JP6582336B1 - Portable power automation device - Google Patents

Portable power automation device Download PDF

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JP6582336B1
JP6582336B1 JP2018115667A JP2018115667A JP6582336B1 JP 6582336 B1 JP6582336 B1 JP 6582336B1 JP 2018115667 A JP2018115667 A JP 2018115667A JP 2018115667 A JP2018115667 A JP 2018115667A JP 6582336 B1 JP6582336 B1 JP 6582336B1
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groove
block
wall
fixedly connected
engaged
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JP2019204470A (en
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張波
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深▲せん▼市康剛眼鏡有限公司
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K13/00Conveying record carriers from one station to another, e.g. from stack to punching mechanism
    • G06K13/02Conveying record carriers from one station to another, e.g. from stack to punching mechanism the record carrier having longitudinal dimension comparable with transverse dimension, e.g. punched card
    • G06K13/08Feeding or discharging cards
    • G06K13/10Feeding or discharging cards from magazine to conveying arrangement
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K13/00Conveying record carriers from one station to another, e.g. from stack to punching mechanism
    • G06K13/02Conveying record carriers from one station to another, e.g. from stack to punching mechanism the record carrier having longitudinal dimension comparable with transverse dimension, e.g. punched card
    • G06K13/08Feeding or discharging cards
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K13/00Conveying record carriers from one station to another, e.g. from stack to punching mechanism
    • G06K13/02Conveying record carriers from one station to another, e.g. from stack to punching mechanism the record carrier having longitudinal dimension comparable with transverse dimension, e.g. punched card
    • G06K13/08Feeding or discharging cards
    • G06K13/12Feeding or discharging cards from conveying arrangement to magazine

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  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Transmission Devices (AREA)
  • Rehabilitation Tools (AREA)

Abstract

【課題】本発明は携帯式電力自動化装置を開示した。【解決手段】装置主体、前記の装置主体の左側の設置される自動装置、前記の装置主体に設置される起動装置と前記の装置主体に設置される運搬装置を含み、前記の自動装置が前記の装置主体の左端に設置される左に向かう第一溝を含み、前記の第一溝の下側の内壁に第一電機が固定に設置され、前記の第一電機の上端に第一親ねじが動力で係合し接続され、前記の第一親ねじの上端が軸受を通じて前記の第一溝の上側の内壁に回転し係合し接続され、前記の第一親ねじに前記の第一溝の上下にスライドする昇降ブロックがねじで係合し接続され、本装置は電力で知能かつ自動的にカードを配って、人力運営時間を減少し、電力不足の時に蓄電池を取り替えればまたは充電すればよく、導線装置を外して第二起動ブロックを取れば装置を停止でき、スタッフの使用に便利を与え、応用の範囲も広い。【選択図】図1The present invention discloses a portable power automation device. The apparatus includes an apparatus main body, an automatic apparatus installed on the left side of the apparatus main body, an activation apparatus installed in the apparatus main body, and a transport apparatus installed in the apparatus main body. Including a first groove toward the left installed at the left end of the apparatus main body, the first electric machine is fixedly installed on the inner wall below the first groove, and the first lead screw at the upper end of the first electric machine Is engaged and connected by power, and the upper end of the first lead screw rotates and engages with the inner wall on the upper side of the first groove through a bearing, and the first groove is connected to the first lead screw. Elevating blocks that slide up and down are connected with screws, and this device intelligently and automatically distributes cards with power, reduces manpower operation time, replaces storage batteries when power is insufficient, or charges Just remove the conductor device and take the second start block to stop the device It can, given the convenient use of staff, wider range of applications. [Selection] Figure 1

Description

本発明は機電自動化分野に関し、具体的には、携帯式電力自動化装置である。 The present invention relates to the field of electromechanical automation, and more specifically, a portable power automation device.

我が国は現在に自動化技術レバルがますます向上し、生活においても自動化装置を使用することがある。例えば、公の場所でカードを配るまたは道路でカードを取り出す時に電力駆動の自動化装置が必要だと思う。従来の装置より電力で知能かつ自動化のカードの配りができ、電力不足の時に蓄電池を取り替えればまたは充電すればよく、導線装置を外して第二起動ブロックを取れば装置を停止でき、スタッフの使用に便利を与え、応用の範囲も広い。したがって、知能化の携帯式電力自動化装置を設計するのが実に必要である。 In Japan, the level of automation technology has been improved at present, and automation devices are sometimes used in daily life. For example, I think you need a power-driven automation device when you distribute cards in public places or take out cards on the road. It is possible to distribute intelligent and automated cards with power compared to conventional devices, replace the storage battery or charge it when power is insufficient, remove the lead device and take the second activation block, stop the device, It is convenient to use and has a wide range of applications. Therefore, there is a real need to design intelligent portable power automation devices.

中国特許出願公開第104092580号明細書Chinese Patent Application No. 1040992580

本発明の目的は上記の背景技術に提出された問題を解決するための携帯式電力自動化装置を提供することにある。 An object of the present invention is to provide a portable power automation device for solving the problems submitted to the background art described above.

上記の目的を実現するために、本発明には、本発明の携帯式電力自動化装置は装置主体、前記の装置主体の左側の設置される自動装置、前記の装置主体に設置される起動装置、前記の装置主体に設置される運搬装置と前記の装置主体の左右両側に設置される固定装置を含み、前記の自動装置が前記の装置主体の左端に設置される左に向かう第一溝を含み、前記の第一溝の下側の内壁に第一電機が固定に設置され、前記の第一電機の上端に第一親ねじが動力で係合し接続され、前記の第一親ねじの上端が軸受を通じて前記の第一溝の上側の内壁に回転し係合し接続され、前記の第一親ねじに前記の第一溝の上下にスライドする昇降ブロックがねじで係合し接続され、前記の昇降ブロックの上端に上に向かう第二溝が設置され、前記の第一溝の上側の内壁に第二溝と対合する接続ブロックが固定に接続され、前記の第二溝の左側の内壁に右に向かう第三溝が設置され、前記の第三溝に前記の第三溝に左右にスライドできるかつ右端が前記の接続ブロックと対合するキャッチバーが設置され、前記の第三溝の上下側の内壁に開口が向かい合う第四溝が対称に設置され、前記のキャッチバーの上下端に前記の第四溝に挿入できるかつ前記の第四溝の内壁にスライドし係合し接続される固定ブロックが対称に固定に接続され、前記の固定ブロックの左端にその他の一端が前記の第四溝の右側の内壁に固定に接続される戻しばねが固定に接続され、前記の第三溝の左側の内壁に第一伝動筐体が連通し設置され、前記のキャッチバーの左端が前記の第一伝動筐体に挿入するかつ前記のキャッチバーの左端に前記の第一伝動筐体に左右にスライドする電機ブロックが固定に接続され、前記の第一伝動筐体の左右側の内壁に開口が向かい合う第五溝が対称に設置され、前記の電機ブロックの前後端に前記の第五溝に挿入するかつ前記の第五溝にスライドし係合し接続されるガセットブロックが対称に固定に接続され、前記の第一伝動筐体の下側の内壁に第二伝動筐体が連通し設置され、前記の電機ブロックの下端に第二電機が固定に設置され、前記の第二電機の下端に前記の第二伝動筐体に挿入する第一回転軸が動力で係合し接続され、前記の第一回転軸の下端に第一主動斜歯歯車が固定に接続され、前記の第二伝動筐体の下側の内壁に第三伝動筐体が設置され、前記の第三伝動筐体に上端が前記の第二伝動筐体に挿入するかつ前記の第一主動斜歯歯車と噛合い係合し接続される第一従動斜歯歯車が設置され、前記の第一従動斜歯歯車の軸心に前後端がそれぞれ軸受を通じて前記の第三伝動筐体の左右側の内壁に回転し係合し接続される第二回転軸が固定に接続され、前記の昇降ブロックの下端に下に向かうかつ前記の第三伝動筐体の左側の内壁と連通する第六溝が設置され、前記の第六溝に上端が前記の第二伝動筐体に挿入するかつ軸受を通じて前記の第二伝動筐体の上側の内壁に回転し係合し接続される第三回転軸が設置され、前記の第一回転軸に第一主動歯車が固定に接続され、前記の第二伝動筐体に位置する前記の第三回転軸に前記の第一主動歯車と位置合わせて噛合に係合し接続される第一従動歯車が固定に接続され、前記の第三回転軸の下端に作業ブロックが固定に接続され、前記の作業ブロックに作業装置が設置される。 To achieve the above object, the present invention includes a portable power automation device according to the present invention, a device main body, an automatic device installed on the left side of the device main body, an activation device installed in the device main body, includes a fixing device installed in the left and right sides of the conveying device and the device main body to be installed in the apparatus main body of said comprises a first groove toward left to the automatic device is installed on the left end of the apparatus main body The first electric machine is fixedly installed on the lower inner wall of the first groove, and a first lead screw is engaged with and connected to the upper end of the first electric machine by power, and the upper end of the first lead screw Is rotated and engaged with the inner wall on the upper side of the first groove through a bearing, and a lifting block that slides up and down the first groove is engaged with and connected to the first lead screw. A second groove is installed at the upper end of the lifting block. A connecting block that mates with the second groove is fixedly connected to the inner wall of the second groove, a third groove directed to the right is installed on the left inner wall of the second groove, and the third groove is formed on the third groove. A catch bar that can slide to the left and right and that has a right end that mates with the connection block is installed, and a fourth groove that faces the opening on the inner wall on the upper and lower sides of the third groove is installed symmetrically. A fixed block that can be inserted into the fourth groove at the end and that is slidably engaged with and connected to the inner wall of the fourth groove is fixedly connected symmetrically, and the other end is connected to the left end of the fixed block. A return spring fixedly connected to the inner wall on the right side of the fourth groove is fixedly connected, a first transmission housing is connected to the inner wall on the left side of the third groove, and the left end of the catch bar is Inserted into the first transmission housing and the catch bar Electric block slides to the left and right in the first transmission housing of the on the left end is connected to a fixed, fifth groove opening facing the right and left side of the inner wall of the first transmission housing of the is installed symmetrically, the electric machine A gusset block that is inserted into the fifth groove at the front and rear ends of the block and that is slidably engaged with and connected to the fifth groove is fixedly connected symmetrically, and the lower inner wall of the first transmission housing A first rotating shaft that is inserted into the second transmission housing at the lower end of the second electric machine, and the second electric housing is fixedly installed at the lower end of the electric machine block. Is engaged and connected by power, the first main driving bevel gear is fixedly connected to the lower end of the first rotating shaft, and the third transmission housing is installed on the lower inner wall of the second transmission housing The upper end of the third transmission housing is inserted into the second transmission housing and the first main drive A first driven bevel gear that meshes and engages with the bevel gear is installed, and the front and rear ends of the first driven bevel gear are axially connected to the left and right sides of the third transmission housing through bearings, respectively. A second rotary shaft that rotates and engages and is connected to the inner wall is fixedly connected to the lower end of the elevating block and has a sixth groove that communicates with the inner wall on the left side of the third transmission housing. A third rotating shaft that is installed and has an upper end inserted into the second transmission housing in the sixth groove and rotated and engaged with the inner wall on the upper side of the second transmission housing through a bearing is installed. A first main driving gear is fixedly connected to the first rotating shaft, and is engaged with the third rotating shaft positioned in the second transmission housing in alignment with the first main driving gear. The first driven gear to be connected is fixedly connected, and the work block is fixedly connected to the lower end of the third rotating shaft. Is, the working device is installed on the working block.

好ましい技術プランとして、前記の作業装置が前記の作業ブロックの左右端に対称に固定に設置されるサポートプレートを含み、前記の昇降ブロックの下端に環状ガセット溝が左右対称に設置され、前記のサポートプレートの上端に前記の環状ガセット溝に挿入するかつスライドし係合し接続されるサポートガセットが固定に接続され、前記の作業ブロックの右端に右に向かう第七溝が設置され、前記の第七溝に下端が軸受を通じて前記の第七溝の下側の内壁に回転し係合し接続される第二親ねじが設置され、前記の第六溝の上内壁に下に向かう環状溝が設置され、前記の環状溝の内壁に軸受ガセット装置がスライドし係合し接続され、前記の第二親ねじの上端が前記の第六溝に挿入するかつ軸受を通じて前記の軸受ガセット装置の下端に回転し係合し接続され、前記の第六溝に位置する前記の第二親ねじに右端が前記の第三伝動筐体に挿入する第二従動斜歯歯車が固定に接続され、前記の第二回転軸に前記の第二従動斜歯歯車と噛合い係合し接続される第二主動斜歯歯車が固定に接続され、前記の第七溝に位置する前記の第二親ねじに前記の第七溝に上下に移動する挟みブロックがねじで係合し接続され、前記の挟みブロックに排気装置が固定に設置され、前記の挟みブロックの右端に右に向かう第八溝が設置され、前記の第八溝の上側の内壁と前記の排気装置の間に空気バイブが連通し設置され、前記の第八溝に上下にスライドする挟み板が設置され、前記の挟み板の上端が前記の空気バイブの押出装置に固定に接続される。 As a preferred technical plan, the working device includes a support plate that is fixedly and symmetrically installed on the left and right ends of the work block, and annular gusset grooves are installed symmetrically on the lower end of the elevating block, and the support A support gusset that is inserted into the annular gusset groove and slidably engaged and connected to the upper end of the plate is fixedly connected, and a seventh groove toward the right is installed at the right end of the work block. The groove is provided with a second lead screw whose lower end rotates and engages with the inner wall on the lower side of the seventh groove through a bearing, and an annular groove directed downward on the upper inner wall of the sixth groove. The bearing gusset device is slidably engaged with and connected to the inner wall of the annular groove, and the upper end of the second lead screw is inserted into the sixth groove and is rotated to the lower end of the bearing gusset device through the bearing. And a second driven bevel gear having a right end inserted into the third transmission housing is fixedly connected to the second lead screw located in the sixth groove and fixedly connected to the second lead screw. A second main drive bevel gear connected to and engaged with the second driven bevel gear is fixedly connected to the rotation shaft, and the second lead screw located in the seventh groove is connected to the second lead screw. A sandwiching block that moves up and down is engaged with and connected to the seventh groove with a screw, an exhaust device is fixedly installed on the sandwiching block, an eighth groove directed to the right is installed on the right end of the sandwiching block, An air vibrator is provided in communication between the inner wall on the upper side of the eighth groove and the exhaust device, a sandwich plate that slides up and down is installed in the eighth groove, and the upper end of the sandwich plate is the air vibrator. Fixedly connected to the extrusion device.

好ましい技術プランとして、前記の起動装置が前記の装置主体の上端に設置される上に向かう第九溝を含み、前記の第九溝に第一起動ブロックが回転軸を通じて回転し係合し接続され、前記の第一起動ブロックの上端に上に向かう第十溝が設置され、前記の第十溝の左右側の内壁に第一スルーホールが対称に設置され、前記の第十溝の左右側の内壁と前記の第一スルーホールの下側に第二スルーホールが対称に設置され、前記の第九溝の左右側の内壁に開口が向かい合うかつそれぞれ前記の第一スルーホール及び第二スルーホールと位置合わせの第十一溝と第十二溝が対称に設置され、前記の第十一溝と第一スルーホールに左右にスライドする第一引掛りブロックが設置され、前記の第一引掛りブロックの上下端に前記の第一スルーホールの上下側の内壁に対称に設置される開口が相対する導滑溝に挿入する第一定向ブロックが固定に接続され、前記の第一定向ブロックの右端又は左端には、一端が前記の導滑溝のうち前記の第十一溝の片側に近接する内壁に固定的に接続される第一ばねが、固定的に接続され、前記の第二スルーホールに左右にスライドする第二引掛りブロックが設置され、前記の第二スルーホールの上下側の内壁に開口が相対する定向溝が対称に設置され、前記の第二引掛りブロックの上下端に前記の定向溝に挿入するかつ左右にスライドする第二定向ブロックが対称に固定に設置され、前記の第二スルーホールに左右にスライドするかつ前記の第二引掛りブロックと当たるかつ一端が前記の第十二溝に挿入する第三引掛りブロックが設置され、前記の第三引掛りブロックと前記の第十二溝の間に第二ばねが固定に接続され、前記の第十溝に前記の第十溝に上下にスライドするかつ下端が前記の第二引掛りブロックと対合する第二起動ブロックが設置され、前記の第二起動ブロックの左右側の内壁に前記の第一引掛りブロックと対合するカードスロットが対称に設置され、前記の第二起動ブロックの上端に握りブロックが接続され、前記の第一起動ブロックの上端に上に向かう第十三溝が左右対称に設置され、前記の握りブロックの下端に前記の第十三溝と対合する第四引掛りブロックが左右対称で固定に接続され、前記の第一起動ブロックの下端に導線装置が固定に設置され、前記の第九溝の右側の内壁に導線を通じて前記の第九溝に連通する蓄電池が固定に設置され、前記の第九溝の左側の内壁に総電力出力導線が設置される。 As a preferred technical plan, the activation device includes an upward ninth groove installed at an upper end of the device main body, and the first activation block is rotated and engaged through a rotation shaft and connected to the ninth groove. A tenth groove extending upward is formed at the upper end of the first activation block, and first through holes are symmetrically installed on inner walls on the left and right sides of the tenth groove, and on the left and right sides of the tenth groove. A second through hole is symmetrically installed on the inner wall and the lower side of the first through hole, and the opening faces the inner wall on the left and right sides of the ninth groove, and the first through hole and the second through hole, respectively. The eleventh groove and the twelfth groove are aligned symmetrically, and the first hook block that slides left and right is installed in the eleventh groove and the first through hole. Of the first through hole The constant direction block is connected to a fixed opening installed symmetrically on the lower side of the inner wall is inserted into the opposite ShirubeNamera groove, said the right or left end of the first constant direction block, one end of said guide A first spring block fixedly connected to an inner wall adjacent to one side of the eleventh groove of the sliding groove is fixedly connected and slides left and right into the second through hole. Are installed in the upper and lower inner walls of the second through hole symmetrically, and are inserted into the directed grooves at the upper and lower ends of the second hooking block and slide left and right. A third hook that is fixedly symmetrically fixed, slides to the left and right through the second through-hole, contacts the second hooking block, and has one end inserted into the twelfth groove. The block is installed and the third hook A second spring is fixedly connected between the block and the twelfth groove, slides up and down into the tenth groove in the tenth groove, and a lower end is mated with the second catching block. A second activation block is installed, and a card slot that mates with the first catching block is symmetrically installed on the inner walls on the left and right sides of the second activation block, and a grip block is provided at the upper end of the second activation block. Is connected to the upper end of the first activation block, and the fourth catching block that is aligned with the thirteenth groove is provided at the lower end of the grip block. Symmetrically fixed and fixedly connected , a lead wire device is fixedly installed at the lower end of the first starting block, and a storage battery communicating with the ninth groove through the lead wire is fixedly installed on the inner wall on the right side of the ninth groove The total inner wall on the left side of the ninth groove A power output lead is installed.

好ましい技術プランとして、前記の運搬装置が前記の第九溝の下側の内壁にある運搬筐体を含み、前記の運搬筐体に運搬輪装置が設置され、前記の運搬筐体の下側の内壁の右側にカード筐体が連通し設置され、前記のカード筐体の右側の内壁に右に向かう第十四溝が設置され、前記の第十四溝の上側の内壁に第三電機が固定に設置され、前記の第三電機の下端に下端が軸受を通じて前記の第十四溝の下側の内壁に回転し係合し接続される第三親ねじが動力で係合し接続され、前記の第三親ねじに前記の第十四溝に上下にスライドする運搬板がねじで係合し接続され、前記のカード筐体の左側の内壁に前記の運搬筐体に連通するかつ前記の第八溝と位置合わせるカード出し穴が貫通し設置される。 As a preferred technical plan, the transport device includes a transport housing on an inner wall on the lower side of the ninth groove, and a transport wheel device is installed on the transport housing. A card casing is connected to the right side of the inner wall, a fourteenth groove is formed on the right inner wall of the card casing, and a third electric machine is fixed to the upper inner wall of the fourteenth groove. A third lead screw that is engaged with and connected to the lower inner wall of the third electric machine through the bearing and rotated and engaged with the lower inner wall of the fourteenth groove, The third lead screw is connected to the transport plate that slides up and down in the fourteenth groove with a screw, and communicates with the transport housing on the left inner wall of the card housing. A card outlet hole that aligns with the eight groove is installed.

好ましい技術プランとして、前記の蓄電池の上端に装置主体を通過する充電導線が設置され、前記の充電導線が前記の蓄電池に充電でき、前記の蓄電池の右側にボルトを通じて前記の装置主体の右端に係合し接続し固定される封鎖板が設置され、前記の封鎖板を開けて前記の蓄電池を取り替えることができる。 As a preferred technical plan, a charging lead passing through the device main body is installed at the upper end of the storage battery , the charging lead can charge the storage battery, and the right side of the storage battery is connected to the right end of the device main body through a bolt. A sealing plate to be connected and fixed is installed, and the storage battery can be replaced by opening the sealing plate.

好ましい技術プランとして、前記の装置主体の左端面の上端に感応装置が固定に接続され、前記の感応装置がスタッフに感応すると装置を作業させ、前記の第八溝の左側の内壁にカード感応器が固定に接続される。 As a preferred technical plan, a sensitive device is fixedly connected to the upper end of the left end surface of the device main body, and when the sensitive device senses a staff, the device is operated, and a card sensitive device is attached to the left inner wall of the eighth groove. Is fixedly connected.

好ましい技術プランとして、前記の固定装置が前記の装置主体の左右両端に対称で固定に接続される底板ブロックを含み、前記の底板ブロックに上下に貫通するボルト穴が設置され、前記のボルト穴と地面をボルトで係合し接続することで装置の安定性を増加できる。 As a preferred technical plan, the fixing device includes a bottom plate block that is symmetrically connected to both right and left ends of the main body of the device, and a bolt hole penetrating vertically is provided in the bottom plate block. The stability of the device can be increased by engaging and connecting the ground with bolts.

本発明の有益効果は:本発明は構造が簡単で、操作が便利で、本装置を通じて自動化カード取り作業を行う時、本装置を通じて自動化カード取り作業を行う時、スタッフが第二起動ブロックを挿入することで第一引掛りブロックをカードスロットに挿入させ、第二引掛りブロックが第二スルーホールに押し込まれて第三引掛りブロックを連れて第十二溝に挿入して第一起動ブロックに引っ掛らなく、この時、第四引掛りブロックが第十三溝に挿入して第一起動ブロックを回転し、導線装置を総電力出力導線と位置合わせて装置に電流を通し、この時に、感応装置が感応する時に運搬輪装置が回転してカードを第八溝に入れ、カード感応器が感応し、排気装置が起動してカードを挟み、この後、第二電機が起動して第一主動歯車を連れて回転して第一従動斜歯歯車を連れて回転し、それによって第二回転軸が第二主動斜歯歯車を連れて回転し、それによって第二従動斜歯歯車が第二親ねじを連れて回転して挟みブロックを上に移動し、同時に第一電機が起動して第一親ねじを連れて回転して昇降ブロックを一番高いところに移動し、この時、第二電機が第二溝に挿入してキャッチバーを左に移動し、それによって電機ブロックが左に移動し、第一主動歯車と第一従動歯車が噛み合い、第二電機が起動して第三回転軸を連れて作業ブロックを回転し、それによって第八溝が回転してスタッフに向かい、カードが取り出された後で初期状態に戻り、第一電機が回転して昇降ブロックを連れて下に移動し、キャッチバーが初期位置に戻り、電機ブロックが右に移動して初期状態に戻る時に第二電機が起動して第二親ねじを連れて回転し、挟みブロックが初期状態に戻って次のスタッフを待ち、電力が不足になると充電導線を通じて蓄電池に充電でき、封鎖板を開けて蓄電池を取り替えることができ、本装置は電力で知能かつ自動的にカードを配って、人力運営時間を減少し、電力不足の時に蓄電池を取り替えればまたは充電すればよく、導線装置を外して第二起動ブロックを取れば装置を停止でき、スタッフの使用に便利を与え、応用の範囲も広い。 Advantages of the present invention: The present invention is simple in structure, convenient to operate, when performing automated card removal work through this device, when inserting automated card removal work through this device, the staff inserts the second activation block The first hook block is inserted into the card slot, the second hook block is pushed into the second through hole, and the third hook block is inserted into the twelfth groove to become the first start block. At this time, the fourth hooking block is inserted into the thirteenth groove to rotate the first starting block, align the conductor device with the total power output conductor, and pass current through the device. When the sensitive device senses, the carrier wheel device rotates to insert the card into the eighth groove, the card sensitive device senses, the exhaust device activates to pinch the card, and then the second electric machine activates to Rotate with the main gear Rotates with the first driven bevel gear, thereby rotating the second rotating shaft with the second main driven bevel gear, thereby rotating the second driven bevel gear with the second lead screw At the same time, the first electric machine starts up and rotates with the first lead screw to move the lifting block to the highest position. At this time, the second electric machine is inserted into the second groove. The catch bar is moved to the left, thereby moving the electric block to the left, the first main driving gear and the first driven gear are engaged, the second electric motor is activated, and the work block is rotated with the third rotating shaft. Then, the eighth groove rotates to the staff, returns to the initial state after the card is taken out, the first electric machine rotates to move down with the lifting block, the catch bar returns to the initial position When the electric block moves to the right and returns to the initial state, The electric machine starts up and rotates with the second lead screw, the pin block returns to the initial state and waits for the next staff, and when the power is insufficient, the storage battery can be charged through the charging lead, and the storage battery is opened by replacing the storage battery This device can intelligently and automatically distribute cards with power, reduce manpower operation time, replace the storage battery or charge when power shortage, remove the lead device and the second activation block If you take it, you can shut down the device, give convenience to staff use, and have a wide range of applications.

説明しやすいため、本発明は以下の具体的な実施例と付図を交え詳しく説明する。 For ease of explanation, the present invention will be described in detail with reference to the following specific embodiments and accompanying drawings.

図1は本発明の携帯式電力自動化装置の内部構造概略図である。FIG. 1 is a schematic diagram of the internal structure of a portable power automation device of the present invention. 図2は図1の“A”の拡大概略図である。FIG. 2 is an enlarged schematic view of “A” in FIG. 図3は図1の“B”の拡大概略図である。FIG. 3 is an enlarged schematic view of “B” in FIG.

図1〜3が示すように、本発明の携帯式電力自動化装置は装置主体10、前記の装置主体10の左側の設置される自動装置、前記の装置主体10に設置される起動装置、前記の装置主体10に設置される運搬装置と前記の装置主体10の左右両側に設置される固定装置を含み、
前記の自動装置が前記の装置主体10の左端に設置される左に向かう第一溝11を含み、前記の第一溝11の下側の内壁に第一電機12が固定に設置され、前記の第一電機12の上端に第一親ねじ13が動力で係合し接続され、前記の第一親ねじ13の上端が軸受を通じて前記の第一溝11の上側の内壁に回転し係合し接続され、前記の第一親ねじ13に前記の第一溝11の上下にスライドする昇降ブロック14がねじで係合し接続され、前記の昇降ブロック14の上端に上に向かう第二溝15が設置され、前記の第一溝11の上側の内壁に第二溝15と対合する接続ブロック25が固定に接続され、前記の第二溝15の左側の内壁に右に向かう第三溝16が設置され、前記の第三溝16に前記の第三溝に左右にスライドできるかつ右端が前記の接続ブロック25と対合するキャッチバー17が設置され、前記の第三溝16の上下側の内壁に開口が向かい合う第四溝18が対称に設置され、前記のキャッチバー17の上下端に前記の第四溝18に挿入できるかつ前記の第四溝18の内壁にスライドし係合し接続される固定ブロック19が対称に固定に接続され、前記の固定ブロック19の左端にその他の一端が前記の第四溝18の右側の内壁に固定に接続される戻しばね20が固定に接続され、前記の第三溝16の左側の内壁に第一伝動筐体21が連通し設置され、前記のキャッチバー17の左端が前記の第一伝動筐体21に挿入するかつ前記のキャッチバー17の左端に前記の第一伝動筐体21に左右にスライドする電機ブロック23が固定に接続され、前記の第一伝動筐体21の左右側の内壁に開口が向かい合う第五溝22が対称に設置され、前記の電機ブロック23の前後端に前記の第五溝22に挿入するかつ前記の第五溝22にスライドし係合し接続されるガセットブロックが対称に固定に接続され、前記の第一伝動筐体21の下側の内壁に第二伝動筐体24が連通し設置され、前記の電機ブロック23の下端に第二電機99が固定に設置され、前記の第二電機99の下端に前記の第二伝動筐体24に挿入する第一回転軸26が動力で係合し接続され、前記の第一回転軸26の下端に第一主動斜歯歯車27が固定に接続され、前記の第二伝動筐体24の下側の内壁に第三伝動筐体28が設置され、前記の第三伝動筐体28に上端が前記の第二伝動筐体24に挿入するかつ前記の第一主動斜歯歯車27と噛合い係合し接続される第一従動斜歯歯車29が設置され、前記の第一従動斜歯歯車29の軸心に前後端がそれぞれ軸受を通じて前記の第三伝動筐体28の左右側の内壁に回転し係合し接続される第二回転軸30が固定に接続され、前記の昇降ブロック14の下端に下に向かうかつ前記の第三伝動筐体28の左側の内壁と連通する第六溝31が設置され、前記の第六溝31に上端が前記の第二伝動筐体24に挿入するかつ軸受を通じて前記の第二伝動筐体24の上側の内壁に回転し係合し接続される第三回転軸32が設置され、前記の第一回転軸26に第一主動歯車35が固定に接続され、前記の第二伝動筐体24に位置する前記の第三回転軸32に前記の第一主動歯車35と位置合わせて噛合に係合し接続される第一従動歯車33が固定に接続され、前記の第三回転軸32の下端に作業ブロック34が固定に接続され、前記の作業ブロック34に作業装置が設置される。
As shown in FIGS. 1 to 3, the portable power automation device of the present invention includes a device main body 10, an automatic device installed on the left side of the device main body 10, an activation device installed in the device main body 10, wherein the conveying apparatus installed in the apparatus main body 10 of the fixing device to be installed on the left and right sides of the apparatus main body 10,
The automatic device includes a first groove 11 directed leftward installed at the left end of the device main body 10, and a first electric machine 12 is fixedly installed on an inner wall below the first groove 11, A first lead screw 13 is engaged and connected to the upper end of the first electric machine 12 by power, and the upper end of the first lead screw 13 is rotated and engaged with the inner wall on the upper side of the first groove 11 through a bearing. An elevating block 14 that slides up and down the first groove 11 is connected to the first lead screw 13 with a screw, and a second groove 15 directed upward is installed at the upper end of the elevating block 14. The connection block 25 that mates with the second groove 15 is fixedly connected to the inner wall on the upper side of the first groove 11, and the third groove 16 directed to the right is installed on the left inner wall of the second groove 15. The third groove 16 can slide left and right in the third groove and the right end is the front A catch bar 17 that mates with the connection block 25 is installed, a fourth groove 18 that faces the opening on the inner wall on the upper and lower sides of the third groove 16 is symmetrically installed, and the upper and lower ends of the catch bar 17 are A fixed block 19 that can be inserted into the fourth groove 18 and is slidably engaged with and connected to the inner wall of the fourth groove 18 is connected symmetrically, and the other end is connected to the left end of the fixed block 19. A return spring 20 fixedly connected to the inner wall on the right side of the fourth groove 18 is fixedly connected, and a first transmission housing 21 is placed in communication with the inner wall on the left side of the third groove 16 so that the catch The left end of the bar 17 is inserted into the first transmission housing 21 and the left end of the catch bar 17 is fixedly connected to an electric block 23 that slides left and right on the first transmission housing 21 . One transmission housing 21 A fifth groove 22 facing the opening is symmetrically installed on the left inner wall, and is inserted into the fifth groove 22 at the front and rear ends of the electric block 23 and slides into and engages with the fifth groove 22. The gusset blocks are connected symmetrically and fixedly, the second transmission casing 24 is connected to the lower inner wall of the first transmission casing 21, and the second electric machine 99 is connected to the lower end of the electric block 23. Is fixedly installed, and a first rotary shaft 26 inserted into the second transmission housing 24 is engaged with and connected to the lower end of the second electric machine 99 by power, and is connected to the lower end of the first rotary shaft 26. A first main drive bevel gear 27 is fixedly connected, a third transmission case 28 is installed on the lower inner wall of the second transmission case 24, and the upper end of the third transmission case 28 has the upper end described above. Inserted into the second transmission housing 24 and meshingly engaged with the first main drive bevel gear 27. A first driven bevel gear 29 to be connected is installed, and the front and rear ends of the first driven bevel gear 29 are rotated on the left and right inner walls of the third transmission housing 28 through bearings. The second rotary shaft 30 to be connected is fixedly connected, and a sixth groove 31 is installed at the lower end of the lifting block 14 and communicates with the inner wall on the left side of the third transmission housing 28. A third rotary shaft 32 whose upper end is inserted into the second transmission housing 24 in the sixth groove 31 and is rotated and engaged with the inner wall on the upper side of the second transmission housing 24 through a bearing. The first main driving gear 35 is fixedly connected to the first rotation shaft 26, and the first main driving gear 35 is connected to the third rotation shaft 32 located in the second transmission housing 24. The first driven gear 33 that is engaged and connected to the meshing position is fixedly connected, and the front Lower working block 34 of the third rotating shaft 32 is connected to a fixed, the working device is installed in the working block 34.

有益なことは、前記の作業装置が前記の作業ブロック34の左右端に対称に固定に設置されるサポートプレート84を含み、前記の昇降ブロック14の下端に環状ガセット溝86が左右対称に設置され、前記のサポートプレート84の上端に前記の環状ガセット溝86に挿入するかつスライドし係合し接続されるサポートガセット85が固定に接続され、前記の作業ブロック34の右端に右に向かう第七溝36が設置され、前記の第七溝36に下端が軸受を通じて前記の第七溝36の下側の内壁に回転し係合し接続される第二親ねじ37が設置され、前記の第六溝31の上内壁に下に向かう環状溝38が設置され、前記の環状溝38の内壁に軸受ガセット装置39がスライドし係合し接続され、前記の第二親ねじ37の上端が前記の第六溝31に挿入するかつ軸受を通じて前記の軸受ガセット装置39の下端に回転し係合し接続され、前記の第六溝31に位置する前記の第二親ねじ37に右端が前記の第三伝動筐体28に挿入する第二従動斜歯歯車40が固定に接続され、前記の第二回転軸30に前記の第二従動斜歯歯車40と噛合い係合し接続される第二主動斜歯歯車41が固定に接続され、前記の第七溝36に位置する前記の第二親ねじ37に前記の第七溝36に上下に移動する挟みブロック42がねじで係合し接続され、前記の挟みブロック42に排気装置43が固定に設置され、前記の挟みブロック42の右端に右に向かう第八溝44が設置され、前記の第八溝44の上側の内壁と前記の排気装置43の間に空気バイブ45が連通し設置され、前記の第八溝44に上下にスライドする挟み板46が設置され、前記の挟み板46の上端が前記の空気バイブ45の押出装置47に固定に接続される。 Beneficially, the working device includes a support plate 84 that is fixed symmetrically to the left and right ends of the working block 34, and an annular gusset groove 86 is symmetrically installed at the lower end of the elevating block 14. A support gusset 85 inserted into the annular gusset groove 86 and slidably engaged and connected to the upper end of the support plate 84 is fixedly connected to the right end of the work block 34, and the seventh groove is directed to the right. 36, and a second lead screw 37 is installed in the seventh groove 36. The second lead screw 37 is rotated and engaged with the inner wall on the lower side of the seventh groove 36 through a bearing. An annular groove 38 directed downward is formed on the upper inner wall of the bearing 31, and a bearing gusset device 39 is slidably engaged with and connected to the inner wall of the annular groove 38. The upper end of the second lead screw 37 is the sixth inner thread. Groove 3 And is engaged with and connected to the lower end of the bearing gusset device 39 through a bearing, and the right end of the second lead screw 37 located in the sixth groove 31 is the third transmission housing 28. A second driven inclined gear 41 is fixedly connected to the second rotating shaft 30 and is engaged with and connected to the second rotating shaft 30 by the second driven inclined gear 41. A pin block 42 that is fixedly connected to the second lead screw 37 positioned in the seventh groove 36 and that moves up and down in the seventh groove 36 is engaged and connected by a screw. The pin block 42 The exhaust device 43 is fixedly installed, an eighth groove 44 directed rightward is installed at the right end of the sandwiching block 42, and an air vibrator is provided between the inner wall on the upper side of the eighth groove 44 and the exhaust device 43. 45 is connected to the eighth groove 44 in the vertical direction. Pinching plate 46 which id is installed, the upper end of said pinching plate 46 is connected to the fixed extrusion device 47 of the air vibrator 45.

有益なことは、前記の起動装置が前記の装置主体10の上端に設置される上に向かう第九溝48を含み、前記の第九溝48に第一起動ブロック49が回転軸を通じて回転し係合し接続され、前記の第一起動ブロック49の上端に上に向かう第十溝50が設置され、前記の第十溝50の左右側の内壁に第一スルーホール51が対称に設置され、前記の第十溝50の左右側の内壁と前記の第一スルーホール51の下側に第二スルーホール52が対称に設置され、前記の第九溝48の左右側の内壁に開口が向かい合うかつそれぞれ前記の第一スルーホール51及び第二スルーホール52と位置合わせの第十一溝53と第十二溝54が対称に設置され、前記の第十一溝53と第一スルーホール51に左右にスライドする第一引掛りブロック55が設置され、前記の第一引掛りブロック55の上下端に前記の第一スルーホール51の上下側の内壁に対称に設置される開口が相対する導滑溝56に挿入する第一定向ブロック57が固定に接続され、前記の第一定向ブロック57の右端又は左端には、一端が前記の導滑溝56のうち前記の第十一溝53の片側に近接する内壁に固定的に接続される第一ばね58が、固定的に接続され、前記の第二スルーホール52に左右にスライドする第二引掛りブロック59が設置され、前記の第二スルーホール52の上下側の内壁に開口が相対する定向溝60が対称に設置され、前記の第二引掛りブロック59の上下端に前記の定向溝60に挿入するかつ左右にスライドする第二定向ブロック61が対称に固定に設置され、前記の第二スルーホール52に左右にスライドするかつ前記の第二引掛りブロック59と当たるかつ一端が前記の第十二溝54に挿入する第三引掛りブロック62が設置され、前記の第三引掛りブロック62と前記の第十二溝54の間に第二ばね63が固定に接続され、前記の第十溝50に前記の第十溝50に上下にスライドするかつ下端が前記の第二引掛りブロック59と対合する第二起動ブロック64が設置され、前記の第二起動ブロック64の左右側の内壁に前記の第一引掛りブロック55と対合するカードスロットが65対称に設置され、前記の第二起動ブロック64の上端に握りブロック66が接続され、前記の第一起動ブロック49の上端に上に向かう第十三溝67が左右対称に設置され、前記の握りブロック66の下端に前記の第十三溝67と対合する第四引掛りブロック68が左右対称で固定に接続され、前記の第一起動ブロック64の下端に導線装置69が固定に設置され、前記の第九溝48の右側の内壁に導線を通じて前記の第九溝48に連通する蓄電池70が固定に設置され、前記の第九溝48の左側の内壁に総電力出力導線71が設置される。 Beneficially, the activation device includes an upward ninth groove 48 installed at the upper end of the apparatus main body 10, and the first activation block 49 rotates through a rotation shaft in the ninth groove 48. A tenth groove 50 is installed on the upper end of the first activation block 49, and the first through holes 51 are symmetrically installed on the left and right inner walls of the tenth groove 50. The second through holes 52 are symmetrically installed on the left and right inner walls of the tenth groove 50 and below the first through holes 51, and the openings face the inner walls on the left and right sides of the ninth groove 48, respectively. The eleventh groove 53 and the twelfth groove 54 aligned with the first through hole 51 and the second through hole 52 are provided symmetrically, and the eleventh groove 53 and the first through hole 51 are laterally arranged. The first catch block 55 that slides is installed. The first fixed block 57 is inserted into the guide groove 56 opposite to the upper and lower ends of the first hook block 55 and the openings provided symmetrically on the inner walls on the upper and lower sides of the first through hole 51 are opposed to each other. One end of the first fixed-direction block 57 is fixedly connected to the inner wall of the guide groove 56 adjacent to one side of the eleventh groove 53. A first spring 58 is fixedly connected , a second hooking block 59 that slides left and right is installed in the second through hole 52, and an opening is made relative to the inner wall on the upper and lower sides of the second through hole 52. The second direction block 60 is installed symmetrically, and the second direction block 61 which is inserted into the direction direction groove 60 and slides left and right is installed symmetrically and fixed at the upper and lower ends of the second catch block 59. Left and right to the second through hole 52 A third hook block 62 is installed, which slides and contacts the second hook block 59 and has one end inserted into the twelfth groove 54, and the third hook block 62 and the twelfth. A second spring 63 is fixedly connected between the grooves 54, slides up and down into the tenth groove 50 in the tenth groove 50, and has a lower end mating with the second catching block 59. An activation block 64 is installed, and on the left and right inner walls of the second activation block 64, a card slot that mates with the first catching block 55 is symmetrically installed, and an upper end of the second activation block 64 is arranged. The grip block 66 is connected to the upper end of the first activation block 49, and a thirteenth groove 67 is provided symmetrically on the upper end of the first activation block 49. The grip block 66 is paired with the thirteenth groove 67 at the lower end. 4th hook to join A block 68 is symmetrically fixedly connected to the left and right , a wire device 69 is fixedly installed at the lower end of the first activation block 64 , and is connected to the ninth groove 48 through a conductor on the right inner wall of the ninth groove 48. The communicating storage battery 70 is fixedly installed, and the total power output conductor 71 is installed on the left inner wall of the ninth groove 48.

有益なことは、前記の運搬装置が前記の第九溝48の下側の内壁にある運搬筐体72を含み、前記の運搬筐体72に運搬輪装置73が設置され、前記の運搬筐体72の下側の内壁の右側にカード筐体74が連通し設置され、前記のカード筐体74の右側の内壁に右に向かう第十四溝75が設置され、前記の第十四溝75の上側の内壁に第三電機76が固定に設置され、,前記の第三電機76の下端に下端が軸受を通じて前記の第十四溝75の下側の内壁に回転し係合し接続される第三親ねじ77が動力で係合し接続され、前記の第三親ねじ77に前記の第十四溝75に上下にスライドする運搬板78がねじで係合し接続され、前記のカード筐体74の左側の内壁に前記の運搬筐体に連通するかつ前記の第八溝44と位置合わせるカード出し穴79が貫通し設置される。 Beneficially, the transport device includes a transport housing 72 on an inner wall below the ninth groove 48, and a transport wheel device 73 is installed on the transport housing 72, and the transport housing is A card housing 74 is provided in communication with the right side of the lower inner wall of 72, and a fourteenth groove 75 directed to the right is provided on the inner wall on the right side of the card housing 74. A third electric machine 76 is fixedly installed on the upper inner wall, and a lower end of the third electric machine 76 is rotated and engaged with and connected to the lower inner wall of the fourteenth groove 75 through a bearing. A three lead screw 77 is engaged and connected by power, and a conveying plate 78 that slides up and down in the fourteenth groove 75 is engaged and connected to the third lead screw 77 by the screw. A card outlet hole that communicates with the transport housing and is aligned with the eighth groove 44 on the left inner wall of 74. 9 is installed through.

有益なことは、前記の蓄電池70の上端に装置主体10を通過する充電導線80が設置され、前記の充電導線80が前記の蓄電池70に充電でき、前記の蓄電池70の右側にボルトを通じて前記の装置主体10の右端に係合し接続し固定される封鎖板81が設置され、前記の封鎖板81を開けて前記の蓄電池70を取り替えることができる。 Beneficially, a charging lead 80 passing through the apparatus main body 10 is installed at the upper end of the storage battery 70 , the charging lead 80 can charge the storage battery 70, and the storage battery 70 is connected to the right side of the storage battery 70 through a bolt. A sealing plate 81 that is engaged with, connected to, and fixed to the right end of the apparatus main body 10 is installed, and the storage battery 70 can be replaced by opening the sealing plate 81.

有益なことは、前記の装置主体10の左端面の上端に感応装置82が固定に接続され、前記の感応装置82がスタッフに感応すると装置を作業させ、前記の第八溝44の左側の内壁にカード感応器83が固定に接続される。 Beneficially, a sensitive device 82 is fixedly connected to the upper end of the left end surface of the device main body 10, and when the sensitive device 82 senses the staff, the device is operated, and the left inner wall of the eighth groove 44 is operated. The card sensor 83 is fixedly connected.

有益なことは、前記の固定装置が前記の装置主体10の左右両端に対称で固定に接続される底板ブロック90を含み、前記の底板ブロック90に上下に貫通するボルト穴91が設置され、前記のボルト穴91と地面をボルトで係合し接続することで装置の安定性を増加できる。 Beneficially, the fixing device includes a bottom plate block 90 that is symmetrically fixedly connected to the left and right ends of the device main body 10, and bolt holes 91 penetrating vertically are installed in the bottom plate block 90. By engaging and connecting the bolt hole 91 and the ground with a bolt, the stability of the apparatus can be increased.

初期状態にある時、挟みブロック42が一番下側にあるかつ第八溝44の開口がカード出し穴79に向かい、昇降ブロック14が一番下端にあり、電機ブロック23が一番右側で第一主動歯車57と第一従動斜歯歯車29を噛合で係合し接続させ、第一引掛りブロック55が第一スルーホール51に挿入して引掛り、第三引掛りブロック62が第二スルーホール52に挿入して引掛り、導線装置69が総電力出力導線71と外れて接続されていない。 When in the initial state, the sandwiching block 42 is at the lowermost side and the opening of the eighth groove 44 faces the card outlet hole 79, the elevating block 14 is at the lowermost end, and the electric block 23 is at the rightmost position. The first driving gear 57 and the first driven inclined gear 29 are engaged and connected to each other, the first hooking block 55 is inserted into the first through hole 51 and hooked, and the third hooking block 62 is connected to the second through hole. The conductor device 69 is not connected to the total power output conductor 71 by being inserted into the hole 52 and hooked.

本装置を通じて自動化カード取り作業を行う時、スタッフが第二起動ブロック64を挿入することで第一引掛りブロック55をカードスロット65に挿入させ、第二引掛りブロック59が第二スルーホール52に押し込まれて第三引掛りブロック62を連れて第十二溝54に挿入して第一起動ブロック49に引っ掛らなく、この時、第四引掛りブロック68が第十三溝67に挿入して第一起動ブロック49を回転し、導線装置69を総電力出力導線71と位置合わせて装置に電流を通し、この時に、感応装置82が感応する時に運搬輪装置73が回転してカードを第八溝44に入れ、カード感応器83が感応し、排気装置が起動してカードを挟み、この後、第二電機99が起動して第一主動歯車57を連れて回転して第一従動斜歯歯車29を連れて回転し、それによって第二回転軸30が第二主動斜歯歯車41を連れて回転し、それによって第二従動斜歯歯車40が第二親ねじ37を連れて回転して挟みブロック42を上に移動し、同時に第一電機12が起動して第一親ねじ13を連れて回転して昇降ブロック14を一番高いところに移動し、この時、第二電機99が第二溝15に挿入してキャッチバー17を左に移動し、それによって電機ブロック23が左に移動し、第一主動歯車35と第一従動歯車33が噛み合い、第二電機99が起動して第三回転軸を連れて作業ブロックを回転し、それによって第八溝44が回転してスタッフに向かい、カードが取り出された後で初期状態に戻り、第一電機12が回転して昇降ブロック14を連れて下に移動し、キャッチバー17が初期位置に戻り、電機ブロック23が右に移動して初期状態に戻る時に第二電機99が起動して第二親ねじ37を連れて回転し、挟みブロック42が初期状態に戻って次のスタッフを待ち、電力が不足になると充電導線80を通じて蓄電池70に充電でき、封鎖板81を開けて蓄電池を取り替えることができる。 When performing an automated card picking operation through this apparatus, the staff inserts the second activation block 64 to insert the first catch block 55 into the card slot 65, and the second catch block 59 enters the second through hole 52. It is pushed in and inserted into the twelfth groove 54 with the third hooking block 62 and does not catch on the first activation block 49. At this time, the fourth hooking block 68 is inserted into the thirteenth groove 67. The first activation block 49 is rotated, and the lead wire device 69 is aligned with the total power output lead wire 71 and current is passed through the device. At this time, when the sensitive device 82 is sensitive, the transport wheel device 73 is rotated and the card is inserted. Inserted into the eight groove 44, the card sensation device 83 is responsive, the exhaust device is activated to pinch the card, and then the second electric machine 99 is activated to rotate with the first main driving gear 57 to rotate the first driven oblique Tooth gear 29 Accordingly, the second rotating shaft 30 is rotated with the second main driving bevel gear 41, whereby the second driven bevel gear 40 is rotated with the second lead screw 37 and the pinching block 42 is rotated. At the same time, the first electric machine 12 is started and rotated with the first lead screw 13 to move the lifting block 14 to the highest position. At this time, the second electric machine 99 is moved to the second groove 15. And the catch bar 17 is moved to the left, whereby the electric machine block 23 is moved to the left, the first main driving gear 35 and the first driven gear 33 are engaged, the second electric machine 99 is activated, and the third rotating shaft Rotate the work block by moving the eighth groove 44 toward the staff, return to the initial state after the card is removed, rotate the first electric machine 12 and bring the lifting block 14 down. And the catch bar 17 is in the initial position. The return, the second electric machine 99 when returning to the initial state is rotated to bring the second lead screw 37 to start electric block 23 is moved to the right, sandwiching the block 42 is returned to the initial state waits for the next staff When the power becomes insufficient, the storage battery 70 can be charged through the charging lead 80, and the storage battery 81 can be replaced by opening the sealing plate 81.

Claims (1)

携帯式電力自動化装置であって、
装置主体、前記の装置主体の左側の設置される自動装置、前記の装置主体に設置される起動装置、前記の装置主体に設置される運搬装置と前記の装置主体の左右両側に設置される固定装置を含み、
前記の自動装置が前記の装置主体の左端に設置される左に向かう第一溝を含み、前記の第一溝の下側の内壁に第一電機が固定に設置され、前記の第一電機の上端に第一親ねじが動力で係合し接続され、前記の第一親ねじの上端が軸受を通じて前記の第一溝の上側の内壁に回転し係合し接続され、前記の第一親ねじに前記の第一溝の上下にスライドする昇降ブロックがねじで係合し接続され、前記の昇降ブロックの上端に上に向かう第二溝が設置され、前記の第一溝の上側の内壁に第二溝と対合する接続ブロックが固定に接続され、前記の第二溝の左側の内壁に右に向かう第三溝が設置され、前記の第三溝に前記の第三溝に左右にスライドできるかつ右端が前記の接続ブロックと対合するキャッチバーが設置され、前記の第三溝の上下側の内壁に開口が向かい合う第四溝が対称に設置され、前記のキャッチバーの上下端に前記の第四溝に挿入できるかつ前記の第四溝の内壁にスライドし係合し接続される固定ブロックが対称に固定に接続され、前記の固定ブロックの左端にその他の一端が前記の第四溝の右側の内壁に固定に接続される戻しばねが固定に接続され、前記の第三溝の左側の内壁に第一伝動筐体が連通し設置され、前記のキャッチバーの左端が前記の第一伝動筐体に挿入するかつ前記のキャッチバーの左端に前記の第一伝動筐体に左右にスライドする電機ブロックが固定に接続され、前記の第一伝動筐体の左右側の内壁に開口が向かい合う第五溝が対称に設置され、前記の電機ブロックの前後端に前記の第五溝に挿入するかつ前記の第五溝にスライドし係合し接続されるガセットブロックが対称に固定に接続され、前記の第一伝動筐体の下側の内壁に第二伝動筐体が連通し設置され、前記の電機ブロックの下端に第二電機が固定に設置され、前記の第二電機の下端に前記の第二伝動筐体に挿入する第一回転軸が動力で係合し接続され、前記の第一回転軸の下端に第一主動斜歯歯車が固定に接続され、前記の第二伝動筐体の下側の内壁に第三伝動筐体が設置され、前記の第三伝動筐体に上端が前記の第二伝動筐体に挿入するかつ前記の第一主動斜歯歯車と噛合い係合し接続される第一従動斜歯歯車が設置され、前記の第一従動斜歯歯車の軸心に前後端がそれぞれ軸受を通じて前記の第三伝動筐体の左右側の内壁に回転し係合し接続される第二回転軸が固定に接続され、前記の昇降ブロックの下端に下に向かうかつ前記の第三伝動筐体の左側の内壁と連通する第六溝が設置され、前記の第六溝に上端が前記の第二伝動筐体に挿入するかつ軸受を通じて前記の第二伝動筐体の上側の内壁に回転し係合し接続される第三回転軸が設置され、前記の第一回転軸に第一主動歯車が固定に接続され、前記の第二伝動筐体に位置する前記の第三回転軸に前記の第一主動歯車と位置合わせて噛合に係合し接続される第一従動歯車が固定に接続され、前記の第三回転軸の下端に作業ブロックが固定に接続され、前記の作業ブロックに作業装置が設置され、
前記の作業装置が前記の作業ブロックの左右端に対称に固定に設置されるサポートプレートを含み、前記の昇降ブロックの下端に環状ガセット溝が左右対称に設置され、前記のサポートプレートの上端に前記の環状ガセット溝に挿入するかつスライドし係合し接続されるサポートガセットが固定に接続され、前記の作業ブロックの右端に右に向かう第七溝が設置され、前記の第七溝に下端が軸受を通じて前記の第七溝の下側の内壁に回転し係合し接続される第二親ねじが設置され、前記の第六溝の上内壁に下に向かう環状溝が設置され、前記の環状溝の内壁に軸受ガセット装置がスライドし係合し接続され、前記の第二親ねじの上端が前記の第六溝に挿入するかつ軸受を通じて前記の軸受ガセット装置の下端に回転し係合し接続され、前記の第六溝に位置する前記の第二親ねじに右端が前記の第三伝動筐体に挿入する第二従動斜歯歯車が固定に接続され、前記の第二回転軸に前記の第二従動斜歯歯車と噛合い係合し接続される第二主動斜歯歯車が固定に接続され、前記の第七溝に位置する前記の第二親ねじに前記の第七溝に上下に移動する挟みブロックがねじで係合し接続され、前記の挟みブロックに排気装置が固定に設置され、前記の挟みブロックの右端に右に向かう第八溝が設置され、前記の第八溝の上側の内壁と前記の排気装置の間に空気バイブが連通し設置され、前記の第八溝に上下にスライドする挟み板が設置され、前記の挟み板の上端が前記の空気バイブの押出装置に固定に接続され、
前記の起動装置が前記の装置主体の上端に設置される上に向かう第九溝を含み、前記の第九溝に第一起動ブロックが回転軸を通じて回転し係合し接続され、前記の第一起動ブロックの上端に上に向かう第十溝が設置され、前記の第十溝の左右側の内壁に第一スルーホールが対称に設置され、前記の第十溝の左右側の内壁と前記の第一スルーホールの下側に第二スルーホールが対称に設置され、前記の第九溝の左右側の内壁に開口が向かい合うかつそれぞれ前記の第一スルーホール及び第二スルーホールと位置合わせの第十一溝と第十二溝が対称に設置され、前記の第十一溝と第一スルーホールに左右にスライドする第一引掛りブロックが設置され、前記の第一引掛りブロックの上下端に前記の第一スルーホールの上下側の内壁に対称に設置される開口が相対する導滑溝に挿入する第一定向ブロックが固定に接続され、前記の第一定向ブロックの右端又は左端には、一端が前記の導滑溝のうち前記の第十一溝の片側に近接する内壁に固定的に接続される第一ばねが、固定的に接続され、前記の第二スルーホールに左右にスライドする第二引掛りブロックが設置され、前記の第二スルーホールの上下側の内壁に開口が相対する定向溝が対称に設置され、前記の第二引掛りブロックの上下端に前記の定向溝に挿入するかつ左右にスライドする第二定向ブロックが対称に固定に設置され、前記の第二スルーホールに左右にスライドするかつ前記の第二引掛りブロックと当たるかつ一端が前記の第十二溝に挿入する第三引掛りブロックが設置され、前記の第三引掛りブロックと前記の第十二溝の間に第二ばねが固定に接続され、前記の第十溝に前記の第十溝に上下にスライドするかつ下端が前記の第二引掛りブロックと対合する第二起動ブロックが設置され、前記の第二起動ブロックの左右側の内壁に前記の第一引掛りブロックと対合するカードスロットが対称に設置され、前記の第二起動ブロックの上端に握りブロックが接続され、前記の第一起動ブロックの上端に上に向かう第十三溝が左右対称に設置され、前記の握りブロックの下端に前記の第十三溝と対合する第四引掛りブロックが左右対称で固定に接続され、前記の第一起動ブロックの下端に導線装置が固定に設置され、前記の第九溝の右側の内壁に導線を通じて前記の第九溝に連通する蓄電池が固定に設置され、前記の第九溝の左側の内壁に総電力出力導線が設置され、前記の運搬装置が前記の第九溝の下側の内壁にある運搬筐体を含み、前記の運搬筐体に運搬輪装置が設置され、前記の運搬筐体の下側の内壁の右側にカード筐体が連通し設置され、前記のカード筐体の右側の内壁に右に向かう第十四溝が設置され、前記の第十四溝の上側の内壁に第三電機が固定に設置され、前記の第三電機の下端に下端が軸受を通じて前記の第十四溝の下側の内壁に回転し係合し接続される第三親ねじが動力で係合し接続され、前記の第三親ねじに前記の第十四溝に上下にスライドする運搬板がねじで係合し接続され、前記のカード筐体の左側の内壁に前記の運搬筐体に連通するかつ前記の第八溝と位置合わせるカード出し穴が貫通し設置され、
前記の蓄電池の上端に装置主体を通過する充電導線が設置され、前記の充電導線が前記の蓄電池に充電でき、前記の蓄電池の右側にボルトを通じて前記の装置主体の右端に係合し接続し固定される封鎖板が設置され、前記の封鎖板を開けて前記の蓄電池を取り替えることができ、前記の装置主体の左端面の上端に感応装置が固定に接続され、前記の感応装置がスタッフに感応すると装置を作業させ、前記の第八溝の左側の内壁にカード感応器が固定に接続され、
前記の固定装置が前記の装置主体の左右両端に対称で固定に接続される底板ブロックを含み、前記の底板ブロックに上下に貫通するボルト穴が設置され、前記のボルト穴と地面をボルトで係合し接続することで装置の安定性を増加できることを特徴とする携帯式電力自動化装置
A portable power automation device ,
Device mainly installed the automatic device in the left of the apparatus main body, activation device installed in the apparatus main body, it is placed on the left and right sides of the apparatus main body and the conveying device which is installed in the apparatus main body fixed the device only contains,
The automatic device includes a first groove toward the left installed at a left end of the device main body, a first electric machine is fixedly installed on an inner wall below the first groove, and the first electric machine A first lead screw is engaged and connected to the upper end by power, and the upper end of the first lead screw is rotated and engaged with and connected to the upper inner wall of the first groove through a bearing. A lifting block that slides up and down above the first groove is engaged and connected with a screw, and a second groove is formed at the upper end of the lifting block, and a second groove is formed on the upper inner wall of the first groove. A connection block that mates with the second groove is fixedly connected, and a third groove directed to the right is installed on the inner wall on the left side of the second groove, and the third groove can be slid left and right in the third groove. And a catch bar whose right end is opposite to the connection block is installed, and inner walls on the upper and lower sides of the third groove The fourth groove facing the opening is installed symmetrically, and the fixed block that can be inserted into the fourth groove at the upper and lower ends of the catch bar and slides and engages with the inner wall of the fourth groove is symmetrical. A fixed spring is connected to the left end of the fixed block and the other end is fixedly connected to the right inner wall of the fourth groove. The return spring is fixedly connected to the left inner wall of the third groove. An electric transmission block is installed in communication, and a left end of the catch bar is inserted into the first transmission case, and an electric block that slides left and right to the first transmission case at the left end of the catch bar. Fifth grooves that are fixedly connected and facing the openings on the left and right inner walls of the first transmission housing are symmetrically installed, inserted into the fifth grooves at the front and rear ends of the electric block, and Glide slides into and engages with the five grooves Is connected to the lower inner wall of the first transmission housing, and the second electric machine is fixed to the lower end of the electric block. A first rotating shaft to be inserted into the second transmission housing is engaged and connected to the lower end of the second electric machine by power, and a first main driving bevel gear is fixedly connected to the lower end of the first rotating shaft. A third transmission housing is installed on the lower inner wall of the second transmission housing, and an upper end of the third transmission housing is inserted into the second transmission housing and the first main drive slope A first driven bevel gear that meshes with and engages with the toothed gear, and the front and rear ends of the first driven bevel gear are axially connected to the left and right sides of the third transmission housing through bearings, respectively. A second rotating shaft that rotates and engages and is connected to the inner wall is fixedly connected to the lower end of the elevating block. A sixth groove communicating with the inner wall on the left side of the third transmission housing is installed, and an upper end of the sixth groove is inserted into the second transmission housing, and the upper side of the second transmission housing through a bearing. A third rotating shaft that rotates and engages with and connects to the inner wall of the first rotating shaft, a first main driving gear is fixedly connected to the first rotating shaft, and the third rotating shaft is located in the second transmission housing; A first driven gear that is engaged with and engaged with the first main driving gear is fixedly connected to the rotating shaft, and a work block is fixedly connected to the lower end of the third rotating shaft, A work device is installed in the work block ,
The working device includes a support plate that is fixed symmetrically at the left and right ends of the work block, and an annular gusset groove is installed symmetrically at the lower end of the lifting block, and the upper end of the support plate A support gusset that is inserted into the annular gusset groove and slidably engaged and connected is fixedly connected, and a seventh groove toward the right is installed at the right end of the work block, and a lower end is a bearing in the seventh groove. A second lead screw that is rotated and engaged with and connected to the inner wall on the lower side of the seventh groove is installed, and an annular groove that is directed downward is installed on the upper inner wall of the sixth groove. A bearing gusset device is slidably engaged with and connected to the inner wall of the shaft, and the upper end of the second lead screw is inserted into the sixth groove and rotated and engaged with the lower end of the bearing gusset device through the bearing. The above A second driven bevel gear having a right end inserted into the third transmission housing is fixedly connected to the second lead screw located in the sixth groove, and the second driven bevel tooth is connected to the second rotating shaft. A second main drive bevel gear that meshes and engages with the gear is fixedly connected, and the second lead screw located in the seventh groove has a pinching block that moves up and down in the seventh groove. The exhaust device is fixedly connected to the sandwiching block by being engaged with a screw, and an eighth groove toward the right is installed at the right end of the sandwiching block, and the inner wall on the upper side of the eighth groove and the above-mentioned An air vibrator is communicated and installed between the exhaust devices, a sandwich plate that slides up and down is installed in the eighth groove, and an upper end of the sandwich plate is fixedly connected to the extrusion device of the air vibrator ,
The activation device includes an upward ninth groove installed at an upper end of the apparatus main body, and a first activation block is rotated and engaged with the ninth groove through a rotation shaft, and is connected to the first groove. A tenth groove upward is formed at the upper end of the activation block, the first through holes are symmetrically installed on the inner walls on the left and right sides of the tenth groove, the inner walls on the left and right sides of the tenth groove and the tenth groove A second through hole is symmetrically installed below the one through hole, and the openings face the inner walls on the left and right sides of the ninth groove and are aligned with the first and second through holes, respectively. The first groove and the twelfth groove are installed symmetrically, the first hook block that slides to the left and right is installed in the eleventh groove and the first through hole, and the upper and lower ends of the first hook block are Installed symmetrically on the upper and lower inner walls of the first through hole That the opening is a constant direction block to be inserted on opposite ShirubeNamera groove is connected to a fixed, the right or left end of the first constant direction block of the, eleventh end of said one of said guide chutes A first spring fixedly connected to the inner wall adjacent to one side of the groove is fixedly connected, and a second hooking block that slides left and right is installed in the second through hole, and the second through Oriented grooves facing the openings are symmetrically installed on the inner walls on the upper and lower sides of the hole, and the second oriented block that slides to the left and right is symmetrically fixed to the upper and lower ends of the second hooking block. A third hooking block that slides to the left and right in the second through hole and that hits the second hooking block and has one end inserted into the twelfth groove is provided. Hook block and the twelfth groove Is connected to the second spring secured between the second boot blocks and the lower end of the slide to the second hook block and mating of the can is placed vertically on the tenth groove in the tenth groove, wherein A card slot that mates with the first catching block is symmetrically installed on the left and right inner walls of the second activation block, and a grip block is connected to the upper end of the second activation block. thirteenth groove towards the top to the upper end of the block is placed symmetrically, fourth catching block the thirteenth groove and pairing the lower end of the grip block is connected to a fixed symmetric, the A lead wire device is fixedly installed at the lower end of the first activation block, and a storage battery communicating with the ninth groove through the lead wire is fixedly installed on the inner wall on the right side of the ninth groove, and the left side of the ninth groove The total power output conductor is installed on the inner wall of the The transport device includes a transport housing on the lower inner wall of the ninth groove, a transport wheel device is installed on the transport housing, and a card is placed on the right side of the lower inner wall of the transport housing. A case is connected, a fourteenth groove toward the right is installed on the inner wall on the right side of the card case, a third electric machine is fixedly installed on the inner wall on the upper side of the fourteenth groove, A third lead screw that is engaged with and connected to the lower inner wall of the third electric machine by rotating and engaging the lower inner wall of the fourteenth groove through a bearing. A conveying plate that slides up and down is connected to the fourteenth groove with a screw, and is connected to the inner wall on the left side of the card casing and is aligned with the eighth groove. Card outlet hole is installed and installed ,
A charging lead that passes through the device main body is installed at the upper end of the storage battery, the charging lead can charge the storage battery, and is connected to the right end of the device main body through a bolt on the right side of the storage battery and connected and fixed. A sealing plate is installed, and the storage battery can be replaced by opening the sealing plate, a sensitive device is fixedly connected to the upper end of the left end surface of the device main body, and the sensitive device is sensitive to the staff. Then, the device is operated, the card sensor is fixedly connected to the left inner wall of the eighth groove ,
The fixing device includes a bottom plate block that is symmetrically fixedly connected to the left and right ends of the main body of the device, and a bolt hole penetrating vertically is provided in the bottom plate block, and the bolt hole and the ground are engaged with a bolt. A portable power automation device characterized in that the stability of the device can be increased by connecting together.
JP2018115667A 2018-05-21 2018-06-18 Portable power automation device Expired - Fee Related JP6582336B1 (en)

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CN201810490595.1A CN108665011A (en) 2018-05-21 2018-05-21 A kind of portable electric automatic device device

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Cited By (3)

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CN113305774A (en) * 2021-05-26 2021-08-27 刘志宝 Industrial high-power solid-state relay automatic assembling machine
CN113516804A (en) * 2021-04-13 2021-10-19 海南科微软件技术有限公司 Hotel check-in management system
CN113613466A (en) * 2021-08-03 2021-11-05 国网安徽省电力有限公司电力科学研究院 Safety protection device for terminal of dispatching data network system

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CN110335552B (en) * 2019-06-10 2021-07-09 浙江中医药大学 Intelligent indicating equipment based on computer technology
CN110482222B (en) * 2019-08-27 2020-04-10 温州谷枫电子科技有限公司 Liquid crystal glass substrate dust-free conveying device

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Publication number Priority date Publication date Assignee Title
CN113516804A (en) * 2021-04-13 2021-10-19 海南科微软件技术有限公司 Hotel check-in management system
CN113516804B (en) * 2021-04-13 2023-04-07 海南科微软件技术有限公司 Hotel check-in management system
CN113305774A (en) * 2021-05-26 2021-08-27 刘志宝 Industrial high-power solid-state relay automatic assembling machine
CN113613466A (en) * 2021-08-03 2021-11-05 国网安徽省电力有限公司电力科学研究院 Safety protection device for terminal of dispatching data network system
CN113613466B (en) * 2021-08-03 2024-02-02 国网安徽省电力有限公司电力科学研究院 Safety protection device for dispatching data network system terminal

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