一种机床润滑废油处理装置
By combining circulation, stirring, and filtration components, the design solves the problems of insignificant treatment effect and lack of convenience in existing machine tool lubrication waste oil treatment devices. It realizes multiple filtration and circulation operations, improving the treatment effect and ease of use of waste oil.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG DEXIN MOULD STEEL IND CO LTD
- Filing Date
- 2025-08-05
- Publication Date
- 2026-07-17
AI Technical Summary
Existing machine tool lubrication waste oil treatment devices have insignificant treatment effects and are not convenient for circulation or discharge operations as needed, affecting ease of use.
It adopts a structure that includes a circulation component, a stirring component, and a filtration component. By setting the structure of the stirring component and the filtration component, and using a combination of a transmission mechanism, stirring blades, and a filter disc, multiple filtration and circulation operations are achieved.
It significantly improves the treatment effect of lubricating waste oil, enhances the practicality and convenience of the device, and can effectively filter and recover waste oil generated by machine tools during mold frame processing.
Smart Images

Figure CN224506506U_ABST
Abstract
Claims
1. A machine tool lubricating oil waste treatment device characterized by comprising: include: A circulation assembly (100) includes a processing equipment box (101), with two processing slots (102) opened at the upper end of the processing equipment box (101). A corrugated pipe (103) is detachably installed on one side of the processing equipment box (101). A circulation pump (104) is installed on the back of the processing equipment box (101). Circulation pipes (105) are installed at both ends of the circulation pump (104). An installation plate (106) is provided on the back of the processing equipment box (101). A limiting pipe (107) is fixedly connected to the surface of the installation plate (106). The limiting pipe (107) is sleeved on the side surface of the circulation pump (104). A stirring assembly (200) includes a drive shaft (201) installed inside one of the processing tanks (102). A transmission mechanism (202) is installed at the upper end of the drive shaft (201). A plurality of stirring blades (203) are detachably installed on the side surface of the drive shaft (201) in a spiral array structure. Each of the stirring blades (203) has an installation groove (204) on its surface. A filter plate (205) is installed inside the installation groove (204). A plurality of limiting components (206) are detachably installed on the side surface of the drive shaft (201). A first filter plate (207), a second filter plate (208), and a third filter plate (209) are respectively installed inside each of the limiting components (206). The filter assembly (300) includes a filter element (301) installed inside another processing tank (102), and a filter cartridge (302) is installed inside the filter element (301).
2. The processing device of claim 1, wherein: One of the processing tanks (102) has several connecting grooves (111) on its inner wall, and the other processing tank (102) has a receiving plate (112) fixedly connected inside.
3. The processing apparatus according to claim 1, characterized in that: The back of the processing equipment box (101) is fixedly connected to two first connecting flanges (121) and a second connecting flange (122). The ends of the two circulation pipes (105) are connected to the processing equipment box (101) through the first connecting flanges (121). The two first connecting flanges (121) are connected to the two processing tanks (102). The upper end of the corrugated pipe (103) is connected to the processing equipment box (101) through the second connecting flange (122). The second connecting flange (122) is connected to one of the processing tanks (102).
4. The processing device of claim 1, wherein: Two positioning strips (131) are fixedly connected to the back of the processing equipment box (101), and two strip grooves (132) are opened on the back of the mounting plate (106). The two positioning strips (131) are both engaged inside the strip grooves (132).
5. The processing device of claim 2, wherein: The transmission mechanism (202) includes a first bevel gear (2021) mounted on the upper end of the transmission shaft (201), a servo motor (2022) mounted on the upper end of the receiving plate (112), and a second bevel gear (2023) fixedly connected to the output end of the servo motor (2022). The second bevel gear (2023) and the first bevel gear (2021) are meshed together.
6. The processing device of claim 1, wherein: The drive shaft (201) has several insertion slots (211) on its side surface. Two insertion blocks (212) are fixedly connected to the ends of several stirring blades (203). The two insertion blocks (212) are inserted into the insertion slots (211). Several hinge shafts (221) are fixedly connected to the side surface of the drive shaft (201) in a spiral array. Bolts (222) are threaded inside the stirring blades (203) and the hinge shafts (221). A nut (223) is threaded to one end of the bolt (222).
7. The processing device of claim 1, wherein: The limiting component (206) includes a plurality of collars (2061) sleeved on the side surface of the drive shaft (201), and bearings (2062) are installed inside each of the plurality of collars (2061). A plurality of limiting rings (2063) are equidistantly installed on the side surface of the drive shaft (201). The first filter disc (207), the second filter disc (208) and the third filter disc (209) are all installed between the bearings (2062) and the limiting rings (2063).
8. The processing device of claim 1, wherein: The filter element (301) has several positioning blocks (311) fixedly connected to both the upper and lower ends. The positioning blocks (311) are all snapped into the inside of the connecting groove (111). The filter cylinder (302) has threaded grooves (312) at both the upper and lower ends. The filter cylinder (302) is threadedly connected to the inside of the filter element (301) through the threaded grooves (312).