CN203346258U - Spring type glass correction device - Google Patents
Spring type glass correction device Download PDFInfo
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- CN203346258U CN203346258U CN 201320396368 CN201320396368U CN203346258U CN 203346258 U CN203346258 U CN 203346258U CN 201320396368 CN201320396368 CN 201320396368 CN 201320396368 U CN201320396368 U CN 201320396368U CN 203346258 U CN203346258 U CN 203346258U
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- compressing tablet
- stator
- stator axle
- axle
- spring
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Abstract
The utility model provides a spring type glass correction device. The device comprises a frame, first sheet fixing shafts, second sheet fixing shafts, sheet pressing push rods, sheet pressing shafts and elastic parts. The device has the beneficial effects that as the spring type glass correction device comprises a plurality of first sheet fixing shafts and a plurality of second sheet fixing shafts, a plurality of supporting structures can be formed; during glass correction, a plurality of to-be-corrected glass sheets can be simultaneously put on the spring type glass correction device; the spacing distances between a plurality of sheet pressing shafts, the spacing distances between the plurality of first sheet fixing shafts and the spacing distances between the plurality of second sheet fixing shafts are the same; the plurality of sheet pressing shafts can respectively press and clamp the plurality of glass sheets by virtue of sliding the sheet pressing push rods; after the plurality of glass sheets are pressed and clamped for a preset period of time, the corrected glass sheets can be obtained through heating treatment; therefore the plurality of glass sheets can be simultaneously corrected by the spring type glass correction device, thus improving the processing efficiency.
Description
Technical field
The utility model relates to the touch-screen processing technology, particularly relates to a kind of spring-type glass correction device.
Background technology
Glass is the important materials in technique of display field, because it is transparent, printing opacity, reflection, colorful characteristic, is widely used in different technical fields, and typical representative is exactly the touch-screen field.Glass must be through the transmission before and after cutting, cutting, the operations such as burst after cutting for touch screen.In addition, due to the particular requirement of touch-screen, also need to glass ground, the operation such as strengthening, silk-screen.In said process, due to the impact that is subject to environment or operation factors, easily cause glass bending.Therefore, by glass for the preparation of touch-screen before, it is necessary program that crooked glass is proofreaied and correct.
At present, generally adopt the glass of the mode bending with sizing of pressing.Yet traditional method can only carry out proofreading and correct piecewise to crooked glass, working (machining) efficiency is low.
The utility model content
Based on this, be necessary to provide a kind of spring-type glass correction device that can improve working (machining) efficiency.
A kind of spring-type glass correction device comprises:
Framework, described framework forms a solid space;
The first stator axle, be rod shaped structure, and described the first stator axle is fixed in described framework and is positioned at described solid space, and described the first stator axle is a plurality of, and a plurality of described the first stator axles are parallel to each other and uniformly-spaced arrange, and are positioned at same plane;
The second stator axle, for rod shaped structure, described the second stator axle is fixed in described framework and is positioned at described solid space, described the second stator axle is a plurality of, a plurality of described the second stator axles are parallel to each other and uniformly-spaced arrange, and be positioned at same plane, described the second plane, stator axle place and described the first stator axle place plane parallel, and a plurality of described the second stator axle is parallel with a plurality of described the first stator axles;
The compressing tablet push rod, be located at slidably on described framework, described compressing tablet push rod is vertical with described the first stator axle and described the second stator axle, and, with the plane parallel at plane and a plurality of described second stator axle places at a plurality of described the first stator axle places, the slip direction of described compressing tablet push rod is identical with its bearing of trend;
Bit pressing shaft, for rod shaped structure, described bit pressing shaft is fixed in described compressing tablet push rod and is positioned at described solid space, described bit pressing shaft is a plurality of, a plurality of described bit pressing shaft are parallel to each other and uniformly-spaced arrange, and be positioned at same plane, a plurality of planes, described bit pressing shaft place and a plurality of described the first plane, stator axle place and a plurality of described the second stator axle place plane parallel, and, between described the first plane, stator axle place and described the second plane, stator axle place, a plurality of described bit pressing shaft are parallel with described the first stator axle and described the second stator axle; And
Elastic component, be fixed on described framework, and when described compressing tablet push rod slides with respect to described framework, described elastic component provides the elastic force contrary with its slip direction with one for described compressing tablet push rod;
Wherein, interval between a plurality of described the first stator axles is identical with interval and the spacing distance between a plurality of described bit pressing shaft between a plurality of described the second stator axles, and a plurality of described the first stator axles align with a plurality of described the second stator axles, each described first stator axle and described the second stator axle arranged corresponding thereto form the supporting structure of bearing glass.
In embodiment, described framework comprises therein:
Side plate, be two, and described side plate is rectangle, and two described side plates are parallel to each other and are oppositely arranged;
Crossbeam, it is four, the two ends of four described crossbeams are fixedly connected with the drift angle of two described side plates respectively, four described crossbeams are parallel to each other, described crossbeam is vertical with described side plate, and parallel with described the first stator axle and described the second stator axle, described crossbeam and described side plate are around forming described solid space.
In embodiment, the outside of described side plate is provided with handle therein.
Therein in embodiment, the inwall of described side plate is provided with the compressing tablet groove, the plane parallel at described compressing tablet groove and a plurality of described the first stator axles and a plurality of described the second stator axle places, described compressing tablet push rod is contained in described compressing tablet groove and along described compressing tablet groove slidably.
Therein in embodiment, described compressing tablet groove is two, two described compressing tablet grooves are located at respectively on two side plates, and two described compressing tablet grooves are oppositely arranged, described compressing tablet push rod is two, two described compressing tablet push rods are contained in respectively in described two compressing tablet grooves, and the two ends of described bit pressing shaft are fixedly connected with two described compressing tablet push rods respectively.
In embodiment, described elastic component is spring therein, and described spring is contained in described compressing tablet groove, and an end of described spring is fixed in the bottom of described compressing tablet groove, an end of described compressing tablet push rod and described spring butt.
In embodiment, described compressing tablet push rod comprises screw rod therein, and described screw rod is provided with scale, and described side plate is provided with nut, and described screw rod and described nut screw togather, and described screw rod and described compressing tablet push rod are away from an end butt of described spring.
In embodiment, described the first stator axle and described the second stator axle are provided with the stator axle collar therein, and the described stator axle collar is annular, and is sheathed on respectively on described the first stator axle and described the second stator axle.
In embodiment, described bit pressing shaft is provided with the compressing tablet axle collar therein, and the described compressing tablet axle collar is annular, and is sheathed on described bit pressing shaft.
Above-mentioned spring-type glass correction device, because the spring-type glass correction device comprises a plurality of the first stator axles and a plurality of the second stator axle, therefore can form a plurality of supporting structures.The spring-type glass timing can be placed in a plurality of sheet glass to be corrected on the spring-type glass correction device simultaneously.And the interval between a plurality of bit pressing shaft is identical with interval and the spacing distance between a plurality of the second stator axle between a plurality of the first stator axles, by slip compressing tablet push rod, just can make a plurality of bit pressing shaft respectively a plurality of sheet glass be carried out to pressure holding.After pressure holding Preset Time section, through heat treated, just can obtain the sheet glass of proofreading and correct.Therefore, can proofread and correct a plurality of sheet glass by above-mentioned spring-type glass correction device simultaneously, thereby make working (machining) efficiency be improved.
The accompanying drawing explanation
The structural representation that Fig. 1 is the utility model preferred embodiment medi-spring formula glass correction device;
The sectional view that Fig. 2 is spring-type glass correction device shown in Fig. 1;
The vertical view that Fig. 3 is spring-type glass correction device shown in Fig. 1.
Embodiment
For the ease of understanding the utility model, below with reference to relevant drawings, the utility model is described more fully.Provided preferred embodiment of the present utility model in accompanying drawing.But the utility model can be realized in many different forms, is not limited to embodiment described herein.On the contrary, provide the purpose of these embodiment be make the understanding of disclosure of the present utility model more comprehensively thorough.
It should be noted that, when element is called as " being fixed in " another element, can directly can there be element placed in the middle in it on another element or also.When an element is considered to " connection " another element, it can be directly connected to another element or may have centering elements simultaneously.
Unless otherwise defined, all technology that this paper is used are identical with the implication that belongs to the common understanding of those skilled in the art of the present utility model with scientific terminology.The term used in specification sheets of the present utility model herein, just in order to describe the purpose of specific embodiment, is not intended to be restriction the utility model.Term as used herein " and/or " comprise one or more relevant Listed Items arbitrarily with all combinations.
Refer to Fig. 1, Fig. 2 and Fig. 3, the spring-type glass correction device 100 in the utility model preferred embodiment comprises framework 110, the first stator axle 120, the second stator axle 130, compressing tablet push rod 140, bit pressing shaft 150 and elastic component 160.
It is pointed out that framework 110 is not limited to said structure.For example, framework 110 also can be the structure that many pole stocks are spliced to form.
In the present embodiment, the outside of side plate 112 is provided with handle 116.By handle 116, personnel's mobile spring formula that is convenient to operation glass correction device 100, thus be conducive to strengthen the maneuvering ability of spring-type glass correction device 100.Be appreciated that in other embodiments, handle 116 can omit.
The first stator axle 120 is rod shaped structure, and the first stator axle 120 is fixed in framework 110 and is positioned at solid space.The first stator axle 120 is a plurality of, and a plurality of the first stator axles 120 are parallel to each other and uniformly-spaced arrange, and a plurality of the first stator axle 120 all is positioned at same plane.Specifically in the present embodiment, a plurality of the first stator axles 120 are also parallel with crossbeam 114, and the two ends of the first stator axle 120 are individually fixed on two side plates 112.
The second stator axle 130 is rod shaped structure, and the second stator axle 130 is fixed in framework 110 and is positioned at solid space.The second stator axle 130 is a plurality of, and a plurality of the second stator axles 130 are parallel to each other and uniformly-spaced arrange, and a plurality of the second stator axle 130 all is positioned at same plane.Specifically in the present embodiment, the second stator axle 130 is parallel with crossbeam 114, and the two ends of the second stator axle 130 are individually fixed on two side plates 112.
When framework 110 is placed in horizontal plane, and side plate 112 is vertical with horizontal plane, and when crossbeam 114 is parallel with horizontal plane, the plane at a plurality of the first stator axle 120 places and a plurality of the second stator axle 130 planes, place are all vertical with horizontal plane.
A plurality of the second stator axle 130 planes, place and a plurality of the first stator axle 120 place plane parallel, and a plurality of the second stator axle 130 is parallel with a plurality of the first stator axles 120.Wherein, the interval between a plurality of the first stator axles 120 is identical with the spacing distance between a plurality of the second stator axles 130, and a plurality of the first stator axle 120 aligns with many second stator axles 130.That is, a plurality of the first stator axles 120, in 130 projections in the plane of the second stator axle, overlap with a plurality of the second stator axles 130.Each first stator axle 120 is all relative with second a stator axle 130, and each first stator axle 120 and the second stator axle 130 corresponding thereto form the supporting structure (figure is mark not) of bearing glass, and supporting structure is a plurality of.The plane at supporting structure place, vertical with the plane at the plane at a plurality of the first stator axle 120 places and a plurality of the second stator axle 130 places.When sheet glass is carried on supporting structure, an end of sheet glass is carried on the first stator axle 120 that forms this supporting structure, and the other end is carried on the second stator axle 130 that forms this supporting structure.
Compressing tablet push rod 140 is located on framework 110 slidably, compressing tablet push rod 140 is vertical with the first stator axle 120 and the second stator axle 130, and, with the plane parallel at a plurality of the first stator axle 120 places and the plane parallel at a plurality of the second stator axle 130 places, the slip direction of compressing tablet push rod 140 is identical with its bearing of trend.
Specifically in the present embodiment, the inwall of side plate 112 is provided with compressing tablet groove 1121, compressing tablet groove 1121 and the plane at a plurality of the first stator axle 120 places and the plane parallel at a plurality of the second stator axle 130 places, compressing tablet push rod 140 is contained in compressing tablet groove 1121 and along compressing tablet groove 1121 slidably.Compressing tablet groove 1121 is bar shaped, therefore can be to 140 guiding function of compressing tablet push rod, so that compressing tablet push rod 140 prevents that along the bearing of trend slip of compressing tablet groove 1121 compressing tablet push rod 140 from rocking.Be appreciated that in other embodiments, compressing tablet push rod 140 also can be realized being located at slidably on framework 110 by other means.
Wherein, the interval between a plurality of the first stator axles 120 is identical with interval and the spacing distance between a plurality of bit pressing shaft 150 between a plurality of the second stator axles 130.When compressing tablet push rod 140 slides with respect to framework 110, can drive bit pressing shaft 150 liftings.
Further, in the present embodiment, compressing tablet groove 1121 is two, and two compressing tablet grooves 1121 are located at respectively on two side plates 112, and are oppositely arranged.Compressing tablet push rod 140 is two, and two compressing tablet push rods 140 are contained in respectively in two compressing tablet grooves 1121.Specifically in the present embodiment, the two ends of bit pressing shaft 150 are fixedly connected with two compressing tablet push rods 140 respectively.Therefore, when compressing tablet push rod 140 slides along compressing tablet groove 1121, can make the two ends of bit pressing shaft 150 stressed evenly, thereby prevent bit pressing shaft 150 run-off the straights.
Specifically in the present embodiment, elastic component 160 is spring, and spring is contained in compressing tablet groove 1121, and an end of spring is fixed in the bottom of compressing tablet groove 1121.One end of compressing tablet push rod 140 and spring butt.When compressing tablet push rod 140 down sliding, spring-compressed, thereby for compressing tablet push rod 140 provides the elastic force made progress, thereby sheet glass to be corrected is played a protective role.Be appreciated that in other embodiments, elastic component 160 is not limited to spring, also can be shell fragment, elastic threads etc.
In the present embodiment, compressing tablet push rod 140 comprises screw rod 141, and screw rod 141 is provided with scale, and side plate 112 is provided with nut 1123.Screw rod 141 screws togather with nut 1123, and screw rod 141 and the end butt of compressing tablet push rod 140 away from spring.By rotary screw 141, can make screw rod 141 slide along nut 1123, thereby order about compressing tablet push rod 140, with respect to framework 110, slide.Because screw rod 141 is provided with scale.Therefore, rotary screw 141 makes corresponding scale align with nut 1123, just the corresponding distance of controlled superzapping sheet push rod 140 slip.
In the present embodiment, the first stator axle 120 and the second stator axle 130 are provided with the stator axle collar 170, and the stator axle collar 170 is annular, and are sheathed on respectively on the first stator axle 120 and the second stator axle 130.When sheet glass to be corrected is placed on supporting structure, by directly contact with it of the stator axle collar 170.The stator axle collar 170 generally has elastic material by rubber etc. and makes.Therefore, can be sheet glass buffering is provided, prevent that sheet glass from damaging by pressure because of rigid contact.
Further, bit pressing shaft 150 is provided with the compressing tablet axle collar 151, and the compressing tablet axle collar 151 is annular, and is sheathed on bit pressing shaft 150.The material of the compressing tablet axle collar 151 is identical with the stator axle collar 170, and the two functional similarity, and the compressing tablet axle collar 151 can prevent that bit pressing shaft 150 from damaging sheet glass by pressure.
Spring-type glass correction device 100, owing to comprising a plurality of the first stator axles 120 and a plurality of the second stator axle 130, therefore can form a plurality of supporting structures.The glass timing can be placed in a plurality of sheet glass to be corrected on spring-type glass correction device 100 simultaneously.And, interval between a plurality of bit pressing shaft 150 is identical with interval and the spacing distance between a plurality of the second stator axle 130 between a plurality of the first stator axles 120, by slip compressing tablet push rod 140, just can make a plurality of bit pressing shaft 150 respectively a plurality of sheet glass be carried out to pressure holding.After pressure holding Preset Time section, through heat treated, just can obtain the sheet glass of proofreading and correct.Therefore, can proofread and correct a plurality of sheet glass by spring-type glass correction device 100 simultaneously, thereby make working (machining) efficiency be improved.
The above embodiment has only expressed several embodiment of the present utility model, and it describes comparatively concrete and detailed, but can not therefore be interpreted as the restriction to the utility model the scope of the claims.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to protection domain of the present utility model.Therefore, the protection domain of the utility model patent should be as the criterion with claims.
Claims (9)
1. a spring-type glass correction device, is characterized in that, comprising:
Framework, described framework forms a solid space;
The first stator axle, be rod shaped structure, and described the first stator axle is fixed in described framework and is positioned at described solid space, and described the first stator axle is a plurality of, and a plurality of described the first stator axles are parallel to each other and uniformly-spaced arrange, and are positioned at same plane;
The second stator axle, for rod shaped structure, described the second stator axle is fixed in described framework and is positioned at described solid space, described the second stator axle is a plurality of, a plurality of described the second stator axles are parallel to each other and uniformly-spaced arrange, and be positioned at same plane, described the second plane, stator axle place and described the first stator axle place plane parallel, and a plurality of described the second stator axle is parallel with a plurality of described the first stator axles;
The compressing tablet push rod, be located at slidably on described framework, described compressing tablet push rod is vertical with described the first stator axle and described the second stator axle, and, with the plane parallel at plane and a plurality of described second stator axle places at a plurality of described the first stator axle places, the slip direction of described compressing tablet push rod is identical with its bearing of trend;
Bit pressing shaft, for rod shaped structure, described bit pressing shaft is fixed in described compressing tablet push rod and is positioned at described solid space, described bit pressing shaft is a plurality of, a plurality of described bit pressing shaft are parallel to each other and uniformly-spaced arrange, and be positioned at same plane, a plurality of planes, described bit pressing shaft place and a plurality of described the first plane, stator axle place and a plurality of described the second stator axle place plane parallel, and, between described the first plane, stator axle place and described the second plane, stator axle place, a plurality of described bit pressing shaft are parallel with described the first stator axle and described the second stator axle; And
Elastic component, be fixed on described framework, and when described compressing tablet push rod slides with respect to described framework, described elastic component provides the elastic force contrary with its slip direction with one for described compressing tablet push rod;
Wherein, interval between a plurality of described the first stator axles is identical with interval and the spacing distance between a plurality of described bit pressing shaft between a plurality of described the second stator axles, and a plurality of described the first stator axles align with a plurality of described the second stator axles, each described first stator axle and described the second stator axle arranged corresponding thereto form the supporting structure of bearing glass.
2. spring-type glass correction device according to claim 1, is characterized in that, described framework comprises:
Side plate, be two, and described side plate is rectangle, and two described side plates are parallel to each other and are oppositely arranged;
Crossbeam, it is four, the two ends of four described crossbeams are fixedly connected with the drift angle of two described side plates respectively, four described crossbeams are parallel to each other, described crossbeam is vertical with described side plate, and parallel with described the first stator axle and described the second stator axle, described crossbeam and described side plate are around forming described solid space.
3. spring-type glass correction device according to claim 2, is characterized in that, the outside of described side plate is provided with handle.
4. spring-type glass correction device according to claim 2, it is characterized in that, the inwall of described side plate is provided with the compressing tablet groove, the plane parallel at described compressing tablet groove and a plurality of described the first stator axles and a plurality of described the second stator axle places, described compressing tablet push rod is contained in described compressing tablet groove and along described compressing tablet groove slidably.
5. spring-type glass correction device according to claim 4, it is characterized in that, described compressing tablet groove is two, two described compressing tablet grooves are located at respectively on two side plates, and two described compressing tablet grooves are oppositely arranged, described compressing tablet push rod is two, and two described compressing tablet push rods are contained in respectively in described two compressing tablet grooves, and the two ends of described bit pressing shaft are fixedly connected with two described compressing tablet push rods respectively.
6. spring-type glass correction device according to claim 4, it is characterized in that, described elastic component is spring, and described spring is contained in described compressing tablet groove, and an end of described spring is fixed on the bottom of compressing tablet groove, an end of described compressing tablet push rod and described spring butt.
7. spring-type glass correction device according to claim 5, it is characterized in that, described compressing tablet push rod comprises screw rod, described screw rod is provided with scale, described side plate is provided with nut, described screw rod and described nut screw togather, and described screw rod and described compressing tablet push rod are away from an end butt of described spring.
8. spring-type glass correction device according to claim 1, it is characterized in that, described the first stator axle and described the second stator axle are provided with the stator axle collar, and the described stator axle collar is annular, and are sheathed on respectively on described the first stator axle and described the second stator axle.
9. spring-type glass correction device according to claim 8, is characterized in that, described bit pressing shaft is provided with the compressing tablet axle collar, and the described compressing tablet axle collar is annular, and is sheathed on described bit pressing shaft.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201320396368 CN203346258U (en) | 2013-07-04 | 2013-07-04 | Spring type glass correction device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201320396368 CN203346258U (en) | 2013-07-04 | 2013-07-04 | Spring type glass correction device |
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CN203346258U true CN203346258U (en) | 2013-12-18 |
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CN 201320396368 Expired - Lifetime CN203346258U (en) | 2013-07-04 | 2013-07-04 | Spring type glass correction device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103342455A (en) * | 2013-07-04 | 2013-10-09 | 南昌欧菲光学技术有限公司 | Spring-type glass correcting device and method |
-
2013
- 2013-07-04 CN CN 201320396368 patent/CN203346258U/en not_active Expired - Lifetime
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103342455A (en) * | 2013-07-04 | 2013-10-09 | 南昌欧菲光学技术有限公司 | Spring-type glass correcting device and method |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
TR01 | Transfer of patent right |
Effective date of registration: 20210421 Address after: 231323 Building 1, precision electronics industrial park, Hangbu Town, Shucheng County, Lu'an City, Anhui Province Patentee after: Anhui jingzhuo optical display technology Co.,Ltd. Address before: 330013 Jiangxi city of Nanchang Province Economic and Technological Development Zone HUANGJIAHU Road Patentee before: NANCHANG OFILM OPTICAL TECHNOLOGY Co.,Ltd. |
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TR01 | Transfer of patent right | ||
CX01 | Expiry of patent term |
Granted publication date: 20131218 |
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CX01 | Expiry of patent term |