A conveying device for clothing cloth roll packaging

By using an intermittent pushing structure driven by an eccentric wheel and an L-shaped block, along with a ball bearing clamping mechanism on an inclined bar, the problem of the cloth roller rolling or deviating during the conveying process is solved, achieving stable clamping and automated cleaning, thus improving the stability and cleaning efficiency of the conveying device.

CN121005199BActive Publication Date: 2026-02-06NANTONG TONGZHOU ZHONGYI TEXTILE MACHINE
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Patent Information

Application Number
CN202511546144.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-02-06
Estimated Expiration
2045-10-28

AI Technical Summary

Technical Problem

Traditional cloth roller packaging conveyor devices are prone to causing the cloth rollers to roll or deviate during the conveying process, and have a low degree of automation, which affects packaging accuracy and efficiency.

Method used

It adopts an intermittent pushing structure with eccentric wheel drive and L-shaped block and stop block, combined with the rolling clamping mechanism of inclined bar and ball, to achieve stable clamping and conveying of cloth roller, and with the air blowing cleaning of nozzle, it can achieve cleaning while conveying.

Benefits of technology

It improves the stability and safety of the conveying process, enhances the level of automation and cleaning efficiency, and ensures the consistency of packaging quality and appearance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a conveying device for clothing cloth roller packaging, which comprises a fixing frame, a conveying frame, a storage hopper, a conveying belt and an arc-shaped conveying block on the conveying belt, and is provided with a conveying mechanism, a clamping mechanism, a rotating mechanism and a cleaning mechanism. The conveying mechanism drives the conveying belt through an eccentric disc to realize intermittent feeding of the cloth rollers one by one. The clamping mechanism is linked with a ball through a slope rod, and automatically clamps the two ends of the cloth roller synchronously in the conveying process to prevent deviation or falling. The rotating mechanism makes the clamp plate drive the cloth roller to rotate through gear and rack meshing, and ensures that the surface of the cloth roller in the rotating state is blown and cleaned subsequently. The cleaning mechanism blows and cleans the surface of the cloth roller in the rotating state through a cylindrical shell and a nozzle in the conveying synchronization process, and effectively removes dust and lint. The application realizes integrated and automatic operation of cloth roller conveying, fixing, rotating and cleaning, and significantly improves the packaging efficiency, stability and product cleanliness.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of clothing cloth roll conveying, in particular to a conveying device for clothing cloth roll packaging. BACKGROUND

[0002] In the textile production process, the cloth roll is an important component for carrying raw materials such as cloth and velvet, and its packaging and conveying efficiency directly affects the overall production rhythm and product quality. At present, the traditional cloth roll packaging and conveying device has the following problems: first, the cloth roll is prone to rolling or deviation during conveying, which affects the packaging accuracy and consistency; second, most devices rely on manual handling or auxiliary feeding, have low automation degree, high labor intensity, and low efficiency.

[0003] The existing Chinese patent with publication number CN120397572A includes a chassis, the top of which is fixedly connected with a frame, a discharging assembly is fixedly installed on the frame, a groove is symmetrically arranged inside the frame, a supporting plate is fixedly installed inside the groove, a conveying belt is arranged around the supporting plate, a driving wheel is symmetrically arranged inside the groove, and the two driving wheels are drivingly connected through the conveying belt, a driving mechanism for driving the conveying belt to move is arranged on the frame, and supporting blocks are arrayed on the conveying belt.

[0004] The above device, when in use, can extract the air inside the negative pressure tank through the cooperation of the negative pressure tank and the air extraction pipe, thereby forming a negative pressure state inside the negative pressure tank. When the textile roller moves to the inside of the groove, the negative pressure head will be attached to the textile roller, thereby covering the top of the negative pressure head, thereby generating negative pressure to limit the position of the textile roller, thereby improving the stability of the position of the textile roller. However, in actual use, since the cloth, velvet, etc. carried by the cloth roll are all breathable materials, the negative pressure head cannot adsorb and limit the cloth roll, resulting in displacement or falling of the cloth roll during conveying, affecting the stability and efficiency of the cloth roll conveying.

[0005] Therefore, we propose a conveying device for clothing cloth roll packaging. SUMMARY

[0006] The present application aims to provide a conveying device for clothing cloth roll packaging, which has the advantage of clamping and fixing the textile roller during conveying, solving the problems in the background art.

[0007] In order to achieve the above object, the present application provides the following technical scheme: a conveying device for clothing cloth roll packaging, comprising a fixed support on the ground frame, the frame both sides symmetrical position is fixedly connected with conveying frame, two conveying frame one end of the opposite surface is fixedly connected with the storage of cloth roll storage hopper, each conveying frame both ends symmetrical position is fixedly connected with rotating roller, each side two rotating roller outer contour is movably provided with conveying belt for conveying the cloth roll in the storage hopper, both sides conveying belt outer contour is fixedly connected with a plurality of symmetrical arc-shaped conveying block, the frame is provided with driving rotating roller conveying belt to push the cloth roll in the storage hopper one by one transmission mechanism and the clamping mechanism for fixing the cloth roll in the conveying belt.

[0008] Preferably, the conveying mechanism comprises the frame both sides symmetrical position is provided with moving groove, both sides the inner wall of moving groove is movably connected with the moving plate, the both ends of the moving plate symmetrical position is fixedly connected with L-shaped block, two L-shaped block and the opposite surface of the moving plate is fixedly connected with the torsion spring for guiding L-shaped block reset rotation, both sides the opposite surface of the arc-shaped conveying block is fixedly connected with the stop block for L-shaped block to drive the conveying belt to convey the cloth roll.

[0009] Preferably, the frame is through and fixedly connected with rotating disc rotating by power mechanism, the rotating disc deviates from the center position and is fixedly connected with eccentric block, the bottom of the moving plate is fixedly connected with the rectangular frame for the eccentric block to drive the moving plate to move horizontally reciprocating, and the rectangular frame is sleeved on the outer contour of the eccentric block and movably connected.

[0010] Preferably, the clamping mechanism comprises two arc-shaped conveying block opposite surface is fixedly connected with L-shaped frame, each L-shaped frame is through and movably connected with the clamping plate for clamping and fixing the both ends of the cloth roll.

[0011] Preferably, both sides the opposite surface of the conveying frame is fixedly connected with the inclined rod for guiding the two clamping plate to move towards each other and clamping the cloth roll, the end of each side clamping plate close to the inclined rod is rotatably connected with the rolling ball rolling on the surface of the inclined rod.

[0012] Preferably, each arc-shaped conveying block both sides symmetrical position is fixedly connected with cylindrical shell, each cylindrical shell away from the one end of the L-shaped frame is through and fixedly connected with the nozzle for blowing and cleaning the surface of the cloth roll, the clamping plate is provided with rotating mechanism for driving the cloth roll to rotate and clean comprehensively.

[0013] Preferably, the rotating mechanism comprises a first gear coaxially fixed to the outer contour of each clamping plate near the end of the ball, each L-shaped frame is provided with an annular groove on the side near the ball, the inner wall of each annular groove is rotatably connected with a rotating block, the opposite surfaces of the first gear and the rotating block are fixedly connected with springs for driving the rotating block to rotate synchronously with the clamping plate, and the inclined rods on both sides are fixedly connected with a rack for driving the first gear to rotate the clamping plate, and the rack is matched with the teeth of the first gear.

[0014] Preferably, the cylindrical shell is provided with a cleaning mechanism for blowing the cloth roller by the nozzle, the inner wall of each cylindrical shell away from the end of the nozzle is through and axially movably connected with a piston rod for air extraction and exhaust, each arc-shaped conveying block is fixedly connected with a cylindrical cam for driving the piston rod to move axially and reciprocally at one end near the clamping plate, each piston rod is fixedly connected with a movable block at one end near the cylindrical cam, and each movable block is movably connected in the sliding groove through the outer contour of the adjacent side cylindrical cam away from the piston rod.

[0015] Preferably, the outer contour of each clamping plate is fixedly connected with a gear ring, each cylindrical cam is coaxially fixedly connected with a second gear at one end near the clamping plate for driving the cylindrical cam to rotate around the axis by the rotating block, and the second gear is matched with the teeth of the gear ring.

[0016] Compared with the prior art, the present application has the following advantages:

[0017] I. The eccentric wheel drives the intermittent pushing structure cooperated with the L-shaped block and the stop block, realizes the orderly and stable conveying of the cloth rollers in the storage hopper one by one, effectively avoids the problems of jamming and stacking caused by the simultaneous falling of multiple rollers, and adopts the torsional spring reset mechanism to make the L-shaped block have the self-resetting function, ensures the efficient connection and cyclic operation in the reciprocating process, significantly improves the stability and beat control ability of the conveying, and provides precise and controllable material supply for the subsequent packaging process.

[0018] II. The inclined rods and the balls are matched with each other to automatically trigger the movement of the clamping plates in the conveying process of the cloth roller, realize the synchronous clamping of the two ends of the cloth roller, do not need additional power source, ensure the stable clamping of the cloth roller in the whole conveying process, effectively prevent the sliding, deviation or falling of the roller body, and significantly improve the safety and positioning accuracy of the conveying process.

[0019] III. In the clamping state, the cloth roller is continuously rotated by the rack drive cloth roller, and the roller body rotates in all directions during the conveying process, providing uniform processing angle for the subsequent cleaning process. The mechanism converts the conveying motion into rotary motion without the need for an independent drive motor, achieving efficient energy utilization and compact structure integration. At the same time, the spring return design ensures automatic release of the clamp at the end of the conveying process, achieving automatic unloading and improving the automation level and operation continuity of the equipment, suitable for high-speed assembly line operation.

[0020] IV. While the clamping plate drives the cloth roller to rotate, the surface is blown and cleaned by the nozzle, effectively removing attached fibers, dust and other impurities. The mechanism combines rotary motion and air pressure cleaning to achieve multi-functional integration of conveying, rotating and cleaning, significantly improving cleaning efficiency and surface cleanliness. Compared with traditional static or manual cleaning methods, the product packaging quality and appearance consistency are enhanced.

[0021] The above structure is used to solve the problem that the existing device cannot be adsorbed and limited by the negative pressure head during the actual use process, causing the cloth roller to shift or fall during the conveying process, affecting the stability and efficiency of the cloth roller conveying BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 The present application is a three-dimensional structure schematic diagram;

[0023] Figure 2 The present application is a three-dimensional structure schematic diagram; Figure 1

[0024] Figure 3 The present application is a three-dimensional structure schematic diagram of the conveying frame;

[0025] Figure 4 The present application is a three-dimensional structure schematic diagram of the conveying frame; Figure 3

[0026] Figure 5 The present application is a three-dimensional structure schematic diagram of the conveying frame;

[0027] Figure 6 The present application is a three-dimensional structure schematic diagram of the L-shaped block;

[0028] Figure 7 The present application is a three-dimensional structure schematic diagram of the conveying frame; Figure 6

[0029] Figure 8 The present application is a three-dimensional structure schematic diagram of the conveying frame;

[0030] Figure 9 ​​​It is a schematic view of the sectional view of the three-dimensional structure of the part where the moving plate is located in the application.

[0031] Figure 10 It is a schematic view of the three-dimensional structure of the part where the rotating block is located in the application.

[0032] In the figure: 1, fixed frame; 101, moving groove; 2, conveying frame; 3, storage hopper; 4, rotating roller; 5, conveying belt; 6, arc-shaped conveying block; 7, moving plate; 8, L-shaped block; 9, torsional spring; 10, stop block; 11, rotating disc; 12, eccentric block; 13, rectangular frame; 14, L-shaped frame; 141, annular groove; 15, clamping plate; 16, ball; 17, first gear; 18, rotating block; 19, spring; 20, inclined rod; 21, rack; 22, cylindrical shell; 23, nozzle; 24, piston rod; 25, cylindrical cam; 26, movable block; 27, second gear; 28, gear ring. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the application will be described clearly and completely below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only a part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the application.

[0034] Embodiment 1

[0035] Please refer to Figures 1 to 10 The application provides a technical solution: a conveying device for clothing cloth roll packaging, which comprises a fixed frame 1 supported on the ground, the fixed frame 1 is fixedly connected with conveying frames 2 on both sides in symmetrical positions, the opposite surfaces of one end of the two conveying frames 2 are fixedly connected with storage hoppers 3 for storing cloth rolls, the two ends of each conveying frame 2 are fixedly connected with rotating rollers 4 in symmetrical positions, the outer contours of the two rotating rollers 4 on each side are movably sleeved with conveying belts 5 for conveying cloth rolls in the storage hoppers 3, the outer contours of the two conveying belts 5 on both sides are fixedly connected with a plurality of symmetrical arc-shaped conveying blocks 6, the fixed frame 1 is provided with a conveying mechanism for driving the rotating rollers 4 to push the cloth rolls in the storage hoppers 3 one by one and a clamping mechanism for fixing the cloth rolls in the conveying belts 5.

[0036] In use, a fixed frame 1 is set up and fixedly supported on the ground to ensure the stability of the conveying device during use. A conveying frame 2 is set on the fixed frame 1 and fixedly supported on the fixed frame 1. The storage hopper 3 set on the conveying frame 2 and fixedly supported on the conveying frame 2 is used to first arrange and store the cloth rollers in sequence on the inner wall of the storage hopper 3. The storage hopper 3 is placed at an angle so that the cloth rollers inside the storage hopper 3 can fall onto the conveying frame 2 under the action of gravity, so as to facilitate the subsequent conveying of the cloth rollers inside the storage hopper 3 one by one.

[0037] The rotating roller 4 is mounted on the conveyor frame 2 and is supported on the conveyor frame 2. The conveyor belt 5 mounted on the rotating roller 4 enables the rotating roller 4 to be connected to the conveyor belt 5. The arc-shaped conveyor block 6 mounted on the conveyor belt 5 can be fixedly supported on the rotating roller 4 and evenly placed on the outer contour of the rotating roller 4. Through the conveying mechanism and clamping mechanism mounted on the fixed frame 1, the transmission mechanism can drive the arc-shaped conveyor block 6 to perform intermittent movement through the conveyor belt 5. This allows the arc-shaped conveyor block 6 to take out the cloth rollers inside the storage hopper 3 one by one and convey them. At the same time, the clamping mechanism can clamp and fix the cloth rollers on the inner wall of the arc-shaped conveyor block 6 to ensure the stability of the cloth roller transportation process.

[0038] Example 2

[0039] Building upon Example 1, the following is a further step:

[0040] The conveying mechanism includes a fixed frame 1 with symmetrical movable slots 101 on both sides. The inner walls of the movable slots 101 on both sides are horizontally connected to movable plates 7. L-shaped blocks 8 are rotatably connected to both ends of the movable plates 7. Torsion springs 9 are fixedly connected to the opposite surfaces of the two L-shaped blocks 8 and the movable plates 7 to guide the L-shaped blocks 8 to reset and rotate. Stop blocks 10 are fixedly connected to the opposite surfaces of the arc-shaped conveying blocks 6 on both sides to allow the L-shaped blocks 8 to push the conveyor belt 5 to convey the cloth roller.

[0041] A rotating disk 11 driven by a power mechanism is connected through and rotatably on the fixed frame 1. An eccentric block 12 is fixedly connected to the rotating disk 11 at an off-center position. A rectangular frame 13 is fixedly connected to the bottom of the moving plate 7, which is driven by the eccentric block 12 to move the moving plate 7 horizontally and reciprocally. The rectangular frame 13 is fitted on the outer contour of the eccentric block 12 and is movably connected.

[0042] In use, the movable plate 7, which is provided on the movable plate 7 and has a movable groove 101 on the fixed frame 1, allows the movable plate 7 to move horizontally along the inner wall of the movable groove 101. The L-shaped block 8 on the movable plate 7 is pivotally supported on the movable plate 7. A torsion spring 9 on the L-shaped block 8 further supports the movement.Figure 1 and Figure 2 The torsion spring 9 supports the position of the L-shaped block 8, so that the torsion spring 9 guides the L-shaped block 8 to reset rotation. The stop block 10 on the arc-shaped conveying block 6 is on the same horizontal line as the L-shaped block 8.

[0043] The rotating disc 11 is fixedly supported on the fixed frame 1. The power mechanism is a motor after being powered on. The output shaft of the motor is coaxially fixedly connected with the rotating disc 11. The motor drives the rotating disc 11 to rotate on the fixed frame 1. The eccentric block 12 is fixedly supported on the rotating disc 11. The rotating disc 11 drives the eccentric block 12 to move in a circle. The rectangular frame 13 on the moving plate 7 is movably sleeved on the outer contour of the eccentric block 12. The rotating disc 11 drives the eccentric block 12 to move in a circle, so that the rectangular frame 13 drives the moving plate 7 to move horizontally and reciprocatingly along the inner wall of the moving groove 101.

[0044] As shown in Figure 1 , Figure 2 , Figure 8 and Figure 9 When the moving plate 7 moves horizontally away from the storage hopper 3, the two ends of the L-shaped block 8 can abut against the stop block 10 and the moving plate 7 respectively, so that the moving plate 7 can push the arc-shaped conveying block 6 to convey away from the storage hopper 3. The conveying belt 5 drives the plurality of arc-shaped conveying blocks 6 to synchronously convey. When the moving plate 7 moves horizontally and resets towards the storage hopper 3, the L-shaped block 8 abuts against the side of the adjacent stop block 10 away from the storage hopper 3. The L-shaped block 8 is flipped under the abutment of the stop block 10. The torsion spring 9 rotates and contracts under the rotation of the L-shaped block 8. When the L-shaped block 8 moves to the side of the adjacent stop block 10 close to the storage hopper 3 and the L-shaped block 8 is separated from the stop block 10, the torsion spring 9 is released and guides the L-shaped block 8 to reset rotation. The moving plate 7 moves horizontally and reciprocatingly, realizes conveying the rollers in the storage hopper 3 one by one, orderly and stably, significantly improves the stability and beat control ability of conveying, and provides precise and controllable material supply for subsequent packaging process.

[0045] Embodiment 3

[0046] Further based on the embodiment two, the embodiment three is:

[0047] The clamping mechanism comprises L-shaped frames 14 fixedly connected to the opposite sides of the arc-shaped conveying blocks 6, and a clamping plate 15 penetrating through each L-shaped frame 14 and movably connected to the L-shaped frame 14 to clamp the two ends of the cloth roller.

[0048] The opposite sides of the conveying frames 2 are fixedly connected with inclined rods 20 to guide the two clamping plates 15 to move towards each other and clamp the cloth roller, and the end of each clamping plate 15 close to the inclined rod 20 is rotatably connected with a ball 16 rolling on the surface of the inclined rod 20.

[0049] In use, the L-shaped frames 14 are fixedly supported on the arc-shaped conveying blocks 6, the clamping plates 15 are supported by the L-shaped frames 14, and the clamping plates 15 can move horizontally or rotate on the L-shaped frames 14, the inclined rods 20 are fixedly supported on the conveying frames 2, and when the balls 16 on the clamping plates 15 contact the inclined surface of the inclined rods 20 and move with the arc-shaped conveying blocks 6, the balls 16 can push the two clamping plates 15 to move towards each other and clamp the two ends of the cloth roller under the action of the inclined surface of the inclined rods 20, so that the cloth roller is stably clamped during the whole conveying process, the sliding, deviation or falling of the cloth roller is effectively prevented, the safety and positioning accuracy of the conveying process are significantly improved, the balls 16 roll on the inclined rods 20 to reduce the friction between the balls 16 and the inclined rods 20, and the service life is prolonged.

[0050] Embodiment 4

[0051] Based on the third embodiment, further improvements are made.

[0052] The arc-shaped conveying blocks 6 are fixedly connected with cylindrical housings 22 at the symmetrical positions on the two sides, the ends of the cylindrical housings 22 away from the L-shaped frames 14 are penetrated and fixedly connected with nozzles 23 to blow air on the surface of the cloth roller, and the clamping plates 15 are provided with rotating mechanisms to drive the cloth roller to rotate for all-round cleaning.

[0053] In use, the cylindrical housings 22 are fixedly supported on the arc-shaped conveying blocks 6, the nozzles 23 on the cylindrical housings 22 are in communication with the inner wall of the cylindrical housings 22, so that the nozzles 23 can blow the air in the cylindrical housings 22 to the cloth roller and clean the surface impurities, and the rotating mechanisms on the clamping plates 15 can drive the cloth roller to rotate on the axis, so that the nozzles 23 can clean the cloth roller comprehensively.

[0054] The rotating mechanism comprises a first gear 17 coaxially connected to the outer contour of each clamping plate 15 near the ball 16, an annular groove 141 is formed on the side of each L-shaped frame 14 near the ball 16, a rotating block 18 is rotatably connected to the inner wall of each annular groove 141, the opposite surfaces of the first gear 17 and the rotating block 18 are fixedly connected with a spring 19 for synchronously rotating the rotating block 18 with the clamping plate 15, and the inclined rods 20 are fixedly connected with a rack 21 for driving the first gear 17 to rotate the clamping plate 15, and the rack 21 is matched with the teeth of the first gear 17.

[0055] In use, the first gear 17 is coaxially connected to the clamping plate 15 through the first gear 17 arranged on the clamping plate 15, the rack 21 is fixedly supported on the inclined rod 20 through the rack 21 arranged on the inclined rod 20, when the clamping plate 15 is pushed by the inclined rod 20 to move towards the cloth roller for clamping, at this time, the clamping plate 15 drives the first gear 17 to move to the same horizontal line as the rack 21, and the first gear 17 is meshed with the teeth of the rack 21, when the cloth roller is conveyed by the arc-shaped conveying block 6, the first gear 17 can drive the clamping plate 15 to rotate around the axis under the action of the rack 21, thereby realizing that the clamping plate 15 can drive the cloth roller to rotate synchronously, providing uniform processing angle for subsequent cleaning process, the conveying motion is converted into rotary motion without independent driving motor, realizing efficient use of energy and compact integration of structure.

[0056] The rotating block 18 is rotatably connected to the inner wall of the annular groove 141 through the annular groove 141 formed on the L-shaped frame 14 and the rotating block 18 arranged on the annular groove 141, and the stop block 10 arranged on the rotating block 18 is fixedly supported on the first gear 17 and the rotating block 18 at both ends, when the clamping plate 15 moves towards the cloth roller for clamping, the spring 19 is extruded and contracted under the action of the first gear 17, when the cloth roller is conveyed to the limit position away from the storage hopper 3 by the arc-shaped conveying block 6, and the ball 16 is separated from the inclined rod 20, at this time, the spring 19 can drive the first gear 17 to move away from the clamping plate 15 under the action of the spring force, and the cloth roller can be dropped for discharging, realizing automatic discharging, improving the automation level and operation continuity of the device, and being suitable for high-speed assembly line operation.

[0057] The spring 19 can drive the rotating block 18 to rotate synchronously on the inner wall of the annular groove 141 under the action of the first gear 17, thereby avoiding hindering the rotation of the clamping plate 15 by the rotating block 18 and the spring 19.

[0058] Embodiment 5

[0059] On the basis of embodiment four, further is:

[0060] The cylindrical shell 22 is provided with a cleaning mechanism for the nozzle 23 to blow the cloth roll, the inner wall of each cylindrical shell 22 away from the nozzle 23 end is through and axially moving connection has the piston rod 24 for pumping and exhaust, each arc-shaped conveying block 6 close to the clamping plate 15 one end is fixed shaft rotationally connected with the driving piston rod 24 for axial reciprocating movement of the cylindrical cam 25, each piston rod 24 close to the cylindrical cam 25 one end is fixedly connected with the movable block 26, each movable block 26 away from the piston rod 24 end is respectively through to the adjacent side of the cylindrical cam 25 outside the outline of the sliding groove and is movably connected.

[0061] The outer contour of each clamping plate 15 is fixedly connected with a gear ring 28, and the end of each cylindrical cam 25 close to the clamping plate 15 is coaxially connected with a second gear 27 for driving the cylindrical cam 25 to rotate around the shaft, and the second gear 27 is matched with the teeth on the gear ring 28.

[0062] In use, the piston rod 24 is arranged on the cylindrical shell 22, so that the piston rod 24 can move axially in the inner wall of the cylindrical shell 22, the cylindrical cam 25 is arranged on the arc-shaped conveying block 6, and the cylindrical cam 25 is supported on the arc-shaped conveying block 6 by rotating around the shaft, the gear ring 28 is arranged on the clamping plate 15, and the second gear 27 is arranged on the cylindrical cam 25, when the clamping plate 15 moves towards each other to clamp the cloth roll, at this time the gear ring 28 moves and the teeth on the second gear 27 are engaged with each other, when the clamping plate 15 drives the cloth roll to rotate, the second gear 27 drives the cylindrical cam 25 to rotate around the shaft synchronously under the action of the gear ring 28, the movable block 26 is arranged on the piston rod 24, and the movable block 26 is movably supported in the sliding groove outside the outline of the cylindrical cam 25, when the cylindrical cam 25 rotates around the shaft, the movable block 26 can drive the piston rod 24 to move axially in the inner wall of the cylindrical shell 22 under the action of the cylindrical cam 25, when the piston rod 24 moves away from the nozzle 23, at this time the internal pressure of the cylindrical shell 22 close to the nozzle 23 is negative, at this time the nozzle 23 can extract the external air to the inner wall of the cylindrical shell 22, when the piston rod 24 moves towards the nozzle 23, and the internal pressure of the cylindrical shell 22 close to the nozzle 23 is positive, at this time the nozzle 23 can exhaust the air inside the cylindrical shell 22 and blow to the cloth roll, and the nozzle 23 can blow the impurities on the surface of the cloth roll, effectively cleaning the impurities such as fibers and dust on the surface of the cloth roll, realizing the multifunctional integration of conveying, rotating and cleaning, significantly improving the cleaning efficiency and surface cleanliness, compared with the traditional static or manual cleaning method, enhancing the packaging quality and appearance consistency of the product.

[0063] Further, the existing device can clamp and fix the cloth roller during conveying in actual use, is convenient to use, and is better than the traditional product.

[0064] The standard parts used in the embodiment can be directly purchased from the market, and the non-standard structural parts according to the description and the drawings can also be directly processed without doubt according to the existing technical knowledge. Meanwhile, the connection mode of each part adopts the mature conventional means in the existing technology, and the machinery, parts and equipment all adopt the conventional models in the existing technology, so specific description is not made here.

[0065] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A conveying device for garment fabric roller packaging, characterized in that: The system includes a fixed frame (1) that is fixedly supported on the ground. Conveyor frames (2) are fixedly connected to symmetrical positions on both sides of the fixed frame (1). Storage hoppers (3) for storing cloth rollers are fixedly connected to opposite faces at one end of each of the two conveyor frames (2). Rotary rollers (4) are rotatably connected to symmetrical positions at both ends of each conveyor frame (2). Conveyor belts (5) for conveying cloth rollers inside the storage hoppers (3) are movably fitted onto the outer contours of the two rotating rollers (4) on each side. Multiple symmetrically placed arc-shaped conveyor blocks (6) are fixedly connected to the outer contour of the frame (1). The frame (1) is equipped with a conveying mechanism that drives the rotating roller (4) to push the conveyor belt (5) to push the cloth rollers in the storage hopper (3) one by one, and a clamping mechanism that fixes the cloth rollers inside the conveyor belt (5). The conveying mechanism includes moving grooves (101) that are symmetrically opened on both sides of the frame (1). Moving plates (7) are horizontally connected to the inner walls of the moving grooves (101) on both sides. The two ends of the moving plates (7) are symmetrical. L-shaped blocks (8) are rotatably connected to each other on a fixed axis. Torsion springs (9) are fixedly connected to the opposite surfaces of the two L-shaped blocks (8) and the moving plate (7) to guide the L-shaped blocks (8) to rotate and reset. Stops (10) are fixedly connected to the opposite surfaces of the two arc-shaped conveyor blocks (6) to allow the L-shaped blocks (8) to push the conveyor belt (5) to convey the cloth roller. A rotating disk (11) driven by a power mechanism is rotatably connected through and fixedly connected to the fixed frame (1). The rotating disk (11) is offset from the center position. An eccentric block (12) is fixedly connected to the top of the moving plate (7). A rectangular frame (13) is fixedly connected to the bottom of the moving plate (7) for the eccentric block (12) to drive the moving plate (7) to move horizontally back and forth. The rectangular frame (13) is fitted on the outer contour of the eccentric block (12) and is movably connected. The clamping mechanism includes an L-shaped frame (14) fixedly connected to the opposite back of the two arc-shaped conveying blocks (6). Each L-shaped frame (14) is connected to a clamping plate (15) that clamps and fixes the two ends of the cloth roller.

2. The conveying device for garment fabric roller packaging according to claim 1, characterized in that: Both sides of the conveyor frame (2) are fixedly connected to inclined rods (20) that guide the two clamping plates (15) to move towards each other and clamp the cloth roller. Each clamping plate (15) is rotatably connected to a ball bearing (16) that rolls with the surface of the inclined rod (20) at one end.

3. The conveying device for garment fabric roller packaging according to claim 2, characterized in that: Each of the arc-shaped conveying blocks (6) has a cylindrical housing (22) fixedly connected to symmetrical positions on both sides. Each cylindrical housing (22) has a nozzle (23) for blowing air to clean the surface of the cloth roller through and fixedly connected to one end away from the L-shaped frame (14). The clamping plate (15) is provided with a rotating mechanism for driving the cloth roller to rotate for all-round cleaning.

4. The conveying device for garment fabric roller packaging according to claim 3, characterized in that: The rotating mechanism includes a first gear (17) coaxially fixed on the outer contour of each clamping plate (15) near the ball (16), an annular groove (141) is provided on the side of each L-shaped frame (14) near the ball (16), a rotating block (18) is rotatably connected to the inner wall of each annular groove (141), a spring (19) is fixedly connected to the opposite surface of the first gear (17) and the rotating block (18) for the clamping plate (15) to drive the rotating block (18) to rotate synchronously, and a rack (21) is fixedly connected to the inclined rod (20) on both sides to drive the first gear (17) to drive the clamping plate (15) to rotate, and the rack (21) is adapted to the teeth on the first gear (17).

5. A conveying device for garment fabric roller packaging according to claim 4, characterized in that: The cylindrical housing (22) is provided with a cleaning mechanism for the nozzle (23) to blow air onto the cloth roller. The inner wall of the end of each cylindrical housing (22) away from the nozzle (23) is penetrated and axially connected to a piston rod (24) for suction and exhaust. The end of each arc-shaped conveyor block (6) near the clamping plate (15) is rotatably connected to a cylindrical cam (25) that drives the piston rod (24) to move axially back and forth. The end of each piston rod (24) near the cylindrical cam (25) is fixedly connected to a movable block (26). The end of each movable block (26) away from the piston rod (24) is respectively penetrated into the groove of the outer contour of the cylindrical cam (25) on the adjacent side and is movably connected.

6. A conveying device for garment fabric roller packaging according to claim 5, characterized in that: Each of the clamping plates (15) has a toothed ring (28) fixedly connected to its outer contour. Each of the cylindrical cams (25) has a second gear (27) coaxially fixed to one end near the clamping plate (15) for the rotating block (18) to drive the cylindrical cam (25) to rotate on a fixed axis. The second gear (27) is matched with the teeth on the toothed ring (28).

Citation Information

Patent Citations

  • Textile roller packaging and conveying device for textile processing

    CN120397572A