三角胶贴合装置和胎圈成型系统
By introducing a rotating mechanism and a multi-station design into the triangular adhesive bonding device, the compact connection and rapid switching of workstations are achieved, solving the problem of low efficiency of existing devices, improving production efficiency and simplifying the structure.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QINGDAO MESNAC MACHINERY & ELECTRIC ENGINEERING CO LTD
- Filing Date
- 2025-07-16
- Publication Date
- 2026-07-17
AI Technical Summary
Existing triangular rubber bonding devices are inefficient, have a fragmented structure, occupy a large area, and cannot meet the needs of different tire sizes.
Design a triangular adhesive bonding device, which adopts a rotating mechanism that is rotatably connected to the base. Multiple workstations and bonding discs are set around the perimeter. The workstations are switched by rotating the rotating mechanism, including pick-up, bonding, spinning and output workstations. Combined with telescopic drive components and spinning components, a compact connection of multiple processes is achieved.
It improves production efficiency, simplifies the structure, reduces the footprint, and adapts to the needs of different tire sizes.
Smart Images

Figure CN224510490U_ABST
Abstract
Claims
1. A triangular rubber bonding apparatus, characterized by comprising: include: base(10); A rotating mechanism (20) is rotatably connected to the base (10). The rotating mechanism (20) has a picking station for picking up steel rings, a bonding station for bonding triangular adhesive and steel rings, a spinning station for spinning the steel ring and triangular adhesive, and an output station for docking with the material picking device arranged in circumferential order on its rotating periphery. Multiple bonding discs (30) are connected to the rotating mechanism (20) and located on the circumference of the rotating mechanism (20). The bonding discs (30) switch between the picking station, the bonding station, the spinning station and the output station.
2. The apex bonding apparatus according to claim 1, wherein The rotation axis of the rotating mechanism (20) is arranged horizontally, and the picking station is located below the center line of the rotating mechanism (20), while the spinning station is located above the center line of the rotating mechanism (20).
3. The apex bonding apparatus according to claim 2, wherein The bonding disc (30) is telescopically oriented relative to the rotating mechanism (20), and the telescopic direction of the bonding disc (30) is angularly oriented relative to the rotation axis of the rotating mechanism (20). The bonding disc (30) located at the picking station extends downward and grabs the steel ring, while the bonding disc (30) located at the bonding station extends laterally and receives the triangular adhesive.
4. The apex bonding apparatus according to claim 3, wherein The triangular adhesive bonding device also includes a telescopic drive component, which is drivenly connected to each of the bonding discs (30). The telescopic drive component drives each of the bonding discs (30) to extend and retract simultaneously along the radial direction of the rotating mechanism (20).
5. The apex bonding apparatus of claim 1 wherein, The axis of the bonding disc (30) is perpendicular to the rotation axis of the rotating mechanism (20).
6. The apex bonding device according to any one of claims 1 to 5, wherein The bonding disc (30) includes: Disk body (31); Multiple support members (32) are arranged circumferentially along the disc body (31), and each support member (32) is movably disposed on the disc body (31) and can move closer or further away from each other to grasp or release the steel ring. A support drive is provided, which is driven to connect to the disk body (31) or the support member (32) and drives each of the support members (32) to move.
7. The apex bonding apparatus of claim 6, wherein The disk (31) has multiple tracks (311), The track (311) is inclined in both the radial and circumferential directions relative to the disk (31). The track (311) is arc-shaped. The support (32) is movably disposed in the track (311) and moves along the track (311). Each track (311) is arranged circumferentially along the disk (31).
8. The apex bonding device according to any one of claims 1 to 5, wherein The triangular adhesive bonding device further includes a spinning assembly (40) for rolling the steel ring and the triangular adhesive. The spinning assembly (40) is located at the spinning station and is rotatably arranged along the axis of the bonding disc (30) at the spinning station.
9. The apex bonding apparatus of claim 8, wherein The spinning assembly (40) includes a pressure roller (41). When the spinning assembly (40) rotates, the pressure roller (41) rotates as a whole along the axis of the spinning assembly (40) to roll the steel ring and the triangular rubber.
10. A bead forming system characterized by, The apex rubber attaching device according to any one of claims 1 to 9.