Material processing and transferring device

By designing a material processing and transfer device and utilizing the coordinated work of lifting and horizontal and vertical drive components, efficient fabric transfer is achieved, solving the problem of waiting for processing in sewing equipment and improving processing efficiency.

CN223409847UActive Publication Date: 2025-10-03ZHEJIANG LINGRUI SEWING MASCH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422740246.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-09
Publication Date
2025-10-03
Estimated Expiration
2034-11-09

AI Technical Summary

Technical Problem

During the fabric sewing process, existing sewing equipment needs to wait until the previous piece of fabric is finished before placing the next piece of fabric, resulting in a waste of time and low processing efficiency.

Method used

A material processing and transfer device is designed, which includes a frame, a material placement platform, a transfer frame, a lifting drive unit, a transverse drive unit and a longitudinal drive unit. The device can realize efficient material transfer through coordinated action, allowing the next piece of cloth to be placed while the previous piece of cloth is being processed.

Benefits of technology

The processing efficiency is improved, and the operator can manage multiple devices at the same time and only needs to place the materials flatly, which significantly improves production efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223409847U_ABST
    Figure CN223409847U_ABST
Patent Text Reader

Abstract

The utility model provides a material processing and transferring device. The device is beneficial for improving the whole machining efficiency. In order to solve the technical problem, the technical scheme of the utility model is as follows: the device comprises a rack, and a material processing part and a material placing platform are arranged on the rack; a placing area and a transferring area are arranged on the material processing platform, and the material processing part is located on one side of the transferring area; the material transferring device further comprises a transferring frame body, a lifting driving part, a lifting plate, a transverse driving part and a longitudinal driving part, the lifting plate is located above the material containing platform, the lifting driving part is used for driving the lifting plate to move towards the side close to or away from the material containing platform, and materials can be pressed between the lifting plate and the material containing platform; the longitudinal driving part is used for driving the transferring frame body to move back and forth between the placing area and the transferring area, and the transverse driving part is used for driving the transferring frame body to move back and forth between the transferring area and the material processing part.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to a material transfer device, in particular to a material processing and transfer device. Background Art

[0002] Currently, sewing equipment for fabrics typically combines a sewing machine with a fabric placement board. The sewing machine, which performs the main processing, is mounted on the fabric placement board, which can be larger. The operator places the first piece of fabric in a batch flat on the board and manually pushes it into the sewing head position of the sewing machine, where it begins sewing.

[0003] Although the sewing machine structure described above can achieve simple fabric sewing, in actual operation, the first piece of fabric must first be placed flatly on the sewing head of the sewing machine. The sewing machine then gradually sews the first piece of fabric. After a period of sewing, the first piece of fabric is dragged from the fabric placement plate to the other side. Before this, the first piece of fabric continues to occupy the surface of the fabric placement plate, and during this time, the operator is unable to place the second piece of fabric flatly on the fabric placement plate, resulting in significant time waste and poor processing efficiency. Utility Model Content

[0004] In view of this, an object of the present invention is to provide a material processing and transfer device to help improve the overall processing efficiency.

[0005] In order to solve the above technical problems, the technical solution of the utility model is:

[0006] A material processing and transferring device comprises a frame on which a material processing portion and a material placement platform are mounted;

[0007] The material placement platform is provided with a placement area and a transfer area, and the material processing unit is located on one side of the transfer area;

[0008] It also includes a transfer frame, a lifting drive unit, a lifting plate, a transverse drive unit, and a longitudinal drive unit. The lifting plate is located above the material placement platform. The lifting drive unit is used to drive the lifting plate to move closer to or away from the material placement platform. The material can be pressed between the lifting plate and the material placement platform. The longitudinal drive unit is used to drive the transfer frame to move back and forth between the placement area and the transfer area. The transverse drive unit is used to drive the transfer frame to move back and forth between the transfer area and the material processing unit.

[0009] With the above technical solution, the operator can first place the first piece of material in the placement area. The longitudinal drive unit moves the lifting plate to the upper position of the placement area. The lifting drive unit drives the lifting plate down, and the material is pressed between the lifting plate and the material placement platform. The longitudinal drive unit drives the lifting plate to move to the transfer area, and the first piece of material is also moved into the transfer area.

[0010] At this point, the operator can place the second piece of material flatly in the placement area;

[0011] The transverse drive unit drags the material in the transfer area to the material processing unit for processing. Through the coordinated action of the transverse drive unit and the longitudinal drive unit, the lifting plate will move back to the placement area. The lifting plate can drag the second material to the transfer area, and so on.

[0012] Compared with traditional processing equipment, the above-mentioned processing transfer device does not need to wait for the processing of the previous material. After the first material is removed, the second material can be placed directly, which has high operating efficiency. In addition, it is worth mentioning that when an operator operates two machines at the same time, he only needs to continuously place the materials flatly, which doubles the processing efficiency.

[0013] Preferably, the transverse driving portion includes a transverse driving component and a transverse driving platform. The transverse driving platform is connected to the frame in a transverse sliding manner. The transverse driving component is used to drive the transverse driving platform to slide. The transfer frame is installed on the transverse driving platform.

[0014] Through the above technical solution, the transverse drive assembly can directly drive the transverse drive platform to move, and the transverse drive platform directly drives the entire transfer frame to move, with high movement stability and high movement efficiency.

[0015] Preferably, the transverse drive assembly includes a transverse drive motor, a transverse drive gear is installed on the output end of the transverse drive motor, a transverse drive rack is installed on the transverse drive platform, and the transverse drive gear and the transverse drive rack are engaged with each other.

[0016] Through the above technical solution, the transverse drive motor can drive the transverse drive gear to rotate, and the transverse drive gear and the transverse drive rack engage with each other, thereby driving the entire transverse drive platform to move, and the movement stability of the transverse drive platform is higher.

[0017] Preferably, the transfer frame is longitudinally slidably connected to the transverse driving platform, and the longitudinal driving portion includes a longitudinal driving component, and the longitudinal driving component is used to drive the transfer frame to slide.

[0018] Through the above technical solution, the transverse drive assembly and the longitudinal drive assembly cooperate with each other to directly and stably drive the entire transfer frame to move forward, backward, left and right, with a highly compact structure.

[0019] Preferably, the longitudinal drive assembly includes a longitudinal drive motor, a longitudinal drive gear is installed on the output end of the longitudinal drive motor, a longitudinal drive rack is installed on the transfer frame, and the longitudinal drive gear and the longitudinal drive rack are engaged with each other.

[0020] Through the above technical solution, the longitudinal drive motor can drive the longitudinal drive gear to rotate, and the longitudinal drive gear and the longitudinal drive rack engage with each other, thereby driving the entire longitudinal drive platform to move, and the movement stability of the longitudinal drive platform is higher.

[0021] Preferably, the lifting drive unit includes a lifting drive cylinder, the lifting drive cylinder is installed on the transfer frame, and the lifting plate is installed on the telescopic end of the lifting drive cylinder.

[0022] Through the above technical solution, the lifting drive cylinder can drive the lifting plate to move up and down, thereby allowing the material to be stably squeezed between the lifting plate and the material processing part.

[0023] Preferably, it further comprises a material straightening part, wherein the material straightening part is located between the transfer area and the material processing part;

[0024] The material straightening part includes a material straightening rotating driving member, a material straightening driving roller, and a material straightening lifting driving member. The material straightening rotating driving member drives the material straightening driving roller to rotate, and the material straightening lifting driving member drives the material straightening driving roller and the material straightening rotating driving member to move up and down.

[0025] The material processing portion is provided with a material inlet on one side close to the transfer zone, and two or more material straightening driving rollers are provided, and the material straightening driving rollers are respectively arranged at both sides of the material inlet.

[0026] Through the above technical solution, when the material is dragged from the transfer area to the feed port by the lifting plate, the material straightening lifting drive member drives the material straightening drive roller and the material straightening rotation drive member to move downward, and the material straightening rotation drive member drives the material straightening drive roller to rotate. The material straightening drive rollers on both sides of the feed port rotate in opposite directions. The material straightening drive rollers installed at this position can straighten the material left and right, thereby improving the quality of subsequent material processing.

[0027] The material straightening lifting drive member drives the material straightening drive roller and the material straightening rotating drive member to move upward to avoid interference with the moving material and the lifting plate; the material straightening lifting drive member drives the material straightening drive roller and the material straightening rotating drive member to move downward, which can effectively enhance the material straightening drive roller to produce a better straightening effect on the material.

[0028] Preferably, straightening bristles are installed on the outer roller surface of the material straightening driving roller.

[0029] Through the above technical solution, the straightening bristles can contact the material near the feed port, which can further improve the material straightening effect; in conjunction with the material straightening lifting drive member to drive the material straightening drive roller and the material straightening rotating drive member to move downward, the straightening bristles have greater resistance to the material and the overall straightening effect is stronger.

[0030] Preferably, the material straightening portion further comprises a material straightening frame, the material straightening rotary driving member is mounted on the material straightening frame, and the material straightening frame is mounted on the material processing portion or the frame.

[0031] The above technical solution can facilitate the overall installation of the material straightening part, and the installation stability is high. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 A schematic diagram of the structure of the embodiment Figure 1 ;

[0033] Figure 2 Schematic diagram of the top view of the embodiment;

[0034] Figure 3 A schematic diagram of the structure of the embodiment Figure 2 ;

[0035] Figure 4 This is a schematic diagram of the structure when the rack, material placement platform, and material processing unit are not installed in the embodiment. Figure 1 ;

[0036] Figure 5 This is a schematic diagram of the structure when the rack, material placement platform, and material processing unit are not installed in the embodiment. Figure 2 .

[0037] Figure markings: 1. Frame; 2. Material processing part; 3. Material placement platform; 4. Placement area; 5. Transfer area; 6. Transfer frame; 7. Lifting drive part; 71. Lifting drive cylinder; 72. Lifting plate; 8. Horizontal drive part; 81. Horizontal drive assembly; 811. Horizontal drive motor; 812. Horizontal drive gear; 813. Horizontal drive rack; 9. Horizontal drive platform; 10. Longitudinal drive part; 101. Longitudinal drive assembly; 1011. Longitudinal drive motor; 1012. Longitudinal drive rack; 1013. Longitudinal drive gear; 11. Material straightening part; 111. Material straightening rotating drive member; 112. Material straightening drive roller; 113. Material straightening lifting drive member; 12. Material straightening frame; 13. Feed inlet; 14. Straightening brush bristles. DETAILED DESCRIPTION

[0038] The specific implementation methods of the present invention are further described below in conjunction with the accompanying drawings to make the technical solutions of the present invention easier to understand and grasp.

[0039] A material processing and transferring device comprises a frame 1.

[0040] See also Figure 1 A material processing unit 2 and a material placement platform 3 are installed on the frame 1.

[0041] The material processing unit 2 can be a sewing machine, and the material processing unit 2 can produce a sewing effect on the material. Of course, the material processing unit 2 can also be other processing equipment.

[0042] See attached Figure 2 And attach Figure 2 For reference orientation, the material placement platform 3 is provided with a placement area 4 and a transfer area 5, wherein the placement area 4 is located above the transfer area 5. The material processing unit 2 is located on the left side of the transfer area 5.

[0043] See also Figure 1 as well as Figure 3 , and also includes a transfer frame 6, a lifting drive unit 7, a lifting plate 72, a horizontal drive unit 8, and a longitudinal drive unit 10.

[0044] Among them, see Figure 1 as well as Figure 2 The transverse driving part 8 is used to drive the transfer frame 6 to move back and forth between the transfer area 5 and the material processing part 2. The transverse driving part 8 includes a transverse driving component 81 and a transverse driving platform 9. The transverse driving platform 9 is connected to the frame 1 in a transverse sliding manner. The transverse driving component 81 is used to drive the transverse driving platform 9 to slide. The transfer frame 6 is installed on the transverse driving platform 9. Figure 2 For reference orientation, the sliding direction of the lateral driving platform 9 is the left and right lateral direction.

[0045] See also Figure 3 as well as Figure 4 In order to improve the stability and accuracy of the lateral drive, the lateral drive component 81 includes a lateral drive motor 811, a lateral drive gear 812 is installed on the output end of the lateral drive motor 811, and a lateral drive rack 813 is installed on the lateral drive platform 9. The lateral drive gear 812 and the lateral drive rack 813 are engaged with each other.

[0046] The above-mentioned transverse drive component 81 can of course also be driven by a motor, a screw, and a screw seat, that is, the screw seat is installed on the transverse drive platform 9, the motor drives the screw to rotate, the screw and the screw seat cooperate with each other, or directly use a common air cylinder or oil cylinder drive form.

[0047] The transfer frame 6 is connected to the transverse drive platform 9 by longitudinal sliding. Figure 2 For reference, when only the longitudinal driving unit 10 drives the transfer frame 6 to move, the sliding direction of the transfer frame 6 is the vertical longitudinal direction.

[0048] See also Figure 1 、 Figure 4 as well as Figure 5 The longitudinal drive unit 10 is used to drive the transfer frame 6 to move back and forth between the placement area 4 and the transfer area 5. The longitudinal drive unit 10 includes a longitudinal drive assembly 101, which is primarily used to drive the transfer frame 6 to slide. Specifically, the longitudinal drive assembly 101 includes a longitudinal drive motor 1011, with a longitudinal drive gear 1013 mounted on the output end of the longitudinal drive motor 1011. A longitudinal drive rack 1012 is mounted on the transfer frame 6, and the longitudinal drive gear 1013 and the longitudinal drive rack 1012 are meshed with each other.

[0049] The above-mentioned transverse drive component 81 can of course also be driven by a motor, a screw, and a screw seat, that is, the screw seat is installed on the transfer frame 6, the motor drives the screw to rotate, the screw and the screw seat cooperate with each other, or directly use a common air cylinder or oil cylinder drive form.

[0050] The lifting plate 72 is positioned above the material placement platform 3. The lifting drive unit 7 is used to drive the lifting plate 72 toward or away from the material placement platform 3. Specifically, the lifting drive unit 7 includes a lifting drive cylinder 71 mounted on the transfer frame 6. The lifting plate 72 is mounted on the telescopic end of the lifting drive cylinder 71. The lifting drive cylinder 71 is driven vertically, allowing materials to be compressed between the lifting plate 72 and the material placement platform 3.

[0051] In addition, it also includes a material straightening portion 11, which is located between the transfer area 5 and the material processing portion 2. The specific position relationship can be seen in Figure 2 The location displayed.

[0052] Among them, see Figure 3 as well as Figure 4 The material straightening section 11 includes a material straightening rotating drive member 111, a material straightening driving roller 112, and a material straightening lifting driving member 113. The material straightening rotating drive member 111 drives the material straightening driving roller 112 to rotate, and the material straightening lifting driving member 113 drives the material straightening driving roller 112 and the material straightening rotating drive member 111 to move up and down. The material processing section 2 is provided with a feed port 13 on one side close to the transfer area 5. There are two or more material straightening driving rollers 112, and the material straightening driving rollers 112 are respectively arranged on both sides of the feed port 13. The number of material straightening driving rollers 112 shown in this embodiment is two, and the two material straightening driving rollers 112 are respectively located on both sides of the feed port 13.

[0053] In order to further improve the material straightening effect, straightening bristles 14 are installed on the outer roller surface of the material straightening driving roller 112.

[0054] The material straightening portion 11 further includes a material straightening frame 12 . The material straightening rotary driving member 111 is mounted on the material straightening frame 12 . The material straightening frame 12 is mounted on the material processing portion 2 or the frame 1 .

[0055] The working principle of the above device is as follows:

[0056] Take an example where an operator operates two of the above-mentioned material processing and transfer devices at the same time.

[0057] The operator places the first piece of material flatly on the placement area 4 of the first material processing and transfer device. The longitudinal drive unit 10 moves the lifting plate 72 to a position above the placement area 4. The lifting drive unit 7 drives the lifting plate 72 downward, and the material is pressed between the lifting plate 72 and the material placement platform 3. The longitudinal drive unit 10 drives the lifting plate 72 to move to the transfer area 5, and the first piece of material is also moved into the transfer area 5. The transverse drive unit 8 drags the material in the transfer area 5 into the material processing unit 2 for processing.

[0058] During this time, the operator can turn around and place the second piece of material flatly on the placement area 4 of the second material processing and transfer device. The longitudinal drive unit 10 moves the lifting plate 72 to a position above the placement area 4. The lifting drive unit 7 drives the lifting plate 72 downward, and the material is pressed between the lifting plate 72 and the material placement platform 3. The longitudinal drive unit 10 drives the lifting plate 72 to move to the transfer area 5, and the second piece of material is also moved into the transfer area 5. The transverse drive unit 8 drags the material in the transfer area to the material processing unit 2 for processing.

[0059] The operator turns around for the second time and places the third piece of material flatly on the placement area 4 of the first material processing and transfer device. The transverse drive unit 8 and the longitudinal drive unit 10 in the first material processing and transfer device cooperate to move the lifting plate 72 back to the placement area 4 and drag the third piece of material in the placement area 4.

[0060] The operator turns around for the third time and places the fourth piece of material flatly on the placement area 4 of the second material processing and transfer device. The transverse drive unit 8 and the longitudinal drive unit 10 in the second material processing and transfer device cooperate to move the lifting plate 72 back to the placement area 4 and drag the fourth piece of material in the placement area 4.

[0061] In this way, the operator can manage at least two devices at the same time, and only needs to continuously place the materials flatly in the placement area 4, which greatly improves the overall processing efficiency.

[0062] Of course, the above are only typical examples of the present invention. In addition, the present invention may have many other specific implementation methods. Any technical solution formed by equivalent replacement or equivalent transformation falls within the scope of protection required by the present invention.

Claims

1. A material processing and transfer device, comprising a frame (1), on which a material processing unit (2) and a material placement platform (3) are mounted, characterized in that: The material placement platform (3) is provided with a placement area (4) and a transfer area (5), and the material processing section (2) is located on one side of the transfer area (5); It also includes a transfer frame (6), a lifting drive unit (7), a lifting plate (72), a transverse drive unit (8), and a longitudinal drive unit (10). The lifting plate (72) is located above the material placement platform (3). The lifting drive unit (7) is used to drive the lifting plate (72) to move toward or away from the material placement platform (3). The material can be pressed between the lifting plate (72) and the material placement platform (3). The longitudinal drive unit (10) is used to drive the transfer frame (6) to move back and forth between the placement area (4) and the transfer area (5). The transverse drive unit (8) is used to drive the transfer frame (6) to move back and forth between the transfer area (5) and the material processing unit (2).

2. The material processing and transfer device according to claim 1, characterized in that: The transverse driving portion (8) comprises a transverse driving component (81) and a transverse driving platform (9). The transverse driving platform (9) is connected to the frame (1) in a transverse sliding manner. The transverse driving component (81) is used to drive the transverse driving platform (9) to slide. The transfer frame (6) is installed on the transverse driving platform (9).

3. The material processing and transfer device according to claim 2, characterized in that: The transverse drive assembly (81) comprises a transverse drive motor (811), a transverse drive gear (812) is mounted on the output end of the transverse drive motor (811), a transverse drive rack (813) is mounted on the transverse drive platform (9), and the transverse drive gear (812) and the transverse drive rack (813) are meshed with each other.

4. The material processing and transfer device according to claim 2, characterized in that: The transfer frame (6) is connected to the transverse drive platform (9) in a longitudinal sliding manner, and the longitudinal drive unit (10) includes a longitudinal drive component (101), and the longitudinal drive component (101) is used to drive the transfer frame (6) to slide.

5. The material processing and transfer device according to claim 4, characterized in that: The longitudinal drive assembly (101) includes a longitudinal drive motor (1011), a longitudinal drive gear (1013) is installed on the output end of the longitudinal drive motor (1011), a longitudinal drive rack (1012) is installed on the transfer frame (6), and the longitudinal drive gear (1013) and the longitudinal drive rack (1012) are meshed with each other.

6. The material processing and transfer device according to claim 1, characterized in that: The lifting drive unit (7) includes a lifting drive cylinder (71), the lifting drive cylinder (71) is installed on the transfer frame (6), and the lifting plate (72) is installed on the telescopic end of the lifting drive cylinder (71).

7. A material processing and transfer device according to any one of claims 1 to 6, characterized in that: It also includes a material straightening portion (11), which is located between the transfer area (5) and the material processing portion (2); The material straightening portion (11) comprises a material straightening rotating driving member (111), a material straightening driving roller (112), and a material straightening lifting driving member (113); the material straightening rotating driving member (111) drives the material straightening driving roller (112) to rotate, and the material straightening lifting driving member (113) drives the material straightening driving roller (112) and the material straightening rotating driving member (111) to move up and down; The material processing portion (2) is provided with a material inlet (13) on one side close to the transfer zone (5), and two or more material straightening drive rollers (112) are provided, and the material straightening drive rollers (112) are respectively arranged at two sides of the material inlet (13).

8. The material processing and transfer device according to claim 7, characterized in that: Straightening brush bristles (14) are installed on the outer roller surface of the material straightening driving roller (112).

9. The material processing and transfer device according to claim 7, characterized in that: The material straightening section (11) further comprises a material straightening frame (12), the material straightening rotary driving member (111) is mounted on the material straightening frame (12), and the material straightening frame (12) is mounted on the material processing section (2) or the frame (1).