一种多轴联动式加工装置
By using a multi-axis linkage machining device, the synchronous control of workpiece rotation and tool movement is achieved, which solves the problems of low efficiency and poor precision in traditional chamfering and realizes efficient and precise chamfering.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO XIATUO MACHINERY EQUIP
- Filing Date
- 2025-05-26
- Publication Date
- 2026-07-17
AI Technical Summary
In traditional chamfering, the machining mechanism has a long travel distance, low efficiency, high system complexity, high control difficulty, and difficulty in guaranteeing machining accuracy.
The system adopts a multi-axis linkage design, which coordinates the rotation of the workpiece driven by the machining table and the movement of the cutting tool along the X and Z axes by the machining mechanism. Combined with a lead screw drive structure and multiple protection measures, it achieves synchronization between workpiece rotation and tool movement, simplifies the system structure and improves positioning accuracy.
It significantly shortens processing time, reduces system complexity, improves processing efficiency and positioning accuracy, extends the service life of key components, and reduces the risk of failure.
Smart Images

Figure CN224508611U_ABST
Abstract
Claims
1. A multi-axis machining device, characterized by, The system includes a base (100), on which a processing table (200) and a processing mechanism (300) are mounted; the processing table (200) is equipped with a positioning seat (210) for mounting workpieces, and a first motor (220) is mounted inside the base (100), which drives the positioning seat (210) to rotate; the processing mechanism (300) includes an X-axis moving module, on which a mounting frame (330) is mounted, on which a Z-axis moving module is mounted, on which a mounting plate (340) is mounted, and on which a tool (341) for chamfering workpieces is mounted, and the tool (341) is driven to rotate by a second motor (342).
2. A multi-axis machining device according to claim 1, wherein Both the X-axis moving module and the Z-axis moving module are screw-driven structures, including a moving motor (400). The output shaft of the moving motor (400) is connected to a moving screw (420) via a coupling (410). A moving block (430) is mounted on the moving screw (420). The moving block (430) of the X-axis moving module is assembled and connected to the mounting frame (330). The mounting frame (330) is slidably connected to the base (100) via a slide rail. The moving block (430) of the Z-axis moving module is assembled and connected to the mounting plate (340). The mounting plate (340) is slidably connected to the mounting frame (330) via a slide rail.
3. A multi-axis machining device according to claim 2, wherein The lead screw moving structure also includes a mounting base (440), which has a through slot in the middle, and the coupling (410) is located in the slot; each side of the slot has a mounting hole (441) for accommodating the extension of the output shaft and the moving lead screw (420); the mounting hole (441) is fitted with a bearing (450), and the output shaft and the moving lead screw (420) can rotate smoothly through the support of the bearing (450).
4. The multi-axis machining device according to claim 1, wherein A base (110) is provided on the base (100), and a mounting slot (111) for mounting an X-axis moving module is provided on the base (110). A protective cover (120) covering the mounting slot (111) is fitted between the base (110) and the mounting bracket (330).
5. The multi-axis machining device according to claim 1, wherein The mounting plate (340) is fitted with a motor cover (343) that covers the second motor (342).
6. A multi-axis machining device according to claim 1, wherein A proximity sensor (344) is mounted on the mounting plate (340), which is used to detect the position of the workpiece.