Linear assembly line
By designing a linear assembly line on the notebook shell assembly line, using multiple Feida modules and labeling mechanisms, the assembly line length is shortened and the space is efficiently utilized, and the labeling needs of a variety of workpieces are adapted.
Patent Information
- Application Number
- CN202422157374.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The existing notebook case assembly line is too long due to the large number of Feida, which occupies a large space, making it difficult to use the space efficiently.
Using a linear assembly line design, multiple Feida modules are set on both sides and/or in the width direction of the conveyor. Combined with the labeling mechanism, the labeling mechanism can achieve efficient bonding of the label through horizontal and longitudinal moving units, reducing Feida's space occupied.
Effectively reduce the length of assembly line, improve space utilization, and adapt to the labeling operation needs of different workpieces.
Smart Images

Figure CN223059460U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of notebook shell production, and particularly to a linear assembly line. Background Art
[0002] Currently, during the processing of notebook shells, auxiliary workpieces and labels need to be attached to the shell on an assembly line. The assembly line usually includes a belt conveyor for transporting workpieces, a feeder for feeding materials, and a labeling mechanism for attaching labels to the workpieces. For the convenience of feeding, the feeder is usually arranged on one side of the conveyor.
[0003] For complex workpieces, there are many types of materials such as labels to be attached, and the number of feeders is large, resulting in a long length of the entire assembly line and a large floor space. Summary of the Invention
[0004] In order to reduce the length of the entire assembly line, this application provides a linear assembly line.
[0005] A linear assembly line provided by this application adopts the following technical solutions:
[0006] A linear assembly line includes: a machine body and a conveyor for transporting workpieces, and the conveyor is arranged on the machine body along the length direction of the machine body;
[0007] Feeder modules are arranged on both sides along the length direction and / or both sides along the width direction of the conveyor, and each feeder module includes at least one feeder for feeding materials;
[0008] A labeling mechanism for attaching the materials on the feeder to the workpiece is arranged on the machine body.
[0009] By adopting the above technical solutions, during operation, the workpiece is placed on the conveyor, and during the transportation process, the labeling mechanism attaches the label on the feeder to the workpiece; and multiple feeder modules are respectively arranged on both sides along the length direction and / or both sides along the width direction of the conveyor, reducing the occupied space of the feeder modules, thereby reducing the length of the conveyor and achieving the effect of reducing the length of the entire assembly line.
[0010] Further, there are four groups of feeder modules, which are respectively arranged on both sides along the length direction and both sides along the width direction of the conveyor.
[0011] Further, the feeder modules on both sides along the length direction of the conveyor each include a first feeder and a second feeder. An installation frame is fixedly arranged on the machine body along the length direction of the conveyor. The first feeder and the second feeder are both slidably arranged on the installation frame along the length direction of the installation frame, and a driving member for driving the first feeder and the second feeder to move is arranged on the installation frame.
[0012] Further, a guide rod is fixedly arranged along the length direction of the mounting frame, and two sliding seats are slidably sleeved on the guide rod. The first feeder and the second feeder are respectively fixedly arranged on the two sliding seats.
[0013] Further, the driving member is arranged as a double-acting cylinder. The double-acting cylinder is fixedly arranged on the mounting frame, and the piston rod of the double-acting cylinder is connected to the sliding seat.
[0014] Further, there is a gap for the workpiece to pass through between the mounting frame and the conveyor.
[0015] Further, the labeling mechanism includes a labeling head for attaching a label to the workpiece;
[0016] a moving assembly connected to the labeling head for driving the labeling head to perform a labeling operation at a set position.
[0017] Further, the moving assembly includes a transverse moving unit and a longitudinal moving unit. The transverse moving unit is used to drive the labeling head to move in the horizontal direction, and the longitudinal moving unit is used to drive the labeling head to move in the vertical direction.
[0018] In summary, the present application includes at least one of the following beneficial technical effects:
[0019] During operation, the workpiece is placed on the conveyor. During the conveying process, the labeling mechanism attaches the label on the feeder to the workpiece; and multiple feeder modules are respectively arranged on both sides of the conveyor in the length direction and / or both sides in the width direction, reducing the occupied space of the feeder modules, thereby reducing the length of the conveyor and achieving the effect of reducing the length of the entire assembly line. Description of the Drawings
[0020] Figure 1 is a schematic diagram of the overall structure of an embodiment of the present application;
[0021] Figure 2 is a schematic diagram of the structure mainly showing the labeling mechanism in an embodiment of the present application;
[0022] Figure 3 is a schematic diagram of the structure mainly showing the mounting frame and the feeder module in an embodiment of the present application.
[0023] Description of reference numerals: 1. Machine body; 2. Conveyor; 21. Conveyor belt; 22. Conveyor roller; 23. Conveyor motor; 3. Mounting frame; 31. Guide rod; 32. Sliding seat; 33. Double-acting cylinder; 4. Feeder module; 41. First feeder; 42. Second feeder; 5. Labeling mechanism; 51. Labeling head; 52. Mounting bracket; 53. Air pump; 61. Lateral movement unit; 611. First movement unit; 612. Second movement unit; 62. Longitudinal movement unit; 621. Column; 622. Lifting motor; 623. Rotating lead screw. Detailed implementation manners
[0024] The following further elaborates on this application in conjunction with Figures 1-3 the accompanying drawings.
[0025] An embodiment of this application discloses a linear assembly line.
[0026] Referring to Figure 1 , a linear assembly line includes: a machine body 1 and a conveyor 2 for conveying workpieces. The conveyor 2 is arranged on the machine body 1 along the length direction of the machine body 1; the conveyor 2 includes a conveyor belt 21, conveyor rollers 22 and a conveyor motor 23. The conveyor rollers 22 are rotatably arranged on the machine body 1, the conveyor belt 21 is wound around the conveyor rollers 22, and the conveyor motor 23 is fixedly arranged on the machine body 1. The conveyor motor 23 is used to drive the conveyor rollers 22 to rotate.
[0027] Referring to Figure 1 , a mounting frame 3 is fixedly arranged on the machine body 1 along the length direction of the conveyor 2. The mounting frame 3 is a rectangular frame structure. There is a gap for workpieces to pass between the mounting frame 3 and the conveyor 2, and it is located above the conveyor belt 21.
[0028] Referring to Figure 1 and Figure 2 , feeder modules 4 are arranged on both sides of the conveyor 2 along the length direction and / or both sides of the width direction. Each feeder module 4 includes at least one feeder for discharging materials; there are four groups of feeder modules 4, which are respectively arranged on both sides of the length direction and both sides of the width direction of the conveyor 2. The length direction of the conveyor 2 is the direction along which the conveyor 2 conveys.
[0029] Referring to Figure 1 and Figure 2 , a labeling mechanism 5 for attaching the materials on the feeder to the workpieces is arranged on the machine body 1. The labeling mechanism 5 includes a labeling head 51 for attaching labels to the workpieces. A moving component, connected to the labeling head 51, is used to drive the labeling head 51 to perform a labeling operation at a set position. The moving component includes a lateral movement unit 61 and a longitudinal movement unit 62. The lateral movement unit 61 is used to drive the labeling head 51 to move in the horizontal direction, and the longitudinal movement unit 62 is used to drive the labeling head 51 to move in the vertical direction.
[0030] Among them, with reference to Figure 1 and Figure 2 , the lateral movement unit 61 includes a first movement unit 611 along the conveying direction of the conveyor 2 and a second movement unit 612 perpendicular to the conveying direction. Specifically, both the first movement unit 611 and the second movement unit 612 include guide rails and drive assemblies. The guide rail of the first movement unit 611 is fixedly arranged on the mounting frame 3 along the conveying direction of the conveyor 2, and guide rails are arranged on both sides of the conveyor 2. The guide rail of the second movement unit 612 is slidably arranged on the guide rail of the first movement unit 611. The longitudinal movement unit 62 is installed on the guide rail of the second movement unit 612 and can move along the guide rail of the second movement unit 612. The drive assembly can be a cylinder or a motor screw structure. The drive assembly of the first movement unit 611 is used to drive the guide rail of the second movement unit 612 to move, and the drive assembly of the second movement unit 612 is used to drive the longitudinal movement unit 62 to move.
[0031] With reference to Figure 1 and Figure 2 , the longitudinal movement unit 62 includes a column 621, a lifting motor 622, and a rotating lead screw 623. The column 621 is arranged on the guide rail of the second movement unit 612, and the column 621 is connected to the guide rail through the cooperation of a slider and a chute. The slider can be a dovetail block or a T-shaped block to ensure the stable position of the column 621. The rotating lead screw 623 is rotatably arranged on the column 621. The rotating lead screw 623 is parallel to the column 621. The lifting motor 622 is fixedly arranged on the column 621, and the output shaft of the lifting motor 622 is fixedly connected to the rotating lead screw 623.
[0032] With reference to Figure 2 , the labeling mechanism 5 further includes a mounting frame 52 and an air pump 53. The mounting frame 52 is slidably arranged on the column 621, and the rotating lead screw 623 is threadedly connected to the mounting frame 52. The labeling head 51 is a suction cup, and the air pump 53 is connected to the suction cup through a trachea. It is used to adsorb the labels on the feeder by inhaling and exhaling.
[0033] With reference to Figure 1 and Figure 3, the feeder modules 4 on both sides in the length direction of the conveyor 2 each include a first feeder 41 and a second feeder 42. The first feeder 41 and the second feeder 42 are both slidably arranged on the mounting frame 3 along the length direction of the mounting frame 3. Specifically, guide rods 31 are fixedly arranged on the mounting frame 3 along its own length direction. In this embodiment, two guide rods 31 are arranged in parallel. Sliding seats 32 are slidably sleeved on the guide rods 31. The first feeder 41 and the second feeder 42 are respectively fixedly arranged on the two sliding seats 32. A driving member for driving the first feeder 41 and the second feeder 42 to move is arranged on the mounting frame 3. The driving member is set as a double-acting cylinder 33. The double-acting cylinder 33 is fixedly arranged on the mounting frame 3, and the piston rod of the double-acting cylinder 33 is connected to the sliding seat 32.
[0034] For different workpieces, the working positions of the labeling operation may be different. The double-acting cylinder 33 is used to adjust the position and the spacing between the first feeder 41 and the second feeder 42 to adapt to the operations of different workpieces and improve the applicability.
[0035] The implementation principle of the embodiment of this application is as follows: During work, the workpiece is placed on the conveyor 2. During the conveying process, the labeling mechanism 5 attaches the label on the feeder to the workpiece; and multiple feeder modules 4 are respectively arranged on both sides in the length direction and / or both sides in the width direction of the conveyor 2, reducing the occupied space of the feeder modules 4, and further reducing the length of the conveyor 2, achieving the effect of reducing the length of the entire assembly line.
[0036] The above are all the preferred embodiments of this application, and the protection scope of this application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.
Claims
1. A linear assembly line, characterized in that, Including: A machine body (1) and a conveyor (2) for conveying workpieces, the conveyor (2) being arranged on the machine body (1) along the length direction of the machine body (1); Feeder modules (4) are arranged on both sides along the length direction and / or both sides along the width direction of the conveyor (2), and each feeder module (4) includes at least one feeder for discharging materials; A labeling mechanism (5) for attaching the materials on the feeder to the workpieces is arranged on the machine body (1).
2. The linear assembly line according to claim 1, characterized in that: There are four groups of feeder modules (4), which are respectively arranged on both sides along the length direction and both sides along the width direction of the conveyor (2).
3. The linear assembly line according to claim 2, wherein: The feeder modules (4) on both sides along the length direction of the conveyor (2) each include a first feeder (41) and a second feeder (42). An installation frame (3) is fixedly arranged on the machine body (1) along the length direction of the conveyor (2). The first feeder (41) and the second feeder (42) are both slidably arranged on the installation frame (3) along the length direction of the installation frame (3), and a driving member for driving the first feeder (41) and the second feeder (42) to move is arranged on the installation frame (3).
4. The linear assembly line according to claim 3, wherein: Guide rods (31) are fixedly arranged on the installation frame (3) along its own length direction. Two sliding seats (32) are slidably sleeved on the guide rods (31). The first feeder (41) and the second feeder (42) are respectively fixedly arranged on the two sliding seats (32).
5. A linear assembly line according to claim 4, characterized in that: The driving member is set as a double-acting cylinder (33). The double-acting cylinder (33) is fixedly arranged on the installation frame (3), and the piston rod of the double-acting cylinder (33) is connected to the sliding seat (32).
6. The linear assembly line according to claim 3, wherein: There is a gap for the workpiece to pass through between the installation frame (3) and the conveyor (2).
7. A linear assembly line according to claim 1, characterized in that: The labeling mechanism (5) includes a labeling head (51) for attaching the label to the workpiece; A moving assembly, connected to the labeling head (51), for driving the labeling head (51) to perform a labeling operation at a set position.
8. The linear assembly line according to claim 7, characterized in that: The moving assembly includes a transverse moving unit (61) and a longitudinal moving unit (62). The transverse moving unit (61) is used for driving the labeling head (51) to move in the horizontal direction, and the longitudinal moving unit (62) is used for driving the labeling head (51) to move in the vertical direction.