Arrangement conveying device for chip inductor production and processing

By setting an adjustable limiting assembly and push-up structure at the output end of the material groove of the patch inductor processing equipment, the problem of high friction during push-up of the workpiece is solved, and the protection of workpiece surface integrity and product quality is achieved.

CN119929468AActive Publication Date: 2025-05-06QINGYUAN ZHENDONG ELECTRONIC TECH CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202411983868.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-05-06
Estimated Expiration
2044-12-31

AI Technical Summary

Technical Problem

When existing chip inductor processing equipment pushes and separates the workpiece, the friction between the first workpiece and the second workpiece is large, which may cause scratches or damage on the surface of the workpiece and affect product quality.

Method used

A arrangement and conveying device for chip inductor production and processing is designed. By setting an adjustable limiting assembly and pushing structure at the output end of the material trough, the secondary workpiece is first pressed and fixed, and then pushing the limiting assembly is pushed away from the center of the material trough, providing a moving space for the first workpiece and reducing friction.

Benefits of technology

It effectively reduces the risk of scratches or damage on the surface of the workpiece, improves product quality, and ensures the integrity of the workpiece during processing.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119929468A_ABST
    Figure CN119929468A_ABST
Patent Text Reader

Abstract

The invention provides an arranging and conveying device for chip inductor production and processing. The arranging and conveying device comprises a trough used for tightly arranging workpieces. A limiting assembly is mounted at the end part of the output end of the trough and is used for blocking the port of the output end of the trough, so that a blanking position for adaptively placing a workpiece is formed; a pushing structure is installed on the side wall of the output end of the material groove and corresponds to the discharging position. When the pushing structure pushes the workpieces, the adjacent workpieces on one side of the upstream of the discharging position are firstly pressed and fixed; then the limiting assembly is pushed, so that the limiting assembly deviates towards the side away from the center of the material groove in the workpiece arrangement direction; then the loosened workpieces at the discharging position are pushed, so that the workpieces are conveyed to the outside; when a workpiece is pushed and separated, a secondary workpiece can be clamped, a moving space is provided for a first workpiece, the friction force between the secondary workpiece and the first workpiece is effectively reduced, and the surface of the workpiece is prevented from being scratched or damaged.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of electronic component processing equipment, and more specifically, to an arrangement and conveying device for producing and processing chip inductors. Background Art

[0002] In the production of chip inductors, many processing links require single processing of the workpiece; the conventional operation is to arrange the workpieces by vibrating the loading tray, and push the workpieces out one by one at the end of the arrangement through the pushing structure;

[0003] Although most of the equipment currently adopts this structure, it also has a defect that is easily overlooked; the workpieces at the end positions are arranged closely, and when the workpiece in the first position is pushed, it is actually pushed by rubbing against the adjacent workpieces. This action may cause scratches on the surfaces of the two workpieces. For some workpieces that require tight processing or subsequent secondary processing, it may even affect the subsequent processing and the overall product quality, so it needs to be improved. Summary of the invention

[0004] In order to overcome the defects of the prior art, the technical problem to be solved by the present invention is to propose an arranging and conveying device for the production and processing of chip inductors, which can clamp the second workpiece when pushing and separating the workpieces, and provide space for the first workpiece to move, thereby effectively reducing the friction between the two and preventing the surface of the workpiece from being scratched or damaged.

[0005] To achieve this object, the present invention adopts the following technical solutions:

[0006] The present invention provides an arranging and conveying device for producing and processing chip inductors, comprising a material trough for arranging workpieces closely; a limiting component is installed at the end of the output end of the material trough to block the output end port of the material trough, thereby forming a material discharge position for fitting and placing a workpiece; a pushing structure is installed on the side wall of the output end of the material trough, corresponding to the material discharge position setting; when the pushing structure pushes the workpiece, the adjacent workpiece on the upstream side of the material discharge position is first pressed and fixed; then the limiting component is pushed to deviate to a side away from the center of the material trough along the workpiece arrangement direction; then the workpiece released at the material discharge position is pushed to send the workpiece to the outside.

[0007] In a preferred technical solution of the present invention, an open opening penetrating through the two side walls is provided at the output end of the material trough; the limiting assembly includes a slide seat, a baffle is fixedly provided on the top of the side of the slide seat away from the center of the material trough, the baffle extends upward, and the two sides of the baffle slide against the two relative inner walls of the material trough, and the enclosure between the side walls of the baffle, the top surface of the slide seat, and the two side walls of the material trough forms a material lowering position; at least one first guide bolt is movably penetrated through the terminal end surface of the material trough, and the end of the first guide bolt is threadedly connected to the slide seat, and a first spring is sleeved on the first guide bolt, and the first spring provides the slide seat with a thrust toward the side of the center of the material trough to maintain the width of the material lowering position to match the width of a workpiece; when the push structure pushes the workpiece, it provides the slide seat with a force to overcome the first spring, so that the slide seat moves in the direction of the first guide bolt, thereby increasing the width of the material lowering position and allowing the workpiece at the material lowering position to break away from a tightly arranged state.

[0008] In a preferred technical solution of the present invention, when the push structure pushes the workpiece, the slide seat moves 0.5 mm to 1 mm in the direction of the first guide bolt.

[0009] In a preferred technical solution of the present invention, the pushing structure includes a cylinder and a push plate installed at the end of the piston rod of the cylinder, on which a pushing assembly, a pushing assembly and a material unloading push rod are installed; the material unloading push rod is arranged corresponding to the material unloading position, and is used to push the workpiece at the material unloading position to the outside; a first through hole is provided on the side wall of the trough near the upstream side of the open mouth, and the first through hole is arranged corresponding to the second arrangement station, and the pushing assembly is arranged corresponding to the first through hole, and is used to press and fix the workpiece at the arrangement station; the pushing assembly is arranged corresponding to the slide seat, and is used to push the slide seat to move in the direction of the first guide bolt.

[0010] In a preferred technical solution of the present invention, the pushing assembly includes a pushing block, a second guide bolt, and a second spring; the second guide bolt is slidably inserted into the pushing plate, the end of the second guide bolt is threadedly connected and fixed on the pushing block, and the second spring is sleeved on the second guide bolt; the cylinder drives the pushing plate to push in the direction of the lower material level, and after the pushing plate moves to a preset position, it applies force to the second spring, the pushing block cooperates with the slide seat, and the pushing slide seat moves in the direction of the first guide bolt.

[0011] In a preferred technical solution of the present invention, a first inclined surface is provided on the side of the push block close to the first guide bolt, and the end of the first inclined surface away from the second guide bolt deviates toward the center of the trough; a side wall of the slide seat close to the pushing assembly is provided with a snap fit to the shape of the push block, and a second inclined surface is correspondingly provided at the snap fit; the first inclined surface and the second inclined surface are slidably connected with each other, and the push block pushed inward pushes the slide seat to move in the direction of the first guide bolt.

[0012] In a preferred technical solution of the present invention, the second guide bolt includes a first column bar and a second column bar connected to each other, the end of the first column bar is provided with a thread, and a first threaded hole is correspondingly provided on the wall surface of the push block, and the first column bar is threadedly connected to the push block; the diameter of the second column bar is larger than the diameter of the first column bar, and a first circular hole is provided on the push plate corresponding to the second column bar; a sliding sleeve and a first pressure ring are respectively fixedly provided at both ends of the second spring, and a second pressure ring is fixedly provided on the outer wall of the sliding sleeve, and the inner diameters of the sliding sleeve and the first pressure ring are both matched with the diameter of the first column bar, and the second spring is slidably arranged on the first column bar via the sliding sleeve and the first pressure ring; the outer diameter of the sliding sleeve is matched with the diameter of the second column bar, and the push plate that is pushed inward to a preset position drives the sliding sleeve to move, thereby compressing the second spring.

[0013] In a preferred technical solution of the present invention, a guide block is fixedly provided on the wall surface of the push block close to the center of the trough, and a guide groove is correspondingly provided on the side wall of the open mouth. The guide groove forms a narrowing portion at the groove position, and the shape of the guide block is adapted to the shape of the guide groove. The push block is slidably clamped in the guide groove through the guide block.

[0014] In a preferred technical solution of the present invention, the pushing assembly includes a pressure rod and a third spring. The pressure rod is slidably inserted into the push plate, and the end is limited by a retaining spring. A third pressure ring is fixedly provided on the side wall of one end of the pressure rod close to the material trough, and the third spring is sleeved on the pressure rod and clamped between the third pressure ring and the push plate. The end of the pressure rod away from the push plate is adapted to be inserted into the first through hole, and the distance between the end face of the pressure rod and the surface of the third pressure ring is adapted to the depth of the first through hole, and a rubber pad is fixed on the end face of the pressure rod.

[0015] The beneficial effects of the present invention are:

[0016] The present invention provides an arrangement and conveying device for the production and processing of patch inductors. An adjustable and movable limiter assembly is arranged at the output end of the material trough. During the process of pushing and unloading the workpiece, the pushing structure first presses and fixes the adjacent workpiece arranged in the second position to prevent the subsequent continuous incoming materials from affecting the pushing and unloading action.

[0017] After the clamping is completed, the limit assembly is pushed to make it deviate to the side away from the center of the trough along the workpiece arrangement direction, providing loose space for the first workpiece, at least reducing the friction between the first workpiece and the second workpiece, and then the loosened workpiece at the lower material position is pushed to send the workpiece to the outside, effectively reducing the problem of scratches and damage on the workpiece surface and ensuring product quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a three-dimensional structural schematic diagram of an arrangement and conveying device for producing and processing chip inductors provided in a specific embodiment of the present invention;

[0019] Figure 2It is a schematic diagram of a three-dimensional unfolded structure of an arrangement and conveying device for producing and processing chip inductors provided in a specific embodiment of the present invention;

[0020] Figure 3 is a schematic diagram of the three-dimensional structure of a material trough provided in a specific embodiment of the present invention;

[0021] Figure 4 is a schematic diagram of the three-dimensional structure of a limit assembly provided in a specific embodiment of the present invention;

[0022] Figure 5 is a schematic diagram of the three-dimensional structure of the push structure provided in a specific embodiment of the present invention;

[0023] Figure 6 is a schematic diagram of a three-dimensional unfolded structure of a push-up structure provided in a specific embodiment of the present invention from a first viewing angle;

[0024] Figure 7 It is a schematic diagram of the stereoscopic unfolding structure from a second viewing angle of the pushing structure provided in a specific embodiment of the present invention.

[0025] In the figure:

[0026] 100, material trough; 110, open mouth; 120, first through hole; 130, guide groove;

[0027] 200, limit assembly; 210, slide seat; 211, bayonet; 212, second inclined surface; 220, baffle; 230, first guide bolt; 240, first spring; 300, unloading position;

[0028] 400, push structure; 410, cylinder; 420, push plate; 430, push assembly; 431, pressure rod; 432, third spring; 433, third pressure ring; 434, rubber pad;

[0029] 440, push assembly; 441, push block; 442, second guide bolt; 4421, first column; 4422, second column;

[0030] 443, second spring; 444, first inclined surface; 445, sliding sleeve; 446, first pressure ring; 447, second pressure ring; 448, guide block; 450, unloading push rod. DETAILED DESCRIPTION

[0031] The technical solution of the present invention is further described below with reference to the accompanying drawings and through specific implementation methods.

[0032] like Figures 1 to 3As shown, a specific embodiment of the present invention discloses an arranging and conveying device for the production and processing of chip inductors, including a material trough 100 for closely arranging workpieces; a limiting assembly 200 is installed at the output end of the material trough 100 to block the output end port of the material trough, thereby forming a material discharge position 300 for accommodating the placement of a workpiece; a pushing structure 400 is installed on the output end side wall of the material trough 200, corresponding to the material discharge position 300; when the pushing structure pushes the workpiece, the adjacent workpiece on the upstream side of the material discharge position is first pressed and fixed; then the limiting assembly is pushed to deviate from the limiting assembly to the side away from the center of the material trough along the workpiece arrangement direction; then the workpiece released at the material discharge position is pushed to send the workpiece to the outside.

[0033] The above-mentioned arrangement and conveying device for the production and processing of chip inductors is provided with an adjustable and movable limit assembly at the output end of the material trough. During the process of pushing and unloading the workpiece, the pushing structure first presses and fixes the adjacent workpiece arranged in the second position to prevent the subsequent continuous incoming materials from affecting the pushing and unloading action.

[0034] After the clamping is completed, the limit assembly is pushed to make it deviate to the side away from the center of the trough along the workpiece arrangement direction, providing loose space for the first workpiece, at least reducing the friction between the first workpiece and the second workpiece, and then the loosened workpiece at the lower material position is pushed to send the workpiece to the outside, effectively reducing the problem of scratches and damage on the workpiece surface and ensuring product quality.

[0035] Furthermore, if Figure 3 As shown, the output end of the trough 100 is provided with an open opening 110 penetrating through the two side walls; Figure 1 , Figure 4 As shown, the limit assembly 200 includes a slide 210, and a baffle 220 is fixedly provided on the top of one side of the slide 210 away from the center of the material trough. The baffle extends upward, and the two sides of the baffle 220 slide against the two opposite inner walls of the material trough 100, and the baffle side walls, the top surface of the slide, and the two side walls of the material trough are surrounded to form a material unloading position; the slide part presents an L-shaped structure, which can limit the end and accommodate the workpiece, and does not affect the unloading by side pushing;

[0036] At least one first guide bolt 230 is movably provided on the end surface of the material trough 100, and the end of the first guide bolt 230 is threadedly connected to the slide 210. A first spring 240 is sleeved on the first guide bolt 230, and the first spring provides the slide with a thrust toward the center of the material trough to maintain the width of the material discharge position to match the width of a workpiece; because the baffle is slidably supported on the inner wall of the material trough, it is limited in this direction, and the direction limitation of the first guide bolt ensures that the entire slide can only move along the feeding direction of the material trough; the first spring provides elastic support for the slide, which, on the one hand, can maintain the slide in close contact with the material trough and maintain the width of the material discharge position at the required width of the workpiece; on the other hand, it can provide a basis for pushing deformation, so that the slide can be separated from the material trough and provide space for the workpiece to move, which is convenient for pushing and discharging;

[0037] When the push structure pushes the workpiece, it provides the slide with force to overcome the first spring, so that the slide moves in the direction of the first guide bolt, increasing the width of the material discharge position, and making the workpiece at the material discharge position break away from the tightly arranged state; the overall linkage structure can simplify the design and layout of external power devices, reduce the difficulty of operation and debugging, and also reduce costs.

[0038] Furthermore, when the push structure pushes the workpiece, the slide moves 0.5mm to 1mm in the direction of the first guide bolt. The loosening distance does not need to be too much, and the friction can be reduced. The above-mentioned range limitation is adopted to meet the above-mentioned requirements, and it is also convenient for the workpiece to be aligned with the downstream equipment, which is convenient for subsequent processing.

[0039] Furthermore, if Figures 5 to 7 As shown, the pushing structure 400 includes a cylinder 410, a push plate 420 installed at the end of the piston rod of the cylinder 410, and a pushing assembly 430, a pushing assembly 440, and a material discharge push rod 450 are installed on the push plate 420; the material discharge push rod is arranged corresponding to the material discharge position, and is used to push the workpiece at the material discharge position to the outside; a first through hole 120 is provided on the side wall of the material trough 100 near the upstream side of the open mouth 110, and the first through hole is arranged corresponding to the second arrangement station, and the pushing assembly 430 is arranged corresponding to the first through hole 120, and is used to press and fix the workpiece at the arrangement station; the pushing assembly 440 is arranged corresponding to the slide seat 210, and is used to push the slide seat to move in the direction of the first guide bolt; the design of the entire pushing structure drives the push plate and its upper components to move synchronously through the single power component of the cylinder, thereby realizing multiple functional effects, effectively improving work efficiency, and reducing equipment cost and subsequent use and maintenance cost.

[0040] Furthermore, the pushing assembly 440 includes a pushing block 441, a second guide bolt 442, and a second spring 443; the second guide bolt 442 is slidably inserted into the pushing plate 420, the end of the second guide bolt 442 is threadedly connected and fixed on the pushing block 441, and the second spring 443 is sleeved on the second guide bolt 442; the cylinder drives the pushing plate to push in the direction of the lower material position, and after the pushing plate moves to a preset position, it applies force to the second spring, and the pushing block cooperates with the slide seat, and the pushing slide seat moves in the direction of the first guide bolt; the above-mentioned structural design limits the pushing assembly to not be started at the first time the pushing plate is active, and it needs to wait until the pushing assembly completes the clamping before moving, to ensure that only the first workpiece is pushed for material removal.

[0041] Furthermore, a first inclined surface 444 is provided on the side of the push block 441 close to the first guide bolt, and the end of the first inclined surface away from the second guide bolt deviates toward the center of the trough; a side wall of the slide 210 close to the pushing assembly is provided with a bayonet 211 that is adapted to the shape of the push block 441, and a second inclined surface 222 is correspondingly provided at the bayonet 211; the first inclined surface 444 and the second inclined surface 222 are slidably connected with each other, and the push block pushed inward pushes the slide to move in the direction of the first guide bolt; the direction of force is changed by sliding on the inclined surface, so that the slide can be simultaneously provided with a force to move along the direction of the slide groove, thereby achieving the desired opening and loosening effect.

[0042] Furthermore, the second guide bolt 442 includes a first column 4421 and a second column 4422 connected to each other, the end of the first column is provided with a thread, and a first threaded hole is correspondingly provided on the wall surface of the push block, and the first column 4421 is threadedly connected to the push block 441; the diameter of the second column 4422 is larger than the diameter of the first column 4421, and a first circular hole is provided on the push plate 420 corresponding to the second column 4422; the two ends of the second spring 443 are respectively fixed with a sliding sleeve 445 and a first pressing ring 446, and the outer wall of the sliding sleeve 445 is fixed with a second pressing ring 447, and the inner diameters of the sliding sleeve 445 and the first pressing ring 446 are the same as The diameter of the first column 4421 is adapted, and the second spring is slidably arranged on the first column through the sliding sleeve and the first pressure ring; the outer diameter of the sliding sleeve 445 is adapted to the diameter of the second column 4422, and the push plate that is pushed inward to the preset position drives the sliding sleeve to move, thereby compressing the second spring; under this structural design, it can be ensured that the push plate will not compress the second spring at the first time, and there is a certain buffer area in the front to meet the activity space for the pushing component to be pressed into place first, ensuring that the slide seat will not be pushed to loosen before the secondary workpiece is pressed, so that the subsequent workpieces can maintain a tightly arranged action, which is convenient for arranging and positioning and subsequent single separation of workpieces.

[0043] Furthermore, a guide block 448 is fixedly provided on the wall surface of the push block 441 close to the center of the trough, and a guide groove 130 is correspondingly provided on the side wall of the open mouth 110. The guide groove forms a narrowing portion at the groove position, and the shape of the guide block 448 is adapted to the shape of the guide groove 130. The push block is slidably clamped in the guide groove through the guide block; the slide seat is secondary limited so that it can only move in a single direction without rotation and swinging, and maintains a position that cooperates with the slide seat.

[0044] Furthermore, a second through hole is provided in the middle of the guide block, a second threaded hole is provided at the end of the guide groove, a third guide bolt is movably inserted into the second through hole, and the end of the third guide bolt is connected to the second threaded hole; a fourth spring is sleeved on the third guide bolt, and the fourth spring is located between the guide block and the end of the guide groove, providing the push block with an outward pushing force. On the one hand, it can serve as a limiting resistance when pushing the push block inward, and have a counteracting effect, so that the push block moves more smoothly; on the other hand, it can prevent the push block from deviating from the preset position, maintain the matching position of each component, and facilitate sequential pushing in the required order.

[0045] Furthermore, the pushing assembly 430 includes a pressing rod 431 and a third spring 432. The pressing rod is slidably inserted into the pushing plate, and the end is limited by a retaining spring. A third pressing ring 433 is fixedly provided on the side wall of one end of the pressing rod 431 close to the material trough 100. The third spring 432 is sleeved on the pressing rod 431 and clamped between the third pressing ring 433 and the pushing plate 420. The end of the pressing rod 431 away from the pushing plate 420 is adapted to be inserted into the first through hole 120. The distance between the end face of the pressing rod and the surface of the third pressing ring is adapted to the depth of the first through hole. A rubber pad 434 is fixedly provided on the end face of the pressing rod 431. The above structural design allows the pressing rod to be the first component to contact the workpiece. The subsequent continued movement of the pushing plate can compress the third spring without affecting the movement of the pushing plate and maintaining effective compression on the workpiece. The setting of the rubber pad can prevent hard contact with the workpiece and prevent damage to the workpiece.

[0046] It should be pointed out that the length of the unloading push rod, the length of the pressure rod, and the length of the second guide bolt need to be adjusted and adapted; the steps of first the pushing assembly clamps and fixes the secondary workpiece, then the pushing assembly pushes the slide to deviate, and then the unloading push rod pushes the workpiece to unload.

[0047] The present invention is described by preferred embodiments, and those skilled in the art will appreciate that various changes or equivalent substitutions may be made to these features and embodiments without departing from the spirit and scope of the present invention. The present invention is not limited to the specific embodiments disclosed herein, and other embodiments falling within the claims of this application are within the scope of protection of the present invention.

Claims

1. An arrangement and conveying device for chip inductor production and processing, characterized in that: Includes trough for closely arranging workpieces; A limit assembly is installed at the output end of the trough to block the output end of the trough, thereby forming a material discharge position for placing a workpiece; The side wall of the output end of the trough is equipped with a push-up structure, corresponding to the material discharge position setting; When the push structure pushes the workpiece, the adjacent workpiece on the upstream side of the material discharge position is first pressed and fixed; Then, the limiting assembly is pushed upward to make the limiting assembly deviate to a side away from the center of the trough along the workpiece arrangement direction; Then the workpiece released at the unloading position is pushed to send the workpiece to the outside.

2. The arrangement and conveying device for producing and processing chip inductors according to claim 1 is characterized in that: An opening penetrating through the two side walls is provided at the output end of the trough; The limit assembly includes a slide seat, a baffle is fixedly provided on the top of one side of the slide seat away from the center of the material trough, the baffle extends upward, and the two sides of the baffle slide against the two opposite inner walls of the material trough, and the baffle side walls, the top surface of the slide seat, and the two side walls of the material trough are surrounded to form a lowering position; At least one first guide bolt is movably provided on the end surface of the material trough, the end of the first guide bolt is threadedly connected to the slide seat, and a first spring is sleeved on the first guide bolt. The first spring provides a thrust to the slide seat toward the center of the material trough to maintain the width of the material position to match the width of a workpiece; When the push structure pushes the workpiece, it provides the slide with a force to overcome the first spring, so that the slide moves toward the first guide bolt, increasing the width of the material discharge position and causing the workpiece at the material discharge position to break away from a tightly arranged state.

3. The arrangement and conveying device for producing and processing chip inductors according to claim 2 is characterized in that: When the push structure pushes the workpiece, the slide seat moves 0.5mm to 1mm in the direction of the first guide bolt.

4. The arrangement and conveying device for producing and processing chip inductors according to claim 3 is characterized in that: The push structure includes a cylinder, a push plate installed at the end of the piston rod of the cylinder, and a push assembly, a push assembly, and a material discharge push rod are installed on the push plate; The unloading push rod is set corresponding to the unloading position and is used to push the workpiece at the unloading position to the outside; A first through hole is provided on the side wall of the trough near the upstream side of the open mouth, the first through hole is arranged corresponding to the second arrangement station, and the pushing assembly is arranged corresponding to the first through hole, and is used to press and fix the workpiece at the arrangement station; The push assembly is arranged corresponding to the slide seat and is used for pushing the slide seat to move in the direction of the first guide bolt.

5. The arrangement and conveying device for producing and processing chip inductors according to claim 4 is characterized in that: The push assembly includes a push block, a second guide bolt, and a second spring; The second guide bolt is slidably inserted into the push plate, the end of the second guide bolt is threadedly connected and fixed on the push block, and the second spring is sleeved on the second guide bolt; The cylinder drives the push plate to push in the direction of the lower material position. After the push plate moves to the preset position, it applies force to the second spring, and the push block cooperates with the slide seat, and the push slide seat moves in the direction of the first guide bolt.

6. The arrangement and conveying device for producing and processing chip inductors according to claim 5 is characterized in that: A first inclined surface is provided on a side of the push block close to the first guide bolt, and an end of the first inclined surface away from the second guide bolt deviates toward the center of the trough; The side wall of the slide seat close to the push assembly is provided with a bayonet matched with the push block shape, and a second inclined surface is correspondingly provided at the bayonet; the first inclined surface and the second inclined surface are slidably connected with each other, and the push block pushed inward pushes the slide seat to move in the direction of the first guide bolt.

7. The arrangement and conveying device for producing and processing chip inductors according to claim 6 is characterized in that: The second guide bolt comprises a first column bar and a second column bar connected to each other, the end of the first column bar is provided with a thread, the wall surface of the push block is correspondingly provided with a first threaded hole, and the first column bar is threadedly connected to the push block; The diameter of the second column is greater than that of the first column, and a first circular hole is provided on the push plate corresponding to the second column; a sliding sleeve and a first pressure ring are fixedly provided at both ends of the second spring, and a second pressure ring is fixedly provided on the outer wall of the sliding sleeve, and the inner diameters of the sliding sleeve and the first pressure ring are both adapted to the diameter of the first column, and the second spring is slidably provided on the first column via the sliding sleeve and the first pressure ring; The outer diameter of the sliding sleeve is matched with the diameter of the second column bar, and the push plate pushed inward to a preset position drives the sliding sleeve to move, thereby compressing the second spring.

8. The arrangement and conveying device for producing and processing chip inductors according to claim 7 is characterized in that: A guide block is fixedly provided on the wall surface of the push block close to the center of the material trough, and a guide groove is correspondingly provided on the side wall of the open mouth. The guide groove forms a narrowing portion at the groove position. The shape of the guide block is adapted to the shape of the guide groove, and the push block is slidably clamped in the guide groove through the guide block.

9. The arrangement and conveying device for producing and processing chip inductors according to claim 8, characterized in that: The pushing assembly includes a pressure rod and a third spring. The pressure rod is slidably arranged on the push plate, and the end is limited by a clamping spring. A third pressure ring is fixedly arranged on the side wall of one end of the pressure rod close to the material trough. The third spring is sleeved on the pressure rod and clamped between the third pressure ring and the push plate. One end of the pressure rod away from the push plate is adapted to be penetrated at the first through hole, the distance between the end face of the pressure rod and the surface of the third pressure ring is adapted to the depth of the first through hole, and a rubber pad is fixedly arranged on the end face of the pressure rod.

Citation Information

Patent Citations

  • Production line suitable for manufacturing inductance coil transfer structure

    CN114473201A

  • Multi-head feeding device for electronic element machining

    CN117622872A

  • Electrical element detection equipment

    CN118253501A

  • Staggered arrangement device for chip inductor processing

    CN118770910A

  • Feeding equipment for pad printing processing of chip inductor

    CN119176397A