Cleaning mechanism of lens grinding machine
By introducing a spray and filter structure into the lens polishing machine, the problems of inconvenient spraying and dust adsorption in existing cleaning mechanisms are solved, achieving effective dust reduction and resource recycling, and improving the applicability and convenience of the cleaning mechanism.
Patent Information
- Application Number
- CN202422778971.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-11-14
AI Technical Summary
Existing lens polishing machine cleaning mechanisms are not convenient for spraying and adsorbing dust particles in the air, resulting in poor dust reduction and insufficient resource utilization.
A cleaning mechanism for a lens polishing machine has been designed, comprising a spray structure and a filter structure. The spray structure sprays water mist to adsorb dust, while the blower and filter screen filter the air, achieving dust settling and resource recycling.
This improves the applicability and convenience of the cleaning mechanism in lens polishing machines, achieving effective dust reduction and resource recycling.
Smart Images

Figure CN223505052U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lens polishing technology, and in particular to a cleaning mechanism for a lens polishing machine. Background Technology
[0002] During the manufacturing process of TD lenses, some minor flaws and imperceptible burrs may occur. These problems can lead to a decrease in the transparency of the lens. The lens needs to be polished with a polishing machine to remove these flaws and burrs. The polishing process generates a lot of powder and debris, which can easily affect the working environment. Therefore, a cleaning mechanism for the lens polishing machine is used.
[0003] To address this, patent CN209273145U discloses a cleaning device for a lens polishing machine, comprising a suction head, a dust pump, and a dust inlet. The suction head is connected to a dust inlet pipe at its end, and a connecting pipe is installed at the end of the dust inlet pipe. A filter pipe is connected to the end of the connecting pipe, and the filter pipe includes a pipe head, a bent pipe body, and a pipe tail. A bent pipe body is installed in the middle of the pipe head and the pipe tail. A first filter screen is installed inside the bent pipe body, and a dust storage chamber is located below the bent pipe body. The dust inlet is located at the top of the dust storage chamber, and a second filter screen is installed inside the dust storage chamber. A dust outlet is located at the bottom of the dust storage chamber, and an outer cover is provided on the outside of the dust outlet. The dust pump is connected to the end of the pipe tail, and a connecting cavity is installed below the dust pump. This cleaning device for a lens polishing machine is easy to install and disassemble, facilitates the collection and processing of powder and debris, improves the working environment, and reduces workload.
[0004] While the cleaning device for the lens polishing machine mentioned above can conveniently collect and process powder and debris, its applicability is low because it is inconvenient to spray or adsorb dust particles in the air to achieve a dust reduction effect, and it is also inconvenient to recycle water to save resources. Utility Model Content
[0005] The purpose of this invention is to provide a cleaning mechanism for a lens polishing machine, which solves the problem that the existing cleaning mechanisms for lens polishing machines are inconvenient for spraying.
[0006] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a cleaning mechanism for a lens polishing machine, comprising a base plate and a first housing;
[0007] Fixed casters are evenly fixed on both sides of the bottom end of the base plate. A first box is fixed on one side of the top end of the base plate, and a second box is fixed on the other side of the top end of the base plate. A door is provided on one side of the second box. A water tank is fixed on the top end of the base plate on one side of the first box. A drain pipe is fixed on one side of the bottom of the first box.
[0008] The top of the first box is equipped with a spray structure, one side of the first box has a through-hole, and the other side of the first box is fixed with a corrugated pipe, one end of which is fixed with a dust suction port.
[0009] A through hole is provided on one side of the top of the water tank. A filter screen is installed inside the water tank at one end of the through hole. A shell is fixed to one side of the interior of the second tank. An exhaust port is provided on the other side of the interior of the second tank. A filter structure is evenly arranged inside the shell. A blower is installed on one side of the shell.
[0010] When using this device, the spray structure facilitates spraying, thereby improving the applicability of the cleaning mechanism of the lens polishing machine; the filter structure facilitates filtration, thereby improving the convenience of the cleaning mechanism of the lens polishing machine.
[0011] Preferably, the spray structure includes a distribution box, nozzles, an inlet pipe, a delivery pump, a delivery pipe, and a connecting pipe. The distribution box is fixed to the top of the first box body, and nozzles are evenly distributed at the bottom of the distribution box. A connecting pipe is fixed to one side of the top of the distribution box. A delivery pump is installed at the top of the water tank. The inlet pipe is fixed to the input end of the delivery pump, and the delivery pipe is fixed to the output end of the delivery pump. When the delivery pump is started, water from inside the water tank enters the inlet pipe, then the delivery pipe, and the water inside the delivery pipe enters the distribution box through the connecting pipe, finally being sprayed out through the nozzles.
[0012] Preferably, the end of the water inlet pipe furthest from the delivery pump extends into the interior of the water tank, and the top end of the connecting pipe extends to the outside of the first chamber and is fixedly connected to one end of the delivery pipe. Holding the suction nozzle and starting the blower, the grinding dust enters the interior of the first chamber through the corrugated pipe. Under the action of the nozzle, it can adsorb dust particles in the air, thereby achieving a dust reduction effect, causing the dust to settle at the bottom of the first chamber. The water at the bottom of the first chamber is filtered through a filter screen and flows into the interior of the water tank for recycling.
[0013] Preferably, the filter structure includes a fixed frame, a stainless steel woven mesh, a snap-fit groove, a fixed plate, a reserved groove, and snap-fit blocks. The fixed frames are evenly arranged inside the housing, and each fixed frame is equipped with a stainless steel woven mesh. One end of each fixed frame extends to the outside of the housing and is fixed with a fixed plate. Snap-fit blocks are fixed to both ends of one side of the fixed plate. Snap-fit grooves are formed inside the housing on the outer side of each snap-fit block, and reserved grooves are formed inside each snap-fit block. Opening the door and moving the fixed plate with the handle moves the fixed plate to the inside of the housing. Pushing the fixed plate, under the action of the reserved grooves, moves the snap-fit blocks into the snap-fit grooves, thereby fixing the fixed frame and the housing together.
[0014] Preferably, a handle is fixed to the side of the fixing plate away from the fixing frame, and the snap-fit block and the housing form a snap-fit structure through snap-fit grooves. When the stainless steel woven mesh needs to be replaced, the fixing plate is pulled by the handle, and the fixing plate moves the fixing frame to the outside of the housing. The door is closed, and under the action of the blower, the sprayed air enters the interior of the housing through the connecting port. The air filtered by the stainless steel woven mesh is discharged through the exhaust port.
[0015] Preferably, one end of the through hole extends into the interior of the first housing, and one side of the connecting opening extends into the interior of the second housing.
[0016] Preferably, the input end of the blower extends into the interior of the housing, and a dustproof net is fixed on the outer wall of the second housing on the exhaust port side.
[0017] The cleaning mechanism of the lens polishing machine provided by this utility model has the following advantages:
[0018] By incorporating a spray structure and activating the delivery pump, water from the tank enters the inlet pipe, then the delivery pipe. The water in the delivery pipe flows through the connecting pipe into the distribution box, and finally is sprayed out through the nozzle. Holding the suction port and activating the blower, the grinding dust enters the first chamber through the corrugated pipe. The nozzle adsorbs airborne dust particles, achieving dust reduction and causing the dust to settle at the bottom of the first chamber. The water at the bottom of the first chamber is filtered through a filter and recycled back into the tank. This design facilitates spraying, thus improving the applicability of the cleaning mechanism in the lens polishing machine.
[0019] With its filtration structure, the device can be opened, and the fixed plate can be moved by the handle. The fixed plate moves the fixed frame inside the housing. Pushing the fixed plate, under the action of the pre-reserved groove, moves the locking block inside the locking groove, thus fixing the fixed frame and the housing together. When the stainless steel woven mesh needs to be replaced, the fixed plate can be pulled by the handle, and the fixed plate moves the fixed frame outside the housing. Closing the door allows the sprayed air to enter the housing through the connecting port under the action of the blower. The air filtered by the stainless steel woven mesh is discharged through the exhaust port, realizing the filtration function of the device and improving the convenience of the cleaning mechanism of the lens polishing machine during use. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0021] Figure 2 This is a schematic diagram of the front cross-sectional structure of this utility model;
[0022] Figure 3This is a side view sectional diagram of the spray structure of this utility model;
[0023] Figure 4 This is a side view sectional diagram of the filter structure of this utility model;
[0024] Figure 5 For the present utility model Figure 4 Enlarged structural diagram at point A in the middle.
[0025] The following are the annotations in the diagram: 1. Base plate; 2. First housing; 3. Corrugated pipe; 4. Dust suction port; 5. Water tank; 6. Spray structure; 601. Diversion box; 602. Spray head; 603. Water inlet pipe; 604. Delivery pump; 605. Delivery pipe; 606. Connecting pipe; 7. Second housing; 8. Door; 9. Shell; 10. Filter structure; 1001. Fixing frame; 1002. Stainless steel woven mesh; 1003. Clip groove; 1004. Fixing plate; 1005. Reserved groove; 1006. Clip block; 11. Through hole; 12. Fixed casters; 13. Sewage pipe; 14. Connecting port; 15. Blower; 16. Exhaust vent; 17. Filter screen. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figures 1-5The present invention provides a cleaning mechanism for a lens polishing machine, comprising a base plate 1 and a first housing 2. Fixed casters 12 are evenly fixed on both sides of the bottom end of the base plate 1. The first housing 2 is fixed on one side of the top end of the base plate 1, and a second housing 7 is fixed on the other side of the top end of the base plate 1. A door 8 is provided on one side of the second housing 7. A water tank 5 is fixed on the top end of the base plate 1 on one side of the first housing 2. A drain pipe 13 is fixed on one side of the bottom of the first housing 2. A spray structure 6 is provided on the top of the first housing 2. The spray structure 6 includes a diversion box 601, a nozzle 602, a water inlet pipe 603, and a delivery pump 604. The water tank 5 is equipped with a delivery pipe 605 and a connecting pipe 606. The diversion box 601 is fixed to the top of the first box 2. Spray nozzles 602 are evenly arranged at the bottom of the diversion box 601. A connecting pipe 606 is fixed to one side of the top of the diversion box 601. A delivery pump 604 is installed at the top of the water tank 5. A water inlet pipe 603 is fixed to the input end of the delivery pump 604. A delivery pipe 605 is fixed to the output end of the delivery pump 604. The end of the water inlet pipe 603 away from the delivery pump 604 extends into the interior of the water tank 5. The top of the connecting pipe 606 extends to the outside of the first box 2 and is fixedly connected to one end of the delivery pipe 605.
[0028] Reference Figure 2 and Figure 3 As shown, start the delivery pump 604 to allow water from the water tank 5 to enter the inlet pipe 603, then the delivery pipe 605. The water in the delivery pipe 605 enters the distribution box 601 through the connecting pipe 606, and finally is sprayed out through the nozzle 602. Hold the dust suction port 4 and start the blower 15 to allow the grinding dust to enter the first chamber 2 through the corrugated pipe 3. Under the action of the nozzle 602, the dust particles in the air can be adsorbed, thereby achieving the effect of dust reduction and causing the dust to settle at the bottom of the first chamber 2. The water at the bottom of the first chamber 2 is filtered through the filter screen 17 and flows back to the water tank 5 for recycling.
[0029] A connecting port 14 extends through one side of the interior of the first housing 2. A corrugated pipe 3 is fixed to the other side of the first housing 2, and a dust suction port 4 is fixed to one end of the corrugated pipe 3. A through hole 11 extends through one side of the top of the water tank 5, and a filter screen 17 is installed inside the water tank 5 at one end of the through hole 11. A shell 9 is fixed to one side of the interior of the second housing 7, and an exhaust port 16 extends through the other side of the interior of the second housing 7. A filter structure 10 is evenly arranged inside the shell 9. The filter structure 10 includes a fixing frame 1001, a stainless steel woven mesh 1002, a snap-fit groove 1003, a fixing plate 1004, a reserved groove 1005, and a snap-fit block 1006. The fixing frames 1001 are evenly arranged inside the shell 9, and each fixing frame 1001 is equipped with a stainless steel woven mesh 1002. One end of 1001 extends to the outside of the housing 9 and is fixed with a fixing plate 1004. Both ends of one side of the fixing plate 1004 are fixed with snap-fit blocks 1006. The inside of the housing 9 on the outside of the snap-fit blocks 1006 is provided with snap-fit grooves 1003. The inside of the snap-fit blocks 1006 is provided with reserved grooves 1005. A handle is fixed on the side of the fixing plate 1004 away from the fixing frame 1001. The snap-fit blocks 1006 and the housing 9 form a snap-fit structure through the snap-fit grooves 1003. A blower 15 is installed on one side of the housing 9. One end of the through hole 11 extends into the inside of the first housing 2. One side of the connecting port 14 extends into the inside of the second housing 7. The input end of the blower 15 extends into the inside of the housing 9. A dustproof net is fixed on the outer wall of the second housing 7 on one side of the exhaust port 16.
[0030] Reference Figure 4 and Figure 5 As shown, when the door 8 is opened, the fixing plate 1004 is moved by the handle. The fixing plate 1004 moves the fixing frame 1001 into the inside of the housing 9. Pushing the fixing plate 1004, under the action of the reserved groove 1005, the fixing plate 1004 drives the snap-fit block 1006 to move into the snap-fit groove 1003, thereby fixing the fixing frame 1001 and the housing 9 together. When the stainless steel woven mesh 1002 needs to be replaced, the fixing plate 1004 is pulled by the handle. The fixing plate 1004 drives the fixing frame 1001 to move to the outside of the housing 9. When the door 8 is closed, under the action of the blower 15, the sprayed air enters the inside of the housing 9 through the connecting port 14. The air filtered by the stainless steel woven mesh 1002 is discharged through the exhaust port 16.
[0031] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A cleaning mechanism for a lens polishing machine, comprising a base plate (1) and a first housing (2); Its features are: Fixed casters (12) are evenly fixed on both sides of the bottom end of the base plate (1). A first box (2) is fixed on one side of the top end of the base plate (1). A second box (7) is fixed on the other side of the top end of the base plate (1). A door (8) is provided on one side of the second box (7). A water tank (5) is fixed on the top end of the base plate (1) on one side of the first box (2). A drain pipe (13) is fixed on one side of the bottom of the first box (2). The top of the first box (2) is provided with a spray structure (6), and a communication port (14) is provided through one side of the interior of the first box (2). A corrugated pipe (3) is fixed on the other side of the first box (2), and a dust suction port (4) is fixed at one end of the corrugated pipe (3). A through hole (11) is provided on one side of the top of the water tank (5). A filter screen (17) is installed inside the water tank (5) at one end of the through hole (11). A cover (9) is fixed on one side of the inside of the second box (7). An exhaust port (16) is provided on the other side of the inside of the second box (7). A filter structure (10) is evenly arranged inside the cover (9). A blower (15) is installed on one side of the cover (9).
2. The cleaning mechanism of a lens polishing machine according to claim 1, characterized in that: The spray structure (6) includes a distribution box (601), a nozzle (602), an inlet pipe (603), a delivery pump (604), a delivery pipe (605), and a connecting pipe (606). The distribution box (601) is fixed to the top of the first box (2). The nozzles (602) are evenly arranged at the bottom of the distribution box (601). The connecting pipe (606) is fixed to one side of the top of the distribution box (601). The delivery pump (604) is installed at the top of the water tank (5). The inlet pipe (603) is fixed to the input end of the delivery pump (604), and the delivery pipe (605) is fixed to the output end of the delivery pump (604).
3. The cleaning mechanism of a lens polishing machine according to claim 2, characterized in that: The end of the inlet pipe (603) away from the delivery pump (604) extends into the interior of the water tank (5), and the top end of the connecting pipe (606) extends to the exterior of the first tank (2) and is fixedly connected to one end of the delivery pipe (605).
4. The cleaning mechanism of a lens polishing machine according to claim 1, characterized in that: The filter structure (10) includes a fixed frame (1001), a stainless steel woven mesh (1002), a snap-fit groove (1003), a fixed plate (1004), a reserved groove (1005), and a snap-fit block (1006). The fixed frame (1001) is evenly arranged inside the shell (9). The fixed frame (1001) is provided with a stainless steel woven mesh (1002) inside. One end of the fixed frame (1001) extends to the outside of the shell (9) and is fixed with a fixed plate (1004). Snap-fit blocks (1006) are fixed at both ends on one side of the fixed plate (1004). Snap-fit grooves (1003) are opened inside the outer shell (9) of the snap-fit block (1006). Reserved grooves (1005) are provided inside the snap-fit block (1006).
5. The cleaning mechanism of a lens polishing machine according to claim 4, characterized in that: A handle is fixed to the side of the fixing plate (1004) away from the fixing frame (1001), and the snap-fit block (1006) and the shell (9) form a snap-fit structure through the snap-fit groove (1003).
6. The cleaning mechanism of a lens polishing machine according to claim 1, characterized in that: One end of the through hole (11) extends into the interior of the first housing (2), and one side of the connecting port (14) extends into the interior of the second housing (7).
7. The cleaning mechanism of a lens polishing machine according to claim 1, characterized in that: The input end of the blower (15) extends into the interior of the housing (9), and a dustproof net is fixed on the outer wall of the second housing (7) on one side of the exhaust port (16).
Citation Information
Patent Citations
Cleaning device for lens grinding machine
CN209273145U