一种脱合金辅助铣削的难加工材料加工方法及装置

By using a linkage mechanism and an insulated fixture to assist in the dealloying milling device, the problems of high cutting force and fixture corrosion in the machining of titanium-aluminum alloys were solved, achieving a highly efficient and stable machining mode and improving machining accuracy and surface quality.

CN117943642BActive Publication Date: 2026-07-17HANGZHOU DIANZI UNIV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HANGZHOU DIANZI UNIV
Filing Date
2024-01-18
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Titanium-aluminum alloys suffer from problems such as high cutting force, severe tool wear, and chip entanglement during processing. Furthermore, existing dealloying fixtures are prone to corrosion, resulting in decreased clamping force and poor processing stability.

Method used

The dealloying-assisted milling device, which adopts a linkage mechanism, achieves the coordination of dealloying and milling through a working condition switching module. It uses insulating material fixtures and combines electrolytic machining and magnetic abrasive technology to achieve in-situ cyclic machining.

Benefits of technology

It improves processing efficiency and stability, reduces cutting force, improves the quality of machined surfaces, prevents fixture corrosion, and enhances processing accuracy and space utilization of the equipment.

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Abstract

本发明公开了一种脱合金辅助铣削的难加工材料加工方法及装置,该装置包括基板以及安装在基板上的加工箱、工况切换模块和装夹组件。工况切换模块用于实现加工装置在脱合金状态和铣削加工状态之间切换;利用工况切换模块实现脱合金处理和铣削加工两种工艺的有效协同,既可保证脱合金处理时的密闭性要求,又可满足铣削加工的可靠夹持的要求,同时可实现脱合金处理与铣削加工的原位循环加工模式,提升了加工效率和加工稳定性。本发明通过脱合金化使难加工材料变成疏松多孔的结构,减少了加工的切削力,提高加工表面质量,减轻了刀具磨损,有效解决了钛铝合金加工难的问题。
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