一种芯线定位载具及多工位自动输送系统

By integrating clamping components onto a tray and using an opening clamping component for drive in the automated production of core wires, the problems of large equipment space occupation and complex structure are solved, achieving compact equipment and efficient processing.

CN224512873UActive Publication Date: 2026-07-17GUANGDONG LYRIC ROBOT INTELLIGENT AUTOMATION CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG LYRIC ROBOT INTELLIGENT AUTOMATION CO LTD
Filing Date
2025-06-24
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing automated production of core wires, the independent drive clamping mechanism results in problems such as large equipment space occupation, high structural complexity, and high maintenance costs.

Method used

The clamping components are integrated onto a movable tray, and the clamping is driven at a specific position by a fixedly installed clamping component. Combined with the slide rail and drive mechanism, the core wire is accurately positioned, clamped, and released, simplifying the equipment structure.

Benefits of technology

It significantly simplifies the equipment structure, reduces complexity and space occupation, improves the compactness and processing efficiency of the equipment, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及一种芯线定位载具及多工位自动输送系统,其中芯线定位载具包括托盘,用于承托芯线,所述托盘具有供所述芯线的端部伸出的开口;至少一个夹持组件,安装于所述托盘且邻近所述开口,用于夹紧并定位伸出的所述芯线的端部;以及开夹组件,用于驱使所述夹持组件开夹。本实用新型通过将夹持组件集成在可移动的托盘上,并利用开夹组件在特定位置驱动开夹,实现了芯线的精确定位与夹持、释放的功能,显著简化了设备整体结构,降低了机构复杂度和占用空间,从而减少了设备成本。
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Claims

1. A core wire positioning carrier, characterized by, include: A tray (1) for supporting the core wire, the tray (1) having an opening for the end of the core wire to extend out; At least one clamping assembly (2), mounted on the tray (1) and adjacent to the opening, is used to clamp and position the protruding end of the core wire; and The clamping assembly (3) is used to drive the clamping assembly (2) to open.

2. The core positioning carrier of claim 1, wherein, The clamping assembly (2) includes an elastic element (21) and two rotating jaws (22). The two rotating jaws (22) are symmetrically arranged and rotatably connected to the tray (1). The elastic element (21) is connected between the two rotating jaws (22).

3. The core positioning carrier of claim 2, wherein, The rotating jaw (22) includes a rotating part (221) rotatably connected to the tray (1). The rotating part (221) extends outward on both sides along its radial direction to form a first clamping arm (222) and a second clamping arm (223). The first clamping arm (222) extends to the opening to clamp the core wire. The elastic element (21) is connected between the second clamping arms (223) of the two rotating jaws (22).

4. The core positioning carrier of claim 3, wherein, The clamping assembly (3) includes a clamping drive (31) and a rotating arm (32). The clamping drive (31) is used to drive the rotating arm (32) to rotate. The rotating arm (32) pushes the corresponding second clamping arm (223) so that the rotating jaw (22) rotates to achieve clamping.

5. A multi-station automated transport system, characterized by, The device includes a slide rail assembly (4), a core wire positioning carrier as described in any one of claims 1 to 4, and a drive mechanism (5), wherein the tray (1) is slidably connected to the slide rail assembly (4) via a slider (13), the clamping assembly (3) is mounted on the slide rail assembly (4), and the drive mechanism (5) is used to drive the tray (1) to move along the slide rail assembly (4).

6. The multi-station automated delivery system of claim 5, wherein, The drive mechanism (5) includes a plurality of lifting components (51) and a plurality of traction components (52) arranged along the extension direction of the slide rail assembly (4). The lifting components (51) are used to drive the traction components (52) to move vertically up and down, and the traction components (52) are used to simultaneously drive a plurality of the trays (1) to move along the slide rail assembly (4).

7. The multi-station automated delivery system of claim 6, wherein, The lifting assembly (51) includes a lifting drive (511) and a lifting seat (512). The lifting drive (511) is used to drive the lifting seat (512) to move vertically. The traction assembly (52) includes a traction drive (521) and a traction plate (522). The traction drive (521) is located on the lifting seat (512). The traction plate (522) includes a plurality of bosses (523) for traction of the tray (1). The traction drive (521) is used to drive the traction plate (522) to move along the extension direction of the slide rail assembly (4).

8. The multi-station automated delivery system of claim 5, wherein, The slide rail assembly (4) is provided with a plurality of positioning components (53) for fixing the tray (1).

9. The multi-station automated delivery system of claim 8, wherein, The positioning component (53) includes a telescopic drive (531) and two limiting rollers (532). The telescopic drive (531) is used to drive the two limiting rollers (532) to rise and fall. A slot is formed between the two limiting rollers (532). The slider (13) is provided with a limiting block (14), which is adapted to be inserted into the slot.

10. The multi-station automatic conveying system according to claim 5, characterized in that, The slide rail assembly (4) includes an upper slide rail (41) and a lower slide rail (42). Lifting components (6) are provided at both ends of the upper slide rail (41) and the lower slide rail (42). The lifting components (6) are used to drive the tray (1) to lift and lower so that the tray (1) can be transferred between the upper slide rail (41) and the lower slide rail (42).