Inductor double-station dispensing machine
By designing an inductor dual-station dispensing machine, which utilizes a moving dispensing mechanism, a clamping and flipping mechanism, and a top-loading mechanism, automated dual-station dispensing of inductor coils and bases is achieved. This solves the problem of low dispensing efficiency in existing technologies, improves production efficiency, and saves labor costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-03-06
AI Technical Summary
The existing method of fixing inductor coils to the base with adhesive is inefficient, relies on manual operation, and is time-consuming and labor-intensive.
An inductor dual-station dispensing machine was designed, comprising a moving dispensing mechanism, a clamping and flipping mechanism, and a top-loading mechanism, to realize automated dual-station dispensing processing of inductor coils. The dispensing efficiency is improved through the coordinated work of the conveyor track, conveyor motor, clamping and flipping mechanism, and dispensing gun.
It realizes automated dual-station dispensing of inductor coils and bases, improving dispensing efficiency, saving labor costs, and increasing production efficiency.
Smart Images

Figure CN223970285U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of dispensing machine technology, specifically to an inductive dual-station dispensing machine. Background Technology
[0002] After the inductor coil and base assembly is assembled, it needs to be glued using a dispensing machine to completely fix the coil and base. Currently, the production process involves manually loading the inductor and base assembly onto the dispensing table, applying glue, and then removing it.
[0003] However, traditional dispensing requires manual application of adhesive to fix the inductor to the base one by one, which is inefficient and time-consuming. Utility Model Content
[0004] To address the shortcomings of existing technologies, this invention provides an inductive dual-station adhesive dispensing machine, which solves the problems mentioned in the background section.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an inductive dual-station dispensing machine, comprising a machine body, a conveying track fixed inside the machine body, a conveying motor fixed to the side of the conveying track, material placed on the upper end of the conveying track, a support frame fixedly connected to the upper end of the machine body, a movable dispensing mechanism fixedly connected to the support frame, a material ejection mechanism fixed inside the machine body, the material ejection mechanism being matched with the material, and a clamping and flipping mechanism being provided inside the machine body, the clamping and flipping mechanisms being symmetrically arranged within the machine body, and the movable dispensing mechanism and the clamping and flipping mechanism being positioned correspondingly.
[0006] Furthermore, the movable dispensing mechanism includes a frame fixed to the upper end of a support frame, a transverse slide rail fixed on the frame, a movable plate slidably mounted on the transverse slide rail, a connecting plate fixedly connected to one side of the movable plate, a first chain fixedly mounted to the outer end of the connecting plate, the other end of the first chain fixedly connected to the upper end of the frame, a transverse drive motor fixedly connected to the lower end of the frame, the transverse drive motor driving the transmission belt to move the movable plate, a connecting plate fixedly connected to the upper end of the movable plate, a vertical electric cylinder fixedly connected to the upper end of the connecting plate, a support frame fixedly mounted to the lower end of the movable plate, a sliding plate slidably mounted inside the support frame, a dispensing gun fixedly mounted to the outer side of the sliding plate, a second chain fixedly mounted to the outer side of the sliding plate, and the other end of the second chain fixedly connected to the frame.
[0007] Furthermore, the top material mechanism includes a vertical rail, which is fixed inside the machine body. An electric rail is slidably connected to the vertical rail, and a T-shaped top plate is fixedly connected to the outside of the electric rail. The position of the T-shaped top plate corresponds to the position of the material.
[0008] Furthermore, the clamping and flipping mechanism includes a flipping frame, which is rotatably connected to the machine body. A flipping motor is fixedly connected to the machine body. The output end of the flipping motor is fixedly connected to the outside of the flipping frame. Clamping cylinders are fixedly connected to both ends inside the flipping frame. A gripper is fixedly connected to the output end of the gripping cylinder. The gripper is matched and clamped to the material. A pressure plate is pneumatically connected to the upper end inside the flipping frame. The pressure plate abuts against the upper end of the material.
[0009] Furthermore, the flipping motor has a flipping angle of 45° and operates in a reciprocating manner.
[0010] Furthermore, the top material mechanism and the moving dispensing mechanism are matched and moved alternately.
[0011] This invention provides an inductive dual-point adhesive dispensing machine. Compared with the prior art, it has the following advantages:
[0012] This dual-station inductor dispensing machine features a core design incorporating a moving dispensing mechanism, a clamping and flipping mechanism, and a top-feeding mechanism. The material is conveyed to the area below the moving dispensing mechanism, while the clamping and flipping mechanism displays both sides of the material below the dispensing gun, improving bottom dispensing of the inductor material. The moving dispensing mechanism moves left and right on the support frame to achieve dual-station processing, thereby increasing dispensing efficiency. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0014] Figure 2 This is a schematic diagram of the structure of the mobile dispensing mechanism and the clamping and flipping mechanism of this utility model;
[0015] Figure 3 This is a schematic diagram of the clamping and flipping mechanism and the ejecting mechanism of this utility model;
[0016] Figure 4 This is a schematic diagram of the structure of the mobile dispensing mechanism of this utility model;
[0017] Figure 5 This is a schematic diagram of the structure of the mobile dispensing mechanism of this utility model;
[0018] Figure 6 This is a schematic diagram of the clamping and flipping structure of this utility model;
[0019] Figure 7 This is a schematic diagram of the top material feeding mechanism of this utility model.
[0020] In the diagram: 1. Machine body; 2. Conveying track; 3. Conveying motor; 4. Material; 5. Support frame; 6. Moving dispensing mechanism; 601. Frame; 602. Moving plate; 603. First chain belt; 604. Connecting plate; 605. Horizontal slide rail; 606. Connecting plate; 607. Vertical electric cylinder; 608. Support frame; 609. Slide plate; 610. Dispensing gun; 611. Second chain belt; 612. Horizontal drive motor; 7. Top material mechanism; 701. Vertical rail; 702. Electric rail; 703. T-shaped top plate; 8. Clamping and flipping mechanism; 801. Flipping motor; 802. Flipping frame; 803. Clamping cylinder; 804. Gripper; 805. Pressure plate. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Please see Figure 1-7 This utility model provides a technical solution: an inductor dual-station dispensing machine, including a machine body 1, a conveyor rail 2 fixed inside the machine body 1, a conveyor motor 3 fixed to the side of the conveyor rail 2, material 4 placed on the upper end of the conveyor rail 2, a support frame 5 fixedly connected to the upper end of the machine body 1, a movable dispensing mechanism 6 fixedly connected to the support frame 5, a top-loading mechanism 7 fixed inside the machine body 1, the top-loading mechanism 7 being matched with the material 4, and a clamping and flipping mechanism 8 being provided inside the machine body 1, symmetrically arranged inside the machine body 1, with the movable dispensing mechanism 6 corresponding to the position of the clamping and flipping mechanism 8; multiple inductor coils form the material 4, thus multiple inductors can be processed at once, and the material 4 enters through the conveyor rail 2. At the workstation of machine body 1, the conveyor track 2 is driven by the side conveyor motor 3. This is existing known technology and will not be described in detail here. When material 4 enters below the moving dispensing mechanism 6, the material 4 is pushed upward out of the conveyor track 2 by the top material mechanism 7. At this time, the moving dispensing mechanism 6 matches the material 4. The material 4 rotates left and right under the action of the clamping and flipping mechanism 8. After the clamping and flipping mechanism 8 flips the material 4, it is dispensed by the moving dispensing mechanism 6. When one group of material 4 is dispensed, the material 4 is taken off by the top material mechanism 7. At this time, the moving dispensing mechanism 6 moves to the other end on the support frame 5. The material 4 is prepared below the other end, thereby improving the dispensing efficiency of material 4 and saving manual labor.
[0023] like Figure 4 and Figure 5As shown, the movable dispensing mechanism 6 includes a frame 601 fixed to the upper end of the support frame 5. A transverse slide rail 605 is fixed on the frame 601, and a movable plate 602 is slidably mounted on the transverse slide rail 605. A connecting plate 604 is fixedly connected to one side of the movable plate 602, and a first chain belt 603 is fixed to the outer end of the connecting plate 604. The other end of the first chain belt 603 is fixedly connected to the upper end of the frame 601. A transverse drive motor 612 is fixedly connected to the lower end of the frame 601. The transverse drive motor 612 drives the transmission belt to move the movable plate 602. A connecting plate 606 is fixedly connected to the upper end of the movable plate 602, and a vertical electric cylinder 607 is fixedly connected to the upper end of the connecting plate 606. A support frame 608 is fixedly fixed to the lower end of the movable plate 602. A sliding plate 609 is slidably connected up and down inside the support frame 608, and a sliding plate 609 is fixedly connected to the outer side of the sliding plate 609. The dispensing gun 610 has a second chain belt 611 fixedly connected to the outer side of the slide plate 609. The other end of the second chain belt 611 is fixedly connected to the frame 601. The support frame 5 is fixedly connected to the top of the inside of the body 1. The moving plate 602 slides on the frame 601 and is driven by the transmission belt through the horizontal drive motor 612. The moving plate 602 is fixedly connected to the side of the transmission belt. The moving plate 602 is controlled to move by the horizontal drive motor 612 and moves bidirectionally on the frame 601 with the assistance of the first chain belt 603, thus forming a dual-station effect. The dispensing gun 610 moves up and down on the support frame 608 with the slide plate 609. The slide plate 609 is fixedly connected to the output end of the vertical electric cylinder 607. The vertical electric cylinder 607 pushes the dispensing gun 610 to move up and down. The slide plate 609 runs smoothly with the assistance of the second chain belt 611.
[0024] like Figure 7 As shown, the feeding mechanism 7 includes a vertical rail 701, which is fixed inside the machine body 1. The vertical rail 701 is slidably connected to an electric rail 702. A T-shaped top plate 703 is fixedly connected to the outside of the electric rail 702. The position of the T-shaped top plate 703 corresponds to the position of the material 4. The vertical rail 701 is fixed inside the machine body 1, and the electric rail 702 is slidably connected to the vertical rail 701. The electric rail 702 moves up and down by electric drive, and drives the T-shaped top plate 703 to move up and down. When the T-shaped top plate 703 moves upward, it pushes the material 4 upward out of the conveying track 2. At this time, the material 4 moves to the lower end of the clamping and flipping mechanism 8. The clamping and flipping mechanism 8 clamps the material 4 and drives it to rotate to cooperate with the glue gun 610 for glue dispensing.
[0025] like Figure 6As shown, the clamping and flipping mechanism 8 includes a flipping frame 802, which is rotatably connected to the machine body 1. A flipping motor 801 is fixedly connected to the machine body 1. The output end of the flipping motor 801 is fixedly connected to the outside of the flipping frame 802. Clamping cylinders 803 are fixedly connected to both ends inside the flipping frame 802. A gripper 804 is fixedly connected to the output end of the gripping cylinder 803. The gripper 804 is matched and clamped with the material 4. A pressure plate 805 is pneumatically connected to the upper end inside the flipping frame 802. The pressure plate 805 abuts against the upper end of the material 4. The flipping frame 802 is driven to rotate by the flipping motor 801. The flipping frame 802 drives the clamping cylinders 803 at both ends to rotate. The clamping cylinders 803 clamp and fix the material 4. The pressure plate 805 moves downward to press and fix the inductor. The flipping frame 802 rotates left and right to cooperate with the glue gun 610 to dispense glue and fix it.
[0026] like Figure 6 As shown, the flipping motor 801 is set to a flipping angle of 45° and reciprocates; the flipping motor 801 drives the flipping frame 802 to rotate left and right by 45°, and works with the glue gun 610 to glue and fix the inductor base, and rotates left and right to glue and fix the two ends of the material 4.
[0027] like Figure 2 As shown, the top material mechanism 7 and the moving dispensing mechanism 6 are matched and moved alternately; the top material mechanism 7 and the moving dispensing mechanism 6 cooperate and control each other, which can improve the dispensing efficiency of material 4.
Claims
1. An inductive dual station spot glue machine comprising a machine body (1), characterized in that, The inside of the machine body (1) is fixed with a conveying track (2), the side of the conveying track (2) is fixed with a conveying motor (3), the upper end of the conveying track (2) is placed with a material (4), the upper end of the machine body (1) is fixedly connected with a support frame (5), the support frame (5) is fixedly connected with a moving point glue mechanism (6), the inside of the machine body (1) is fixed with a material lifting mechanism (7), the material lifting mechanism (7) is matched with the material (4), the inside of the machine body (1) is provided with a clamping and overturning mechanism (8), the clamping and overturning mechanism (8) is symmetrically arranged in the machine body (1), and the position of the moving point glue mechanism (6) corresponds to the position of the clamping and overturning mechanism (8).
2. The inductive dual station spot glue machine of claim 1, wherein, The moving point glue mechanism (6) comprises a frame (601) fixed on the upper end of the support frame (5), a transverse sliding rail (605) fixed on the frame (601), a moving plate (602) slidably arranged on the transverse sliding rail (605), a connecting plate (604) fixedly connected to one side of the moving plate (602), a first chain belt (603) fixed to the outer end of the connecting plate (604), the other end of the first chain belt (603) is fixedly connected with the upper end of the frame (601), a transverse drive motor (612) is fixedly connected to the lower end of the frame (601), the transverse drive motor (612) drives the moving plate (602) to move, an adapter plate (606) is fixedly connected to the upper end of the moving plate (602), a vertical electric cylinder (607) is fixedly connected to the upper end of the adapter plate (606), a support frame (608) is fixed to the lower end of the moving plate (602), a sliding plate (609) is slidably connected in the support frame (608), a point glue gun (610) is fixedly connected to the outer side of the sliding plate (609), a second chain belt (611) is fixedly connected to the outer side of the sliding plate (609), and the other end of the second chain belt (611) is fixedly connected with the frame (601).
3. The inductive dual station spot glue machine of claim 2, wherein, The material lifting mechanism (7) comprises a vertical rail (701), the vertical rail (701) is fixed in the machine body (1), an electric rail (702) is slidably connected to the vertical rail (701), a T-shaped lifting plate (703) is fixedly connected to the outer side of the electric rail (702), and the position of the T-shaped lifting plate (703) corresponds to the position of the material (4).
4. The inductive dual station spot glue machine of claim 2, wherein, The clamping and overturning mechanism (8) comprises a overturning frame (802), the overturning frame (802) is rotatably connected to the machine body (1), a overturning motor (801) is fixedly connected to the machine body (1), the output end of the overturning motor (801) is fixedly connected to the outer side of the overturning frame (802), clamping cylinders (803) are fixedly connected to the inside of the overturning frame (802), the output end of the clamping cylinder (803) is fixedly connected with a clamping jaw (804), the clamping jaw (804) is matched with the material (4) and is clamped, a pressing plate (805) is pneumatically connected to the inside of the overturning frame (802), and the pressing plate (805) is arranged in abutment with the upper end of the material (4).
5. The inductive dual station spot glue machine of claim 4, wherein, The turnover angle of the turnover motor (801) is set as 45°, and the turnover motor (801) reciprocates.
6. The inductive dual station spot glue machine of claim 2, wherein, The top material mechanism (7) and the moving point glue mechanism (6) are matched and staggered to move.