JP2021145542A - Motor coil recovery device - Google Patents

Motor coil recovery device Download PDF

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JP2021145542A
JP2021145542A JP2020111632A JP2020111632A JP2021145542A JP 2021145542 A JP2021145542 A JP 2021145542A JP 2020111632 A JP2020111632 A JP 2020111632A JP 2020111632 A JP2020111632 A JP 2020111632A JP 2021145542 A JP2021145542 A JP 2021145542A
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space
connecting rod
rod
main body
groove
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孫鋒華
Feng Hua Sun
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Ningbo Laxiu Intelligent Tech Co Ltd
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Ningbo Laxiu Intelligent Tech Co Ltd
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K15/00Methods or apparatus specially adapted for manufacturing, assembling, maintaining or repairing of dynamo-electric machines
    • H02K15/0006Disassembling, repairing or modifying dynamo-electric machines

Abstract

To disclose a motor coil recovery device.SOLUTION: A motor coil recovery device comprises a main body and a power cavity arranged in the main body. A power device is arranged in the power cavity. A transmission cavity is arranged in the main body. A transmission device is arranged in the transmission cavity. A discharge cavity is arranged in the main body. A discharge device is arranged in the discharge cavity. A control cavity is arranged in the main body. A control device is arranged in the control cavity. The device is simple in structure and easy to operate, copper wires in a waste motor is recovered through mechanical control, a traditional manual recovery method is avoided, efficiency is greatly improved, and cost for enterprises is saved.SELECTED DRAWING: Figure 1

Description

本願発明はモータ技術の分野に関し、具体的にはモータコイル回収装置である。 The present invention relates to the field of motor technology, and specifically is a motor coil recovery device.

モータとは、電磁誘導の法則に従って電気エネルギーの変換または伝達を実現する電磁装置を指し、通電コイル、つまり固定子巻線を使用して回転磁場を生成し、回転子(かご形の閉じたアルミニウムフレームなど)に作用し、電磁発電回転トルクを形成する。モータが故障したり廃棄されたりした場合、モータコイルの銅線を回収する必要があり、既存の方法のほとんどは手動で行われるため、非効率的であると同時に、操作中に一定のリスクも発生する。 A motor is an electromagnetic device that realizes the conversion or transfer of electrical energy according to the law of electromagnetic induction, using an energizing coil, or stator winding, to generate a rotating magnetic field and a rotor (cage-shaped closed aluminum). It acts on the frame, etc.) to form an electromagnetic power generation rotation torque. If the motor fails or is scrapped, the copper wire in the motor coil must be recovered and most of the existing methods are done manually, which is inefficient and at the same time poses a certain risk during operation. appear.

中国特許出願公開第104197779号明細書Chinese Patent Application Publication No. 1041977779

本願発明は、モータコイル回収装置を提供することにより、上記の技術問題を解決することを目的とする。 An object of the present invention is to solve the above technical problem by providing a motor coil recovery device.

上記の課題を解決するため、本願発明は以下の技術プランを採用する:本願発明のモータコイル回収装置は本体と前記本体の中に設けられた動力空間とを含み、前記動力空間の中には動力装置が設けられ、前記本体の中には伝動空間が設けられ、前記伝動空間の中には伝動装置が設けられ、前記本体の中には排出空間が設けられ、前記排出空間の中には排出装置が設けられ、前記本体の中には制御空間が設けられ、前記制御空間の中には制御装置が設けられ、前記制御装置は前記制御空間の左右壁に回転可能に設けられた第一ネジ山軸を含み、前記第一ネジ山軸には下同期プーリが設けられ、前記第一ネジ山軸には第一ウォームホイールが設けられ、前記第一ネジ山軸にはスライダがスライド可能に設けられ、前記スライダには第一ばねが設けられ、前記第一ネジ山軸にはネジ山ブロックがネジ山により設けられ、前記第一ネジ山軸にはスライドロッドが設けられ、前記スライドロッドが第二ばねにより前記制御空間の内壁と連結され、前記スライダには第一連結ロッドが回転可能に連結され、前記制御空間の左側内壁には第一スライド溝が形成され、前記第一スライド溝の中にはスライダが設けられ、前記スライダの中には回転軸が回転可能に設けられ、前記回転軸には上同期プーリが固定的に設けられ、前記上同期プーリは前記下同期プーリとベルトにより伝動可能に連結され、前記回転軸の右端にはカムが設けられ、前記制御空間の上壁には第二スライド溝が形成され、前記第二スライド溝の中には上下に伸びたスライドロッドが設けられ、前記スライドロッドの下端には止めロッドが設けられ、前記止めロッドが第三ばねにより前記制御空間の内壁と連結され、前記スライドロッドには支持板が固定的に設けられ、前記支持板にはナイフヘッドが固定的に設けられ、前記制御空間の上壁には第三スライド溝が形成され、前記制御空間の内部後壁には前後に伸びた第一ウォームが回転可能に設けられ、前記第一ウォームは前記第一ウォームホイールと噛み合っており、前記スライドロッドにはスペース溝が形成され、前記スペース溝の中には第二連結ロッドが設けられ、前記第二連結ロッドの左側には第三連結ロッドが連結され、前記スペース溝の中には第四連結ロッドが設けられ、前記第四連結ロッドの左端には第五連結ロッドが連結され、前記第五連結ロッドと前記第三連結ロッドとが回転可能に連結され、前記第二連結ロッドと前記第四連結ロッドとの間には第四連結ばねが連結され、、前記第二連結ロッドと前記第四連結ロッドとには第一止めブロックが固定的に設けられ、前記第二連結ロッドと前記第四連結ロッドとには第二止めブロックが固定的に設けられ、前記本体の外側上壁には第一連結ロッドが設けられ、前記第一連結ロッドには第二連結ロッドが連結され、前記第二連結ロッドには凹型ブロックが設けられ、前記本体の外側上壁にはスライド溝が形成され、前記スライド溝の中には親ねじが設けられ、前記親ねじにはハンドルが連結され、前記親ねじにはネジ山により連結された挟持ブロックが設けられ、前記本体の外側上壁には挟持止め板が設けられている。 In order to solve the above problems, the present invention adopts the following technical plan: The motor coil recovery device of the present invention includes a main body and a power space provided in the main body, and the power space includes the main body and the power space provided in the main body. A power device is provided, a transmission space is provided in the main body, a transmission device is provided in the transmission space, a discharge space is provided in the main body, and a discharge space is provided in the discharge space. A discharge device is provided, a control space is provided in the main body, a control device is provided in the control space, and the control device is rotatably provided on the left and right walls of the control space. Including the thread shaft, the first thread shaft is provided with a lower synchronous pulley, the first thread shaft is provided with a first worm wheel, and the first screw shaft is slidable by a slider. The slider is provided with a first spring, the first thread shaft is provided with a thread block by threads, the first thread shaft is provided with a slide rod, and the slide rod is provided. It is connected to the inner wall of the control space by a second spring, the first connecting rod is rotatably connected to the slider, the first slide groove is formed on the left inner wall of the control space, and the first slide groove is formed. A slider is provided inside, a rotary shaft is rotatably provided in the slider, an upper synchronous pulley is fixedly provided on the rotary shaft, and the upper synchronous pulley is provided by the lower synchronous pulley and a belt. It is movably connected, a cam is provided at the right end of the rotating shaft, a second slide groove is formed on the upper wall of the control space, and a slide rod extending vertically is contained in the second slide groove. A stop rod is provided at the lower end of the slide rod, the stop rod is connected to the inner wall of the control space by a third spring, and a support plate is fixedly provided on the slide rod, and the support plate is provided. A knife head is fixedly provided in the control space, a third slide groove is formed on the upper wall of the control space, and a first worm extending back and forth is rotatably provided on the inner rear wall of the control space. The first worm meshes with the first worm wheel, a space groove is formed in the slide rod, a second connecting rod is provided in the space groove, and a second connecting rod is provided on the left side of the second connecting rod. A third connecting rod is connected, a fourth connecting rod is provided in the space groove, a fifth connecting rod is connected to the left end of the fourth connecting rod, and the fifth connecting rod and the third connecting rod are connected. The rod is rotatably connected to the above A fourth connecting spring is connected between the second connecting rod and the fourth connecting rod, and a first stopping block is fixedly provided between the second connecting rod and the fourth connecting rod. A second stop block is fixedly provided on the second connecting rod and the fourth connecting rod, a first connecting rod is provided on the outer upper wall of the main body, and a second connecting rod is provided on the first connecting rod. The rods are connected, the second connecting rod is provided with a concave block, a slide groove is formed on the outer upper wall of the main body, a lead screw is provided in the slide groove, and the lead screw is provided with a lead screw. The handle is connected, the lead screw is provided with a holding block connected by a thread, and the outer upper wall of the main body is provided with a holding stopper plate.

更の技術プラン、前記動力装置は前記動力空間の後壁に設けられたモータを含み、前記モータの前端は第一ウォームと連結され、前記第一ウォームには第一主動傘歯車が設けられ、前記動力空間の前壁には空き溝が形成され、前記空き溝の中には第一伝動ロッドが設けられ、前記動力空間の上壁には上下に伸びた第二ウォームが回転可能に設けられ、前記第二ウォームにはスプラインにより連結されたスプラインスリーブが設けられ、前記スプラインスリーブには前記第一主動傘歯車と噛み合うことができる第一従動傘歯車が連結されている。 Further technical plan, the power unit includes a motor provided on the rear wall of the power space, the front end of the motor is connected to a first worm, and the first worm is provided with a first driving bevel gear. A vacant groove is formed in the front wall of the power space, a first transmission rod is provided in the vacant groove, and a second worm extending vertically is rotatably provided in the upper wall of the power space. The second worm is provided with a spline sleeve connected by a spline, and the spline sleeve is connected to a first driven bevel gear that can mesh with the first main bevel gear.

更の技術プラン、前記伝動装置は前記伝動空間の左右壁に設けられた回転軸を含み、前記回転軸には歯車が設けられ、前記回転軸には前記第二ウォームと噛み合った第二ウォームホイールが設けられ、前記伝動空間の前壁にはスライド溝が形成され、前記スライド溝の中には前記歯車と噛み合ったラック板が設けられ、前記ラック板には固定ブロック本体が固定的に設けられ、前記固定ブロック本体は前記第五ばね本体により前記伝動空間の内壁と連結されている。 Further technical plan, the transmission device includes rotation shafts provided on the left and right walls of the transmission space, the rotation shaft is provided with gears, and the rotation shaft is a second worm wheel that meshes with the second worm. Is provided, a slide groove is formed on the front wall of the transmission space, a rack plate that meshes with the gear is provided in the slide groove, and a fixed block main body is fixedly provided on the rack plate. , The fixed block main body is connected to the inner wall of the transmission space by the fifth spring main body.

更の技術プラン、前記排出装置は前記排出空間の後壁に形成されたスライダ溝を含み、前記スライダ溝には支え板が設けられ、前記支え板は二つの第六ばねにより前記排出空間の内壁と連結され、前記排出空間の下壁には貫通溝が形成され、前記貫通溝の中には第二伝動ロッドが設けられ、前記第二伝動ロッドは前記第一伝動ロッドと固定的に連結されている。 Further technical plan, the discharge device includes a slider groove formed in the rear wall of the discharge space, the slider groove is provided with a support plate, and the support plate is provided with two sixth springs to form an inner wall of the discharge space. A through groove is formed in the lower wall of the discharge space, a second transmission rod is provided in the through groove, and the second transmission rod is fixedly connected to the first transmission rod. ing.

本願発明は構造が簡単で、操作が簡便であり、機械制御により、廃棄されたモータの銅線を回収し、従来の手動による回収する方法を回避し、効率を大幅に向上させ、企業のコストを節約する。 The present invention has a simple structure, is easy to operate, and mechanically controls to recover the discarded motor copper wire, avoiding the conventional manual recovery method, greatly improving efficiency, and costing the enterprise. To save.

下記に図1〜3をあわせて本願発明について詳しく説明し、便利に説明するために、下記の方向を以下のように規定する:図1は本願発明装置の正面図であり、以下に述べる上下左右前後の方向と図1の自身投影関係の上下左右前後の方向とが一致である。 In order to explain the invention of the present application in detail with reference to FIGS. 1 to 3 below and to explain the present invention in a convenient manner, the following directions are defined as follows: FIG. The left-right front-back direction and the up-down, left-right front-back direction of the self-projection relationship in FIG. 1 are the same.

図1は本願発明のモータコイル回収装置の構成模式図FIG. 1 is a schematic configuration diagram of the motor coil recovery device of the present invention. 図2は図1におけるA―Aの構成模式図FIG. 2 is a schematic configuration diagram of AA in FIG. 図3は図2におけるBの構成模式図FIG. 3 is a schematic configuration diagram of B in FIG.

ここでは図1〜3を参照し、本願発明のモータコイル回収装置は本体10と前記本体10の中に設けられた動力空間55とを含み、前記動力空間55の中には動力装置が設けられ、前記本体10の中には伝動空間96が設けられ、前記伝動空間96の中には伝動装置が設けられ、前記本体10の中には排出空間41が設けられ、前記排出空間41の中には排出装置が設けられ、前記本体10の中には制御空間27が設けられ、前記制御空間27の中には制御装置が設けられ、前記制御装置は前記制御空間27の左右壁に回転可能に設けられた第一ネジ山軸18を含み、前記第一ネジ山軸18には下同期プーリ19が設けられ、前記第一ネジ山軸18には第一ウォームホイール21が設けられ、前記第一ネジ山軸18にはスライダ23がスライド可能に設けられ、前記スライダ23には第一ばね24が設けられ、前記第一ネジ山軸18にはネジ山ブロック25がネジ山により設けられ、前記第一ネジ山軸18にはスライドロッド26が設けられ、前記スライドロッド26が第二ばね98により前記制御空間27の内壁と連結され、前記スライダ23には第一連結ロッド20が回転可能に連結され、前記制御空間27の左側内壁には第一スライド溝16が形成され、前記第一スライド溝16の中にはスライダ15が設けられ、前記スライダ15の中には回転軸14が回転可能に設けられ、前記回転軸14には上同期プーリ17が固定的に設けられ、前記上同期プーリ17は前記下同期プーリ19とベルトにより伝動可能に連結され、前記回転軸14の右端にはカム44が設けられ、前記制御空間27の上壁には第二スライド溝11が形成され、前記第二スライド溝11の中には上下に伸びたスライドロッド12が設けられ、前記スライドロッド12の下端には止めロッド43が設けられ、前記止めロッド43が第三ばね13により前記制御空間27の内壁と連結され、前記スライドロッド12には支持板38が固定的に設けられ、前記支持板38にはナイフヘッド39が固定的に設けられ、前記制御空間27の上壁には第三スライド溝28が形成され、前記制御空間27の内部後壁には前後に伸びた第一ウォーム22が回転可能に設けられ、前記第一ウォーム22は前記第一ウォームホイール21と噛み合っており、前記スライドロッド26にはスペース溝42が形成され、前記スペース溝42の中には第二連結ロッド30が設けられ、前記第二連結ロッド30の左側には第三連結ロッド40が連結され、前記スペース溝42の中には第四連結ロッド29が設けられ、前記第四連結ロッド29の左端には第五連結ロッド34が連結され、前記第五連結ロッド34と前記第三連結ロッド40とが回転可能に連結され、前記第二連結ロッド30と前記第四連結ロッド29との間には第四連結ばね32が連結され、、前記第二連結ロッド30と前記第四連結ロッド29とには第一止めブロック31が固定的に設けられ、前記第二連結ロッド30と前記第四連結ロッド29とには第二止めブロック33が固定的に設けられ、前記本体10の外側上壁には第一連結ロッド37が設けられ、前記第一連結ロッド37には第二連結ロッド36が連結され、前記第二連結ロッド36には凹型ブロック35が設けられ、前記本体10の外側上壁にはスライド溝48が形成され、前記スライド溝48の中には親ねじ47が設けられ、前記親ねじ47にはハンドル46が連結され、前記親ねじ47にはネジ山により連結された挟持ブロック45が設けられ、前記本体10の外側上壁には挟持止め板49が設けられている。 Here, referring to FIGS. 1 to 3, the motor coil recovery device of the present invention includes a main body 10 and a power space 55 provided in the main body 10, and a power device is provided in the power space 55. A transmission space 96 is provided in the main body 10, a transmission device is provided in the transmission space 96, a discharge space 41 is provided in the main body 10, and the discharge space 41 is provided. Is provided with a discharge device, a control space 27 is provided in the main body 10, a control device is provided in the control space 27, and the control device can be rotated on the left and right walls of the control space 27. The first thread shaft 18 is provided with a lower synchronous pulley 19, and the first thread shaft 18 is provided with a first worm wheel 21. A slider 23 is slidably provided on the thread shaft 18, a first spring 24 is provided on the slider 23, and a thread block 25 is provided on the first thread shaft 18 by threads. A slide rod 26 is provided on the one-thread shaft 18, the slide rod 26 is connected to the inner wall of the control space 27 by a second spring 98, and the first connecting rod 20 is rotatably connected to the slider 23. A first slide groove 16 is formed on the left inner wall of the control space 27, a slider 15 is provided in the first slide groove 16, and a rotation shaft 14 is rotatably provided in the slider 15. An upper synchronous pulley 17 is fixedly provided on the rotary shaft 14, the upper synchronous pulley 17 is movably connected to the lower synchronous pulley 19 by a belt, and a cam 44 is located at the right end of the rotary shaft 14. A second slide groove 11 is formed on the upper wall of the control space 27, a slide rod 12 extending vertically is provided in the second slide groove 11, and a slide rod 12 is provided at the lower end of the slide rod 12. A stop rod 43 is provided, the stop rod 43 is connected to the inner wall of the control space 27 by a third spring 13, a support plate 38 is fixedly provided on the slide rod 12, and a knife is provided on the support plate 38. The head 39 is fixedly provided, a third slide groove 28 is formed on the upper wall of the control space 27, and a first worm 22 extending back and forth is rotatably provided on the inner rear wall of the control space 27. The first worm 22 meshes with the first worm wheel 21, a space groove 42 is formed in the slide rod 26, and a second connecting rod 30 is provided in the space groove 42. A third connecting rod 40 is connected to the left side of the second connecting rod 30, a fourth connecting rod 29 is provided in the space groove 42, and a fourth connecting rod 29 is provided at the left end of the fourth connecting rod 29. The five connecting rods 34 are connected, the fifth connecting rod 34 and the third connecting rod 40 are rotatably connected, and the fourth connecting rod 30 and the fourth connecting rod 29 are connected to each other. The spring 32 is connected, and the first stop block 31 is fixedly provided to the second connecting rod 30 and the fourth connecting rod 29, and the second connecting rod 30 and the fourth connecting rod 29 are connected to each other. The second stop block 33 is fixedly provided, the first connecting rod 37 is provided on the outer upper wall of the main body 10, and the second connecting rod 36 is connected to the first connecting rod 37. A concave block 35 is provided on the two connecting rods 36, a slide groove 48 is formed on the outer upper wall of the main body 10, a lead screw 47 is provided in the slide groove 48, and the lead screw 47 is provided with a lead screw 47. The handle 46 is connected, the lead screw 47 is provided with a holding block 45 connected by a thread, and the holding plate 49 is provided on the outer upper wall of the main body 10.

前記動力装置は前記動力空間55の後壁に設けられたモータ54を含み、前記モータ54の前端は第一ウォーム22と連結され、前記第一ウォーム22には第一主動傘歯車56が設けられ、前記動力空間55の前壁には空き溝95が形成され、前記空き溝95の中には第一伝動ロッド60が設けられ、前記動力空間55の上壁には上下に伸びた第二ウォーム90が回転可能に設けられ、前記第二ウォーム90にはスプラインにより連結されたスプラインスリーブ59が設けられ、前記スプラインスリーブ59には前記第一主動傘歯車56と噛み合うことができる第一従動傘歯車57が連結されている。 The power unit includes a motor 54 provided on the rear wall of the power space 55, the front end of the motor 54 is connected to a first worm 22, and the first worm 22 is provided with a first driving bevel gear 56. An empty groove 95 is formed in the front wall of the power space 55, a first transmission rod 60 is provided in the empty groove 95, and a second worm extending vertically on the upper wall of the power space 55. 90 is rotatably provided, the second worm 90 is provided with a spline sleeve 59 connected by a spline, and the spline sleeve 59 is a first driven bevel gear that can mesh with the first main bevel gear 56. 57 are connected.

前記伝動装置は前記伝動空間96の左右壁に設けられた回転軸52を含み、前記回転軸52には歯車53が設けられ、前記回転軸52には前記第二ウォーム90と噛み合った第二ウォームホイール51が設けられ、前記伝動空間96の前壁にはスライド溝70が形成され、前記スライド溝70の中には前記歯車53と噛み合ったラック板50が設けられ、前記ラック板50には固定ブロック本体101が固定的に設けられ、前記固定ブロック本体101は前記第五ばね本体102により前記伝動空間96の内壁と連結されている。 The transmission device includes rotary shafts 52 provided on the left and right walls of the transmission space 96, the rotary shaft 52 is provided with a gear 53, and the rotary shaft 52 is a second worm that meshes with the second worm 90. A wheel 51 is provided, a slide groove 70 is formed on the front wall of the transmission space 96, a rack plate 50 that meshes with the gear 53 is provided in the slide groove 70, and is fixed to the rack plate 50. The block main body 101 is fixedly provided, and the fixed block main body 101 is connected to the inner wall of the transmission space 96 by the fifth spring main body 102.

前記排出装置は前記排出空間41の後壁に形成されたスライダ溝62を含み、前記スライダ溝62には支え板63が設けられ、前記支え板63は二つの第六ばね64により前記排出空間41の内壁と連結され、前記排出空間41の下壁には貫通溝65が形成され、前記貫通溝65の中には第二伝動ロッド61が設けられ、前記第二伝動ロッド61は前記第一伝動ロッド60と固定的に連結されている。 The discharge device includes a slider groove 62 formed on the rear wall of the discharge space 41, the slider groove 62 is provided with a support plate 63, and the support plate 63 is provided with the discharge space 41 by two sixth springs 64. A through groove 65 is formed in the lower wall of the discharge space 41, a second transmission rod 61 is provided in the through groove 65, and the second transmission rod 61 is the first transmission. It is fixedly connected to the rod 60.

初期状態では、前記第一ばね24は圧縮状態にあり、前記第三ばね13、前記第四ばね32、前記第五ばね本体102、前記第二ばね98と前記第六ばね98とが通常状態にあり、前記第一主動傘歯車56は前記第一従動傘歯車57と噛み合っていなく、前記下同期プーリ19と前記上同期プーリ17とはベルトにより引っ張られている。 In the initial state, the first spring 24 is in a compressed state, and the third spring 13, the fourth spring 32, the fifth spring body 102, the second spring 98, and the sixth spring 98 are in the normal state. The first main bevel gear 56 does not mesh with the first driven bevel gear 57, and the lower synchronous pulley 19 and the upper synchronous pulley 17 are pulled by a belt.

コイルの銅線を回収する時、前記ハンドル46と、前記親ねじ47とを回転させることにより前記挟持ブロック45を左右に移動させ、コイルを挟持し、前記モータ54を始動して前記第一ウォーム22を回転させ、前記第一ウォーム22が前記第一ウォームホイール21を回転させ、前記第一ウォームホイール21が前記第一ネジ山軸18を回転させ、前記第一ネジ山軸18が前記下同期プーリ19を回転させ、前記下同期プーリ19が前記上同期プーリ17を回転させ、前記上同期プーリ17が前記回転軸14を回転させ、前記回転軸14があ前記カム44を回転させることで、前記止めロッド43と、前記スライドロッド12と、前記支持板38と、前記ナイフヘッド39とを上方に移動させ、コイルの一端の銅線を切り、前記第一ネジ山軸18が回転し、前記ネジ山ブロック25を右方に移動させ、前記スライドロッド26を右方に移動させ、前記第五連結ロッド34を反時計回りに回転させ、前記第三連結ロッド40を時計回りに回転させ、前記第一止めブロック31と、前記第二連結ロッド30と、前記第四連結ロッド29とを右方に移動させ、銅線を引き出し、取り外した銅線が前記排出空間41の中に入り、前記排出空間41の中の銅線の量が十分になると、前記支え板63が下方に移動し、前記第二伝動ロッド61と、前記第一伝動ロッド60と、前記スプラインスリーブ59とを下方に移動させ、前記第一従動傘歯車57と前記第一主動傘歯車56とを噛み合わせ、前記第一主動傘歯車56が前記第一従動傘歯車57を回転させ、前記第一従動傘歯車57が前記第二ウォーム90を回転させ、前記第二ウォーム90が前記第二ウォームホイール51を回転させ、前記第二ウォームホイール51が前記回転軸52を回転させ、前記回転軸52が前記歯車53を回転させ、前記ラック板50を右方に移動させ、銅線を押し出し、
復位する時、前記モータ54が逆回転し、前記ネジ山ブロック25が左方に移動し、前記第二ばね98の作用により、前記スライドロッド26が前記第二連結ロッド30と、前記第四連結ロッド29と、前記第五連結ロッド34と前記第三連結ロッド40とを復位させる。
When collecting the copper wire of the coil, the handle 46 and the lead screw 47 are rotated to move the sandwiching block 45 left and right, the coil is sandwiched, the motor 54 is started, and the first worm is started. 22 is rotated, the first worm 22 rotates the first worm wheel 21, the first worm wheel 21 rotates the first screw thread shaft 18, and the first screw thread shaft 18 rotates the lower synchronization. By rotating the pulley 19, the lower synchronous pulley 19 rotates the upper synchronous pulley 17, the upper synchronous pulley 17 rotates the rotating shaft 14, and the rotating shaft 14 rotates the cam 44. The stop rod 43, the slide rod 12, the support plate 38, and the knife head 39 are moved upward, a copper wire at one end of the coil is cut, and the first screw thread shaft 18 is rotated to obtain the screw head 39. The screw thread block 25 is moved to the right, the slide rod 26 is moved to the right, the fifth connecting rod 34 is rotated counterclockwise, and the third connecting rod 40 is rotated clockwise. The first stop block 31, the second connecting rod 30, and the fourth connecting rod 29 are moved to the right, the copper wire is pulled out, and the removed copper wire enters the discharge space 41 and is discharged. When the amount of the copper wire in the space 41 becomes sufficient, the support plate 63 moves downward, and the second transmission rod 61, the first transmission rod 60, and the spline sleeve 59 are moved downward. The first driven cap gear 57 and the first driven cap gear 56 are meshed with each other, the first driven cap gear 56 rotates the first driven cap gear 57, and the first driven cap gear 57 is the first driven cap gear 57. The second worm 90 is rotated, the second worm 90 rotates the second worm wheel 51, the second worm wheel 51 rotates the rotating shaft 52, and the rotating shaft 52 rotates the gear 53. The rack plate 50 is moved to the right, and the copper wire is extruded.
At the time of repositioning, the motor 54 rotates in the reverse direction, the thread block 25 moves to the left, and the slide rod 26 is connected to the second connecting rod 30 by the action of the second spring 98. The rod 29, the fifth connecting rod 34, and the third connecting rod 40 are repositioned.

上記方式により、本分野の当業者は本願発明の範囲内で作動状況に応じて各種な改変を加えられる。 According to the above method, those skilled in the art can make various modifications according to the operating conditions within the scope of the present invention.

Claims (4)

本体と前記本体の中に設けられた動力空間とを含み、前記動力空間の中には動力装置が設けられ、前記本体の中には伝動空間が設けられ、前記伝動空間の中には伝動装置が設けられ、前記本体の中には排出空間が設けられ、前記排出空間の中には排出装置が設けられ、前記本体の中には制御空間が設けられ、前記制御空間の中には制御装置が設けられ、前記制御装置は前記制御空間の左右壁に回転可能に設けられた第一ネジ山軸を含み、前記第一ネジ山軸には下同期プーリが設けられ、前記第一ネジ山軸には第一ウォームホイールが設けられ、前記第一ネジ山軸にはスライダがスライド可能に設けられ、前記スライダには第一ばねが設けられ、前記第一ネジ山軸にはネジ山ブロックがネジ山により設けられ、前記第一ネジ山軸にはスライドロッドが設けられ、前記スライドロッドが第二ばねにより前記制御空間の内壁と連結され、前記スライダには第一連結ロッドが回転可能に連結され、前記制御空間の左側内壁には第一スライド溝が形成され、前記第一スライド溝の中にはスライダが設けられ、前記スライダの中には回転軸が回転可能に設けられ、前記回転軸には上同期プーリが固定的に設けられ、前記上同期プーリは前記下同期プーリとベルトにより伝動可能に連結され、前記回転軸の右端にはカムが設けられ、前記制御空間の上壁には第二スライド溝が形成され、前記第二スライド溝の中には上下に伸びたスライドロッドが設けられ、前記スライドロッドの下端には止めロッドが設けられ、前記止めロッドが第三ばねにより前記制御空間の内壁と連結され、前記スライドロッドには支持板が固定的に設けられ、前記支持板にはナイフヘッドが固定的に設けられ、前記制御空間の上壁には第三スライド溝が形成され、前記制御空間の内部後壁には前後に伸びた第一ウォームが回転可能に設けられ、前記第一ウォームは前記第一ウォームホイールと噛み合っており、前記スライドロッドにはスペース溝が形成され、前記スペース溝の中には第二連結ロッドが設けられ、前記第二連結ロッドの左側には第三連結ロッドが連結され、前記スペース溝の中には第四連結ロッドが設けられ、前記第四連結ロッドの左端には第五連結ロッドが連結され、前記第五連結ロッドと前記第三連結ロッドとが回転可能に連結され、前記第二連結ロッドと前記第四連結ロッドとの間には第四連結ばねが連結され、、前記第二連結ロッドと前記第四連結ロッドとには第一止めブロックが固定的に設けられ、前記第二連結ロッドと前記第四連結ロッドとには第二止めブロックが固定的に設けられ、前記本体の外側上壁には第一連結ロッドが設けられ、前記第一連結ロッドには第二連結ロッドが連結され、前記第二連結ロッドには凹型ブロックが設けられ、前記本体の外側上壁にはスライド溝が形成され、前記スライド溝の中には親ねじが設けられ、前記親ねじにはハンドルが連結され、前記親ねじにはネジ山により連結された挟持ブロックが設けられ、前記本体の外側上壁には挟持止め板が設けられていることを特徴とするモータコイル回収装置。 A main body and a power space provided in the main body are included, a power device is provided in the power space, a transmission space is provided in the main body, and a transmission device is provided in the transmission space. Is provided, a discharge space is provided in the main body, a discharge device is provided in the discharge space, a control space is provided in the main body, and a control device is provided in the control space. The control device includes a first thread shaft rotatably provided on the left and right walls of the control space, the first thread shaft is provided with a lower synchronous pulley, and the first thread shaft is provided. Is provided with a first worm wheel, a slider is provided on the first thread shaft so as to be slidable, a first spring is provided on the slider, and a thread block is screwed on the first thread shaft. Provided by a thread, a slide rod is provided on the first thread shaft, the slide rod is connected to the inner wall of the control space by a second spring, and the first connecting rod is rotatably connected to the slider. A first slide groove is formed on the inner wall on the left side of the control space, a slider is provided in the first slide groove, and a rotation shaft is rotatably provided in the slider. The upper synchronous pulley is fixedly provided, the upper synchronous pulley is movably connected to the lower synchronous pulley by a belt, a cam is provided at the right end of the rotating shaft, and the upper wall of the control space is the first. Two slide grooves are formed, a slide rod extending vertically is provided in the second slide groove, a stop rod is provided at the lower end of the slide rod, and the stop rod is provided in the control space by a third spring. A support plate is fixedly provided on the slide rod, a knife head is fixedly provided on the support plate, and a third slide groove is formed on the upper wall of the control space. A first worm extending back and forth is rotatably provided on the inner rear wall of the control space, the first worm meshes with the first worm wheel, and a space groove is formed in the slide rod. A second connecting rod is provided in the space groove, a third connecting rod is connected to the left side of the second connecting rod, a fourth connecting rod is provided in the space groove, and the fourth connecting rod is provided. A fifth connecting rod is connected to the left end of the rod, the fifth connecting rod and the third connecting rod are rotatably connected, and a fourth connecting rod is connected between the second connecting rod and the fourth connecting rod. The connecting spring is connected, and the second connecting rod and the first A first stop block is fixedly provided on the four connecting rods, a second stop block is fixedly provided on the second connecting rod and the fourth connecting rod, and the outer upper wall of the main body is fixedly provided. A first connecting rod is provided, a second connecting rod is connected to the first connecting rod, a concave block is provided to the second connecting rod, and a slide groove is formed on the outer upper wall of the main body. A lead screw is provided in the slide groove, a handle is connected to the lead screw, a holding block connected by a thread is provided to the lead screw, and a holding block is provided on the outer upper wall of the main body. A motor coil recovery device characterized in that a plate is provided. 前記動力装置は前記動力空間の後壁に設けられたモータを含み、前記モータの前端は第一ウォームと連結され、前記第一ウォームには第一主動傘歯車が設けられ、前記動力空間の前壁には空き溝が形成され、前記空き溝の中には第一伝動ロッドが設けられ、前記動力空間の上壁には上下に伸びた第二ウォームが回転可能に設けられ、前記第二ウォームにはスプラインにより連結されたスプラインスリーブが設けられ、前記スプラインスリーブには前記第一主動傘歯車と噛み合うことができる第一従動傘歯車が連結されていることを特徴とする請求項1に記載のモータコイル回収装置。 The power unit includes a motor provided on the rear wall of the power space, the front end of the motor is connected to a first worm, the first worm is provided with a first driving bevel gear, and is in front of the power space. A vacant groove is formed in the wall, a first transmission rod is provided in the vacant groove, and a second worm extending vertically is rotatably provided on the upper wall of the power space, and the second worm is rotatably provided. The first driven bevel gear according to claim 1, wherein a spline sleeve connected by a spline is provided in the spline sleeve, and a first driven bevel gear capable of meshing with the first main driving bevel gear is connected to the spline sleeve. Motor coil recovery device. 前記伝動装置は前記伝動空間の左右壁に設けられた回転軸を含み、前記回転軸には歯車が設けられ、前記回転軸には前記第二ウォームと噛み合った第二ウォームホイールが設けられ、前記伝動空間の前壁にはスライド溝が形成され、前記スライド溝の中には前記歯車と噛み合ったラック板が設けられ、前記ラック板には固定ブロック本体が固定的に設けられ、前記固定ブロック本体は前記第五ばね本体により前記伝動空間の内壁と連結されていることを特徴とする請求項1に記載のモータコイル回収装置。 The transmission device includes rotation shafts provided on the left and right walls of the transmission space, the rotation shaft is provided with gears, and the rotation shaft is provided with a second worm wheel that meshes with the second worm. A slide groove is formed on the front wall of the transmission space, a rack plate that meshes with the gear is provided in the slide groove, and a fixed block main body is fixedly provided on the rack plate, and the fixed block main body is provided. The motor coil recovery device according to claim 1, wherein is connected to an inner wall of the transmission space by the fifth spring main body. 前記排出装置は前記排出空間の後壁に形成されたスライダ溝を含み、前記スライダ溝には支え板が設けられ、前記支え板は二つの第六ばねにより前記排出空間の内壁と連結され、前記排出空間の下壁には貫通溝が形成され、前記貫通溝の中には第二伝動ロッドが設けられ、前記第二伝動ロッドは前記第一伝動ロッドと固定的に連結されていることを特徴とする請求項1に記載のモータコイル回収装置。 The discharge device includes a slider groove formed on the rear wall of the discharge space, the slider groove is provided with a support plate, and the support plate is connected to the inner wall of the discharge space by two sixth springs. A through groove is formed in the lower wall of the discharge space, a second transmission rod is provided in the through groove, and the second transmission rod is fixedly connected to the first transmission rod. The motor coil recovery device according to claim 1.
JP2020111632A 2020-03-10 2020-06-29 Motor coil recovery device Pending JP2021145542A (en)

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