Feeding seat for processing cloth pockets
By designing a multi-directional moving feeder, the problems of single-direction movement and interference in fabric bag processing equipment are solved, achieving more efficient fabric processing and space utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-03-27
AI Technical Summary
The existing fabric bag processing equipment has a single direction of material movement in its feeding structure, resulting in limited functionality and easy interference with other components, requiring manual intervention.
Design a material feeding seat that includes a first transverse transport structure, a second transverse transport structure and a third transverse transport structure. It adopts a combination structure of slider, slide rail, lead screw and power module to realize multi-directional movement, avoid interference and improve space utilization.
It enables multi-directional movement in fabric bag processing, enhances process flexibility, avoids interference between equipment, and improves space utilization and movement accuracy.
Smart Images

Figure CN224047665U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cloth processing equipment field, especially a kind of for cloth pocket processing's material seat. BACKGROUND
[0002] In the preparation process of ready-made clothes, the pocket part usually needs to be processed, first needs to cut open pocket, then according to the process requirement, the opening part is edge stitched or the opening part is sewn on zipper component etc.In modern efficient cloth pocket processing process, usually need to help automated equipment, such as the content shown in the patent with the application publication number CN111575926A.But in the existing cloth pocket processing equipment, its material moving structure can usually only move in single direction, that is, cloth opening pocket is transported to below sewing machine or is transported away from sewing machine, the movement direction is single, leading to its single function;And material moving structure is easy to interfere with other components in space when moving, at this time, it needs to rely on manual cloth transfer, more cumbersome.Therefore, a kind of for cloth pocket processing's material seat with multidirectional movement is needed. SUMMARY
[0003] The utility model aims at solving the prior art's insufficient, provide a kind of for cloth pocket processing's material seat.
[0004] To solve the above problem, the utility model adopts the following scheme:
[0005] A kind of for cloth pocket processing's material seat, including the processing table for supporting and processing cloth and the material table for conveying cloth, further include first horizontal transport structure, second horizontal transport structure and third horizontal transport structure;Wherein second horizontal transport structure is fixedly arranged on the first slider of first horizontal transport structure;Third horizontal transport structure is fixedly arranged on the second slider of second horizontal transport structure;The movement direction of first horizontal transport structure is X direction in horizontal plane, and the movement direction of second horizontal transport structure and third horizontal transport structure is Y direction in horizontal plane;X direction and Y direction are set angle interval;Second slider of second horizontal transport structure is provided with support piece in vertical direction, and the upper end of support piece is fixedly provided with third horizontal transport structure;Processing table includes support structure and processing structure;Support structure is fixedly arranged on the upper end of support piece, and support structure is used to support and flatten cloth;Processing structure is fixedly arranged on the third slider of third horizontal transport structure, and processing structure is used to process cloth according to set process;Processing structure is located above support structure.
[0006] Furthermore, the first transverse transport structure also includes a first lead screw, a first power module, and a first slide rail; wherein the first slider is slidably disposed on the first slide rail, the first power module is fixedly disposed on the first slide rail, the first power module is also connected to the first lead screw in a transmission connection, so that the first lead screw can rotate with the first power module; the first lead screw is also connected to the first slider in a transmission connection.
[0007] Furthermore, the second transverse transport structure also includes a second lead screw, a second power module, and a second slide rail; wherein the second slider is slidably disposed on the second slide rail, the second power module is fixedly disposed on the second slide rail, the second power module is also connected to the second lead screw in a transmission connection, so that the second lead screw can rotate with the second power module; the second lead screw is also connected to the second slider in a transmission connection; a vertical plate-shaped support is fixedly disposed above the second slider.
[0008] Furthermore, a first position sensor is fixedly installed on the side of the first slider; and a corresponding first detection plate is installed on the side of the second slider.
[0009] Furthermore, the support member is generally square in shape, and a support plate or support block is provided near the bottom of the second slider to enhance the support capacity.
[0010] Furthermore, the support plate or support block is disposed in the support member on the side facing the processing table.
[0011] Furthermore, the third transverse transport structure also includes a third lead screw, a third power module, and a third slide rail; wherein the third slide rail is fixedly mounted on the upper end of the support member and is arranged parallel to the second slide rail; the third slider is slidably mounted on the third slide rail; the third power module is fixedly mounted on the third slide rail and is also connected to the third lead screw for transmission, so that the third lead screw can rotate with the rotation of the third power module; the third lead screw is also connected to the third slider for transmission.
[0012] Furthermore, a second position sensor is provided on the third slide rail, and a corresponding second detection plate is fixedly provided on the third slider.
[0013] Furthermore, the material conveying platform includes a fourth transverse conveying structure and a fifth transverse conveying structure, wherein the fourth transverse conveying structure moves in the X direction in the horizontal plane, and the fifth transverse conveying structure moves in the Y direction in the horizontal plane; the fifth transverse conveying structure is fixedly mounted on the fourth slider of the fourth transverse conveying structure; and an exchange plate for carrying and alternately conveying the fabric is fixedly mounted on the fifth transverse conveying structure.
[0014] Furthermore, both the fourth and fifth lateral transport structures employ a motion structure consisting of a lead screw and a power module.
[0015] The utility model discloses the beneficial effect is:
[0016] Through being provided with first horizontal transportation structure, second horizontal transportation structure and third horizontal transportation structure, realize the multidirectional displacement of the support structure and processing structure in the horizontal plane in processing platform, can realize more process, and have greater transportation and processing space, and effectively avoid the interference between other cloth processing equipment, improve space utilization rate.
[0017] Through being provided with first horizontal transportation structure, second horizontal transportation structure and third horizontal transportation structure all adopt the transportation structure of slider, slide rail, screw and power module, on the one hand can realize the start and stop of multiple positions, on the other hand guarantee its movement position accuracy. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the whole structure except the material conveying platform of example 1 Figure 1 ;
[0019] Figure 2 It is the whole structure except the material conveying platform of example 1 Figure 2 ;
[0020] Figure 3 It is the whole structure except the material conveying platform of example 1 Figure 3 ;
[0021] Figure 4 It is the material conveying platform schematic drawing of example 1.
[0022] Brief description of drawings: processing platform 1, support structure 11, processing structure 12, material conveying platform 2, fourth horizontal transportation structure 21, fifth horizontal transportation structure 22, first horizontal transportation structure 3, first slider 31, first power module 33, first position sensor 35, first detection plate 36, second horizontal transportation structure 4, second slider 41, second screw 42, second power module 43, second slide rail 44, support piece 45, third horizontal transportation structure 5, third slider 51, third screw 52, third power module 53, third slide rail 54, second position sensor 55, second detection plate 56. DETAILED DESCRIPTION
[0023] The following through specific concrete example explains the embodiment of the utility model, and the person skilled in the art can easily understand other advantages and effects of the utility model from the content disclosed in the specification. The utility model can also be implemented or applied by another different specific embodiment, and each detail in the specification can be based on different viewpoints and applications, and various modifications or changes can be made without departing from the spirit of the utility model. It should be noted that the following examples and features in the examples can be combined with each other without conflict.
[0024] It should be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of the present invention. Therefore, the figures only show the components related to the present invention and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.
[0025] Example 1:
[0026] like Figures 1-4 As shown, a material feeding station for processing fabric pockets includes a processing table 1 for supporting and processing fabric and a conveying table 2 for transporting fabric. The conveying table is positioned corresponding to the processing table, with the conveying table located below the processing table. In this example, the processing table 1 is used to fold the fabric that has already been laser-cut into a pocket, that is, to fold the edge of the pocket opening to achieve edge binding. The material feeding station also includes a first transverse transport structure 3, a second transverse transport structure 4, and a third transverse transport structure 5. The second transverse transport structure 4 is fixedly mounted on the first slider 31 of the first transverse transport structure 3. The third transverse transport structure 5 is fixedly mounted on the second slider 41 of the second transverse transport structure 4. The movement direction of the first transverse transport structure 3 is the X direction in the horizontal plane. The movement directions of the second transverse transport structure 4 and the third transverse transport structure 5 are both in the Y direction in the horizontal plane; the X direction and the Y direction are separated by a set angle, which is 90 degrees in this example; a vertical support member 45 is provided on the second slider 41 of the second transverse transport structure 4, and the third transverse transport structure 5 is fixedly provided on the upper end of the support member 45; the processing table 1 includes a support structure 11 and a processing structure 12; the support structure 11 is fixedly provided on the upper end of the support member 45, and the support structure 11 is used to support and flatten the fabric; the processing structure 12 is fixedly provided on the third slider 51 of the third transverse transport structure 5, and the processing structure 12 is used to process the fabric according to the set process; the processing structure 12 is located above the support structure 11. When the third transverse transport structure 5 is activated, it can control the processing structure 12 in the processing table 1 to move directly above the support structure 11, or make the processing structure 12 move away from the support structure 11 in the Y direction, so as to avoid interference when the support structure 11 transports the fabric to other parts for processing; in addition, a second transverse transport structure 4 is also provided, so that the processing table 1 has a wider range of movement space and can transport the fabric between more processing equipment.
[0027] The first transverse transportation structure 3 further comprises a first screw rod, a first power module 33 and a first slide rail. The first slide block 31 is slidingly arranged on the first slide rail. The first power module 33 is fixedly arranged on the first slide rail. The first power module 33 is further in transmission connection with the first screw rod, so that the first screw rod can rotate along with the first power module 33. The first screw rod is further in transmission connection with the first slide block 31. In this embodiment, the first power module, the first slide rail and the first screw rod are in the form of a module. It should be noted that, in this application, a servo motor is used as the power module, which facilitates the control of the rotation process of the screw rod and further controls the accurate position of the slide block on the slide rail.
[0028] The second transverse transportation structure 4 further comprises a second screw rod 42, a second power module 43 and a second slide rail 44. The second slide block 41 is slidingly arranged on the second slide rail 44. The second power module 43 is fixedly arranged on the second slide rail 44. The second power module 43 is further in transmission connection with the second screw rod 42, so that the second screw rod 42 can rotate along with the second power module 43. The second screw rod 42 is further in transmission connection with the second slide block 41. A vertical plate-shaped support 45 is fixedly arranged above the second slide block 41. By arranging the support 45, a height difference is formed between the third transverse transportation structure 5 and the second transverse transportation structure 4. When the third transverse transportation structure 5 is located on the desktop, the second transverse transportation structure 4 can be hidden inside the desktop. By arranging them in different height spaces, the overall space utilization is improved.
[0029] A first position sensor 35 is fixedly arranged on the side surface of the first slide block 31. A first detection plate 36 corresponding to the first position sensor 35 is arranged on the side surface of the second slide block 41.
[0030] The support 45 is in the form of a square plate. The bottom of the support 45 close to the second slide block 41 is further provided with a support plate or a support block for strengthening the supporting capacity. The support plate or the support block is arranged on the side of the support 45 facing the machining table 1. Because the side provided with the machining table 1 has a greatly increased weight, the support plate or the support block is needed to support it to prevent the support 45 from tilting or bending. The support 45 has a certain thickness. The upper end of the support 45 is provided with a plug-in hole for plugging the base of the third transverse transportation structure 5. The third transverse transportation structure 5 is fixedly arranged on the base. After the base is inserted into the plug-in hole, the plug-in hole and the threaded hole are matched to fix the support 45 and the base. This makes the movement process of the third transverse transportation structure 5 more stable and reliable, avoiding the displacement of the machining table 1 due to movement vibration.
[0031] The third transverse transportation structure 5 further comprises a third screw rod 52, a third power module 53 and a third slide rail 54; the third slide rail 54 is fixedly arranged at the upper end of the support 45, and the third slide rail 54 is arranged in parallel with the second slide rail 44; the third slide block 51 is slidingly arranged on the third slide rail 54; the third power module 53 is fixedly arranged with the third slide rail 54, and the third power module 53 is further transmissionally connected with the third screw rod 52, so that the third screw rod 52 can rotate along with the third power module 53; the third screw rod 52 is further transmissionally connected with the third slide block 51. The second position sensor 55 is arranged on the third slide rail 54, and the second detection plate 56 corresponding to the third slide block 51 is fixedly arranged on the third slide block 51.
[0032] The material conveying table 2 comprises a fourth transverse transportation structure 21 and a fifth transverse transportation structure 22; the movement direction of the fourth transverse transportation structure 21 is the X direction in the horizontal plane, and the movement direction of the fifth transverse transportation structure 22 is the Y direction in the horizontal plane; the fifth transverse transportation structure 22 is fixedly arranged on the fourth slide block of the fourth transverse transportation structure 21; and the fifth transverse transportation structure 22 is fixedly arranged with an exchange plate for carrying and alternately transporting the material. In this example, the fourth transverse transportation structure 21 and the fifth transverse transportation structure 22 both adopt the movement structure of slide block, slide rail, screw rod and power module.
[0033] In the implementation process, by arranging the first transverse transportation structure 3, the second transverse transportation structure 4 and the third transverse transportation structure 5, the multi-direction displacement of the support structure 11 and the processing structure 12 in the processing table 1 in the horizontal plane is realized, more processes can be realized, the transportation and processing space is larger, the interference with other material processing equipment is effectively avoided, and the space utilization rate is improved; by arranging the first transverse transportation structure 3, the second transverse transportation structure 4 and the third transverse transportation structure 5 to adopt the transportation structure of screw rod and power module, on the one hand, the start and stop of multiple positions can be realized, and on the other hand, the position accuracy of movement is ensured.
[0034] The above description is only one specific example of the present application and does not constitute any limitation on the present application. Obviously, for those skilled in the art, after understanding the content and principle of the present application, various modifications and changes in form and details can be made without departing from the principle and structure of the present application, but these modifications and changes based on the idea of the present application are still within the protection scope of the claims of the present application.
Claims
1. A fabric walking frame for fabric pocket processing, comprising a processing table (1) for supporting and processing fabric and a fabric conveying table (2) for conveying fabric, characterized in that, Further comprising a first transverse transport structure (3), a second transverse transport structure (4) and a third transverse transport structure (5); wherein the second transverse transport structure (4) is fixedly arranged on the first sliding block (31) of the first transverse transport structure (3); the third transverse transport structure (5) is fixedly arranged on the second sliding block (41) of the second transverse transport structure (4); the movement direction of the first transverse transport structure (3) is the X direction in the horizontal plane, and the movement direction of the second transverse transport structure (4) and the third transverse transport structure (5) are both the Y direction in the horizontal plane; the X direction and the Y direction are arranged at an angle; the second sliding block (41) of the second transverse transport structure (4) is provided with a support (45) in the vertical direction, and the upper end of the support (45) is fixedly provided with the third transverse transport structure (5); the processing table (1) comprises a support structure (11) and a processing structure (12); the support structure (11) is fixedly arranged on the upper end of the support (45), and is used for supporting and flattening the cloth; the processing structure (12) is fixedly arranged on the third sliding block (51) of the third transverse transport structure (5), and is used for processing the cloth according to the set process; the processing structure (12) is located above the support structure (11).
2. A fabric pocket processing walkway according to claim 1, wherein, The first transverse transport structure (3) further comprises a first lead screw (32), a first power module (33) and a first sliding rail (34); wherein the first sliding block (31) is slidingly arranged on the first sliding rail (34), the first power module (33) is fixedly arranged with the first sliding rail (34), and the first power module (33) is further transmissionally connected with the first lead screw (32), so that the first lead screw (32) can rotate with the first power module (33); the first lead screw (32) is further transmissionally connected with the first sliding block (31).
3. A walking beam for pocketing of fabric according to claim 1, wherein, The second transverse transport structure (4) further comprises a second lead screw (42), a second power module (43) and a second sliding rail (44); wherein the second sliding block (41) is slidingly arranged on the second sliding rail (44), the second power module (43) is fixedly arranged with the second sliding rail (44), and the second power module (43) is further transmissionally connected with the second lead screw (42), so that the second lead screw (42) can rotate with the second power module (43); the second lead screw (42) is further transmissionally connected with the second sliding block (41); a vertical plate-shaped support (45) is fixedly arranged above the second sliding block (41).
4. A fabric pocket processing walk according to claim 2, wherein, The side surface of the first sliding block (31) is further fixedly provided with a first position sensor (35); a first detection plate (36) corresponding to the second sliding block (41) is arranged on the side surface of the second sliding block (41).
5. A fabric pocket processing walk according to claim 3, wherein, The support (45) is a square plate as a whole, and the bottom of the support (45) close to the second sliding block (41) is further provided with a support plate or a support block for strengthening the supporting capacity.
6. A feed bar as claimed in claim 5, wherein, The support plate or the support block is arranged on the side of the support (45) facing the processing table (1).
7. A feedway according to claim 3, wherein, The third transverse transportation structure (5) further comprises a third screw rod (52), a third power module (53) and a third slide rail (54); the third slide rail (54) is fixedly arranged at the upper end of the support (45), and the third slide rail (54) is arranged in parallel with the second slide rail (44); the third sliding block (51) is slidingly arranged on the third slide rail (54); the third power module (53) is fixedly arranged with the third slide rail (54), and the third power module (53) is further transmissionally connected with the third screw rod (52), so that the third screw rod (52) can rotate with the third power module (53); and the third screw rod (52) is further transmissionally connected with the third sliding block (51).
8. A feedway according to claim 7, wherein, The third slide rail (54) is provided with a second position sensor (55), and the third sliding block (51) is fixedly provided with a second detection plate (56) corresponding to the third sliding block (51).
9. A feedway according to claim 1, wherein, The material conveying table (2) comprises a fourth transverse transportation structure (21) and a fifth transverse transportation structure (22), wherein the movement direction of the fourth transverse transportation structure (21) is the X direction in the horizontal plane, and the movement direction of the fifth transverse transportation structure (22) is the Y direction in the horizontal plane; the fifth transverse transportation structure (22) is fixedly arranged on the fourth sliding block of the fourth transverse transportation structure (21); and the fifth transverse transportation structure (22) is fixedly provided with an exchange plate for carrying and alternately transporting the materials.
10. A feedway according to claim 9, wherein, The fourth transverse transportation structure (21) and the fifth transverse transportation structure (22) both adopt the movement structure of sliding block, slide rail, screw rod and power module.
Citation Information
Patent Citations
Pocket-hole sewing machine for clothing pocket mouth processing
CN111575926A