A coolant filtering device
By designing a coolant filtration device, the problems of inconvenient waste chip loading and coolant collection in machining were solved, realizing convenient waste chip disposal and coolant collection and reuse, thus improving operational flexibility.
Patent Information
- Application Number
- CN202521289491.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-06-23
AI Technical Summary
During machining, the processing waste is difficult to load and the coolant is difficult to collect, which makes the coolant easy to pollute the ground and difficult to reuse.
A coolant filtration device was designed, comprising a support rod, a conical hopper, a connecting pipe, and a woven bag structure. The woven bag is fixed by the support rod and an upper ring. The conical hopper collects coolant, the tank collects waste liquid, and the rollers facilitate transfer.
It enables convenient loading of processing waste and collection and reuse of coolant, avoiding coolant contamination and improving operational flexibility.
Smart Images

Figure CN224672200U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of auxiliary equipment for mechanical processing, and in particular to a coolant filtration device. Background Technology
[0002] Machining waste contains a large amount of coolant. If it is directly placed in woven bags, the coolant can easily drip onto the ground, causing pollution. This coolant can be reused after removing impurities. Currently, collecting machining waste requires one operator to open the bag while another uses a shovel to fill it. This process easily leads to spillage of the waste and makes it difficult to move. Utility Model Content
[0003] This utility model provides a coolant filtration device to overcome the shortcomings of the prior art and solve the problems of inconvenient loading of processing waste and collection of coolant, and has strong practicality.
[0004] In order to achieve the purpose of this utility model, the following technology is proposed to be adopted: A coolant filtration device includes three support rods. A protruding plate is fitted onto the lower end of each support rod. A pair of fixing nuts are threadedly connected to the lower end of each support rod, located on the upper and lower sides of the protruding plate. A ring is welded to the inner side of the protruding plate, and a conical hopper is formed on the inner circumference of the ring. The lower end of the conical hopper is a small end, and a connecting pipe is welded to and connected to the lower end of the conical hopper. A tank with a closed lower end is threadedly connected to the lower end of the connecting pipe. The lower end of the support rod extends beyond the lower end of the tank. A support plate is fitted onto the upper end of each support rod, and a pair of upper nuts are threadedly connected to the upper end of the support rod, located on the upper and lower sides of the support plate. An upper ring is welded to the inner end of the support plate, and a woven bag is fixed to the upper ring, with an opening at the upper end of the woven bag.
[0005] Furthermore, a sealing ring is welded to the outer periphery of the connecting pipe, and the upper end of the tank body is pressed tightly against the lower wall of the sealing ring.
[0006] Furthermore, a diagonal brace is welded to the lower wall of the convex plate, and the inner end of the diagonal brace is welded to the conical bucket.
[0007] Furthermore, multiple pairs of upper extension plates are welded onto the upper ring. A hanging shaft is inserted through the upper end of the upper extension plate. End nuts are threaded to both ends of the hanging shaft. The end nuts are located on the outer side of the upper extension plate. A concave top piece is rotatably mounted on the hanging shaft. A holding rod is welded to the outer end of the concave top piece. A lower pressure ring is fitted onto the upper extension plate. An insertion rod is welded to the lower wall of the lower pressure ring. The lower end of the insertion rod passes through the upper ring and the upper end of the woven bag. The lower end of the concave top piece abuts against the upper wall of the lower pressure ring.
[0008] Furthermore, the lower end of the concave top part has a convex arc-shaped structure.
[0009] Furthermore, the lower end of the support rod is connected to a pair of limiting nuts by thread, and the lower end of the support rod is rotatably provided with a concave seat. The limiting nuts are located on the upper and lower sides of the concave seat, and the lower end of the concave seat is rotatably provided with a wheel rod, on which a roller is rotatably provided.
[0010] The advantages of the above technical solution are: This invention firstly uses a lower pressure ring, an upper ring, and a pointed insertion rod to fix the upper end of the woven bag, so that the operator can put the processing waste into the woven bag. Furthermore, the fixed woven bag has a large opening, which facilitates the input of processing waste.
[0011] Secondly, the conical hopper located below the woven bag can collect leaked waste liquids such as coolant and collect them in an easily disassembled tank.
[0012] Finally, it also facilitates the transfer of processing waste, thereby improving flexibility. Attached Figure Description
[0013] To make the objectives, technical solutions, and advantages of this utility model clearer, the following will provide a further detailed description of this utility model in conjunction with the accompanying drawings.
[0014] Figure 1 A three-dimensional structure of one embodiment is shown. Figure 1 .
[0015] Figure 2 A three-dimensional structure of one embodiment is shown. Figure 2 . Detailed Implementation
[0016] like Figures 1-2 As shown, a coolant filtration device includes three support rods 2. The lower end of the support rod 2 is fitted with a protruding plate 11. The lower end of the support rod 2 is connected to a pair of fixing nuts 20 by threads. The fixing nuts 20 are located on the upper and lower sides of the protruding plate 11. A ring 10 is welded to the inner side of the protruding plate 11. A conical bucket 1 is formed on the inner circumference of the ring 10. The lower end of the conical bucket 1 is the small end. A connecting pipe 13 is welded to and connected to the lower end of the conical bucket 1. The lower end of the connecting pipe 13 is connected to a tank 14 with the lower end closed by threads. A sealing ring 15 is welded to the outer circumference of the connecting pipe 13. The upper end of the tank 14 is pressed against the lower wall of the sealing ring 15. The lower end of the support rod 2 extends out of the lower end of the tank body 14. The upper end of the support rod 2 is fitted with a support plate 4. The upper end of the support rod 2 is connected to a pair of upper nuts 21 by thread. The upper nuts 21 are located on the upper and lower sides of the support plate 4. An upper ring 40 is welded to the inner end of the support plate 4. A woven bag 6 is fixed on the upper ring 40. The upper end of the woven bag 6 is open.
[0017] In this embodiment, during operation, the operator first places the open end of the woven bag 6 on the upper ring 40 and fixes it on the upper ring 40. Then, the operator puts the generated processing waste into the woven bag 6. After being put in, the coolant on the processing waste will seep downward into the conical hopper 1 and flow along its inner wall into the tank 14. This can prevent the coolant from dripping everywhere and polluting the ground. When there is a lot of coolant in the tank 14, it can be transferred to the waste liquid storage container for reuse.
[0018] In some embodiments, a bracing plate 12 is welded to the lower wall of the convex plate 11, and the inner end of the bracing plate 12 is welded to the conical bucket 1. This ensures the connection strength between the convex plate and the conical bucket, and also improves the connection strength between the support rods.
[0019] In some embodiments, multiple pairs of upper extension plates 41 are welded onto the upper ring 40. A hanging shaft 42 passes through the upper end of each upper extension plate 41. End nuts 43 are threaded to both ends of the hanging shaft 42 and are located on the outer side of the upper extension plate 41. A concave top member 44 is rotatably mounted on the hanging shaft 42. The lower end of the concave top member 44 has a convex arc-shaped structure. A holding rod 45 is welded to the outer end of the concave top member 44. A lower pressure ring 49 is fitted onto the upper extension plate 41. An insertion rod 50 is welded to the lower wall of the lower pressure ring 49. The lower end of the insertion rod 50 passes through the upper ring 40 and the upper end of the woven bag 6. The lower end of the concave top member 44 abuts against the upper wall of the lower pressure ring 49. Using the woven bag 6 fixing component provided in this embodiment, the fixing effect of the woven bag 6 can be improved. During fixing, the operator places the open end of the woven bag 6 between the lower pressure ring 49 and the upper ring 40. Then, the operator rotates the concave top piece 44 by holding the lever 45. As the concave top piece 44 rotates, its lower end will act on the lower pressure ring 49, causing it to move downward. When it moves downward, the tip of the insertion rod 50 will be inserted into the upper end of the woven bag 6. This can prevent the woven bag 6 from falling off as waste accumulates.
[0020] In some embodiments, the lower end of the support rod 2 is threadedly connected to a pair of limiting nuts 3. A concave seat 30 is rotatably provided at the lower end of the support rod 2, and the limiting nuts 3 are located on the upper and lower sides of the concave seat 30. A wheel rod 31 is rotatably provided at the lower end of the concave seat 30, and a roller 32 is rotatably provided on the wheel rod 31. The roller 32 provided in this embodiment facilitates the transfer of the woven bag 6 and the processing waste inside.
[0021] The above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of this utility model. Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations of this utility model fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A coolant filtration device, characterized in that, Includes three support rods (2), with a protruding plate (11) fitted at the lower end of each support rod (2). A pair of fixing nuts (20) are threadedly connected to the lower end of each support rod (2). The fixing nuts (20) are located on the upper and lower sides of the protruding plate (11). A ring (10) is welded to the inner side of the protruding plate (11). A conical bucket (1) is formed on the inner circumference of the ring (10). The lower end of the conical bucket (1) is the smaller end. A connecting pipe (13) is welded to and connected to the lower end of the conical bucket (1). 3) The lower end of the support rod (2) is connected to the tank body (14) with the lower end closed by a thread. The lower end of the support rod (2) extends out of the lower end of the tank body (14). The upper end of the support rod (2) is fitted with a support plate (4). The upper end of the support rod (2) is connected to a pair of upper nuts (21) by a thread. The upper nuts (21) are located on the upper and lower sides of the support plate (4). The inner end of the support plate (4) is welded with an upper ring (40). A woven bag (6) is fixed on the upper ring (40). The upper end of the woven bag (6) is open.
2. The coolant filtration device according to claim 1, characterized in that, A sealing ring (15) is welded to the outer periphery of the connecting pipe (13), and the upper end of the tank body (14) is pressed against the lower wall of the sealing ring (15).
3. The coolant filtration device according to claim 1, characterized in that, The lower wall of the convex plate (11) is welded with a diagonal bracing plate (12), and the inner end of the diagonal bracing plate (12) is welded to the conical bucket (1).
4. The coolant filtration device according to claim 1, characterized in that, Multiple upper extension plates (41) are welded on the upper ring (40). A hanging shaft (42) is passed through the upper end of the upper extension plate (41). The two ends of the hanging shaft (42) are connected by threaded end nuts (43). The end nuts (43) are located on the outside of the upper extension plate (41). A concave top piece (44) is rotatably provided on the hanging shaft (42). A holding rod (45) is welded to the outer end of the concave top piece (44). A lower pressure ring (49) is sleeved on the upper extension plate (41). An insert rod (50) is welded to the lower wall of the lower pressure ring (49). The lower end of the insert rod (50) passes through the upper ring (40) and the upper end of the woven bag (6). The lower end of the concave top piece (44) abuts against the upper wall of the lower pressure ring (49).
5. The coolant filtration device according to claim 4, characterized in that, The lower end of the concave top piece (44) has a raised arc-shaped structure.
6. The coolant filtration device according to claim 1, characterized in that, The lower end of the support rod (2) is connected to a pair of limit nuts (3) by thread. The lower end of the support rod (2) is provided with a concave seat (30). The limit nuts (3) are located on the upper and lower sides of the concave seat (30). The lower end of the concave seat (30) is provided with a wheel rod (31). A roller (32) is provided on the wheel rod (31).