Discharging mechanism for electronic connector processing
By setting a rectangular plate and threaded rod in the discharge mechanism of electronic connector processing, the problem of displacement of connectors of different models in the storage ring is solved, and the accuracy of the discharge position and processing accuracy are improved.
Patent Information
- Application Number
- CN202421741900.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-23
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-23
AI Technical Summary
During the processing of electronic connectors, due to the differences in sizes of different models of electronic connectors, the components are displaced in the storage ring, resulting in a deviation in the discharge position and affecting the processing accuracy.
A feed discharge mechanism for electronic connector processing is designed. By setting a rectangular plate and a threaded rod in the storage ring of the conveyor belt, the threaded rod is used to drive the rectangular plate to adapt to the width of the electronic connector, limiting it and preventing displacement.
Effectively prevent the electronic connector from shifting in the storage ring, ensure the accurate discharge position and improve processing accuracy.
Smart Images

Figure CN223162513U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of feeding mechanisms, in particular to a feeding mechanism for the processing of electronic connectors. Background Art
[0002] An electronic connector is a conductor device that bridges two conductors on a circuit, enabling current or signals to flow from one conductor to another. In the actual production process of electronic connectors, a feeding mechanism is required. The feeding mechanism drives a conveyor belt to move through a motor shaft, thereby realizing the automatic cyclic feeding of the conveyor belt for the electronic connector components to be processed.
[0003] When using the feeding mechanism to feed electronic connectors, generally, the components are placed in the placement rings on the conveyor belt. However, there are differences in the sizes of different types of electronic connectors, which may cause the electronic connector components to shift in the placement rings when feeding different electronic connectors, and then the feeding position may deviate, affecting the processing of electronic connectors. Summary of the Invention
[0004] The utility model provides a feeding mechanism for the processing of electronic connectors to solve the problem that when feeding different electronic connectors, the electronic connector components may shift in the placement rings, resulting in deviation of the feeding position and affecting the processing of electronic connectors.
[0005] To achieve the above object, the utility model adopts the following technical scheme: A feeding mechanism for the processing of electronic connectors, including a conveyor belt. Both sides of the conveyor belt are provided with side plates. The inner wall of the conveyor belt is symmetrically provided with rollers. Both ends of the rollers are respectively rotatably connected to one side of the two side plates. One side of one of the side plates is provided with a motor. The output end of the motor passes through the inner wall of the side plate and is fixedly connected to one end of one of the rollers. A plurality of placement rings are evenly arranged on one side of the conveyor belt. An adjusting device is arranged inside the placement rings. The adjusting device includes two rectangular plates. The two rectangular plates are symmetrically arranged inside the placement rings. One side of the rectangular plate is fixedly connected with an auxiliary block. The inner walls of the two auxiliary blocks are respectively threadedly connected with a first threaded rod and a second threaded rod. The thread sizes of the first threaded rod and the second threaded rod are the same and the directions are opposite. The adjacent ends of the first threaded rod and the second threaded rod are fixedly connected. Extension blocks are arranged on the outer surfaces of the first threaded rod and the second threaded rod. One side of the two extension blocks is symmetrically and fixedly connected to one side of the placement rings. The bottoms of the two side plates are symmetrically and fixedly connected with bottom plates. The bottoms of the bottom plates are symmetrically provided with rollers. A positioning device is arranged between the two bottom plates.
[0006] The effects achieved by the above components are as follows: By setting two rectangular plates, under the action of the first threaded rod and the second threaded rod respectively, rotating the first threaded rod and the second threaded rod, the first threaded rod and the second threaded rod will respectively drive a rectangular plate connected to the auxiliary block to move towards each other on the inner wall of the storage ring. Furthermore, the width of the electronic connector can be adapted to the distance between the two rectangular plates, limiting the electronic connector to a certain extent, which is beneficial to preventing the displacement of the electronic connector components in the storage ring, and then causing deviation in the feeding position and affecting the processing of the electronic connector.
[0007] Preferably, bearings are fixedly connected to the outer surfaces of the first threaded rod and the second threaded rod, and the outer surfaces of the bearings are fixedly connected to the inner walls of the extension blocks.
[0008] The effects achieved by the above components are as follows: By setting the bearings, the friction between the first threaded rod and the second threaded rod and the extension blocks during rotation can be reduced, and thus it is more labor-saving to rotate the first threaded rod and the second threaded rod.
[0009] Preferably, operating blocks are fixedly connected to the opposite ends of the first threaded rod and the second threaded rod, and protrusions are provided on the outer surfaces of the operating blocks.
[0010] The effects achieved by the above components are as follows: By setting the operating blocks, rotating the operating blocks can drive the first threaded rod and the second threaded rod to rotate. At the same time, protrusions are provided on the outer surfaces of the operating blocks, which can effectively increase the friction on the outer surfaces of the operating blocks and play an anti-slip role when rotating the operating blocks. Furthermore, it is convenient to rotate the first threaded rod and the second threaded rod through the operating blocks.
[0011] Preferably, the same round rod is slidably connected to the inner walls of the two auxiliary blocks, and the two ends of the round rod are respectively fixedly connected to one side of the two extension blocks.
[0012] The effects achieved by the above components are as follows: By setting the round rod, when the two auxiliary blocks move under the action of the first threaded rod and the second threaded rod respectively, the auxiliary blocks will slide synchronously on the outer surface of the round rod, which can limit the rectangular plate connected to the auxiliary block, and thus make the rectangular plate more stable during the movement.
[0013] Preferably, an extension strip is fixedly connected to one side of the rectangular plate, a scale is fixedly connected to the top of one side of the storage ring, and one side of the extension strip abuts against one side of the scale.
[0014] The effects achieved by the above components are as follows: By setting the extension strip and the scale, it is convenient to accurately adjust the rectangular plate connected to the extension strip through the scale, and it is also convenient to perform the same adjustment on the two rectangular plates inside multiple storage rings.
[0015] Preferably, the positioning device includes a positioning plate disposed between two bottom plates. Symmetrically fixed to the top of the positioning plate are threaded insertion rods, and the outer surface of each threaded insertion rod is slidably connected to a round hole block. One side of each of the two round hole blocks is symmetrically and fixedly connected to one side of the two side plates.
[0016] The effects achieved by the above components are as follows: By providing the positioning plate, pushing the positioning plate drives the threaded insertion rods to slide synchronously on the inner wall of the round hole blocks, so that the bottom of the positioning plate abuts against the ground. Then, the positioning plate can increase the supporting area and friction between the feeding mechanism and the ground, thereby making it difficult for the feeding mechanism to tip over and shift.
[0017] Preferably, screw hole blocks are provided on both sides of each round hole block, and the outer surface of each threaded insertion rod is threadedly connected to the inner wall of the two screw hole blocks.
[0018] The effects achieved by the above components are as follows: By providing two screw hole blocks and respectively rotating the two screw hole blocks so that one side of each screw hole block abuts against one side of the corresponding round hole block, the threaded insertion rod and the round hole block can be fixed, and thus the positioning plate can be fixed.
[0019] Preferably, one end of each threaded insertion rod is fixedly connected to a round block, and the outer diameter of the round block is greater than that of the threaded insertion rod.
[0020] The effects achieved by the above components are as follows: By providing the round block, it can block one end of the threaded insertion rod, which is beneficial to preventing the screw hole block from disengaging from the threaded insertion rod due to misoperation.
[0021] Compared with the prior art, the advantages and positive effects of the present utility model are as follows:
[0022] In the present utility model, by providing two rectangular plates, under the action of the first threaded rod and the second threaded rod respectively, the first threaded rod and the second threaded rod can drive a rectangular plate connected to an auxiliary block to move towards each other on the inner wall of the placement ring. Thus, the width of the electronic connector can be adapted to the distance between the two rectangular plates, providing a certain degree of limitation to the electronic connector, which is beneficial to preventing the components of the electronic connector from shifting in the placement ring, thereby avoiding the problem that the feeding position is deviated and affecting the processing of the electronic connector. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is a three-dimensional structural diagram of the main body of the present utility model;
[0024] Figure 2 is a three-dimensional structural diagram of the conveyor belt of the present utility model;
[0025] Figure 3 is of the present utility model Figure 2 is an enlarged structural diagram of part A;
[0026] Figure 4 For the present utility model Figure 2 is a schematic enlarged structure view of part B.
[0027] Legend: 1. Conveyor belt; 2. Roller; 3. Side plate; 4. Motor; 5. Placing ring; 6. Adjusting device; 61. Rectangular plate; 62. Auxiliary block; 63. First threaded rod; 64. Second threaded rod; 65. Extension block; 66. Bearing; 67. Operating block; 68. Round rod; 69. Extension bar; 610. Scale; 7. Bottom plate; 8. Roller; 9. Positioning device; 91. Positioning plate; 92. Threaded insertion rod; 93. Round hole block; 94. Threaded hole block; 95. Round block. Specific implementation manners
[0028] Example 1. Referring to Figures 1 - 3 as shown, this example discloses a feeding mechanism for the processing of electronic connectors, including a conveyor belt 1. Side plates 3 are arranged on both sides of the conveyor belt 1. Inner walls of the conveyor belt 1 are symmetrically provided with rollers 2. Two ends of the rollers 2 are respectively rotatably connected to one side of the two side plates 3. A motor 4 is arranged on one side of one of the side plates 3. An output end of the motor 4 passes through the inner wall of the side plate 3 and is fixedly connected to one end of one of the rollers 2. A plurality of placing rings 5 are evenly arranged on one side of the conveyor belt 1. An adjusting device 6 is arranged inside the placing rings 5. The adjusting device 6 includes two rectangular plates 61. The two rectangular plates 61 are symmetrically arranged inside the placing rings 5. An auxiliary block 62 is fixedly connected to one side of the rectangular plate 61. Inner walls of the two auxiliary blocks 62 are respectively threadedly connected with a first threaded rod 63 and a second threaded rod 64. Thread sizes of the first threaded rod 63 and the second threaded rod 64 are the same and directions are opposite. One ends of the first threaded rod 63 and the second threaded rod 64 that are close to each other are fixedly connected. Extension blocks 65 are arranged on outer surfaces of the first threaded rod 63 and the second threaded rod 64. One sides of the two extension blocks 65 are symmetrically and fixedly connected to one side of the placing rings 5. Bottom plates 7 are symmetrically and fixedly connected to bottoms of the two side plates 3. Rollers 8 are symmetrically arranged at bottoms of the bottom plates 7. A positioning device 9 is arranged between the two bottom plates 7. By arranging the two rectangular plates 61, under the action of the first threaded rod 63 and the second threaded rod 64 respectively, rotating the first threaded rod 63 and the second threaded rod 64, the first threaded rod 63 and the second threaded rod 64 will respectively drive a rectangular plate 61 connected to the auxiliary block 62 to move towards each other on the inner wall of the placing ring 5, so that the width of the electronic connector can be adapted to the distance between the two rectangular plates 61, and the electronic connector can be limited to a certain extent, which is beneficial to preventing displacement of components of the electronic connector in the placing ring 5, and further preventing deviation of the feeding position and affecting the processing of the electronic connector.
[0029] Referring to Figure 2 and Figure 3As shown, bearings 66 are fixedly connected to the outer surfaces of the first threaded rod 63 and the second threaded rod 64. The outer surfaces of the bearings 66 are fixedly connected to the inner walls of the extension blocks 65. By providing the bearings 66, the frictional force between the first threaded rod 63 and the second threaded rod 64 during rotation and the extension blocks 65 can be reduced, thereby making it more labor-saving to rotate the first threaded rod 63 and the second threaded rod 64. At the ends of the first threaded rod 63 and the second threaded rod 64 that are away from each other, operating blocks 67 are fixedly connected. Protrusions are provided on the outer surfaces of the operating blocks 67. By providing the operating blocks 67, rotating the operating blocks 67 can drive the first threaded rod 63 and the second threaded rod 64 to rotate. At the same time, the protrusions provided on the outer surfaces of the operating blocks 67 can effectively increase the frictional force on the outer surfaces of the operating blocks 67, playing an anti-slip role when rotating the operating blocks 67, and thus facilitating the rotation of the first threaded rod 63 and the second threaded rod 64 through the operating blocks 67.
[0030] Referring to Figure 2 and Figure 3 As shown, a same round rod 68 is slidably connected to the inner walls of the two auxiliary blocks 62. The two ends of the round rod 68 are respectively fixedly connected to one side of the two extension blocks 65. By providing the round rod 68, when the two auxiliary blocks 62 move under the action of the first threaded rod 63 and the second threaded rod 64 respectively, the auxiliary blocks 62 will slide synchronously on the outer surface of the round rod 68, which can limit the rectangular plate 61 connected to the auxiliary blocks 62, and thus make the rectangular plate 61 more stable during the movement. A extension strip 69 is fixedly connected to one side of the rectangular plate 61. A scale 610 is fixedly connected to the top of one side of the storage ring 5. One side of the extension strip 69 abuts against one side of the scale 610. By providing the extension strip 69 and the scale 610, it is convenient to accurately adjust the rectangular plate 61 connected to the extension strip 69 through the scale 610, and it is also convenient to perform the same adjustment on the two rectangular plates 61 inside multiple storage rings 5.
[0031] Referring to Figure 2 and Figure 4 As shown, the positioning device 9 includes a positioning plate 91. The positioning plate 91 is arranged between the two bottom plates 7. Threaded insertion rods 92 are symmetrically and fixedly connected to the top of the positioning plate 91. The outer surfaces of the threaded insertion rods 92 are slidably connected to round hole blocks 93. One side of the two round hole blocks 93 is symmetrically and fixedly connected to one side of the two side plates 3. By providing the positioning plate 91, pushing the positioning plate 91 drives the threaded insertion rods 92 to slide synchronously on the inner walls of the round hole blocks 93, so that the bottom of the positioning plate 91 abuts against the ground. Then the positioning plate 91 can increase the support area and frictional force between the feeding mechanism and the ground, and thus make the feeding mechanism not prone to tipping and displacement.
[0032] Referring to Figure 2 and Figure 4As shown in the figure, screw hole blocks 94 are provided on both sides of the round hole block 93. The outer surface of the threaded insertion rod 92 is threadedly connected to the inner walls of the two screw hole blocks 94. By providing the two screw hole blocks 94 and respectively rotating the two screw hole blocks 94 so that one side of the screw hole block 94 abuts against one side of the round hole block 93, the threaded insertion rod 92 can be fixed to the round hole block 93, and thus the positioning plate 91 can be fixed. One end of the threaded insertion rod 92 is fixedly connected to a round block 95, and the outer diameter of the round block 95 is larger than the outer diameter of the threaded insertion rod 92. By providing the round block 95, one end of the threaded insertion rod 92 can be blocked, which is beneficial to preventing the screw hole block 94 from being disengaged from the threaded insertion rod 92 due to misoperation.
[0033] Working principle: When it is necessary to adjust the distance between the two rectangular plates 61, rotate the operation block 67 to drive the first threaded rod 63 and the second threaded rod 64 to rotate. The first threaded rod 63 and the second threaded rod 64 will respectively drive a rectangular plate 61 connected to the auxiliary block 62 to move towards each other on the inner wall of the placing ring 5. At the same time, the auxiliary block 62 will slide synchronously on the outer surface of the round rod 68, which can limit the rectangular plate 61 connected to the auxiliary block 62, and thus make the rectangular plate 61 more stable during the movement until the extension strip 69 reaches the appropriate scale on the scale 610, so that the width of the electronic connector is adapted to the distance between the two rectangular plates 61, and the electronic connector is limited to a certain extent, which is beneficial to preventing the components of the electronic connector from shifting in the placing ring 5, and then causing the feeding position to deviate and affecting the processing of the electronic connector. Push the positioning plate 91 to drive the threaded insertion rod 92 to slide synchronously on the inner wall of the round hole block 93, so that the bottom of the positioning plate 91 abuts against the ground. Rotate the two screw hole blocks 94 respectively so that one side of the screw hole block 94 abuts against one side of the round hole block 93, then the threaded insertion rod 92 can be fixed to the round hole block 93, and thus the positioning plate 91 can be fixed. Then the positioning plate 91 can increase the supporting area and friction force between the feeding mechanism and the ground, and thus the feeding mechanism is not easy to tip over and shift.
Claims
1. A feeding mechanism for the processing of electronic connectors, comprising a conveyor belt (1), characterized in that: On both sides of the conveyor belt (1), side plates (3) are provided. Inside the conveyor belt (1), rollers (2) are symmetrically arranged. Both ends of the rollers (2) are respectively rotatably connected to one side of the two side plates (3). On one side of one of the side plates (3), a motor (4) is provided. The output end of the motor (4) passes through the inner wall of the side plate (3) and is fixedly connected to one end of one of the rollers (2). On one side of the conveyor belt (1), a number of placement rings (5) are evenly arranged. Inside the placement rings (5), an adjustment device (6) is provided. The adjustment device (6) includes two rectangular plates (61). The two rectangular plates (61) are symmetrically arranged inside the placement rings (5). On one side of the rectangular plate (61), an auxiliary block (62) is fixedly connected. Inside the inner walls of the two auxiliary blocks (62), a first threaded rod (63) and a second threaded rod (64) are respectively threadedly connected. The thread sizes of the first threaded rod (63) and the second threaded rod (64) are the same and the directions are opposite. The adjacent ends of the first threaded rod (63) and the second threaded rod (64) are fixedly connected. On the outer surfaces of the first threaded rod (63) and the second threaded rod (64), extension blocks (65) are provided. One side of the two extension blocks (65) is symmetrically and fixedly connected to one side of the placement rings (5). At the bottom of the two side plates (3), bottom plates (7) are symmetrically and fixedly connected. At the bottom of the bottom plates (7), rollers (8) are symmetrically arranged. Between the two bottom plates (7), a positioning device (9) is provided.
2. The feeding mechanism for processing an electronic connector according to claim 1, wherein: On the outer surfaces of the first threaded rod (63) and the second threaded rod (64), bearings (66) are fixedly connected. The outer surface of the bearings (66) is fixedly connected to the inner wall of the extension blocks (65).
3. The feeding mechanism for electronic connector processing according to claim 1, characterized in that: At the opposite ends of the first threaded rod (63) and the second threaded rod (64), operating blocks (67) are fixedly connected. On the outer surface of the operating blocks (67), protrusions are provided.
4. A feeding mechanism for the processing of electronic connectors according to claim 1, characterized in that: Inside the inner walls of the two auxiliary blocks (62), the same round rod (68) is slidably connected. Both ends of the round rod (68) are respectively fixedly connected to one side of the two extension blocks (65).
5. A feeding mechanism for processing an electronic connector according to claim 1, wherein: On one side of the rectangular plate (61), an extension strip (69) is fixedly connected. At the top of one side of the placement rings (5), a scale (610) is fixedly connected. One side of the extension strip (69) abuts against one side of the scale (610).
6. The feeding mechanism for electronic connector processing according to claim 1, wherein: The positioning device (9) includes a positioning plate (91). The positioning plate (91) is arranged between the two bottom plates (7). At the top of the positioning plate (91), threaded insertion rods (92) are symmetrically and fixedly connected. On the outer surface of the threaded insertion rods (92), round hole blocks (93) are slidably connected. One side of the two round hole blocks (93) is symmetrically and fixedly connected to one side of the two side plates (3).
7. The feeding mechanism for the processing of an electronic connector according to claim 6, wherein: On both sides of the round hole blocks (93), screw hole blocks (94) are provided. The outer surface of the threaded insertion rods (92) is threadedly connected to the inner walls of the two screw hole blocks (94).
8. A feeding mechanism for the processing of electronic connectors according to claim 7, characterized in that: One end of the threaded insertion rod (92) is fixedly connected to a round block (95). The outer diameter of the round block (95) is larger than the outer diameter of the threaded insertion rod (92).