CN103569646A - Automatic directional sequencing device for electronic seals - Google Patents
Automatic directional sequencing device for electronic seals Download PDFInfo
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- CN103569646A CN103569646A CN201310541618.4A CN201310541618A CN103569646A CN 103569646 A CN103569646 A CN 103569646A CN 201310541618 A CN201310541618 A CN 201310541618A CN 103569646 A CN103569646 A CN 103569646A
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- electronics seal
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Abstract
The invention provides an automatic directional sequencing device for electronic seals. The device comprises a vibrating disc, a blowing device and a discharging device, wherein the vibrating disc comprises a hopper and an electronic seal advancing channel, the electronic seal advancing channel comprises a spiral ascending advancing channel and a spiral descending advancing channel which are arranged at the top and the bottom of the hopper respectively; the blowing device is arranged on the electronic seal advancing channel; and the discharging device is arranged at the tail end of the spiral descending advancing channel. According to the automatic directional sequencing device for the electronic seals, the electronic seals are vibrated into the electronic seal advancing channel through the vibrating disc; during a forward moving process in the electronic seal advancing channel, the electronic seals inconsistent with the arrangement directions in the advancing channel are blown out of the electronic seal advancing channel by the blowing device beside a track and fall into the hopper for restart; and the electronic seals consistent with the arrangement directions enter the discharging device, and automatic sequencing of the electronic seals is finished successfully. Therefore, problems of product loss and the like caused by human intervention are reduced while the efficiency is improved.
Description
Technical field
The present invention relates to a kind of collator, specifically will relate to a kind of self-orientation collator of electronics seal.
Background technology
Widespread use along with electric energy meter technology substitution and electric energy meter, the seal technology of electric energy meter has also experienced lead sealing, the anti-reverse plastic seal of threading type to technological changes such as buckle-type electronics seals, and buckle-type electronics seal because it is easy for installation, environmental protection and built-in radio frequency chip (able to programme, safe) can realize communicate by letter with radio frequency read-write facility can encryption anti-counterfeiting etc. advantage become mainstream technology.A plurality of electronics seals are being carried out to before program writes, electronics seal need to be pressed to fixed-direction ordered arrangement.Traditional craft is to the too low batch working that is not suitable for of the sequence efficiency of electronics seal.
Application number is 201210345639.4 patent of invention, a kind of step nut vibrating disk is disclosed, comprise hopper, chassis and discharger, hopper inwall is provided with the front access of spiralling nut, hopper outer wall is provided with the front access of nut that spiral declines, before nut, access end separates with hopper, forms one nut and hangs seam, and nut is hung seam end and is provided with discharger; It is high between the diameter of topping bar and getting out of a predicament or an embarrassing situation of step nut that nut is hung meeting of seam; Discharger width is the height of step nut; Before nut, access middle part is provided with fracture, and the vertical direction of fracture is provided with the arc countercheck rod towards hopper center curvature.This vibrating disk and the key position of utilizing installs the sequence that pin is only applicable to constant weight and diameter and highly differs larger screw rod base part additional.
Electronics seal, because of very light in weight, fell upright seal can cause the follow-up a plurality of seals immediately following this seal arch upward or be extruded together track with lever; And seal chip cap diameter and seal height approach, seal lies low and the height that stands upright in front access differs very little, with the height that lever the blocks upright seal seal that also easily will lie low, stops, and the effect of upright product is rejected in out of reach sorting; It is a kind of for PIN pin automatic feeder that the utility model patent that application number is 201120170117.6 provides, and comprises that inner-spiral orbit oscillation disc, choosing are to track, conveying passage, mobile material loading parts and feed delivery duct.Utilize vibrating disk that scattered PIN pin is shaken to choosing one by one in track, the raised step of PIN pin is suspended on choosing in track, according to center of gravity free fall, thereby realize the choosing of PIN pin to object, choosing PIN pin is backward moved to material bolt and be moved into the position that gas hole is corresponding, by air-flow, upwards being blown afloat, enter in feed delivery duct, is assembling PIN pin equipment feed.In this utility model, can not adopt center of gravity free fall to realize the auto-sequencing of aciculiform product.
Summary of the invention
In order to overcome above-mentioned the deficiencies in the prior art, the invention provides a kind of self-orientation collator of electronics seal, profile and the lighter feature of weight in conjunction with buckle-type electronics seal, by vibrating disk, electronics seal is vibrated into electronics seal and advanced, in the process moving forward in electronics seal advances, the electronics seal that utilizes the other blowning installation of track that orientation in front access is not inconsistent blows out electronics seal and advances, falling into hopper restarts, direction conform to sequence correct electronics seal enter discharger, be successfully completed the auto-sequencing of electronics seal, when raising the efficiency like this, reduce the problems such as product loss that human intervention brings.
In order to realize foregoing invention object, the present invention takes following technical scheme:
The invention provides a kind of self-orientation collator of electronics seal, described electronics seal is buckle-type electronics seal, comprises cylindrical chip cap and with the cylindrical buckle of barb, described chip cap is positioned at described buckle top, and coaxial with buckle; Described device involving vibrations dish, blowning installation and discharger; Described vibrating disk comprises that hopper and electronics seal advance, described electronics seal advance comprise screw go forward access and spiral decline before access, described screw go forward access and spiral decline before access be separately positioned on top and the bottom of described hopper; Described blowning installation is arranged on described electronics seal advances, the end of access before described discharger is arranged on described spiral and declines.
Described screw go forward the end of access and spiral decline before access top separately, form downward step and hang seam.
The described screw access of going forward is the U-shaped groove helical guideway that width is identical with described chip cap diameter.
Before described spiral declines, access is T connected in star helical guideway.Described discharger is the T connected in star straight guide under being tilted to.
The material that described U-shaped groove helical guideway, T connected in star helical guideway and T connected in star straight guide are employing is 0Cr13Al, it is with the alloy preparation that carbon content is 0.075%, silicone content is 0.94%, manganese content is 0.97%, phosphorus content is 0.035%, sulfur content is 0.025%, chromium content is 14.0%, surplus is iron, and described percentum is percent by weight.
Described blowning installation comprises the first air blowing tubule, the second air blowing tubule and the 3rd air blowing tubule; Described the first air blowing tubule is arranged on the go forward first half of access of described screw, and its direction is consistent with electronics seal working direction; Described the second air blowing tubule and the 3rd air blowing tubule are separately positioned on the both sides of described T connected in star helical guideway, and both blow out air-flow towards electronics seal, and direction is vertical with electronics seal working direction.
The air blowing of the second air blowing tubule and the 3rd air blowing tubule is highly all between described chip cap height and buckle degree of dip height.Described chip cap height is 2~3mm.
Compared with prior art, beneficial effect of the present invention is:
1, for the electronics seal of the unconventional profile of scattered packing, use vibrating disk that the seal of dispersion is vibrated into track designation, and spiral reach, the preliminary sequence of seal completed, can efficiently complete the automatic charging of electronics seal sequence, and the loss product problem of avoiding artificial loading to bring.
2, utilize that electronics seal is lightweight, T shape cross-sectional plane and the feature such as chip cap and buckle diff-H, use blowning installation to complete the rejecting of the electronics seal that does not enter T connected in star, effectively avoid the artificial inefficiency problem that light miscellaneous goods sequence brings to circle that is difficult for, greatly improved auto-sequencing efficiency and the success ratio of seal.
3, use gas blow pipe that the incongruent electronics seal of sequence is blown out, falling into hopper restarts, the work of having avoided manual intervention to reclaim the unsuccessful seal of sequence, has completed the automatic recovery of electronics seal and the periodical duty of sequencing feeding, has improved integrated level and the degree of automation of device.
4, the current rate that blowning installation blows out can be adjusted flexibly according to electronics seal weight, to adapt to the blowing function of Different Weight seal, realizes.
Accompanying drawing explanation
Fig. 1 is the self-orientation collator integral structure figure of electronics seal;
Fig. 2 is the side schematic view of buckle-type electronics seal;
Fig. 3 is that buckle-type electronics seal falls into the electronics seal schematic diagram that advances;
Fig. 4 is that buckle-type electronics seal tilts to stand in the electronics seal schematic diagram that advances;
Wherein, 1-hopper, the 2-screw access of going forward, access before 3-spiral declines, 4-step is hung seam, 5-the first air blowing tubule, 6-the second air blowing tubule, 7-the 3rd air blowing tubule, 8-discharger, 9-chip cap, 10-buckle.
The specific embodiment
Below in conjunction with accompanying drawing, the present invention is described in further detail.
As Fig. 1-Fig. 4, the invention provides a kind of self-orientation collator of electronics seal, described electronics seal is buckle-type electronics seal, comprises cylindrical chip cap 9 and with the cylindrical buckle 10 of barb, described chip cap is positioned at described buckle top, and coaxial with buckle; Device involving vibrations dish, blowning installation and discharger 8; Described vibrating disk comprises that hopper 1 and electronics seal advance, described electronics seal advance comprise screw go forward access 2 and spiral decline before access 3, described screw go forward access 2 and spiral decline before access 3 be separately positioned on top and the bottom of described hopper 1; Described blowning installation is arranged on described electronics seal advances, the end of access 3 before described discharger 8 is arranged on described spiral and declines.
Described screw go forward the end of access 2 and spiral decline before access 3 tops separately, form downward step and hang seam 4.
Described screw is gone forward access 2 for the width U-shaped groove helical guideway identical with described chip cap diameter.
Before described spiral declines, access 3 is T connected in star helical guideway.Described discharger 8 is the T connected in star straight guide under being tilted to.
The material that described U-shaped groove helical guideway, T connected in star helical guideway and T connected in star straight guide are employing is 0Cr13Al, it is with the alloy preparation that carbon content is 0.075%, silicone content is 0.94%, manganese content is 0.97%, phosphorus content is 0.035%, sulfur content is 0.025%, chromium content is 14.0%, surplus is iron, and described percentum is percent by weight.
Described blowning installation comprises the first air blowing tubule 5, the second air blowing tubule 6 and the 3rd air blowing tubule 7; Described the first air blowing tubule 5 is arranged on the go forward first half of access 2 of described screw, and its direction is consistent with electronics seal working direction; Described the second air blowing tubule 6 and the 3rd air blowing tubule 7 are separately positioned on the both sides of described T connected in star helical guideway, and both blow out air-flow towards electronics seal, and direction is vertical with electronics seal working direction.
The air blowing of the second air blowing tubule 6 and the 3rd air blowing tubule 7 is highly all between described chip cap height (h1 in Fig. 3) and buckle degree of dip height (h2 in Fig. 4).Described chip cap height is 2~3mm.
The process of electronics seal auto-sequencing is as follows:
First, being dispersed in electronics seal in hopper is vibrated into the screw access 2 of going forward by vibrating disk, and spiral reach in sustained vibration, before entering spiral and declining before access, first air blowing tubule 5 that access 2 latter halfs are installed before spiral blows out the air-flow consistent with electronics seal working direction, when this air-flow is accelerated electronics seal speed of advance can by part upright electronics seal blow and lie down, the direction that electronics seal is lied down has two kinds, a kind of be buckle forward, another kind be chip cap forward.Screw go forward the end of access 2 and spiral decline before the junction, top of access 3 be that a downward step is hung seam 4, the electronic seal chine of lying down is crossed step and is hung seam at 4 o'clock, buckle 10 parts can directly be fallen into T connected in star helical guideway, only staying chip cap 9 parts to be suspended on spiral declines on front access 3, and the upright electronic seal chine that part is not blown down by the first gas blow pipe 5 is crossed step extension seam 4 o'clock, meeting buckle 10 is tilted to stand on the front access 3 of spiral decline and (highly exceeds guide rail more, Fig. 4), being arranged on T connected in star helical guideway both sides respectively has one to approach the air blowing tubule of vertical direction with front access, i.e. the second air blowing tubule 6 and the 3rd air blowing tubule 7 (come the 3rd air blowing tubule 7 below and be prevent previous leakage from blowing supplement), the second air blowing tubule 6 and the 3rd air blowing tubule 7 blow out the height of air-flow between chip cap 9 height (h1 in Fig. 3) and buckle 10 inclined height (h2 in Fig. 4), the electronics seal that this part buckle is inclined upwardly on T connected in star helical guideway can be blown out guide rail by the 3rd air blowing tubule 7, fall into hopper 1, restart, the electronics seal not being blown all can sequence under spiral declines front access 3 latter half guide rail screws and enter discharger 8 according to the unification of T shape vertical direction, thereby complete electronics seal and obtain ordered arrangement, and Sequential output.Discharger 8 is the T connected in star straight guides under being tilted to, and electronics seal can be because sliding into follow-up work flow process under free gravity.
Finally should be noted that: above embodiment is only in order to illustrate that technical scheme of the present invention is not intended to limit, although the present invention is had been described in detail with reference to above-described embodiment, those of ordinary skill in the field are to be understood that: still can modify or be equal to replacement the specific embodiment of the present invention, and do not depart from any modification of spirit and scope of the invention or be equal to replacement, it all should be encompassed in the middle of claim scope of the present invention.
Claims (9)
1. a self-orientation collator for electronics seal, described electronics seal is buckle-type electronics seal, comprises cylindrical chip cap and with the cylindrical buckle of barb, described chip cap is positioned at described buckle top, and coaxial with buckle; It is characterized in that: described device involving vibrations dish, blowning installation and discharger; Described vibrating disk comprises that hopper and electronics seal advance, described electronics seal advance comprise screw go forward access and spiral decline before access, described screw go forward access and spiral decline before access be separately positioned on top and the bottom of described hopper; Described blowning installation is arranged on described electronics seal advances, the end of access before described discharger is arranged on described spiral and declines.
2. the self-orientation collator of electronics seal according to claim 1, is characterized in that: described screw go forward the end of access and spiral decline before access top separately, form downward step and hang seam.
3. the self-orientation collator of electronics seal according to claim 2, is characterized in that: the described screw access of going forward is the U-shaped groove helical guideway that width is identical with described chip cap diameter.
4. the self-orientation collator of electronics seal according to claim 2, is characterized in that: before described spiral declines, access is T connected in star helical guideway.
5. the self-orientation collator of electronics seal according to claim 1, is characterized in that: described discharger is the T connected in star straight guide under being tilted to.
6. according to the self-orientation collator of claim 3,4 or 5 arbitrary described electronics seals, it is characterized in that: the material that described U-shaped groove helical guideway, T connected in star helical guideway and T connected in star straight guide are employing is 0Cr13Al, it is with the alloy preparation that carbon content is 0.075%, silicone content is 0.94%, manganese content is 0.97%, phosphorus content is 0.035%, sulfur content is 0.025%, chromium content is 14.0%, surplus is iron, and described percentum is percent by weight.
7. the self-orientation collator of electronics seal according to claim 1, is characterized in that: described blowning installation comprises the first air blowing tubule, the second air blowing tubule and the 3rd air blowing tubule; Described the first air blowing tubule is arranged on the go forward first half of access of described screw, and its direction is consistent with electronics seal working direction; Described the second air blowing tubule and the 3rd air blowing tubule are separately positioned on the both sides of described T connected in star helical guideway, and both blow out air-flow towards electronics seal, and direction is vertical with electronics seal working direction.
8. the self-orientation collator of electronics seal according to claim 7, is characterized in that: the air blowing of the second air blowing tubule and the 3rd air blowing tubule is highly all between described chip cap height and buckle degree of dip height.
9. the self-orientation collator of electronics seal according to claim 8, is characterized in that: described chip cap height is 2~3mm.
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CN201310541618.4A CN103569646B (en) | 2013-11-05 | 2013-11-05 | A kind of self-orientation collator of electronics seal |
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CN103569646B CN103569646B (en) | 2016-04-20 |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104550529A (en) * | 2014-11-24 | 2015-04-29 | 浙江晨丰科技有限公司 | LED (light-emitting diode) lamp radiator semi-finished product feeding device |
CN105564911A (en) * | 2016-02-03 | 2016-05-11 | 林尧宇 | Vibrating disk assembly of bead sewing machine |
CN108927615A (en) * | 2018-08-22 | 2018-12-04 | 原子高科股份有限公司 | A kind of automatic welding device and method for titanium tube sealing |
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CN102826349A (en) * | 2012-09-18 | 2012-12-19 | 吴江市华恒精密五金有限公司 | Vibrating tray for stepped nuts |
CN103183204A (en) * | 2011-12-29 | 2013-07-03 | 福建浔兴拉链科技股份有限公司 | Vibration feeding device |
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US3907099A (en) * | 1974-03-13 | 1975-09-23 | Arthur J Smith | Feeder for headed objects |
JPS5953308A (en) * | 1982-09-22 | 1984-03-28 | Hitachi Ltd | Conveyance device |
JPH11292255A (en) * | 1998-04-06 | 1999-10-26 | Shinko Electric Co Ltd | Elliptical vibration part feeder |
CN201485036U (en) * | 2009-06-19 | 2010-05-26 | 苏锦波 | Small ceramic chip vibration air-blowing collator of tap valve core |
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Publication number | Priority date | Publication date | Assignee | Title |
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CN104550529A (en) * | 2014-11-24 | 2015-04-29 | 浙江晨丰科技有限公司 | LED (light-emitting diode) lamp radiator semi-finished product feeding device |
CN105564911A (en) * | 2016-02-03 | 2016-05-11 | 林尧宇 | Vibrating disk assembly of bead sewing machine |
CN108927615A (en) * | 2018-08-22 | 2018-12-04 | 原子高科股份有限公司 | A kind of automatic welding device and method for titanium tube sealing |
CN108927615B (en) * | 2018-08-22 | 2023-06-13 | 原子高科股份有限公司 | Automatic welding device and method for sealing titanium pipe |
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