Cutting equipment for corrugated pipe
By designing storage devices and positioning devices for corrugated pipe cutting equipment, automatic storage and cleaning of the cut corrugated pipe is realized, the problem of inconvenient storage of existing equipment is solved, labor costs are reduced and cutting quality is improved.
Patent Information
- Application Number
- CN202422116866.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-29
AI Technical Summary
Existing equipment for corrugated pipe cutting is not convenient for storing the cut corrugated pipe, resulting in higher labor costs.
A cutting device including a storage device and a positioning device is designed. The storage device is provided with a storage box, a shaking assembly and a cleaning component. The positioning device is provided with a positioning pallet and a clamping component. The cut corrugated pipe is transmitted to the storage box through a conveyor belt, and automatically stored and cleaned using the shaking assembly and a cleaning component.
Automatic storage and cleaning of the cut corrugated pipe is realized, which reduces labor costs and improves storage efficiency and cutting quality.
Smart Images

Figure CN222958723U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of cutting equipment, and particularly relates to a cutting equipment for corrugated pipes. Background Art
[0002] A corrugated pipe refers to a tubular elastic sensitive element formed by connecting foldable corrugated sheets along the folding and telescoping direction.
[0003] The existing Chinese patent with the publication number CN111570901 B discloses a cutting device for corrugated pipes, which includes an installation cabinet, a cutting assembly, a clamping assembly, and a lifting assembly. The installation cabinet is a housing structure with openings on both left and right sides, and a hollow side support frame is installed at the openings. The cutting assembly is installed inside the installation cabinet and located inside the side support frame to cut the corrugated pipe. There are two clamping assemblies symmetrically arranged on the side support frame to clamp the corrugated pipe, and two lifting assemblies are symmetrically installed on the left and right sides of the installation cabinet to lift the corrugated pipe.
[0004] The above invention is provided with a positioning and clamping structure, and the external force applied when clamping and cutting the corrugated pipe is evenly distributed. The cutting is relatively stable, without manual repair, and will not cause the workpiece to be scrapped. However, this invention is not convenient for storing the cut corrugated pipes, and the labor cost is relatively high. Utility Model Content
[0005] The purpose of this application is to provide a cutting equipment for corrugated pipes, which is convenient for workers to store the cut corrugated pipes and reduces the labor cost.
[0006] This application provides a cutting equipment for corrugated pipes, including an equipment body, and the equipment body includes:
[0007] A storage device, including a storage box, a shaking component, and a cleaning component;
[0008] A positioning device, including a positioning support plate and a clamping component;
[0009] A cutting head;
[0010] A conveyor belt;
[0011] A workbench;
[0012] Among them, the storage box is provided with a pipe groove, the storage box is connected to the shaking component, the cleaning component is placed at the positioning support plate, and the positioning support plate is slidably connected to the workbench.
[0013] In this technical solution, a storage device and a positioning device are provided in the device body. A storage box, a shaking component and a cleaning component are arranged in the storage device, and a positioning support plate and a clamping component are arranged in the positioning device. When a user cuts a corrugated pipe, the corrugated pipe is placed at the conveyor belt of the workbench, and then the corrugated pipe is conveyed to the positioning support plate for positioning. Then, the clamping component is controlled to clamp the corrugated pipe, and the corrugated pipe is cut by a cutting head. At this time, the cutting force applied to the corrugated pipe is evenly distributed, and the device body can stably cut the corrugated pipe with high cutting quality. The cleaning component is placed at the positioning support plate, and the staff controls the cleaning component to work simultaneously. The cleaning component can clean the debris at the cutting surface of the corrugated pipe, eliminating the need for subsequent manual processing and reducing labor costs. After the corrugated pipe is cut, it falls into the storage box through the conveyor belt. A pipe groove is arranged in the storage box, and the storage box is connected to the shaking component. The staff controls the shaking component to work, and the shaking component drives the storage box to shake continuously, enabling the corrugated pipe to fit with the pipe groove inside the storage box. The storage box can neatly arrange the corrugated pipe while storing it, improving the storage efficiency.
[0014] Further, the shaking component includes:
[0015] A base including an electromagnet;
[0016] A slider including a permanent magnet;
[0017] A spring;
[0018] Wherein, the slider is slidably connected to the base through the spring, and is connected to the permanent magnet after the electromagnet is energized. The slider is inserted into the storage box.
[0019] In this technical solution, a spring, a base with an electromagnet and a slider with a permanent magnet are arranged in the shaking component. The slider is slidably connected to the base through the spring. When the shaking component works, the electromagnets at two places of the base are controlled to be alternately energized. After the electromagnet is energized, it is connected to the permanent magnet. The electromagnet can drive the slider to slide alternately at the base, and the slider can be reset through the spring. The shaking efficiency of the slider is relatively high, that is, it drives the storage box to shake continuously, so as to neatly arrange the corrugated pipe in the storage box. Moreover, the slider is inserted into the storage box. After the corrugated pipe is stored, the storage box full of corrugated pipes is removed from the slider and an empty storage box is put in, improving the storage capacity of the device body.
[0020] Further, the cleaning component includes:
[0021] A negative pressure fan including a material guiding pipe;
[0022] A waste box;
[0023] Wherein, the negative pressure fan is connected to the waste box through the material guiding pipe.
[0024] In this technical solution, a negative pressure fan with a material guiding pipe and a waste box are arranged in the cleaning component, and the negative pressure fan and the waste box are connected through the material guiding pipe. During the cutting process of the corrugated pipe, the staff controls the negative pressure fan to work, and the air outlet of the negative pressure fan is aligned with the cutting surface of the corrugated pipe, which can effectively clean the debris at the cutting surface of the corrugated pipe. The debris is then conveyed into the waste box along the material guiding pipe, and the user does not need to manually process the corrugated pipe, while ensuring the cleanliness of the working environment around the equipment body.
[0025] Furthermore, the positioning device includes:
[0026] A first motor, including a first lead screw;
[0027] An infrared sensor;
[0028] Wherein, the positioning support plate is matched with the first lead screw.
[0029] In this technical solution, by arranging a first motor with a first lead screw and an infrared sensor in the positioning device, and the positioning support plate is matched with the first lead screw. When the staff needs to adjust the length of the corrugated pipe after cutting, they control the first motor to work, so that the positioning support plate displaces at the first lead screw, thus facilitating the staff to adjust the length of the corrugated pipe. After the corrugated pipe reaches the specified position and is detected by the infrared sensor, the clamping component is controlled to work to clamp the corrugated pipe.
[0030] Furthermore, the clamping component includes:
[0031] A second motor, including a second lead screw;
[0032] Clamping blocks, which are matched with the second lead screw;
[0033] Wherein, the second motor is connected to the infrared sensor.
[0034] In this technical solution, by arranging a second motor with a second lead screw and clamping blocks in the clamping component, the clamping blocks are matched with the second lead screw, and the second motor is connected to the infrared sensor. After the corrugated pipe is detected by the infrared sensor, the second motor is controlled to work, and the second motor drives the second lead screw to rotate, so that the clamping blocks displace at the second lead screw, and the clamping blocks approach each other, enabling the equipment body to clamp the corrugated pipe, which facilitates the staff to carry out the cutting work.
[0035] Furthermore, the workbench is provided with scales.
[0036] In this technical solution, by arranging scales on the workbench, the scales facilitate the staff to adjust the length of the corrugated pipe after cutting, improve the cutting accuracy of the equipment body, and at the same time facilitate the staff to adjust the position of the equipment body, which is relatively convenient to use.
[0037] The beneficial effects of the present application are as follows:
[0038] 1. When the jitter component works, the electromagnets at two places on the control base are alternately powered on. The electromagnets drive the sliders to slide alternately on the base, and the sliders can be reset by springs. The jitter efficiency is relatively high, enabling the storage box to continuously jitter, so as to neatly arrange the corrugated pipes in the storage box. Moreover, the sliders are inserted into the storage box. After the corrugated pipes are stored, it is convenient to replace the new storage box, improving the storage capacity of the equipment body.
[0039] 2. When the user cuts the corrugated pipe, the corrugated pipe is conveyed to the positioning support plate for positioning, and then the clamping component is controlled to clamp the corrugated pipe. The corrugated pipe is cut by the cutting head. At this time, the equipment body can stably cut the corrugated pipe with high cutting quality. At the same time, the cleaning component is controlled to work to clean the debris at the cutting surface, eliminating the need for subsequent manual processing and reducing the labor cost.
[0040] 3. During the cutting process of the corrugated pipe, the staff controls the negative pressure fan to work. The negative pressure fan can effectively clean the debris at the cutting surface of the corrugated pipe, and the debris is then conveyed into the waste box along the material guide pipe. The user no longer needs to manually process the corrugated pipe, and at the same time ensures the cleanliness of the working environment around the equipment body. Description of the Drawings
[0041] Figure 1 is a schematic structural diagram of a cutting device for corrugated pipes according to the present application;
[0042] Figure 2 is a schematic structural diagram of the storage device;
[0043] In the figure, the reference numerals are: 100, equipment body; 110, cutting head; 120, conveyor belt; 130, workbench; 131, scale; 200, storage device; 210, storage box; 211, pipe groove; 220, jitter component; 221, base; 222, slider; 223, spring; 224, electromagnet; 225, permanent magnet; 230, cleaning component; 231, negative pressure fan; 232, waste box; 233, material guide pipe; 300, positioning device; 310, positioning support plate; 320, clamping component; 321, second motor; 322, clamping block; 323, second lead screw; 330, first motor; 331, first lead screw; 340, infrared sensor. Detailed Embodiments
[0044] Next, the technical solutions in the embodiments of the present application will be clearly described in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are 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 belong to the scope of protection of the present application.
[0045] The terms "first", "second", etc. in the description and claims of this application are used to distinguish similar objects, rather than to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of this application can be implemented in an order other than those illustrated or described here, and the objects distinguished by "first", "second", etc. are generally of the same category, and the number of objects is not limited. For example, the first object can be one or more. In addition, "and / or" in the description and claims means at least one of the connected objects, and the character " / ", generally represents an "or" relationship between the associated objects before and after.
[0046] The following will combine the accompanying drawings and provide a detailed description of the embodiments of this application through specific embodiments and their application scenarios.
[0047] Embodiment 1:
[0048] As Figure 1 and Figure 2 shown, the embodiment of this application provides a cutting device for corrugated pipes, including a device body 100, and the device body 100 includes:
[0049] A storage device 200, including a storage box 210, a shaking component 220 and a cleaning component 230;
[0050] A positioning device 300, including a positioning support plate 310 and a clamping component 320;
[0051] A cutting head 110;
[0052] A conveyor belt 120;
[0053] A workbench 130;
[0054] Among them, the storage box 210 is provided with a pipe groove 211, the storage box 210 is connected to the shaking component 220, the cleaning component 230 is placed at the positioning support plate 310, and the positioning support plate 310 is slidably connected to the workbench 130.
[0055] By arranging a storage device 200 and a positioning device 300 in the device body 100, a storage box 210, a shaking component 220 and a cleaning component 230 are arranged in the storage device 200, and a positioning support plate 310 and a clamping component 320 are arranged in the positioning device 300. When a user cuts a corrugated pipe, the corrugated pipe is placed at the conveyor belt 120 of the workbench 130, and then the corrugated pipe is conveyed to the positioning support plate 310 for positioning. Then, the clamping component 320 is controlled to clamp the corrugated pipe, and the corrugated pipe is cut by the cutting head 110. At this time, the cutting force applied to the corrugated pipe is evenly distributed, and the device body 100 can stably cut the corrugated pipe with a high cutting quality. The cleaning component 230 is arranged at the positioning support plate 310, and the staff controls the cleaning component 230 to work simultaneously. The cleaning component 230 can clean the debris at the cutting surface of the corrugated pipe without subsequent manual processing, reducing the labor cost. After the corrugated pipe is cut, it falls into the storage box 210 through the conveyor belt 120. A pipe groove 211 is arranged in the storage box 210, and the storage box 210 is connected to the shaking component 220. The staff controls the shaking component 220 to work, and the shaking component 220 drives the storage box 210 to shake continuously, so that the corrugated pipe is matched with the pipe groove 211 inside the storage box 210. The storage box 210 can neatly arrange the corrugated pipes while storing them, improving the storage efficiency.
[0056] Further, the shaking component 220 includes:
[0057] A base 221, including an electromagnet 224;
[0058] A slider 222, including a permanent magnet 225;
[0059] A spring 223;
[0060] Wherein, the slider 222 is slidably connected to the base 221 through the spring 223. After the electromagnet 224 is powered on, it is connected to the permanent magnet 225, and the slider 222 is inserted into the storage box 210.
[0061] The jitter component 220 is provided with a spring 223, a base 221 with an electromagnet 224, and a slider 222 with a permanent magnet 225. The slider 222 is slidably connected to the base 221 through the spring 223. When the jitter component 220 operates, the electromagnets 224 at two places of the base 221 are controlled to be alternately energized. After the electromagnets 224 are energized, they are connected to the permanent magnets 225. The electromagnets 224 can drive the slider 222 to slide alternately at the base 221, and the slider 222 can be reset through the spring 223. The jitter efficiency of the slider 222 is relatively high, that is, it drives the storage box 210 to jitter continuously, so as to neatly arrange the corrugated pipes in the storage box 210. Moreover, the slider 222 is inserted into the storage box 210. After the corrugated pipes are stored, the storage box 210 full of corrugated pipes is taken off from the slider 222, and then an empty storage box 210 is put in, which improves the storage capacity of the equipment body 100.
[0062] Further, the cleaning component 230 includes:
[0063] A negative pressure fan 231, including a material guiding pipe 233;
[0064] A waste box 232;
[0065] Wherein, the negative pressure fan 231 is connected to the waste box 232 through the material guiding pipe 233.
[0066] By providing the negative pressure fan 231 with the material guiding pipe 233 and the waste box 232 in the cleaning component 230, and the negative pressure fan 231 is connected to the waste box 232 through the material guiding pipe 233. During the cutting process of the corrugated pipe, the staff controls the negative pressure fan 231 to work. The air outlet of the negative pressure fan 231 is aligned with the cutting surface of the corrugated pipe, which can effectively clean the debris at the cutting surface of the corrugated pipe. The debris is then conveyed into the waste box 232 along the material guiding pipe 233. The user does not need to manually process the corrugated pipe anymore, and at the same time, the working environment around the equipment body 100 is kept clean.
[0067] Embodiment 2:
[0068] As Figure 1 and Figure 2 shown, the embodiment of the present application provides a cutting device for corrugated pipes. In addition to including the technical solutions of the above embodiments, it also has the following technical features. The positioning device 300 includes:
[0069] A first motor 330, including a first lead screw 331;
[0070] An infrared sensor 340;
[0071] Wherein, the positioning support plate 310 is matched with the first lead screw 331.
[0072] By arranging a first motor 330 with a first lead screw 331 and an infrared sensor 340 in the positioning device 300, and matching the positioning pallet 310 with the first lead screw 331, when the staff needs to adjust the length of the corrugated pipe after cutting, the first motor 330 is controlled to work, so that the positioning pallet 310 displaces at the first lead screw 331, thus facilitating the staff to adjust the length of the corrugated pipe. After the corrugated pipe reaches the designated position and is detected by the infrared sensor 340, the clamping assembly 320 is controlled to work to clamp the corrugated pipe.
[0073] Further, the clamping assembly 320 includes:
[0074] A second motor 321, including a second lead screw 323;
[0075] Clamping blocks 322, which are matched with the second lead screw 323;
[0076] Wherein, the second motor 321 is connected to the infrared sensor 340.
[0077] By arranging a second motor 321 with a second lead screw 323 and clamping blocks 322 in the clamping assembly 320, the clamping blocks 322 are matched with the second lead screw 323, and the second motor 321 is connected to the infrared sensor 340. After the corrugated pipe is detected by the infrared sensor 340, the second motor 321 is controlled to work. The second motor 321 drives the second lead screw 323 to rotate, so that the clamping blocks 322 displace at the second lead screw 323, and the clamping blocks 322 approach each other, enabling the equipment body 100 to clamp the corrugated pipe, which is convenient for the staff to carry out the cutting work.
[0078] Further, the workbench 130 is provided with a scale 131.
[0079] By arranging a scale 131 on the workbench 130, the scale 131 facilitates the staff to adjust the length of the corrugated pipe after cutting, improves the cutting accuracy of the equipment body 100, and at the same time is convenient for the staff to adjust the position of the equipment body 100, which is relatively convenient to use.
[0080] It should be noted that in this text, the terms "including", "comprising" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or elements inherent to such a process, method, article or device. Without further limitation, an element defined by the statement "including one..." does not exclude the existence of additional identical elements in the process, method, article or device including that element. In addition, it should be pointed out that the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in the reverse order according to the functions involved. For example, the described methods may be performed in an order different from that described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.
[0081] The embodiments of the present application have been described above in conjunction with the accompanying drawings. However, the present application is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present application, those of ordinary skill in the art can also make many forms without departing from the purpose of the present application and the scope protected by the claims, and all of them fall within the protection scope of the present application.
Claims
1. A cutting device for a corrugated pipe, comprising a device body (100), characterized in that: The device body (100) comprises: A storage device (200) comprises a storage box (210), a shaking component (220) and a cleaning component (230); A positioning device (300) comprises a positioning support plate (310) and a clamping assembly (320); Cutting head (110); Conveyor belt (120); Workbench (130); The storage box (210) is provided with a pipe groove (211), the storage box (210) is connected to the shaking assembly (220), the cleaning assembly (230) is placed on the positioning support plate (310), and the positioning support plate (310) is slidably connected to the workbench (130).
2. A cutting device for a corrugated pipe according to claim 1, characterized in that: The shaking component (220) comprises: A base (221) including an electromagnet (224); A slider (222) including a permanent magnet (225); Spring (223); The slider (222) and the base (221) are slidably connected via a spring (223), the electromagnet (224) is connected to the permanent magnet (225) after being energized, and the slider (222) is plugged into the storage box (210).
3. A cutting device for a corrugated pipe according to claim 2, characterized in that: The cleaning component (230) comprises: A negative pressure fan (231), including a material guide pipe (233); Waste bin (232); The negative pressure fan (231) and the waste box (232) are connected via a material guide pipe (233).
4. A cutting device for a corrugated pipe according to claim 3, characterized in that: The positioning device (300) comprises: A first motor (330) comprising a first screw rod (331); Infrared sensor (340); Wherein, the positioning support plate (310) cooperates with the first screw rod (331).
5. A cutting device for a corrugated pipe according to claim 4, characterized in that: The clamping assembly (320) comprises: A second motor (321), comprising a second screw rod (323); A clamping block (322) cooperates with the second screw rod (323); Wherein, the second motor (321) is connected to the infrared sensor (340).
6. A cutting device for a corrugated pipe according to claim 5, characterized in that: The workbench (130) is provided with a scale (131).
Citation Information
Patent Citations
A cutting device for bellows
CN111570901B