Automatic hose feeding and cutting equipment

By designing an automatic hose feeding and cutting device in which signal acquisition and cutting components work together, the problems of low cutting efficiency and insufficient compatibility of existing devices are solved, and efficient and accurate hose cutting is achieved. It is suitable for processing hoses of various specifications and improves the flexibility and production efficiency of the equipment.

CN223442340UActive Publication Date: 2025-10-17KUNSHAN GRAND INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202422474110.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-10-17
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

Existing hose cutting devices have the problems of low cutting efficiency, insufficient compatibility, complex equipment and large floor space, and are difficult to adapt to the rapid switching and flexible adjustment of hoses of different specifications.

Method used

A hose automatic feeding and cutting equipment is designed, which includes a signal acquisition component, a transmission component and a cutting component. The signal acquisition component is used to control the transmission component to transmit the hose, and the cutting component is used to cut the fixed-length hose. The components work together to achieve precise and efficient automated processing.

Benefits of technology

It realizes efficient and precise hose cutting processing, with miniaturized equipment, easy operation, wide application range, high compatibility and controllability, and improves production efficiency and equipment flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an automatic hose feeding and cutting device which comprises a machine box, a cutting device and a cutting device. The signal collecting assembly comprises a signal collector, an extrusion wheel and an abutting wheel, the hose moves between the extrusion wheel and the abutting wheel, the extrusion wheel can move in a lifting mode, and the abutting wheel is connected with the signal collector; the conveying assembly comprises a lifting mechanism, a rotation driving mechanism and a supporting mechanism, the lifting mechanism moves in a lifting mode and comprises a first conveying belt, and the supporting mechanism comprises a second conveying belt; the cutting assembly comprises a lifting driver and a cutter, and the cutter moves in the height direction of the machine box through the lifting driver. All the assemblies cooperate to achieve the precise and efficient automatic machining process, and compared with conventional hose machining equipment at the present stage, the machining quality is good, the machining efficiency is high, the miniaturization degree is high, and meanwhile the beneficial effects of being convenient to operate, high in controllability, wide in application range, high in compatibility and the like are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of pipe processing, in particular to a kind of automatic feeding and cutting equipment of hose. BACKGROUND

[0002] In today's industrial automation field, hose cutting devices play a crucial role, and in many industries, they are responsible for accurately cutting hoses to the desired length to meet various fluid transmission needs. However, existing hose cutting technology has exposed some significant limitations in practical application, which mainly manifest in the difficulty of compatible conveyor cutting operations, resulting in low cutting efficiency, and the lack of compatibility, flexibility and compactness of existing equipment.

[0003] On the other hand, the structure of existing hose cutting devices is generally complex and occupies a large area, which is not conducive to the space optimization and layout adjustment of production lines, and when the production line needs to be relocated or reconfigured, the movement and reinstallation of the equipment become extremely difficult. This design deficiency limits the application of hose cutting devices in modern flexible production lines. In addition, these devices are often designed for specific types and sizes of hoses, lacking the ability to adapt to different specifications, making it difficult to achieve quick switching and flexible adjustment in actual production. SUMMARY

[0004] Therefore, the technical problem to be solved by the utility model is to overcome the problems of low cutting efficiency and quality, limited use scenarios in the prior art, and to provide an automatic feeding and cutting equipment for hose.

[0005] To solve the above technical problems, the utility model provides a kind of hose automatic feeding cutting equipment, it includes: cabinet, the cabinet one side is equipped with mounting plate;Signal acquisition component, the signal acquisition component is connected in the mounting plate, it includes signal collector, extruding wheel and abutment wheel, the extruding wheel and the abutment wheel are arranged along the cabinet height direction, and the hose to be processed moves between the extruding wheel and the abutment wheel, wherein, the extruding wheel moves along the cabinet height direction to approach / far from the abutment wheel, and the abutment wheel is connected signal collector;Transmission component, the transmission component is arranged in the hose output end of the signal acquisition component, it includes lifting mechanism, rotary drive mechanism and support mechanism, the lifting mechanism is lifted and moves above the support mechanism, wherein, the lifting mechanism includes first transmission belt, the support mechanism includes second transmission belt, the first transmission belt and the second transmission belt are rotated by the rotary drive mechanism in the same direction, and the hose to be processed is clamped between the first transmission belt and the second transmission belt, and moves by the first transmission belt and the second transmission belt;Cutting component, the cutting component is arranged in the hose output end of the transmission component, it includes lifting driver and cutting knife, and the cutting knife moves along the cabinet height direction by the lifting driver.

[0006] In an embodiment of the utility model, the signal acquisition component further includes a first fixed block connecting frame and at least one guide column, the first fixed block is fixedly connected to the mounting plate, one end of at least one guide column is connected to the first fixed block, and the other end is connected to the connecting frame, the extruding wheel is connected to the guide column through the connecting frame and moves up and down with the guide column, and a first elastic member is arranged between the guide column and the first fixed block.

[0007] In an embodiment of the utility model, the lifting mechanism includes a sliding plate, at least one lifting module and at least two lifting wheels, at least one lifting module is connected to the mounting plate and extends along the cabinet height direction, the sliding plate is slidingly connected to the lifting module, at least two lifting wheels are connected to the sliding plate and move up and down synchronously with the sliding plate, the rotary drive mechanism is connected to at least one lifting wheel, and the first transmission belt is sleeved on the surface of at least two lifting wheels.

[0008] In an embodiment of the utility model, the lifting mechanism further includes a second fixed block, at least one second elastic member and a fixing member, the second fixed block is connected to the mounting plate and located at the top end of the lifting module, both ends of at least one second elastic member are connected to the second fixed block and the sliding plate respectively, and the fixing member is arranged on the mounting plate, a fixing shaft on the fixing member penetrates through the second fixed block and is connected to the sliding plate to fix the position of the sliding plate.

[0009] In one embodiment of the utility model, the supporting mechanism includes at least two supporting wheels, at least two supporting wheels are connected to the mounting plate, the rotary drive mechanism is connected to at least one supporting wheel, and the second transmission belt is sleeved on the surface of at least two supporting wheels.

[0010] In one embodiment of the utility model, the rotary drive mechanism includes a first rotary driver, a second rotary driver, a drive wheel, a driven wheel and a drive belt, the drive belt is sleeved and connected to the drive wheel and the driven wheel, the working end of the first rotary driver is connected to the drive wheel, the driven wheel is connected to at least one lifting wheel through a linkage shaft to drive at least one lifting wheel to rotate, and the working end of the second rotary driver is connected to at least one supporting wheel.

[0011] In one embodiment of the utility model, the cutting assembly further includes a lifting frame, one side of the lifting frame is slidingly connected to the lifting driver, and the bottom end is connected to the cutting knife.

[0012] In one embodiment of the utility model, it further includes a positioning assembly, the positioning assembly is connected to the mounting plate, and the positioning assembly includes a first positioning mechanism and a second positioning mechanism, the first positioning mechanism and the second positioning mechanism are respectively arranged on the two sides of the signal acquisition assembly in the hose transmission direction, guide holes are arranged on the first positioning mechanism and the second positioning mechanism, and a hose to be processed is arranged in the guide holes.

[0013] In one embodiment of the utility model, the positioning assembly further includes a third positioning mechanism, the third positioning mechanism is arranged below the cutting assembly, and the third positioning mechanism includes a frame body and a cutting block, the frame body is connected to the mounting plate, the cutting block is below the cutting, and the cutting block can move along the hose transmission direction, guide holes and cutting grooves are arranged on the cutting block, and the cutting knife can be inserted into the cutting grooves.

[0014] In one embodiment of the utility model, the case further includes a protective plate, a turnover connecting piece, an emergency stop button, an operation screen and a receiving box, the turnover connecting piece is connected to the mounting plate, the protective plate is connected to the turnover connecting piece, and the protective plate stops / exposes the hose to be processed through the turnover connecting piece, the emergency stop button and the operation screen are arranged on the surface of the case, and the receiving box is arranged at the hose output end of the cutting assembly.

[0015] Compared with the prior art, the above technical scheme of the utility model has the following advantages:

[0016] The automatic feeding and cutting equipment for the soft tube is characterized in that the signal acquisition assembly is used for controlling the transmission assembly to transmit the soft tube, and the cutting assembly is used for cutting the soft tube with a fixed length, so that the transmission and cutting processing of the soft tube are realized, and in the above process, the components are cooperated with each other to realize the precise and efficient automatic processing, compared with the conventional soft tube processing equipment at the present stage, the application has the advantages of good processing quality, high processing efficiency, high miniaturization degree, convenient operation, strong controllability, wide application range, high compatibility and the like, and has a wide application prospect in the field. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to make the content of the utility model more easily be clearly understood, below according to the specific embodiment of the utility model and combining with the attached drawing, the utility model is further detailed.

[0018] Figure 1 It is the three-dimensional structure schematic view of the automatic feeding and cutting equipment for the soft tube in the preferred embodiment of the utility model;

[0019] Figure 2 It is the internal structure schematic view of the automatic feeding and cutting equipment for the soft tube shown in the figure; Figure 1

[0020] Figure 3 It is the internal structure front view of the automatic feeding and cutting equipment for the soft tube shown in the figure; Figure 2

[0021] Figure 4 It is the three-dimensional structure schematic view of the automatic feeding and cutting equipment for the soft tube from another perspective shown in the figure; Figure 2

[0022] Figure 5 It is the three-dimensional structure schematic view of the cutting assembly in the automatic feeding and cutting equipment for the soft tube shown in the figure. Figure 1

[0023] ​​​​Description of the accompanying drawings: 100, chassis; 110, protective plate; 120, flip connector; 130, emergency stop button; 140, mounting plate; 200, signal acquisition component; 210, first fixing block; 220, guide column; 230, first elastic member; 240, connecting frame; 250, extrusion wheel; 260, abutment wheel; 270, signal collector; 300, transmission component; 310, lifting mechanism; 311, lifting module; 312, fixing member; 313, second fixing block; 314, second elastic member; 315, slide plate; 316, lifting wheel; 317, lifting wheel; 318, lifting wheel; 319, lifting wheel; 320, lifting wheel; 321, lifting wheel; 322, lifting member; 323, lifting member; 324, lifting member; 325, lifting member; 326, lifting wheel; 327, lifting wheel; 328, lifting member; 329, lifting member; 330, lifting member; 331, lifting member; 332, lifting member; 333, lifting member; 334, lifting member; 335, lifting member; 336, lifting member; 337, lifting member; 338, lifting member; 339, lifting member; 340, lifting member; 341, lifting member; 342, lifting member; 343, lifting member; 344, lifting member; 345, lifting member; 346, lifting member; 347, lifting member; 348, lifting member; 349, lifting member; 350, lifting member; 351, lifting member; 352, lifting member; 353, lifting member; 354, lifting member; 355, lifting member; 356, lifting member; 357, lifting member; 7. First transmission belt; 320. Support mechanism; 321. Support wheel; 322. Second transmission belt; 330. Rotary drive mechanism; 331. First rotary driver; 332. Second rotary driver; 333. Driving wheel; 334. Driven wheel; 335. Driving belt; 400. Cutting assembly; 410. Lifting drive; 420. Lifting frame; 430. Cutting knife; 500. Positioning assembly; 510. First positioning mechanism; 520. Second positioning mechanism; 530. Third positioning mechanism; 531. Frame; 532. Cutting block; 5321. Cutting groove. DETAILED DESCRIPTION

[0024] The present invention will be further described below with reference to the accompanying drawings and specific embodiments so that those skilled in the art can better understand the present invention and implement it. However, the embodiments are not intended to limit the present invention.

[0025] Example

[0026] The embodiment provides a kind of automatic feeding cutting equipment of hose, it includes: cabinet 100, the mounting plate 140 is equipped with one side of the cabinet 100;Signal acquisition component 200, the signal acquisition component 200 is connected to the mounting plate 140, it includes signal collector 270, extrusion wheel 250 and abutting wheel 260, the extrusion wheel 250 and the abutting wheel 260 are arranged along the height direction of the cabinet 100, and the hose to be processed moves between the extrusion wheel 250 and the abutting wheel 260, wherein the extrusion wheel 250 moves along the height direction of the cabinet 100 to approach / far away from the abutting wheel 260, and the abutting wheel 260 is connected signal collector 270;Transmission component 300, the transmission component 300 is arranged at the hose output end of the signal acquisition component 200, it includes lifting mechanism 310, rotary drive mechanism 330 and support mechanism 320, the lifting mechanism 310 is lifted and moves above the support mechanism 320, wherein the lifting mechanism 310 includes first transmission belt 317, the support mechanism 320 includes second transmission belt 322, the first transmission belt 317 and the second transmission belt 322 are rotated in the same direction by the rotary drive mechanism 330, the hose to be processed is clamped between the first transmission belt 317 and the second transmission belt 322, and moves by the first transmission belt 317 and the second transmission belt 322;Cutting assembly 400, the cutting assembly 400 is arranged at the hose output end of the transmission component 300, it includes lifting driver 410 and cutter 430, and the cutter 430 moves along the height direction of the cabinet 100 by the lifting driver 410.

[0027] The automatic feeding cutting equipment of hose described in the embodiment, the transmission component 300 is controlled by the signal acquisition component 200 to transmit the hose, and the cutting assembly 400 is used to cut the hose with a fixed length, so that the transmission and cutting process of the hose are realized.In the above process, each component cooperates to realize precise and efficient automatic processing process.Compared with conventional hose processing equipment at present, the application has the advantages of good processing quality, high processing efficiency, high miniaturization degree, easy operation, strong controllability, wide application range, high compatibility and the like, and has broad application prospect in the field.

[0028] In the embodiment, the cabinet 100 provides a mounting platform for the signal acquisition component 200, the transmission component 300 and the cutting assembly 400, and also provides a containing space for the related structures, so that the structures are highly integrated.The signal acquisition component 200 is used to detect whether the hose is loaded, and then drives the subsequent processing process through the control system.The transmission component 300 is used to realize the uniform-speed transmission of the hose, and can cooperate with the cutting assembly 400 to cut the hose.

[0029] As shown in Figure 1 The cabinet 100 further comprises a protective plate 110, a turnover connecting member 120, an emergency stop button 130, an operation screen and a receiving box. The turnover connecting member 120 is connected to the mounting plate 140, the protective plate 110 is connected to the turnover connecting member 120 and the turnover connecting member 120 stops / exposes the soft tube to be processed. The emergency stop button 130 and the operation screen are arranged on the surface of the cabinet 100 and the receiving box is arranged at the soft tube output end of the cutting assembly 400. The protective plate 110 is used to avoid debris splashing during the cutting process, the turnover connecting assembly 120 is used to provide a connection platform for the turnover of the protective plate 110, the emergency stop button 130 is used to stop the machine in an emergency. Further, the embodiment further comprises a control system, the operation screen is connected to the control system to control each component in real time. In actual use, the operator can control each structure in real time through the control system, thereby improving the use flexibility of the device. The control system can also be used to preset parameters, thereby improving the automation degree of the device. The receiving box is used to receive the cutting waste for recycling and processing.

[0030] As shown in Figures 2 to 4 In the embodiment, the signal acquisition assembly 200 further comprises a first fixed block 210, a connecting frame 240 and at least one guide column 220. The first fixed block 210 is fixedly connected to the mounting plate 140. One end of the guide column 220 is connected to the first fixed block 210 and the other end is connected to the connecting frame 240. The extrusion wheel 250 is connected to the guide column 220 through the connecting frame 240 and moves up and down with the guide column 220. A first elastic member 230 is arranged between the guide column 220 and the first fixed block 210. Specifically, the signal acquisition assembly 200 in the embodiment is preferably an encoder group.

[0031] In this embodiment, the lifting mechanism 310 includes a slide 315, at least one lifting module 311 and at least two lifting wheels 316. At least one lifting module 311 is connected to the mounting plate 140 and extends along the height direction of the chassis 100. The slide 315 is slidably connected to the lifting module 311. At least two lifting wheels 316 are connected to the slide 315 and move up and down synchronously with the slide 315. The rotary drive mechanism 330 is connected to at least one lifting wheel 316. The first transmission belt 317 is sleeved on the surface of at least two lifting wheels 316. In this embodiment, two lifting wheels 316 are included. The first transmission belt 317 is sleeved on the outer surfaces of the two lifting wheels 316. Furthermore, the lifting mechanism 310 also includes a second fixing block 313, at least one second elastic member 314, and a fixing member 312. The second fixing block 313 is connected to the mounting plate 140 and is located at the top of the lifting module 311. The two ends of at least one second elastic member 314 are respectively connected to the second fixing block 313 and the slide 315. The fixing member 312 is provided on the mounting plate 140. The fixed shaft on the fixing member 312 passes through the second fixing block 313 and is connected to the slide 315 to fix the position of the slide 315. Based on the above structural arrangement, the lifting mechanism 310 can always maintain relative stability during movement and can provide buffering protection for various structures.

[0032] See also Figures 2 to 4 As shown, the support mechanism 320 includes at least two support wheels 321, at least two of which are connected to the mounting plate 140. The rotation drive mechanism 330 is connected to at least one of the support wheels 321, and the second transmission belt 322 is sleeved on the surfaces of at least two of the support wheels 321. In this embodiment, two support wheels 321 are included, and the second transmission belt 322 is sleeved on the outer surfaces of the two support wheels 321. Furthermore, when the tube is to be transported, the first transmission belt 317 descends and squeezes the hose to be transported, thereby increasing the friction between the first transmission belt 317 and the second transmission belt 322 and the hose, thereby improving transmission efficiency.

[0033] See also Figure 4As shown, the rotating driving mechanism 330 comprises a first rotating driver 331, a second rotating driver 332, a driving wheel 333, a driven wheel 334 and a driving belt 335, wherein the driving belt 335 is sleeved on the driving wheel 333 and the driven wheel 334, the working end of the first rotating driver 331 is connected with the driving wheel 333, and the driven wheel 334 is connected with at least one lifting wheel 316 through a linkage shaft to drive the rotation of at least one lifting wheel 316; the working end of the second rotating driver 332 is connected with at least one supporting wheel 321, thereby realizing the rotating driving effect on the lifting mechanism 310 and the supporting mechanism 320.

[0034] Referring to Figure 5 As shown, the cutting assembly 400 further comprises a lifting frame 420, which is slidingly connected with the lifting driver 410 on one side and connected with the cutting knife 430 at the bottom end, and the specific type and shape of the cutting knife 430 are not limited in the utility model.

[0035] The embodiment further comprises a positioning assembly 500 connected with the mounting plate 140, which comprises a first positioning mechanism 510 and a second positioning mechanism 520, and the first positioning mechanism 510 and the second positioning mechanism 520 are respectively arranged on the two sides of the signal acquisition assembly 200 in the soft pipe transmission direction, and the first positioning mechanism 510 and the second positioning mechanism 520 are both provided with guide holes, and the soft pipe to be processed is inserted into the guide holes, thereby realizing the guidance of the soft pipe transmission direction. Further, the positioning assembly 500 further comprises a third positioning mechanism 530 arranged below the cutting assembly 400, which comprises a frame body 531 connected with the mounting plate 140 and a cutting block 532 below the cutting, and the cutting block 532 is movable along the soft pipe transmission direction, and the cutting block 532 is provided with a guide hole and a cutting groove 5321, and the cutting knife 430 can be inserted into the cutting groove 5321, thereby matching the cutting knife 430 in height to complete the cutting process with high quality and high precision.

[0036] In summary, the soft pipe automatic feeding and cutting equipment realizes the transmission and cutting process of the soft pipe through the signal acquisition assembly 200 and the cutting assembly 400, and the components are cooperated with each other to realize the precise and efficient automatic processing in the above process. Compared with the conventional soft pipe processing equipment at the present stage, the application has the advantages of good processing quality, high processing efficiency, high miniaturization degree, easy operation, strong controllability, wide application range, high compatibility and the like, and has a broad application prospect in the field.

[0037] Obviously, the above embodiments are only examples for the purpose of clarity, and are not intended to limit the embodiments. Based on the above description, other different forms of changes or variations can also be made by those of ordinary skill in the art. Here, it is not necessary and impossible to exhaust all the embodiments. The obvious changes or variations derived therefrom are still within the protection scope of the present application.

Claims

1. A hose automatic feeding and cutting device, characterized by: include: A chassis, wherein a mounting plate is provided on one side of the chassis; A signal collection assembly connected to the mounting plate, comprising a signal collector, an extrusion wheel, and an abutment wheel, wherein the extrusion wheel and the abutment wheel are arranged along the height direction of the chassis, and the hose to be processed moves between the extrusion wheel and the abutment wheel, wherein the extrusion wheel moves along the height direction of the chassis to approach or move away from the abutment wheel, and the abutment wheel is connected to the signal collector; A transmission assembly, the transmission assembly being disposed at the hose output end of the signal acquisition assembly, comprising a lifting mechanism, a rotary drive mechanism, and a support mechanism, the lifting mechanism being lifted and moved above the support mechanism, wherein the lifting mechanism comprises a first transmission belt, the support mechanism comprises a second transmission belt, the first transmission belt and the second transmission belt being rotated in the same direction by the rotary drive mechanism, the hose to be processed being clamped between the first transmission belt and the second transmission belt, and being moved by the first transmission belt and the second transmission belt; The cutting assembly is arranged at the hose output end of the transmission assembly, and includes a lifting drive and a cutting knife. The cutting knife moves along the height direction of the chassis through the lifting drive.

2. The automatic hose feeding and cutting equipment according to claim 1, characterized in that: The signal acquisition component also includes a first fixed block connecting frame and at least one guide column. The first fixed block is fixedly connected to the mounting plate. One end of at least one guide column is connected to the first fixed block and the other end is connected to the connecting frame. The extrusion wheel is connected to the guide column through the connecting frame and moves up and down with the guide column. A first elastic member is provided between the guide column and the first fixed block.

3. The automatic hose feeding and cutting equipment according to claim 1, characterized in that: The lifting mechanism includes a slide, at least one lifting module and at least two lifting wheels. At least one lifting module is connected to the mounting plate and extends along the height direction of the chassis. The slide is slidably connected to the lifting module. At least two lifting wheels are connected to the slide and move synchronously with the slide. The rotary drive mechanism is connected to at least one lifting wheel. The first transmission belt is sleeved on the surface of at least two lifting wheels.

4. The automatic hose feeding and cutting equipment according to claim 3, characterized in that: The lifting mechanism also includes a second fixed block, at least one second elastic member and a fixed member. The second fixed block is connected to the mounting plate and is located at the top of the lifting module. The two ends of at least one second elastic member are respectively connected to the second fixed block and the slide. The fixed member is arranged on the mounting plate, and the fixed shaft thereon passes through the second fixed block and is connected to the slide to fix the position of the slide.

5. The automatic hose feeding and cutting equipment according to claim 1, characterized in that: The support mechanism includes at least two support wheels, at least two of the support wheels are connected to the mounting plate, the rotary drive mechanism is connected to at least one of the support wheels, and the second transmission belt is sleeved on the surfaces of at least two of the support wheels.

6. The automatic hose feeding and cutting equipment according to claim 1, characterized in that: The rotary drive mechanism includes a first rotary drive, a second rotary drive, a driving wheel, a driven wheel and a driving belt, wherein the driving belt is sleeved and connected to the driving wheel and the driven wheel, the working end of the first rotary drive is connected to the driving wheel, and the driven wheel is connected to at least one lifting wheel through a linkage shaft to drive at least one lifting wheel to rotate; the working end of the second rotary drive is connected to at least one supporting wheel.

7. The automatic hose feeding and cutting equipment according to claim 1, characterized in that: The cutting assembly further comprises a lifting frame, one side of which is slidably connected to the lifting driver, and the bottom end of which is connected to the cutting knife.

8. The automatic hose feeding and cutting equipment according to claim 1, characterized in that: It also includes a positioning component, which is connected to the mounting plate and includes a first positioning mechanism and a second positioning mechanism. In the hose transmission direction, the first positioning mechanism and the second positioning mechanism are respectively arranged on both sides of the signal acquisition component, and the first positioning mechanism and the second positioning mechanism are both provided with guide holes, and the hose to be processed is passed through the guide holes.

9. The automatic hose feeding and cutting device according to claim 8, characterized in that: The positioning assembly also includes a third positioning mechanism, which is arranged below the cutting assembly and includes a frame and a cutting block. The frame is connected to the mounting plate. The cutting block is located below the cutting block and can move along the hose transmission direction. The cutting block is provided with a guide hole and a cutting groove, and the cutter can be inserted into the cutting groove.

10. The automatic hose feeding and cutting equipment according to claim 1, characterized in that: The chassis also includes a protective plate, a flip connector, an emergency stop button, an operation screen and a material receiving box. The flip connector is connected to the mounting plate, the protective plate is connected to the flip connector, and the flip connector stops / exposes the hose to be processed. The emergency stop button and the operation screen are both arranged on the surface of the chassis, and the material receiving box is arranged at the hose output end of the cutting assembly.