CN203344455U - Semiautomatic multi-chip mounter adhering machine - Google Patents
Semiautomatic multi-chip mounter adhering machine Download PDFInfo
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- CN203344455U CN203344455U CN 201320410145 CN201320410145U CN203344455U CN 203344455 U CN203344455 U CN 203344455U CN 201320410145 CN201320410145 CN 201320410145 CN 201320410145 U CN201320410145 U CN 201320410145U CN 203344455 U CN203344455 U CN 203344455U
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- station
- heating
- eyeglass
- disc
- adhering
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Abstract
The utility model discloses a semiautomatic multi-chip mounter which comprises a stand, a ceramic disc baking station, a heating adhering station and a lens heating station, wherein the ceramic disc baking station, the heating adhering station and the lens heating station are arranged on the stand; a pressure disc capable of moving up and down is arranged above the heating adhering station; a heating disc capable of moving up and down is arranged above the lens heating station; an overturning conveying device is arranged between the lens heating station and the heating adhering station, and is provided with a workpiece suction disc which sucks a lens from the lens heating station to the heating adhering station for lens adhesion; the ceramic disc baking station, the heating adhering station and the heating disc are provided with heating baking devices. According to the semiautomatic multi-chip mounter, the lens silkscreened with a layer of thin wax is baked to be melted by adopting semiautomatic control and then is removed to the ceramic disc of the heating adhering station by utilizing the movement of the workpiece suction disc, the lens and the ceramic disc are adhered together in a way that the lens is pressed through the pressure disc, and the adhered lens provides a good device for the next polishing procedure. The semiautomatic multi-chip mounter disclosed by the utility model is high in processing efficiency and can be suitable for batch production.
Description
Technical field
The utility model relates to a kind of eyeglass and pastes production equipment, is specifically related to that a kind of thin cured and high temperature is roasting fast is being pasted on the semi-automatic multi-disc chip mounter on ceramic disk after molten through printing at eyeglass.
Background technology
The barbola work of eyeglass is that printing one deck is thin cured on eyeglass, and high temperature sticks on eyeglass on ceramic disk after roasting melting fast, and existing equipment completes stickup, baking, hot pressing on same station, and the efficiency of stickup is low, inconvenient operation.
The utility model content
Technical purpose of the present utility model is to provide a kind of semi-automatic multi-disc chip mounter, can disposable stickup multi-disc eyeglass on ceramic disk, take full advantage of ceramic disk surface area size and store eyeglass, and adopt baking and hot pressing zone to separate, greatly improved production efficiency.
The utility model adopts following technical scheme to realize: a kind of semi-automatic multi-disc chip mounter comprises frame 1 and is arranged on ceramic disk baking station 3 on frame, adds thermal-adhering station 2 and eyeglass heating station 11;
Add thermal-adhering station 2 tops and be provided with platen 4 moving up and down, eyeglass heating station 11 tops are provided with heating plate 10 moving up and down, eyeglass heating station 11 and add between thermal-adhering station 2 and be provided with overturn conveying apparatus 9, described overturn conveying apparatus 9 is provided with from the eyeglass heating station and draws eyeglass to the workpiece absorption dish 8 that adds the thermal-adhering station and carry out paster; Described ceramic disk baking station 3, add thermal-adhering station 2 and heating plate 10 is provided with the heated baking device.
Described heated baking device is the dish-type heating tube.
Described platen 4 be arranged on the platen lift cylinder 5 that adds thermal-adhering station 2 tops and be connected.
Described heating plate 10 is connected with the heating plate lift cylinder 7 on being arranged on eyeglass heating station 11.
Described overturn conveying apparatus 9 comprises synchronous belt device 17, movable stand 16, the slide unit 12 moved up and down and the rotary cylinder 13 moved horizontally; Described movable stand 16 is connected with the Timing Belt of synchronous belt device 17, described synchronous belt device 17 drives by servomotor 18, described slide unit 12 is arranged on movable stand 16 by the guide rail of vertical direction, and be connected with slide unit lift cylinder 14, described rotary cylinder 13 is installed on slide unit 12, with described workpiece absorption dish 8, is connected.
Described eyeglass heating station 11 is provided with the absorption dish that is complementary with workpiece absorption dish 8 by groove 19, at the absorption dish, is provided with the lens orientation groove 20 of placing eyeglass on by groove 19, and lens orientation groove 20 forms step troughs with the absorption dish by groove 19.
Described workpiece absorption dish 8 comprises the absorption disc carrier 21 of inner hollow, and the inner negative pressure system that connects of described absorption disc carrier 21, drawing on disc carrier 21 sucker 22 be provided with lens orientation groove location matches.
Described ceramic disk baking station 3, add thermal-adhering station 2 and eyeglass heating station 11 arranges point-blank.
The utility model is thin cured by the first silk-screen one deck of eyeglass at the eyeglass heating station, and through baking fusing under 200 ℃ of hot conditions, ceramic disk also needs to be transferred to and to add the thermal-adhering station after 200 ℃ of high-temperature bakings at ceramic disk baking station, utilize workpiece absorption dish eyeglass to be moved on the ceramic disk that adds the thermal-adhering station, compress eyeglass by platen, eyeglass and ceramic disk are pasted together.
The utility model adopts semiautomatic control, and the eyeglass after stickup provides device preferably for the subsequent processing polishing, and working (machining) efficiency is high, can be suitable for batch production.
Below in conjunction with the drawings and specific embodiments, the utility model is described further.
The accompanying drawing explanation
The structural representation that Fig. 1 is the semi-automatic multi-disc chip mounter that relates to of the utility model.
Fig. 2 is the overturn conveying apparatus structural representation.
Fig. 3 is eyeglass heating station structural representation.
Fig. 4 is labor cost absorption dish structural representation.
Number in the figure: the 1-frame, 2-adds the thermal-adhering station, 3-ceramic disk baking station, 4-platen, 5-platen lift cylinder, 6-control panel, 7-heating plate lift cylinder, 8-workpiece absorption dish, the 9-overturn conveying apparatus, 10-heating plate, 11-eyeglass heating station, 12-slide unit, the 13-rotary cylinder, 14-slide unit lift cylinder, 15-movable stand, 16-slide rail, the 17-synchronous belt device, the 18-servomotor, 19-absorption dish passes through groove, 20-lens orientation groove, 21-draws disc carrier, 22-sucker.
The specific embodiment
Embodiment
Referring to Fig. 1, the semi-automatic multi-disc chip mounter in diagram comprises that the ceramic disk that is positioned at straight line on frame 1 and frame toasts station 3, adds thermal-adhering station 2 and eyeglass heating station 11; Add thermal-adhering station 2 tops and be provided with platen 4 moving up and down, platen 4 be arranged on the platen lift cylinder 5 that adds thermal-adhering station 2 tops and be connected, eyeglass heating station 11 tops are provided with heating plate 10 moving up and down, and heating plate 10 is connected with the heating plate lift cylinder 7 on being arranged on eyeglass heating station 11.Eyeglass heating station 11 and add between thermal-adhering station 2 and be provided with overturn conveying apparatus 9, in conjunction with referring to Fig. 2, overturn conveying apparatus 9 comprises synchronous belt device 17, movable stand 16, the slide unit 12 moved up and down and the rotary cylinder 13 moved horizontally; Movable stand 16 is connected with the Timing Belt of synchronous belt device 17, synchronous belt device 17 drives by servomotor 18, and slide unit 12 is arranged on movable stand 16 by the guide rail of vertical direction, and is connected with slide unit lift cylinder 14, rotary cylinder 13 is installed on slide unit 12, with workpiece absorption dish 8, is connected.Workpiece absorption dish is drawn eyeglass from the eyeglass heating station and is carried out paster to adding the thermal-adhering station; Ceramic disk baking station 3, add thermal-adhering station 2 and heating plate 10 is equipped with the dish-type heating tube as the heated baking device.
In conjunction with referring to Fig. 1 to Fig. 4, eyeglass heating station 11 is provided with the absorption dish that is complementary with workpiece absorption dish 8 by groove 19, at the absorption dish, is provided with the lens orientation groove 20 of placing eyeglass on by groove 19, and lens orientation groove 20 forms step troughs with the absorption dish by groove 19.Workpiece absorption dish 8 comprises the absorption disc carrier 21 of inner hollow, draws the inner negative pressure system that connects of disc carrier 21, is drawing on disc carrier 21 sucker 22 be provided with the lens orientation groove.
The operating procedure of the present embodiment is as follows: for the round ceramic dish of pasting eyeglass, at first be placed on ceramic disk baking station 3 and locate manually to transfer to and add thermal-adhering station 2 after 200 celsius temperature bakings, simultaneously, travelling workpiece absorption dish 8 moves to eyeglass heating station 11 belows, there is the eyeglass workpiece of the thin wax of one deck to be placed on the step trough of the lens orientation groove 20 on eyeglass heating station 11 silk-screen, silk-screen has one of thin wax to face up, and heating plate 10 drives thin cured on decline rapid melting eyeglass workpiece by heating plate lift cylinder 7.After baking is melted, heating plate 10 rises, workpiece absorption dish 8 is driven and is risen by slide unit lift cylinder 14, draw disc carrier 21 internal communication negative pressure, sucker 22 holds the eyeglass workpiece, draw after disc carrier 21 rises to eyeglass heating station 11 tops through the absorption dish by groove 19 and stop rising, synchronous belt device 17 action drives movable stands 15 move toward adding thermal-adhering station 2 together with workpiece absorption dish 8, when workpiece absorption dish 8 moves to the point midway that adds thermal-adhering station 2 places and eyeglass heating station 11, rotary cylinder 13 on slide unit 12 drives workpiece absorption dish to do 180 degree upsets, make eyeglass workpiece silk-screen have one of thin wax to face down, then synchronous belt device 17 driving workpiece absorption dishes 8 move to and add thermal-adhering station 2 tops, slide unit lift cylinder 14 drives workpiece absorption dish 8 that the eyeglass workpiece is put down gently on the ceramic disk that adds thermal-adhering station 2, workpiece absorption dish 8 is back to eyeglass heating station below by above-mentioned mobile alignment, the platen 4 that adds thermal-adhering station 2 tops is driven to descend by platen lift cylinder 5 pushes down the eyeglass workpiece, add the 2 below heating of thermal-adhering station, make the firm stickup of workpiece and ceramic disk, the ceramic disk that will paste eyeglass after platen 4 rises takes out.
Claims (9)
1. a semi-automatic multi-disc chip mounter is characterized in that: comprise frame (1) and be arranged on ceramic disk baking station (3) on frame, add thermal-adhering station (2) and eyeglass heating station (11);
Add thermal-adhering station (2) top and be provided with platen moving up and down (4), eyeglass heating station (11) top is provided with heating plate moving up and down (10), eyeglass heating station (11) and add between thermal-adhering station (2) and be provided with overturn conveying apparatus (9), described overturn conveying apparatus (9) is provided with from the eyeglass heating station and draws eyeglass to the workpiece absorption dish (8) that adds the thermal-adhering station and carry out paster; Described ceramic disk baking station (3), add thermal-adhering station (2) and heating plate (10) is provided with the heated baking device.
2. a kind of semi-automatic multi-disc chip mounter according to claim 1, it is characterized in that: described heated baking device is the dish-type heating tube.
3. a kind of semi-automatic multi-disc chip mounter according to claim 1 is characterized in that: described platen (4) be arranged on the platen lift cylinder (5) that adds thermal-adhering station (2) top and be connected.
4. a kind of semi-automatic multi-disc chip mounter according to claim 3, it is characterized in that: described heating plate (10) is connected with the heating plate lift cylinder (7) on being arranged on eyeglass heating station (11).
5. a kind of semi-automatic multi-disc chip mounter according to claim 4, it is characterized in that: described overturn conveying apparatus (9) comprises synchronous belt device (17), movable stand (16), the slide unit (12) moved up and down and the rotary cylinder (13) moved horizontally; Described movable stand (16) is connected with the Timing Belt of synchronous belt device (17), described synchronous belt device (17) drives by servomotor (18), described slide unit (12) is arranged on movable stand (16) by the guide rail of vertical direction, and be connected with slide unit lift cylinder (14), it is upper that described rotary cylinder (13) is installed in slide unit (12), with described workpiece absorption dish (8), is connected.
6. a kind of semi-automatic multi-disc chip mounter according to claim 5, it is characterized in that: described eyeglass heating station (11) is provided with the absorption dish be complementary with workpiece absorption dish (8) and passes through groove (19), be provided with the lens orientation groove (20) of placing eyeglass on by groove (19) at the absorption dish, lens orientation groove (20) forms step trough with the absorption dish by groove (19).
7. a kind of semi-automatic multi-disc chip mounter according to claim 6, it is characterized in that: described workpiece absorption dish (8) comprises the absorption disc carrier (21) of inner hollow, the inner negative pressure system that connects of described absorption disc carrier (21), drawing on disc carrier (21) sucker (22) be provided with lens orientation groove location matches.
8. according to the described a kind of semi-automatic multi-disc chip mounter of any one in claim 1-7, it is characterized in that: described ceramic disk baking station (3), add thermal-adhering station (2) and eyeglass heating station (11) setting point-blank.
9. a kind of semi-automatic multi-disc chip mounter according to claim 8 is characterized in that: frame (1) is provided with control panel (6) and controls each station display working condition directly perceived.
Priority Applications (1)
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CN 201320410145 CN203344455U (en) | 2013-07-10 | 2013-07-10 | Semiautomatic multi-chip mounter adhering machine |
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CN 201320410145 CN203344455U (en) | 2013-07-10 | 2013-07-10 | Semiautomatic multi-chip mounter adhering machine |
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CN 201320410145 Expired - Lifetime CN203344455U (en) | 2013-07-10 | 2013-07-10 | Semiautomatic multi-chip mounter adhering machine |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104759974A (en) * | 2015-04-16 | 2015-07-08 | 常州市科沛达超声工程设备有限公司 | Full-automatic sheet mounter |
CN105171841A (en) * | 2015-09-29 | 2015-12-23 | 扬中中科维康智能科技有限公司 | Device special for down-mounted paster blanking |
CN108931843A (en) * | 2017-05-23 | 2018-12-04 | 天津滨海光热反射技术有限公司 | The laminating apparatus and control method of solar energy reflection mirror backboard and silver mirror |
CN108957686A (en) * | 2017-05-23 | 2018-12-07 | 天津滨海光热反射技术有限公司 | The applying method of solar energy reflection mirror backboard and silver mirror |
-
2013
- 2013-07-10 CN CN 201320410145 patent/CN203344455U/en not_active Expired - Lifetime
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104759974A (en) * | 2015-04-16 | 2015-07-08 | 常州市科沛达超声工程设备有限公司 | Full-automatic sheet mounter |
CN105171841A (en) * | 2015-09-29 | 2015-12-23 | 扬中中科维康智能科技有限公司 | Device special for down-mounted paster blanking |
CN108931843A (en) * | 2017-05-23 | 2018-12-04 | 天津滨海光热反射技术有限公司 | The laminating apparatus and control method of solar energy reflection mirror backboard and silver mirror |
CN108957686A (en) * | 2017-05-23 | 2018-12-07 | 天津滨海光热反射技术有限公司 | The applying method of solar energy reflection mirror backboard and silver mirror |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
EE01 | Entry into force of recordation of patent licensing contract |
Assignee: LENS TECHNOLOGY (XIANGTAN) CO.,LTD. Assignor: Lens Technology Co.,Ltd. Contract record no.: 2014430000165 Denomination of utility model: Semiautomatic multi-chip mounter adhering machine Granted publication date: 20131218 License type: Exclusive License Record date: 20141217 |
|
LICC | Enforcement, change and cancellation of record of contracts on the licence for exploitation of a patent or utility model | ||
CX01 | Expiry of patent term |
Granted publication date: 20131218 |
|
CX01 | Expiry of patent term |