Automatic jujube beating and belt cutting machine

By using the tape pressing assembly and cutting conveyor mechanism of the automatic tape cutting machine, the problems of skewed tape cutting and inconsistent lengths have been solved, achieving efficient and accurate automatic cutting, and improving production efficiency and cutting quality.

CN223620613UActive Publication Date: 2025-12-02YINGSHANG MATIAN TEXTILE PROD CHINA ZHONGSHAN
View PDF 0 Cites 1 Cited by

Patent Information

Application Number
CN202423133874.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-02
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Traditional jujube-making machines require manual or equipment cutting, resulting in crooked cuts and inconsistent lengths of the feed strip, leading to low production efficiency.

Method used

The design includes an automatic strip cutting machine that presses the strip on both sides of the cutting position. Combined with the cutting conveyor and the pressing component, it prevents the strip from moving and achieves automatic cutting.

Benefits of technology

It improves production efficiency, cutting accuracy and uniformity, reduces manual intervention, and ensures neat cuts and consistent strip length.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223620613U_ABST
    Figure CN223620613U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of sewing equipment, in particular to an automatic jujube beating and belt cutting machine which comprises a workbench, and a jujube beating machine used for beating jujubes on a material belt is arranged on the workbench. A cutting and conveying mechanism capable of conveying a material belt subjected to date beating according to a preset length and cutting the conveyed material belt according to the preset length is arranged on the workbench on one side of the date beating machine; the cutting and conveying mechanism comprises a conveying assembly arranged on the workbench and used for conveying a material belt and a cutting assembly used for cutting the material belt conveyed by the conveying assembly. The cutting and conveying mechanism further comprises a belt pressing assembly which is arranged on the workbench and used for pressing the left side and the right side of the cut-off position of the material belt when the cutting assembly cuts the material belt so as to prevent the material belt from moving when the material belt is cut. According to the automatic jujube beating and belt cutting machine, the material belt obtained after jujube beating can be cut off, subsequent additional treatment through manual work or other cutting equipment is not needed, and the production efficiency can be greatly improved.
Need to check novelty before this filing date? Find Prior Art

Description

[Technical Field]

[0001] This utility model relates to the field of sewing equipment technology, specifically to an automatic bartending and tape-cutting machine. [Background Technology]

[0002] Currently, clothing material strips need to be cut to a certain length during the production process and bar-stamped as needed.

[0003] Traditional jujube-making machines can only process the material strip into jujubes. After the material strip is processed by the jujube-making machine, it still needs to be cut manually or by conventional mechanical equipment. Manual cutting or conventional cutting equipment can result in crooked cuts and inconsistent lengths of the cut material strip, leading to a low yield rate. Furthermore, the process of cutting the material strip manually or by another piece of equipment after processing it by the jujube-making machine increases the number of steps and leads to low production efficiency.

[0004] Therefore, this application proposes an automatic date-cutting and strip-slicing machine to solve the above problems. [Utility Model Content]

[0005] The technical problem to be solved by this utility model is to provide an automatic date-making and tape-cutting machine. By setting a tape-pressing component, when cutting the tape after date-making, the left and right sides of the tape-cutting position can be pressed tightly to fix the tape-cutting position and prevent the tape-cutting from moving during the cutting process. This solves the problems of skewed cuts and inconsistent lengths of the tape-cutting.

[0006] To solve the above-mentioned technical problems, this utility model proposes an automatic strip cutting and strip cutting machine, including a workbench 1, on which a strip cutting machine 2 is provided for strip cutting. On one side of the workbench 1, a cutting and conveying mechanism 3 is provided to transport the strip cutting to a predetermined length and to cut the transported strip to a predetermined length. The cutting and conveying mechanism 3 includes a conveying component 30 on the workbench 1 for transporting the strip and a cutting component 40 for cutting the strip transported by the conveying component 30. The cutting and conveying mechanism 3 also includes a pressing component 50 on the workbench 1 for pressing the left and right sides of the strip cutting position to prevent the strip from moving during cutting when the cutting component 40 is cutting the strip.

[0007] As described above, an automatic jujube cutting and tape-making machine includes a tape-pressing assembly 50 comprising a base plate 51 disposed on a workbench 1, a first support plate 52 disposed on the base plate 51, and a first support guide 53 and a second support guide 54 disposed at intervals on the first support plate 52. The tape-pressing assembly 50 also includes tape-pressing columns 55 disposed above the first support guide 53 and the second support guide 54 respectively and cooperating with the corresponding first support guide 53 and the second support guide 54 to press the tape together, and a driving member 56 disposed on the first support plate 52 for driving the tape-pressing columns 55 to move up and down.

[0008] In the automatic date-cutting and tape-slicing machine described above, both the first support guide 53 and the second support guide 54 can be adjusted up and down, and the height of the first support guide 53 after adjustment is higher than that of the second support guide 54.

[0009] As described above, an automatic date-cutting and strip-slicing machine is provided with two spaced-apart limit blocks 57 on both the first support guide 53 and the second support guide 54. The limit blocks 57 can be adjusted back and forth on the corresponding first support guide 53 and second support guide 54 to accommodate strips of different widths.

[0010] As described above, the automatic date-cutting and tape-slicing machine includes a cutting assembly 40 comprising a cutting support plate 41 mounted on a base plate 51 and a pneumatic scissors 42 mounted on the cutting support plate 41.

[0011] As described above, an automatic date-cutting and belt-slicing machine includes a conveying assembly 30 comprising a base plate 51 disposed on a workbench 1 and a first support plate 52 and a second support plate 31 spaced apart on the base plate 51. It also includes an active roller 32 and a driven roller 33 arranged sequentially from bottom to top between the first support plate 52 and the second support plate 31, and a drive motor 34 disposed on the first support plate 52 for driving the active roller 32 to rotate and thereby driving the driven roller 33 to rotate for conveying the belt.

[0012] As described above, an automatic date-cutting and strip-slicing machine has a driven roller 33 with a driven shaft 35 rotatably connected to it. Both ends of the driven shaft 35 are provided with driven shaft fixing blocks 36 that slide vertically and vertically with the corresponding first support plate 52 and second support plate 31. Both the first support plate 52 and the second support plate 31 are provided with elastic elements 37 that act on the corresponding driven shaft fixing blocks 36 to keep the driven roller 33 pressing the strip.

[0013] As described above, an automatic date cutting and strip cutting machine has mounting holes 38 on both the first support plate 52 and the second support plate 31. A driven shaft fixing block 36 is disposed in the mounting hole 38, and a limiting part 39 is formed on the outer side of the driven shaft fixing block 36 to restrict the driven shaft fixing block 36 from passing through the inner side of the mounting hole 38.

[0014] As described above, an automatic date-cutting and strip-slicing machine has a fixing plate 6 on the first support plate 52, and a guide cylinder 60 on the fixing plate 6 for guiding the strip to the space between the driving roller 32 and the driven roller 33.

[0015] Compared with the existing technology, the automatic date-cutting and strip-slicing machine of this utility model has the following advantages:

[0016] 1. The present invention relates to an automatic jujube-cutting tape machine, which can cut the tape after jujube-cutting, eliminating the need for further manual or other cutting equipment processing, thereby greatly improving production efficiency.

[0017] 2. The present invention provides an automatic date-making and tape-cutting machine. By setting a tape-pressing component, when cutting the date-making tape, the machine can press the left and right sides of the cutting position of the tape to fix the tape and prevent the tape from moving during the cutting process, which would cause the tape to be crooked at the cut and the tape to be of different lengths.

[0018] 3. The present invention provides an automatic date-cutting and tape-cutting machine. Through the conveying component, the tape can be moved according to a preset length and the date-cutting process can be completed. In this way, the tape can also be automatically cut to a certain length, which can greatly improve production efficiency. Compared with manual measurement of the tape for cutting, it can be more accurate and the cut tape length is more uniform. [Attached Image Description]

[0019] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:

[0020] Figure 1 This is a schematic diagram of the structure of this utility model.

[0021] Figure 2 This is another structural schematic diagram of the present invention.

[0022] Figure 3 This is a schematic diagram of the cutting component in this utility model.

[0023] Figure 4 This is a schematic diagram of the drive motor in this utility model.

[0024] Figure 5 This is a structural schematic diagram of the medium-pressure belt assembly of this utility model.

[0025] Figure 6 This is a schematic diagram of the active roller in this utility model.

[0026] Figure 7 This is a schematic diagram of the conveying component in this utility model.

[0027] Figure 8 This is another structural schematic diagram of the medium-pressure belt assembly of this utility model.

[0028] Figure 9 This is a schematic diagram of the limiting block in this utility model.

[0029] In the diagram: 1. Workbench; 2. Date-making machine; 3. Cutting and conveying mechanism;

[0030] 30. Conveying assembly; 31. Second support plate; 32. Driving roller; 33. Driven roller; 34. Drive motor; 35. Driven shaft; 36. Driven shaft fixing block; 37. Elastic element; 38. Mounting hole; 39. Limiting part;

[0031] 40. Cutting assembly; 41. Cutting support plate; 42. Pneumatic shears;

[0032] 50. Pressing belt assembly; 51. Base plate; 52. First support plate; 53. First support guide; 54. Second support guide; 55. Pressing belt post; 56. Driving component; 57. Limiting block; 58. Bayonet;

[0033] 6. Fixing plate; 60. Guide cylinder.

Detailed Implementation Methods

[0034] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0035] like Figure 1-9As shown, this utility model includes an automatic strip-cutting and cutting machine, comprising a worktable 1, on which a strip-cutting machine 2 is mounted for cutting strips into strips. On one side of the worktable 1, a cutting and conveying mechanism 3 is mounted to transport the cut strips to a pre-set length and cut them accordingly. The cutting and conveying mechanism 3 includes a conveying component 30 mounted on the worktable 1 for transporting the strips and a cutting component 40 for cutting the strips transported by the conveying component 30. The cutting and conveying mechanism 3 also includes a pressing component 50 mounted on the worktable 1 to press the left and right sides of the cut position of the strips when the cutting component 40 cuts them, preventing movement during shearing. This automatic strip-cutting and cutting machine can cut strips after strip-cutting, eliminating the need for further manual or other cutting equipment processing, thus greatly improving production efficiency. By setting up the pressing assembly 50, the left and right sides of the cutting position of the strip after tagging can be pressed tightly during the cutting process, thereby fixing the strip and preventing it from moving during the cutting process, which could lead to skewed cuts and inconsistent lengths. The conveying assembly 30 can move the strip according to a preset length and complete the tagging process. This allows for automatic cutting of the strip to a certain length, which can greatly improve production efficiency. Compared with manual measurement of the strip for cutting, it is more accurate and results in a more uniform length of the cut strip.

[0036] like Figure 3 , Figure 8As shown, as a further embodiment, the pressing assembly 50 includes a base plate 51 disposed on the workbench 1, a first support plate 52 disposed on the base plate 51, and a first support guide 53 and a second support guide 54 disposed at intervals on the first support plate 52. The pressing assembly 50 also includes pressing columns 55 disposed above the first support guide 53 and the second support guide 54 respectively and cooperating with the corresponding first support guide 53 and the second support guide 54 to press the material strip, and a driving member 56 disposed on the first support plate 52 for driving the pressing column 55 to move up and down. After the tape is processed by the jujube-making machine 2, it continues to be conveyed forward by the conveying assembly 30 according to a preset length, so that the tape is positioned on the first support guide 53 and the second support guide 54. At this time, the conveying assembly 30 stops conveying the tape, and the driving component 56 in the pressing assembly 50 drives the pressing column 55 respectively, pressing the tape firmly onto the first support guide 53 and the second support guide 54. The cutting assembly 40 then cuts the tape within the first support guide 53 and the second support guide 54. By setting the pressing column 55 to press the tape firmly, the tape will not shift during the cutting process when the cutting assembly 40 cuts the tape, thus preventing the tape from being cut neatly. It should be noted that the driving component 56 can use a cylinder, hydraulic cylinder, electric actuator, etc. to drive the pressing column 55 to move. In this application, a cylinder is preferred. The pressing column 55 can be made of silicone material, so that the tape will not be damaged during the pressing process, and the tape can be further prevented from shifting.

[0037] like Figure 3 , Figure 8 As shown, as a further embodiment, both the first support guide 53 and the second support guide 54 are adjustable up and down, and the height of the first support guide 53 is higher than that of the second support guide 54 after adjustment. By making the first support guide 53 and the second support guide 54 adjustable up and down, the equipment can be debugged by the operator in the early stages. Setting the height of the first support guide 53 higher than that of the second support guide 54 facilitates the transition of the conveyor belt from the first support guide 53 to the second support guide 54, preventing the front end of the conveyor belt from getting stuck on the front end of the second support guide 54 during transport due to belt sinking.

[0038] like Figure 3 , Figure 8 , Figure 9As shown, as a further embodiment, both the first support guide 53 and the second support guide 54 are provided with two spaced-apart limiting blocks 57. The limiting blocks 57 can be adjusted back and forth on the corresponding first support guide 53 and second support guide 54 to accommodate material strips of different widths. By setting two limiting blocks 57, a gap is created between them, which serves as the passageway for the material strip. Each limiting block 57 has a locking slot 58 that engages with the corresponding first support guide 53 and second support guide 54, and can be slidably adjusted on the corresponding first support guide 53 and second support guide 54. After adjustment to a suitable position, the limiting blocks 57 are then fixed with bolts.

[0039] like Figure 3 As shown, as a further embodiment, the cutting assembly 40 includes a cutting support plate 41 disposed on the base plate 51 and a pneumatic scissors 42 disposed on the cutting support plate 41.

[0040] like Figures 3 to 7 As shown, as a further embodiment, the conveying assembly 30 includes a base plate 51 disposed on the workbench 1, and a first support plate 52 and a second support plate 31 spaced apart on the base plate 51. It also includes a drive roller 32 and a driven roller 33 arranged sequentially from bottom to top between the first support plate 52 and the second support plate 31, and a drive motor 34 disposed on the first support plate 52 to drive the drive roller 32 to rotate, thereby driving the driven roller 33 to rotate for conveying the material belt. During conveying, the drive motor 34 drives the drive roller 32 to rotate, and the driven roller 33 presses the material belt between the drive roller 32 and the driven roller 33. When the drive roller 32 rotates, it can move the material belt and simultaneously move the driven roller 33.

[0041] It should be noted that the drive motor 34 can be connected to the drive roller 32 via a coupling, or via a synchronous belt and a synchronous pulley. The contact surfaces of the drive roller 32 and the driven roller 33 with the material belt are coated with rubber to prevent slippage.

[0042] As a further embodiment, the driven roller 33 is provided with a driven shaft 35 rotatably connected thereto. Both ends of the driven shaft 35 are provided with driven shaft fixing blocks 36 that slide vertically with corresponding first support plate 52 and second support plate 31. Both the first support plate 52 and the second support plate 31 are provided with elastic members 37 that act on the corresponding driven shaft fixing blocks 36 to keep the driven roller 33 pressing the material strip. Both the first support plate 52 and the second support plate 31 are provided with mounting holes 38, and the driven shaft fixing blocks 36 are disposed in the mounting holes 38. The outer side of each driven shaft fixing block 36 is formed with a limiting part 39 that restricts the driven shaft fixing block 36 from passing through the inner side of the mounting hole 38. When installing the driven roller 33, the driven shaft fixing block 36 is fitted onto the driven shaft 35, and then the driven shaft fixing block 36 and the driven shaft 35 are fixed together with the machine screws. Since the outer side of the driven shaft fixing block 36 is formed with a limiting part 39, the entire driven roller 33 can be prevented from falling off by the limiting part 39, and the driven shaft fixing block 36 can only move up and down in the mounting hole 38.

[0043] To ensure the driven roller 33 exerts a continuous force to press the material strip, an elastic element 37 is provided to press the driven shaft fixing block 36, further pressing the material strip through the driven roller 33. In this application, the elastic element 37 is a spring. A through hole (not shown in this application) is provided at the top of the first support plate 52 and the second support plate 31, extending into the mounting hole 38. The spring is then placed into the through hole, and a bolt is provided at the top of the hole for fixation. The compression degree of the spring can also be adjusted by the bolt, thereby adjusting the force of the driven roller 33 pressing the material strip. It should be noted that the driving roller 32 can be rotatably connected to the first support plate 52 and the second support plate 31 via bearings, and the driven roller 33 can also cooperate with the driven shaft 35 via bearings.

[0044] As a further embodiment, a fixing plate 6 is provided on the first support plate 52. The fixing plate 6 is provided with a guide cylinder 60 for guiding the material belt to the space between the driving roller 32 and the driven roller 33. By providing the guide cylinder 60, it is convenient to guide the material belt and prevent the material belt from deviating during the conveying process of the conveying component 30.

Claims

1. An automatic date-cutting and strip-slicing machine, comprising a worktable (1), characterized in that... The workbench (1) is equipped with a jujube-making machine (2) for jujube-making the material strip. The workbench (1) on one side of the jujube-making machine (2) is equipped with a cutting and conveying mechanism (3) for conveying the jujube-made material strip to a predetermined length and for cutting the conveyed material strip to a predetermined length. The cutting and conveying mechanism (3) includes a conveying component (30) on the workbench (1) for conveying the material strip and a cutting component (40) for cutting the material strip conveyed by the conveying component (30). The cutting and conveying mechanism (3) also includes a pressing component (50) on the workbench (1) for pressing the left and right sides of the material strip cutting position to prevent the material strip from moving when the cutting component (40) cuts the material strip.

2. The automatic date-cutting and strip-slicing machine according to claim 1, characterized in that... The pressing assembly (50) includes a base plate (51) disposed on the worktable (1), a first support plate (52) disposed on the base plate (51), and a first support guide (53) and a second support guide (54) disposed at intervals on the first support plate (52). The pressing assembly (50) also includes pressing columns (55) disposed above the first support guide (53) and the second support guide (54) respectively and cooperating with the corresponding first support guide (53) and the second support guide (54) to press the material strip, and a driving member (56) disposed on the first support plate (52) for driving the pressing column (55) to move up and down.

3. An automatic date-cutting and strip-slicing machine according to claim 2, characterized in that... Both the first support guide (53) and the second support guide (54) can be adjusted up and down, and the height of the first support guide (53) after adjustment is higher than that of the second support guide (54).

4. An automatic date-cutting and strip-slicing machine according to claim 2 or 3, characterized in that... Both the first support guide (53) and the second support guide (54) are provided with two spaced limiting blocks (57), and the limiting blocks (57) can be adjusted back and forth on the corresponding first support guide (53) and second support guide (54) to accommodate material strips of different widths.

5. An automatic date-cutting and strip-slicing machine according to claim 2 or 3, characterized in that... The cutting assembly (40) includes a cutting support plate (41) disposed on a base plate (51) and pneumatic scissors (42) disposed on the cutting support plate (41).

6. An automatic date-cutting and strip-slicing machine according to claim 1, characterized in that... The conveying assembly (30) includes a base plate (51) disposed on the workbench (1) and a first support plate (52) and a second support plate (31) disposed at intervals on the base plate (51). It also includes a drive roller (32) and a driven roller (33) disposed sequentially between the first support plate (52) and the second support plate (31) from bottom to top, and a drive motor (34) disposed on the first support plate (52) for driving the drive roller (32) to rotate and thereby driving the driven roller (33) to rotate for conveying the material belt.

7. An automatic date-cutting and strip-slicing machine according to claim 6, characterized in that... The driven roller (33) is provided with a driven shaft (35) rotatably connected thereto. Both ends of the driven shaft (35) are provided with driven shaft fixing blocks (36) that slide up and down with the corresponding first support plate (52) and second support plate (31). Both the first support plate (52) and the second support plate (31) are provided with elastic elements (37) that act on the corresponding driven shaft fixing blocks (36) to keep the driven roller (33) pressing the material strip.

8. An automatic date-cutting and strip-slicing machine according to claim 6, characterized in that... Both the first support plate (52) and the second support plate (31) are provided with mounting holes (38), and the driven shaft fixing block (36) is provided in the mounting hole (38). The outer side of the driven shaft fixing block (36) is formed with a limiting part (39) that restricts the driven shaft fixing block (36) from passing through the inner side of the mounting hole (38).

9. An automatic date-cutting and strip-slicing machine according to any one of claims 6 to 8, characterized in that... A fixing plate (6) is provided on the first support plate (52), and a guide cylinder (60) is provided on the fixing plate (6) for guiding the material belt to the space between the driving roller (32) and the driven roller (33).

Citation Information

Cited By

  • Automatic material belt beating and cutting machine

    CN119615508A