一种轮胎模具检测施压平台
By designing a pressure testing platform for tire molds, the problems of inaccurate mold gap detection and safety risks have been solved. This platform enables accurate mold gap detection and safe operation, and is applicable to molds of different sizes, thereby improving detection accuracy and mold lifespan.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HIMILE MECHANICAL SCI & TECH (SHANDONG) CO LTD
- Filing Date
- 2025-07-12
- Publication Date
- 2026-07-17
AI Technical Summary
The lack of pressure during tire mold inspection leads to inaccurate gap detection and poses safety risks. Existing technology cannot stably support large molds, resulting in mold deformation and safety hazards for inspection personnel.
A tire mold inspection pressure application platform was designed, including a support base, a platform support device, a pressure application device, a lifting device, and a mold opening and closing power device. The pressure application device applies pressure to the mold to eliminate gaps between parts, the lifting device enters the mold for inspection, and the mold opening and closing power device enables rapid mold opening and closing operations.
It enables accurate detection of mold gaps, improves detection precision, ensures mold usage accuracy and safety, extends mold life, is suitable for molds with different outer diameters and heights, and is safe and convenient to operate.
Smart Images

Figure CN224517746U_ABST
Abstract
Claims
1. A tire mold detection pressurization platform, characterized by, It includes a support base (100), a platform support device (300), a pressure device (500), a lifting device (200), and a mold opening and closing power device (400). The support surface (110) of the support base (100) is provided with a lifting operation pit (120) and an access channel (130). The lifting operation pit (120) is located on the lower side of the support surface (110), and the access channel (130) is connected to the lifting operation pit (120). The lifting device (200) is located inside the lifting operation pit (120); The platform support device (300) is set on the support surface (110) and includes several support beams (330). The support beams (330) are evenly arranged in the circumferential direction of the lifting operation pit (120) with the lifting operation pit (120) as the center. The pressure application device (500) is mounted on the support beam (330) and is used to apply pressure to the tire mold (600) during testing; The mold opening and closing power device (400) is located near the lifting operation pit (120) and is used to drive the tire mold (600) to open and close.
2. A tire mold pressure application detection platform according to claim 1, wherein, The pressure device (500) includes several sets of pressure components, which are evenly arranged around the lifting operation pit (120) in the circumferential direction.
3. A tire mold pressure application detection platform according to claim 2, wherein, Each pressure assembly includes a pressure-applying power element (530), a support column (540), and a crossbeam (520); the support column (540) is vertically arranged and its lower end is fixedly connected to the support beam (330); the pressure-applying power element (530) is mounted on the support column (540); the pressure-applying power element (530) applies pressure to the tire mold (600) using the crossbeam (520).
4. A tire mold pressure application platform as defined in claim 3, wherein, The crossbeam (520) has a through hole in the middle; The pressure assembly includes a screw (510), the lower end of which is fixedly connected to the support beam (330), and the upper end of which extends through the through hole to the top of the crossbeam (520). The upper end of the screw (510) is provided with a sleeve and a nut, the sleeve being sleeved on the outside of the screw (510) and located between the crossbeam (520) and the nut. The screw (510) is located on the side of the support column (540) near the lifting operation pit (120). When the tire mold (600) is pressed, one end of the crossbeam (520) is pushed upward by the pressure power element (530), and the other end is pressed on the tire mold (600).
5. A tire mold detection pressurization platform according to claim 4, wherein, The support beam (330) is provided with a number of assembly holes (331) for connecting the screw (510); the assembly holes (331) are spaced apart along the length of the support beam (330).
6. The tire mold detection pressurization platform of claim 1, wherein, The mold opening and closing power device (400) includes a mold opening and closing power element (420) and a synchronization ring (410). The opening and closing mold power element (420) is located near the lifting operation pit (120) and multiple of them are provided. The multiple opening and closing mold power elements (420) are evenly arranged in a circumferential direction centered on the lifting operation pit (120). The synchronization ring (410) surrounds the outside of the lifting operation pit (120) and is lifted and lowered under the drive of the plurality of opening and closing power elements (420).
7. The tire mold detection pressurization platform of claim 1, wherein, The lifting device (200) is a lifting platform; And / or, the number of the support beams (330) is 6-12; And / or, the support beams (330) are radially distributed around the lifting operation pit (120).
8. The tire mold detection pressurization platform of claim 1, wherein, A leveling pad (320) is provided between the support beam (330) and the support surface (110).
9. The tire mold detection pressurization platform of claim 1, wherein, The support surface (110) of the support base (100) is partially recessed to form an mounting surface (140), which surrounds the lifting operation pit (120); the support beam (330) is located on the mounting surface (140).
10. A tire mold detection pressurization platform according to claim 9, wherein, The working surface of the support beam (330) is flush with the support surface (110).