一种多工位五轴精密雕铣机

By designing a multi-station five-axis precision engraving and milling machine, combined with a marble base, cast iron columns, and independent drives, it achieves efficient processing of precision parts, solves the problems of low efficiency and space reuse in traditional equipment, and improves the safety and adaptability of the equipment.

CN224508530UActive Publication Date: 2026-07-17SHENZHEN JOJOY BEN MACHINERY EQUIP

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN JOJOY BEN MACHINERY EQUIP
Filing Date
2025-07-14
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional engraving and milling equipment is inefficient when processing precision parts, has a bulky spatial layout, is complicated in managing workpieces and tools, and is difficult to achieve space reuse and motion safety in multi-station parallel processing.

Method used

The multi-station five-axis precision engraving and milling machine utilizes a marble base and cast iron columns to provide thermal stability and rigid support. Combined with a parallel station design, it integrates the workpiece stage and tool magazine, and employs independent drives and vision positioning to achieve closed-loop control of the machining process.

Benefits of technology

It improves space utilization and processing efficiency, enhances the closed-loop control capability of the processing process, improves motion safety and equipment adaptability, and simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及一种多工位五轴精密雕铣机,包括机床基体和至少两个并行设置的加工工位,机床基体包括由大理石制成的底座、由大理石制成的横梁和由铸铁制成的立柱;每个工位包括固定于底座的水平导向轨、滑动连接于水平导向轨的第一端的工件载台、滑动连接于水平导向轨的第二端的刀库盘、悬置于横梁的Z轴执行器,工件载台设有五轴联动机构,刀库盘设有阵列式刀具仓,Z轴执行器下端集成图像采集组件、检测工具接口及轴向伸缩夹头,第一驱动器独立连接工件载台,第二驱动器独立连接刀库盘。本实用新型提供一种多工位五轴精密雕铣机,空间布局紧凑,且具备在线工艺闭环控制能力。
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Claims

1. A multi-station five-axis precision engraving and milling machine, characterized in that, Includes a machine tool base (100) and at least two parallel machining stations (200). The machine tool base (100) includes a base (110) made of marble, a crossbeam (120) made of marble, and a column (130) made of cast iron. Each station includes: A horizontal guide rail (300) is fixed to the base (110); The workpiece stage (400) is slidably connected to the first end of the horizontal guide rail (300) and is equipped with a five-axis linkage mechanism (410). The tool magazine (500) is slidably connected to the second end of the horizontal guide rail (300) and has an array-type tool magazine (510). The Z-axis actuator (600) is suspended on the crossbeam (120) and integrates an image acquisition component (610), a detection tool interface (620), and an axial telescopic chuck (630) at its lower end. The first driver (710) is independently connected to the workpiece stage (400), and the second driver (720) is independently connected to the tool magazine (500).

2. The miller according to claim 1, characterized in that, The horizontal guide rail (300) is equipped with a displacement sensor to identify whether the workpiece stage (400) or tool magazine disk (500) is directly below the Z-axis actuator (600).

3. The miller according to claim 1, characterized in that, The movement path of the axial telescopic chuck (630) is coaxial with the feed direction of the Z-axis actuator (600).

4. The miller according to claim 1, characterized in that, Each compartment of the array-type tool magazine (510) is equipped with a tool identification mark.

5. The miller according to claim 1, characterized in that, The workpiece stage (400) and the tool magazine (500) share the same horizontal guide rail (300).

6. The engraving and milling machine according to claim 1, characterized in that, The testing tool interface (620) is located on the lateral mounting surface of the axial telescopic chuck (630).

7. The miller according to claim 1, characterized in that, The rotating table surface of the five-axis linkage mechanism (410) is embedded with a magnetic clamp.

8. The miller according to claim 1, characterized in that, The horizontal guide rails (300) of each processing station are arranged in parallel, and the distance between adjacent guide rails is greater than the lateral dimension of the Z-axis actuator (600).

9. The miller according to claim 1, characterized in that, The first driver (710) and the second driver (720) are respectively connected to the workpiece stage (400) and the tool magazine (500) through a transmission mechanism.