CN204064713U - Copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler - Google Patents
Copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler Download PDFInfo
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- CN204064713U CN204064713U CN201420526115.XU CN201420526115U CN204064713U CN 204064713 U CN204064713 U CN 204064713U CN 201420526115 U CN201420526115 U CN 201420526115U CN 204064713 U CN204064713 U CN 204064713U
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- adhesive coated
- bonding sheet
- coated foil
- copper
- clad plate
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Abstract
The utility model discloses a kind of copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler, comprise lower bearing bracket, lower bearing bracket is connected with upper spider by guide rod, lower bearing bracket is provided with a pair roller, the two ends of a pair roller are connected respectively by synchronous belt, and upper spider both sides are separately installed with the end slipway parallel with synchronous belt, and end slipway is connected with transverse slipway by elastic traction rope, be connected with negative pressure sucker bottom transverse slipway, transverse slipway is also provided with sampler.The utility model copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler, solve existing sampler sampling process tension force large, synchronization structure complexity causes running stability difference failure rate to increase, be not suitable for the problem of adhesive coated foil sampling, reduce tension force and the shearing force of sampling process, difformity print on-line period can be realized, there is the double-purpose sampled functions of adhesive coated foil and bonding sheet, structure is simple, and sampling is convenient.
Description
Technical field
The utility model belongs to sampler technical field, is specifically related to a kind of copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler.
Background technology
Copper-clad plate adhesive coated foil and bonding sheet need to sample frequently to detect adhesive coated foil or bonding sheet glue content in process of production, and current method of operating is that workman digs a hole and rolling sampling by hand, and this sampling method efficiency is low, cost is high.Patent " the on-line automatic sampler of bonding sheet for copper-clad plate and sampling method thereof the " (applying date: 2010-7-16, publication date: 2011-4-13, publication number: CN102012323A), disclose the on-line automatic sampler of a kind of bonding sheet for copper-clad plate, this sampler comprises: several diameter not wait running roller, around the travelling belt be overlying on running roller periphery, the sampler be located on travelling belt, be located at the lifting support below running roller, the gear being located at running roller axial end and the induction electric eye be located at below travelling belt.This sampler drives running roller to rotate by gear operation, sampler cycle operation be geo-stationary with bonding sheet on a moving belt, and motor driving sampler samples.This on-line automatic sampler is that micro motor drives rotating knife sampling, be only limitted to bonding sheet and circular print, and when realizing on-line synchronous, need running roller, gear, the induction electric eye of several different-diameter, gear drive has error, control and transform synchronization structure complexity, make to operate steadily and be affected, failure rate increases relatively.On needing, the tablet flatness requirement of sampling is high may cause the increasing of tablet tension force to affect filling skewness, and the tension force that rotary cutter needs Metal Flake material sampling is higher, is not suitable for the sampling of metallics as adhesive coated foil.
Utility model content
The purpose of this utility model is to provide a kind of copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler, solves existing sampler sampling process tension force large, and synchronizing linkage complexity causes running stability difference failure rate to increase, and is not suitable for the problem of adhesive coated foil sampling.
The technical scheme that the utility model adopts is: copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler, comprise lower bearing bracket, lower bearing bracket is connected with upper spider by guide rod, lower bearing bracket is provided with a pair roller, the two ends of a pair roller are connected respectively by synchronous belt, upper spider both sides are separately installed with the end slipway parallel with synchronous belt, end slipway is connected with transverse slipway by elastic traction rope, be connected with negative pressure sucker bottom transverse slipway, transverse slipway is also provided with sampler.
Feature of the present utility model is also,
A pair roller is made up of the roller that 2 be arranged in parallel, and roller is vertical with the traffic direction of material.
The traffic direction of synchronous belt is identical with the traffic direction of material.
Transverse slipway and end slipway perpendicular.
Elastic traction rope one end is fixed with end slipway, the other end is connected with transverse slipway.
Negative pressure sucker is connected with vacuum pump, and negative pressure sucker arranges 2 groups, and 2 groups of negative pressure suckers lay respectively at synchronous belt upper surface.
Sampler comprises the movable motor be fixed on transverse slipway, and movable motor is connected with punch holder, and punch holder is connected with drift, and drift is connected with print disposable box.
Punch holder is the cylinder mechanism or cam mechanism that can move up and down.
The cutter head blade of drift is arc surfaced.
Print disposable box is provided with print suction nozzle switch.
The beneficial effects of the utility model are: the utility model copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler, roller is driven to rotate by material movement friction force, roller rotates and drives synchronous belt motion, be attached on synchronous belt by negative pressure sucker during sampling, transverse slipway and first of sampling cutter is driven to be synchronized with the movement along material traffic direction in end slipway, sampler punching goes out print, solve existing sampler sampling process tension force large, synchronizing linkage complexity causes running stability difference failure rate to increase, be not suitable for the problem of adhesive coated foil sampling, reduce tension force and the shearing force of sampling process, difformity print on-line period can be realized, there is the double-purpose sampled functions of adhesive coated foil and bonding sheet, structure is simple, sampling is convenient.
Accompanying drawing explanation
Fig. 1 is the front view of the utility model copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler;
Fig. 2 is the vertical view of the utility model copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler;
Fig. 3 is the connection diagram of the utility model copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler drift.
In figure, 1. lower bearing bracket, 2. guide rod, 3. upper spider, 4. elastic traction rope, 5. negative pressure sucker, 6. punch holder, 7. drift, 8. roller, 9. end slipway, 10. transverse slipway, 11. materials, 12. movable motors, 13. synchronous belts, 14. print disposable boxes, 15. print suction nozzle switch.
Embodiment
Below in conjunction with the drawings and specific embodiments, the utility model is described in detail.
The utility model copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler, as shown in Figure 1, comprise lower bearing bracket 1, lower bearing bracket 1 is connected with upper spider 3 by guide rod 2, the spacing of lower bearing bracket 1 and upper spider 3 and height adjustable, lower bearing bracket 1 is provided with a pair roller 8, a pair roller 8 is made up of 2 rollers be arranged in parallel 8, the setting direction of roller 8 is vertical with the traffic direction of material 11, material 11 contacts with roller 8 upper surface, roller 8 is driven to rotate by material 11 kinetic friction force, friction force size regulates with the cornerite of roller 8 by changing material 11, the two ends of a pair roller 8 are connected respectively by synchronous belt 13, roller 8 moves and drives synchronous belt 13 to move, the traffic direction of synchronous belt 13 is identical with the traffic direction of material 11, and be synchronized with the movement with material 11, as shown in Figure 2, upper spider 3 both sides are separately installed with the end slipway 9 parallel with synchronous belt 13, end slipway 9 is connected with transverse slipway 10 by elastic traction rope 4, elastic traction rope 4 is flexible can free shrink, elastic traction rope 4 one end and end slipway 9 are fixed, the other end is connected with transverse slipway 10, transverse slipway 10 is perpendicular with end slipway 9, negative pressure sucker 5 is connected with bottom transverse slipway 10, negative pressure sucker 5 is connected with vacuum pump, negative pressure sucker 5 arranges 2 groups, 2 groups of negative pressure suckers 5 lay respectively at synchronous belt 13 upper surface, transverse slipway 10 is also provided with sampler, sampler comprises the movable motor 12 be fixed on transverse slipway 10, movable motor 12 is connected with punch holder 6, punch holder 6 is the cylinder mechanism or cam mechanism that can move up and down, punch holder 6 is connected with drift 7, the cutter head blade of drift 7 is arc surfaced, to reduce shearing force, as shown in Figure 3, drift 7 is connected with print disposable box 14, print disposable box 14 is provided with print suction nozzle switch 15.
During use, first drift 7 is selected according to print shape, cutter head is selected according to print shape, be not limited to circle, can be square and irregularly shaped, drift 7 is arranged in punch holder 6, material 11 kinetic friction force drives roller 8 to rotate, roller 8 rotates and drives synchronous belt 13 to move, realize being synchronized with the movement of synchronous belt 13 and material, open the negative pressure switch of negative pressure sucker 5, negative pressure switch is Electromagnetic Control on-off valve, by the vacuum pump that is connected with negative pressure sucker 5 gas in negative pressure sucker 5 extracted out and form negative pressure, negative pressure sucker 5 is adsorbed on synchronous belt 13 with material 11 synchronous operation, transverse slipway 10 is driven to be synchronized with the movement with material 11 in end slipway 9, elastic traction rope 4 is stretched simultaneously, connect movable motor 12 control to drive punch holder 6 transversely slideway 10 move to the position that material 11 will sample, punch holder 6 is the power that the cylinder mechanism that can move up and down or cam mechanism sample as punching, punch holder 6 drives the drift 7 of mounted thereto the punching that moves up and down to go out print, sample rear startup print suction nozzle switch 15, print suction nozzle switch 15 is electromagnetic valve switch or air-source pump power switch, print suction nozzle switch 15 connects vacuum pump or fan blower, by air-flow, print is drawn onto in print disposable box 14, simultaneously, negative pressure sucker 5 and air are connected or are undertaken being inflated to malleation by fan blower, negative pressure sucker 5 and synchronous belt 13 are departed from, and under the effect of elastic traction rope 4 elastic-restoring force longitudinally slideway 9 correcting action.The lateral attitude of drift 7 on material 11 drives drift 7 to determine by controlling movable motor 12, controls the lengthwise position on material 11, realize the position control in length and breadth of material 11 sample position by the switch on-time of negative pressure sucker 5.
The beneficial effects of the utility model are:
1) relative to hand sampling, save material, can not destroy equalization of strain, sampling efficiency is high;
2) comparatively synchronizable optical electric installation, the toothed gearing structure that is synchronized with the movement is simple, solves departure and response error that synchronous electric eye brings, the synchronous error that the roller transmission can move arbitrarily solution use different-diameter on material breadth brings;
3) replaceable drift realizes different sample shape, is not limited only to circle, can be oval, rectangle, square, and various irregularly shaped; Arc surfaced cutter head blade can reduce impulsive force 40%-50%;
4) form of punching adaptable sampling material material is unrestricted, and metal and nonmetal can meet the sampling demand of the various materials such as bonding sheet and adhesive coated foil.
Claims (10)
1. copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler, it is characterized in that, comprise lower bearing bracket (1), described lower bearing bracket (1) is connected with upper spider (3) by guide rod (2), described lower bearing bracket (1) is provided with a pair roller (8), the two ends of a pair roller (8) are connected respectively by synchronous belt (13), described upper spider (3) both sides are separately installed with the end slipway (9) parallel with described synchronous belt (13), described end slipway (9) is connected with transverse slipway (10) by elastic traction rope (4), described transverse slipway (10) bottom is connected with negative pressure sucker (5), (10) are also provided with sampler to described transverse slipway.
2. copper-clad plate adhesive coated foil as claimed in claim 1 and bonding sheet self-actuated sampler, it is characterized in that, described a pair roller (8) is made up of 2 rollers be arranged in parallel (8), and described roller (8) is vertical with the traffic direction of material (11).
3. copper-clad plate adhesive coated foil as claimed in claim 1 or 2 and bonding sheet self-actuated sampler, it is characterized in that, the traffic direction of described synchronous belt (13) is identical with the traffic direction of material (11).
4. copper-clad plate adhesive coated foil as claimed in claim 1 and bonding sheet self-actuated sampler, is characterized in that, described transverse slipway (10) is perpendicular with described end slipway (9).
5. copper-clad plate adhesive coated foil as claimed in claim 1 and bonding sheet self-actuated sampler, is characterized in that, described elastic traction rope (4) one end is fixing with end slipway (9), the other end is connected with transverse slipway (10).
6. copper-clad plate adhesive coated foil as claimed in claim 1 and bonding sheet self-actuated sampler, it is characterized in that, described negative pressure sucker (5) is connected with vacuum pump, described negative pressure sucker (5) arranges 2 groups, and 2 groups of negative pressure suckers (5) lay respectively at described synchronous belt (13) upper surface.
7. copper-clad plate adhesive coated foil as claimed in claim 1 and bonding sheet self-actuated sampler, it is characterized in that, described sampler comprises the movable motor (12) be fixed on described transverse slipway (10), described movable motor (12) is connected with punch holder (6), described punch holder (6) is connected with drift (7), and described drift (7) is connected with print disposable box (14).
8. copper-clad plate adhesive coated foil as claimed in claim 7 and bonding sheet self-actuated sampler, it is characterized in that, described punch holder (6) is the cylinder mechanism or cam mechanism that can move up and down.
9. copper-clad plate adhesive coated foil as claimed in claim 7 and bonding sheet self-actuated sampler, it is characterized in that, the cutter head blade of described drift (7) is arc surfaced.
10. copper-clad plate adhesive coated foil as claimed in claim 7 and bonding sheet self-actuated sampler, it is characterized in that, described print disposable box (14) is provided with print suction nozzle switch (15).
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CN201420526115.XU CN204064713U (en) | 2014-09-12 | 2014-09-12 | Copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler |
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CN201420526115.XU CN204064713U (en) | 2014-09-12 | 2014-09-12 | Copper-clad plate adhesive coated foil and bonding sheet self-actuated sampler |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107673090A (en) * | 2017-10-31 | 2018-02-09 | 宁夏森淼枸杞科技开发有限公司 | Lycium chinense splits and dynamic benefit amount system |
CN109342105A (en) * | 2018-11-03 | 2019-02-15 | 赵洁 | A kind of automation steel plate transport timing sampling device |
-
2014
- 2014-09-12 CN CN201420526115.XU patent/CN204064713U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107673090A (en) * | 2017-10-31 | 2018-02-09 | 宁夏森淼枸杞科技开发有限公司 | Lycium chinense splits and dynamic benefit amount system |
CN109342105A (en) * | 2018-11-03 | 2019-02-15 | 赵洁 | A kind of automation steel plate transport timing sampling device |
CN109342105B (en) * | 2018-11-03 | 2020-11-06 | 广西盛隆钢铁材料研究院 | Automatic change steel sheet transportation sampling device regularly |
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