Fabric tape conveying device and fabric processing equipment
By designing an automated conveyor belt device, which uses clamping components to hold the conveyor belt at different positions along its length, the device achieves automated transfer and posture fixation of the conveyor belt, solving the problem of relying on manual operation for conveyor belt transfer and improving production efficiency and quality.
Patent Information
- Application Number
- CN202311449902.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-31
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2043-10-31
AI Technical Summary
The transfer of the fabric belt during processing mainly relies on manual operation, which leads to low production efficiency and easy damage, affecting production quality and cost.
Design a fabric conveyor device, including a frame assembly, a first drive assembly, and a clamp assembly. The clamp assembly has multiple clamping elements for clamping the fabric at different positions along its length, and the drive assembly enables automated transfer and posture fixation of the fabric.
It improves production efficiency during the tape transfer process, reduces the possibility of tape entanglement and deformation during the transfer process, enhances tape production quality and yield, and reduces production costs.
Smart Images

Figure CN117246814B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of cloth processing, and particularly relates to a cloth tape conveying device and a cloth processing equipment. BACKGROUND
[0002] In the field of cloth processing, cloth tapes often need to be transferred between different process equipment in the processing process. However, in the related art, the transfer operation of the cloth tape is usually manually operated, so not only the production efficiency is low, but also the cloth tape damage phenomenon is easy to occur, thereby reducing the production quality, increasing the production cost, and limiting the improvement of the cloth tape production level. SUMMARY
[0003] The present disclosure aims to at least solve one of the problems existing in the prior art or related art.
[0004] To this end, a first aspect of the present disclosure provides a cloth tape conveying device.
[0005] A second aspect of the present disclosure provides a cloth processing equipment.
[0006] Therefore, according to the first aspect of the embodiments of the present disclosure, a cloth tape conveying device is provided, which comprises:
[0007] A rack assembly having a first working position and a second working position;
[0008] A first drive assembly arranged in the rack assembly;
[0009] A clamp assembly arranged in the first drive assembly, the first drive assembly being configured to drive the clamp assembly to move between the first working position and the second working position;
[0010] The clamp assembly comprises a plurality of clamping members configured to clamp different positions along the length direction of the cloth tape to be processed, respectively.
[0011] In a possible implementation, the first drive assembly comprises:
[0012] A first drive member arranged in the rack assembly;
[0013] A first pulley connected to the first drive member, the first drive member being configured to drive the first pulley to rotate;
[0014] A second pulley rotatably arranged in the rack assembly, the second pulley being arranged in a spaced manner with the first pulley;
[0015] A transmission belt arranged around the first pulley and the second pulley, the clamp assembly being arranged in the transmission belt;
[0016] The plurality of clamping members are arranged in a spaced manner along the extension direction of the transmission belt.
[0017] In an embodiment, the first driving assembly further comprises:
[0018] a guide rail arranged on the rack assembly and surrounding the transmission belt;
[0019] a plurality of connecting members arranged on the transmission belt and spaced along the extension direction of the transmission belt, each connecting member being connected to one clamping member;
[0020] a plurality of pulleys rotatably connected to the connecting members, each connecting member corresponding to at least one pulley, the pulley being movably arranged on the guide rail.
[0021] In an embodiment, the clamping member comprises:
[0022] a first pressing plate arranged on the first driving assembly and having a first clamping end;
[0023] a second pressing plate hingedly connected to the first pressing plate and having a second clamping end, the second clamping end being arranged corresponding to the first clamping end, the first clamping end and the second clamping end being used to abut different sides of the to-be-processed cloth belt to clamp the to-be-processed cloth belt;
[0024] a resilient member connected to the first pressing plate and used to apply a driving force to the first pressing plate to make the first clamping end close to the second clamping end.
[0025] In an embodiment, the cloth belt conveying device further comprises:
[0026] a second driving assembly arranged on the rack assembly, the rack assembly further having a feeding position between the first working position and the second working position, the second driving assembly being arranged corresponding to the feeding position and being used to drive the first clamping end away from the second clamping end.
[0027] In an embodiment, the second driving assembly comprises:
[0028] a second driving member arranged on the rack assembly;
[0029] a third driving member arranged on the second driving member, the second driving member being used to drive the third driving member to close to or away from the first pressing plate when the clamping member corresponds to the feeding position;
[0030] The third driving member is used to abut the first pressing plate to provide a driving force for the first pressing plate to move the first clamping end away from the second clamping end.
[0031] In an embodiment, the cloth belt conveying device further comprises:
[0032] The guide is arranged on the rack assembly, and the guide is formed with a guide wall. The rack assembly further has a feeding position between the first working position and the second working position. A first end of the guide wall is located between the feeding position and the first working position, and a second end of the guide wall is arranged corresponding to the feeding position. The guide wall is used for abutting against the operation end of the first pressing plate.
[0033] The distance between the first clamping end and the second clamping end increases as the distance between the clamping member and the second end decreases.
[0034] In an available implementation, the guide is made of steel.
[0035] In an available implementation, the rack assembly is made of aluminum.
[0036] According to a first aspect of the embodiments of the present disclosure, a cloth processing device is provided, comprising:
[0037] The cloth belt conveying device according to any one of the above first aspect.
[0038] Compared with the prior art, the present disclosure at least has the following beneficial effects: the cloth belt conveying device provided by the embodiments of the present disclosure comprises a rack assembly, a first driving assembly and a clamp assembly. The first driving assembly is used to drive the clamp assembly to move between the first working position and the second working position of the rack assembly. The clamp assembly has a plurality of clamping members. In actual application, the clamping members can be used to clamp the cloth belt to be processed. Therefore, when the clamping members clamp the cloth belt to be processed, the cloth belt conveying device can drive the clamp assembly to move through the first driving assembly, so that the cloth belt to be processed moves synchronously with each clamping member, the position of the cloth belt is transferred, manual operation in the cloth belt transfer operation is reduced, and the production efficiency is improved. In addition, in actual application, the plurality of clamping members can be used to clamp different positions in the length direction of the cloth belt to be processed. Therefore, during the cloth belt conveying process, on the one hand, the cloth belt to be processed can be unfolded along the length direction, the possibility of winding of the cloth belt during the transfer process is reduced, and the cloth belt can be conveniently conveyed to the process equipment for processing and handling. On the other hand, the clamp assembly can also fix the posture of the cloth belt during the conveying process by clamping different positions in the length direction of the cloth belt. During the movement of the clamp assembly driven by the first driving assembly, the cloth belt to be processed can maintain high posture stability, the tensile force acting on the cloth belt to be processed is reduced, the cloth belt to be processed is prevented from generating a large deformation during the transfer process, the probability of quality problems such as edge misalignment and belt breakage of the cloth belt to be processed is reduced, the production quality of the cloth belt is improved, the yield of the cloth belt processing is improved, the production cost of the cloth belt is reduced, and the production level of the cloth belt is improved. BRIEF DESCRIPTION OF DRAWINGS
[0039] Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the detailed description of the exemplary embodiments below. The accompanying drawings are included to provide a description of the exemplary embodiments and are not meant to limit the present disclosure. Moreover, the same reference numerals in different figures indicate the same or similar components. In the drawings:
[0040] Figure 1 A schematic structural diagram of a first perspective view of a belt conveying device according to an embodiment of the present disclosure;
[0041] Figure 2 A schematic structural diagram of a second perspective view of a belt conveying device according to an embodiment of the present disclosure;
[0042] Figure 3 A schematic structural diagram of a rack assembly according to an embodiment of the present disclosure;
[0043] Figure 4 A schematic structural diagram of a first driving assembly according to an embodiment of the present disclosure;
[0044] Figure 5 A schematic structural diagram of a guide rail according to an embodiment of the present disclosure;
[0045] Figure 6 A schematic structural diagram of a clamping member according to an embodiment of the present disclosure;
[0046] Figure 7 A schematic structural diagram of a second driving assembly according to an embodiment of the present disclosure;
[0047] Figure 8 A schematic structural diagram of a guide member according to an embodiment of the present disclosure;
[0048] Figure 9 A schematic application scenario diagram of a belt conveying device according to an embodiment of the present disclosure.
[0049] Wherein, Figures 1 to 9 The correspondence between the reference signs and the component names in the drawings is as follows:
[0050] 10' a belt to be processed;
[0051] 100 a rack assembly; 200 a first driving assembly; 300 a clamping assembly; 400 a second driving assembly; 500 a guide member;
[0052] 210 a first driving member; 220 a first pulley; 230 a second pulley; 240 a transmission belt; 250 a guide rail; 260 a connecting member; 270 a pulley;
[0053] 310 a clamping member;
[0054] 410 second driving member; 420 third driving member;
[0055] 261 connecting block; 262 connecting plate;
[0056] 311 first pressing plate; 312 second pressing plate; 313 elastic member;
[0057] 501 guide wall;
[0058] 3111 first clamping end; 3112 operating end;
[0059] 3121 second clamping end. DETAILED DESCRIPTION
[0060] Exemplary embodiments of the present disclosure will be described in detail with reference to the drawings. Although exemplary embodiments of the present disclosure are shown in the drawings, it is understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided so that the present disclosure can be more thoroughly understood and the scope of the present disclosure can be accurately conveyed to those skilled in the art.
[0061] As shown in Figures 1 to 9 According to a first aspect of the embodiments of the present disclosure, a cloth tape conveying device is provided, comprising: a rack assembly 100 having a first working position and a second working position; a first driving assembly 200 arranged on the rack assembly 100; a clamp assembly 300 arranged on the first driving assembly 200, the first driving assembly 200 being configured to drive the clamp assembly 300 to move between the first working position and the second working position; wherein the clamp assembly 300 comprises a plurality of clamping members 310, and each clamping member 310 is configured to clamp a different position of a length direction of a cloth tape 10' to be processed.
[0062] The cloth tape conveying device provided by the embodiments of the present disclosure comprises the rack assembly 100, the first driving assembly 200 and the clamp assembly 300, wherein the first driving assembly 200 is configured to drive the clamp assembly 300 to move between the first working position and the second working position of the rack assembly 100, and the clamp assembly 300 comprises a plurality of clamping members 310. In actual application, the clamping members 310 can be used to clamp the cloth tape to be processed. Therefore, when the clamping members 310 clamp the cloth tape to be processed 10', the cloth tape conveying device can drive the clamp assembly 300 to move by the first driving assembly 200, so that the cloth tape to be processed 10' moves synchronously with each clamping member 310, the position of the cloth tape is transferred, and the manual operation in the cloth tape transfer operation is reduced, thereby improving the production efficiency.
[0063] The plurality of clamping pieces 310 can be used to clamp different positions of the to-be-processed fabric belt 10' in the length direction in actual application, so that the to-be-processed fabric belt 10' can be unfolded along the length direction during the fabric belt conveying process, the possibility of winding of the fabric belt during the transfer process is reduced, the fabric belt can be conveniently conveyed to the process equipment for processing, on the other hand, the fixture assembly 300 can also fix the posture of the fabric belt during the conveying process by clamping different positions in the length direction of the fabric belt, and the to-be-processed fabric belt 10' can maintain high posture stability during the movement of the fixture assembly driven by the first driving assembly 200, thereby reducing the tensile force suffered by the to-be-processed fabric belt 10', avoiding large deformation of the fabric belt during the transfer process, reducing the probability of quality problems such as edge misalignment and belt breakage of the to-be-processed fabric belt, which is beneficial to improve the production quality of the fabric belt, improve the yield of the fabric belt processing, reduce the production cost of the fabric belt, and help to improve the production level of the fabric belt.
[0064] It should be noted that in the prior art, the fabric belt usually needs to be manually operated during position transfer, for example, the fabric belt is moved by the operator holding the fabric belt. However, different textures of the fabric belt will result in a large difference in stress performance, for example, the diagonal fabric belt is sensitive to the longitudinal tensile force and is prone to edge misalignment under a large longitudinal tensile force, thereby reducing the quality of the fabric belt. It can be understood that the aforementioned longitudinal tensile force is the tensile force in the width direction of the fabric belt. Therefore, the fabric belt transfer method adopted in the prior art usually has a high requirement for the operation level of the operator and has low transfer efficiency. The fabric belt conveying device provided by the present disclosure can clamp different positions of the to-be-processed fabric belt 10' in the length direction by using a plurality of clamping pieces 310 during the fabric belt transfer process, thereby improving the unfolding degree of the fabric belt during the transfer process, reducing the possibility of large deformation of the to-be-processed fabric belt 10', and being beneficial to maintaining the posture stability of the fabric belt, reducing the tensile force suffered by the fabric belt during the transfer process, thereby improving the fabric belt transfer efficiency while reducing the possibility of quality defects of the fabric belt. It can be understood that the fabric belt conveying device provided by the present disclosure has good applicability for the conveying and transfer operation of diagonal fabric belts, for example, it can be used for conveying and transferring 45° diagonal prepreg fabric belts.
[0065] It can be understood that the first driving assembly 200 can be arranged on the rack assembly 100, thereby improving the installation stability and reliability of the first driving assembly 200. Correspondingly, the fixture assembly 300 can be arranged on the first driving assembly 200 to receive the power output by the first driving assembly 200, thereby moving under the driving of the first driving assembly 200.
[0066] It can be understood that the aforementioned first working position and the aforementioned second working position can be different positions on the rack assembly 100, so that the first driving assembly 200 can cause the clamp assembly 300 and the to-be-processed fabric belt 10' clamped on the clamp assembly 300 to change the position relative to the rack assembly 100 during the movement of the clamp assembly 300 between the first working position and the second working position. In actual application, the first driving assembly 200 can drive the clamp assembly 300 to move in a linear form of movement track, or the first driving assembly 200 can drive the clamp assembly 300 to move in a curved form of movement track, or the movement track of the first driving assembly 200 driving the clamp assembly 300 can simultaneously include a linear form of track segment and a curved form of track segment. The movement track of the first driving assembly 200 driving the clamp assembly 300 can be in various forms, which can be set according to actual needs, and will not be limited here.
[0067] It can be understood that in actual application, the fabric belt conveying assembly provided by the present disclosure can be arranged between process equipment for processing fabric, for example, it can be arranged between process equipment corresponding to two adjacent processes according to the process arrangement of the fabric belt processing. Accordingly, one of the first working position and the second working position can be arranged close to the process equipment in the process sequence, and the other can be arranged close to the process equipment in the process sequence, so as to facilitate the fabric belt conveying assembly to receive the to-be-processed fabric belt 10' output by the previous process equipment and convey the to-be-processed fabric belt 10' to the subsequent process equipment for processing.
[0068] As shown in Figure 1 , Figure 2 and Figure 9 , in some feasible examples, the plurality of clamping pieces 310 can be arranged in the same direction, so as to improve the adaptability of the arrangement direction of the plurality of clamping pieces 310 to the length direction of the to-be-processed fabric belt 10', avoid the to-be-processed fabric belt 10' being bent and twisted when the plurality of clamping pieces 310 clamp the same to-be-processed fabric belt 10', and facilitate to further reduce the stress and deformation of the to-be-processed fabric belt 10' during the transfer process, and improve the production quality of the to-be-processed fabric belt 10'.
[0069] As shown in Figure 1 , Figure 2 , Figure 4 , Figure 5 and Figure 9As shown, in some examples, the first driving assembly 200 comprises: a first driving member 210 arranged on the rack assembly 100; a first pulley 220 connected to the first driving member 210, the first driving member 210 being configured to drive the first pulley 220 to rotate; a second pulley 230 rotatably arranged on the rack assembly 100, the second pulley 230 being spaced apart from the first pulley 220; a transmission belt 240 wound around the first pulley 220 and the second pulley 230, the clamp assembly 300 being arranged on the transmission belt 240; wherein a plurality of clamping members 310 are arranged along the extension direction of the transmission belt 240.
[0070] In this technical solution, the first driving assembly 200 can comprise the first driving member 210, the first pulley 220, the second pulley 230 and the transmission belt 240, wherein the first driving member 210 and the second pulley 230 are both arranged on the rack assembly 100, and the second pulley 230 is rotatable relative to the rack assembly 100, the first pulley 220 is connected to the first driving member 210, and the transmission belt 240 is wound around the first pulley 220 and the second pulley 230, so that the first pulley 220 can be driven to rotate by the first driving member 210, and the power can be transmitted to the second pulley 230 through the transmission belt 240 to drive the second pulley 230 to rotate synchronously, and the clamp assembly 300 is arranged on the transmission belt 240, so that the first driving member 210 can drive the clamp assembly 300 to move between the first working position and the second working position of the rack assembly 100 in the form of belt transmission, so as to drive the processed cloth belt 10' to displace when the clamping members 310 clamp the processed cloth belt 10'; the plurality of clamping members 310 of the clamp assembly 300 are arranged along the extension direction of the transmission belt 240, so that the length direction of the processed cloth belt 10' can be kept highly consistent with the extension direction of the transmission belt 240, i.e., the length direction of the processed cloth belt 10' can be kept highly consistent with the displacement direction, when the plurality of clamping members clamp different positions of the processed cloth belt 10' in the length direction, thereby facilitating to further reduce the probability of the processed cloth belt 10' being deformed greatly during movement, to ensure the quality of the processed cloth belt 10', and to improve the production environment while improving the motion stability of the processed cloth belt 10' by the belt transmission which has good motion continuity and low running noise.
[0071] It can be understood that the extension direction of the transmission belt 240 is the length direction of the transmission belt 240.
[0072] It can be understood that the first working position and the second working position of the rack assembly 100 can both be located within the extension range of the transmission belt 240, so as to facilitate the driving assembly to drive the clamp assembly 300 to move between the first working position and the second working position.
[0073] It can be understood that, due to the cyclicity of the belt drive, in actual application, the clamp assembly 300 can be moved from the first working position to the second working position under the driving of the first driving assembly 200, and be re-moved from the second working position to the first working position without changing the driving direction of the first driving assembly 200, so as to facilitate the cyclic use of the clamp assembly 300, improve the continuity of the cloth belt transfer operation, and further improve the execution efficiency of the cloth belt transfer operation. It can be understood that, in actual application, the specific driving mode of the first driving assembly 200 to the clamp assembly 300 can be set according to actual needs, for example, the first driving assembly 200 can also be driven in a mode of changing the driving direction to reciprocate the clamp assembly 300 between the first working position and the second working position. The specific driving mode is not limited here.
[0074] As shown in Figure 1 , Figure 5 and Figure 9 , in some examples, the first driving assembly 200 further comprises a guide rail 250 arranged on the rack assembly 100 and surrounding the transmission belt 240; a plurality of connecting pieces 260 arranged on the transmission belt 240, the plurality of connecting pieces 260 being arranged at intervals along the extension direction of the transmission belt 240, and each connecting piece 260 being connected to one clamping piece 310; and a plurality of pulleys 270 rotatably connected to the connecting pieces 260, each connecting piece 260 corresponding to at least one pulley 270, and the pulley 270 being movably arranged on the guide rail 250.
[0075] In this technical solution, the first driving assembly 200 can further comprise the guide rail 250, the plurality of connecting pieces 260 and the plurality of pulleys 270, wherein the plurality of connecting pieces 260 are arranged at intervals on the transmission belt 240 along the extension direction of the transmission belt 240, so that when the transmission belt 240 is displaced, the plurality of connecting pieces 260 can be displaced synchronously with the transmission belt 240, the guide rail 250 is arranged on the rack assembly 100 and surrounds the transmission belt 240, i.e. the guide rail 250 can have a ring structure, and the transmission belt 240 is distributed on the inner side of the guide rail 250, each connecting piece 260 corresponds to at least one pulley 270, and the pulley 270 is movably arranged on the guide rail 250, so that the transmission belt 240 can be connected to the guide rail 250 through the connecting pieces 260 and the pulleys 270, and then be supported by the guide rail 250. Correspondingly, the clamping pieces 310 of the clamp assembly 300 are one-to-one connected to the connecting pieces 260, so that the clamp assembly 300 can be arranged on the transmission belt 240 through the connecting pieces 260, and based on the foregoing arrangement of the guide rail 250, the guide rail 250 can correspondingly play a supporting role for the clamp assembly 300, avoiding that the transmission belt 240 is subjected to excessive load and produces a large amount of deformation, which is conducive to improving the motion stability of the transmission belt 240 and ensuring the smooth execution of the cloth belt transfer operation.
[0076] AsFigure 5 As shown, in some feasible examples, each connector 260 is connected to at least two pulleys 270, the guide rail 250 is a ring structure, at least one of the at least two pulleys 270 corresponding to each connector 260 is movably disposed on the outer peripheral wall of the guide rail 250, and at least one of the at least two pulleys 270 corresponding to each connector 260 is movably disposed on the inner peripheral wall of the guide rail 250, thereby further improving the support stability of the guide rail 250 for the transmission belt 240 and the clamp assembly 300.
[0077] like Figure 4 and Figure 5 As shown, in some feasible examples, the connector 260 may include a connecting block 261 and a connecting plate 262, wherein the connecting block 261 is disposed on the transmission belt 240, the connecting plate 262 is disposed on the connecting block 261, and the pulley 270 and the clamping member 310 are disposed on the connecting plate 262. Based on the aforementioned configuration, the support stability of the guide rail 250 on the pulley 270, the connector 260 and the clamping assembly 300 can be further improved, and the load borne by the transmission belt 240 during movement can be reduced.
[0078] like Figure 1 , Figure 6 and Figure 9 As shown, in some examples, the clamping member 310 includes: a first pressure plate 311 disposed on the first drive assembly 200 and having a first clamping end 3111; a second pressure plate 312 hinged to the first pressure plate 311 and having a second clamping end 3121, the second clamping end 3121 being arranged corresponding to the first clamping end 3111, the first clamping end 3111 and the second clamping end 3121 being used to abut against different sides of the fabric strip 10' to be processed, so as to clamp the fabric strip 10' to be processed; and an elastic member 313 connected to the first pressure plate 311 for applying a driving force to the first pressure plate 311 to bring the first clamping end 3111 closer to the second clamping end 3121.
[0079] In the technical solution, the clamping piece 310 can include a first pressing plate 311, a second pressing plate 312 and an elastic piece 313, wherein the first pressing plate 311 and the second pressing plate 312 are hinged to each other, so that the first clamping end 3111 of the first pressing plate 311 and the second clamping end 3121 of the second pressing plate 312 can approach or move away from each other in the process of relative rotation of the first pressing plate 311 and the second pressing plate 312. In actual application, the first clamping end 3111 and the second clamping end 3121 can be used to abut against different sides of the to-be-processed cloth belt 10' respectively to achieve clamping of the to-be-processed cloth belt 10', for example, the first clamping end 3111 and the second clamping end 3121 can abut against opposite sides in the thickness direction of the to-be-processed cloth belt 10' respectively. The elastic piece 313 is arranged on the first pressing plate 311 and is used to apply a driving force to the first pressing plate 311 to move the first clamping end 3111 to approach the second clamping end 3121, thereby facilitating the clamping piece 310 to maintain the state of the first clamping end 3111 and the second clamping end 3121 approaching each other, to improve the clamping firmness of the clamping piece 310 on the to-be-processed cloth belt 10', enhance the posture stability of the to-be-processed cloth belt 10', reduce the probability of the to-be-processed cloth belt 10' falling off or being deformed greatly, and provide further protection for the quality of the to-be-processed cloth belt 10'.
[0080] As shown in Figure 1 , Figure 2 , Figure 7 and Figure 9 In some examples, the cloth belt conveying device further includes a second driving assembly 400 arranged on the rack assembly 100, the rack assembly 100 further has a feeding position between the first working position and the second working position, and the second driving assembly 400 is arranged corresponding to the feeding position and is used to drive the first clamping end 3111 to move away from the second clamping end 3121.
[0081] In the technical scheme, the cloth tape conveying device further comprises a second driving assembly 400 arranged on the rack assembly 100, and the second driving assembly 400 is arranged corresponding to the feeding position of the rack assembly 100. It can be understood that the feeding position is located between the first working position and the second working position, so that the feeding position is within the movement range of the clamp assembly 300. In actual application, the second driving assembly 400 can drive the first clamping end 3111 of the first pressing plate 311 to move close to or away from the second clamping end 3121 of the second pressing plate 312. Thus, when the clamping piece 310 corresponds to the feeding position, the second driving assembly 400 can drive the first clamping end 3111 to move away from the second clamping end 3121, so as to form a larger gap between the first clamping end 3111 and the second clamping end 3121, thereby facilitating the insertion of the to-be-processed cloth tape 10' between the first clamping end 3111 and the second clamping end 3121. When the to-be-processed cloth tape 10' is located between the first clamping end 3111 and the second clamping end 3121, the second driving assembly 400 can further drive the first clamping end 3111 to move close to the second clamping end 3121, so that the first clamping end 3111 and the second clamping end 3121 abut the different sides of the to-be-processed cloth tape 10' respectively, thereby achieving clamping of the to-be-processed cloth tape 10'. Further, based on the arrangement of the second driving assembly 400, the clamping convenience of the to-be-processed cloth tape 10' is further improved, which provides further favorable conditions for improving the automation level of the cloth tape conveying device, and helps to further reduce the labor cost in the cloth tape conveying operation.
[0082] As shown in Figure 2 and Figure 7 In some examples, the second driving assembly 400 comprises: a second driving piece 410 arranged on the rack assembly 100; and a third driving piece 420 arranged on the second driving piece 410, and the second driving piece 410 is configured to drive the third driving piece 420 to move close to or away from the first pressing plate 311 when the clamping piece 310 corresponds to the feeding position. The third driving piece 420 is configured to abut the first pressing plate 311 to provide a driving force for the first pressing plate 311 to move the first clamping end 3111 away from the second clamping end 3121.
[0083] In the technical solution, the second driving assembly 400 can include a second driving member 410 and a third driving member 420, wherein the second driving member 410 is arranged on the rack assembly 100, the third driving member 420 is arranged on the second driving member 410 and can move under the driving of the second driving member 410, the third driving member 420 is used for abutting against the first pressing plate 311 of the clamping member 310 and is used for providing the first pressing plate 311 with a driving force for moving the first clamping end 3111 away from the second clamping end 3121, and the second driving member 410 is used for driving the third driving member 420 to move close to or away from the first pressing plate 311 when the clamping member 310 corresponds to the feeding position, so that, based on the foregoing arrangement, the third driving member 420 can be driven by the second driving member 410 to abut against the first pressing plate 311 to drive the first clamping end 3111 to move close to or away from the second clamping end 3121, and correspondingly, the third driving member 420 can also be driven by the second driving member 410 to move away from the first pressing plate 311 after the clamping member 310 clamps the to-be-processed fabric belt 10', so as to avoid the third driving member 420 from interfering with the movement of the clamping member 310, thereby facilitating to further improve the automation level of the fabric belt conveying device, reduce the manual participation in the fabric belt transfer operation, and improve the execution efficiency of the fabric belt transfer operation.
[0084] As shown in Figure 1 , Figure 2 , Figure 8 and Figure 9 , in some examples, the fabric belt conveying device further includes a guide member 500 arranged on the rack assembly 100, the guide member 500 is formed with a guide wall 501, the rack assembly 100 further has a feeding position between the first working position and the second working position, a first end of the guide wall 501 is located between the feeding position and the first working position, a second end of the guide wall 501 is arranged corresponding to the feeding position, and the guide wall 501 is used for abutting against the operation end 3112 of the first pressing plate 311; wherein the distance between the first clamping end 3111 and the second clamping end 3121 increases with the decrease of the distance between the clamping member 310 and the second end.
[0085] In the technical solution, the tape conveying device can further include a guide piece 500 arranged on the rack assembly 100, the guide piece 500 has a guide wall 501 for abutting the operating end 3112 of the first pressing plate 311, the first end of the guide wall 501 is located between the unloading position and the first working position of the rack assembly 100, and the second end of the guide wall 501 is arranged corresponding to the unloading position. It can be understood that the unloading position is located between the first working position and the second working position, so that the feeding position is within the movement range of the clamp assembly 300. During the abutting and movement of the operating end 3112 relative to the guide wall 501, the distance between the first clamping end 3111 and the second clamping end 3121 increases with the decrease of the distance between the clamping piece 310 and the second end. That is, under the pressing action of the guide wall 501 on the operating end 3112, the first pressing plate 311 can rotate relative to the second pressing plate 312, and as the distance between the clamping piece 310 and the second end of the guide wall 501 decreases, the first clamping end 3111 will be increasingly away from the second clamping end 3121, thereby forming a larger gap between the first clamping end 3111 and the second clamping end 3121 when the clamping piece 310 corresponds to the unloading position, facilitating the separation of the to-be-processed tape 10' from the clamping piece 310, improving the operation convenience and automation level when the clamp assembly 300 unloads, and being beneficial to further reducing the manual participation in the tape transfer operation and ensuring the quality of the tape.
[0086] It can be understood that the cooperation relationship between the operating end 3112 and the guide piece 500 is similar to the relationship between the follower and the cam in the cam mechanism, and accordingly, the specific form of the guide wall 501 can be set according to actual needs, for example, it can be a planar form or a curved form, which is not limited here.
[0087] It can be understood that, as shown in Figure 6 , the operating end 3112 of the first pressing plate 311 can form a protruding structure for abutting the guide wall 501, and the surface of the protruding structure for abutting the guide wall 501 can be a convex curved surface, thereby facilitating the reduction of the contact area between the operating end 3112 and the guide wall 501, and further reducing the wear of the guide piece 500 and the first pressing plate 311 in actual application, thereby prolonging the service life of the clamping piece 310 and the guide piece 500 and reducing the maintenance cost of the tape conveying device.
[0088] In some examples, the guide piece 500 is made of steel.
[0089] In the technical solution, the guide piece 500 can be made of steel, so that the guide piece 500 can have good hardness and wear resistance, thereby prolonging the service life of the guide piece 500.
[0090] In some feasible examples, the guide 500 can be made of high-quality alloy steel, and in actual applications, the surface of the guide 500 can be subjected to hardening treatment to further improve the hardness and wear resistance of the guide 500.
[0091] In some examples, the rack assembly 100 is made of aluminum material.
[0092] In this technical solution, the rack assembly 100 can be made of aluminum material, thereby facilitating to improve the lightweight level of the rack assembly 100 and to improve the aesthetics of the rack assembly 100.
[0093] In some feasible examples, the rack assembly 100 can include a rack body and a shell, the shell covering the rack body, wherein the rack body is made of aluminum alloy profile material, and the shell is made of aluminum plastic plate, thereby facilitating to further improve the overall stability of the rack assembly 100 while improving the aesthetics of the rack assembly 100.
[0094] According to a first aspect of the embodiments of the present disclosure, a cloth processing equipment is provided, which comprises the cloth tape conveying device according to any one of the first aspect.
[0095] The cloth processing equipment provided by the present disclosure comprises the cloth tape conveying device according to any one of the first aspect, which comprises a rack assembly 100, a first driving assembly 200, and a clamp assembly 300, wherein the first driving assembly 200 is used to drive the clamp assembly 300 to move between a first working position and a second working position of the rack assembly 100, and the clamp assembly 300 has a plurality of clamping pieces 310, which can be used to clamp the cloth tape to be processed in actual applications, so that when the clamping pieces 310 are clamped with the cloth tape 10' to be processed, the cloth tape conveying device can drive the clamp assembly 300 to move through the first driving assembly 200, so that the cloth tape to be processed 10' moves synchronously with each clamping piece 310, realizing the transfer of the cloth tape position, which facilitates to reduce the manual operation in the cloth tape transfer operation, thereby improving the production efficiency.
[0096] In practical applications, the plurality of clamping members 310 can be used to clamp different positions of the to-be-processed fabric belt 10' in the length direction, respectively, so that, during the fabric belt conveying process, on the one hand, the to-be-processed fabric belt 10' can be unfolded along the length direction, the possibility of winding of the fabric belt during the transfer process is reduced, and the fabric belt can be conveniently conveyed to the process equipment for processing and handling, on the other hand, the fixture assembly 300 can also fix the posture of the fabric belt during the conveying process by clamping different positions in the length direction of the fabric belt, and during the process of driving the clamping assembly to move by the first driving assembly 200, the to-be-processed fabric belt 10' can maintain high posture stability, thereby reducing the tensile force suffered by the to-be-processed fabric belt 10', avoiding large deformation of the fabric belt during the transfer process, reducing the probability of quality problems such as misalignment and belt breakage of the to-be-processed fabric belt, being beneficial to improve the production quality of the fabric belt, improve the yield rate of the fabric belt processing, reduce the production cost of the fabric belt, and help to improve the production level of the fabric belt.
[0097] In some feasible examples, the fabric processing equipment can also include a cutting device and a hot pressing device, wherein the cutting device is used to cut the fabric into the to-be-processed fabric belt 10', and the hot pressing device is used to hot press the to-be-processed fabric belt 10' to sequentially connect a plurality of to-be-processed fabric belts 10'. The cutting device and the hot pressing device can be arranged close to the fabric belt conveying device, so as to facilitate the fabric belt conveying device to receive the to-be-processed fabric belt 10' and convey the to-be-processed fabric belt 10' to the hot pressing device.
[0098] In addition, since the fabric processing equipment provided by the present disclosure includes the fabric belt conveying device as proposed in any one of the above first aspects, it has all the beneficial effects of the fabric belt conveying device, which will not be repeated here.
[0099] In the present disclosure, the terms "first", "second", "third" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance; the term "plurality" refers to two or more, unless otherwise explicitly limited. The terms "mounting", "connecting", "connecting", "fixing" and the like should be broadly understood, for example, "connecting" can be fixed connection, or detachable connection, or integrally connected; "connected" can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances.
[0100] In the description of the present disclosure, it should be understood that the terms "upper", "lower", "left", "right", "front", "back" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present disclosure and simplifying the description, and do not indicate or imply that the devices or units referred to must have a particular direction, be constructed and operated in a particular orientation, therefore, cannot be understood as a limitation on the present disclosure.
[0101] In the description of the disclosure, the description of the terms "one embodiment", "some embodiments", "a specific embodiment", etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the disclosure. In the description of the disclosure, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0102] The above is only the preferred embodiment of the disclosure, and is not intended to limit the disclosure. For those skilled in the art, the disclosure can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the disclosure shall be included in the protection scope of the disclosure.
Claims
1. A tape conveying device characterized by comprising: The utility model relates to a kind of cloth belt processing device, including: Rack assembly, with first working position and second working position; First drive assembly, provided in the rack assembly; Clamp assembly, provided in the first drive assembly, the first drive assembly is used to drive the clamp assembly moves between the first working position and the second working position; Wherein, the clamp assembly includes a plurality of clamping pieces, a plurality of the clamping pieces are used to clamp the different positions of the length direction of the cloth belt to be processed respectively; The first drive assembly includes: First drive, provided in the rack assembly; First pulley, connected to the first drive, the first drive is used to drive the first pulley rotation; Second pulley, rotationally provided in the rack assembly, the second pulley is arranged with the first pulley; Transmission belt, around the first pulley and the second pulley, the clamp assembly is provided in the transmission belt; Wherein, a plurality of the clamping pieces are arranged along the extension direction of the transmission belt; The first drive assembly further includes: Guide rail, provided in the rack assembly, around the transmission belt arrangement; A plurality of connecting pieces, provided in the transmission belt, a plurality of the connecting pieces are arranged along the extension direction of the transmission belt, each connecting piece is connected to a clamping piece; A plurality of pulleys, rotationally connected to the connecting piece, the pulley is movably provided in the guide rail; The connecting piece includes connecting block and connecting plate, the connecting plate is used to be provided in the connecting block, the connecting block is provided in the transmission belt, the pulley and the clamping piece are provided in the connecting plate; Wherein, at least one of at least two pulleys corresponding to each connecting piece is movably arranged on the outer circumferential wall of the guide rail, and at least one of at least two pulleys corresponding to each connecting piece is movably arranged on the inner circumferential wall of the guide rail, to improve the support stability of the guide rail to the pulley, the connecting piece and the clamp assembly, reduce the load borne by the transmission belt during movement.
2. The belt conveyor according to claim 1, characterized in that The clamping piece includes: First pressing plate, provided in the first drive assembly, with first clamping end; Second pressing plate, hinged to the first pressing plate, with second clamping end, the second clamping end is arranged corresponding to the first clamping end, the first clamping end and the second clamping end are used to abut on different sides of the cloth belt to be processed to clamp the cloth belt to be processed; Elastic member, connected to the first pressing plate, for applying driving force to the first pressing plate, so that the first clamping end is close to the second clamping end.
3. The belt conveyor according to claim 2, characterized in that Further including: Second drive assembly, provided in the rack assembly, the rack assembly also has feeding position between the first working position and the second working position, the second drive assembly is arranged corresponding to the feeding position, for driving the first clamping end away from the second clamping end.
4. The belt conveyor according to claim 3, characterized in that The second drive assembly includes: Second drive, provided in the rack assembly; Third drive, provided in the second drive, in the case that the clamping piece corresponds to the feeding position, the second drive is used to drive the third drive close to or away from the first pressing plate; The third driving member is arranged to abut against the first pressing plate to provide a driving force for the first pressing plate to move the first clamping end away from the second clamping end.
5. The belt conveyor according to claim 2, characterized in that Further comprising: A guide member is arranged in the frame assembly, the guide member is formed with a guide wall, the frame assembly further has a blanking position between the first working position and the second working position, a first end of the guide wall is located between the blanking position and the first working position, a second end of the guide wall is arranged corresponding to the blanking position, and the guide wall is arranged to abut against the operating end of the first pressing plate. The distance between the first clamping end and the second clamping end increases as the distance between the clamping member and the second end decreases.
6. The tape conveying device according to claim 5, wherein The guide member is made of steel.
7. The tape conveying device according to any one of claims 1 to 6, wherein The frame assembly is made of aluminum.
8. A cloth processing apparatus characterized by comprising: Further comprising: The tape conveying device according to any one of claims 1 to 7.
Citation Information
Patent Citations
Cloth belt transmission mechanism
CN102730460A
Anti-deformation cloth feeding device
CN212126965U
Paper clamping, moving and loosening device
CN215248568U