a negative pressure dust extraction system cleans up cutting dust, an electric stop lever and conveyor belt synchronously control the cutting length, and a robotic arm and vision system ensure accurate installation of corner brackets.

Benefits of technology

It has improved the automation level and processing accuracy of aluminum profile frame production, reduced material waste, improved workshop hygiene, and increased production efficiency and safety.

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Abstract

The invention relates to the technical field of aluminum profile machining, and discloses aluminum profile frame producing and machining equipment and a machining method thereof.The equipment comprises a first conveying belt, a second conveying belt, a third conveying belt, a third conveying belt and a fourth conveying belt, the cutting mechanism is used for cutting the aluminum profile; the positioning mechanism is used for positioning the aluminum profile; the positioning mechanism comprises a first fixing frame; the limiting mechanism is used for limiting the aluminum profile to control the cutting length; the fixing mechanism is used for fixing the aluminum profile; the punching mechanism is used for punching the aluminum profile, and the cleaning mechanism is used for cleaning the aluminum profile; and the mounting mechanism is used for mounting the corner brace. A second electric push rod pushes a second fixing frame to move and drives the multi-shaft drill tower to move to be close to the aluminum profile, a fifth motor is started to drive the multi-shaft drill tower to rotate to adjust the perforating position, after perforating is completed, a third electric push rod pushes a fourth motor and a tapping cutter to move, and the fourth motor is started to conduct tapping; and therefore, the effect of quickly tapping and tapping is achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of aluminum profile processing, in particular to an aluminum profile frame production and processing equipment and a processing method thereof. BACKGROUND

[0002] In the field of aluminum profile frame production and processing, traditional methods usually rely on manual operation and simple equipment. This way not only is inefficient, but also often leads to low processing precision and serious waste.

[0003] Many existing devices lack flexibility when drilling holes. The operator needs to manually adjust the drilling position, often with errors. This directly affects the product's pass rate. In contrast, the present application uses the cooperation of electric push rods and multi-axis drill towers to achieve precise automated drilling, greatly improving the precision and efficiency of processing.

[0004] The debris and dust scattered during the traditional cutting process are often not cleaned, causing a dirty and messy workshop environment, and even becoming a safety hazard. In existing technology, manual cleaning is often relied on, which is inefficient and incomplete. The present application uses a negative pressure dust extraction system to collect the dust generated during cutting in a timely manner, improving the safety of the operation and the sanitary environment of the workshop.

[0005] Existing methods usually require manual calibration, and the precision is difficult to guarantee. Some even cause aluminum profile loss due to operation errors. This situation is very common in actual production. The present application realizes more accurate cutting length control through the synchronous cooperation of the electric stop lever and the conveyor belt, avoiding material waste.

[0006] The installation of corner codes is generally complex and prone to human operation errors, reducing production efficiency. In traditional technology, the positioning and installation of corner codes often rely on experienced workers, lacking standardization. The present application ensures that the corner codes are accurately and quickly installed in place through the combination of mechanical arms and vision systems, reducing manual intervention and improving the degree of production automation. SUMMARY

[0007] In view of the shortcomings of the prior art, the present application provides an aluminum profile frame production and processing equipment and a processing method thereof, which solves the problems of low overall production efficiency, unstable processing precision and extreme dependence on manual operation in the existing aluminum profile frame processing process.

[0008] To achieve the above purpose, the present application realizes the following technical scheme: an aluminum profile frame production and processing equipment, comprising: A first conveyor belt, one end of the first conveyor belt is fixedly connected with a second conveyor belt, one side of the second conveyor belt is fixedly connected with a third conveyor belt, one end of the third conveyor belt is provided with a fourth conveyor belt; A cutting mechanism is installed on the outer wall of the second conveying belt for cutting the aluminum profile; A positioning mechanism is installed inside the first conveying belt for positioning the aluminum profile; The positioning mechanism comprises a first fixed frame, the outer wall of the first fixed frame is fixedly connected to the first conveying belt, the outer wall of the first fixed frame is slidably connected with a driving assembly, the inside of the first fixed frame is slidably connected with a first sliding rod and a second sliding rod, one end of the first sliding rod is fixedly connected with a first positioning plate, one end of the second sliding rod is fixedly connected with a second positioning plate; A limiting mechanism is installed on the outer wall of the second conveying belt for limiting the cutting length; A fixing mechanism is installed on the outer wall of the third conveying belt for fixing the aluminum profile; A punching mechanism is installed on the outer wall of the fixing mechanism for punching; A cleaning mechanism is installed on the third conveying belt for cleaning the aluminum profile; An installation mechanism is installed on the outer wall of the fourth conveying belt for installing the corner code.

[0009] Preferably, the driving assembly comprises a rotating rod and a second motor, the outer wall of the rotating rod is rotatably connected to the inside of the first fixed frame, one end of the rotating rod is fixedly connected to the output end of the second motor, the outer wall of the rotating rod is fixedly connected with a gear, the outer wall of the gear is meshingly connected with a rack, the outer walls of multiple racks are respectively fixedly connected to the outer walls of the first sliding rod and the second sliding rod.

[0010] Preferably, the cutting mechanism comprises a first support rod, the inside of the first support rod is fixedly connected with a first electric push rod, the output end of the first electric push rod is fixedly connected with a fixed block, the outer wall of the fixed block is fixedly connected with a first motor, the output end of the first motor is fixedly connected with a cutting disc, the outer wall of the cutting disc is rotatably connected with a protective plate, the outer wall of the protective plate is fixedly connected to the outer wall of the fixed block, the outer wall of the protective plate is fixedly connected with a first conveying pipe, one end of the first conveying pipe is fixedly connected with a first collection box, the outer wall of the first collection box is fixedly connected with a fan.

[0011] Preferably, the limiting mechanism comprises a sliding frame, the outer wall of the sliding frame is fixedly connected to the outer wall of the second conveying belt, the upper surface of the sliding frame is slidably connected with a first sliding block, the inside of the first sliding block is fixedly connected with a third motor, the output end of the third motor is fixedly connected with a blocking rod.

[0012] Preferably, the fixing mechanism comprises a fixing rod, an outer wall of the fixing rod is fixedly connected to an outer wall of the third conveying belt, an inner part of the fixing rod is fixedly connected with a first hydraulic rod, an output end of the first hydraulic rod is fixedly connected with a first connecting block, an outer wall of the first connecting block is slidably connected to an outer wall of the third conveying belt, an inner part of the first connecting block is fixedly connected with a second hydraulic rod, an output end of the second hydraulic rod is fixedly connected with a fixing plate.

[0013] Preferably, the punching mechanism comprises a support plate, an outer wall of the support plate is fixedly connected with a tool holder, an outer wall of the tool holder is fixedly connected to an outer surface of the fixing rod, an upper surface of the support plate is slidably connected with a second sliding block, lower surfaces of a plurality of the second sliding blocks are fixedly connected with a first moving frame and a second moving frame, inner parts of the second moving frame and the first moving frame are slidably connected with a third sliding block, inner parts of two third sliding blocks are respectively fixedly connected with a second electric push rod and a third electric push rod, an output end of the third electric push rod is fixedly connected with a fourth motor, an output end of the fourth motor is fixedly connected with a tapping knife, an output end of the second electric push rod is fixedly connected with a second fixing frame, an inner part of the second fixing frame is fixedly connected with a fifth motor, an output end of the fifth motor is fixedly connected with a multi-axis drill tower, a lower surface of the second fixing frame is rotatably connected to an upper surface of the multi-axis drill tower.

[0014] Preferably, the cleaning mechanism comprises a cleaning box, a lower surface of the cleaning box is fixedly connected with a first baffle, an outer wall of the first baffle is fixedly connected to outer walls of the third conveying belt and the fourth conveying belt, the lower surface of the cleaning box is fixedly connected with a second baffle, an inner part of the cleaning box is fixedly connected with a blowing pipe, a lower surface of the first baffle is fixedly connected with a second collecting box, an outer wall of the second collecting box is fixedly connected with a pneumatic cylinder, an output end of the pneumatic cylinder is fixedly connected with a second conveying pipe, one end of the second conveying pipe is fixedly connected to one end of the blowing pipe, an inner wall of the first baffle is fixedly connected with a limiting rod.

[0015] Preferably, the installation mechanism comprises a support table, an outer wall of the support table is fixedly connected to an outer wall of the fourth conveying belt, an upper surface of the support table is respectively fixedly connected with a first mechanical arm and a second mechanical arm, one end of the first mechanical arm is fixedly connected with a sixth motor, an inner part of the sixth motor is fixedly connected with, an output end of the sixth motor is fixedly connected with a threaded knife, an outer wall of the sixth motor is fixedly connected with a first camera, one end of the second mechanical arm is fixedly connected with a second connecting block, an inner part of the second connecting block is fixedly connected with a seventh motor, an output end of the seventh motor is fixedly connected with a threaded rod, an outer wall of the threaded rod is threadedly connected with a clamping plate, an outer wall of the clamping plate is slidably connected to the inner part of the second connecting block.

[0016] Preferably, the outer wall of the fourth conveying belt is fixedly connected with a support frame, the upper surface of the support frame is connected with a vibrating disc, the outer wall of the vibrating disc is fixedly connected with a conveying frame, the lower surface of the conveying frame is fixedly connected to the upper surface of the support frame, the outer wall of the fourth conveying belt is fixedly connected with a second supporting rod, the outer wall of the second supporting rod is fixedly connected with a second camera, the lower surfaces of the first conveying belt and the second conveying belt are fixedly connected with a third collecting box, the outer surface of the third collecting box is fixedly connected with a first collecting box, the upper surface of the third collecting box is fixedly connected with a third baffle, and the inside of the third baffle is slidably connected to the outer wall of the protective plate.

[0017] An aluminum profile frame production and processing method, comprising the following steps: Place the aluminum profile on the first conveying belt, move the aluminum profile to the second conveying belt by starting the first conveying belt, slide the first sliding block on the sliding frame, adjust the position of the first sliding block, start the third motor to drive the blocking rod to move, make the blocking rod horizontal on the second conveying belt, make the aluminum profile contact with the blocking rod by starting the second conveying belt, and control the cutting length; Start the output end of the second motor to drive the rotating rod to rotate, thereby driving the gear to rotate, thereby driving the rack to drive the first sliding rod and the second sliding rod to move oppositely in the first fixed frame, and drive the first positioning plate and the second sliding rod to move and clamp the aluminum profile; Drive the first motor to move by pushing the fixed block through the first electric push rod, start the first motor to drive the cutting disc to rotate, make the cutting disc contact with the aluminum profile to cut by pushing the first electric push rod, the cutting generated debris is blocked by the third baffle and falls into the third collecting box, the air in the first collecting box is exhausted by starting the fan, a negative pressure is generated in the protective plate, and the cutting generated dust is transported to the first collecting box through the first conveying pipe; After cutting, the third motor drives the blocking rod to move to lift the blocking rod, the first positioning plate and the second sliding rod are moved to release the fixation of the aluminum profile, the second conveying belt is started to convey the aluminum profile into the third conveying belt, the second hydraulic rod is started to drive the fixed plate to move, the output end of the first hydraulic rod drives the first connecting block to move, and the fixed plate is driven to move, so that the fixed plate fixes the aluminum profile, the third sliding block slides in the second moving frame and the first moving frame, and then moves above the tool holder, the second fixed frame is pushed by the output end of the second electric push rod to drive the multi-axis drill tower to move, and the second sliding block is approached to replace the punching tool of different sizes, the fourth motor and the tapping tool are moved by the third electric push rod, and then the tool is replaced from the tool holder; The third sliding block is restarted to drive the third electric push rod and the second electric push rod to move above the aluminum profile, the second electric push rod drives the second fixing frame to move and drives the multi-axis drill tower to move to be close to the aluminum profile, the fifth motor is started to drive the multi-axis drill tower to rotate on the second fixing frame, so that the effect of adjusting the hole position is achieved, after the punching is completed, the fourth motor and the tapping cutter are driven to move by the third electric push rod, the tapping cutter is inserted into the hole, and the fourth motor is started to tap; The fixed plate is driven by the output end of the second hydraulic rod to contact and fix the aluminum profile, the aluminum profile is moved into the cleaning box by starting the third conveying belt, slides on the limiting rod, and the gas is blown into the second conveying pipe and conveyed into the blowing pipe by starting the air cylinder, so that the gas is blown onto the aluminum profile, the debris generated by tapping is blown out, and the debris falls into the second collecting box through the second baffle and the first baffle for collection; the aluminum profile is moved from the third conveying belt to the fourth conveying belt, the corner code is conveyed to the conveying frame through the vibration disc, then the second connecting block is moved above the conveying frame by the second mechanical arm, and the clamping plate is driven to slide in the second connecting block by rotating the threaded rod driven by the seventh motor, so that the corner code is clamped. The corner code is placed on the aluminum profile by moving the second connecting block controlled by the second mechanical arm, the first camera is used to shoot the placement position of the corner code, the sixth motor is moved close to the corner code by the first mechanical arm, and the threaded cutter is driven to rotate to install the corner code, and the second camera is used to shoot after the installation is completed, so as to detect the quality of the aluminum profile.

[0018] The application provides an aluminum profile frame production and processing equipment and a processing method thereof. 1、The second electric push rod drives the second fixing frame to move and drives the multi-axis drill tower to move to be close to the aluminum profile, the fifth motor is started to drive the multi-axis drill tower to rotate on the second fixing frame, so that the effect of adjusting the hole position is achieved, after the punching is completed, the fourth motor and the tapping cutter are driven to move by the third electric push rod, the tapping cutter is inserted into the hole, and the fourth motor is started to tap, thereby achieving the effect of rapid tapping.

[0019] 2、The first electric push rod drives the fixed block to drive the first motor to move, and the first motor is started to drive the cutting disc to rotate, the cutting disc is contacted with the aluminum profile to cut by the pushing of the first electric push rod, the debris generated by cutting falls into the third collecting box by the blocking of the third baffle, the air in the first collecting box is extracted by starting the fan, negative pressure is generated in the protective plate, the dust generated by cutting is conveyed into the first collecting box through the first conveying pipe, thereby achieving the effect of cleaning the debris and dust generated by cutting.

[0020] 3、The first sliding block is slid on the sliding frame, the position of the first sliding block is adjusted, the third motor is started to drive the blocking rod to move, the blocking rod is transversely arranged on the second conveying belt, the aluminum profile is contacted with the blocking rod through the start of the second conveying belt, and the cutting length is controlled.

[0021] 4、The angle code is conveyed to the conveying frame through the vibration disc, the second connecting block is moved above the conveying frame through the second mechanical arm, the clamping plate is slid in the second connecting block to clamp the angle code through the rotation of the threaded rod driven by the seventh motor, the angle code is placed on the aluminum profile through the movement of the second connecting block controlled by the second mechanical arm, the first camera is used to shoot the placement position of the angle code, the sixth motor is moved close to the angle code through the first mechanical arm, and the threaded cutter is rotated to install the angle code, and the second camera is used to shoot after the installation is completed, so that the aluminum profile is inspected, and the effect of reducing manual intervention is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a perspective view of the present application; Figure 2 It is a side view of the present application; Figure 3 It is a first fixed frame sectional view of the present application; Figure 4 It is a limiting mechanism schematic view of the present application; Figure 5 It is a punching mechanism schematic view of the present application; Figure 6 It is a second fixed frame sectional view of the present application; Figure 7 It is a fixed mechanism schematic view of the present application; Figure 8 It is a cleaning box sectional view of the present application; Figure 9 It is an installation mechanism schematic view of the present application; Figure 10 It is a second connecting block sectional view of the present application.

[0023] 1, first conveying belt; 2, second conveying belt; 3, cutting mechanism; 301, first supporting rod; 302, first motor; 303, fixed block; 304, guard plate; 305, first electric push rod; 306, cutting disc; 307, first conveying pipe; 308, first collecting box; 309, fan; 4, positioning mechanism; 401, first fixed frame; 402, second motor; 403, first sliding rod; 404, rack; 405, first positioning plate; 406, second sliding rod; 407, second positioning plate; 408, gear; 409, rotating rod; 5, limiting mechanism; 501, sliding frame; 502, third motor; 503, first sliding block; 504, blocking rod; 6, fixing mechanism; 601, fixing rod; 602, first hydraulic rod; 603, first connecting block; 604, second hydraulic rod; 605, fixed plate; 7, punching mechanism; 701, supporting plate; 702, second sliding block; 703, first moving frame; 704, second moving frame; 705, tool holder; 706, second electric push rod; 707, third electric push rod; 708, tapping tool; 709, fourth motor; 7010, second fixed frame; 7011, fifth motor; 7012, multi-axis drill tower; 7013, third sliding block; 8, cleaning mechanism; 801, cleaning box; 802, air cylinder; 803, second conveying pipe; 804, second collecting box; 805, first baffle; 806, limiting rod; 807, air blowing pipe; 808, second baffle; 9, mounting mechanism; 901, supporting table; 902, first mechanical arm; 903, second mechanical arm; 904, connecting sleeve; 905, second connecting block; 906, threaded tool; 907, seventh motor; 908, threaded rod; 909, first camera; 9010, clamping plate; 9011, sixth motor; 10, third collecting box; 11, third baffle; 12, third conveying belt; 13, fourth conveying belt; 14, supporting frame; 15, vibrating disc; 16, conveying frame; 17, second supporting rod; 18, second camera. DETAILED DESCRIPTION

[0024] The above description is made in conjunction with the accompanying drawings Figure 1 - the accompanying drawings Figure 10 The application will be further described in detail.

[0025] Please refer to the accompanying drawings Figure 1 - the accompanying drawings Figure 3 The embodiment of the application provides an aluminum profile frame production and processing equipment, which comprises: The first conveying belt 1 is fixedly connected with the second conveying belt 2 at one end, the second conveying belt 2 is fixedly connected with the third conveying belt 12 at one side, and the third conveying belt 12 is provided with the fourth conveying belt 13 at one end; The cutting mechanism 3 is installed on the outer wall side of the second conveying belt 2 and used for cutting the aluminum profile; the cutting mechanism 3 comprises a first supporting rod 301, the inside of the first supporting rod 301 is fixedly connected with a first electric push rod 305, the output end of the first electric push rod 305 is fixedly connected with a fixed block 303, the outer wall of the fixed block 303 is fixedly connected with a first motor 302, the output end of the first motor 302 is fixedly connected with a cutting disc 306, the outer wall of the cutting disc 306 is rotatably connected with a protective plate 304, the outer wall of the protective plate 304 is fixedly connected with the outer wall of the fixed block 303, the outer wall of the protective plate 304 is fixedly connected with a first conveying pipe 307, one end of the first conveying pipe 307 is fixedly connected with a first collecting box 308, and the outer wall of the first collecting box 308 is fixedly connected with a fan 309; the lower surfaces of the first conveying belt 1 and the second conveying belt 2 are fixedly connected with a third collecting box 10, the outer surface of the third collecting box 10 is fixedly connected with the first collecting box 308, the upper surface of the third collecting box 10 is fixedly connected with a third baffle 11, and the inside of the third baffle 11 is slidably connected with the outer wall of the protective plate 304 Specifically, the first electric push rod 305 pushes the fixed block 303 to drive the first motor 302 to move, and the first motor 302 is started to drive the cutting disc 306 to rotate; the first electric push rod 305 pushes the cutting disc 306 to contact the aluminum profile for cutting; the cutting produces the cuttings which are blocked by the third baffle 11 and fall into the third collecting box 10; the fan 309 is started to exhaust the air in the first collecting box 308, so that the negative pressure is generated in the protective plate 304, and the dust generated in the cutting is conveyed to the first collecting box 308 through the first conveying pipe 307.

[0026] Please refer to the accompanying drawings Figure 1 The accompanying drawings Figure 3 The positioning mechanism 4 is installed in the interiors of the first conveying belt 1 and the second conveying belt 2 and used for positioning the aluminum profile; The positioning mechanism 4 comprises a first fixed frame 401, the outer wall of the first fixed frame 401 is fixedly connected with the first conveying belt 1, the outer wall of the first fixed frame 401 is slidably connected with a driving assembly, the inside of the first fixed frame 401 is slidably connected with a first sliding rod 403 and a second sliding rod 406, one end of the first sliding rod 403 is fixedly connected with a first positioning plate 405, one end of the second sliding rod 406 is fixedly connected with a second positioning plate 407, the driving assembly comprises a rotating rod 409 and a second motor 402, the outer wall of the rotating rod 409 is rotatably connected with the inside of the first fixed frame 401, one end of the rotating rod 409 is fixedly connected with the output end of the second motor 402, the outer wall of the rotating rod 409 is fixedly connected with a gear 408, the outer wall of the gear 408 is meshingly connected with a rack 404, and the outer walls of a plurality of racks 404 are respectively fixedly connected with the outer walls of the first sliding rod 403 and the second sliding rod 406; Specific, start the second motor 402 output end drive rotating rod 409 rotation, thus driving gear 408 rotation, thus driving rack 404 drive first sliding rod 403 and second sliding rod 406 in the first fixed frame 401 opposite movement, and drive first positioning plate 405 and second sliding rod 406 move and clamp the aluminum profile, in through the first positioning plate 405 and second sliding rod 406 move to remove the fixed aluminum profile, in the start of the second conveyor belt 2 for conveying aluminum profile into the third conveyor belt 12, Please refer to the attached Figure 1 - attached Figure 4 , limiting mechanism 5, installed in the second conveyor belt 2 outer wall, for limiting control of the length of the aluminum profile cutting; limiting mechanism 5 includes sliding frame 501, the outer wall of the sliding frame 501 is fixedly connected to the outer wall of the second conveyor belt 2, the upper surface of the sliding frame 501 is slidably connected with the first sliding block 503, the first sliding block 503 is fixedly connected with the third motor 502 in the interior, the output end of the third motor 502 is fixedly connected with the stop rod 504; Specific, through the first sliding block 503 on the sliding frame 501 sliding, adjust the position of the first sliding block 503, and start the third motor 502 drive stop rod 504 movement, so that the stop rod 504 across the second conveyor belt 2, through the start of the second conveyor belt 2 makes the aluminum profile and stop rod 504 contact, control the cutting length.

[0027] Please refer to the attached Figure 5 - attached Figure 7 , fixed mechanism 6, installed in the third conveyor belt 12 outer wall, for fixing the aluminum profile; fixed mechanism 6 includes fixed rod 601, the outer wall of the fixed rod 601 is fixedly connected to the outer wall of the third conveyor belt 12, the interior of the fixed rod 601 is fixedly connected with the first hydraulic rod 602, the output end of the first hydraulic rod 602 is fixedly connected with the first connecting block 603, the outer wall of the first connecting block 603 is slidably connected to the outer wall of the third conveyor belt 12, the interior of the first connecting block 603 is fixedly connected with the second hydraulic rod 604, the output end of the second hydraulic rod 604 is fixedly connected with the fixed plate 605; Specific, through the start of the second hydraulic rod 604 drive fixed plate 605 movement, and then through the output end of the first hydraulic rod 602 drive first connecting block 603 movement, and drive fixed plate 605 movement, so that the fixed plate 605 fixed aluminum profile.

[0028] Please refer to the attached Figure 5 - attached Figure 6A punching mechanism 7 is installed on the outer wall of the fixing mechanism 6 and used for punching the aluminum profile; the punching mechanism 7 comprises a support plate 701, the outer wall of the support plate 701 is fixedly connected with a tool holder 705, the outer wall of the tool holder 705 is fixedly connected with the outer surface of the fixing rod 601, the upper surface of the support plate 701 is slidably connected with a second sliding block 702, the lower surfaces of a plurality of second sliding blocks 702 are fixedly connected with a first moving frame 703 and a second moving frame 704, the interiors of the second moving frame 704 and the first moving frame 703 are slidably connected with a third sliding block 7013, the interiors of the two third sliding blocks 7013 are respectively fixedly connected with a second electric push rod 706 and a third electric push rod 707, the output end of the third electric push rod 707 is fixedly connected with a fourth motor 709, the output end of the fourth motor 709 is fixedly connected with a tapping knife 708, the output end of the second electric push rod 706 is fixedly connected with a second fixing frame 7010, the interior of the second fixing frame 7010 is fixedly connected with a fifth motor 7011, the output end of the fifth motor 7011 is fixedly connected with a multi-axis drill tower 7012, and the lower surface of the second fixing frame 7010 is rotatably connected with the upper surface of the multi-axis drill tower 7012. Specifically, the third sliding block 7013 slides in the interiors of the second moving frame 704 and the first moving frame 703, and then moves above the tool holder 705, the second electric push rod 706 pushes the second fixing frame 7010 to drive the multi-axis drill tower 7012 to move, and the second sliding block 702 is approached to replace the punching knives of different sizes, the third electric push rod 707 pushes the fourth motor 709 and the tapping knife 708 to move, and then the tool is replaced from the tool holder 705, the third sliding block 7013 drives the third electric push rod 707 and the second electric push rod 706 to move above the aluminum profile, the second electric push rod 706 pushes the second fixing frame 7010 to move and drive the multi-axis drill tower 7012 to move close to the aluminum profile, the fifth motor 7011 is started to drive the multi-axis drill tower 7012 to rotate on the second fixing frame 7010, so as to adjust the hole position effect, after the punching is completed, the fourth motor 709 and the tapping knife 708 are pushed to move by the third electric push rod 707, the tapping knife 708 is inserted into the hole, and the fourth motor 709 is started to tap.

[0029] Please refer to the attached drawings Figure 1 and the attached drawings Figure 8The cleaning mechanism 8 is installed on the upper surface of the third conveying belt 12 and the fourth conveying belt 13, and is used for cleaning the aluminum profile; the cleaning mechanism 8 comprises a cleaning box 801, the lower surface of the cleaning box 801 is fixedly connected with a first baffle 805, the outer wall of the first baffle 805 is fixedly connected on the outer wall of the third conveying belt 12 and the fourth conveying belt 13, the lower surface of the cleaning box 801 is fixedly connected with a second baffle 808, the inside of the cleaning box 801 is fixedly connected with a blowing pipe 807, the lower surface of the first baffle 805 is fixedly connected with a second collecting box 804, the outer wall of the second collecting box 804 is fixedly connected with a gas cylinder 802, the output end of the gas cylinder 802 is fixedly connected with a second conveying pipe 803, one end of the second conveying pipe 803 is fixedly connected on one end of the blowing pipe 807, and the inner wall of the first baffle 805 is fixedly connected with a limiting rod 806. Specifically, the third conveying belt 12 is started to move the aluminum profile into the inside of the cleaning box 801, slides on the limiting rod 806, the gas cylinder 802 is started to blow the gas into the second conveying pipe 803 and then into the blowing pipe 807, so that the gas is blown onto the aluminum profile, the debris generated by tapping is blown out, and the second baffle 808 and the first baffle 805 are used to make the debris fall into the second collecting box 804 for collection; the aluminum profile moves from the third conveying belt 12 to the fourth conveying belt 13.

[0030] Please refer to the accompanying drawings Figure 9 and the accompanying drawings Figure 10 The mounting mechanism 9 is installed on the outer wall of the fourth conveying belt 13, and is used for mounting the corner code: the mounting mechanism 9 comprises a support table 901, the outer wall of the support table 901 is fixedly connected on the outer wall of the fourth conveying belt 13, the upper surface of the support table 901 is fixedly connected with a first mechanical arm 902 and a second mechanical arm 903 respectively, one end of the first mechanical arm 902 is fixedly connected with a sixth motor 9011, the inside of the sixth motor 9011 is fixedly connected with 9011, the output end of 9011 is fixedly connected with a threaded cutter 906, the outer wall of the sixth motor 9011 is fixedly connected with a first camera 909, one end of the second mechanical arm 903 is fixedly connected with a second connecting block 905, the inside of the second connecting block 905 is fixedly connected with a seventh motor 907, the output end of the seventh motor 907 is fixedly connected with a threaded rod 908, the outer wall of the threaded rod 908 is threadedly connected with a clamping plate 9010, and the outer wall of the clamping plate 9010 is slidingly connected in the inside of the second connecting block 905; the outer wall of the fourth conveying belt 13 is fixedly connected with a support frame 14, the upper surface of the support frame 14 is fixedly connected with a vibrating disc 15, the outer wall of the vibrating disc 15 is fixedly connected with a conveying frame 16, the lower surface of the conveying frame 16 is fixedly connected on the upper surface of the support frame 14, the outer wall of the fourth conveying belt 13 is fixedly connected with a second supporting rod 17, and the outer wall of the second supporting rod 17 is fixedly connected with a second camera 18; Specifically, the corner code is conveyed to the conveying frame 16 through the vibration disc 15, the second connecting block 905 is controlled to move above the conveying frame 16 through the second mechanical arm 903, and the threaded rod 908 is driven to rotate by the seventh motor 907, so that the clamping plate 9010 slides in the second connecting block 905 to clamp the corner code; the corner code is placed on the aluminum profile by moving the second connecting block 905 through the second mechanical arm 903, the first camera 909 is used to shoot the placement position of the corner code, the sixth motor 9011 is controlled to move close to the corner code through the first mechanical arm 902, and the threaded cutter 906 is driven to rotate by the sixth motor 9011 to install the corner code; after the installation is completed, the second camera 18 is used to shoot, and the aluminum profile is inspected.

[0031] Working principle: first, the aluminum profile is placed on the first conveying belt 1, the aluminum profile is moved to the second conveying belt 2 by starting the first conveying belt 1, the first sliding block 503 is slid on the sliding frame 501, the position of the first sliding block 503 is adjusted, the stop rod 504 is driven to move by the third motor 502, the stop rod 504 is transverse to the second conveying belt 2, the aluminum profile is in contact with the stop rod 504 by starting the second conveying belt 2, and the cutting length is controlled; The output end of the second motor 402 drives the rotating rod 409 to rotate, so as to drive the gear 408 to rotate, so as to drive the rack 404 to drive the first sliding rod 403 and the second sliding rod 406 to move oppositely in the first fixed frame 401, and drive the first positioning plate 405 and the second sliding rod 406 to move and clamp the aluminum profile; The first motor 302 is driven to move by the first electric push rod 305 pushing the fixed block 303, the cutting disc 306 is driven to rotate by starting the first motor 302, the cutting disc 306 is in contact with the aluminum profile to cut by the pushing of the first electric push rod 305, the cutting debris falls into the third collecting box 10 by the blocking of the third baffle 11, the air in the first collecting box 308 is exhausted by starting the fan 309, a negative pressure is generated in the protective plate 304, and the cutting dust is conveyed to the first collecting box 308 through the first conveying pipe 307; After cutting, the third motor 502 drives the stop lever 504 to move and lift the stop lever 504, and the fixing of the aluminum profile by the first positioning plate 405 and the second sliding rod 406 is released, and the second conveying belt 2 is started to convey the aluminum profile into the third conveying belt 12. The second hydraulic rod 604 is started to drive the fixed plate 605 to move, and the output end of the first hydraulic rod 602 drives the first connecting block 603 to move and drive the fixed plate 605 to move, so that the fixed plate 605 fixes the aluminum profile. The third sliding block 7013 slides in the second moving frame 704 and the first moving frame 703, and then moves above the tool holder 705. The output end of the second electric push rod 706 pushes the second fixed frame 7010 to drive the multi-axis drill tower 7012 to move, and the second sliding block 702 is approached to replace the punching tool of different sizes. The third electric push rod 707 pushes the fourth motor 709 and the tapping tool 708 to move, and then the tool is replaced from the tool holder 705; The third sliding block 7013 drives the third electric push rod 707 and the second electric push rod 706 to move above the aluminum profile, and the second electric push rod 706 pushes the second fixed frame 7010 to move and drive the multi-axis drill tower 7012 to move close to the aluminum profile. The fifth motor 7011 is started to drive the multi-axis drill tower 7012 to rotate on the second fixed frame 7010, so as to adjust the effect of the hole position. After punching is completed, the third electric push rod 707 pushes the fourth motor 709 and the tapping tool 708 to move, so that the tapping tool 708 is inserted into the hole, and the fourth motor 709 is started to tap; The output end of the second hydraulic rod 604 drives the fixed plate 605 to contact and fix the aluminum profile, and the third conveying belt 12 is started to move the aluminum profile into the cleaning box 801. The limiting rod 806 is slid, the cylinder 802 is started to blow gas into the second conveying pipe 803 and into the blowing pipe 807, so that the gas is blown into the aluminum profile, the debris generated by tapping is blown out, and the second baffle 808 and the first baffle 805 make the debris fall into the second collection box 804 for collection. The aluminum profile moves from the third conveying belt 12 to the fourth conveying belt 13, the angle code is conveyed to the conveying frame 16 by the vibration disc 15, the second connecting block 905 is moved above the conveying frame 16 by the second mechanical arm 903, and the clamping plate 9010 is slid in the second connecting block 905 to clamp the angle code by the seventh motor 907 driving the threaded rod 908 to rotate; The second connecting block 905 is controlled by the second mechanical arm 903 to move the corner code to the aluminum profile, the first camera 909 is used to take a picture of the placement position of the corner code, the sixth motor 9011 is controlled by the first mechanical arm 902 to move close to the corner code, and the sixth motor 9011 is started to drive the threaded cutter 906 to rotate to install the corner code. After the installation is completed, the second camera 18 is used to take a picture, and the aluminum profile is inspected.

[0032] While the embodiments of the application have been illustrated and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the spirit and scope of the application, which is defined by the appended claims and their equivalents.

Claims

1. An aluminum profile frame production and processing equipment, characterized in that, include: A first conveyor belt (1) is fixedly connected to one end of a second conveyor belt (2), and a third conveyor belt (12) is fixedly connected to one side of the second conveyor belt (2). A fourth conveyor belt (13) is provided at one end of the third conveyor belt (12). The cutting mechanism (3) is installed on one side of the outer wall of the second conveyor belt (2) and is used to cut aluminum profiles; The positioning mechanism (4) is installed inside the first conveyor belt (1) and is used to position the aluminum profile; The positioning mechanism (4) includes a first fixed frame (401), the outer wall of the first fixed frame (401) is fixedly connected to the first conveyor belt (1), a drive assembly is slidably connected to the outer wall of the first fixed frame (401), a first sliding rod (403) and a second sliding rod (406) are slidably connected inside the first fixed frame (401), a first positioning plate (405) is fixedly connected to one end of the first sliding rod (403), and a second positioning plate (407) is fixedly connected to one end of the second sliding rod (406). The limiting mechanism (5) is installed on the outer wall of the second conveyor belt (2) and is used to limit and control the cutting length; The fixing mechanism (6) is installed on the outer wall of the third conveyor belt (12) for fixing the aluminum profile; A drilling mechanism (7) is installed on the outer wall of the fixing mechanism (6) for drilling holes; Cleaning mechanism (8), which is installed on the third conveyor belt (12), is used to clean aluminum profiles; The mounting mechanism (9) is installed on the outer wall of the fourth conveyor belt (13) for mounting corner brackets.

2. The aluminum profile frame production and processing equipment according to claim 1, characterized in that, The drive assembly includes a rotating rod (409) and a second motor (402). The outer wall of the rotating rod (409) is rotatably connected to the inside of the first fixed frame (401). One end of the rotating rod (409) is fixedly connected to the output end of the second motor (402). A gear (408) is fixedly connected to the outer wall of the rotating rod (409). A rack (404) is meshed with the outer wall of the gear (408). The outer walls of multiple racks (404) are respectively fixedly connected to the outer walls of the first sliding rod (403) and the second sliding rod (406).

3. The aluminum profile frame production and processing equipment according to claim 1, characterized in that, The cutting mechanism (3) includes a first support rod (301), a first electric push rod (305) is fixedly connected inside the first support rod (301), a fixed block (303) is fixedly connected to the output end of the first electric push rod (305), a first motor (302) is fixedly connected to the outer wall of the fixed block (303), a cutting disc (306) is fixedly connected to the output end of the first motor (302), a protective plate (304) is rotatably connected to the outer wall of the cutting disc (306), the outer wall of the protective plate (304) is fixedly connected to the outer wall of the fixed block (303), a first conveying pipe (307) is fixedly connected to the outer wall of the protective plate (304), a first collection box (308) is fixedly connected to one end of the first conveying pipe (307), and a fan (309) is fixedly connected to the outer wall of the first collection box (308).

4. The aluminum profile frame production and processing equipment according to claim 1, characterized in that, The limiting mechanism (5) includes a sliding frame (501), the outer wall of which is fixedly connected to the outer wall of the second conveyor belt (2), a first sliding block (503) is slidably connected to the upper surface of the sliding frame (501), a third motor (502) is fixedly connected inside the first sliding block (503), and a stop bar (504) is fixedly connected to the output end of the third motor (502).

5. The aluminum profile frame production and processing equipment according to claim 1, characterized in that, The fixing mechanism (6) includes a fixing rod (601), the outer wall of which is fixedly connected to the outer wall of the third conveyor belt (12), a first hydraulic rod (602) is fixedly connected inside the fixing rod (601), a first connecting block (603) is fixedly connected to the output end of the first hydraulic rod (602), the outer wall of the first connecting block (603) is slidably connected to the outer wall of the third conveyor belt (12), a second hydraulic rod (604) is fixedly connected inside the first connecting block (603), and a fixing plate (605) is fixedly connected to the output end of the second hydraulic rod (604).

6. The aluminum profile frame production and processing equipment according to claim 5, characterized in that, The drilling mechanism (7) includes a support plate (701), a tool holder (705) is fixedly connected to the outer wall of the support plate (701), the outer wall of the tool holder (705) is fixedly connected to the outer surface of the fixing rod (601), a second sliding block (702) is slidably connected to the upper surface of the support plate (701), a first moving frame (703) and a second moving frame (704) are fixedly connected to the lower surface of a plurality of second sliding blocks (702), a third sliding block (7013) is slidably connected inside the second moving frame (704) and the first moving frame (703), and the interiors of two third sliding blocks (7013) are respectively fixedly connected to... A second electric actuator (706) and a third electric actuator (707) are connected. The output end of the third electric actuator (707) is fixedly connected to a fourth motor (709). The output end of the fourth motor (709) is fixedly connected to a tapping tool (708). The output end of the second electric actuator (706) is fixedly connected to a second fixed frame (7010). The inside of the second fixed frame (7010) is fixedly connected to a fifth motor (7011). The output end of the fifth motor (7011) is fixedly connected to a multi-axis drilling rig (7012). The lower surface of the second fixed frame (7010) is rotatably connected to the upper surface of the multi-axis drilling rig (7012).

7. The aluminum profile frame production and processing equipment according to claim 1, characterized in that, The cleaning mechanism (8) includes a cleaning box (801), a first baffle (805) is fixedly connected to the lower surface of the cleaning box (801), the outer wall of the first baffle (805) is fixedly connected to the outer wall of the third conveyor belt (12) and the fourth conveyor belt (13), the lower surface of the cleaning box (801) is fixedly connected to a second baffle (808), an air blowing pipe (807) is fixedly connected to the inside of the cleaning box (801), a second collection box (804) is fixedly connected to the lower surface of the first baffle (805), a cylinder (802) is fixedly connected to the outer wall of the second collection box (804), a second conveying pipe (803) is fixedly connected to the output end of the cylinder (802), one end of the second conveying pipe (803) is fixedly connected to one end of the air blowing pipe (807), and a limit rod (806) is fixedly connected to the inner wall of the first baffle (805).

8. The aluminum profile frame production and processing equipment according to claim 1, characterized in that, The installation mechanism (9) includes a support platform (901), the outer wall of which is fixedly connected to the outer wall of the fourth conveyor belt (13). A first robotic arm (902) and a second robotic arm (903) are fixedly connected to the upper surface of the support platform (901). A sixth motor (9011) is fixedly connected to one end of the first robotic arm (902). The sixth motor (9011) is fixedly connected inside the sixth motor (904). A threading cutter (906) is fixedly connected to the output end of the sixth motor (9011). The outer wall of the sixth motor (9011) is fixedly connected to the first camera (909), one end of the second robotic arm (903) is fixedly connected to the second connecting block (905), the inside of the second connecting block (905) is fixedly connected to the seventh motor (907), the output end of the seventh motor (907) is fixedly connected to the threaded rod (908), the outer wall of the threaded rod (908) is threadedly connected to the clamping plate (9010), and the outer wall of the clamping plate (9010) is slidably connected to the inside of the second connecting block (905).

9. The aluminum profile frame production and processing equipment according to claim 1, characterized in that, The outer wall of the fourth conveyor belt (13) is fixedly connected to a support frame (14), the upper surface of the support frame (14) is connected to a vibrating plate (15), the outer wall of the vibrating plate (15) is fixedly connected to a conveyor frame (16), the lower surface of the conveyor frame (16) is fixedly connected to the upper surface of the support frame (14), the outer wall of the fourth conveyor belt (13) is fixedly connected to a second support rod (17), the outer wall of the second support rod (17) is fixedly connected to a second camera (18), the lower surfaces of the first conveyor belt (1) and the second conveyor belt (2) are fixedly connected to a third collection box (10), the outer surface of the third collection box (10) is fixedly connected to a first collection box (308), the upper surface of the third collection box (10) is fixedly connected to a third baffle (11), and the interior of the third baffle (11) is slidably connected to the outer wall of the protective plate (304).

10. A method for manufacturing and processing aluminum profile frames, applied to an aluminum profile frame manufacturing and processing equipment as described in any one of claims 1-9, characterized in that, Includes the following steps; The aluminum profile is placed on the first conveyor belt (1). The aluminum profile is moved to the second conveyor belt (2) by starting the first conveyor belt (1). The first sliding block (503) slides on the sliding frame (501). The position of the first sliding block (503) is adjusted, and the third motor (502) is started to drive the stop bar (504) to move, so that the stop bar (504) is horizontal on the second conveyor belt (2). The aluminum profile is brought into contact with the stop bar (504) by starting the second conveyor belt (2), and the cutting length is controlled. The output of the second motor (402) drives the rotating rod (409) to rotate, which in turn drives the gear (408) to rotate, thereby driving the rack (404) to drive the first sliding rod (403) and the second sliding rod (406) to move in opposite directions within the first fixed frame (401), and also drives the first positioning plate (405) and the second sliding rod (406) to move and clamp the aluminum profile; The first electric push rod (305) pushes the fixed block (303) to drive the first motor (302) to move, and the first motor (302) is started to drive the cutting disc (306) to rotate. The first electric push rod (305) pushes the cutting disc (306) to contact the aluminum profile for cutting. The cutting debris falls into the third collection box (10) through the obstruction of the third baffle (11). The fan (309) is started to extract the air from the first collection box (308) to create negative pressure in the protective plate (304), and the cutting dust is transported to the first collection box (308) through the first conveying pipe (307). After cutting, the third motor (502) drives the stop bar (504) to move and lift the stop bar (504). Then, the first positioning plate (405) and the second sliding rod (406) move to release the fixation of the aluminum profile. The second conveyor belt (2) is started to transport the aluminum profile into the third conveyor belt (12). The second hydraulic rod (604) is started to drive the fixed plate (605) to move. Then, the output end of the first hydraulic rod (602) drives the first connecting block (603) to move, and drives the fixed plate (605) to move, so that the fixed plate (605) moves. The aluminum profile is fixed, and the third sliding block (7013) slides inside the second moving frame (704) and the first moving frame (703) to move to the top of the tool holder (705). The output end of the second electric push rod (706) pushes the second fixed frame (7010) to drive the multi-axis drilling tower (7012) to move. It moves close to the second sliding block (702) to change the drilling tool of different sizes. The third electric push rod (707) pushes the fourth motor (709) and the tapping tool (708) to move, and then the tool is changed from the tool holder (705). The third sliding block (7013) is activated, which drives the third electric push rod (707) and the second electric push rod (706) to move above the aluminum profile. The second electric push rod (706) pushes the second fixed frame (7010) to move and drives the multi-axis drill tower (7012) to move closer to the aluminum profile. The fifth motor (7011) is activated, which drives the multi-axis drill tower (7012) to rotate on the second fixed frame (7010), thereby adjusting the opening position. After drilling is completed, the third electric push rod (707) pushes the fourth motor (709) and the tapping tool (708) to move, so that the tapping tool (708) is inserted into the opening. The fourth motor (709) is activated to tap. The output end of the second hydraulic rod (604) drives the fixing plate (605) to contact and fix the aluminum profile. The third conveyor belt (12) is activated to move the aluminum profile into the cleaning box (801) and slide it on the limit rod (806). The starting cylinder (802) blows gas into the second conveying pipe (803) and into the blowing pipe (807), thereby blowing the gas onto the aluminum profile and blowing out the chips generated by tapping. The chips are then blown out by the second baffle (808) and the first baffle (805). The debris falls into the second collection box (804) for collection; the aluminum profile moves from the third conveyor belt (12) to the fourth conveyor belt (13), and the corner code is conveyed to the conveyor frame (16) by the vibrating plate (15). Then, the second connecting block (905) is moved above the conveyor frame (16) by the second robotic arm (903), and the threaded rod (908) is driven to rotate by the seventh motor (907), so that the clamping plate (9010) slides in the second connecting block (905) to clamp the corner code; The second connecting block (905) is moved by the second robotic arm (903) to place the corner bracket onto the aluminum profile. The first camera (909) takes a picture of the corner bracket placement position. The sixth motor (9011) is moved closer to the corner bracket by the first robotic arm (902), and the starting (9011) drives the thread cutter (906) to rotate to install the corner bracket. After the installation is completed, the second camera (18) takes a picture to inspect the aluminum profile.