一种钛合金加工用切削液收集除屑装置
By using a servo motor-driven rotating drum in conjunction with auger blades, along with a filter screen and a collection hopper, the problems of low chip removal efficiency and long separation time in existing devices are solved. This achieves efficient separation of cutting fluid and rapid chip removal during titanium alloy machining, meeting the needs of continuous machining.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BOER TECH WUHAN
- Filing Date
- 2025-08-07
- Publication Date
- 2026-07-17
AI Technical Summary
Existing cutting fluid collection and chip removal devices for titanium alloy machining suffer from low chip removal efficiency, long separation time, and easy chip caking, failing to meet the real-time processing requirements of continuous machining.
The separation mechanism, which combines a servo motor, pulleys, transmission belt, and rotating drum, along with a filter screen, collection hopper, and auger blades, achieves efficient separation of cutting fluid and chips. Through the cooperation of the auger blades and chip discharge pipe, chips are quickly discharged, improving filtration efficiency and continuity.
It improves the filtration efficiency and separation effect of cutting fluid, reduces particulate content, shortens cleaning time, and enables efficient recovery and continuous processing of cutting fluid.
Smart Images

Figure CN224509165U_ABST
Abstract
Claims
1. A titanium alloy machining cutting fluid collecting and chip removing device comprising a device housing (1), characterized in that: The device housing (1) is equipped with a cutting fluid spray pipe (5), and a collection chamber (2) is provided through the lower end of one side of the device housing (1). A guide rail (3) is horizontally fixed to the device housing (1) below the collection chamber (2). A collection box (4) is slidably installed on the upper end of the guide rail (3). A draining mechanism is provided inside the collection box (4), and a separation mechanism is installed in the draining mechanism.
2. The cutting fluid collection and debris removal device for machining titanium alloys of claim 1, wherein: The cutting fluid nozzle (5) is installed on the upper end of the device housing (1).
3. The cutting fluid collection and debris removal device for machining titanium alloys of claim 1, wherein: The draining mechanism includes a filter screen plate located at the upper end of the inside of the collection box (4), a collection hopper fixedly connected to the collection box (4) below the filter screen plate, an inlet pipe (6) fixedly connected to the lower end of the collection hopper, and the other end of the inlet pipe (6) fixedly connected to one end of the tank body (7).
4. The cutting fluid collection and debris removal device for machining titanium alloys of claim 3, wherein: A servo motor (10) is installed on one side of the tank (7). The output end of the servo motor (10) is coaxially fixed to one end of the pulley. A driven pulley is rotatably installed in the middle of one end of the tank (7) on the side of the pulley, and a transmission belt (11) is sleeved between the pulley and the driven pulley.
5. The cutting fluid collection and debris removal device for machining titanium alloys of claim 4, wherein: The separation mechanism includes a connecting rod that is horizontally fixed to one end of the driven pulley. The other end of the connecting rod is horizontally inserted through the tank (7) and fixed to one end of the rotating cylinder. Screw blades (14) are wound and fixed to the outer periphery of the rotating cylinder at a position inside the tank (7), and discharge holes (15) are equally spaced between the screw blades (14) on the rotating cylinder.
6. The cutting fluid collection and debris removal device for machining titanium alloys of claim 5, wherein: The auger blade (14) and the rotating cylinder are provided with drain ports (16) at equal intervals. A chip removal pipe (8) is connected to the upper part of one end of the tank (7) outside the auger blade (14), and a drain pipe (13) is connected to the lower part of the other end of the tank (7). A cutting fluid storage box (12) is installed at the discharge end of the drain pipe (13), and a chip storage box (9) is installed at the discharge end of the chip removal pipe (8). A drain valve pipe is provided on one side of the cutting fluid storage box (12) through the outer shell (1) of the device.