A processing device for high-rigidity asymmetric circular square tube

Through the combination of supporting clamping parts, cutting and cutting parts, shielding and protective parts and detection feedback parts, the problems of loose clamping, spark flying and clamping accuracy detection are solved, and safe and reliable cutting of high-rigidity asymmetric round and square tubes is achieved.

CN120587547BActive Publication Date: 2025-10-17TBEA GRP (TIANJIN) NEW ENERGY TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202511105857.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-08
Publication Date
2025-10-17
Estimated Expiration
2045-08-08

AI Technical Summary

Technical Problem

Existing cutting equipment lacks a clamping restriction structure, resulting in loose clamping and easy damage to the workpiece; sparks fly during cutting and the clamping accuracy cannot be automatically detected, making the workpiece unusable after cutting.

Method used

It adopts supporting clamping parts, cutting and cutting parts, shielding and protective parts, clamping detection parts and detection feedback parts, and realizes automatic clamping verification, spark shielding and cutting control through limiting clamping screws, shielding and protective frames, detection rollers and alarms.

Benefits of technology

Ensure the consistent position of the clamping screws to avoid pinching, shield sparks from flying, and automatically detect the clamping accuracy to prevent the workpiece from being unusable after cutting.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120587547B_ABST
    Figure CN120587547B_ABST
Patent Text Reader

Abstract

The application provides a processing equipment for high-rigidity asymmetric round-square tubes, relates to the field of high-rigidity asymmetric round-square tube cutting technology, and comprises a supporting and clamping part, a cutting and cutting part, a shielding and protecting part, a clamping and detecting part and a detecting and feeding back part. The cutting and cutting part is installed on the top of the supporting and clamping part. The shielding and protecting part is installed on the supporting and clamping part and the cutting and cutting part. The clamping and detecting part is installed on the supporting and clamping part, and is used for detecting the high-rigidity asymmetric round-square tube after clamping. The detecting and feeding back part is installed in the clamping and detecting part. The application plays a limiting role on two clamping screws, guarantees that the two clamping screws are always in the same position after being tightened, solves the problem that the clamping screws cannot always be in the same position after being tightened due to the lack of clamping limiting structures, and avoids the problems of unstable clamping and clamping injury of the workpiece to be cut.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of high-rigidity asymmetric round-square pipe cutting, and more particularly relates to a machining device for high-rigidity asymmetric round-square pipe. BACKGROUND

[0002] The high-rigidity asymmetric round-square pipe needs to be cut in the machining process, and cutting is a key step for meeting the customized size requirement, and the raw material can be adjusted to a specific length required by engineering through accurate cutting, so as to ensure the matching with the overall structure.

[0003] The cutting device currently in use still has the following problems:

[0004] 1. Generally, there is a lack of clamping limiting structure, so that the clamping screws cannot always be in the same position after being tightened, and the clamping is prone to be not firm, and the workpiece to be cut is prone to be clamped and damaged;

[0005] 2. Before the workpiece is cut, the part to be cut of the workpiece cannot be automatically protected, so that sparks generated during cutting are prone to splashing, and there is a safety hazard;

[0006] 3. Before the workpiece is cut, the clamping condition of the workpiece cannot be automatically detected, and when the clamped workpiece does not meet the clamping accuracy, the device cannot automatically issue a prompt, so that the cut workpiece is prone to be unusable. SUMMARY

[0007] The disclosed embodiment relates to a machining device for high-rigidity asymmetric round-square pipe, which has a supporting and clamping member, a cutting and cutting-off member, a shielding and protecting member, a clamping detection member and a detection feedback member; the two clamping screws are limited in position, so that the two clamping screws can always be in the same position after being tightened; the shielding and protecting frame can slide downward under the action of gravity, so that the shielding and protecting frame is first moved to the protecting position, and the sparks generated during cutting of the high-rigidity asymmetric round-square pipe are shielded; the high-rigidity asymmetric round-square pipe after clamping can be prompted to the operator that it does not meet the clamping accuracy, so that the cut high-rigidity asymmetric round-square pipe is prevented from being unusable; and the problems that the clamping screws cannot always be in the same position after being tightened, the sparks generated during cutting are prone to splashing and the clamping condition of the workpiece cannot be automatically detected before the workpiece is cut are solved.

[0008] The application provides a processing equipment for high-rigidity asymmetric round square tubes, which is used for cutting high-rigidity asymmetric round square tubes and comprises a supporting and clamping part, a cutting and cutting part, a shielding and protecting part, a clamping and detecting part and a detecting and feeding back part.

[0009] In at least some embodiments, the supporting and clamping part comprises a supporting base and a clamping frame, the clamping frame is fixedly installed on the top of the supporting base, two semicircular grooves are formed in the front side of the clamping frame, and dovetail sliding grooves are formed in the left and right sides of the clamping frame.

[0010] In at least some embodiments, the supporting and clamping part further comprises clamping screws and L-shaped limiting frames, two clamping screws are provided, the two clamping screws are threadedly connected to the clamping frame, the rear sides of the two clamping screws are in contact with the high-rigidity asymmetric round square tube, two L-shaped limiting frames are provided, the two L-shaped limiting frames are fixedly installed on the left sides of the two clamping screws, and the rear ends of the two L-shaped limiting frames are inserted into the two semicircular grooves.

[0011] In at least some embodiments, the cutting and cutting part comprises a cross-shaped frame, electric telescopic rods and a cutting machine, the cross-shaped frame is fixedly installed on the top of the clamping frame, two electric telescopic rods are provided, the two electric telescopic rods are fixedly installed on the top of the cross-shaped frame, the two electric telescopic rods are further electrically connected to the control panel, and the cutting machine is fixedly installed on the output shafts of the two electric telescopic rods and is further electrically connected to the control panel.

[0012] In at least some embodiments, the cutting and cutting part further comprises a rectangular pushing plate and a circular magnet a, the rectangular pushing plate is fixedly installed on the front side of the cutting machine, and two circular magnets a are provided and fixedly installed in the cross-shaped frame.

[0013] In at least some embodiments, the shielding and protecting part comprises a shielding and protecting frame and a circular magnet b, the shielding and protecting frame is slidingly installed in the two dovetail sliding grooves and is in contact with the bottom of the rectangular pushing plate, two circular magnets b are provided and fixedly installed in the shielding and protecting frame, and the two circular magnets b are further connected to the two circular magnets a.

[0014] In at least some embodiments, the clamping detection piece comprises: an X-shaped support, an insulating movable rod and an insulating detection frame; the X-shaped support is fixedly installed on the clamping frame; the insulating movable rod is slidingly installed on the X-shaped support; and the insulating detection frame is rotatably installed at the top end of the insulating movable rod.

[0015] In at least some embodiments, the clamping detection piece further comprises: a circular roller and a positioning tension spring; two circular rollers are provided, and the two circular rollers are rotatably installed at the left and right ends of the insulating detection frame; and two positioning tension springs are provided, and the bottom ends of the two positioning tension springs are fixedly connected with the insulating movable rod, and the top ends of the two positioning tension springs are fixedly connected with the insulating detection frame.

[0016] In at least some embodiments, the clamping detection piece further comprises: a debris collection box, a rectangular sealing cover and a moving handle; the debris collection box is fixedly installed at the top of the insulating detection frame; the rectangular sealing cover is fixedly installed at the bottom of the insulating movable rod, the bottom of the rectangular sealing cover is in contact with the clamping frame, and the operation panel is located in the rectangular sealing cover; and the moving handle is fixedly installed on the front side of the rectangular sealing cover.

[0017] In at least some embodiments, the detection feedback piece comprises: an arc-shaped conductive plate, a movable conductive head and a supporting spring; two arc-shaped conductive plates are provided, and the two arc-shaped conductive plates are fixedly installed at the top end of the insulating movable rod, and the two arc-shaped conductive plates are further electrically connected with the positive electrode of the alarm; the movable conductive head is slidingly installed in the interior of the insulating detection frame, and the bottom end of the movable conductive head is provided with a rounded corner; the bottom end of the movable conductive head is in contact with the insulating movable rod, and the movable conductive head is further electrically connected with the positive electrode of the battery in the operation panel; and the supporting spring is installed in the interior of the insulating detection frame, and the supporting spring is located above the movable conductive head.

[0018] Compared with the prior art, the present application has the following beneficial effects:

[0019] 1. The provision of two semicircular grooves and two L-shaped limiting frames plays a limiting role on the two clamping screws, ensures that the two clamping screws are always in the same position after being tightened, and avoids the clamping injury of the high-rigidity asymmetric circular square pipe under the premise of ensuring the clamping effect of the high-rigidity asymmetric circular square pipe.

[0020] 2. When the output shafts of the two electric telescopic rods are extended, the cutting machine moves downward to realize the automatic cutting of the high-rigidity asymmetric circular square pipe; the provision of two circular magnets a and two circular magnets b plays a positioning effect on the shielding protection frame after moving upward.

[0021] In addition, when the cutting machine drives the rectangular push plate to move downwards, the rectangular push plate can also drive the shielding protection frame to move downwards; when the two circular magnets b are separated from the two circular magnets a, the shielding protection frame can slide downwards under the action of gravity, so that the shielding protection frame is first moved to the protection position, and the sparks generated during cutting of the high-rigidity asymmetric circular square tube are shielded.

[0022] 3. In the operation of the worker, the moving handle needs to be pulled upwards first to expose the keys on the control panel; when the moving handle moves upwards, the two circular rollers can contact the bottom of the high-rigidity asymmetric circular square tube to be cut;

[0023] In addition, the setting of the two positioning tension springs has an elastic positioning effect on the insulation detection frame, and the setting of the debris collection box has a collection and temporary storage effect on the debris generated during cutting.

[0024] In addition, when the clamped high-rigidity asymmetric circular square tube does not meet the clamping precision requirement, the bottom end of the movable conducting head can contact one of the arc-shaped conducting plates after the two circular rollers drive the insulation detection frame to change the angle; when the bottom end of the movable conducting head contacts one of the arc-shaped conducting plates, the alarm works, which can prompt the worker that the clamped high-rigidity asymmetric circular square tube does not meet the clamping precision, so as to facilitate the worker to clamp the high-rigidity asymmetric circular square tube again, ensure the clamping effect of the high-rigidity asymmetric circular square tube, and avoid the situation that the cut high-rigidity asymmetric circular square tube cannot be used. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0026] The drawings described in the following description only relate to some embodiments of the present application, and are not a limitation of the present application.

[0027] In the drawings:

[0028] Figure 1 The three-dimensional structure schematic diagram of the present application is shown;

[0029] Figure 2 The structure schematic diagram of the support clamping piece and the control panel of the present application is shown;

[0030] Figure 3 The rear side view structure schematic diagram of the present application is shown; Figure 1

[0031] Figure 4 The structure schematic diagram of the cutting and cutting-off piece of the present application is shown;

[0032] Figure 5 The structure schematic diagram of the cutting and cutting-off piece of the present application is shown; Figure 1 ​A region in the application

[0033] Figure 6 A region in the application Figure 5

[0034] Figure 7 B region in the application Figure 1

[0035] Figure 8 Structure of the clamping detection member and the detection feedback member in the application

[0036] Figure 9 Structure of the clamping detection member and the detection feedback member in the application Figure 8

[0037] C region in the application Figure 10 Figure 9

[0038] List of reference signs

[0039] 100, support clamping member; 101, support base; 102, clamping frame; 1021, semicircular groove; 1022, dovetail sliding groove; 103, clamping screw; 104, L-shaped limiting frame

[0040] 200, cutting and cutting member; 201, cross-shaped frame; 202, electric telescopic rod; 203, cutting machine; 204, rectangular push plate; 205, circular magnet a

[0041] 300, shielding protection member; 301, shielding protection frame; 302, circular magnet b

[0042] 400, clamping detection member; 401, X-shaped support; 402, insulating movable rod; 403, insulating detection frame; 404, circular roller; 405, positioning tension spring; 406, scrap collecting box; 407, rectangular sealing cover; 408, moving handle

[0043] 500, detection feedback member; 501, arc-shaped conductive plate; 502, movable conductive head; 503, supporting spring

[0044] 600, control panel; 601, alarm; 700, high-rigidity asymmetric circular square tube DETAILED DESCRIPTION

[0045] ​​​​In order to make the purpose, scheme and advantages of the technical solutions of the present application more clear, the technical solutions of the embodiments of the present application will be described clearly and completely below in combination with the drawings of the specific embodiments of the present application. Unless otherwise specified, the terms used herein have the meanings commonly understood in the art. The same reference numerals in the drawings represent the same components.

[0046] Embodiment: Please refer to Figures 1 to 10 As shown in the figure, the present application provides a processing equipment for high-rigidity asymmetric round square pipe, which is used for cutting high-rigidity asymmetric round square pipe 700; comprising: support clamping part 100, cutting cutting part 200, shielding protection part 300, clamping detection part 400 and detection feedback part 500; cutting cutting part 200 is installed on the top of support clamping part 100; shielding protection part 300 is installed on support clamping part 100 and cutting cutting part 200, shielding protection part 300 is used to shield the cutting part of high-rigidity asymmetric round square pipe 700; clamping detection part 400 is installed on support clamping part 100, clamping detection part 400 is used to detect high-rigidity asymmetric round square pipe 700 after clamping; detection feedback part 500 is installed inside clamping detection part 400, detection feedback part 500 is used to feedback the detection result of clamping detection part 400; control panel 600 is fixedly installed on support clamping part 100, alarm 601 is fixedly installed on control panel 600, and the negative electrode of alarm 601 is electrically connected with the negative electrode of the battery in control panel 600.

[0047] As shown in the figure, Figure 2 and Figure 6 As shown in the figure, the support clamping part 100 comprises: support base 101 and clamping frame 102; the clamping frame 102 is fixedly installed on the top of the support base 101; two semicircular grooves 1021 are formed on the front side of the clamping frame 102, and dovetail sliding grooves 1022 are formed on the left and right sides of the clamping frame 102; the support clamping part 100 further comprises: clamping screws 103 and L-shaped limiting frames 104; two clamping screws 103 are provided, and the two clamping screws 103 are threadedly connected on the clamping frame 102, and the rear sides of the two clamping screws 103 are in contact with the high-rigidity asymmetric round square pipe 700; two L-shaped limiting frames 104 are provided, and the two L-shaped limiting frames 104 are fixedly installed on the left sides of the two clamping screws 103, and the rear ends of the two L-shaped limiting frames 104 are inserted into the two semicircular grooves 1021;

[0048] The specific action is that: because two clamping screws 103 are threadedly connected on the clamping frame 102, and the rear sides of the two clamping screws 103 are in contact with the high-rigidity asymmetric circular square tube 700, and the front sides of the two clamping screws 103 are respectively provided with hexagonal holes, so as to facilitate the operator to rotate the two clamping screws 103 through an internal hexagonal wrench; and because the front side of the clamping frame 102 is provided with two semicircular grooves 1021, and two L-shaped limiting frames 104 are fixedly installed on the left sides of the two clamping screws 103, and the rear ends of the two L-shaped limiting frames 104 are inserted into the two semicircular grooves 1021, the two clamping screws 103 are limited, so that the two clamping screws 103 are always in the same position after being tightened, and the clamping effect of the high-rigidity asymmetric circular square tube 700 is guaranteed, and the high-rigidity asymmetric circular square tube 700 is prevented from being clamped.

[0049] In the embodiment of the present disclosure, as shown in Figure 4 and Figure 7 The cutting and cutting member 200 includes: a cross-shaped frame 201, an electric telescopic rod 202 and a cutting machine 203; the cross-shaped frame 201 is fixedly installed on the top of the clamping frame 102; the electric telescopic rod 202 is provided with two, and the two electric telescopic rods 202 are fixedly installed on the top of the cross-shaped frame 201, and the two electric telescopic rods 202 are further electrically connected with the control panel 600; the cutting machine 203 is fixedly installed on the output shaft of the two electric telescopic rods 202, and the cutting machine 203 is further electrically connected with the control panel 600; the cutting and cutting member 200 further includes: a rectangular push plate 204 and a circular magnet a 205; the rectangular push plate 204 is fixedly installed on the front side of the cutting machine 203; the circular magnet a 205 is provided with two, and the two circular magnets a 205 are fixedly installed in the inside of the cross-shaped frame 201;

[0050] The shielding protection member 300 includes: a shielding protection frame 301 and a circular magnet b 302; the shielding protection frame 301 is slidingly installed in the two dovetail sliding grooves 1022, and the shielding protection frame 301 is further in contact with the bottom of the rectangular push plate 204; the circular magnet b 302 is provided with two, and the two circular magnets b 302 are fixedly installed in the inside of the shielding protection frame 301, and the two circular magnets b 302 are further connected with the two circular magnets a 205;

[0051] The specific action is that: because the cross-shaped frame 201 is fixedly installed on the top of the clamping frame 102, and the two electric telescopic rods 202 are fixedly installed on the top of the cross-shaped frame 201, and the cutting machine 203 is fixedly installed on the output shaft of the two electric telescopic rods 202, when the output shaft of the two electric telescopic rods 202 extends, the cutting machine 203 moves downward, realizing the automatic cutting of the high-rigidity asymmetric circular square pipe 700; and because the two circular magnets a 205 are fixedly installed in the inside of the cross-shaped frame 201, and the two circular magnets b 302 are fixedly installed in the inside of the shielding protection frame 301, and the two circular magnets b 302 are also connected with the two circular magnets a 205, the shielding protection frame 301 after moving upward has a positioning effect;

[0052] In addition, because the rectangular push plate 204 is fixedly installed on the front side of the cutting machine 203, and the shielding protection frame 301 also contacts the bottom of the rectangular push plate 204, when the cutting machine 203 drives the rectangular push plate 204 to move downward, the rectangular push plate 204 can also drive the shielding protection frame 301 to move downward; and because the left and right sides of the supporting base 101 are respectively provided with dovetail sliding grooves 1022, and the shielding protection frame 301 is slidingly installed in the two dovetail sliding grooves 1022, when the two circular magnets b 302 are separated from the two circular magnets a 205, the shielding protection frame 301 can slide downward under the action of gravity, so that the shielding protection frame 301 moves to the protection position first, and plays a shielding role on sparks generated during cutting of the high-rigidity asymmetric circular square pipe 700.

[0053] In the embodiment of the present disclosure, as shown in Figures 8 to 10 The clamping detection piece 400 includes an X-shaped support 401, an insulating movable rod 402 and an insulating detection frame 403; the X-shaped support 401 is fixedly installed on the clamping frame 102; the insulating movable rod 402 is slidingly installed on the X-shaped support 401; the insulating detection frame 403 is rotatably installed at the top end of the insulating movable rod 402; the clamping detection piece 400 further includes a circular roller 404 and a positioning tension spring 405; the circular roller 404 is provided with two, and the two circular rollers 404 are rotatably installed at the left and right ends of the insulating detection frame 403; the positioning tension spring 405 is provided with two, and the bottom ends of the two positioning tension springs 405 are fixedly connected with the insulating movable rod 402, and the top ends of the two positioning tension springs 405 are fixedly connected with the insulating detection frame 403; the clamping detection piece 400 further includes a debris collection box 406, a rectangular sealing cover 407 and a moving handle 408; the debris collection box 406 is fixedly installed on the top of the insulating detection frame 403; the rectangular sealing cover 407 is fixedly installed on the bottom of the insulating movable rod 402, and the bottom of the rectangular sealing cover 407 contacts the clamping frame 102, and the operation panel 600 is located in the rectangular sealing cover 407; the moving handle 408 is fixedly installed on the front side of the rectangular sealing cover 407;

[0054] The detection feedback part 500 comprises two arc-shaped conductive plates 501, a movable conductive head 502 and a supporting spring 503; the two arc-shaped conductive plates 501 are fixedly installed at the top end of the insulating movable rod 402 and are electrically connected with the positive electrode of the alarm 601; the movable conductive head 502 is slidingly installed inside the insulating detection frame 403 and is provided with a rounded corner at the bottom end; the bottom end of the movable conductive head 502 is in contact with the insulating movable rod 402 and is electrically connected with the positive electrode of the battery in the control panel 600; the supporting spring 503 is installed inside the insulating detection frame 403 and is located above the movable conductive head 502.

[0055] The specific action is that the rectangular sealing cover 407 is fixedly installed at the bottom of the insulating movable rod 402, the control panel 600 is located in the rectangular sealing cover 407, and the moving handle 408 is fixedly installed at the front side of the rectangular sealing cover 407, so that the operator needs to pull the moving handle 408 upward first before pressing the control panel 600 to expose the keys on the control panel 600; and the insulating detection frame 403 is rotatably installed at the top end of the insulating movable rod 402, and the two circular rollers 404 are rotatably installed at the left and right ends of the insulating detection frame 403, so that the two circular rollers 404 can be in contact with the bottom of the high-rigidity asymmetric circular square tube 700 to be cut when the moving handle 408 moves upward.

[0056] In addition, the bottom end of the two positioning tension springs 405 is fixedly connected with the insulating movable rod 402, and the top end of the two positioning tension springs 405 is fixedly connected with the insulating detection frame 403, so as to elastically position the insulating detection frame 403; and the scrap collecting box 406 is fixedly installed at the top of the insulating detection frame 403 to temporarily store the scraps generated during cutting.

[0057] Moreover, since the two arc-shaped conductive plates 501 are fixedly installed at the top end of the insulating movable rod 402, the bottom end of the movable conductive head 502 is in contact with the insulating movable rod 402, and the supporting spring 503 is located above the movable conductive head 502, when the clamped high-rigidity asymmetric circular square tube 700 does not meet the clamping precision requirement, the two circular rollers 404 drive the insulating detection frame 403 to change the angle, and the bottom end of the movable conductive head 502 can be in contact with one of the arc-shaped conductive plates 501; since the negative electrode of the alarm 601 is electrically connected with the negative electrode of the battery in the control panel 600, the two arc-shaped conductive plates 501 are also electrically connected with the positive electrode of the alarm 601, and the movable conductive head 502 is also electrically connected with the positive electrode of the battery in the control panel 600, when the bottom end of the movable conductive head 502 can be in contact with one of the arc-shaped conductive plates 501, the alarm 601 works, which indicates that the clamped high-rigidity asymmetric circular square tube 700 has the situation of high left end and low right end or low left end and high right end, and can prompt the operator that the clamped high-rigidity asymmetric circular square tube 700 does not meet the clamping precision, so as to facilitate the operator to clamp the high-rigidity asymmetric circular square tube 700 again, ensure the clamping effect of the high-rigidity asymmetric circular square tube 700, and avoid the situation that the cut high-rigidity asymmetric circular square tube 700 cannot be used.

[0058] The specific use mode and role of the embodiment are as follows:

[0059] When the present application is used, first, the staff fixes and installs the supporting base 101 through the bolt, then places the high-rigidity asymmetric circular square tube 700 to be cut in the clamping frame 102, and then tightens the two clamping screws 103 through the inner hexagonal wrench, so that the rear side of the two clamping screws 103 is in contact with the high-rigidity asymmetric circular square tube 700, and the two semicircular grooves 1021 and the two L-shaped limiting frames 104 play a limiting role on the two clamping screws 103, so that the two clamping screws 103 are always in the same position after being tightened, and under the premise of ensuring the clamping effect of the high-rigidity asymmetric circular square tube 700, the high-rigidity asymmetric circular square tube 700 is prevented from being clamped and damaged;

[0060] The operator pulls the moving handle 408 upward to expose the button on the control panel 600; when the moving handle 408 moves upward, the two circular rollers 404 can be in contact with the bottom of the high-rigidity asymmetric round-square tube 700 to be cut; when the clamped high-rigidity asymmetric round-square tube 700 does not meet the clamping precision requirement, the bottom end of the movable conducting head 502 can be in contact with one of the arc-shaped conducting plates 501 after the angle of the insulation detection frame 403 changes; when the bottom end of the movable conducting head 502 is in contact with one of the arc-shaped conducting plates 501, the alarm 601 works, which can prompt the operator that the clamped high-rigidity asymmetric round-square tube 700 does not meet the clamping precision, so as to facilitate the operator to clamp the high-rigidity asymmetric round-square tube 700 again, thereby ensuring the clamping effect of the high-rigidity asymmetric round-square tube 700 and avoiding the situation that the cut high-rigidity asymmetric round-square tube 700 cannot be used;

[0061] When the high-rigidity asymmetric round-square tube 700 is cut, the two electric telescopic rods 202 and the cutting machine 203 are started through the button on the control panel 600; when the output shafts of the two electric telescopic rods 202 extend, the cutting machine 203 moves downward, thereby realizing automatic cutting of the high-rigidity asymmetric round-square tube 700; when the rectangular push plate 204 moves downward, the rectangular push plate 204 can also drive the shielding protection frame 301 to move downward; when the two circular magnets b 302 are separated from the two circular magnets a 205, the shielding protection frame 301 can slide downward under the action of gravity, so that the shielding protection frame 301 moves to the protection position first, thereby shielding sparks generated during cutting of the high-rigidity asymmetric round-square tube 700.

[0062] After the high-rigidity asymmetric round-square tube 700 is cut, the output shafts of the two electric telescopic rods 202 are automatically retracted under the action of the control panel 600, and the cutting machine 203 automatically stops working under the action of the control panel 600; then the worker slides the shielding protection frame 301 upward, so that the two circular magnets b 302 are connected with the two circular magnets a 205, then loosens the two clamping screws 103 with the internal hex wrench, and finally takes down the cut high-rigidity asymmetric round-square tube 700, and appropriately adjusts the position of the high-rigidity asymmetric round-square tube 700 for next cutting.

[0063] In this paper, the following points need to be noted:

[0064] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.

[0065] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0066] The above merely describes specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. A processing device for high-rigidity asymmetric square tubes, used for cutting high-rigidity asymmetric square tubes (700); comprising: A support clamping member (100), a cutting and cutting member (200), a shielding and protective member (300), a clamping detection member (400) and a detection feedback member (500); characterized in that the cutting and cutting member (200) is mounted on the top of the support clamping member (100); the shielding and protective member (300) is mounted on the support clamping member (100) and the cutting and cutting member (200), and the shielding and protective member (300) is used to shield the cutting part of the high-rigidity asymmetric square tube (700); the clamping detection member (400) is mounted on the support clamping member (100); 0), the clamping detection member (400) is used to detect the high-rigidity asymmetric square tube (700) after clamping; the detection feedback member (500) is installed inside the clamping detection member (400), and the detection feedback member (500) is used to feedback the detection result of the clamping detection member (400); the control panel (600) is fixedly installed on the support clamping member (100), and the alarm (601) is fixedly installed on the control panel (600), and the negative pole of the alarm (601) is electrically connected to the negative pole of the battery in the control panel (600); The support clamp (100) comprises: a support base (101) and a clamping frame (102); the clamping frame (102) is fixedly mounted on the top of the support base (101); two semicircular grooves (1021) are provided on the front side of the clamping frame (102), and dovetail grooves (1022) are provided on the left and right sides of the clamping frame (102); The clamping detection member (400) includes: an X-shaped bracket (401), an insulating movable rod (402) and an insulating detection frame (403); the X-shaped bracket (401) is fixedly mounted on the clamping frame (102); the insulating movable rod (402) is slidably mounted on the X-shaped bracket (401); the insulating detection frame (403) is rotatably mounted on the top of the insulating movable rod (402); the clamping detection member (400) further includes: a circular roller (404) and a positioning tension spring (405); there are two circular rollers (404) in total, and the two circular rollers (404) are rotatably mounted on the left and right ends of the insulating detection frame (403); there are two positioning tension springs (405) in total, and the two positioning tension springs (405) are 05) is fixedly connected to the insulating movable rod (402), and the top ends of the two positioning tension springs (405) are fixedly connected to the insulating detection frame (403); the clamping detection member (400) further includes: a debris collection box (406), a rectangular sealing cover (407) and a movable handle (408); the debris collection box (406) is fixedly mounted on the top of the insulating detection frame (403); the rectangular sealing cover (407) is fixedly mounted on the bottom of the insulating movable rod (402), and the bottom of the rectangular sealing cover (407) is in contact with the clamping frame (102), and the control panel (600) is located in the rectangular sealing cover (407); the movable handle (408) is fixedly mounted on the front side of the rectangular sealing cover (407); The detection feedback component (500) includes: an arc-shaped conductive plate (501), a movable conductive head (502) and a support spring (503); there are two arc-shaped conductive plates (501), and the two arc-shaped conductive plates (501) are fixedly installed on the top of the insulating movable rod (402), and the two arc-shaped conductive plates (501) are also electrically connected to the positive pole of the alarm (601); the movable conductive head (502) is slidably installed inside the insulation detection frame (403), and the bottom end of the movable conductive head (502) is provided with a rounded corner; the bottom end of the movable conductive head (502) contacts the insulating movable rod (402), and the movable conductive head (502) is also electrically connected to the positive pole of the battery in the control panel (600); the support spring (503) is installed inside the insulation detection frame (403), and the support spring (503) is located above the movable conductive head (502).

2. The processing equipment for high-rigidity asymmetric square tubes according to claim 1, characterized in that: The support clamp (100) further includes: a clamping screw (103) and an L-shaped limiting frame (104); there are two clamping screws (103) in total, and the two clamping screws (103) are threadedly connected to the clamping frame (102), and the rear sides of the two clamping screws (103) are in contact with the high-rigidity asymmetric square tube (700); there are two L-shaped limiting frames (104) in total, and the two L-shaped limiting frames (104) are fixedly installed on the left sides of the two clamping screws (103), and the rear ends of the two L-shaped limiting frames (104) are inserted into the two semicircular grooves (1021).

3. The processing equipment for high-rigidity asymmetric square tubes according to claim 1, characterized in that: The cutting and chopping member (200) comprises: a cross-shaped frame (201), an electric telescopic rod (202) and a cutting machine (203); the cross-shaped frame (201) is fixedly mounted on the top of the clamping frame (102); two electric telescopic rods (202) are provided, and the two electric telescopic rods (202) are fixedly mounted on the top of the cross-shaped frame (201), and the two electric telescopic rods (202) are also electrically connected to the control panel (600); the cutting machine (203) is fixedly mounted on the output shafts of the two electric telescopic rods (202), and the cutting machine (203) is also electrically connected to the control panel (600).

4. The processing equipment for high-rigidity asymmetric square tubes according to claim 3, characterized in that: The cutting and chopping piece (200) further comprises: a rectangular push plate (204) and a circular magnet a (205); the rectangular push plate (204) is fixedly mounted on the front side of the cutting machine (203); and two circular magnets a (205) are provided, and the two circular magnets a (205) are fixedly mounted inside the cross frame (201).

5. The processing equipment for high-rigidity asymmetric square tubes according to claim 4, characterized in that: The shielding protection member (300) comprises: a shielding protection frame (301) and a circular magnet b (302); the shielding protection frame (301) is slidably mounted in two dovetail slide grooves (1022), and the shielding protection frame (301) is also in contact with the bottom of the rectangular push plate (204); there are two circular magnets b (302), and the two circular magnets b (302) are fixedly mounted inside the shielding protection frame (301), and the two circular magnets b (302) are also connected to the two circular magnets a (205).

Citation Information

Patent Citations

  • Intelligent machine manufacturing workstation

    CN120055360A

  • Cutting equipment for metal product machining and method thereof

    CN120190402A