A continuous automatic cutting device for hardware

By designing continuous automated cutting equipment for hardware, we have achieved automated positioning, cutting, and unloading of aluminum profiles, solving the problems of cumbersome operation and high technical requirements of existing equipment, and improving production efficiency and equipment availability.

CN119457253BActive Publication Date: 2025-10-24SHENZHEN KANGBO PRECISION MASCH MFG CO LTD
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Patent Information

Application Number
CN202411907801.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-10-24
Estimated Expiration
2044-12-24

AI Technical Summary

Technical Problem

Existing hardware cutting equipment lacks a linkage design for various components and cannot achieve automatic cutting. It requires manual or CNC programming control, which is cumbersome and complicated to operate, increasing enterprise costs and limiting the scope of equipment use.

Method used

A continuous automated cutting equipment for hardware was designed, which included a trigger control component group, an adjustment and cutting component group, a guide frame component group, and a clamping and locking component group to achieve automatic positioning, cutting, and blanking of aluminum profiles, and reduce manual intervention through linkage operation.

Benefits of technology

It realizes automated cutting operation, reduces the technical requirements for operators, improves production efficiency and equipment availability, and reduces training costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of hardware processing equipment, in particular to a hardware continuous automatic cutting equipment, which comprises a main bottom plate, the top of the main bottom plate is connected with a track mounting frame, the top of the track mounting frame is connected with a track frame, the side surface of the track frame is provided with a trigger plate, a guide rod, a contact sensor, a spring, a back plate and a limiting bolt. The hardware continuous automatic cutting equipment adjusts the position of the back plate to set the cutting size, uses linkage design to achieve automatic cutting and continuous cutting functions, and does not need complex programming control, which reduces the operation requirements, training costs, and improves the equipment availability and production efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of hardware processing equipment, in particular to a hardware continuous automatic cutting equipment. BACKGROUND

[0002] Hardware refers to metal parts made of gold, silver, copper, iron, tin and other metals through casting, processing, polishing and other processes, including aluminum profiles, which are metal materials with specific cross-sectional shapes made of aluminum as the main raw material through extrusion and other processing techniques.

[0003] After the aluminum profile is extruded, it needs to be cut into the appropriate size according to the specific needs of the customer with the help of cutting equipment. Currently, the commonly used cutting equipment is an automatic aluminum cutting machine, which mainly consists of a feeding system, a cutting system and a positioning control system. The aluminum profile is placed on the feeding rack of the feeding system by hand, driven by the rollers inside the feeding rack, and transported to the cutting position of the cutting system. When it reaches this position, the positioning clamp on the feeding rack clamps and locks the aluminum profile. At this time, the cutting blade starts the cutting operation. After cutting is completed, the aluminum profile is discharged, and the discharging is completed.

[0004] However, this aluminum cutting machine has the following problems: the prior art usually lacks linkage design of various components, and cannot realize automatic cutting operation. During the cutting process, manual or numerical control programming may be required to control feeding, cutting and clamping, etc. separately. The operation is complicated and the coordination between different links is prone to be out of sync. The prior art often requires complex programming control, which requires high technical requirements for the operator. The operator needs to have professional programming knowledge and rich equipment operation experience, otherwise it is difficult to operate the equipment correctly. This not only increases the recruitment and training cost of the enterprise for the operator, but also limits the use range of the equipment. SUMMARY

[0005] In order to overcome the above technical problems, the purpose of the present application is to provide a hardware continuous automatic cutting equipment to solve the problems of the prior art lacking linkage design of various components, being unable to automatically cut, needing manual or numerical control programming to control feeding, cutting and clamping, etc. separately, complicated operation and coordination, high technical requirements for the operator, increasing the recruitment and training cost of the enterprise, and limiting the use range of the equipment.

[0006] To achieve the above object, the present application provides the following technical scheme: a hardware continuous automatic cutting equipment, the outside of the aluminum profile piece is provided with a trigger control component group, an adjustment cutting component group, a guide frame component group and a clamping locking component group, the trigger control component group comprises a main bottom plate, the top of the main bottom plate is connected with a track mounting frame, the top of the track mounting frame is connected with a track frame, the side surface of the track frame is provided with a trigger plate, a guide rod, a contact sensor, a spring, a back plate and a limiting bolt, the trigger plate is used for contacting one end of the aluminum profile piece, the guide rod is provided with four, and the four guide rods are distributed on the four corners of the trigger plate, one end of the guide rod is connected with the trigger plate, the guide rod is in sliding contact with the back plate through a through hole, the contact sensor is connected with the back plate through a through hole, the working end of the contact sensor is in contact with the trigger plate, the spring is connected between the trigger plate and the back plate, the contact sensor is electrically connected with a cutting motor, the back plate is in sliding contact with the track frame through a sliding groove, the back plate is connected with the limiting bolt through threads, the track frame is provided with a plurality of groups of threaded holes corresponding to the positions of the limiting bolts, and the track frame and the limiting bolt are connected through the threaded holes, the adjustment cutting component group comprises a side support frame, the side surface of the side support frame is provided with an upper frame and a lower frame, the inside of the upper frame is provided with a cutting assembly, the cutting assembly comprises an upper frame body, the bottom of the upper frame body is connected with a protective sleeve, the two sides of the protective sleeve are connected with side wing plates, the bottom of the upper frame body is connected with a cutting motor, the cutting motor is connected with a cutting saw blade through a working end, the top of the upper frame is provided with an upper servo motor, the inside of the side wing plate is provided with a vertical screw rod, one end of the vertical screw rod is provided with a worm and a worm wheel, the inside of the worm wheel is provided with a horizontal transmission rod, the outside of the horizontal transmission rod is provided with a gear, the upper servo motor is connected with the upper frame through a support, the working end of the upper servo motor is connected with one end of the vertical screw rod through the upper frame, the other end of the vertical screw rod is connected with the worm, the vertical screw rod is connected with the lower frame through a bearing, the worm and the worm wheel are engaged, the gear is provided with two, and the two gears and the worm wheel are both fixedly connected with the horizontal transmission rod through through holes, the horizontal transmission rod is connected with the main bottom plate through a bearing frame, the side wing plate is connected with the vertical screw rod through a nut pair, and the upper frame body is in sliding contact with the upper frame through a sliding groove.

[0007] The guide frame component group comprises a long feeding guide frame, the bottom of the long feeding guide frame is connected with a guide frame mounting frame, one side of the long feeding guide frame is provided with a discharging conveying frame and a conveying frame mounting frame.

[0008] The clamping locking component set comprises a large gear, the clamping locking component set is provided with two sets, the large gear is fixedly connected through a through hole and a movable ring body, a movable ring mounting frame is rotatably connected to the side surface of the movable ring body, an inner moving block, a clamping rod, a clamping pad and a fixed guide ring are arranged on the side surface of the movable ring body, the large gear is engaged with a gear piece, the movable ring body is provided with a threaded tooth, and the inner moving block is in contact with the movable ring body through the threaded tooth, the clamping rod is connected between the inner moving block and the clamping pad, and the clamping pad is used for clamping and fixing the aluminum profile piece.

[0009] Preferably, one end of the aluminum profile piece away from the trigger control component set is provided with a feeding telescopic rod, and the aluminum profile piece can slide on the long feeding guide frame through the feeding telescopic rod, the track frame, the track mounting frame and the limiting bolt are provided with two sets, and the two sets of track frames, track mounting frames and limiting bolts are symmetrically distributed on the two sides of the contact sensor.

[0010] Preferably, the side support frame is provided with two sets, and the two sets of side support frames are symmetrically distributed on the two sides of the upper frame, the upper frame and the lower frame are connected between the two sets of side support frames, and the bottom of the two sets of side support frames is connected with the main bottom plate.

[0011] Preferably, the long feeding guide frame and the aluminum profile piece slide in contact, the guide frame mounting frame is connected between the main bottom plate and the long feeding guide frame, the long feeding guide frame passes through the two clamping locking component sets, the conveying frame mounting frame is connected between the discharging conveying frame and the main bottom plate, the two ends of the discharging conveying frame are different in height and are in an inclined state, the higher end of the discharging conveying frame is located at the bottom of the cutting saw blade, and the discharging conveying frame is used for discharging the cut aluminum profile piece.

[0012] Preferably, the movable ring mounting frame and the main bottom plate are connected, the fixed guide ring and the main bottom plate are connected, the fixed guide ring slide in contact with the inner moving block through a sliding groove, the movable ring mounting frame and the fixed guide ring are provided with through holes, and the aluminum profile piece passes through the through holes of the movable ring mounting frame and the fixed guide ring.

[0013] Compared with the prior art, the present application has the following advantages:

[0014] 1. By adjusting the position of the back plate of the trigger control component set, the distance between the back plate and the cutting saw blade can be quickly set, so as to correspond to the size of the aluminum profile piece to be cut, and the design is simple to adjust and convenient for personnel to operate.

[0015] 2、When the aluminum profile piece moves under the push of the feeding telescopic push rod (motorized telescopic rod), one end contacts the trigger plate piece, the trigger plate piece triggers the contact sensor, and then starts the upper servo motor piece and the cutting motor. At the same time, the vertical screw rod piece rotates to drive the side wing plate to move downward for cutting, and also drives the clamping and locking component group to clamp and lock the aluminum profile piece through the worm, worm gear, horizontal transmission rod and gear piece. The overall design linkage realizes automatic cutting operation, reduces manual intervention and improves production efficiency;

[0016] 3、When the cut aluminum profile piece falls, the trigger plate piece returns to the original position, and the cutting assembly returns to the original position. At the same time, the clamping and locking component group releases the clamping of the aluminum profile piece. At this time, the aluminum profile piece continues to advance under the push of the motorized telescopic rod to perform the next cutting work, realizing continuous cutting function and greatly improving production efficiency;

[0017] 4、The overall structure does not need complex programming control operation mode, which reduces the technical requirements for the operator, so that more people can easily operate the equipment, which not only reduces the training cost of the enterprise, but also improves the availability and reliability of the equipment. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is the overall structure schematic diagram of the present application;

[0019] Figure 2 is the overall side view structure schematic diagram of the present application;

[0020] Figure 3 is the overall cross-sectional structure schematic diagram of the present application;

[0021] Figure 4 is the structure schematic diagram of the present application Figure 3 at A;

[0022] Figure 5 is the structure schematic diagram of the trigger control component group bottom part of the present application;

[0023] Figure 6 is the structure schematic diagram of the trigger control component group top part of the present application;

[0024] Figure 7 is the structure schematic diagram of the adjustment and cutting component group part of the present application;

[0025] Figure 8 is the cross-sectional structure schematic diagram of the adjustment and cutting component group part of the present application;

[0026] Figure 9 is the cross-sectional structure schematic diagram of the clamping and locking component group part of the present application;

[0027] Figure 10Part structure diagram of clamping and locking component group of the present application;

[0028] Figure 11 Part structure diagram of clamping and locking component group of the present application;

[0029] Figure 12 Part structure diagram of clamping and locking component group of the present application;

[0030] Figure 13 Part structure diagram of clamping and locking component group of the present application.

[0031] In the figure: 01, aluminum profile piece; 02, trigger control component group; 21, main bottom plate; 22, track frame; 23, track mounting frame; 24, trigger plate piece; 25, guide rod piece; 26, contact sensor; 27, spring piece; 28, limit bolt; 29, back plate piece; 03, adjustment cutting component group; 31, side support frame; 32, upper frame piece; 33, lower frame piece; 34, cutting assembly; 341, upper frame body; 342, protective sleeve; 343, cutting saw blade; 344, cutting motor; 345, side wing plate; 35, upper servo motor piece; 36, vertical screw piece; 37, worm; 38, worm gear; 39, horizontal transmission rod; 310, gear piece; 04, guide frame component group; 41, long feeding guide frame; 42, guide frame mounting frame; 44, blank conveying frame; 45, conveying frame mounting frame; 05, clamping and locking component group; 51, large gear; 52, moving ring body; 53, moving ring mounting frame; 54, inner moving block; 55, clamping rod piece; 56, clamping pad; 57, fixed guide ring. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0033] Please refer to Figures 1-13The application provides a kind of hardware continuous automatic cutting equipment, including aluminium profile piece 01, aluminium profile piece 01 is provided with trigger control component group 02, adjusting cutting component group 03, guide frame component group 04 and clamping locking component group 05 outside, trigger control component group 02, adjusting cutting component group 03, guide frame component group 04 and clamping locking component group 05 are used in cooperation to carry out the positioning, cutting and blanking of aluminium profile piece 01 automatically, trigger control component group 02 includes main bottom plate 21, the top of main bottom plate 21 is connected with track mounting bracket 23, the top of track mounting bracket 23 is connected with track frame 22, the side of track frame 22 is provided with trigger plate piece 24, guide rod piece 25, contact sensor 26, spring piece 27, back plate piece 29 and limiting bolt 28;Adjusting cutting component group 03 includes side support frame 31, the side of side support frame 31 is provided with upper frame piece 32 and lower frame piece 33, the inside of upper frame piece 32 is provided with cutting assembly 34, cutting assembly 34 includes upper frame body 341, the bottom of upper frame body 341 is connected with protective sleeve 342, the two sides of protective sleeve 342 are connected with side wing plate 345, the bottom of upper frame body 341 is connected with cutting motor 344, cutting motor 344 is connected with cutting saw blade 343 through working end, the top of upper frame piece 32 is provided with upper servo motor piece 35, the inside of side wing plate 345 is provided with vertical screw rod piece 36, one end of vertical screw rod piece 36 is provided with worm 37 and worm wheel 38, the inside of worm wheel 38 is provided with horizontal transmission rod 39, the outside of horizontal transmission rod 39 is provided with gear piece 310;Guide frame component group 04 includes long feeding guide frame 41, the bottom of long feeding guide frame 41 is connected with guide frame mounting bracket 42, one side of long feeding guide frame 41 is provided with blanking conveying frame 44 and conveying frame mounting bracket 45;Clamping locking component group 05 includes large gear 51, clamping locking component group 05 is provided with two groups, large gear 51 is fixedly connected through through hole and moving ring body 52, the side of moving ring body 52 is rotatably connected with moving ring mounting bracket 53, the side of moving ring body 52 is provided with inner moving block 54, clamping rod piece 55, clamping pad 56 and fixed guide ring 57.

[0034] The end of aluminium profile piece 01 away from trigger control component group 02 is provided with feeding telescopic rod, and aluminium profile piece 01 can slide on long feeding guide frame 41 through feeding telescopic rod, track frame 22, track mounting bracket 23 and limiting bolt 28 are provided with two groups, and two groups of track frame 22, track mounting bracket 23 and limiting bolt 28 are symmetrically distributed on the two sides of contact sensor 26, trigger plate piece 24 is used for contacting one end of aluminium profile piece 01, guide rod piece 25 is provided with four, and four guide rod pieces 25 are distributed on the four corners of trigger plate piece 24, one end of guide rod piece 25 is connected with trigger plate piece 24, guide rod piece 25 is in sliding contact with back plate piece 29 through through hole.

[0035] The contact sensor 26 is connected through a through hole and a back plate member 29, the working end of the contact sensor 26 is in contact with the trigger plate member 24, the spring member 27 is connected between the trigger plate member 24 and the back plate member 29, the contact sensor 26 is electrically connected with the cutting motor 344, the back plate member 29 is in sliding contact with the track frame 22 through a sliding groove, the back plate member 29 is connected through a threaded hole and a limiting bolt 28, the track frame 22 is provided with a plurality of threaded holes corresponding to the positions of the limiting bolt 28, and the track frame 22 and the limiting bolt 28 are connected through the threaded holes.

[0036] The side support frames 31 are provided in two groups and symmetrically distributed on the two sides of the upper frame member 32, the upper frame member 32 and the lower frame member 33 are connected between the two groups of side support frames 31, the bottom of the two groups of side support frames 31 is connected with the main bottom plate 21, the upper servo motor member 35 is connected with the upper frame member 32 through a support, the working end of the upper servo motor member 35 is connected with one end of the vertical screw rod member 36 through the upper frame member 32, and the other end of the vertical screw rod member 36 is connected with the worm 37.

[0037] The vertical screw rod member 36 is connected with the lower frame member 33 through a bearing, the worm 37 is engaged with the worm gear 38, the gear members 310 are provided in two groups, the two gear members 310 and the worm gear 38 are fixedly connected with the horizontal transmission rod 39 through through holes, the horizontal transmission rod 39 is connected with the main bottom plate 21 through a bearing frame, the side wing plate 345 is connected with the vertical screw rod member 36 through a nut pair, and the upper frame body 341 is in sliding contact with the upper frame member 32 through a sliding groove.

[0038] The long feeding guide frame 41 is in sliding contact with the aluminum profile member 01, the guide frame mounting frame 42 is connected between the main bottom plate 21 and the long feeding guide frame 41, the long feeding guide frame 41 passes through the two clamping locking parts 05, the conveying frame mounting frame 45 is connected between the discharging conveying frame 44 and the main bottom plate 21, the two ends of the discharging conveying frame 44 are in inclined state due to different heights, the higher end of the discharging conveying frame 44 is located at the bottom of the cutting saw blade 343, and the discharging conveying frame 44 is used for discharging the cut aluminum profile member 01.

[0039] The large gear 51 is engaged with the gear member 310, the moving ring body 52 is provided with a threaded tooth, the inner moving block 54 is in contact with the moving ring body 52 through the threaded tooth, the clamping rod member 55 is connected between the inner moving block 54 and the clamping pad 56, and the clamping pad 56 is used for clamping and fixing the aluminum profile member 01.

[0040] The moving ring mounting frame 53 is connected with the main bottom plate 21, the fixed guide ring 57 is connected with the main bottom plate 21, the fixed guide ring 57 is in sliding contact with the inner moving block 54 through a sliding groove, the moving ring mounting frame 53 and the fixed guide ring 57 are both provided with through holes, and the aluminum profile member 01 passes through the through holes of the moving ring mounting frame 53 and the fixed guide ring 57.

[0041] Working principle: when cutting aluminum profile piece 01, first adjust the position of back plate 29 in trigger control component group 02, specifically adjust the distance between back plate 29 and cutting saw blade 343, and this distance corresponds to the size of aluminum profile piece 01 that needs to be cut. After adjusting to the appropriate distance, connect limit bolt 28 to back plate 29 and track frame 22, and then fix back plate 29 and track frame 22.

[0042] After adjusting and fixing the position of back plate 29, place the aluminum profile piece 01 that needs to be cut on long feeding guide frame 41. It should be explained that long feeding guide frame 41 and aluminum profile piece 01 are omitted in the drawings, and in fact main bottom plate 21, long feeding guide frame 41 and aluminum profile piece 01 are very long. After placing aluminum profile piece 01 in place, contact the end of aluminum profile piece 01 away from trigger control component group 02 with feeding telescopic push rod, which is an electric telescopic rod. The electric telescopic rod is fixed on main bottom plate 21 through a bracket. When the electric telescopic rod is started, it will push aluminum profile piece 01 to slide on long feeding guide frame 41. The moving direction of aluminum profile piece 01 is towards the direction of trigger control component group 02.

[0043] During the movement of the electric telescopic rod, one end of the aluminum profile piece 01 will contact the trigger plate 24. As the trigger plate 24 is continuously pushed, it will be pushed closer to the back plate 29. The spring between the back plate 29 and the trigger plate 24 will be contracted and stored. The movement of the trigger plate 24 will press the working end of the contact sensor 26. The contact sensor 26 will be triggered to send a start signal to the upper servo motor 35 and the cutting motor 344. The upper servo motor 35 will drive the vertical lead screw 36 to move the side wing plate 345 downward, thereby driving the rotating cutting saw blade 343 to cut the bottom aluminum profile piece 01. When the cut section of the aluminum profile piece 01 is completely separated from the whole section, it will fall onto the discharge conveying frame 44 under the action of gravity. Since the discharge conveying frame 44 is inclined, the cut aluminum profile piece 01 will be discharged to the outside. Due to the falling of the cut aluminum profile piece 01, the spring 27 between the trigger plate 24 and the back plate 29 will release the stored energy to reset the trigger plate 24. The contact sensor 26 will stop sending signals to the upper servo motor 35 and the cutting motor 344, and then the working end of the upper servo motor 35 will reverse through the vertical lead screw 36 to move the side wing plate 345 upward, so that the cutting assembly 34 structure returns to the original position.

[0044] When the vertical screw rod 36 rotates the side wing plate 345 downward, the vertical screw rod 36 will drive the worm 37 to rotate, and then drive the horizontal transmission rod 39 and the gear piece 310 to rotate through the worm wheel 38, so that the gear piece 310 drives the large gear 51 in the clamping and locking component group 05 to rotate, and drives the movable ring body 52 to rotate, and the movable ring body 52 drives the inner moving block 54 to move in the sliding groove of the fixed guide ring 57 through the threaded tooth structure, thereby controlling the clamping rod 55 and the clamping pad 56 to clamp the aluminum profile piece 01. Since it is synchronized with the downward movement of the side wing plate 345, the clamping and locking component group 05 will complete the clamping and locking of the aluminum profile piece 01. The clamping force exerted by the clamping and locking component group 05 on the aluminum profile piece 01 is greater than the pushing force of the electric telescopic rod, so that the aluminum profile piece 01 cannot be continuously pushed by the electric telescopic rod, and the aluminum profile piece 01 fixed on the long feeding guide frame 41 can only be cut by the cutting assembly 34. After cutting, the side wing plate 345 moves upward to reset, and the linked horizontal transmission rod 39 and gear piece 310 are reversely rotated, thereby driving the cutting assembly 34 to move reversely, and the upper servo motor piece 35 and the vertical screw rod 36 contact to clamp the aluminum profile piece 01. At this time, the aluminum profile piece 01 continues to move forward on the long feeding guide frame 41 under the pushing of the electric telescopic rod, and the next cutting work is carried out in the above-mentioned cycle.

[0045] It will be apparent to those skilled in the art that the application is not limited to the details of the above-exemplified embodiments and that the present application can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Thus, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the above description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. No reference signs in the claims should be considered as limiting the scope of the claims.

Claims

1. A hardware continuous automatic cutting equipment, comprising an aluminum profile piece (01), characterized in that: The aluminum profile piece (01) is externally provided with a trigger control component group (02), an adjustment cutting component group (03), a guide frame component group (04) and a clamping locking component group (05), the trigger control component group (02) comprises a main bottom plate (21), the top of the main bottom plate (21) is connected with a track mounting frame (23), the top of the track mounting frame (23) is connected with a track frame (22), the side surface of the track frame (22) is provided with a trigger plate piece (24), a guide rod piece (25), a contact sensor (26), a spring piece (27), a back plate piece (29) and a limiting bolt (28), the trigger plate piece (24) is used for contacting one end of the aluminum profile piece (01), the guide rod piece (25) is provided with four, and the four guide rod pieces (25) are distributed on the four corners of the trigger plate piece (24), one end of the guide rod piece (25) is connected with the trigger plate piece (24), the guide rod piece (25) is in sliding contact with the back plate piece (29) through a through hole, the contact sensor (26) is connected with the back plate piece (29) through a through hole, the working end of the contact sensor (26) is in contact with the trigger plate piece (24), the spring piece (27) is connected between the trigger plate piece (24) and the back plate piece (29), the contact sensor (26) is electrically connected with a cutting motor (344), the back plate piece (29) is in sliding contact with the track frame (22) through a sliding groove, the back plate piece (29) is connected with the limiting bolt (28) through threads, the track frame (22) is provided with a plurality of groups of threaded holes corresponding to the positions of the limiting bolt (28), and the track frame (22) and the limiting bolt (28) are connected through the threaded holes, the adjustment cutting component group (03) comprises a side support frame (31), the side surface of the side support frame (31) is provided with an upper frame piece (32) and a lower frame piece (33), the inside of the upper frame piece (32) is provided with a cutting assembly (34), the cutting assembly (34) comprises an upper frame body (341), the bottom of the upper frame body (341) is connected with a protective sleeve (342), the two sides of the protective sleeve (342) are connected with side wing plates (345), the bottom of the upper frame body (341) is connected with a cutting motor (344), the cutting motor (344) is connected with a cutting saw blade (343) through a working end, the top of the upper frame piece (32) is provided with an upper servo motor piece (35), the inside of the side wing plate (345) is provided with a vertical screw rod piece (36), one end of the vertical screw rod piece (36) is provided with a worm (37) and a worm wheel (38), the inside of the worm wheel (38) is provided with a horizontal transmission rod (39), the outside of the horizontal transmission rod (39) is provided with a gear piece (310), the upper servo motor piece (35) is connected with the upper frame piece (32) through a support, the working end of the upper servo motor piece (35) is connected with one end of the vertical screw rod piece (36) through the upper frame piece (32), the other end of the vertical screw rod piece (36) is connected with the worm (37), the vertical screw rod piece (36) is connected with the lower frame piece (33) through a bearing,The worm (37) and the worm wheel (38) are engaged, the gear (310) is provided with two, two gear (310) and worm wheel (38) are fixedly connected through the through hole horizontal transmission rod (39), the horizontal transmission rod (39) is connected through the bearing frame and the main bottom plate (21), the side wing plate (345) is connected through the nut pair and the vertical wire rod (36), the upper frame body (341) is slidably contacted through the sliding groove and the upper frame (32). the guide frame component group (04) comprises a long feeding guide frame (41), the bottom of the long feeding guide frame (41) is connected with a guide frame mounting frame (42), one side of the long feeding guide frame (41) is provided with a discharging conveying frame (44) and a conveying frame mounting frame (45); the clamping and locking component group (05) comprises a large gear (51), the clamping and locking component group (05) is provided with two groups, the large gear (51) is fixedly connected through a through hole and a movable ring body (52), the side surface of the movable ring body (52) is rotatably connected with a movable ring mounting frame (53), the side surface of the movable ring body (52) is provided with an inner moving block (54), a clamping rod (55), a clamping pad (56) and a fixed guide ring (57), the large gear (51) is engaged with a gear piece (310), the movable ring body (52) is provided with a threaded tooth, the inner moving block (54) is in contact with the movable ring body (52) through the threaded tooth, the clamping rod (55) is connected between the inner moving block (54) and the clamping pad (56), and the clamping pad (56) is used for clamping and fixing the aluminum profile piece (01).

2. The continuous automated hardware cutting apparatus of claim 1, wherein: One end of the aluminum profile piece (01) away from the trigger control component group (02) is provided with a feeding telescopic rod, the aluminum profile piece (01) can slide on the long feeding guide frame (41) through the feeding telescopic rod, the track frame (22), the track mounting frame (23) and the limiting bolt (28) are provided with two groups, and the two groups of track frames (22), track mounting frames (23) and limiting bolts (28) are symmetrically distributed on the two sides of the contact sensor (26).

3. The apparatus of claim 1, wherein: The side support frame (31) is provided with two groups, and the two groups of side support frames (31) are symmetrically distributed on the two sides of the upper frame (32), the upper frame (32) and the lower frame (33) are connected between the two groups of side support frames (31), and the bottom of the two groups of side support frames (31) is connected with the main bottom plate (21).

4. The apparatus of claim 1, wherein: The long feeding guide frame (41) is in sliding contact with the aluminum profile piece (01), the guide frame mounting frame (42) is connected between the main bottom plate (21) and the long feeding guide frame (41), the long feeding guide frame (41) passes through the two clamping and locking component groups (05), the conveying frame mounting frame (45) is connected between the discharging conveying frame (44) and the main bottom plate (21), the two ends of the discharging conveying frame (44) are different in height and are in an inclined state, the higher end of the discharging conveying frame (44) is located at the bottom of the cutting saw blade (343), and the discharging conveying frame (44) is used for discharging the cut aluminum profile piece (01).

5. The continuous automated hardware cutting apparatus of claim 1, wherein: The movable ring mounting frame (53) is connected with the main bottom plate (21), the fixed guide ring (57) is connected with the main bottom plate (21), the fixed guide ring (57) is in sliding contact with the inner moving block (54) through a sliding groove, the movable ring mounting frame (53) and the fixed guide ring (57) are provided with through holes, and the aluminum profile piece (01) passes through the through holes of the movable ring mounting frame (53) and the fixed guide ring (57).

Citation Information

Patent Citations

  • Cutting device for hardware

    CN118492977A

  • Efficient cutting device for electric wires and cables

    CN119016638A