JP2021028110A - Cutting device that does not produce chips of cable ducts - Google Patents

Cutting device that does not produce chips of cable ducts Download PDF

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JP2021028110A
JP2021028110A JP2019208960A JP2019208960A JP2021028110A JP 2021028110 A JP2021028110 A JP 2021028110A JP 2019208960 A JP2019208960 A JP 2019208960A JP 2019208960 A JP2019208960 A JP 2019208960A JP 2021028110 A JP2021028110 A JP 2021028110A
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space
cutting
gear
fixedly mounted
shaft
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練常青
Chang Qing Lian
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D1/00Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor
    • B26D1/01Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work
    • B26D1/12Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis
    • B26D1/14Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis with a circular cutting member, e.g. disc cutter
    • B26D1/157Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis with a circular cutting member, e.g. disc cutter rotating about a movable axis
    • B26D1/18Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis with a circular cutting member, e.g. disc cutter rotating about a movable axis mounted on a movable carriage
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D3/00Cutting work characterised by the nature of the cut made; Apparatus therefor
    • B26D3/16Cutting rods or tubes transversely
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/01Means for holding or positioning work
    • B26D7/02Means for holding or positioning work with clamping means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/06Arrangements for feeding or delivering work of other than sheet, web, or filamentary form
    • B26D7/0683Arrangements for feeding or delivering work of other than sheet, web, or filamentary form specially adapted for elongated articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/08Means for treating work or cutting member to facilitate cutting
    • B26D7/10Means for treating work or cutting member to facilitate cutting by heating
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/01Means for holding or positioning work
    • B26D2007/013Means for holding or positioning work the work being tubes, rods or logs

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  • Life Sciences & Earth Sciences (AREA)
  • Forests & Forestry (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Electric Cable Installation (AREA)
  • Sawing (AREA)
  • Scissors And Nippers (AREA)

Abstract

To disclose a cutting device that does not produce chips of cable ducts.SOLUTION: The cutting device includes a cutting housing in which a cutting space is provided. The cutting device activates a feed motor capable of driving and rotating a slide space. When the feed motor rotates in the forward direction, a cutter mount is driven to cut the duct downward, and when the feed motor rotates in the opposite direction, the cutter mount is driven to pull back the cutter upward and stop cutting. The present invention can reduce the noise generated during cutting, does not generate chips by cutting the duct by a pushing-out method, saves raw material and provides convenience for subsequent duct splicing, prevents the duct from being damaged by rotating the duct during cutting so that the entire outer peripheral surface of the duct is pushed, and makes cutting easier by the cutting blade being heated when cutting.SELECTED DRAWING: Figure 1

Description

本願発明は電力ケーブル分野に関わり、具体的にはケーブルダクトの切屑出さない切断装置である。 The present invention relates to the field of electric power cables, and specifically is a cutting device that does not generate chips in a cable duct.

ケーブルを敷設する時、敷設用のダクトが使用され、敷設の環境に適応するためにダクトを切断する需要があり、ダクトを切断した後にダクトを意図的に継ぎ合わし、しかし、今、ダクトを切断する時に一般的に鋸刃で切断するのであり、騒音を生み出すだけではなく、切断後の切屑も清掃しにくくて環境に一定の影響を及ぼし、切断後の切口には大量のばりが存在しており、後続のダクトを継ぎ合わすことに不便を与える。 When laying cables, ducts for laying are used and there is a need to cut the ducts to adapt to the environment of the laying, the ducts are intentionally spliced after cutting the ducts, but now the ducts are cut Generally, it is cut with a saw blade when cutting, which not only produces noise, but also makes it difficult to clean the chips after cutting, which has a certain effect on the environment, and there is a large amount of burrs on the cut after cutting. It is inconvenient to join the following ducts.

中国特許出願公開第109842051号明細書Chinese Patent Application Publication No. 109842051

本願発明はケーブルダクトの切屑出さない切断装置を提供し、既存の技術にある上記の欠点を解消する。 The present invention provides a cutting device that does not generate chips in a cable duct, and eliminates the above-mentioned drawbacks in the existing technology.

本願発明のケーブルダクトの切屑出さない切断装置は、切断筐体を含み、前記切断筐体の中には切断空間が設置され、前記切断空間の底壁の中には下方に開口したスライド空間が設置され、前記スライド空間の中にはカッター取付台がスライド可能に装着され、前記カッター取付台の中には下方に開口したカッター空間が設置され、前記カッター空間の中にはケーブルダクトを直接に切断する切断刃が回転可能に装着され、前記カッター空間の左右両側内壁の中には前記切断刃を加熱する加熱器が左右対称的にかつ固定的に装着され、前記切断刃は加熱器により加熱された後に前記切断空間の中に伸びたケーブルダクトを押して切断することができ、前記カッター取付台の中にはまた前記切断刃を駆動して回転させる動力機構が設置され、前記切断空間の底壁の中にはケーブルダクトを駆動して回転させて伝送できる移動機構が設置され、前記移動機構は前記切断空間の底壁に設置された一対の回転筒空間を含み、左右両側の前記回転筒空間の間には回転筒が回転可能に装着され、前記回転筒は回転する時にケーブルダクトを駆動して回転させることができ、前記切断空間の左右内壁の中には前記切断空間と連通したプーリ空間が左右対称的に設置され、前記プーリ空間の中には伝送車軸が回転可能に装着され、前記伝送車軸には伝送車が固定的に装着され、前記伝送車はケーブルダクトを駆動して右方に伝送することができ、前記切断空間の頂壁の中にはまたケーブルダクトを切断する時にケーブルダクトをきつく挟める挟み機構が設置されている。 The cutting device that does not generate chips of the cable duct of the present invention includes a cutting housing, a cutting space is installed in the cutting housing, and a slide space opened downward is provided in the bottom wall of the cutting space. It is installed, a cutter mounting base is slidably mounted in the slide space, a cutter space opened downward is installed in the cutter mounting base, and a cable duct is directly installed in the cutter space. A cutting blade for cutting is rotatably mounted, and a heater for heating the cutting blade is mounted symmetrically and fixedly in the inner walls on both left and right sides of the cutter space, and the cutting blade is heated by the heater. After that, the cable duct extending into the cutting space can be pushed to cut, and a power mechanism for driving and rotating the cutting blade is also installed in the cutter mount, and the bottom of the cutting space is installed. A moving mechanism capable of driving and rotating a cable duct to transmit is installed in the wall, and the moving mechanism includes a pair of rotating cylinder spaces installed on the bottom wall of the cutting space, and the rotating cylinders on both the left and right sides. A rotating cylinder is rotatably mounted between the spaces, and the rotating cylinder can drive a cable duct to rotate when rotating, and a pulley communicating with the cutting space is contained in the left and right inner walls of the cutting space. The space is installed symmetrically, the transmission axle is rotatably mounted in the pulley space, the transmission wheel is fixedly mounted on the transmission axle, and the transmission wheel drives the cable duct to the right. In the top wall of the cutting space, a pinching mechanism for tightly pinching the cable duct when cutting the cable duct is installed.

前述の技術プランに基づき、前記動力機構は前記カッター取付台の中に設置された第一歯車空間を含み、前記第一歯車空間と前記カッター空間との間にはカッター軸が回転可能に装着され、前記カッター軸と前記切断刃とが固定的に連結され、前記カッター軸において前記第一歯車空間に位置する部分には第一歯車が固定的に装着され、前記第一歯車空間の右側内壁の中には切断モーターが固定的に装着され、前記切断モーターの出力軸には第二歯車が固定的に装着され、前記第二歯車と前記第一歯車とが噛み合っている。 Based on the above-mentioned technical plan, the power mechanism includes a first gear space installed in the cutter mount, and a cutter shaft is rotatably mounted between the first gear space and the cutter space. , The cutter shaft and the cutting blade are fixedly connected, and the first gear is fixedly mounted on the portion of the cutter shaft located in the first gear space, and the right inner wall of the first gear space. A cutting motor is fixedly mounted inside, a second gear is fixedly mounted on the output shaft of the cutting motor, and the second gear and the first gear are in mesh with each other.

前述の技術プランに基づき、前記スライド空間の頂壁の中には送りモーターが固定的に装着され、前記送りモーターの出力軸には送りモーター軸が固定的に装着され、前記送りモーター軸と前記カッター取付台とがねじ山により装着されている。 Based on the above-mentioned technical plan, a feed motor is fixedly mounted in the top wall of the slide space, and a feed motor shaft is fixedly mounted on the output shaft of the feed motor. The cutter mounting base is attached by threads.

前述の技術プランに基づき、前記カッター取付台の底面には固定台が左右対称的にかつ固定的に装着され、前記切断空間の中にはプッシュヘッドが設置され、前記プッシュヘッドにはばね空間が設置され、前記ばね空間と前記固定台とがスライド可能に連結され、前記ばね空間の底壁と前記固定台の底面との間にはばねが固定的に装着され、前記プッシュヘッドの底面にはゴムブロックが固定的に装着されている。 Based on the above-mentioned technical plan, a fixing base is symmetrically and fixedly mounted on the bottom surface of the cutter mounting base, a push head is installed in the cutting space, and a spring space is provided in the push head. It is installed, the spring space and the fixing base are slidably connected, a spring is fixedly mounted between the bottom wall of the spring space and the bottom surface of the fixing base, and the bottom surface of the push head is covered. The rubber block is fixedly attached.

前述の技術プランに基づき、前記移動機構はまた前記回転筒空間の左側内壁に前後対称的に設置された第二歯車空間を含み、前記回転筒軸が前記第二歯車空間の左側内壁を貫通しており、前記回転筒空間と前記回転筒軸とがそれぞれ二つ設置され、また二つの前記回転筒空間と二つの前記回転筒軸とが前後対称であり、前記回転筒軸には第三歯車が固定的に装着され、前記第二歯車空間の左側内壁の中には第二モーターが固定的に装着され、前記第二モーターの出力軸には歯車軸が固定的に装着され、前記歯車軸には第四歯車が固定的に装着され、前記第四歯車と前記第三歯車とが噛み合っている。 Based on the above-mentioned technical plan, the moving mechanism also includes a second gear space symmetrically installed on the left inner wall of the rotating cylinder space, and the rotating cylinder shaft penetrates the left inner wall of the second gear space. Two of the rotary cylinder space and the rotary cylinder shaft are installed, and the two rotary cylinder spaces and the two rotary cylinder shafts are symmetrical in the front-rear direction, and the third gear is attached to the rotary cylinder shaft. Is fixedly mounted, the second motor is fixedly mounted in the left inner wall of the second gear space, the gear shaft is fixedly mounted on the output shaft of the second motor, and the gear shaft is fixedly mounted. A fourth gear is fixedly mounted on the vehicle, and the fourth gear and the third gear are in mesh with each other.

前述の技術プランに基づき、前記第二モーターの左側出力軸にはクラッチ入力軸が固定的に装着され、前記クラッチ入力軸にはクラッチが設置され、前記クラッチのもう片側出力軸にはプーリ軸が固定的に装着され、前記プーリ軸が前後に伸びて前記プーリ空間を貫通しており、前記プーリ軸において前記プーリ空間の中に位置する部分には第一プーリが左右対称的に固定的に装着され、前記伝送車軸において前記プーリ空間の中に位置する部分には第二プーリが固定的に装着され、前記第二プーリと前記第一プーリとの間にはベルトが動力を伝達できるように装着されている。 Based on the above-mentioned technical plan, a clutch input shaft is fixedly mounted on the left output shaft of the second motor, a clutch is installed on the clutch input shaft, and a pulley shaft is mounted on the other output shaft of the clutch. It is fixedly mounted, the pulley shaft extends back and forth and penetrates the pulley space, and the first pulley is fixedly mounted symmetrically on the portion of the pulley shaft located in the pulley space. A second pulley is fixedly mounted on the portion of the transmission axle located in the pulley space, and a belt is mounted between the second pulley and the first pulley so that power can be transmitted. Has been done.

前述の技術プランに基づき、前記伝送車の外側円周の断面図は弧状である。 Based on the above-mentioned technical plan, the cross-sectional view of the outer circumference of the transmission vehicle is arcuate.

前述の技術プランに基づき、前記切断空間の底壁には上方に開口した補助伝送車空間が設置され、前記補助伝送車空間の前後内壁の間には補助伝送車が回転可能に装着されている。 Based on the above-mentioned technical plan, an auxiliary transmission vehicle space opened upward is installed on the bottom wall of the cutting space, and the auxiliary transmission vehicle is rotatably mounted between the front and rear inner walls of the auxiliary transmission vehicle space. ..

前述の技術プランに基づき、前記挟み機構は前記切断筐体の中に固定的に装着された第一モーターを含み、前記切断筐体の中には傘歯車空間が左右対称的に設置され、前記第一モーターの左右両側出力軸にはモーター軸が固定的に装着され、前記モーター軸が左右両側の前記傘歯車空間を貫通しており、前記モーター軸の左右両側面には第一傘歯車が左右対称的にかつ固定的に装着され、左右両側の前記傘歯車空間の上下内壁の間にはねじスリーブが回転可能に装着され、前記ねじスリーブには第二傘歯車が固定的に装着され、前記第二傘歯車と前記第一傘歯車とが噛み合っており、前記ねじスリーブの中にはねじロッドがねじ山により装着され、前記ねじロッドの底面には挟みブロックが固定的に装着され、前記挟みブロックには回転ボールが回転可能に装着され、前記回転ボールは任意の角度で回転することができる。 Based on the above-mentioned technical plan, the pinching mechanism includes a first motor fixedly mounted in the cutting housing, and a capscrew space is symmetrically installed in the cutting housing. Motor shafts are fixedly mounted on the left and right output shafts of the first motor, the motor shafts penetrate the capscrew spaces on the left and right sides, and the first capscrews are on the left and right side surfaces of the motor shafts. A screw sleeve is rotatably mounted between the upper and lower inner walls of the bevel gear space on both the left and right sides, and a second bevel gear is fixedly attached to the screw sleeve. The second bevel gear and the first bevel gear are meshed with each other, a screw rod is mounted in the screw sleeve by a screw thread, and a sandwiching block is fixedly mounted on the bottom surface of the screw rod. A rotating ball is rotatably mounted on the sandwiching block, and the rotating ball can rotate at an arbitrary angle.

本願発明の有益な効果は:本願発明は鋸刃を利用することによりダクトを切断するという伝統的なダクト切断方法を捨て、切断時に生み出される騒音を減少でき、押し出す方式でダクトを切断することは切屑を生み出さなく、また原料を節約し、後続のダクトの接ぎ合わせに便利を与え、切断時にダクトを回転させることによりダクトの外周面が全部押され、ダクトを損害しなく、切断刃で切断する時に切断刃が加熱されることにより切断することはより容易になり、普及価値を有する。 The beneficial effect of the present invention is: The present invention abandons the traditional duct cutting method of cutting a duct by using a saw blade, can reduce the noise generated at the time of cutting, and cuts the duct by an extrusion method. It does not generate chips, saves raw material, provides convenience for joining the subsequent ducts, and by rotating the duct at the time of cutting, the entire outer peripheral surface of the duct is pushed, and the duct is cut with a cutting blade without damaging it. Sometimes the cutting blade is heated to make it easier to cut and has widespread value.

本願発明の実施例または既存の技術の中の技術方案をより詳しく説明できるため、以下は実施例または既存の技術を説明することに必要な図面に対して簡単な紹介を行い、明らかなように、以下の図面はただ本願発明の一部の実施例であり、当業者にとって、創造的な労働を払わなくても、これらの図面に基づいて他の図面を獲得することができる。下記に図1〜4を参考して本願発明について詳しく説明し、説明に便利を与えるために、後文に出る方向を以下のように規定する:図1は本願発明の正面図であり、後文に述べる上下左右前後の方向は図1の自身投影関係の上下左右前後の方向と一致である。 In order to explain in more detail the examples of the present invention or the technical ideas in the existing technology, the following is a brief introduction to the drawings necessary to explain the examples or the existing technology, and as is clear. , The following drawings are merely examples of a part of the present invention, and those skilled in the art can obtain other drawings based on these drawings without paying creative labor. The invention of the present application will be described in detail with reference to FIGS. 1 to 4 below, and in order to provide convenience in the explanation, the directions appearing in the following sentence are defined as follows: FIG. The directions of up, down, left, right, front and back described in the sentence coincide with the directions of up, down, left, right, front and back of the self-projection relationship in FIG.

図1は本願発明の全体構成概略図FIG. 1 is a schematic diagram of the overall configuration of the present invention. 図2は図1におけるA―A方向の断面構成概略図FIG. 2 is a schematic cross-sectional configuration of FIG. 1 in the AA direction. 図3は図1におけるB―B方向の断面構成概略図FIG. 3 is a schematic cross-sectional configuration in the BB direction in FIG. 図4は本願発明における挟みブロック48の左側面からの構成概略図FIG. 4 is a schematic configuration diagram from the left side surface of the sandwiching block 48 in the present invention.

図1〜4を参照し、本願発明のケーブルダクトの切屑出さない切断装置は切断筐体10を含み、前記切断筐体10の中には切断空間11が設置され、前記切断空間11の底壁の中には下方に開口したスライド空間40が設置され、前記スライド空間40の中にはカッター取付台38がスライド可能に装着され、前記カッター取付台38の中には下方に開口したカッター空間54が設置され、前記カッター空間54の中にはケーブルダクトを直接に切断する切断刃28が回転可能に装着され、前記カッター空間54の左右両側内壁の中には前記切断刃28を加熱する加熱器53が左右対称的にかつ固定的に装着され、前記切断刃28は加熱器53により加熱された後に前記切断空間11の中に伸びたケーブルダクトを押して切断することができ、前記カッター取付台38の中にはまた前記切断刃28を駆動して回転させる動力機構80が設置され、前記切断空間11の底壁の中にはケーブルダクトを駆動して回転させて伝送できる移動機構81が設置され、前記移動機構81は前記切断空間11の底壁に設置された一対の回転筒空間55を含み、左右両側の前記回転筒空間55の間には回転筒24が回転可能に装着され、前記回転筒24は回転する時にケーブルダクトを駆動して回転させることができ、前記切断空間11の左右内壁の中には前記切断空間11と連通したプーリ空間13が左右対称的に設置され、前記プーリ空間13の中には伝送車軸14が回転可能に装着され、前記伝送車軸14には伝送車12が固定的に装着され、前記伝送車12はケーブルダクトを駆動して右方に伝送することができ、前記切断空間11の頂壁の中にはまたケーブルダクトを切断する時にケーブルダクトをきつく挟める挟み機構82が設置されている。 With reference to FIGS. 1 to 4, the cutting device that does not generate chips of the cable duct of the present invention includes a cutting housing 10, a cutting space 11 is installed in the cutting housing 10, and a bottom wall of the cutting space 11. A slide space 40 opened downward is installed in the slide space 40, a cutter mounting base 38 is slidably mounted in the slide space 40, and a cutter space 54 opened downward in the cutter mounting base 38. Is installed, a cutting blade 28 that directly cuts the cable duct is rotatably mounted in the cutter space 54, and a heater that heats the cutting blade 28 is installed in the inner walls on both the left and right sides of the cutter space 54. 53 is mounted symmetrically and fixedly, and the cutting blade 28 can be cut by pushing a cable duct extending into the cutting space 11 after being heated by the heater 53, and the cutter mounting base 38 can be cut. A power mechanism 80 for driving and rotating the cutting blade 28 is also installed inside, and a moving mechanism 81 capable of driving and rotating and transmitting a cable duct is installed in the bottom wall of the cutting space 11. The moving mechanism 81 includes a pair of rotary cylinder spaces 55 installed on the bottom wall of the cutting space 11, and the rotary cylinder 24 is rotatably mounted between the rotary cylinder spaces 55 on both the left and right sides, and the rotation The cylinder 24 can be rotated by driving a cable duct when rotating, and a pulley space 13 communicating with the cutting space 11 is symmetrically installed in the left and right inner walls of the cutting space 11, and the pulley space 11 is installed. A transmission axle 14 is rotatably mounted in 13, a transmission wheel 12 is fixedly mounted on the transmission axle 14, and the transmission wheel 12 can drive a cable duct to transmit to the right. In the top wall of the cutting space 11, a pinching mechanism 82 for tightly pinching the cable duct when cutting the cable duct is also installed.

また、一つの実施例において、前記動力機構80は前記カッター取付台38の中に設置された第一歯車空間33を含み、前記第一歯車空間33と前記カッター空間54との間にはカッター軸34が回転可能に装着され、前記カッター軸34と前記切断刃28とが固定的に連結され、前記カッター軸34において前記第一歯車空間33に位置する部分には第一歯車35が固定的に装着され、前記第一歯車空間33の右側内壁の中には切断モーター37が固定的に装着され、前記切断モーター37の出力軸には第二歯車36が固定的に装着され、前記第二歯車36と前記第一歯車35とが噛み合っており、
切断モーター37を起動し、切断モーター37が第二歯車36を駆動して回転させ、第二歯車36の回転が第一歯車35を駆動して回転させ、第一歯車35の回転が切断刃28を駆動して回転させ、切断刃28はケーブルダクトを押して切断することができる。
Further, in one embodiment, the power mechanism 80 includes a first gear space 33 installed in the cutter mounting base 38, and a cutter shaft is provided between the first gear space 33 and the cutter space 54. 34 is rotatably mounted, the cutter shaft 34 and the cutting blade 28 are fixedly connected, and the first gear 35 is fixedly connected to a portion of the cutter shaft 34 located in the first gear space 33. The cutting motor 37 is fixedly mounted in the right inner wall of the first gear space 33, and the second gear 36 is fixedly mounted on the output shaft of the cutting motor 37. 36 and the first gear 35 are in mesh with each other.
The cutting motor 37 is started, the cutting motor 37 drives and rotates the second gear 36, the rotation of the second gear 36 drives and rotates the first gear 35, and the rotation of the first gear 35 drives the cutting blade 28. Can be driven and rotated, and the cutting blade 28 can push the cable duct to cut.

また、一つの実施例において、前記スライド空間40の頂壁の中には送りモーター41が固定的に装着され、前記送りモーター41の出力軸には送りモーター軸39が固定的に装着され、前記送りモーター軸39と前記カッター取付台38とがねじ山により装着されており、
送りモーター41を起動し、送りモーター41はスライド空間40を駆動して回転させることができ、送りモーター41が正方向に回転する時にカッター取付台38を駆動して下方へダクトを切断し、送りモーター41が逆方向に回転する時にカッター取付台38を駆動して上方へカッターを取り戻して切断をやめる。
Further, in one embodiment, the feed motor 41 is fixedly mounted in the top wall of the slide space 40, and the feed motor shaft 39 is fixedly mounted in the output shaft of the feed motor 41. The feed motor shaft 39 and the cutter mounting base 38 are attached by threads.
The feed motor 41 is activated, the feed motor 41 can drive the slide space 40 to rotate, and when the feed motor 41 rotates in the forward direction, the cutter mount 38 is driven to cut the duct downward and feed. When the motor 41 rotates in the opposite direction, the cutter mounting base 38 is driven to recover the cutter upward and stop cutting.

また、一つの実施例において、前記カッター取付台38の底面には固定台32が左右対称的にかつ固定的に装着され、前記切断空間11の中にはプッシュヘッド29が設置され、前記プッシュヘッド29にはばね空間56が設置され、前記ばね空間56と前記固定台32とがスライド可能に連結され、前記ばね空間56の底壁と前記固定台32の底面との間にはばね30が固定的に装着され、前記プッシュヘッド29の底面にはゴムブロック31が固定的に装着されており、
切断刃28によりケーブルダクトを切断する時、プッシュヘッド29とゴムブロック31とがダクトをきつく挟める。
Further, in one embodiment, the fixing base 32 is symmetrically and fixedly mounted on the bottom surface of the cutter mounting base 38, and the push head 29 is installed in the cutting space 11, and the push head A spring space 56 is installed in 29, the spring space 56 and the fixing base 32 are slidably connected, and the spring 30 is fixed between the bottom wall of the spring space 56 and the bottom surface of the fixing base 32. A rubber block 31 is fixedly attached to the bottom surface of the push head 29.
When cutting the cable duct with the cutting blade 28, the push head 29 and the rubber block 31 tightly sandwich the duct.

また、一つの実施例において、前記移動機構81はまた前記回転筒空間55の左側内壁に前後対称的に設置された第二歯車空間21を含み、前記回転筒軸25が前記第二歯車空間21の左側内壁を貫通しており、前記回転筒空間55と前記回転筒軸25とがそれぞれ二つ設置され、また二つの前記回転筒空間55と二つの前記回転筒軸25とが前後対称であり、前記回転筒軸25には第三歯車23が固定的に装着され、前記第二歯車空間21の左側内壁の中には第二モーター18が固定的に装着され、前記第二モーター18の出力軸には歯車軸20が固定的に装着され、前記歯車軸20には第四歯車22が固定的に装着され、前記第四歯車22と前記第三歯車23とが噛み合っており、
第二モーター18を起動し、第二モーター18が第四歯車22を駆動して回転させ、第四歯車22の回転が第三歯車23を駆動して回転させ、第三歯車23の回転が回転筒24を駆動して回転させ、回転筒24の回転はケーブルダクトを回転させることができ、切断を行う時、ケーブルダクトの外周面を全部切断することができる。
Further, in one embodiment, the moving mechanism 81 also includes a second gear space 21 installed symmetrically on the left inner wall of the rotary cylinder space 55, and the rotary cylinder shaft 25 is the second gear space 21. The rotary cylinder space 55 and the rotary cylinder shaft 25 are respectively installed, and the two rotary cylinder spaces 55 and the two rotary cylinder shafts 25 are front-to-back symmetrical. The third gear 23 is fixedly mounted on the rotary cylinder shaft 25, the second motor 18 is fixedly mounted in the left inner wall of the second gear space 21, and the output of the second motor 18 is output. A gear shaft 20 is fixedly mounted on the shaft, a fourth gear 22 is fixedly mounted on the gear shaft 20, and the fourth gear 22 and the third gear 23 are in mesh with each other.
The second motor 18 is started, the second motor 18 drives and rotates the fourth gear 22, the rotation of the fourth gear 22 drives and rotates the third gear 23, and the rotation of the third gear 23 rotates. The cylinder 24 is driven and rotated, and the rotation of the rotating cylinder 24 can rotate the cable duct, and when cutting, the entire outer peripheral surface of the cable duct can be cut.

また、一つの実施例において、前記第二モーター18の左側出力軸にはクラッチ入力軸17が固定的に装着され、前記クラッチ入力軸17にはクラッチ15が設置され、前記クラッチ15のもう片側出力軸にはプーリ軸16が固定的に装着され、前記プーリ軸16が前後に伸びて前記プーリ空間13を貫通しており、前記プーリ軸16において前記プーリ空間13の中に位置する部分には第一プーリ52が左右対称的に固定的に装着され、前記伝送車軸14において前記プーリ空間13の中に位置する部分には第二プーリ51が固定的に装着され、前記第二プーリ51と前記第一プーリ52との間にはベルト50が動力を伝達できるように装着されており、
第二モーター18を起動した後、クラッチ15の動力伝達を連通させ、第二モーター18がプーリ軸16を駆動して回転させ、プーリ軸16の回転が第一プーリ52を駆動して回転させ、第一プーリ52の回転が第二プーリ51を駆動して回転させ、第二プーリ51の回転が伝送車12を駆動して回転させ、伝送車12はケーブルダクトを駆動して右側へ伝送することができる。
Further, in one embodiment, a clutch input shaft 17 is fixedly mounted on the left output shaft of the second motor 18, a clutch 15 is installed on the clutch input shaft 17, and the other side output of the clutch 15 is output. A pulley shaft 16 is fixedly mounted on the shaft, the pulley shaft 16 extends back and forth and penetrates the pulley space 13, and a portion of the pulley shaft 16 located in the pulley space 13 is a second. One pulley 52 is fixedly mounted symmetrically, and a second pulley 51 is fixedly mounted on a portion of the transmission axle 14 located in the pulley space 13, and the second pulley 51 and the first pulley 51 are fixedly mounted. A belt 50 is attached to the pulley 52 so that power can be transmitted.
After starting the second motor 18, the power transmission of the clutch 15 is communicated, the second motor 18 drives and rotates the pulley shaft 16, and the rotation of the pulley shaft 16 drives and rotates the first pulley 52. The rotation of the first pulley 52 drives and rotates the second pulley 51, the rotation of the second pulley 51 drives and rotates the transmission vehicle 12, and the transmission vehicle 12 drives the cable duct to transmit to the right side. Can be done.

また、一つの実施例において、前記伝送車12の外側円周の断面図は弧状であり、
伝送車12とダクトとの間の摩擦力を増やし、伝送が便利である。
Further, in one embodiment, the cross-sectional view of the outer circumference of the transmission vehicle 12 is arcuate.
Transmission is convenient by increasing the frictional force between the transmission vehicle 12 and the duct.

また、一つの実施例において、前記切断空間11の底壁には上方に開口した補助伝送車空間26が設置され、前記補助伝送車空間26の前後内壁の間には補助伝送車27が回転可能に装着されており、
前記補助伝送車27はダクトが右方に伝送される時に支持を補助する作用を果たせる。
Further, in one embodiment, an auxiliary transmission vehicle space 26 opened upward is installed on the bottom wall of the cutting space 11, and the auxiliary transmission vehicle 27 can rotate between the front and rear inner walls of the auxiliary transmission vehicle space 26. It is attached to
The auxiliary transmission vehicle 27 can serve to assist support when the duct is transmitted to the right.

また、一つの実施例において、前記挟み機構82は前記切断筐体10の中に固定的に装着された第一モーター47を含み、前記切断筐体10の中には傘歯車空間44が左右対称的に設置され、前記第一モーター47の左右両側出力軸にはモーター軸46が固定的に装着され、前記モーター軸46が左右両側の前記傘歯車空間44を貫通しており、前記モーター軸46の左右両側面には第一傘歯車57が左右対称的にかつ固定的に装着され、左右両側の前記傘歯車空間44の上下内壁の間にはねじスリーブ43が回転可能に装着され、前記ねじスリーブ43には第二傘歯車45が固定的に装着され、前記第二傘歯車45と前記第一傘歯車57とが噛み合っており、前記ねじスリーブ43の中にはねじロッド42がねじ山により装着され、前記ねじロッド42の底面には挟みブロック48が固定的に装着され、前記挟みブロック48には回転ボール49が回転可能に装着され、前記回転ボール49は任意の角度で回転することができ、
ダクトが切断空間11の中に伸びた後、第一モーター47を起動し、第一モーター47が第一傘歯車57を駆動して回転させ、第一傘歯車57の回転が第二傘歯車45とねじスリーブ43とを駆動して回転させ、ねじスリーブ43の回転がねじロッド42を駆動して下方にスライドさせることにより、挟みブロック48と回転ボール49とが切断空間11内のダクトをきつく挟む。
Further, in one embodiment, the pinching mechanism 82 includes a first motor 47 fixedly mounted in the cutting housing 10, and the bevel gear space 44 is symmetrical in the cutting housing 10. The motor shaft 46 is fixedly mounted on the left and right side output shafts of the first motor 47, and the motor shaft 46 penetrates the bevel gear space 44 on both the left and right sides, and the motor shaft 46 The first bevel gear 57 is symmetrically and fixedly mounted on the left and right side surfaces of the screw, and the screw sleeve 43 is rotatably mounted between the upper and lower inner walls of the bevel gear space 44 on both the left and right sides. A second captive gear 45 is fixedly mounted on the sleeve 43, the second captive gear 45 and the first captive gear 57 are meshed with each other, and a screw rod 42 is screwed into the screw sleeve 43. The pinching block 48 is fixedly mounted on the bottom surface of the screw rod 42, and the rotating ball 49 is rotatably mounted on the pinching block 48, and the rotating ball 49 can rotate at an arbitrary angle. Can,
After the duct extends into the cutting space 11, the first motor 47 is started, the first motor 47 drives and rotates the first umbrella gear 57, and the rotation of the first umbrella gear 57 rotates the second umbrella gear 45. And the screw sleeve 43 are driven to rotate, and the rotation of the screw sleeve 43 drives the screw rod 42 to slide downward, so that the sandwiching block 48 and the rotating ball 49 tightly sandwich the duct in the cutting space 11. ..

切断待ちのダクトを切断空間11の中に送り込み、第二モーター18を起動し、クラッチ15の動力伝達を連通させ、第二モーター18が伝送車12を駆動して回転させ、伝送車12はケーブルダクトを駆動して右側へ伝送することができ、第一モーター47を起動し、第一モーター47がねじロッド42を駆動して下方にスライドさせることにより、挟みブロック48と回転ボール49とが切断空間11内のダクトをきつく挟み、クラッチ15の動力伝達を遮断し、第二モーター18が回転筒24を駆動して回転させ、回転筒24の回転はケーブルダクトを回転させることができ、送りモーター41を起動し、送りモーター41はスライド空間40を駆動して回転させることができ、送りモーター41が正方向に回転する時にカッター取付台38を駆動して下方へ移動させ、切断モーター37を起動し、切断モーター37が切断刃28を駆動して回転させ、切断刃28はケーブルダクトを押して切断することができるようになり、送りモーター41が逆方向に回転する時にカッター取付台38を駆動して上方へカッターを取り戻して切断をやめ、切断刃28がケーブルダクトを切断する時、プッシュヘッド29とゴムブロック31とがダクトをきつく挟める。 A duct waiting to be cut is sent into the cutting space 11, the second motor 18 is started, the power transmission of the clutch 15 is communicated, the second motor 18 drives and rotates the transmission vehicle 12, and the transmission vehicle 12 is a cable. The duct can be driven and transmitted to the right side, the first motor 47 is started, and the first motor 47 drives the screw rod 42 and slides downward, so that the sandwiching block 48 and the rotating ball 49 are cut. The duct in the space 11 is tightly sandwiched, the power transmission of the clutch 15 is cut off, the second motor 18 drives and rotates the rotary cylinder 24, and the rotation of the rotary cylinder 24 can rotate the cable duct, and the feed motor 41 is activated, the feed motor 41 can drive the slide space 40 to rotate, and when the feed motor 41 rotates in the forward direction, the cutter mount 38 is driven to move downward to activate the cutting motor 37. Then, the cutting motor 37 drives and rotates the cutting blade 28, and the cutting blade 28 can push the cable duct to cut, and drives the cutter mounting base 38 when the feed motor 41 rotates in the opposite direction. When the cutting blade 28 cuts the cable duct by returning the cutter upward to stop the cutting, the push head 29 and the rubber block 31 tightly pinch the duct.

本願発明の有益な効果は:本願発明は鋸刃を利用することによりダクトを切断するという伝統的なダクト切断方法を捨て、切断時に生み出される騒音を減少でき、押し出す方式でダクトを切断することは切屑を生み出さなく、また原料を節約し、後続のダクトの接ぎ合わせに便利を与え、切断時にダクトを回転させることによりダクトの外周面が全部押され、ダクトを損害しなく、切断刃で切断する時に切断刃が加熱されることにより切断することはより容易になり、普及価値を有する。 The beneficial effect of the present invention is: The present invention abandons the traditional duct cutting method of cutting a duct by using a saw blade, can reduce the noise generated at the time of cutting, and cuts the duct by an extrusion method. It does not generate chips, saves raw material, provides convenience for joining the subsequent ducts, and by rotating the duct at the time of cutting, the entire outer peripheral surface of the duct is pushed, and the duct is cut with a cutting blade without damaging it. Sometimes the cutting blade is heated to make it easier to cut and has widespread value.

当業者は明確できることは、本出願の総体精神及び構想から離脱しない限り、上記実施例に各種の変型を行うことができる。それらの変型はいずれも本出願の保護範囲中にカバーすべきである。本出願の保護方案は本出願に添付した特許の請求の範囲を基準とするべきである。 One of ordinary skill in the art can make various modifications to the above embodiment without departing from the general spirit and concept of the present application. All of these variants should be covered within the scope of protection of this application. The protection plan of this application should be based on the claims of the patent attached to this application.

Claims (9)

切断筐体を含み、前記切断筐体の中には切断空間が設置され、前記切断空間の底壁の中には下方に開口したスライド空間が設置され、前記スライド空間の中にはカッター取付台がスライド可能に装着され、前記カッター取付台の中には下方に開口したカッター空間が設置され、前記カッター空間の中にはケーブルダクトを直接に切断する切断刃が回転可能に装着され、前記カッター空間の左右両側内壁の中には前記切断刃を加熱する加熱器が左右対称的にかつ固定的に装着され、前記切断刃は加熱器により加熱された後に前記切断空間の中に伸びたケーブルダクトを押して切断することができ、前記カッター取付台の中にはまた前記切断刃を駆動して回転させる動力機構が設置され、前記切断空間の底壁の中にはケーブルダクトを駆動して回転させて伝送できる移動機構が設置され、前記移動機構は前記切断空間の底壁に設置された一対の回転筒空間を含み、左右両側の前記回転筒空間の間には回転筒が回転可能に装着され、前記回転筒は回転する時にケーブルダクトを駆動して回転させることができ、前記切断空間の左右内壁の中には前記切断空間と連通したプーリ空間が左右対称的に設置され、前記プーリ空間の中には伝送車軸が回転可能に装着され、前記伝送車軸には伝送車が固定的に装着され、前記伝送車はケーブルダクトを駆動して右方に伝送することができ、前記切断空間の頂壁の中にはまたケーブルダクトを切断する時にケーブルダクトをきつく挟める挟み機構が設置されていることを特徴とするケーブルダクトの切屑出さない切断装置。 A cutting space is installed in the cutting housing including the cutting housing, a slide space opened downward is installed in the bottom wall of the cutting space, and a cutter mounting base is installed in the sliding space. Is slidably mounted, a cutter space opened downward is installed in the cutter mounting base, and a cutting blade that directly cuts a cable duct is rotatably mounted in the cutter space. A heater for heating the cutting blade is symmetrically and fixedly mounted in the inner walls on both the left and right sides of the space, and the cutting blade is a cable duct extending into the cutting space after being heated by the heater. A power mechanism for driving and rotating the cutting blade is installed in the cutter mounting base, and a cable duct is driven and rotated in the bottom wall of the cutting space. A moving mechanism is installed, and the moving mechanism includes a pair of rotating cylinder spaces installed on the bottom wall of the cutting space, and the rotating cylinders are rotatably mounted between the rotating cylinder spaces on both the left and right sides. The rotary cylinder can be rotated by driving a cable duct when rotating, and a pulley space communicating with the cutting space is symmetrically installed in the left and right inner walls of the cutting space, and the pulley space A transmission axle is rotatably mounted inside, a transmission wheel is fixedly mounted on the transmission axle, and the transmission wheel can drive a cable duct to transmit to the right, and the top of the cutting space. A cutting device that does not generate chips in the cable duct, which is characterized by a pinching mechanism that tightly pinches the cable duct when cutting the cable duct. 前記動力機構は前記カッター取付台の中に設置された第一歯車空間を含み、前記第一歯車空間と前記カッター空間との間にはカッター軸が回転可能に装着され、前記カッター軸と前記切断刃とが固定的に連結され、前記カッター軸において前記第一歯車空間に位置する部分には第一歯車が固定的に装着され、前記第一歯車空間の右側内壁の中には切断モーターが固定的に装着され、前記切断モーターの出力軸には第二歯車が固定的に装着され、前記第二歯車と前記第一歯車とが噛み合っていることを特徴とする請求項1に記載のケーブルダクトの切屑出さない切断装置。 The power mechanism includes a first gear space installed in the cutter mount, and a cutter shaft is rotatably mounted between the first gear space and the cutter space, and the cutter shaft and the cutting The blade is fixedly connected, the first gear is fixedly mounted on the portion of the cutter shaft located in the first gear space, and the cutting motor is fixed in the right inner wall of the first gear space. The cable duct according to claim 1, wherein a second gear is fixedly mounted on the output shaft of the cutting motor, and the second gear and the first gear are in mesh with each other. Cutting device that does not generate chips. 前記スライド空間の頂壁の中には送りモーターが固定的に装着され、前記送りモーターの出力軸には送りモーター軸が固定的に装着され、前記送りモーター軸と前記カッター取付台とがねじ山により装着されていることを特徴とする請求項1に記載のケーブルダクトの切屑出さない切断装置。 A feed motor is fixedly mounted in the top wall of the slide space, a feed motor shaft is fixedly mounted on the output shaft of the feed motor, and the feed motor shaft and the cutter mount are threaded. The cutting device according to claim 1, wherein the cable duct is not chipped. 前記カッター取付台の底面には固定台が左右対称的にかつ固定的に装着され、前記切断空間の中にはプッシュヘッドが設置され、前記プッシュヘッドにはばね空間が設置され、前記ばね空間と前記固定台とがスライド可能に連結され、前記ばね空間の底壁と前記固定台の底面との間にはばねが固定的に装着され、前記プッシュヘッドの底面にはゴムブロックが固定的に装着されていることを特徴とする請求項1に記載のケーブルダクトの切屑出さない切断装置。 A fixing base is symmetrically and fixedly mounted on the bottom surface of the cutter mounting base, a push head is installed in the cutting space, a spring space is installed in the push head, and the spring space and the spring space are installed. The fixing base is slidably connected, a spring is fixedly mounted between the bottom wall of the spring space and the bottom surface of the fixing base, and a rubber block is fixedly mounted on the bottom surface of the push head. The cutting device according to claim 1, wherein the cable duct is not chipped. 前記移動機構はまた前記回転筒空間の左側内壁に前後対称的に設置された第二歯車空間を含み、前記回転筒軸が前記第二歯車空間の左側内壁を貫通しており、前記回転筒空間と前記回転筒軸とがそれぞれ二つ設置され、また二つの前記回転筒空間と二つの前記回転筒軸とが前後対称であり、前記回転筒軸には第三歯車が固定的に装着され、前記第二歯車空間の左側内壁の中には第二モーターが固定的に装着され、前記第二モーターの出力軸には歯車軸が固定的に装着され、前記歯車軸には第四歯車が固定的に装着され、前記第四歯車と前記第三歯車とが噛み合っていることを特徴とする請求項1に記載のケーブルダクトの切屑出さない切断装置。 The moving mechanism also includes a second gear space symmetrically installed on the left inner wall of the rotary cylinder space, the rotary cylinder shaft penetrates the left inner wall of the second gear space, and the rotary cylinder space. And two rotary cylinder shafts are installed respectively, and the two rotary cylinder spaces and the two rotary cylinder shafts are symmetrical in the front-rear direction, and a third gear is fixedly mounted on the rotary cylinder shaft. The second motor is fixedly mounted in the left inner wall of the second gear space, the gear shaft is fixedly mounted on the output shaft of the second motor, and the fourth gear is fixedly mounted on the gear shaft. The cutting device for cutting chips of a cable duct according to claim 1, wherein the fourth gear and the third gear are meshed with each other. 前記第二モーターの左側出力軸にはクラッチ入力軸が固定的に装着され、前記クラッチ入力軸にはクラッチが設置され、前記クラッチのもう片側出力軸にはプーリ軸が固定的に装着され、前記プーリ軸が前後に伸びて前記プーリ空間を貫通しており、前記プーリ軸において前記プーリ空間の中に位置する部分には第一プーリが左右対称的に固定的に装着され、前記伝送車軸において前記プーリ空間の中に位置する部分には第二プーリが固定的に装着され、前記第二プーリと前記第一プーリとの間にはベルトが動力を伝達できるように装着されていることを特徴とする請求項1に記載のケーブルダクトの切屑出さない切断装置。 A clutch input shaft is fixedly mounted on the left output shaft of the second motor, a clutch is installed on the clutch input shaft, and a pulley shaft is fixedly mounted on the other output shaft of the clutch. The pulley shaft extends back and forth and penetrates the pulley space, and the first pulley is fixedly and symmetrically mounted on the portion of the pulley shaft located in the pulley space, and the transmission axle is described as described above. A feature is that a second pulley is fixedly mounted on a portion located in the pulley space, and a belt is mounted between the second pulley and the first pulley so that power can be transmitted. The cutting device for cutting chips of the cable duct according to claim 1. 前記伝送車の外側円周の断面図は弧状であることを特徴とする請求項1に記載のケーブルダクトの切屑出さない切断装置。 The cutting device for cutting chips of a cable duct according to claim 1, wherein the cross-sectional view of the outer circumference of the transmission vehicle is arcuate. 前記切断空間の底壁には上方に開口した補助伝送車空間が設置され、前記補助伝送車空間の前後内壁の間には補助伝送車が回転可能に装着されていることを特徴とする請求項1に記載のケーブルダクトの切屑出さない切断装置。 A claim characterized in that an auxiliary transmission vehicle space opened upward is installed on the bottom wall of the cut space, and an auxiliary transmission vehicle is rotatably mounted between the front and rear inner walls of the auxiliary transmission vehicle space. The cutting device that does not generate chips of the cable duct according to 1. 前記挟み機構は前記切断筐体の中に固定的に装着された第一モーターを含み、前記切断筐体の中には傘歯車空間が左右対称的に設置され、前記第一モーターの左右両側出力軸にはモーター軸が固定的に装着され、前記モーター軸が左右両側の前記傘歯車空間を貫通しており、前記モーター軸の左右両側面には第一傘歯車が左右対称的にかつ固定的に装着され、左右両側の前記傘歯車空間の上下内壁の間にはねじスリーブが回転可能に装着され、前記ねじスリーブには第二傘歯車が固定的に装着され、前記第二傘歯車と前記第一傘歯車とが噛み合っており、前記ねじスリーブの中にはねじロッドがねじ山により装着され、前記ねじロッドの底面には挟みブロックが固定的に装着され、前記挟みブロックには回転ボールが回転可能に装着され、前記回転ボールは任意の角度で回転することができることを特徴とする請求項1に記載のケーブルダクトの切屑出さない切断装置。 The pinching mechanism includes a first motor fixedly mounted in the cutting housing, and a capscrew space is symmetrically installed in the cutting housing to output both left and right sides of the first motor. A motor shaft is fixedly mounted on the shaft, the motor shaft penetrates the capscrew space on both the left and right sides, and the first capscrew is symmetrically and fixed on the left and right side surfaces of the motor shaft. A screw sleeve is rotatably attached between the upper and lower inner walls of the bevel gear space on both the left and right sides, and a second bead gear is fixedly attached to the screw sleeve, and the second bead gear and the said The first bevel gear is engaged, a screw rod is mounted by a screw thread in the screw sleeve, a pinching block is fixedly mounted on the bottom surface of the screw rod, and a rotating ball is mounted on the pinching block. The cutting device that does not generate chips of a cable duct according to claim 1, wherein the rotating ball is rotatably mounted and can rotate at an arbitrary angle.
JP2019208960A 2019-08-09 2019-11-19 Cutting device that does not produce chips of cable ducts Pending JP2021028110A (en)

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CN117047321A (en) * 2023-10-13 2023-11-14 江苏宗达电气科技有限公司 Integrative cutting device is used to insulating paper
CN117226907A (en) * 2023-11-16 2023-12-15 泰州市华盛消防装备有限公司 Cutting equipment for processing fire hose
CN117226907B (en) * 2023-11-16 2024-02-02 泰州市华盛消防装备有限公司 Cutting equipment for processing fire hose
CN117483607A (en) * 2023-12-29 2024-02-02 济南精电龙基智能技术有限公司 Cutting equipment for metal cable
CN117483607B (en) * 2023-12-29 2024-04-05 济南精电龙基智能技术有限公司 Cutting equipment for metal cable
CN117712934A (en) * 2024-02-02 2024-03-15 国网福建省电力有限公司厦门供电公司 Power cable sheath cutting equipment
CN117712934B (en) * 2024-02-02 2024-05-07 国网福建省电力有限公司厦门供电公司 Power cable sheath cutting equipment

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CN110370341A (en) 2019-10-25
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