CN108313780B - Card separating and feeding mechanism - Google Patents

Card separating and feeding mechanism Download PDF

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Publication number
CN108313780B
CN108313780B CN201810055837.4A CN201810055837A CN108313780B CN 108313780 B CN108313780 B CN 108313780B CN 201810055837 A CN201810055837 A CN 201810055837A CN 108313780 B CN108313780 B CN 108313780B
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China
Prior art keywords
card
square
charging barrel
buffer
servo motor
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CN201810055837.4A
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Chinese (zh)
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CN108313780A (en
Inventor
郑孟仁
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Fanlite Intelligent Technology Suzhou Co ltd
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Fanlite Intelligent Technology Suzhou Co ltd
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Priority to CN201810055837.4A priority Critical patent/CN108313780B/en
Publication of CN108313780A publication Critical patent/CN108313780A/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H3/00Separating articles from piles
    • B65H3/34Article-retaining devices controlling the release of the articles to the separators
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/10Handled articles or webs
    • B65H2701/19Specific article or web
    • B65H2701/1914Cards, e.g. telephone, credit and identity cards

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Sheets, Magazines, And Separation Thereof (AREA)
  • Lining Or Joining Of Plastics Or The Like (AREA)

Abstract

The invention discloses a card separating and feeding mechanism which comprises a bracket, a servo motor, a lead screw, a feed nut, a sliding seat, a supporting seat, a push rod, a pressure plate, a hoop, a square feed cylinder, an elastic sheet, an air cylinder, a connecting plate, a buffer sleeve, an electromagnet and a blocking mechanism, wherein a card is placed in the square feed cylinder, the card is automatically centered and clamped by the elastic sheet, the position of the lowest card is manually adjusted so that the bottom of the lowest card is level with the bottom of the elastic sheet, the rotating angle of the servo motor is set, the downward moving distance of the pressure plate is equal to the thickness of a single card, the blocking mechanism blocks the card after the card falls into the buffer sleeve, the air cylinder pushes the buffer sleeve to move downwards, the electromagnet and an attraction iron belt move the square blocking rod to move outwards, and the card falls freely in a card placing mechanism arranged outside the card. The device simple structure can be automatic with the card sheet-separation to send single card to the card of peripheral hardware and place the mechanism, thereby replace manual operation, improve production efficiency, simultaneously, be convenient for automated production.

Description

Card separating and feeding mechanism
Technical Field
The invention relates to a mechanical device, in particular to a card separating and feeding mechanism.
Background
The existing electronic chip card is composed of a card body and a chip arranged on the card body, wherein a sensing coil connected with the chip to form conduction is embedded in the card body, so that the electronic chip card is formed. At present, the card body is made by the adhesion of polylith raw materials board, in the production practice, and polylith raw materials board often stacks up together, need divide the raw materials board when needs rubber coating or milling flutes and divide the sheet, often divide the sheet and place card placement machine by the operating personnel is manual, because operating personnel wears gloves, manual divide the sheet difficulty and inefficiency. In view of the above drawbacks, it is necessary to design a card separating and feeding mechanism.
Disclosure of Invention
The technical problems to be solved by the invention are as follows: the card separating and feeding mechanism solves the problems of difficult manual separation and low efficiency.
In order to solve the technical problems, the technical scheme of the invention is as follows: the utility model provides a card sheet-fed mechanism, includes support, servo motor, lead screw, feed nut, slide, supporting seat, push rod, pressure disk, staple bolt, square feed cylinder, shell fragment, cylinder, connecting plate, buffer jacket, electro-magnet, stock stop, servo motor be located support right side upper end, servo motor and support pass through the bolt and link to each other, the lead screw be located servo motor lower extreme and be located support right side, lead screw and servo motor key link to each other and link to each other with the support through the bolt, the lead screw run through feed nut, feed nut and lead screw thread link to each other, the slide be located the feed nut outside and be located the support right side, slide and feed nut pass through the bolt and link to each other, the supporting seat be located the slide right side, supporting seat and slide pass through the bolt and link to each other, the push rod be located the supporting seat lower extreme, the push rod is connected with the supporting seat through bolts, the pressure plate is positioned at the lower end of the push rod, the pressure plate is connected with the threads of the push rod, the anchor ear is positioned at the lower end of the right side of the bracket, the anchor ear is connected with the bracket through bolts, the square charging barrel penetrates through the anchor ear, the square charging barrel is connected with the anchor ear through bolts, the number of the elastic sheets is 4, the square charging barrel is symmetrically arranged left and right and front and back, the air cylinder is positioned at the outer side of the square charging barrel, the air cylinder is connected with the square charging barrel through bolts, the connecting plate is positioned at the lower end of the air cylinder and penetrates through the square charging barrel, the connecting plate is connected with the air cylinder through bolts, the buffer sleeve is positioned at one side of the connecting plate and at the inner side of the square charging barrel, the buffer sleeve is connected with the connecting plate through welding, the electromagnet is positioned at the lower end of the outer side of the square charging barrel, the electromagnet is connected with the square charging barrel through bolts, the number of the material blocking mechanisms is 2, and the material blocking mechanisms are symmetrically arranged along the buffer sleeve.
The invention is further improved as follows:
further, the number of the air cylinders is 2, and the air cylinders are symmetrically arranged along the front and back of the square charging barrel.
Further, the number of the electromagnets is 2, and the electromagnets are symmetrically arranged along the square charging barrel.
Further, the support still be equipped with the air supporting guide rail, the air supporting guide rail be located the support right side and be located the slide left side, the air supporting guide rail pass through the bolt with support and slide respectively and link to each other.
Further, the pressure plate is also provided with a rubber sleeve, the rubber sleeve is positioned at the bottom of the pressure plate, and the rubber sleeve is bonded and connected with the pressure plate.
Furthermore, the buffer cover is also provided with a silica gel cover, the silica gel cover is positioned at the bottom of the buffer cover, and the silica gel cover is bonded and connected with the buffer cover.
Further, the stop mechanism also include square material blocking rod, actuation iron, spring, square material blocking rod run through the buffer cover, square material blocking rod can follow buffer cover side-to-side, actuation iron be located square material blocking rod outside, actuation iron pass through the bolt with square material blocking rod and link to each other, the spring be located between actuation iron and the buffer cover, the spring link to each other with actuation iron and buffer cover welding respectively.
Compared with the prior art, this card sheet-fed mechanism, the during operation, place the card in square feed cylinder, four symmetrical arrangement's shell fragment is with card automatic centering and chucking, manual regulation lower floor's card's position, make the bottom parallel and level of lower floor's card bottom and shell fragment, afterwards, servo motor passes through the slide that the lead screw drive and feed nut link firmly moves down, thereby drive the push rod that links firmly with the supporting seat and move down, until the pressure disk is laminated with the card on the uppermost layer, afterwards, set for servo motor's turned angle, make servo motor turned angle back, the distance that the pressure disk moved down equals the thickness of single card, afterwards, servo motor turned angle, the card of lower floor falls into the buffer cover, two symmetrical arrangement's stock stop blocks the card in order to prevent that the card from continuing to fall, afterwards, two symmetrical arrangement's cylinder promotes the buffer cover that links firmly with the connecting plate and moves down, until the silica gel cover is laminated with peripheral hardware card placement mechanism, at this moment, the axis of electro-magnet coincides with square stock stop's axis, afterwards, electro-magnet electricity is thereby with the suction iron suction, thereby drive stock stop outside the card, afterwards, freely falls in the square stock stop, after the electric spring is placed, can be accomplished after the reset spring. The device simple structure can be automatic with the card sheet-separation to send single card to the card of peripheral hardware and place the mechanism, thereby replace manual operation, improve production efficiency, simultaneously, be convenient for automated production.
Drawings
FIG. 1 shows a front view of the present invention
FIG. 2 is a schematic view showing the structure of the dam mechanism of the present invention
In the figure: the device comprises a bracket 1, a servo motor 2, a lead screw 3, a feed nut 4, a sliding seat 5, a supporting seat 6, a push rod 7, a pressure plate 8, a hoop 9, a square charging barrel 10, a spring plate 11, a cylinder 12, a connecting plate 13, a buffer sleeve 14, an electromagnet 15, a material blocking mechanism 16, an air floatation guide rail 101, a rubber sleeve 801, a silica gel sleeve 1401, a square material blocking rod 1601, an attraction iron 1602 and a spring 1603.
Detailed Description
As shown in fig. 1 and 2, the card separating and feeding mechanism comprises a bracket 1, a servo motor 2, a lead screw 3, a feed nut 4, a sliding seat 5, a supporting seat 6, a push rod 7, a pressure plate 8, a hoop 9, a square feed cylinder 10, an elastic sheet 11, an air cylinder 12, a connecting plate 13, a buffer sleeve 14, an electromagnet 15 and a stop mechanism 16, wherein the servo motor 2 is positioned at the upper right side of the bracket 1, the servo motor 2 is connected with the bracket 1 through a bolt, the lead screw 3 is positioned at the lower end of the servo motor 2 and positioned at the right side of the bracket 1, the lead screw 3 is connected with the servo motor 2 through a key and is connected with the bracket 1 through a bolt, the lead screw 3 runs through the feed nut 4, the feed nut 4 is connected with the lead screw 3 through a thread, the sliding seat 5 is positioned at the outer side of the feed nut 4 and is positioned at the right side of the bracket 1, the sliding seat 6 is positioned at the right side of the sliding seat 5, the supporting seat 6 is connected with the sliding seat 5 through a bolt, the push rod 7 is positioned at the lower end of the supporting seat 6, the pressure plate 7 is connected with the pressure plate 6 through the air cylinder 10 through the bolt 12 and is positioned at the outer side of the air cylinder 10 through the square feed cylinder 10, the connecting plate 10 is connected with the air cylinder 10 through the left side of the square feed cylinder 9 through the hoop 9, the connecting plate 9 is connected with the square feed cylinder 10 through the hoop 10 through the bolt, the connecting plate 9 is connected with the air cylinder 10 through the right side of the connecting plate 9, the buffer cover 14 is positioned at one side of the connecting plate 13 and at the inner side of the square charging barrel 10, the buffer cover 14 is welded with the connecting plate 13, the electromagnet 15 is positioned at the lower end of the outer side of the square charging barrel 10, the electromagnet 15 is connected with the square charging barrel 10 through bolts, the number of the stop mechanisms 16 is 2, the buffer cover 14 is symmetrically arranged left and right, the number of the air cylinders 12 is 2, the square charging barrel 10 is symmetrically arranged front and back, the number of the electromagnets 15 is 2, the square charging barrel 10 is symmetrically arranged left and right, the bracket 1 is also provided with an air floatation guide rail 101, the air floatation guide rail 101 is positioned at the right side of the bracket 1 and at the left side of the sliding seat 5, the air floatation guide rail 101 is respectively connected with the bracket 1 and the sliding seat 5 through bolts, the pressure plate 8 is also provided with a rubber cover 801, the rubber cover 801 is positioned at the bottom of the pressure plate 8, the rubber sleeve 801 is adhered and connected with the pressure plate 8, the buffer sleeve 14 is also provided with a silica gel sleeve 1401, the silica gel sleeve 1401 is positioned at the bottom of the buffer sleeve 14, the silica gel sleeve 1401 is adhered and connected with the buffer sleeve 14, the stop mechanism 116 further comprises a square stop rod 1601, an attracting iron 1602 and a spring 1603, the square stop rod 1601 penetrates through the buffer sleeve 14, the square stop rod 1601 can slide left and right along the buffer sleeve 14, the attracting iron 1602 is positioned at the outer side of the square stop rod 1601, the attracting iron is connected with the square stop rod 1601 through bolts, the spring 1603 is positioned between the attracting iron 1602 and the buffer sleeve 14, the spring 1603 is respectively welded and connected with the attracting 1602 and the buffer sleeve 14, the card separating and feeding mechanism is used for placing a card in the square feed cylinder 1, four symmetrically arranged elastic sheets 11 automatically center and clamp the card, the position of the card at the lowest layer is manually adjusted, the bottom of the card at the lowest layer is flush with the bottom of the elastic sheet 11, then, the servo motor 2 drives the sliding seat 5 fixedly connected with the feed nut 4 to move downwards through the lead screw 3, thereby driving the push rod 7 fixedly connected with the supporting seat 6 to move downwards until the pressure plate 8 is attached to the card at the highest layer, then, the rotating angle of the servo motor 2 is set, the distance of the downward movement of the pressure plate 8 is equal to the thickness of a single card after the rotating angle of the servo motor 2 is set, then, the servo motor 2 rotates for a set angle, the card at the lowest layer falls into the buffer sleeve 14, the two symmetrically arranged stop mechanisms 16 block the card to prevent the card from continuously falling, then, the two symmetrically arranged air cylinders 12 push the buffer sleeve 14 fixedly connected with the connecting plate 13 to move downwards until the silica gel sleeve 1401 is attached to the card placing mechanism at the outside, at the moment, the axis of the electromagnet 15 is overlapped with the axis of the square stop 1601, then, the electromagnet 15 is electrified to be attracted with the attraction iron 1602, thereby driving the square stop 1601 to move outwards, then, the card is freely falls into the card placing mechanism outside the outside, after the card placing mechanism at the outside, the electromagnet 1603 is electrified, and the reset spring 1603 can be driven. The device simple structure can be automatic with the card sheet-separation to send single card to the card of peripheral hardware and place the mechanism, thereby replace manual operation, improve production efficiency, simultaneously, be convenient for automated production.
The present invention is not limited to the above-described specific embodiments, and various modifications may be made by those skilled in the art without inventive effort from the above-described concepts, and are within the scope of the present invention.

Claims (4)

1. The utility model provides a card sheet-separating feeding mechanism, its characterized in that includes support, servo motor, lead screw, feed nut, slide, supporting seat, push rod, pressure disk, staple bolt, square feed cylinder, shell fragment, cylinder, connecting plate, buffer jacket, electro-magnet, stock stop, servo motor be located support right side upper end, servo motor pass through the bolt with the support and link to each other, the lead screw be located servo motor lower extreme and be located support right side, lead screw and servo motor key link to each other and link to each other with the support through the bolt, the lead screw run through feed nut, feed nut and lead screw thread link to each other, the slide be located the feed nut outside and be located the support right side, the slide pass through the bolt and link to each other with feed nut, the supporting seat be located the slide right side, the supporting seat pass through the bolt with the slide and link to each other, the push rod be located the supporting seat lower extreme, the push rod is connected with the supporting seat through bolts, the pressure plate is positioned at the lower end of the push rod, the pressure plate is connected with the threads of the push rod, the anchor ear is positioned at the lower end of the right side of the bracket, the anchor ear is connected with the bracket through bolts, the square charging barrel penetrates through the anchor ear, the square charging barrel is connected with the anchor ear through bolts, the number of the elastic sheets is 4, the square charging barrel is symmetrically arranged left and right and front and back, the air cylinder is positioned at the outer side of the square charging barrel, the air cylinder is connected with the square charging barrel through bolts, the connecting plate is positioned at the lower end of the air cylinder and penetrates through the square charging barrel, the connecting plate is connected with the air cylinder through bolts, the buffer sleeve is positioned at one side of the connecting plate and at the inner side of the square charging barrel, the buffer sleeve is connected with the connecting plate through welding, the electromagnet is positioned at the lower end of the outer side of the square charging barrel, the electromagnet is connected with the square charging barrel through bolts, the number of the material blocking mechanisms is 2, and the material blocking mechanisms are symmetrically arranged left and right along the buffer sleeve;
the number of the air cylinders is 2, and the air cylinders are symmetrically arranged along the front and back of the square charging barrel; the number of the electromagnets is 2, and the electromagnets are symmetrically arranged left and right along the square charging barrel;
the stop mechanism also comprises a square stop rod, an attracting iron and a spring, wherein the square stop rod penetrates through the buffer sleeve, the square stop rod can slide left and right along the buffer sleeve, the attracting iron is located on the outer side of the square stop rod, the attracting iron is connected with the square stop rod through a bolt, the spring is located between the attracting iron and the buffer sleeve, and the spring is connected with the attracting iron and the buffer sleeve through welding.
2. The card separating and feeding mechanism of claim 1, wherein the bracket is further provided with an air-floating guide rail, the air-floating guide rail is positioned on the right side of the bracket and on the left side of the sliding seat, and the air-floating guide rail is respectively connected with the bracket and the sliding seat through bolts.
3. The card separating and feeding mechanism of claim 1, wherein the pressure plate is further provided with a rubber sleeve, the rubber sleeve is positioned at the bottom of the pressure plate, and the rubber sleeve is adhered and connected with the pressure plate.
4. The card separating and feeding mechanism of claim 1, wherein the buffer cover is further provided with a silica gel cover, the silica gel cover is positioned at the bottom of the buffer cover, and the silica gel cover is adhered and connected with the buffer cover.
CN201810055837.4A 2018-01-20 2018-01-20 Card separating and feeding mechanism Active CN108313780B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810055837.4A CN108313780B (en) 2018-01-20 2018-01-20 Card separating and feeding mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810055837.4A CN108313780B (en) 2018-01-20 2018-01-20 Card separating and feeding mechanism

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Publication Number Publication Date
CN108313780A CN108313780A (en) 2018-07-24
CN108313780B true CN108313780B (en) 2024-02-06

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114536934B (en) * 2022-03-10 2023-03-24 云南大学 Bonding equipment and bonding method

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WO2008154670A1 (en) * 2007-06-18 2008-12-24 Farbdruck Gmbh Device for the individual dispensing of printed products
CN102180364A (en) * 2010-07-22 2011-09-14 中钞信用卡产业发展有限公司 Card feeding device and feeding method
CN103935055A (en) * 2014-03-14 2014-07-23 罗后帅 Automatic film laminating spot welder
CN105417115A (en) * 2016-01-07 2016-03-23 广州市明森机电设备有限公司 Card transition device and method for intelligent card production equipment
CN205855641U (en) * 2016-06-22 2017-01-04 林志龙 A kind of electric power electric wire collection apparatus
CN106364965A (en) * 2016-10-15 2017-02-01 广州明森科技股份有限公司 Card collecting device of intelligent card production device
CN107187904A (en) * 2017-07-17 2017-09-22 湖州佳宁印刷有限公司 A kind of card printer paper feed mechanism
CN207759745U (en) * 2018-01-20 2018-08-24 梵利特智能科技(苏州)有限公司 A kind of card is said good-bye feed mechanism

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5487186B2 (en) * 2011-11-11 2014-05-07 京セラドキュメントソリューションズ株式会社 Paper feeding device and image forming apparatus having the same

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101211479A (en) * 2006-12-29 2008-07-02 纳蒂卢斯晓星公司 Bill recycling machine
WO2008154670A1 (en) * 2007-06-18 2008-12-24 Farbdruck Gmbh Device for the individual dispensing of printed products
CN102180364A (en) * 2010-07-22 2011-09-14 中钞信用卡产业发展有限公司 Card feeding device and feeding method
CN103935055A (en) * 2014-03-14 2014-07-23 罗后帅 Automatic film laminating spot welder
CN105417115A (en) * 2016-01-07 2016-03-23 广州市明森机电设备有限公司 Card transition device and method for intelligent card production equipment
CN205855641U (en) * 2016-06-22 2017-01-04 林志龙 A kind of electric power electric wire collection apparatus
CN106364965A (en) * 2016-10-15 2017-02-01 广州明森科技股份有限公司 Card collecting device of intelligent card production device
CN107187904A (en) * 2017-07-17 2017-09-22 湖州佳宁印刷有限公司 A kind of card printer paper feed mechanism
CN207759745U (en) * 2018-01-20 2018-08-24 梵利特智能科技(苏州)有限公司 A kind of card is said good-bye feed mechanism

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