CN203509833U - Automatic lens production device - Google Patents
Automatic lens production device Download PDFInfo
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- CN203509833U CN203509833U CN201320623338.3U CN201320623338U CN203509833U CN 203509833 U CN203509833 U CN 203509833U CN 201320623338 U CN201320623338 U CN 201320623338U CN 203509833 U CN203509833 U CN 203509833U
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- eyeglass
- polishing
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- fine grinding
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Abstract
The utility model provides an automatic lens production device. The automatic lens production device comprises a controller and a main processing part electrically connected with the controller, wherein the main processing part comprises a main bearing part and a plurality of processing parts, the main bearing part can automatically rotate and is used for bearing workpieces, the processing parts are located above the main bearing part and used for respectively processing the workpieces on the main bearing part, each processing part comprises a rough milling part, a grinding part, a chamfering part and a polishing part, each rough milling part is used for roughly milling the open spherical surfaces of raw materials of a lens, each grinding part is used for grinding the lens, each chamfering part is used for chamfering the lens, and each polishing part is used for polishing the lens. Compared with the prior art, one automatic lens production device can complete a plurality of processing links of the lens, equivalently, functions of processing machines for work division in the prior art are integrated in the automatic lens production device, and work is completed integrally. Therefore, the automatic lens production device is high in production efficiency, high in production process accuracy, and low in cost.
Description
[technical field]
The utility model relates to a kind of automatic manufacturing device, relates in particular to a kind of eyeglass automatic manufacturing device that is used in optical field.
[background technology]
In recent years, develop rapidly along with multimedia technology, to carrying at digital camera, video camera and for example, with the demand of the precison optical component (eyeglass) of the electronic installations such as mobile phone of camera function, and people because of glasses myopia or the eyeglass demand used such as follow the fashion increasing.Eyeglass adopts eyeglass automatic manufacturing device or equipment to manufacture conventionally, enhancing productivity, output and reducing costs.
The processing link of eyeglass comprises the processing links such as the face of kicking off, corase grind, fine grinding, fine grinding, chamfering, polishing, each processing link has different processing equipments to divide the work, such as: mould molding equipment, corase grind or fine grinding equipment, chamfering device and polissoir etc.
In the machining eyeglass production technology of prior art, above-mentioned each working link is to be machined respectively by different processing equipments, and different processing equipments completes different processing links.Like this, work difficulty and the speed of variant processing equipment are inconsistent, cause next step operation to lack processed semi-finished product and cause one to treat occurrence state when the operation of possible previous step does not complete, and this will seriously reduce production efficiency; But also need a plurality of people to be in charge of each processing equipment, increase cost of labor.
Therefore, be necessary to provide a kind of new eyeglass automatic manufacturing device to overcome above-mentioned technical problem in fact.
[utility model content]
The technical problem that the utility model need solve is to provide the eyeglass automatic manufacturing device that a kind of production efficiency is high, craft precision is high.
According to above-mentioned technical problem, designed a kind of eyeglass automatic manufacturing device, its objective is such realization: a kind of eyeglass automatic manufacturing device, it comprises controller and the processing main part being electrically connected to described controller.Wherein, described processing main part comprise can automatic rotation for carrying the main body supporting part of workpiece and being positioned at the some processing departments for the described workpiece on described main body supporting part is processed respectively of described main body supporting part top.Described processing department comprise for eyeglass raw material are carried out milling slightly the face of kicking off process and form spheric glass the thick portion of milling, by described spheric glass polish process and form polishing eyeglass polishing portion, described polishing eyeglass is carried out to chamfer machining and forms the chamfered section of chamfering eyeglass and described chamfering eyeglass carried out to polishing and form the polishing portion of finished product eyeglass.
Preferably, described polishing portion comprise by described spheric glass roughly grind process and form corase grind eyeglass corase grind portion, described corase grind eyeglass is carried out to fine grinding processing and forms the fine grinding portion of fine grinding eyeglass and described fine grinding eyeglass carried out to fine grinding and form the fine grinding portion of polishing eyeglass.
Preferably, described polishing portion comprises and described polishing eyeglass is carried out to rough polishing processing and form just throwing the first polishing portion of eyeglass and just throwing by described the fine polishing portion that eyeglass carries out fine polishing processing and forms finished product eyeglass.
Preferably, described processing main part also comprises for described finished product eyeglass being clamped to the clamping portion of vanning.
In prior art, a plurality of processing links of eyeglass are completed by different processing equipments, compare with correlation technique, the utility model only eyeglass automatic manufacturing device completes a plurality of processing links of eyeglass, be equivalent to the Function Integration Mechanism of the processing equipment of the division of labor of the prior art to complete in eyeglass automatic manufacturing device one of the utility model, thereby, the utility model eyeglass automatic manufacturing device production efficiency is high, and production technology precision is high, and cost is low.
[accompanying drawing explanation]
Fig. 1 is one, No. two station structure schematic diagram of the utility model eyeglass automatic manufacturing device.
Fig. 2 is three, No. four station structure schematic diagrames of the utility model eyeglass automatic manufacturing device.
Fig. 3 is five, No. six station structure schematic diagrames of the utility model eyeglass automatic manufacturing device.
Fig. 4 is seven, No. eight station structure schematic diagrames of the utility model eyeglass automatic manufacturing device.
Fig. 5 is the utility model eyeglass automatic manufacturing device structural representation.
[specific embodiment]
Below in conjunction with drawings and embodiments, the utility model is described in further detail.
As Figure 1-5, a kind of eyeglass automatic manufacturing device 10, it comprises controller (not shown) and the processing main part 1 being electrically connected to controller.Wherein, processing main part 1 comprise can automatic rotation for carrying the main body supporting part 2 of workpiece and being positioned at the some processing departments 3 for the described workpiece carrying on main body supporting part 2 is processed respectively of main body supporting part 2 tops, in this processing department 3, also claim station.In present embodiment, processing department 3 comprise for eyeglass raw material 4 are carried out milling slightly the face of kicking off process and form spheric glass the thick portion 31 of milling, by spheric glass polish process and form polishing eyeglass polishing portion 32, described polishing eyeglass is carried out to chamfer machining and forms the chamfered section 33 of chamfering eyeglass and chamfering eyeglass carried out to polishing and form the polishing portion 34 of finished product eyeglass.
Concrete, the quantity of main body supporting part 2 is corresponding setting with the station on processing main part 1, the interval time that each main body supporting part 2 rotates be also corresponding setting process time on processing stations, by controller, control.In present embodiment, each main body supporting part 2 rotation is the motors that adopt, and by controller, controls rotation.
More excellent, in the utility model, thinner in order to accomplish in technique, polishing portion 32 is provided with three stations, comprises described spheric glass to roughly grind to process and form the corase grind portion 321 of corase grind eyeglass, again corase grind eyeglass is carried out to fine grinding processing and form the fine grinding portion 322 of fine grinding eyeglass and finally described fine grinding eyeglass carried out to fine grinding and form the fine grinding portion 323 of polishing eyeglass afterwards.By the polishing operation of above-mentioned three stations, the polishing eyeglass precision that described spheric glass is processed into is higher.
In addition, in the utility model, in order to make optical effect better, polishing portion 34 also divides for two stations, comprises and described polishing eyeglass is carried out to rough polishing processing and form just throwing the first polishing portion 341 of eyeglass and just throwing by described the fine polishing portion 342 that eyeglass carries out fine polishing processing and forms finished product eyeglass.
Successively by the processing of one to No. seven station such as the thick portion 31 of above-mentioned milling, corase grind portion 321, fine grinding portion 322, fine grinding portion 323, chamfered section 33, first polishing portion 341 and fine polishing portion 342, as 1a-7a in Fig. 5, just can form finished product eyeglass.
Concrete, each main body supporting part 2 is equipped with for carrying the chuck of workpiece, and in the parts of seven processing stations, be all provided with corresponding mould, as, the thick portion 31 of milling is provided with milling roughcast tool 311, corase grind portion 321 is provided with corase grind mould 3211, fine grinding portion 322 is provided with fine grinding mould 3221, and fine grinding portion 323 is provided with fine grinding mould 3231, and chamfered section 33 is provided with chamfer mould 331, just polishing portion 341 is provided with just polishing mould 3411, and fine polishing portion 342 is provided with fine polishing mould 3421.
This further realization full-automatic, the processing main part 1 of eyeglass automatic manufacturing device 10 of the present utility model is also provided with for eyeglass raw material being carried out to the clamping portion 35 of clamping, also i.e. No. eight station 8a.That is to say, in this implementation, be provided with altogether 8 road stations, eyeglass raw material are processed into finished product eyeglass vanning the most at last, forward in next step production.
Compare with correlation technique, the utility model eyeglass automatic manufacturing device is provided with multiple tracks station, only eyeglass automatic manufacturing device completes a plurality of processing links of eyeglass, the production process of eyeglass is combined in to one, production efficiency and production technology precision have greatly been improved high and reduce costs, and in grinding and buffing station, be provided with especially multiple working procedure, make the craft precision of eyeglass sanding and polishing higher.
Above-described is only embodiment of the present utility model; at this, it should be pointed out that for the person of ordinary skill of the art, do not departing under the prerequisite of the utility model creation design; can also make improvement, but these all belong to protection domain of the present utility model.
Claims (4)
1. an eyeglass automatic manufacturing device, it comprises controller and the processing main part being electrically connected to described controller, it is characterized in that: described processing main part comprise can automatic rotation for carrying the main body supporting part of workpiece and being positioned at the some processing departments for the described workpiece on described main body supporting part is processed respectively of described main body supporting part top, described processing department comprise for eyeglass raw material are carried out milling slightly the face of kicking off process and form the thick portion of milling of spheric glass, described spheric glass is polished and processed and form the polishing portion of polishing eyeglass, described polishing eyeglass is carried out to chamfer machining and form the chamfered section of chamfering eyeglass and described chamfering eyeglass carried out to polishing and form the polishing portion of finished product eyeglass.
2. eyeglass automatic manufacturing device according to claim 1, is characterized in that: described polishing portion comprise by described spheric glass roughly grind process and form corase grind eyeglass corase grind portion, described corase grind eyeglass is carried out to fine grinding processing and forms the fine grinding portion of fine grinding eyeglass and described fine grinding eyeglass carried out to fine grinding and form the fine grinding portion of polishing eyeglass.
3. eyeglass automatic manufacturing device according to claim 2, is characterized in that: described polishing portion comprises and described polishing eyeglass carried out to rough polishing processing and form just throwing the first polishing portion of eyeglass and just throwing by described the fine polishing portion that eyeglass carries out fine polishing processing and forms finished product eyeglass.
4. eyeglass automatic manufacturing device according to claim 3, is characterized in that: described processing main part also comprises for described finished product eyeglass being clamped to the clamping portion of vanning.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320623338.3U CN203509833U (en) | 2013-09-28 | 2013-09-28 | Automatic lens production device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320623338.3U CN203509833U (en) | 2013-09-28 | 2013-09-28 | Automatic lens production device |
Publications (1)
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CN203509833U true CN203509833U (en) | 2014-04-02 |
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CN201320623338.3U Expired - Fee Related CN203509833U (en) | 2013-09-28 | 2013-09-28 | Automatic lens production device |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103481154A (en) * | 2013-09-28 | 2014-01-01 | 董立祥 | Automatic lens production device |
CN106607744A (en) * | 2016-12-28 | 2017-05-03 | 浙江思玛特机器人科技有限公司 | Polishing device |
WO2020049052A3 (en) * | 2018-09-04 | 2020-05-14 | Schneider Gmbh & Co. Kg | Device and method for lens processing |
-
2013
- 2013-09-28 CN CN201320623338.3U patent/CN203509833U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103481154A (en) * | 2013-09-28 | 2014-01-01 | 董立祥 | Automatic lens production device |
CN106607744A (en) * | 2016-12-28 | 2017-05-03 | 浙江思玛特机器人科技有限公司 | Polishing device |
WO2020049052A3 (en) * | 2018-09-04 | 2020-05-14 | Schneider Gmbh & Co. Kg | Device and method for lens processing |
CN112771349A (en) * | 2018-09-04 | 2021-05-07 | 施耐德两合公司 | Apparatus and method for lens treatment |
CN112771349B (en) * | 2018-09-04 | 2024-08-16 | 施耐德两合公司 | Apparatus and method for lens treatment |
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Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140402 Termination date: 20160928 |
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CF01 | Termination of patent right due to non-payment of annual fee |