Buckle machining feeder
By designing a limiting mechanism and tensioning components, the problem of unstable buckle position in the buckle feeder is solved, achieving stable buckle conveying and efficient processing, suitable for buckles of different sizes.
Patent Information
- Application Number
- CN202520526282.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-24
AI Technical Summary
Existing clip feeders are prone to clip position changes due to equipment vibration during the conveying process, resulting in stacking or misalignment, which affects the quality of subsequent processing.
The design includes a limiting mechanism, comprising a clamping component and a blocking component. The clamps are clamped and limited by the pressure belt and baffle, and the tension of the transmission belt is adjusted by the tensioning component to maintain the stability and consistency of the clamps on the conveyor belt.
It effectively prevents the buckles from stacking or misaligning during the conveying process, improving the conveying effect and subsequent processing quality. It is suitable for buckles of different sizes, thus improving the applicability of the feeder.
Smart Images

Figure CN223891867U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of feeding machine technology, specifically a buckle processing feeding machine. Background Technology
[0002] In modern industrial production, snap fasteners are a common and important connecting component, widely used in many fields such as automobile manufacturing, electronic equipment, home appliances, and packaging. During the production of snap fasteners, multiple semi-finished snap fasteners are usually continuously transported to the next process for further processing by a feeder.
[0003] In existing technology, semi-finished buckles are placed on the conveyor belt of a feeder for conveying. However, during the conveying process, the conveyor belt is prone to displacement due to the vibration of the equipment, which causes the buckles to change position, resulting in stacking or misalignment. This affects the conveying effect of the buckles and, consequently, the subsequent processing of the buckles. To address this, we propose a buckle processing feeder. Utility Model Content
[0004] The purpose of this utility model is to provide a buckle processing feeding machine to solve the technical problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a buckle processing feeding machine, comprising a frame and a conveyor belt mounted on the frame, wherein a limiting mechanism is provided on the frame, and the limiting mechanism includes:
[0006] The clamping assembly includes two sets of rotating columns disposed above the frame, with multiple sets of pressure bands sleeved between the two sets of rotating columns, and an adjusting component disposed between the rotating columns and the frame;
[0007] The blocking assembly, located at the front and rear of the top of the frame, is used to block and limit the latches during transport.
[0008] The frame has two sets of rotating shafts inside, and a rotating column is provided on the back of the rotating column. A transmission belt is sleeved between the rotating column and the rotating shaft.
[0009] The rotating column is provided with an external thread, and two sets of first threaded rings are connected to the external of the external thread by thread.
[0010] The adjusting component includes two upright plates fixed to the top of both sides of the frame. The upright plates have adjustment grooves inside. A rotating rod is fixedly installed on the back of the rotating column. A horizontal screw is installed on the outside of the rotating rod. Two sets of spiral rings are threadedly connected to the outside of the horizontal screw.
[0011] The blocking assembly includes two sets of baffles disposed on the top of the frame, with two sets of recesses fixedly disposed on the surface of the baffles. Multiple sets of vertical screws are fixedly disposed on the top of the frame, and threaded rings are threadedly connected to the outside of the vertical screws.
[0012] A tensioning element is provided on the back of the frame. The tensioning element includes an L-shaped block fixed to the back of the frame, and a pressure roller is rotatably provided on the back of the L-shaped block.
[0013] The L-shaped block has a sliding limit post inside.
[0014] The L-shaped block has a vertical stud connected to its interior by threads, and a mounting bearing is fitted at the bottom of the vertical stud.
[0015] A drive motor is fixedly mounted on the front of the frame, and the working end of the drive motor is in contact with the end of the rotating shaft.
[0016] Compared with the prior art, the beneficial effects of this utility model are:
[0017] (1) Through the design of the limiting mechanism, this utility model can press and limit the buckles by multiple sets of pressure belts when multiple sets of buckles are conveyed on the conveyor belt in sequence during use, so as to avoid the buckles from stacking or misaligning as the conveyor belt moves. Moreover, the contact distance between the two sets of baffles and the pressure belt and the buckles can be adjusted according to the buckles of different sizes, which increases the applicability of limiting buckles of different sizes, improves the conveying effect of buckles, and thus improves the quality of buckles in subsequent processing.
[0018] (2) The present invention uses a tensioning component designed to tension the transmission belt when it is pressed and limited according to buckles of different sizes, thereby increasing the tightness of the transmission belt. The tension of the transmission belt is achieved by pressing down or moving up the pressure roller, which facilitates the transmission and pressing of the pressure belt through the transmission belt. It also ensures that the rotation speed of the conveyor belt is consistent with the rotation speed of the pressure belt, thus improving the limiting effect. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of this utility model;
[0020] Figure 2 This is a schematic diagram of the rear view structure of the frame of this utility model;
[0021] Figure 3 This is a schematic diagram of the baffle structure of this utility model;
[0022] Figure 4 This is a schematic diagram of the baffle and recess structure of this utility model;
[0023] Figure 5This is a schematic diagram of the rotating column and pressure belt structure of this utility model;
[0024] Figure 6 This is a schematic diagram of the tensioning component structure of this utility model;
[0025] Figure 7 This is a schematic diagram of the conveyor belt structure of this utility model;
[0026] In the diagram: 100, frame; 101, drive motor; 102, conveyor belt; 103, feeding plate; 104, rotating shaft; 200, baffle; 201, vertical plate; 202, concave block; 203, pressure belt; 204, transmission belt; 205, threaded ring; 206, vertical screw; 207, horizontal screw; 208, spiral ring; 209, rotating column; 210, spiral column; 211, first threaded ring; 300, pressure roller; 301, L-shaped block; 302, vertical stud; 303, limiting post; 304, mounting bearing. Detailed Implementation
[0027] The technical solution of this utility model will be clearly and completely described below with reference to the embodiments. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0028] Example 1
[0029] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 7 This utility model provides a technical solution: a buckle processing feeding machine, including a frame 100 and a conveyor belt 102 disposed on the frame 100. A feeding plate 103 is disposed on one side of the frame 100. A limiting mechanism is disposed on the frame 100. The limiting mechanism includes a pressing component and a blocking component. The pressing component includes two sets of rotating columns 209 disposed above the frame 100. Multiple sets of pressure belts 203 are sleeved between the two sets of rotating columns 209. The pressure belts 203 can contact and press the buckles below. An adjusting component is disposed between the rotating columns 209 and the frame 100.
[0030] The frame 100 has two sets of rotating shafts 104 rotatably arranged inside, and the conveyor belt 102 is sleeved between the two sets of rotating shafts 104. The back of the rotating column 209 is provided with a swivel column 210, and the drive belt 204 is sleeved between the swivel column 210 and the rotating shaft 104.
[0031] The rotating column 209 is provided with an external thread, and two sets of first threaded rings 211 are connected to the external of the external thread through a threaded connection.
[0032] The adjusting component includes two upright plates 201 fixed to the top of both sides of the frame 100. The upright plates 201 have an adjustment groove inside. A rotating rod is fixedly installed on the back of the rotating column 209. The rotating rod is located inside the horizontal screw 207. The horizontal screw 207 is installed outside the rotating rod. The ends of the horizontal screw 207 and the rotating rod pass through the interior of the adjustment groove. The rotating rod can rotate inside the horizontal screw 207. The other end of the rotating rod is fixedly connected to the rotating column 210. Two sets of spiral rings 208 are threadedly connected to the outside of the horizontal screw 207. One end of the rotating rod located on both sides of the equipment is fixedly connected to the corresponding rotating column 209 on both sides of the equipment.
[0033] The blocking assembly includes two sets of baffles 200 disposed on the top of the frame 100. Two sets of recesses 202 are fixedly disposed on the surface of the baffles 200. Multiple sets of vertical screws 206 are fixedly disposed on the top of the frame 100. Threaded rings 205 are threadedly connected to the outside of the vertical screws 206.
[0034] This utility model, through its designed limiting mechanism, uses multiple sets of pressure belts 203 to press and limit the buckles when multiple sets of buckles are conveyed sequentially on the conveyor belt 102 during use. This prevents the buckles from stacking or becoming misaligned as the conveyor belt 102 moves. Furthermore, the contact distance between the two sets of baffles 200 and the pressure belts 203 and the buckles can be adjusted according to the different sizes of buckles, increasing the applicability of limiting buckles of different sizes, improving the conveying effect of the buckles, and thus improving the quality of the buckles in subsequent processing.
[0035] Example 2
[0036] Please refer to Example 1. Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 A tensioning element is provided on the back of the frame 100. The tensioning element includes an L-shaped block 301 fixed on the back of the frame 100. A pressure roller 300 is rotatably provided on the back of the L-shaped block 301. The outer wall of the pressure roller 300 contacts the transmission belt 204.
[0037] The L-shaped block 301 is provided with a limiting post 303 inside. The limiting post 303 can limit the pressure roller 300 when it is raised and lowered. The bottom of the limiting post 303 is fixed to the outer wall of the pressure roller 300.
[0038] The L-shaped block 301 is internally connected to a vertical stud 302 via a thread. A mounting bearing 304 is fitted onto the bottom of the vertical stud 302. The mounting bearing 304 facilitates the lifting and lowering of the pressure roller 300 when the vertical stud 302 is rotated. The mounting bearing 304 consists of an outer ring and an inner ring. The inner ring is fixed to the bottom of the vertical stud 302, and the outer ring contacts the pressure roller 300. The pressure roller 300 consists of two sets of cylinders. The cylinder closer to the L-shaped block 301 is fixed, while the cylinder further away from the L-shaped block 301 is rotatably mounted on the cylinder closer to the L-shaped block 301.
[0039] This utility model, through its designed tensioning component, can tension the transmission belt 204 when pressed and limited by buckles of different sizes, thereby increasing the tightness of the transmission belt 204. The tensioning of the transmission belt 204 is achieved by pressing down or moving up the pressure roller 300, which facilitates the transmission and pressing of the pressure belt 203 through the transmission belt 204. It also ensures that the rotation speed of the conveyor belt 102 is consistent with the rotation speed of the pressure belt 203, thus improving the limiting effect.
[0040] In this embodiment, a drive motor 101 is fixedly installed on the front of the frame 100, the working end of the drive motor 101 is in contact with the end of the rotating shaft 104, and multiple sets of buckles are provided above the conveyor belt 102.
[0041] Working principle and usage process of this utility model:
[0042] When this utility model is in use, the drive motor 101 is turned on to drive the rotating shaft 104 to rotate. The rotating shaft 104 drives the conveyor belt 102 to move and run. Then, multiple sets of buckles are placed on the conveyor belt 102 in the feeder to feed the buckles. During the rotation of the rotating shaft 104, the rotating rod located on the right side of the equipment is rotated through the transmission belt 204, which in turn drives the rotating column 209 to rotate. Then, the rotating column 209 drives the external pressure belt 203 to rotate and drives the left rotating column 209 to rotate. At this time, the bottom of the pressure belt 203 contacts the top of the buckle on the lower conveyor belt 102 to press and limit the buckle to prevent it from stacking or misaligning. In addition, the front and back baffles 200 further limit the buckles during the conveying process to prevent them from detaching from the conveyor belt 102.
[0043] When the size of the buckles on the conveyor belt 102 is different, the height of the pressure belt 203 and the position of the baffle 200 need to be adjusted. When adjusting the height of the pressure belt 203, rotate the two sets of spiral rings 208 located outside the horizontal screw 207 away from each other in opposite directions. Then move the rotating column 209 up or down to a suitable height position, driving the horizontal screw 207 to rise and fall in the adjustment groove in the vertical plate 201. Then rotate the two sets of spiral rings 208 closer to each other in opposite directions to tighten them. At this time, the height of the rotating column 209 and the pressure belt 203 can be adjusted. When adjusting the position of the baffle 200, rotate the threaded ring 205 upwards, and then move the concave block 202 closer to or away from the conveyor belt. Moving the baffle 200 in the direction of 102 causes the baffle 200 to move. After it is in position, turn the threaded ring 205 downward and tighten it to adjust the position of the baffle 200. Finally, turn the first threaded ring 211 on the front of the rotating column 209 to the front and unscrew it to remove it. Then, adjust the number of pressure bands 203 on the rotating column 209 according to the size of the buckle. When the buckle is larger than the width of multiple pressure bands 203, continue to put other pressure bands 203 on the rotating column 209 to increase the width of multiple pressure bands 203 together. When the buckle is smaller than the width of multiple pressure bands 203, remove the corresponding number of pressure bands 203 from the rotating column 209 to reduce the width of multiple pressure bands 203 together.
[0044] When the transmission belt 204 is tensioned by pressing and limiting the buckles of different sizes, the vertical stud 302 is rotated upward, causing the pressure roller 300 and the limiting post 303 below to move upward. After the height of the pressure belt 203 is adjusted, the vertical stud 302 is rotated downward, causing the pressure roller 300 and the limiting post 303 to move accordingly. Then, the bottom outer side of the pressure roller 300 can press the transmission belt 204 against it, thus tensioning the transmission belt 204 and facilitating the transmission and pressing of the pressure belt 203 through the transmission belt 204.
[0045] The above embodiments are only used to illustrate the technical methods of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical methods of this utility model without departing from the spirit and scope of the technical methods of this utility model.
Claims
1. A buckle processing feeder, comprising a frame (100) and a conveyor belt (102) disposed on the frame (100), characterized in that: A limiting mechanism is provided on the frame (100), the limiting mechanism comprising: The clamping assembly includes two sets of rotating columns (209) disposed above the frame (100), and multiple sets of pressure bands (203) are sleeved between the two sets of rotating columns (209). An adjusting component is provided between the rotating columns (209) and the frame (100). A blocking assembly is located at the front and rear of the top of the frame (100) to block and limit the latches during transport.
2. The buckle processing feeding machine according to claim 1, characterized in that: The frame (100) is internally equipped with two sets of rotating shafts (104), and a rotating column (210) is provided on the back of the rotating column (209). A transmission belt (204) is sleeved between the rotating column (210) and the rotating shaft (104).
3. The buckle processing feeding machine according to claim 1, characterized in that: The rotating column (209) is provided with an external thread, and two sets of first threaded rings (211) are connected to the outside of the external thread by thread.
4. The buckle processing feeding machine according to claim 1, characterized in that: The adjusting component includes two side plates (201) fixed to the top of both sides of the frame (100). The inside of the side plates (201) is provided with an adjusting groove. A rotating rod is fixedly provided on the back of the rotating column (209). A horizontal screw (207) is provided on the outside of the rotating rod. Two sets of spiral rings (208) are threadedly connected to the outside of the horizontal screw (207).
5. A buckle processing feeding machine according to claim 1, characterized in that: The blocking assembly includes two sets of baffles (200) disposed on the top of the frame (100), and two sets of recesses (202) are fixedly disposed on the surface of the baffles (200). Multiple sets of vertical screws (206) are fixedly disposed on the top of the frame (100), and threaded rings (205) are threadedly connected to the outside of the vertical screws (206).
6. A buckle processing feeding machine according to claim 1, characterized in that: The back of the frame (100) is provided with a tensioning member, which includes an L-shaped block (301) fixed to the back of the frame (100), and a pressure roller (300) is rotatably provided on the back of the L-shaped block (301). The L-shaped block (301) is internally equipped with a limit post (303).
7. A buckle processing feeding machine according to claim 6, characterized in that: The L-shaped block (301) is internally connected to a vertical stud (302) by a thread, and a mounting bearing (304) is fitted at the bottom of the vertical stud (302).
8. A buckle processing feeding machine according to claim 1, characterized in that: A drive motor (101) is fixedly mounted on the front of the frame (100), and the working end of the drive motor (101) is in contact with the end of the rotating shaft (104).