一种互动拉手优化结构

By employing a high-strength frame, planetary dual-function switch, and replaceable protective shell design, the structural strength and control reliability issues of the interactive handle are resolved, achieving high strength, low accidental touch rate, and flexible display effects.

CN224510959UActive Publication Date: 2026-07-17DONGGUAN HONGSHENG INSULATION MATERIAL CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN HONGSHENG INSULATION MATERIAL CO LTD
Filing Date
2025-10-09
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing interactive handles suffer from problems such as insufficient structural strength, poor reliability of switch control, limited functionality, fixed display content, and exposed cables.

Method used

It adopts a high-strength frame, planetary dual-function control switch, central through hole to hide cables and replaceable protective shell design, combined with arc-shaped joint module and rocker guide ring, to achieve high mechanical strength, precise and reliable two-way interactive control and flexible advertising display.

Benefits of technology

The structural strength and reliability of the interactive handle have been improved, the accidental touch rate has been reduced, a smooth operating feel and flexibility in changing the displayed content have been provided, and the safety of the core circuitry has been ensured.

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Abstract

本实用新型提供一种互动拉手优化结构,涉及一种拉手结构,包括框架结构、控制模组和弧面关节模块,框架结构包含通孔圆管、上圆形部及下圆形部;控制模组,为行星式双功能开关,弧面关节模块包含依次套设在通孔圆管外的支撑杆弹簧、下关节、行星式法兰和上关节,支撑杆弹簧用于抵压下关节、行星式法兰和上关节限位在通孔圆管外的两组凸环之间,上关节底端的凸球面以及下关节顶部的凸球面与行星式法兰的端部形成弧面接触配合,行星式法兰的上部承接上开关法兰,行星式法兰的下部沿周向安装有呈十字型分布的四组长帽按键开关,本实用新型实现了更高的机械强度、更精准可靠的双向互动控制、更灵活的广告展示以及更安全美观的整体结构。
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Claims

1. An interactive handle optimization structure, characterized by, include: The frame structure (100) includes a through-hole circular tube (101), an upper circular part (102) and a lower circular part (103). The control module is a planetary dual-function switch, which includes an up-down button switch PCB (511) for sensing up-down movement and a direction button switch (520) for sensing forward-backward and left-right swing. The up-down button switch PCB (511) is fixed to the handle fixed end and triggered by an upper boss (513a) on an upper switch flange (513) that can move up-down. The direction button switch (520) is triggered by the bottom of the through-hole round tube (101) pressing the long cap button switch (520a) on it during swing. The arc-shaped joint module includes a support rod spring (522), a lower joint (521), a planetary flange (518), and an upper joint (517) sequentially sleeved outside the through-hole round tube (101). The support rod spring (522) is used to press the lower joint (521), the planetary flange (518), and the upper joint (517) between two sets of convex rings outside the through-hole round tube (101). The convex spherical surface at the bottom of the upper joint (517) and the convex spherical surface at the top of the lower joint (521) form an arc-shaped contact fit with the end of the planetary flange (518). The upper part of the planetary flange (518) supports the upper switch flange (513). The lower part of the planetary flange (518) is circumferentially equipped with four sets of long cap push-button switches (520a) arranged in a cross shape.

2. The interactive handle optimization structure of claim 1, wherein: It also includes an axial guide module, which is a rocker guide ring (700) sleeved outside the through-hole round tube (101). The top constricted portion of the rocker guide ring (700) is spaced between the upper switch flange (513) and the through-hole round tube (101), and the bottom flared portion of the rocker guide ring (700) is spaced between the upper switch flange (513) and the upper joint (517). The rocker guide ring (700) has an movable gap with the through-hole round tube (101), the upper switch flange (513), and the upper joint (517).

3. The interactive handle optimization structure of claim 2, wherein: It also includes a fixing mechanism, which includes a plastic caliper (200) and a hollow nut (523). The bottom end of the hollow nut (523) is supported by the bottom of the planetary flange (518), and the top end of the hollow nut (523) is screwed onto the bottom end of the plastic caliper (200). The top end of the plastic caliper (200) is fixed to the circular steel pipe (301). The up and down push button switch PCB (511) is fixed inside the plastic caliper (200).

4. The interactive handle optimization structure of claim 1, wherein: The upper switch flange (513) is sleeved on the through-hole round pipe (101). The lower end of the upper switch flange (513) is provided with a lower boss (513b), which cooperates with the groove (518b) at the upper end of the planetary flange (518) to restrict relative rotation.

5. The interactive handle optimization structure of claim 1, wherein: It also includes an anti-gravity spring (512) sleeved on the through-hole round tube (101), the anti-gravity spring (512) being used to space between the upper and lower push button switch PCB (511) and the upper switch flange (513).

6. The interactive handle optimization structure of claim 3, wherein: The frame structure (100) has a through-hole circular tube (101) with a central through hole inside for passing through signal control lines and power lines. The bottom of the circular steel tube (301) has a circular hole that communicates with the central through hole for wires to be led out.

7. The interactive handle optimization structure of claim 1, wherein: It also includes a replaceable protective case (600), which is fixed to both sides of the frame structure (100) by screw holes (102a) or by a strong magnet. The protective case (600) has a dynamic pattern display area (602) in the middle.