String belt feeding device and method

By designing a rope and belt material collection device including a machine base, a reel, a driving mechanism and a moving mechanism, the time-consuming and labor-intensive problem of the existing rope and belt material collection method is solved, and efficient and automated rope and belt material collection is realized, and production efficiency is improved.

CN112678580BActive Publication Date: 2025-06-13广东康派环创科技有限公司
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Patent Information

Application Number
CN202011621125.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-12-30
Publication Date
2025-06-13
Estimated Expiration
2040-12-30

AI Technical Summary

Technical Problem

The existing rope and belt collecting materials is time-consuming and labor-intensive, with low production efficiency and lack of automation.

Method used

A rope and belt material collection device is designed, including a machine base, a reel, a driving mechanism and a moving mechanism. By driving the reel to rotate and using adhesive force, the rope and belt gradually break away from the platform and wind it on the reel. The moving mechanism moves the device as a whole to complete the winding of the rope and belt.

Benefits of technology

It improves the automation level of the rope and belt material collection process, saves manpower, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a cord collecting device and method. The cord collecting device includes a machine base, a collecting reel, a driving mechanism, and a moving mechanism. The collecting reel and the driving mechanism are arranged on the machine base. The driving mechanism is connected to the collecting reel for driving the collecting reel to rotate. The moving mechanism is arranged below the machine base. During operation, one end of the cord to be collected is wound around the collecting reel, and then the driving mechanism is controlled to drive the collecting reel to rotate, so that the remaining part of the cord to be collected gradually disengages from the platform and is wound around the collecting reel. At the same time, due to the adhesive force between the remaining part of the cord to be collected and the platform, the collecting reel will also receive a reaction force from the cord to be collected, that is, the cord to be collected generates a traction force on the cord collecting device, causing the moving mechanism to act, and then causing the entire cord collecting device to move, and finally enabling all the cord to be wound on the collecting reel. The present invention can improve the automation degree of the cord collecting process, save manpower, and improve production efficiency.
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Description

Technical Field

[0001] The present invention relates to the technical field of cord production, and particularly to a cord winding device and method. Background Art

[0002] In the process of producing silk-screened cords, the cord to be silk-screened is usually pasted on the silk-screening table, so that there is a certain adhesive force between the cord and the silk-screening table to prevent the cord from shifting. Then, patterns, words, etc. are silk-screened on the cord to obtain the silk-screened cord. After the silk-screening process is completed, the silk-screened cord needs to be wound. Currently, during winding, it is necessary to first manually tear the silk-screened cord pasted on the silk-screening table from one end to the other end, and then wind the silk-screened cord into a roll cake shape on the cord winding device. However, this traditional winding method is time-consuming and laborious, and the production efficiency is low. Summary of the Invention

[0003] Based on this, it is necessary to provide a cord winding device and method to improve the automation degree and production efficiency of cord winding.

[0004] One of the purposes of the present invention is to provide a cord winding device, and the solution is as follows:

[0005] A cord winding device includes:

[0006] A machine base;

[0007] A winding shaft, arranged on the machine base;

[0008] A driving mechanism, arranged on the machine base, and the driving mechanism is connected to the winding shaft for driving the winding shaft to rotate around the axis;

[0009] A moving mechanism, arranged below the machine base.

[0010] In one embodiment, the winding shaft is a slip shaft.

[0011] In one embodiment, the machine base includes a first mounting frame, a second mounting frame and a base. The first mounting frame and the second mounting frame are respectively arranged on the base and are oppositely arranged. One end of the winding shaft is connected to the first mounting frame, the other end of the winding shaft is connected to the second mounting frame, and the moving mechanism is arranged below the base.

[0012] In one embodiment, the driving mechanism includes a rotating motor and a belt drive assembly, and the belt drive assembly is in transmission connection with the rotating motor and the winding shaft.

[0013] In one embodiment, the cord take-up device further includes a cord guiding mechanism. The cord guiding mechanism is disposed on the machine base and has a cord guiding rod which is arranged parallel to the take-up reel.

[0014] In one embodiment, in the vertical direction, the cord guiding rod is located below the take-up reel, and in the horizontal direction, the cord guiding rod is located on one side of the take-up reel.

[0015] In one embodiment, the cord take-up device further includes a partition and a partition mounting member. The partition mounting member is disposed on the machine base, the partition is mounted on the partition mounting member, and the partition abuts against the take-up reel. The plate surface of the partition is perpendicular to the take-up reel.

[0016] In one embodiment, the partition mounting member is a rod-shaped structure. The two ends of the partition mounting member are respectively connected to the machine base. The partition is provided with mounting holes, and the partition is mounted on the partition mounting member through the mounting holes.

[0017] In one embodiment, the partition is movably connected to the partition mounting member, and the partition can move along the partition mounting member.

[0018] In one embodiment, there are multiple partitions, and the multiple partitions are arranged at intervals.

[0019] In one embodiment, the moving mechanism includes multiple rollers.

[0020] In one embodiment, the cord take-up device further includes a guiding mechanism. The guiding mechanism includes a connecting component, a first guiding wheel and a second guiding wheel respectively disposed on the connecting component. The wheel surfaces of the first guiding wheel and the second guiding wheel face each other. The first guiding wheel and the second guiding wheel are respectively used to be disposed on both sides of a guide rail on the screen printing platform, and the connecting component is connected to the machine base.

[0021] In one embodiment, the connecting component includes a first connecting member, a second connecting member, a first mounting member and a second mounting member. The first connecting member and the second connecting member are respectively connected to the machine base and are oppositely arranged. The first mounting member is connected to the first connecting member and the second connecting member. The first guiding wheel is disposed below the first mounting member, and the wheel shaft of the first guiding wheel is connected to the first mounting member. The second mounting member is connected to the first connecting member and the second connecting member. The second mounting member is oppositely arranged with the first mounting member. The second guiding wheel is disposed below the second mounting member, and the wheel shaft of the second guiding wheel is connected to the second mounting member.

[0022] In one embodiment, the connecting component further includes a first spring, a second spring, and an opening member; the second mounting member includes a first swing rod and a second swing rod. The first swing rod is rotatably connected to the first connecting member, and the second swing rod is rotatably connected to the second connecting member. Two ends of the first spring are respectively connected to the first mounting member and the first swing rod, and two ends of the second spring are respectively connected to the first mounting member and the second swing rod. A second guide wheel is connected below the first swing rod and / or below the second swing rod. The first swing rod and the second swing rod approach the first mounting member under the pulling force of the first spring and the second spring respectively, so that the first guide wheel and the second guide wheel cooperate to clamp the guide rail. When the first guide wheel and the second guide wheel cooperate to clamp the guide rail, one end of the first swing rod approaches one end of the second swing rod; the opening member is rotatably connected to the first mounting member. When the opening member rotates between the first swing rod and the second swing rod, the opening member pushes the first swing rod and the second swing rod apart, so that the first guide wheel and the second guide wheel move away from each other, and the first swing rod and the second swing rod respectively abut against the opening member under the pulling force of the first spring and the second spring.

[0023] In one embodiment, the opening member includes a third swing rod and an opening wheel. The third swing rod is rotatably connected to the first mounting member. The opening wheel is arranged below the third swing rod, and a wheel axle of the opening wheel is connected to the third swing rod. When the opening member rotates between the first swing rod and the second swing rod, the opening wheel pushes the second guide wheel apart.

[0024] Another object of the present invention is to provide a method for winding a cord, and the solution is as follows:

[0025] A method for winding a cord uses the cord winding device described in any one of the above embodiments. The method for winding a cord includes the following steps:

[0026] Place the cord winding device on a platform where the cord to be wound is pasted;

[0027] Wind one end of the cord to be wound around the winding shaft;

[0028] Control the driving mechanism to drive the winding shaft to rotate, so that the remaining part of the material-waiting rope belt gradually disengages from the platform and winds around the winding shaft. At the same time, due to the adhesive force between the remaining part of the material-waiting rope belt and the platform, the material-waiting rope belt generates a traction force on the rope belt material collection device, causing the moving mechanism to act, and then causing the entire rope belt material collection device to move towards the remaining part of the material-waiting rope belt.

[0029] Compared with the existing solutions, the above rope belt material collection device and method have the following beneficial effects:

[0030] The above rope belt material collection device can be applied to the material collection process of the screen printing rope belt. During operation, place the rope belt material collection device on the platform where the material-waiting rope belt is pasted, wind one end of the material-waiting rope belt around the winding shaft, and then control the driving mechanism to drive the winding shaft to rotate, so that the remaining part of the material-waiting rope belt gradually disengages from the platform and winds around the winding shaft. At the same time, due to the adhesive force between the remaining part of the material-waiting rope belt and the platform, when the winding shaft rotates to pull the material-waiting rope belt, the winding shaft will also receive the reaction force of the material-waiting rope belt, that is, the material-waiting rope belt generates a traction force on the rope belt material collection device, causing the moving mechanism to act, and then causing the entire rope belt material collection device to move towards the remaining part of the material-waiting rope belt, and finally making the entire rope belt wind around the winding shaft. Therefore, the above rope belt material collection device can improve the automation degree of the rope belt material collection process, save manpower, and improve production efficiency. Description of the Drawings

[0031] Figure 1 It is a schematic structural diagram of a rope belt material collection device according to an embodiment;

[0032] Figure 2 is Figure 1 a schematic structural diagram of the rotating mechanism in the rope belt material collection device shown;

[0033] Figure 3 is Figure 1 a schematic structural diagram of the guiding mechanism in the rope belt material collection device shown. Detailed Embodiments

[0034] To facilitate the understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. The preferred embodiments of the present invention are shown in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the understanding of the disclosure of the present invention more thorough and comprehensive.

[0035] It should be noted that when an element is referred to as being "disposed on" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for the purpose of illustration and do not represent the only implementation.

[0036] In the description of the present invention, it should be understood that the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features.

[0037] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which this invention belongs. The terms used herein in the description of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" as used herein includes any and all combinations of one or more of the related listed items.

[0038] Please refer to Figure 1 As shown, the cord collecting device 100 according to an embodiment of the present invention includes a machine base 110, a winding shaft 120, a driving mechanism 130 and a moving mechanism 140.

[0039] The winding shaft 120 is disposed on the machine base 110. The winding shaft 120 is used for winding the screen printing cord.

[0040] The driving mechanism 130 is disposed on the machine base 110. The driving mechanism 130 is connected to the winding shaft 120 to drive the winding shaft 120 to rotate about its axis.

[0041] The moving mechanism 140 is disposed below the machine base 110.

[0042] The above-mentioned cord collecting device 100 can be applied to the cord collecting process of screen printing cords. During operation, the cord collecting device 100 is placed on a platform with the cord to be collected pasted thereon. One end of the cord to be collected is wound around the winding shaft 120. Then, the driving mechanism 130 is controlled to drive the winding shaft 120 to rotate, so that the rest of the cord to be collected gradually detaches from the platform and is wound around the winding shaft 120. At the same time, due to the adhesive force between the rest of the cord to be collected and the platform, when the winding shaft 120 rotates to pull the cord to be collected, the winding shaft 120 will also receive a reaction force from the cord to be collected, that is, the cord to be collected generates a traction force on the cord collecting device 100, causing the moving mechanism 140 to act, and further causing the entire cord collecting device 100 to move towards the rest of the cord to be collected, and finally enabling all the cords to be wound on the winding shaft 120. Therefore, the above-mentioned cord collecting device 100 can improve the automation degree of the cord collecting process, save labor, and improve production efficiency.

[0043] It can be understood that the extending direction of the winding shaft 120 is perpendicular to the moving direction of the moving mechanism 140.

[0044] In one example, the moving mechanism 140 includes a plurality of rollers. During the cord collecting process, the rollers roll due to the traction force of the cord, causing the entire cord collecting device to move forward without consuming power on the moving mechanism 140.

[0045] As Figure 1 shown, in one example, the machine base 110 includes a first mounting bracket 111, a second mounting bracket 112, and a base 113. The first mounting bracket 111 and the second mounting bracket 112 are respectively arranged on the base 113 and are arranged opposite to each other. One end of the winding shaft 120 is connected to the first mounting bracket 111, and the other end of the winding shaft 120 is connected to the second mounting bracket 112. The moving mechanism 140 is arranged below the base 113. In addition, mechanisms such as a voltage stabilizing power supply 151 and a storage battery 152 can be arranged on the base 113 to provide power for the driving mechanism 130.

[0046] In the specific example shown in the figure, the first mounting bracket 111 and the second mounting bracket 112 are plate-like structures. The first mounting bracket 111 and the second mounting bracket 112 are arranged in parallel, which is convenient for the installation of the winding shaft 120. The base 113 is also a plate-like mechanism. The first mounting bracket 111 and the second mounting bracket 112 are connected to both ends of the base 113, forming a U-shaped structure with the base 113.

[0047] It can be understood that in other examples, the first mounting bracket 111 and the second mounting bracket 112 can also be other shapes, such as columnar structures, as long as they can install the winding shaft 120.

[0048] In one example, the take-up reel 120 is a slip shaft. In this example, when the slip shaft is adopted for the take-up reel 120, when multiple silk-screen ropes are wound simultaneously, the tensions of the multiple silk-screen ropes can be kept consistent, so that the tightness degrees of the multiple silk-screen ropes on the take-up reel 120 are the same, avoiding the situation that some silk-screen ropes are loose and some are taut.

[0049] As Figure 2 shown, in one example, the driving mechanism 130 includes a rotating motor 131 and a belt drive assembly 132. The belt drive assembly 132 is in transmission connection with the rotating motor 131 and the take-up reel 120. More specifically, the belt drive assembly 132 includes a first drive wheel 1321, a second drive wheel 1322 and a transmission belt 1323. The transmission belt 1323 is in transmission connection with the first drive wheel 1321 and the second drive wheel 1322. The axle of the first drive wheel 1321 is connected to the rotating motor 131. The axle of the second drive wheel 1322 is connected to the take-up reel 120. It can be understood that in other examples, the rotating motor 131 can also be connected to the take-up reel 120 through other transmission components or directly.

[0050] In the specific example shown in the figure, the rotating motor 131 is arranged on the base 113. The belt drive assembly 132 is arranged on one side of the first mounting bracket 111 away from the second mounting bracket 112. The output shaft of the rotating motor 131 passes through the first mounting bracket 111 and is connected to the first drive wheel 1321. In this example, the rotating motor 131 is arranged on the base 113, the rotating motor 131 and the take-up reel 120 are connected through the belt drive assembly 132, and the belt drive assembly 132 is arranged on one side of the first mounting bracket 111, making the rope take-up device 100 more compact in structure, smaller in overall occupied space and convenient to move.

[0051] As Figure 2 shown, in one example, the driving mechanism 130 further includes a support bearing 1324. The support bearing 1324 is arranged on one side of the first mounting bracket 111 away from the second mounting bracket 112. The axle of the second drive wheel 1322 is mounted on the support bearing 1324. Further, the axles on both sides of the second drive wheel 1322 are respectively mounted on the support bearing 1324.

[0052] In one example, the connection between the axle of the second drive wheel 1322 and the take-up reel 120 is a key connection. For example, one end of the axle of the second drive wheel 1322 has a key-shaped hole, and this end is in fit connection with one end of the take-up reel 120.

[0053] As Figure 1As shown, in one example, the cord collecting device 100 further includes a cord guiding mechanism 160. The cord guiding mechanism 160 is disposed on the machine base 110. The cord guiding mechanism 160 has a cord guiding rod 161, and the cord guiding rod 161 is arranged parallel to the winding shaft 120.

[0054] More specifically, in the vertical direction, the cord guiding rod 161 is located below the winding shaft 120. In the horizontal direction, the cord guiding rod 161 is located on one side of the winding shaft 120. In this example, the silk-screen cord winds around the cord guiding rod 161 and then winds on the winding shaft 120. The cord guiding rod 161 provides a supporting effect on the silk-screen cord, which can make the tension of the silk-screen cord more uniform.

[0055] In one example, the cord guiding mechanism 160 further includes adjusting members 162. The two ends of the cord guiding rod 161 are respectively connected with the adjusting members 162, and the adjusting members 162 are rotatably connected to the base. In this way, the cord guiding rod 161 can change its position with the rotation of the adjusting members 162, so as to adjust the tension of the cord.

[0056] As shown in the figure, in one example, the cord collecting device 100 further includes a partition 170 and a partition mounting member 180. The partition mounting member 180 is disposed on the machine base 110. The partition 170 is mounted on the partition mounting member 180, and the partition 170 abuts against the winding shaft 120. The plate surface of the partition 170 is perpendicular to the winding shaft 120. In this example, by providing the partition 170, which abuts against the winding shaft 120, during winding, the silk-screen cord cannot cross over the partition 170, thus preventing adjacent silk-screen cords from winding together.

[0057] As Figure 1 shown, in one example, the partition mounting member 180 is a rod-shaped structure. The two ends of the partition mounting member 180 are respectively connected to the machine base 110. The partition 170 is provided with mounting holes, and the partition 170 is mounted on the partition mounting member 180 through the mounting holes. In this example, the partition mounting member 180 can also function as a cord guiding member, and cooperate with the cord guiding rod 161 to provide a supporting effect on the silk-screen cord, which can make the tension of the silk-screen cord more uniform.

[0058] In the specific example shown in the figure, in the vertical direction, the partition mounting member 180 is located between the winding rod and the cord guiding rod 161. In the horizontal direction, the partition mounting member 180 is located between the winding rod and the cord guiding rod 161.

[0059] In one example, the partition 170 is movably connected to the partition mounting member 180, and the partition 170 can move along the partition mounting member 180. That is, the partition 170 and the partition mounting member 180 are not fixedly connected, and the interval between the partitions 170 can be adjusted. In this example, since the widths of multiple silk printing rope belts on the silk printing platform may not be the same, the operator can adjust the interval between the partitions 170 according to the width of the silk printing rope belt.

[0060] It can be understood that the number of partitions 170 is not limited to only one. As shown in the figure, in one example, there are multiple partitions 170, and the multiple partitions 170 are arranged at intervals. In one example, the number of partitions 170 is 3 to 30. In one example, the number of partitions 170 is 5 to 20. In some specific examples, the number of partitions 170 is 4, 8, 12, 16, 20, etc.

[0061] Such as Figure 1 and Figure 3 As shown, in one example, the rope belt take-up device 100 further includes a guiding mechanism 190. The guiding mechanism 190 includes a connecting component and a first guiding wheel 191 and a second guiding wheel 192 respectively arranged on the connecting component. The wheel surfaces of the first guiding wheel 191 and the second guiding wheel 192 are arranged opposite to each other. The first guiding wheel 191 and the second guiding wheel 192 are used to be respectively arranged on both sides of the guide rail on the silk printing platform. The connecting component is connected to the machine base 110.

[0062] Since there is a stud guide rail on the silk printing platform, in this example, by arranging the guiding mechanism 190, the guiding mechanism 190 cooperates with the stud guide rail to realize the guiding during the movement of the rope belt take-up device 100. The guiding mechanism 190 is provided with a first guiding wheel 191 and a second guiding wheel 192, which are respectively arranged on both sides of the guide rail on the silk printing platform. In this way, during the movement of the rope belt take-up device 100, the first guiding wheel 191 and the second guiding wheel 192 roll along the guide rail, reducing friction.

[0063] Such as Figure 3As shown, in one example, the connecting component includes a first connecting member 193, a second connecting member 194, a first mounting member 195, and a second mounting member 196. The first connecting member 193 and the second connecting member 194 are respectively connected to the machine base 110 and are oppositely arranged. The first mounting member 195 is respectively connected to the first connecting member 193 and the second connecting member 194. The first guide wheel 191 is arranged below the first mounting member 195. The axle of the first guide wheel 191 is connected to the first mounting member 195. The second mounting member 196 is respectively connected to the first connecting member 193 and the second connecting member 194. The second mounting member 196 is oppositely arranged with the first mounting member 195. The second guide wheel 192 is arranged below the second mounting member 196. The axle of the second guide wheel 192 is connected to the second mounting member 196.

[0064] Further, in one example, the connecting component further includes a first spring 197, a second spring 198, and a separating member 199. The second mounting member 196 includes a first swing rod 1961 and a second swing rod 1962.

[0065] The first swing rod 1961 is rotatably connected to the first connecting member 193 and can rotate around the connection point as the center.

[0066] The second swing rod 1962 is rotatably connected to the second connecting member 194 and can rotate around the connection point as the center. The two ends of the first spring 197 are respectively connected to the first mounting member 195 and the first swing rod 1961. The two ends of the second spring 198 are respectively connected to the first mounting member 195 and the second swing rod 1962. The second guide wheel 192 is connected below the first swing rod 1961 and / or below the second swing rod 1962. The first swing rod 1961 and the second swing rod 1962 respectively approach the first mounting member 195 under the pulling force of the first spring 197 and the second spring 198. So that the first guide wheel 191 and the second guide wheel 192 cooperate to clamp the guide rail. When the first guide wheel 191 and the second guide wheel 192 cooperate to clamp the guide rail. One end of the first swing rod 1961 approaches one end of the second swing rod 1962. The separating member 199 is rotatably connected to the first mounting member 195. When the separating member 199 rotates between the first swing rod 1961 and the second swing rod 1962, the separating member 199 separates the first swing rod 1961 and the second swing rod 1962, so that the first guide wheel 191 and the second guide wheel 192 move away from each other. The first swing rod 1961 and the second swing rod 1962 respectively abut against the separating member 199 under the pulling force of the first spring 197 and the second spring 198.

[0067] Thus, when it is necessary to install the guiding mechanism 190 on the guide rail or remove it from the guide rail, just rotate the separating member 199 between the first swing rod 1961 and the second swing rod 1962, and the loading and unloading of the guiding mechanism 190 on the guide rail can be easily achieved.

[0068] Further, in one example, the separating member 199 includes a third swing rod 1991 and a separating wheel 1992. The third swing rod 1991 is rotatably connected to the first mounting member 195 and can rotate around the connection point. The separating wheel 1992 is arranged below the third swing rod 1991. The axle of the separating wheel 1992 is connected to the third swing rod 1991. When the separating member 199 rotates between the first swing rod 1961 and the second swing rod 1962, the separating wheel 1992 pushes away the second guiding wheel 192.

[0069] Since the separating wheel 1992 and the second guiding wheel 192 can rotate, by setting the separating wheel 1992, the second guiding wheel 192 can be pushed away more easily and labor - savingly.

[0070] In one example, a handle 1993 is arranged on the third swing rod 1991, which is convenient for the rotation operation of the third swing rod 1991.

[0071] In one example, two first guiding wheels 191 are arranged below the first mounting member 195.

[0072] In one example, one second guiding wheel 192 is respectively arranged below the first swing rod 1961 and the second swing rod 1962.

[0073] In one example, a first adjusting hole 1931 is arranged on the first connecting member 193. A first connecting rod is arranged on the first swing member. The first connecting rod penetrates into the first adjusting hole 1931 to realize the rotatable connection between the first swing rod 1961 and the first connecting member 193. A second adjusting hole 1941 is arranged on the second connecting member 194. A second connecting rod is arranged on the second swing member. The second connecting rod penetrates into the second adjusting hole 1941 to realize the rotatable connection between the second swing rod 1962 and the second connecting member 194.

[0074] Further, in one example, there are multiple first adjusting holes 1931, and the multiple first adjusting holes 1931 are linearly arranged from far away from the first mounting member 195 to close to the first mounting member 195. There are multiple second adjusting holes 1941, and the multiple second adjusting holes 1941 are linearly arranged from far away from the first mounting member 195 to close to the first mounting member 195. Thus, the first swing rod 1961 and the second swing rod 1962 can be connected according to the width of the guide rail.

[0075] It can be understood that in an application scenario without a guide rail, the guiding mechanism 190 may further include a guiding track. In one example, the guiding mechanism 190 further includes a guiding track, and the guiding track cooperates with the above-mentioned connecting assembly, the first guiding wheel 191, and the second guiding wheel 192 to achieve guiding.

[0076] Furthermore, the present invention also provides a method for winding a cord, which uses the cord winding device 100 of any of the above examples, and includes the following steps:

[0077] Place the cord winding device 100 on a platform where the cord to be wound is pasted;

[0078] Wind one end of the cord to be wound around the winding shaft 120;

[0079] Control the driving mechanism 130 to drive the winding shaft 120 to rotate, so that the remaining part of the cord to be wound gradually detaches from the platform and winds around the winding shaft 120. At the same time, due to the adhesive force between the remaining part of the cord to be wound and the platform, the cord to be wound generates a traction force on the cord winding device 100, causing the moving mechanism 140 to act, and further causing the entire cord winding device 100 to move towards the remaining part of the cord to be wound.

[0080] The above cord winding device 100 and cord winding method can be applied to the winding process of a screen printing cord. During operation, place the cord winding device 100 on a platform where the cord to be wound is pasted, wind one end of the cord to be wound around the winding shaft 120, and then control the driving mechanism 130 to drive the winding shaft 120 to rotate, so that the remaining part of the cord to be wound gradually detaches from the platform and winds around the winding shaft 120. At the same time, due to the adhesive force between the remaining part of the cord to be wound and the platform, when the winding shaft 120 rotates to pull the cord to be wound, the winding shaft 120 will also receive a reaction force from the cord to be wound, that is, the cord to be wound generates a traction force on the cord winding device 100, causing the moving mechanism 140 to act, and further causing the entire cord winding device 100 to move towards the remaining part of the cord to be wound, and finally winding all the cord around the winding shaft 120. Therefore, the above cord winding device 100 and cord winding method can improve the automation degree of the cord winding process, save manpower, and improve production efficiency.

[0081] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope recorded in this specification.

[0082] The above-described embodiments merely represent several implementation manners of the present invention. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these all fall within the protection scope of the present invention. Therefore, the protection scope of the present invention patent shall be subject to the appended claims.

Claims

1. A cord collecting device, characterized in that, it includes: A machine base, including a first mounting bracket, a second mounting bracket and a base, the first mounting bracket and the second mounting bracket are respectively arranged on the base and are arranged oppositely; A winding shaft, arranged on the machine base, one end of the winding shaft is connected to the first mounting bracket, and the other end of the winding shaft is connected to the second mounting bracket; A driving mechanism, arranged on the machine base, the driving mechanism is connected to the winding shaft for driving the winding shaft to rotate around its axis; A moving mechanism, arranged below the base; A guiding mechanism, the guiding mechanism includes a connecting component and a first guiding wheel and a second guiding wheel respectively arranged on the connecting component, the wheel surfaces of the first guiding wheel and the second guiding wheel face each other, the first guiding wheel and the second guiding wheel are used to be respectively arranged on both sides of the guide rail on the screen printing table, the connecting component is connected to the machine base, and the connecting component includes a first spring, a second spring and a separating member.

2. The cord collecting device according to claim 1, characterized in that, the winding shaft is a slip shaft.

3. The cord collecting device according to claim 1, characterized in that, the cord collecting device further includes a wire guiding mechanism, the wire guiding mechanism is arranged on the machine base, and the wire guiding mechanism has a wire guiding rod, and the wire guiding rod is arranged parallel to the winding shaft.

4. The cord collecting device according to claim 3, characterized in that, in the vertical direction, the wire guiding rod is located below the winding shaft, and in the horizontal direction, the wire guiding rod is located on one side of the winding shaft.

5. The cord collecting device according to any one of claims 1 to 4, characterized in that, the cord collecting device further includes a partition board and a partition board mounting member, the partition board mounting member is arranged on the machine base, the partition board is mounted on the partition board mounting member, and the partition board abuts against the winding shaft, and the plate surface of the partition board is arranged perpendicular to the winding shaft.

6. The cord collecting device according to claim 5, characterized in that, the partition board mounting member is a rod-shaped structure, both ends of the partition board mounting member are respectively connected to the machine base, the partition board is provided with mounting holes, and the partition board is mounted on the partition board mounting member through the mounting holes.

7. The cord collecting device according to claim 6, characterized in that, the partition board is movably connected to the partition board mounting member, and the partition board can move along the partition board mounting member.

8. The cord collecting device according to claim 6 or 7, characterized in that, there are multiple partition boards, and the multiple partition boards are arranged at intervals.

9. The cord collecting device according to any one of claims 1 to 4, 6 and 7, characterized in that, the moving mechanism includes a plurality of rollers.

10. The cord collecting device according to claim 1, characterized in that, The connecting component includes a first connecting piece, a second connecting piece, a first mounting piece, and a second mounting piece; the first connecting piece and the second connecting piece are respectively connected to the machine base and are arranged oppositely, the first mounting piece is connected to the first connecting piece and the second connecting piece, the first guide wheel is arranged below the first mounting piece, the axle of the first guide wheel is connected to the first mounting piece, the second mounting piece is connected to the first connecting piece and the second connecting piece, the second mounting piece is arranged oppositely to the first mounting piece, the second guide wheel is arranged below the second mounting piece, and the axle of the second guide wheel is connected to the second mounting piece.

11. The cord collecting device according to claim 10, characterized in that the second mounting piece includes a first swing rod and a second swing rod, the first swing rod is rotatably connected to the first connecting piece, the second swing rod is rotatably connected to the second connecting piece, two ends of the first spring are respectively connected to the first mounting piece and the first swing rod, two ends of the second spring are respectively connected to the first mounting piece and the second swing rod, the second guide wheel is connected below the first swing rod and / or below the second swing rod, the first swing rod and the second swing rod respectively approach the first mounting piece under the pulling force of the first spring and the second spring, so that the first guide wheel and the second guide wheel cooperate to clamp the guide rail, when the first guide wheel and the second guide wheel cooperate to clamp the guide rail, one end of the first swing rod and one end of the second swing rod approach each other; the separating member is rotatably connected to the first mounting piece, when the separating member rotates between the first swing rod and the second swing rod, the separating member separates the first swing rod and the second swing rod, so that the first guide wheel and the second guide wheel are separated from each other, and the first swing rod and the second swing rod respectively abut against the separating member under the pulling force of the first spring and the second spring.

12. The cord collecting device according to claim 11, characterized in that the separating member includes a third swing rod and a separating wheel, the third swing rod is rotatably connected to the first mounting piece, the separating wheel is arranged below the third swing rod, the axle of the separating wheel is connected to the third swing rod, when the separating member rotates between the first swing rod and the second swing rod, the separating wheel separates the second guide wheel.

13. A cord collecting method, characterized in that using the cord collecting device according to any one of claims 1 to 12, the cord collecting method includes the following steps: placing the cord collecting device on a platform where a cord to be collected is pasted; winding one end of the cord to be collected around the winding shaft; Control the driving mechanism to drive the take-up reel to rotate, so that the remaining part of the material to be taken-up rope belt gradually disengages from the platform and winds around the take-up reel. At the same time, due to the adhesive force between the remaining part of the material to be taken-up rope belt and the platform, the material to be taken-up rope belt generates a traction force on the rope belt take-up device, causing the moving mechanism to act, and further causing the entire rope belt take-up device to move towards the remaining part of the material to be taken-up rope belt.

Citation Information

Patent Citations

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