CN210756915U - Polishing solution supply system for producing optical lens - Google Patents
Polishing solution supply system for producing optical lens Download PDFInfo
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- CN210756915U CN210756915U CN201921833191.4U CN201921833191U CN210756915U CN 210756915 U CN210756915 U CN 210756915U CN 201921833191 U CN201921833191 U CN 201921833191U CN 210756915 U CN210756915 U CN 210756915U
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Abstract
The utility model discloses a production polishing solution feed system for optical lens, including water pump, polishing solution bucket, drain pipe and liquid return pipe, the water pump is installed on the drain pipe, and during drain pipe one end stretched into polishing solution bucket, one end was used for advancing the union coupling with the burnishing machine, liquid return pipe one end is connected with the exit tube of burnishing machine, and the other end communicates its characterized in that with polishing solution bucket: still include base, drive arrangement and conduit, polishing solution storage bucket includes a staving and the upper cover that can lock sealed each other with this staving, both ends are equipped with the pivot on the staving and this pivot passes through bearing and pedestal connection, the conduit passes in extending into the staving behind one of them pivot, and the conduit passes through the bearing with this pivot and is connected, drain pipe and liquid return pipe stretch into the staving for hard pipe and pass the conduit after, and the system can effectually avoid the polishing powder to appear deposiing in the polishing solution, avoids polishing solution concentration to reduce, guarantees the normal clear of polishing process.
Description
Technical Field
The utility model relates to a polishing solution feed system that optical lens piece burnishing machine used, concretely relates to production polishing solution feed system for optical lens piece.
Background
In the optical industry, the requirements for optical lenses are very high, such as the thickness of the lenses, the curved surface precision and the glossiness of the lenses, and the like, which have strict requirements, any one process step can not meet the requirements, and the produced optical lenses can become waste products and can not be used. During processing, the lens is usually subjected to slicing, grinding and polishing. The surface of the lens is polished to remove metal scratches and irregularities from the surface of the lens and to improve the overall finish to further reduce breakage, which will form a mirror surface on the surface of the lens.
In the actual polishing process, polishing powder is generally selected according to a polished lens, and then the polishing powder is mixed with water according to a certain proportion to form polishing liquid; however, in actual production, it is found that the concentration of the polishing liquid gradually decreases and the color of the polishing liquid gradually becomes lighter as the polishing process proceeds, and for this reason, mainly the polishing powder is precipitated in the polishing liquid storage cylinder.
In contrast, a stirring device is added, and the polishing solution in the polishing solution storage barrel is stirred constantly through the stirring device, so that the polishing powder is prevented from settling; after the stirring device is added, the problem of polishing powder precipitation still exists at the edge position of the polishing solution storage barrel; this also results in a decrease in the concentration of the polishing slurry, and the concentration of the resulting suspension does not meet the polishing requirements, thereby prolonging the polishing time.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome among the prior art polishing solution and appear deposiing in polishing solution storage bucket easily, lead to the polishing powder to deposit, a shortcoming that influences the concentration of polishing solution provides a production polishing solution feed system for optical lens, and the system can effectually avoid among the polishing solution polishing powder to appear deposiing, avoids polishing solution concentration to reduce, guarantees the normal clear of polishing process.
In order to solve the technical problem, the utility model discloses the technical scheme who adopts is:
the utility model provides a production polishing solution feed system for optical lens, includes water pump, polishing solution storage bucket, drain pipe and returns the liquid pipe, the water pump is installed on the drain pipe, and during drain pipe one end stretched into polishing solution storage bucket, one end was used for advancing the union coupling with the burnishing machine, return the exit tube of liquid pipe one end and burnishing machine and be connected, the other end and polishing solution storage bucket intercommunication, its characterized in that: the polishing solution storage barrel comprises a barrel body and an upper cover which can be mutually buckled and sealed with the barrel body, rotating shafts are arranged at two ends of the barrel body and are connected with the base through bearings, the conduit pipe penetrates through one of the rotating shafts and then extends into the barrel body, the conduit pipe is connected with the rotating shaft through the bearings, the liquid outlet pipe and the liquid return pipe are hard pipes and extend into the barrel body after penetrating through the conduit pipe, the bottom end of the liquid outlet pipe is close to the bottom of the barrel body, the liquid outlet pipe and the liquid return pipe are connected with the conduit pipe through 8-shaped sealing rings, the conduit pipe is fixedly connected with the base through a support, a horn-shaped liquid baffle plate is arranged in the barrel body and is connected with the conduit pipe through a rotary sealing ring, and a plurality of baffle plates are arranged on the inner side walls of the barrel body and the upper cover; the driving device is connected with one of the rotating shafts and can drive the polishing solution storage barrel to rotate after being connected.
The part below the polishing solution liquid level is equipped with a plurality of first striker plates on the drain pipe, and a plurality of first striker plates are left and right alternate form and distribute.
A stirring rod is arranged at the position, close to the end part of the bottom of the barrel body, of the liquid outlet pipe.
The polishing solution storage barrel is integrally spherical, ellipsoidal, cubic or drum-shaped.
The barrel body and the upper cover are sealed through a sealing ring.
The driving device is a gear driving device, a chain driving device or a belt driving device.
The base slope is installed on the base, and the contained angle between base bottom surface and the base surface is: 5-20 degrees.
The base is hinged with the base through a first rotating shaft, the right side wall of the base is hinged with the base through a hydraulic cylinder, and a cushion pad is arranged at the lower end of the left side of the base.
Compared with the prior art, the utility model discloses following beneficial effect has:
the polishing device can effectively avoid the polishing powder in the polishing solution from precipitating, and avoid the concentration reduction of the polishing solution from influencing the normal operation of the polishing process; can make polishing solution mix more evenly in the polishing solution bucket, the turbid liquid concentration of formation is more even and accords with the needs of polishing.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic structural view of the barrel body of the present invention.
Fig. 3 is a partially enlarged view of a portion a in fig. 1 according to the present invention.
Reference numerals: 1 water pump, 2 polish holding vessel, 201 staving, 202 upper cover, 3 drain pipes, 4 liquid return pipes, 5 bases, 6 wire pipes, 7 pivots, 8 bearings, 9 "8" style of calligraphy sealing washer, 10 supports, 11 fender liquid boards, 12 rotatory sealing washers, 13 baffles, 14 first striker plates, 15 stirring rod, 16 sealing rings, 17 blotters, 18 motors, 19 driven sprocket, 20 chains, 21 drive sprocket, 22 bases, 23 pneumatic cylinders, 24 first pivots.
Detailed Description
The present invention will be further described with reference to the following examples, which are only some, but not all, of the examples of the present invention. Based on the embodiments in the present invention, other embodiments used by those skilled in the art without creative work belong to the protection scope of the present invention.
Example 1
A polishing solution supply system for producing an optical lens comprises a water pump 1, a polishing solution storage barrel 2, a liquid outlet pipe 3 and a liquid return pipe 4, wherein the water pump 1 is installed on the liquid outlet pipe 3, one end of the liquid outlet pipe 3 extends into the polishing solution storage barrel 2, the other end of the liquid outlet pipe 3 is used for being connected with an inlet pipe of a polishing machine, one end of the liquid return pipe 4 is connected with an outlet pipe of the polishing machine, the other end of the liquid return pipe is communicated with the polishing solution storage barrel 2, the polishing solution storage barrel 2 further comprises a base 5, a driving device and a conduit 6, the polishing solution storage barrel 2 comprises a barrel body 201 and an upper cover 202 which can be mutually buckled and sealed with the barrel body 201, two ends of the barrel body 201 are provided with a rotating shaft 7, the rotating shaft 7 is connected with the base 5 through a bearing 8, the conduit 6 extends into the barrel body 201 after penetrating through one of the rotating shaft 7, the conduit 6 is connected with the rotating shaft 8, the liquid outlet pipe 3 and, the bottom end of the liquid outlet pipe 3 is close to the bottom of the barrel body 201, the liquid outlet pipe 3 and the liquid return pipe 4 are connected with the conduit 6 through an 8-shaped sealing ring 9, the conduit 6 is fixedly connected with the base 5 through a support 10, a trumpet-shaped liquid baffle plate 11 is arranged in the barrel body 201, the liquid baffle plate 11 is connected with the conduit 6 through a rotary sealing ring 12, and a plurality of baffle plates 13 are arranged on the inner side walls of the barrel body 201 and the upper cover 202; the driving device is connected with one rotating shaft 7 and can drive the polishing solution storage barrel 2 to rotate after being connected.
Thus, under the action of the water pump 1, the polishing solution is connected with the inlet pipe of the polishing machine from the polishing solution storage barrel 2 through the liquid outlet pipe 3, the polishing solution is sprayed to the lens polishing position, and then the polishing solution flows to the liquid return pipe 4 through the outlet pipe of the polishing machine and returns to the polishing solution storage barrel 2, so that the polishing solution can be recycled; and, because drain pipe 3 and liquid return pipe 4 are hard pipe and pass conduit 6 and extend into polishing solution storage bucket 2, and staving 201 rotates through pivot 7 and base 5 and is connected, conduit 6 is through a support 10 and base 5 fixed connection, conduit 6 with pivot 7 rotates and is connected, just so makes staving 201 rotate on base 5 alone to, can block the gap between drain pipe 3 and liquid return pipe 4 and conduit 6 through the "8" style of calligraphy sealing washer 9 that sets up, and the baffle 11 that is the tubaeform that sets up can carry out the water conservancy diversion to polishing solution, and when rotary seal 12 between baffle 11 and conduit 6 can avoid staving 201 to rotate, polishing solution flows out from the gap.
Like this, in the in-service use of reality, put into staving 201 with polishing powder and liquid in proportion, then carry out the lock with upper cover 202 and staving 201, can directly adopt the fastener to carry out the lock, if the case detain carry out the lock make upper cover 202 sealed with staving 201 can, polishing solution reveals when avoiding staving 201 to rotate.
Then, the driving device is started, the driving device drives the rotating shaft 7 to rotate, so that the polishing solution storage barrel 2 integrally rotates, and at the moment, the polishing liquid in the polishing liquid storage barrel 2 is in a circulating flow state, and meanwhile, the polishing liquid storage barrel 2 rotates to roll the polishing liquid in the polishing liquid storage barrel, and the polishing solution is stirred under the action of the baffle 13, so that the polishing powder precipitated at the bottom of the barrel body 201 can gradually move from the bottom of the barrel body 201 to the top of the barrel body 201 along with the rotation of the barrel body 201, and then falls into the polishing solution under the action of gravity after reaching the top, so that the polishing solution can be mixed in the barrel body 201 in all directions, the mixing of the polishing powder and the liquid is ensured, the concentration of the suspension formed by the polishing solution is more uniform, the condition that the polishing powder is accumulated at the local position of the barrel body 201 is avoided, the concentration of polishing solution can be effectively guaranteed, and then effective implementation of the polishing process is guaranteed.
More importantly, through the arranged liquid baffle plate 11, the 8-shaped sealing ring 9 and the rotary sealing ring 12, the polishing liquid can be effectively prevented from leaking from the gap position.
Further optimize, the part that lies in below the polishing solution liquid level on drain pipe 3 is equipped with a plurality of first striker plates 14, and a plurality of first striker plates 14 are left and right sides and alternate form and distribute.
Therefore, the barrel body 201 can rotate to turn over the polishing liquid inside, the purpose of turbulent flow is achieved under the action of the first material baffle 14, and the polishing powder and the liquid are uniformly mixed.
Further preferably, a stirring rod 15 is arranged at the end part of the liquid outlet pipe 3 close to the bottom of the barrel body 201.
Thus, the polishing liquid at the bottom of the tub 201 can be agitated.
It should be noted that the polishing solution storage barrel 2 is entirely spherical, ellipsoidal, cubic, or drum-shaped, and includes an upper cover 202 and a barrel 201, and the upper cover 202 and the barrel 201 can be opened and closed; in the present embodiment, the polishing liquid storage barrel 2 is spherical as a whole.
Wherein, the barrel 201 and the upper cover 202 are sealed by a sealing ring 16.
Wherein the driving device is a gear driving device, a chain 20 driving device or a belt driving device;
the gear drive, the chain 20 drive and the belt drive are further explained below:
the gear driving device at least comprises a motor 18, a driven gear and a driving gear, the motor 18 is installed on the base 5, the motor 18 is connected with the driving gear, the driven gear is fixedly installed on the rotating shaft 7, and the driving gear and the driven gear are meshed with each other.
The chain 20 driving device comprises a motor 18, a driven chain wheel 19, a chain 20 and a driving chain wheel 21, the motor 18 is installed on the base 5, the motor 18 is connected with the driving chain wheel 21, the driven chain wheel 19 is fixedly installed on the rotating shaft 7, and the driving gear and the driven gear are connected through the chain 20.
It should be noted that the structure and principle of the belt driving device are similar to those of the chain 20 driving device, and the detailed description is omitted here.
Example 2
The present embodiment is further optimized based on embodiment 1, in the present embodiment, the base 5 is obliquely installed on the base 22, and an included angle between the bottom surface of the base 5 and the surface of the base 22 is: 5-20 °;
in this embodiment, the included angle is 15 °.
The base 5 is inclined, so that the polishing liquid can slide downwards along the liquid baffle plate 11 under the action of gravity, and the polishing liquid is prevented from leaking from a gap between the 8-shaped sealing ring 9 and the rotary sealing ring 12.
Example 3
The embodiment is further optimized on the basis of the embodiment 2, in the embodiment, the base 5 is hinged to the base 22 through a first rotating shaft 24, the right side wall of the base 5 is hinged to the base 22 through a hydraulic cylinder 23, a cushion pad 17 is arranged on the base 22 and positioned at the lower end of the left side of the base 5, and the cushion pad 17 can perform buffering when the hydraulic cylinder 23 is extended to enable the base 5 to be attached to the base 22; namely: the base 5 presses against the cushion 17 without the base 5 needing to rotate.
Like this, in the in-service use, through the extension and the shortening of pneumatic cylinder 23, can make base 5 round first pivot 24 round the round trip rotation on base 22, and then make the liquid in the staving 201 can rock in staving 201, further avoid the polishing powder to deposit, make its formation turbid liquid that can be better.
Claims (8)
1. The utility model provides a production polishing solution feed system for optical lens, includes water pump, polishing solution storage bucket, drain pipe and returns the liquid pipe, the water pump is installed on the drain pipe, and during drain pipe one end stretched into polishing solution storage bucket, one end was used for advancing the union coupling with the burnishing machine, return the exit tube of liquid pipe one end and burnishing machine and be connected, the other end and polishing solution storage bucket intercommunication, its characterized in that: the polishing solution storage barrel comprises a barrel body and an upper cover which can be mutually buckled and sealed with the barrel body, rotating shafts are arranged at two ends of the barrel body and are connected with the base through bearings, the conduit pipe penetrates through one of the rotating shafts and then extends into the barrel body, the conduit pipe is connected with the rotating shaft through the bearings, the liquid outlet pipe and the liquid return pipe are hard pipes and extend into the barrel body after penetrating through the conduit pipe, the bottom end of the liquid outlet pipe is close to the bottom of the barrel body, the liquid outlet pipe and the liquid return pipe are connected with the conduit pipe through 8-shaped sealing rings, the conduit pipe is fixedly connected with the base through a support, a horn-shaped liquid baffle plate is arranged in the barrel body and is connected with the conduit pipe through a rotary sealing ring, and a plurality of baffle plates are arranged on the inner side walls of the barrel body and the upper cover; the driving device is connected with one of the rotating shafts and can drive the polishing solution storage barrel to rotate after being connected.
2. The polishing liquid supply system for producing optical lenses according to claim 1, wherein: the part below the polishing solution liquid level is equipped with a plurality of first striker plates on the drain pipe, and a plurality of first striker plates are left and right alternate form and distribute.
3. The polishing liquid supply system for producing optical lenses according to claim 1, wherein: a stirring rod is arranged at the position, close to the end part of the bottom of the barrel body, of the liquid outlet pipe.
4. The polishing liquid supply system for producing optical lenses according to claim 1, wherein: the polishing solution storage barrel is integrally spherical, ellipsoidal, cubic or drum-shaped.
5. The polishing liquid supply system for producing optical lenses according to claim 1, wherein: the barrel body and the upper cover are sealed through a sealing ring.
6. The polishing liquid supply system for producing optical lenses according to claim 1, wherein: the driving device is a gear driving device, a chain driving device or a belt driving device.
7. The polishing liquid supply system for producing optical lenses according to claim 1, wherein: the base slope is installed on the base, and the contained angle between base bottom surface and the base surface is: 5-20 degrees.
8. The polishing liquid supply system for producing optical lenses according to claim 7, wherein: the base is hinged with the base through a first rotating shaft, the right side wall of the base is hinged with the base through a hydraulic cylinder, and a cushion pad is arranged at the lower end of the left side of the base.
Priority Applications (1)
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CN201921833191.4U CN210756915U (en) | 2019-10-29 | 2019-10-29 | Polishing solution supply system for producing optical lens |
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CN201921833191.4U CN210756915U (en) | 2019-10-29 | 2019-10-29 | Polishing solution supply system for producing optical lens |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114043350A (en) * | 2021-12-07 | 2022-02-15 | 中山市光大光学仪器有限公司 | Large-caliber hemispherical lens processing equipment and processing method |
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2019
- 2019-10-29 CN CN201921833191.4U patent/CN210756915U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114043350A (en) * | 2021-12-07 | 2022-02-15 | 中山市光大光学仪器有限公司 | Large-caliber hemispherical lens processing equipment and processing method |
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