A cutting machine for processing clothing display racks

By designing a cutting machine for clothing display racks and adopting steel pipe movement control components and cutting components, the problems of cumbersome cutting operations, low precision and lack of automation of existing equipment are solved, and efficient and accurate steel pipe cutting is achieved.

CN115815682BActive Publication Date: 2025-09-09福建安邦展示股份有限公司
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202211476568.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-23
Publication Date
2025-09-09
Estimated Expiration
2042-11-23

AI Technical Summary

Technical Problem

Existing steel pipe cutting equipment has deficiencies in fixing and adjustment, resulting in cumbersome cutting operations, low precision and lack of automation, which reduces cutting efficiency.

Method used

A cutting machine for garment display racks was designed, consisting of a steel pipe motion control unit and a cutting unit. The motion control unit uses multiple fixtures and drive mechanisms to secure and advance the steel pipe, while a laser rangefinder automatically detects and controls the cutting length. The cutting unit uses a cutting blade and a synchronization mechanism to automatically cut the steel pipe.

Benefits of technology

It improves the efficiency and accuracy of steel pipe cutting, reduces manual operations, and enhances the automation effect of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115815682B_ABST
    Figure CN115815682B_ABST
Patent Text Reader

Abstract

The present invention discloses a cutting machine for processing clothing display racks, comprising a bottom box, a controller installed on the right side of the bottom box, and a heat dissipation detection door fan installed on the front side of the bottom box. A steel pipe movement control component is provided, and the fixation and advancement of the steel pipe are controlled by the cooperation of multiple groups of clamps, so that continuous cutting of the steel pipe is facilitated, the cutting efficiency of the steel pipe is increased, the automation effect of the equipment is increased, and manual operation is reduced. A cutting component is provided, and a movable length measuring frame is provided on the left side of the inner shell of the cutting component. After the steel pipe is advanced to the left side of the cutting blade, a movable vertical plate equipped with a laser rangefinder is pushed, and automatic detection is performed according to the advanced length of the steel pipe, so as to automatically control the cutting length of the steel pipe, so as to automatically cut the steel pipe according to the required length, thereby increasing the cutting accuracy of the steel pipe and reducing the required manual measurement, thereby increasing the convenience of steel pipe cutting.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the field of cutting processing technology, in particular to a cutting machine for processing clothing display racks. Background Art

[0002] Clothing props are the tools used for displaying goods at the terminal and in window displays. They appear in windows, specialty stores, shopping malls, and clothing displays. Specifically, clothing props include: performance costumes, performance supplies, masks and headdresses or dance props, dance performance costumes, musical instruments, stage props; some hangers, display racks, mannequins, wigs, POP billboards, hardware accessories, promotional vehicles, ironing machines, irons, etc. used in clothing stores, shopping malls, and clothing stores; clothing, as a design product with aesthetic appeal, needs to be displayed during sales promotion, and display racks are essential for display. Clothing display racks are a common clothing display prop; clothing display racks can be divided into metal display racks and plastic display racks according to the material. Metal display racks are widely used because of their special metallic texture, which can highlight the beauty of clothing. When processing metal clothing display racks, the metal tubes need to be cut according to the required length of the display rack.

[0003] At present, the optimization of steel pipe cutting equipment mostly focuses on fixation and adjustment. For example, patent number CN202121728485.8 discloses an improved automatic cutting equipment for steel pipe processing. Through the mutual cooperation of threaded rods, fixed springs, fixed rings, and arc-shaped splints, the threaded rods are rotated to drive the three arc-shaped splints to move toward the middle to tighten the ends of the steel pipe and fix the two ends of the steel pipe. By starting the adjustment motor, the screw rod is driven to rotate, thereby moving the position of the cutting assembly. On the one hand, the steel pipe can be stably fixed to prevent displacement during the cutting process, resulting in low cutting quality. On the other hand, the specific position of the cutting assembly can be adjusted, thereby increasing the adjustability of the entire equipment.

[0004] Although the above-mentioned steel pipe cutting equipment has certain advantages in terms of fixation and adjustment, it still has certain disadvantages:

[0005] The cutting length of the steel pipe needs to be manually measured, and then the cutting position of the cutting equipment needs to be adjusted. The position of the cutting blade needs to be aligned with the required cutting position of the steel pipe before cutting. The cutting operation is cumbersome, with low precision and many manual steps.

[0006] It is not convenient to automatically and continuously cut the steel pipe, the automation effect of cutting the steel pipe is poor, and the cutting efficiency of the steel pipe is reduced. Summary of the Invention

[0007] Therefore, in order to solve the above-mentioned shortcomings, the present invention provides a cutting machine for processing clothing display racks.

[0008] The present invention is achieved by constructing a cutting machine for processing clothing display racks, which includes a bottom box, a controller installed on the right side of the bottom box, and a heat dissipation detection door installed on the front side of the bottom box;

[0009] It is characterized by: further comprising:

[0010] A steel pipe movement control assembly is installed at the top of the bottom box;

[0011] The cutting assembly is arranged on the left side of the top of the steel pipe movement control assembly. Support frames are fixed on the front and rear sides of the cutting assembly, and the bottoms of the front and rear sides of the support frames are fixedly connected to the bottom box.

[0012] Preferably, the steel pipe movement control assembly includes:

[0013] An outer frame, the outer frame being arranged on the top of the bottom box;

[0014] The slide groove is transversely opened in the middle of the outer frame, and the first movable clamp component, the second movable clamp component, the fixed clamp component, the third movable clamp component, and the fourth movable clamp component are sequentially arranged inside the slide groove from left to right.

[0015] A movable plate, wherein the third movable clamp assembly and the fourth movable clamp assembly are fixed to the left and right sides of the top of the movable plate;

[0016] A driving assembly, wherein the driving assembly is provided with three components respectively provided on the second movable clamp assembly, the movable plate and the bottom of the discharge guide inclined plate;

[0017] A discharge guide inclined plate, the discharge guide inclined plate being mounted on the left side of the bottom end of the first movable clamp assembly;

[0018] The bottom end of the outer frame is fixedly connected to the bottom box, and the driving assembly is installed inside the bottom box.

[0019] Preferably, the first movable fixture assembly includes:

[0020] a first support plate, the first support plate being embedded in the chute;

[0021] A supporting pulley and an electric clamp, wherein the supporting pulley and the electric clamp are respectively installed on the left and right sides of the top of the first supporting plate;

[0022] Wherein, the first support plate slides transversely along the inner wall of the sliding groove.

[0023] Preferably, the drive assembly includes:

[0024] a first motor, wherein the first motor is used to drive the screw;

[0025] a screw, wherein an output shaft of the screw is connected to an output shaft of the first motor;

[0026] A slider, wherein a screw rod is passed through the slider in a transverse direction, and an inner wall of the slider is threadedly connected to the screw rod;

[0027] Among them, the outer side of the first motor is fixedly connected to the bottom box, the end of the screw away from the first motor is rotatably connected to the bottom box through a bearing, and the sliders of the three groups of drive assemblies are respectively connected to the first support plate, movable plate and bottom of the discharge guide inclined plate of the second movable clamp assembly.

[0028] Preferably, the cutting assembly comprises:

[0029] A housing, the housing being disposed outside the cutting assembly;

[0030] An electric push rod, the electric push rod is fixed to the right side of the top end of the housing;

[0031] A movable frame, the movable frame is arranged on the right side inside the shell, and the top of the movable frame is connected to the push rod of the electric push rod;

[0032] a second motor, the second motor being fixed to the right side of the movable frame;

[0033] A cutting blade, the cutting blade is arranged in the middle of the movable frame, and the center of the cutting blade is connected to the output shaft of the second motor;

[0034] A movable length measuring frame, the movable length measuring frame being arranged on the left side inside the housing;

[0035] a synchronization structure, the synchronization structure being arranged between the movable frame and the movable length measuring frame;

[0036] Wherein, the front and rear sides of the shell are fixedly connected to the support frame.

[0037] Preferably, the movable length measuring frame comprises:

[0038] a second support plate and a measuring plate, wherein a polished rod is transversely fixed between the second support plate and the measuring plate;

[0039] A movable vertical plate, the top of which is horizontally penetrated by the polished rod;

[0040] A spring, the spring being sleeved on the outside of the polished rod, and the left side of the movable vertical plate being elastically connected to the second support plate via the spring;

[0041] A laser rangefinder, the laser rangefinder being installed in the middle of the right side of the movable vertical plate;

[0042] Limiting vertical rods, two of which are provided, and the two limiting vertical rods are respectively fixed to the second supporting plate and the top of the measuring plate;

[0043] A limit plate, wherein the left and right sides of the limit plate are respectively penetrated by limit vertical rods;

[0044] A support block is provided on the top of the housing, and a bottom end of the support block is fixedly connected to the limiting vertical rod;

[0045] The limiting plate is fixed to the left side of the top inner portion of the housing, and the right side of the measuring plate is connected to the synchronization structure.

[0046] Preferably, the synchronization structure includes:

[0047] a gear, the gear being disposed inside the housing;

[0048] A support shaft, wherein the support shaft passes through the center of the gear, and the inner wall of the gear rotates along the surface of the support shaft;

[0049] A left tooth plate and a right tooth plate, wherein the left tooth plate and the right tooth plate are respectively arranged on the left and right sides of the gear, and both the left tooth plate and the right tooth plate are meshed with the gear;

[0050] Wherein, the front and rear ends of the support shaft are fixedly connected to the shell.

[0051] Preferably, the first movable clamp assembly, the second movable clamp assembly, the fixed clamp assembly, the third movable clamp assembly and the fourth movable clamp assembly have the same structure, and the supporting pulleys of the first movable clamp assembly and the second movable clamp assembly are arranged on the left side of the electric clamp, and the supporting pulleys of the fixed clamp assembly, the third movable clamp assembly and the fourth movable clamp assembly are arranged on the right side of the electric clamp.

[0052] Preferably, the polished rod is arranged horizontally, and the surface of the polished rod is smooth, and the inner wall of the movable vertical plate is in contact with the polished rod.

[0053] Preferably, the ranging direction of the laser rangefinder is linear sensing from left to right, and the ranging endpoint of the laser rangefinder is located on the left side of the measuring plate.

[0054] The present invention has the following advantages: The present invention provides a cutting machine for processing clothing display racks through improvements, which has the following improvements compared with similar equipment:

[0055] The present invention discloses a cutting machine for processing clothing display racks, which is provided with a steel pipe movement control assembly. The steel pipe movement control assembly is provided with a first movable clamp assembly, a second movable clamp assembly, a fixed clamp assembly, a third movable clamp assembly, and a fourth movable clamp assembly. The bottoms of the first movable clamp assembly, the second movable clamp assembly, the third movable clamp assembly, and the fourth movable clamp assembly are controlled to move by a driving structure. The fixing and advancement of the steel pipe are controlled by the cooperation of multiple sets of clamps, which facilitates continuous cutting of the steel pipe, increases the cutting efficiency of the steel pipe, increases the automation effect of the equipment, and reduces manual operation.

[0056] The present invention relates to a cutting machine for processing clothing display racks. A cutting assembly is provided, and a movable length measuring frame is provided on the left side of the inner shell of the cutting assembly. After the steel pipe is pushed to the left side of the cutting blade, a movable vertical plate equipped with a laser rangefinder is pushed. Automatic detection is performed according to the pushed length of the steel pipe to automatically control the cutting length of the steel pipe, so that the steel pipe can be automatically cut according to the required length, thereby increasing the cutting accuracy of the steel pipe and reducing the required manual measurement, thereby increasing the convenience of cutting the steel pipe. BRIEF DESCRIPTION OF THE DRAWINGS

[0057] Figure 1 It is a schematic structural diagram of the present invention;

[0058] Figure 2 It is a structural schematic diagram of the steel pipe movement control assembly of the present invention;

[0059] Figure 3 is a cross-sectional view of the steel pipe movement control assembly structure of the present invention;

[0060] Figure 4 is a schematic structural diagram of the first movable clamp assembly of the present invention;

[0061] Figure 5 It is a schematic structural diagram of the cutting assembly of the present invention;

[0062] Figure 6 It is a schematic diagram of the internal structure of the cutting assembly of the present invention;

[0063] Figure 7 It is a structural schematic diagram of the movable length measuring frame of the present invention;

[0064] Figure 8 This invention Figure 6 A partial enlarged view of area A.

[0065] Including: bottom box-1, controller-2, heat dissipation detection door-3, steel pipe movement control component-4, support frame-5, cutting component-6, outer frame-41, slide-42, first movable clamp component-43, second movable clamp component-44, fixed clamp component-45, third movable clamp component-46, fourth movable clamp component-47, movable plate-48, drive component-49, discharge guide inclined plate-410, first support plate-431, support pulley-432, electric clamp-433, first motor-49 1. Screw 492, slider 493, housing 61, electric push rod 62, movable frame 63, second motor 64, cutting blade 65, movable length measuring frame 66, synchronization mechanism 67, second support plate 661, measuring plate 662, polished rod 663, movable vertical plate 664, spring 665, laser rangefinder 666, limit vertical rod 667, limit plate 668, support block 669, gear 671, support shaft 672, left gear plate 673, right gear plate 674. DETAILED DESCRIPTION

[0066] The following will be combined with the Figure 1-8 The present invention is described in detail, and the technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0067] like Figures 1 to 8 As shown, a cutting machine for processing clothing display racks includes a bottom box 1, a controller 2 installed on the right side of the bottom box 1, and a heat dissipation detection door 3 installed on the front side of the bottom box 1;

[0068] The steel pipe movement control component 4 is installed at the top inside the bottom box 1, and the cutting component 6 is arranged on the left side of the top of the steel pipe movement control component 4. The front and rear sides of the cutting component 6 are fixed with support frames 5, and the front and rear bottoms of the support frames 5 are fixedly connected to the bottom box 1.

[0069] The outer frame 41 is arranged on the top of the bottom box 1, and the slide 42 is horizontally opened in the middle of the outer frame 41. The slide 42 is provided with a first movable clamp assembly 43, a second movable clamp assembly 44, a fixed clamp assembly 45, a third movable clamp assembly 46, and a fourth movable clamp assembly 47 from left to right.

[0070] The third movable clamp assembly 46 and the fourth movable clamp assembly 47 are fixed to the left and right sides of the top of the movable plate 48. The driving assembly 49 is provided with three respectively arranged on the second movable clamp assembly 44, the movable plate 48 and the bottom of the discharge guide inclined plate 410. The discharge guide inclined plate 410 is installed on the left side of the bottom end of the first movable clamp assembly 43. The bottom end of the outer frame 41 is fixedly connected to the bottom box 1. The driving assembly 49 is installed inside the bottom box 1. The first movable clamp assembly 43, the second movable clamp assembly 44, the fixed clamp assembly 45, the third movable clamp assembly 46 and the fourth movable clamp assembly 47 have the same structure, and the first movable clamp assembly 43 The support pulley 432 of the second movable clamp assembly 44 is arranged on the left side of the electric clamp 433, and the support pulleys 432 of the fixed clamp assembly 45, the third movable clamp assembly 46 and the fourth movable clamp assembly 47 are arranged on the right side of the electric clamp 433. The steel pipe is supported by the support pulleys 432 of the first movable clamp assembly 43, the second movable clamp assembly 44, the fixed clamp assembly 45, the third movable clamp assembly 46 and the fourth movable clamp assembly 47, and the steel pipe slides along the top end surface of the support pulley 432 when moving, and is clamped by the electric clamp 433 to facilitate the control of the movement of the steel pipe.

[0071] The first support plate 431 is embedded in the slide groove 42 . The support pulley 432 and the electric clamp 433 are respectively installed on the left and right sides of the top of the first support plate 431 . The first support plate 431 slides laterally along the inner wall of the slide groove 42 .

[0072] The first motor 491 is used to drive the screw 492, the output shaft of the screw 492 is connected to the output shaft of the first motor 491, the screw 492 is horizontally passed through the inside of the slider 493, and the inner wall of the slider 493 is threadedly connected to the screw 492, the outer side of the first motor 491 is fixedly connected to the bottom box 1, and the end of the screw 492 away from the first motor 491 is rotatably connected to the bottom box 1 through a bearing, and the sliders 493 of the three groups of driving assemblies 49 are respectively connected to the first support plate 431, the movable plate 48 and the bottom of the discharge guide inclined plate 410 of the second movable clamp assembly 44.

[0073] The housing 61 is arranged outside the cutting assembly 6, the electric push rod 62 is fixed to the right side of the top of the housing 61, the movable frame 63 is arranged on the right side inside the housing 61, and the top of the movable frame 63 is connected to the push rod of the electric push rod 62, and the second motor 64 is fixed to the right side of the movable frame 63;

[0074] The cutting blade 65 is arranged in the middle of the movable frame 63, and the center of the cutting blade 65 is connected to the output shaft of the second motor 64. The movable length measuring frame 66 is arranged on the left side inside the outer shell 61. The synchronization structure 67 is arranged between the movable frame 63 and the movable length measuring frame 66. The front and rear sides of the outer shell 61 are fixedly connected to the support frame 5.

[0075] A polished rod 663 and a movable vertical plate 664 are fixed transversely between the second support plate 661 and the measuring plate 662. The top of the movable vertical plate 664 is horizontally penetrated by the polished rod 663. A spring 665 is sleeved on the outside of the polished rod 663. The left side of the movable vertical plate 664 is elastically connected to the second support plate 661 through the spring 665.

[0076] The laser rangefinder 666 is mounted in the middle of the right side of the movable vertical plate 664. Two limiting vertical rods 667 are provided, and the two limiting vertical rods 667 are respectively fixed to the top of the second support plate 661 and the measuring plate 662. The limiting vertical rods 667 penetrate the left and right sides of the limiting plate 668. The support block 669 is set on the top of the housing 61, and the bottom end of the support block 669 is fixedly connected to the limiting vertical rods 667.

[0077] The limit plate 668 is fixed to the left side of the top end inside the shell 61, and the right side of the measuring plate 662 is connected to the synchronization structure 67. The light rod 663 is arranged horizontally, and the surface of the light rod 663 is smooth. The inner wall of the movable vertical plate 664 is in contact with the light rod 663, and the moving trajectory of the movable vertical plate 664 is limited by the light rod 663. The ranging direction of the laser rangefinder 666 is linear sensing from left to right, and the ranging end point of the laser rangefinder 666 is located on the left side of the measuring plate 662, so that the laser rangefinder 666 detects the straight-line distance between the laser rangefinder 666 and the measuring plate 662. The movable vertical plate 664 is pushed to move by the steel pipe, and the movable vertical plate 664 drives the laser rangefinder 666 to move to the left, thereby detecting the length of the steel pipe located on the left side of the cutting blade 65, so as to facilitate cutting according to the steel pipe length required by the clothing display rack.

[0078] The support shaft 672 passes through the center of the gear 671, and the inner wall of the gear 671 rotates along the surface of the support shaft 672. The left gear plate 673 and the right gear plate 674 are respectively arranged on the left and right sides of the gear 671, and the left gear plate 673 and the right gear plate 674 are both engaged with the gear 671. The front and rear ends of the support shaft 672 are fixedly connected to the outer shell 61.

[0079] The present invention provides a cutting machine for processing clothing display racks through improvement, and its working principle is as follows:

[0080] First, when using this device, first place the device in the work area, and then connect the device to an external power source to provide the power required for the device to work;

[0081] Second, when cutting the steel pipe, the controller 2 is used to set the required cutting length of the steel pipe. The driving structure 49 at the bottom of the first movable clamp assembly 43 is controlled to drive the first movable clamp assembly 43 to move to the right. The distance between the first movable clamp assembly 43 and the second movable clamp assembly 44 is adjusted according to the required cutting length of the steel pipe, so that the cut steel pipe can be supported by the first movable clamp assembly 43 and the second movable clamp assembly 44. Then, the steel pipe is placed on the support pulleys 432 of the third movable clamp assembly 46 and the fourth movable clamp assembly 47, and the steel pipe is clamped and fixed by the electric clamps 433 of the third movable clamp assembly 46 and the fourth movable clamp assembly 47.

[0082] The first motor 491 of the driving assembly 49 at the bottom of the movable plate 48 generates power, which drives the screw 492 to rotate through the output shaft. The rotation of the screw 492 drives the slider 493 to move to the left through the threaded fit between the slider 493 and the slider 493. The slider 493 drives the movable plate 48 to move to the left. The top of the movable plate 48 drives the steel pipe to move to the left through the third movable clamp assembly 46 and the fourth movable clamp assembly 47. At this time, the second movable clamp assembly 44 and the electric clamp 433 of the fixed clamp assembly 45 are in an expanded state. In order to avoid affecting the advancement of the steel pipe, the left end of the steel pipe is moved to the support pulley 432 of the fixed clamp assembly 45. The steel pipe is clamped and fixed by the electric clamp 433 of the fixed clamp assembly 45. Then the movable plate 48 and the third movable clamp assembly 46 and the fourth movable clamp assembly 47 at the top of the movable plate are controlled to move right to the right side of the steel pipe. The tool 433 clamps the steel pipe, and then releases the electric clamp 433 of the fixed clamp assembly 45 to clamp the steel pipe. By controlling the movable plate 48 and the third movable clamp assembly 46 and the fourth movable clamp assembly 47 on the top thereof to move left, the left end of the steel pipe is driven to pass through the second movable clamp assembly 44 and the first movable clamp assembly 43, and the steel pipe pushes the movable vertical plate 664 to the left. The movable vertical plate 664 moves to the left along the light rod 663 and the compression spring 665. Due to the laser rangefinder 666 The distance measurement direction is linear sensing from left to right, and the distance measurement endpoint of the laser rangefinder 666 is located on the left side of the measuring plate 662, so that the laser rangefinder 666 detects the linear distance between the laser rangefinder 666 and the measuring plate 662. The movable vertical plate 664 is pushed by the steel pipe to move, and the movable vertical plate 664 drives the laser rangefinder 666 to move to the left, thereby detecting the length of the steel pipe located on the left side of the cutting blade 65. Automatic detection is performed based on the pushed length of the steel pipe, so as to automatically control the cutting length of the steel pipe.

[0083] Fourth, after the position adjustment of the steel pipe is completed, the steel pipe is clamped and fixed by the electric clamp 433 of the first movable clamp assembly 43, the second movable clamp assembly 44 and the fixed clamp assembly 45. After the adjustment of the steel pipe is completed, the movable frame 63 is pushed downward by controlling the electric push rod 62. The movable frame 63 drives the second motor 64, the cutting blade 65 and the right tooth plate 674 on the left to move downward. The right tooth plate 674 moves downward to drive the gear 671 to rotate clockwise. The gear 671 drives the left tooth plate 673 on the left to move upward. The left tooth plate 673 drives the measuring plate 662, the optical rod 663, the movable vertical plate 664, the spring 665, the laser rangefinder 666 and the limit vertical rod 667 to move upward to prevent the movable vertical plate 664 from affecting the discharge of the steel pipe. When the movable frame 63 moves downward, the cutting blade 65 is driven to rotate by controlling the second motor 64, and the steel pipe is cut by the cutting blade 65.

[0084] Fifth, after the steel pipe is cut, the electric clamp 433 of the first movable clamp assembly 43 is released to fix the left end of the cut steel pipe, and then the second movable clamp assembly 44 is controlled to push the cut steel pipe to move to the left, and then the clamping of the cut steel pipe is released, so that the left end of the steel pipe tilts downward to the discharge guide inclined plate 410 by its own weight, and the cut steel pipe is discharged through the discharge guide inclined plate 410, and then the electric push rod 62 is controlled to drive the movable frame 63 to move upward, so that the movable vertical plate 664 moves downward, and then the pushing and cutting operations of the steel pipe are repeated, and the steel pipe is automatically and continuously cut, thereby increasing the cutting efficiency of the steel pipe, increasing the automation effect of the equipment, and reducing manual operations.

[0085] The present invention provides a cutting machine for processing clothing display racks through improvement, which is provided with a steel pipe movement control component 4, on which a first movable clamp component 43, a second movable clamp component 44, a fixed clamp component 45, a third movable clamp component 46 and a fourth movable clamp component 47 are provided, and the bottoms of the first movable clamp component 43, the second movable clamp component 44, the third movable clamp component 46 and the fourth movable clamp component 47 are controlled to move by a driving structure 49, and the fixing and advancement of the steel pipe are controlled by the cooperation of multiple groups of clamps, which is convenient for the movement of the steel pipe. Continuous cutting increases the cutting efficiency of steel pipes, increases the automation effect of the equipment, and reduces manual operation. A cutting component 6 is provided, and a movable length measuring frame 66 is provided on the left side of the inner shell 61 of the cutting component 6. After the steel pipe is pushed to the left side of the cutting blade 65, a movable vertical plate 664 equipped with a laser rangefinder 666 is pushed to automatically detect the pushed length of the steel pipe so as to automatically control the cutting length of the steel pipe, so as to automatically cut the steel pipe according to the required length, thereby increasing the cutting accuracy of the steel pipe and reducing the required manual measurement, thereby increasing the convenience of cutting the steel pipe.

[0086] The above shows and describes the basic principles, main features and advantages of the present invention, and the standard parts used in the present invention can be purchased from the market, and special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part adopt conventional means such as mature bolts, rivets, welding, etc. in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, and the circuit connection adopts the conventional connection method in the existing technology, which will not be described in detail here.

[0087] The above description of the disclosed embodiments is intended to enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A cutting machine for processing clothing display racks, comprising a bottom box (1), a controller (2) installed on the right side of the bottom box (1), and a heat dissipation detection door (3) installed on the front side of the bottom box (1); Its characteristics are: Also includes: A steel pipe movement control component (4), the steel pipe movement control component (4) being installed at the top end inside the bottom box (1); A cutting assembly (6), the cutting assembly (6) being arranged on the left side of the top end of the steel pipe movement control assembly (4), the cutting assembly (6) being fixed with support frames (5) on both the front and rear sides, and the bottoms of the front and rear sides of the support frames (5) being fixedly connected to the bottom box (1); The cutting assembly (6) comprises: A housing (61), the housing (61) being arranged outside the cutting assembly (6); An electric push rod (62), the electric push rod (62) being fixed to the right side of the top end of the housing (61); A movable frame (63), the movable frame (63) is arranged on the right side inside the housing (61), and the top end of the movable frame (63) is connected to the push rod of the electric push rod (62); a second motor (64), the second motor (64) being fixed to the right side of the movable frame (63); A cutting blade (65), the cutting blade (65) is arranged in the middle of the movable frame (63), and the center of the cutting blade (65) is connected to the output shaft of the second motor (64); A movable length measuring frame (66), the movable length measuring frame (66) being arranged on the left side inside the housing (61); A synchronization structure (67), the synchronization structure (67) being arranged between the movable frame (63) and the movable length measuring frame (66); Wherein, both the front and rear sides of the housing (61) are fixedly connected to the support frame (5); The movable length measuring frame (66) comprises: a second support plate (661) and a measuring plate (662), wherein a polished rod (663) is transversely fixed between the second support plate (661) and the measuring plate (662); A movable vertical plate (664), the top of which is laterally penetrated by the polished rod (663); A spring (665), wherein the spring (665) is sleeved on the outside of the light rod (663), and the left side of the movable vertical plate (664) is elastically connected to the second support plate (661) via the spring (665); A laser rangefinder (666), the laser rangefinder (666) being installed in the middle of the right side of the movable vertical plate (664); A limiting vertical rod (667), wherein two limiting vertical rods (667) are provided, and the two limiting vertical rods (667) are respectively fixed to the top of the second support plate (661) and the measuring plate (662); A limiting plate (668), wherein the limiting vertical rods (667) penetrate the left and right sides of the limiting plate (668); A support block (669), wherein the support block (669) is disposed on the top of the housing (61), and the bottom end of the support block (669) is fixedly connected to the limiting vertical rod (667); The limiting plate (668) is fixed to the left side of the top end inside the housing (61), and the right side of the measuring plate (662) is connected to the synchronization structure (67); The synchronization structure (67) includes: A gear (671), wherein the gear (671) is disposed inside the housing (61); A support shaft (672), wherein the support shaft (672) passes through the center of the gear (671), and the inner wall of the gear (671) rotates along the surface of the support shaft (672); A left tooth plate (673) and a right tooth plate (674), wherein the left tooth plate (673) and the right tooth plate (674) are respectively arranged on the left and right sides of the gear (671), and both the left tooth plate (673) and the right tooth plate (674) are meshed with the gear (671); Wherein, both front and rear ends of the support shaft (672) are fixedly connected to the housing (61).

2. The cutting machine for processing clothing display racks according to claim 1, characterized in that: The steel pipe movement control component (4) comprises: An outer frame (41), the outer frame (41) being arranged on the top of the bottom box (1); A slide groove (42), wherein the slide groove (42) is transversely opened in the middle of the outer frame (41), and a first movable clamp component (43), a second movable clamp component (44), a fixed clamp component (45), a third movable clamp component (46), and a fourth movable clamp component (47) are sequentially arranged inside the slide groove (42) from left to right. A movable plate (48), wherein the third movable clamp assembly (46) and the fourth movable clamp assembly (47) are fixed to the left and right sides of the top of the movable plate (48); A driving assembly (49), wherein the driving assembly (49) is provided with three components respectively provided at the bottom of the second movable clamp assembly (44), the movable plate (48), and the discharge guide inclined plate (410); a discharge guide inclined plate (410), the discharge guide inclined plate (410) being mounted on the left side of the bottom end of the first movable clamp assembly (43); The bottom end of the outer frame (41) is fixedly connected to the bottom box (1), and the drive assembly (49) is installed inside the bottom box (1).

3. The cutting machine for processing clothing display racks according to claim 2, characterized in that: The first movable clamp assembly (43) comprises: A first support plate (431), wherein the first support plate (431) is embedded in the slide groove (42); A supporting pulley (432) and an electric clamp (433), wherein the supporting pulley (432) and the electric clamp (433) are respectively installed on the left and right sides of the top of the first support plate (431); The first support plate (431) slides laterally along the inner wall of the sliding groove (42).

4. The cutting machine for processing clothing display racks according to claim 2, characterized in that: The drive assembly (49) comprises: A first motor (491), the first motor (491) is used to drive the screw (492); a screw (492), wherein an output shaft of the screw (492) is connected to an output shaft of the first motor (491); A slider (493), wherein a screw rod (492) is passed through the slider (493) in a transverse direction, and an inner wall of the slider (493) is threadedly connected to the screw rod (492); The outer side of the first motor (491) is fixedly connected to the bottom box (1), the end of the screw (492) away from the first motor (491) is rotatably connected to the bottom box (1) through a bearing, and the sliders (493) of the three drive assemblies (49) are respectively connected to the first support plate (431), the movable plate (48) and the bottom of the discharge guide inclined plate (410) of the second movable clamp assembly (44).

5. The cutting machine for processing clothing display racks according to claim 3, characterized in that: The first movable clamp assembly (43), the second movable clamp assembly (44), the fixed clamp assembly (45), the third movable clamp assembly (46) and the fourth movable clamp assembly (47) have the same structure, and the supporting pulleys (432) of the first movable clamp assembly (43) and the second movable clamp assembly (44) are arranged on the left side of the electric clamp (433), and the supporting pulleys (432) of the fixed clamp assembly (45), the third movable clamp assembly (46) and the fourth movable clamp assembly (47) are arranged on the right side of the electric clamp (433).

6. The cutting machine for processing clothing display racks according to claim 1, characterized in that: The polished rod (663) is arranged horizontally, and the surface of the polished rod (663) is smooth. The inner wall of the movable vertical plate (664) is in contact with the polished rod (663).

7. The cutting machine for processing clothing display racks according to claim 1, characterized in that: The distance measuring direction of the laser rangefinder (666) is linear sensing from left to right, and the distance measuring end point of the laser rangefinder (666) is located on the left side of the measuring plate (662).

Citation Information

Patent Citations

  • Improved automatic cutting equipment for steel pipe machining

    CN214867618U

  • Metal steel pipe cutting device capable of automatically adjusting cutting length and using method thereof

    CN113102824A

  • Pipe cutting machine

    CN213672142U