WO2022104522A1 - 一种智能制造计算机排线装置 - Google Patents

一种智能制造计算机排线装置 Download PDF

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Publication number
WO2022104522A1
WO2022104522A1 PCT/CN2020/129389 CN2020129389W WO2022104522A1 WO 2022104522 A1 WO2022104522 A1 WO 2022104522A1 CN 2020129389 W CN2020129389 W CN 2020129389W WO 2022104522 A1 WO2022104522 A1 WO 2022104522A1
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fixedly installed
block
close
center
resistance
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PCT/CN2020/129389
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English (en)
French (fr)
Inventor
郑连增
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杭州止克科技有限公司
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Priority to CN202080003780.9A priority Critical patent/CN112585073A/zh
Priority to PCT/CN2020/129389 priority patent/WO2022104522A1/zh
Publication of WO2022104522A1 publication Critical patent/WO2022104522A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H49/00Unwinding or paying-out filamentary material; Supporting, storing or transporting packages from which filamentary material is to be withdrawn or paid-out
    • B65H49/18Methods or apparatus in which packages rotate
    • B65H49/34Arrangements for effecting positive rotation of packages
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H59/00Adjusting or controlling tension in filamentary material, e.g. for preventing snarling; Applications of tension indicators
    • B65H59/38Adjusting or controlling tension in filamentary material, e.g. for preventing snarling; Applications of tension indicators by regulating speed of driving mechanism of unwinding, paying-out, forwarding, winding, or depositing devices, e.g. automatically in response to variations in tension
    • B65H59/384Adjusting or controlling tension in filamentary material, e.g. for preventing snarling; Applications of tension indicators by regulating speed of driving mechanism of unwinding, paying-out, forwarding, winding, or depositing devices, e.g. automatically in response to variations in tension using electronic means
    • B65H59/387Regulating unwinding speed

Definitions

  • the invention relates to the technical field of computer equipment, in particular to an intelligent manufacturing computer wiring device.
  • the Internet is a platform for using computers to transmit information.
  • the computer requires different data cable connections during use. Too many data cables will not only affect the user's mood, but also cause safety hazards due to the overheating of the data cable contacts. If the data cable is too long, it will also make the sorting process more cumbersome and waste a lot of people's time.
  • the inventor provides an intelligent manufacturing computer arranging device, which can organize multiple data cables at the same time, and can adjust the diameter of the fixing device to organize data cables of different types and sizes.
  • the data cable is wound, and the winding speed can be adjusted according to the length of the wound data cable, so as to prevent the data cable from breaking due to excessive winding speed and causing potential safety hazards.
  • the present invention provides an intelligent manufacturing computer arranging device, which has the advantages of arranging a plurality of data lines and winding too long data lines while adjusting the winding speed to prevent the data lines from breaking. Data cable clutter and excessively long data cables lead to tedious problems in organizing.
  • an intelligent manufacturing computer arranging device comprising a support frame, The upper and lower ends of the support frame are fixedly installed with a fixed plate, the surface of the fixed plate is provided with a resistance slot, a resistance strip is fixedly installed in the inside of the resistance slot, and the front end of the resistance strip inside the resistance slot is slidably connected with a measuring device.
  • One end of the measuring block close to the edge of the fixed disk is fixedly installed with a compression spring, and the edge of the fixed disk surface is fixedly installed with an electromagnet, one end of the electromagnet is fixedly installed with a return spring, and the other end of the return spring is fixed
  • a magnetic block is installed, the other end of the magnetic block is fixedly installed with a slider, one end of the slider on the surface of the fixed disk close to the center of the fixed disk is slidably installed with a sliding rod, and one end of the sliding rod close to the center of the fixed disk is fixedly installed with a sliding rod.
  • a speed-limiting block is fixedly installed at one end of the connecting rod, and the end of the connecting rods that are close to each other is rotatably connected with a cable tray, the surface of the cable tray is slidably connected with an arc-shaped block, and one end of the arc-shaped block close to the edge of the cable tray is fixed
  • An insulating plate is installed, an electrode plate is fixedly installed on the edge of the cable reel, and a motor is driven and connected to the middle of the rear end of the cable reel.
  • a contact is fixedly installed on the surface of the measuring block, and the contact moves on the surface of the resistance strip to change the resistance value of the circuit.
  • the resistance value of the resistance strip entering the circuit decreases as the contact moves toward the edge of the fixed plate, and two ends of the resistance strip are electrically connected to the contact and the electromagnet, respectively.
  • the magnetic poles of the magnetic block and the end of the electromagnet that are energized close to each other are the same, and the electromagnet repels the magnetic block after the electromagnet is energized.
  • one end of the slider close to the center of the fixed disk is arc-shaped, and the slider drives the slider to move during the movement of the slider.
  • one end of the fixing block close to the center of the fixed disk is fixedly connected to the limit bar, and one end of the limit rod close to the center of the fixed disk is fixedly connected to the limit block.
  • the motor is electrically connected to the electrode plate, and the facing area of the electrode plate is adjusted to adjust the current size of the circuit.
  • the present invention provides an intelligent manufacturing computer arranging device, which has the following beneficial effects:
  • the intelligently manufactured computer cabling device compresses the compression spring through the measuring block through the data line.
  • the measuring block drives the contact to move on the surface of the resistance strip, so that the resistance value of the modified circuit increases, the magnetism of the electromagnet is enhanced, and the electromagnetic The body repels the magnetic block, so that the magnetic block stretches the return spring and drives the slider to move away from the electromagnet.
  • the slider moves to the center of the fixed plate.
  • the data line is initially fixed by the fixed block through the limit bar, and then the data line is fixed twice by the limit block at the top of the limit spring, which makes the fixing effect more significant and can be adjusted according to the moving path of the measuring block.
  • the intelligent manufacturing computer cable arrangement device drives the cable reel to rotate through the drive motor, and the cable reel rotates while winding and arranging the longer data cable.
  • the arc-shaped block drives the insulating plate to move in the direction close to the electrode plates, which reduces the facing area of the two electrode plates, thereby reducing the capacitance, reducing the current size of the circuit, and reducing the rotation speed of the cable tray, avoiding the Risk of breakage of the data cable due to the fast speed of the cable reel.
  • Fig. 1 is the structural representation of the present invention
  • Fig. 2 is the structure schematic diagram of A-A in Fig. 1 of the present invention.
  • Fig. 3 is the schematic diagram of the structure operation of Fig. 2 of the present invention.
  • FIG. 4 is a schematic diagram of a rear view of the structure of the cable tray according to the present invention.
  • FIG. 5 is an enlarged schematic view of the structure A in FIG. 1 of the present invention.
  • Support frame 2. Fixed plate; 3. Resistance slot; 4. Resistance strip; 5. Measuring block; 6. Compression spring; 7. Electromagnet; 8. Return spring; 9. Magnetic block; 10. Slider; 11, sliding rod; 12, fixed block; 13, limit spring; 14, limit rod; 15, connecting rod; 16, speed limit block; 17, cable tray; 18, arc block; 19, Insulation plate; 20, electrode plate; 21, motor.
  • an intelligent manufacturing computer wiring device including a support frame 1, a fixed plate 2 is fixedly installed at the upper and lower ends of the support frame 1, a resistance slot 3 is opened on the surface of the fixed plate 2, and the resistance slot 3 is
  • the resistance bar 4 is fixedly installed inside, and the resistance value of the resistance bar 4 into the circuit decreases with the movement of the contact toward the edge of the fixed plate 2.
  • the two ends of the resistance bar 4 are respectively electrically connected to the contact and the electromagnet 7.
  • the front end of the resistance strip 4 inside the resistance slot 3 is slidably connected with a measuring block 5, the surface of the measuring block 5 is fixedly installed with a contact, the contact moves on the surface of the resistance strip 4 to change the resistance value of the circuit, and the measuring block 5 is close to the fixed plate 2
  • One end of the edge is fixedly installed with a compression spring 6.
  • the edge of the surface of the fixed plate 2 is fixedly installed with an electromagnet 7.
  • One end of the electromagnet 7 is fixedly installed with a return spring 8, and the other end of the return spring 8 is fixedly installed with a magnetic block 9.
  • the magnetic block 9 It is the same as the magnetic pole of the end of the electromagnet 7 that is close to each other after being energized.
  • the electromagnet 7 After the electromagnet 7 is energized, it repels the magnetic block 9.
  • the other end of the magnetic block 9 is fixedly installed with a slider 10.
  • the shape of one end of the slider 10 close to the center of the fixed disk 2 is Arc-shaped, the slider 10 drives the sliding rod 11 to move in the process of moving, the end of the slider 10 on the surface of the fixed disk 2 close to the center of the fixed disk 2 is slidably installed with a sliding rod 11, and the end of the sliding rod 11 close to the center of the fixed disk 2 is fixedly installed with a sliding rod 11.
  • the fixed block 12 one end of the fixed block 12 close to the center of the fixed plate 2 is fixedly connected to the limit bar, and one end of the limit rod 14 close to the center of the fixed plate 2 is fixedly connected to the limit block, and the inside of the fixed block 12 is fixedly installed with a limit spring 13, limiting
  • a limit rod 14 is fixedly installed at one end of the position spring 13 close to the center of the fixed plate 2, and a connecting rod 15 is fixedly installed between the support frames 1.
  • the end of the connecting rods 15 that are close to each other is fixedly installed with a speed limiter 16, and the end of the connecting rods 15 is close to each other.
  • a cable tray 17 is rotatably connected, and an arc-shaped block 18 is slidably connected to the surface of the cable tray 17.
  • An insulating plate 19 is fixedly installed at one end of the arc-shaped block 18 close to the edge of the cable tray 17, and an edge of the cable tray 17 is fixedly installed with a
  • the electrode plate 20 and the middle of the rear end of the cable tray 17 are connected to a motor 21.
  • the motor 21 is electrically connected to the electrode plate 20, and the facing area of the electrode plate 20 is adjusted to adjust the current of the circuit.
  • the data cable is passed through the center of the fixed plate 2 and wrapped around the center of the cable plate 17.
  • the data cable passes through the measuring block 5 to compress the compression spring 6.
  • the measuring block 5 drives the contacts to move on the surface of the resistance strip 4.
  • the resistance value of the modified circuit increases, the magnetism of the electromagnet 7 is enhanced, and the electromagnet 7 repels the magnetic block 9, so that the magnetic block 9 stretches the reset spring 8 and drives the slider 10 to move away from the electromagnet 7, and the slider 10 While moving, it drives the sliding rod 11 to move toward the center of the fixed plate 2 , and when the sliding rod 11 moves, it drives the fixed block 12 to move in the same direction.
  • the limit block at the top fixes the data line twice, which makes the fixing effect more significant, and the limit block can be adjusted to fix the data lines of different diameters according to the movement path of the measuring block 5.
  • the drive motor 21 drives the cable tray 17 to rotate. , while the cable reel 17 rotates, the longer data lines are wound and arranged. When the radius of the wound data line increases to contact with the arc block 18, the arc block 18 drives the insulating plate 19 to move closer to the electrode plate 20.
  • the direction of movement of the two electrode plates 20 reduces the facing area of the two electrode plates 20, thereby reducing the capacitance, reducing the current size of the circuit, and reducing the rotation speed of the cable tray 17, so as to avoid the excessive rotation of the cable tray 17. Risk of breakage.
  • the compression spring 6 is compressed through the measuring block 5 through the data cable, and the measuring block 5 moves the contact on the surface of the resistance strip 4 at the same time, so that the resistance value of the modified circuit increases,
  • the magnetism of the electromagnet 7 is enhanced, and the electromagnet 7 repels the magnetic block 9, so that the magnetic block 9 stretches the return spring 8 and drives the slider 10 to move away from the electromagnet 7, and the slider 10 moves while driving the sliding rod 11 to move.
  • the sliding rod 11 moves and drives the fixed block 12 to move in the same direction.
  • the fixed block 12 preliminarily fixes the data line through the limit bar, and then passes the limit block on the top of the limit spring 13 to the data line.
  • the secondary fixation is performed, so that the fixation effect is more significant, and the fixation of the limit block to the data lines of different diameters can be adjusted according to the movement path of the measurement block 5 .
  • the intelligent manufacturing computer arranging device drives the arranging disk 17 to rotate through the driving motor 21, and the cable arranging disk 17 rotates while winding and arranging the longer data lines.
  • the radius of the winding data line increases to a
  • the arc-shaped block 18 drives the insulating plate 19 to move in the direction close to the electrode plates 20, so that the facing area of the two electrode plates 20 is reduced, thereby reducing the capacitance, reducing the current size of the circuit, and reducing the discharge.
  • the rotation speed of the cable reel 17 is reduced, which avoids the risk of data cable breakage caused by the too fast rotation speed of the cable reel 17 .

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Abstract

本发明涉及计算机设备技术领域,且公开了一种智能制造计算机排线装置,包括支撑架,支撑架的上下两端固定安装有固定盘,固定盘的表面开设有电阻槽,电阻槽的内部固定安装有电阻条,电阻槽内部电阻条的前端滑动连接有测量块,测量块靠近固定盘边缘的一端固定安装有压簧,固定盘表面的边缘固定安装有电磁体,电磁体的一端固定安装有复位弹簧。该智能制造计算机排线装置,可同时对多根数据线进行整理,且可调节固定装置的口径大小进而对不同类型大小的数据线进行整理,对过长的数据线进行缠绕处理,且能根据缠绕的数据线的长度调节缠绕速度,防止缠绕速度过快导致数据线断裂引发安全隐患。

Description

一种智能制造计算机排线装置 技术领域
本发明涉及计算机设备技术领域,具体为一种智能制造计算机排线装置。
背景技术
互联网是利用计算机进行信息传递的平台,计算机在使用的过程中需要不同的数据线连接,过多的数据线杂乱无章不仅会影响使用者的使用心情,还会因为数据线接触端过热进而导致安全隐患的发生,数据线过长也会导致整理的过程更加的繁琐,浪费人们大量的时间。
为解决上述问题,发明者提供了一种智能制造计算机排线装置,可同时对多根数据线进行整理,且可调节固定装置的口径大小进而对不同类型大小的数据线进行整理,对过长的数据线进行缠绕处理,且能根据缠绕的数据线的长度调节缠绕速度,防止缠绕速度过快导致数据线断裂引发安全隐患。
发明内容
(一)解决的技术问题
针对现有技术的不足,本发明提供了一种智能制造计算机排线装置,具备对多根数据线进行排线和缠绕过长的数据线的同时调节缠绕速度防止数据线断裂的优点,解决了数据线杂乱和过长的数据线导致整理繁琐的问题。
(二)技术方案
为实现上述对多根数据线进行排线和缠绕过长的数据线的同时调节缠绕速度防止数据线断裂的目的,本发明提供如下技术方案:一种智能制造计算机排线装置,包括支撑架,所述支撑架的上下两端固定安装有固定盘,所述固定盘的表面开设有电阻槽,所述电阻槽的内部固定安装有电阻条,所述电阻槽内部电阻条的前端滑动连接有测量块,所述测量块靠近固定盘边缘的一端固定安装有压簧所述固定盘表面的边缘固定安装有电磁体,所述电磁体的 一端固定安装有复位弹簧,所述复位弹簧的另一端固定安装有磁块,所述磁块的另一端固定安装有滑块,所述固定盘表面滑块靠近固定盘中心的一端滑动安装有滑杆,所述滑杆靠近固定盘中心的一端固定安装有固定块,所述固定块的内部固定安装有限位弹簧,所述限位弹簧靠近固定盘中心的一端固定安装有限位杆,所述支撑架之间固定安装有连接杆,所述连接杆相互靠近的一端固定安装有限速块,所述连接杆相互靠近的一端转动连接有排线盘,所述排线盘的表面滑动连接有弧形块,所述弧形块靠近排线盘边缘的一端固定安装有绝缘板,所述排线盘的边缘固定安装有电极板,所述排线盘后端的中部传动连接有电机。
优选的,所述测量块的表面固定安装有触头,触头在电阻条表面移动进而改变电路的电阻值。
优选的,所述电阻条通入电路的电阻值随着触头向固定盘边缘方向的移动而减小,电阻条的两端分别和触头以及电磁体电性连接。
优选的,所述磁块和通电后的电磁体相互靠近的一端的磁极相同,电磁体通电后排斥磁块。
优选的,所述滑块靠近固定盘中心的一端形状为弧形,滑块移动的过程中带动滑杆移动。
优选的,所述固定块靠近固定盘中心的一端固定连接有限位条,所述限位杆靠近固定盘中心的一端固定连接有限位块。
优选的,所述电机和电极板电性连接,调节电极板的正对面积进而调节电路的电流大小。
(三)有益效果
与现有技术相比,本发明提供了一种智能制造计算机排线装置,具备以下有益效果:
1、该智能制造计算机排线装置,通过数据线通过测量块压缩压簧,测量 块移动的同时带动触头在电阻条的表面移动,使得改电路的电阻值增加,电磁体的磁性增强,电磁体排斥磁块,使得磁块拉伸复位弹簧的同时带动滑块向远离电磁体的方向移动,滑块移动的同时带动滑杆向固定盘的中心方向移动,滑杆移动的同时带动固定块同向移动,固定块通过限位条对数据线进行初步固定,再通过限位弹簧顶端的限位块对数据线进行二次固定,使得固定效果更加的显著,且能根据测量块的移动路径调整限位块对不同直径数据线的固定。
2、该智能制造计算机排线装置,通过驱动电机带动排线盘转动,排线盘转动的同时对较长的数据线进行缠绕排线,当缠绕数据线的半径增加至和弧形块时,弧形块带动绝缘板向靠近电极板之间的方向移动,使得两块电极板的正对面积减小,进而使得电容降低,使电路的电流大小降低,排线盘的转动速度降低,避免了排线盘转速过快导致数据线发生断裂的风险。
附图说明
图1为本发明结构示意图;
图2为本发明图1中A-A出结构示意图;
图3为本发明图2结构运行示意图;
图4为本发明排线盘结构背视示意图;
图5为本发明图1中A结构放大示意图。
图中:1、支撑架;2、固定盘;3、电阻槽;4、电阻条;5、测量块;6、压簧;7、电磁体;8、复位弹簧;9、磁块;10、滑块;11、滑杆;12、固定块;13、限位弹簧;14、限位杆;15、连接杆;16、限速块;17、排线盘;18、弧形块;19、绝缘板;20、电极板;21、电机。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而 不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-5,一种智能制造计算机排线装置,包括支撑架1,支撑架1的上下两端固定安装有固定盘2,固定盘2的表面开设有电阻槽3,电阻槽3的内部固定安装有电阻条4,电阻条4通入电路的电阻值随着触头向固定盘2边缘方向的移动而减小,电阻条4的两端分别和触头以及电磁体7电性连接,电阻槽3内部电阻条4的前端滑动连接有测量块5,测量块5的表面固定安装有触头,触头在电阻条4表面移动进而改变电路的电阻值,测量块5靠近固定盘2边缘的一端固定安装有压簧6固定盘2表面的边缘固定安装有电磁体7,电磁体7的一端固定安装有复位弹簧8,复位弹簧8的另一端固定安装有磁块9,磁块9和通电后的电磁体7相互靠近的一端的磁极相同,电磁体7通电后排斥磁块9,磁块9的另一端固定安装有滑块10,滑块10靠近固定盘2中心的一端形状为弧形,滑块10移动的过程中带动滑杆11移动,固定盘2表面滑块10靠近固定盘2中心的一端滑动安装有滑杆11,滑杆11靠近固定盘2中心的一端固定安装有固定块12,固定块12靠近固定盘2中心的一端固定连接有限位条,限位杆14靠近固定盘2中心的一端固定连接有限位块,固定块12的内部固定安装有限位弹簧13,限位弹簧13靠近固定盘2中心的一端固定安装有限位杆14,支撑架1之间固定安装有连接杆15,连接杆15相互靠近的一端固定安装有限速块16,连接杆15相互靠近的一端转动连接有排线盘17,排线盘17的表面滑动连接有弧形块18,弧形块18靠近排线盘17边缘的一端固定安装有绝缘板19,排线盘17的边缘固定安装有电极板20,排线盘17后端的中部传动连接有电机21,电机21和电极板20电性连接,调节电极板20的正对面积进而调节电路的电流大小。
工作原理:将数据线穿过固定盘2的中心缠绕在排线盘17的中心,数据线通过测量块5压缩压簧6,测量块5移动的同时带动触头在电阻条4的表面 移动,使得改电路的电阻值增加,电磁体7的磁性增强,电磁体7排斥磁块9,使得磁块9拉伸复位弹簧8的同时带动滑块10向远离电磁体7的方向移动,滑块10移动的同时带动滑杆11向固定盘2的中心方向移动,滑杆11移动的同时带动固定块12同向移动,固定块12通过限位条对数据线进行初步固定,再通过限位弹簧13顶端的限位块对数据线进行二次固定,使得固定效果更加的显著,且能根据测量块5的移动路径调整限位块对不同直径数据线的固定,驱动电机21带动排线盘17转动,排线盘17转动的同时对较长的数据线进行缠绕排线,当缠绕数据线的半径增加至和弧形块18接触时,弧形块18带动绝缘板19向靠近电极板20之间的方向移动,使得两块电极板20的正对面积减小,进而使得电容降低,使电路的电流大小降低,排线盘17的转动速度降低,避免了排线盘17转速过快导致数据线发生断裂的风险。
综上所述,该智能制造计算机排线装置,通过数据线通过测量块5压缩压簧6,测量块5移动的同时带动触头在电阻条4的表面移动,使得改电路的电阻值增加,电磁体7的磁性增强,电磁体7排斥磁块9,使得磁块9拉伸复位弹簧8的同时带动滑块10向远离电磁体7的方向移动,滑块10移动的同时带动滑杆11向固定盘2的中心方向移动,滑杆11移动的同时带动固定块12同向移动,固定块12通过限位条对数据线进行初步固定,再通过限位弹簧13顶端的限位块对数据线进行二次固定,使得固定效果更加的显著,且能根据测量块5的移动路径调整限位块对不同直径数据线的固定。
并且,该智能制造计算机排线装置,通过驱动电机21带动排线盘17转动,排线盘17转动的同时对较长的数据线进行缠绕排线,当缠绕数据线的半径增加至和弧形块18接触时,弧形块18带动绝缘板19向靠近电极板20之间的方向移动,使得两块电极板20的正对面积减小,进而使得电容降低,使电路的电流大小降低,排线盘17的转动速度降低,避免了排线盘17转速过快导致数据线发生断裂的风险。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (7)

  1. 一种智能制造计算机排线装置,包括支撑架(1),其特征在于:所述支撑架(1)的上下两端固定安装有固定盘(2),所述固定盘(2)的表面开设有电阻槽(3),所述电阻槽(3)的内部固定安装有电阻条(4),所述电阻槽(3)内部电阻条(4)的前端滑动连接有测量块(5),所述测量块(5)靠近固定盘(2)边缘的一端固定安装有压簧(6)所述固定盘(2)表面的边缘固定安装有电磁体(7),所述电磁体(7)的一端固定安装有复位弹簧(8),所述复位弹簧(8)的另一端固定安装有磁块(9),所述磁块(9)的另一端固定安装有滑块(10),所述固定盘(2)表面滑块(10)靠近固定盘(2)中心的一端滑动安装有滑杆(11),所述滑杆(11)靠近固定盘(2)中心的一端固定安装有固定块(12),所述固定块(12)的内部固定安装有限位弹簧(13),所述限位弹簧(13)靠近固定盘(2)中心的一端固定安装有限位杆(14),所述支撑架(1)之间固定安装有连接杆(15),所述连接杆(15)相互靠近的一端固定安装有限速块(16),所述连接杆(15)相互靠近的一端转动连接有排线盘(17),所述排线盘(17)的表面滑动连接有弧形块(18),所述弧形块(18)靠近排线盘(17)边缘的一端固定安装有绝缘板(19),所述排线盘(17)的边缘固定安装有电极板(20),所述排线盘(17)后端的中部传动连接有电机(21)。
  2. 根据权利要求1所述的一种智能制造计算机排线装置,其特征在于:所述测量块(5)的表面固定安装有触头。
  3. 根据权利要求1所述的一种智能制造计算机排线装置,其特征在于:所述电阻条(4)通入电路的电阻值随着触头向固定盘(2)边缘方向的移动而减小,电阻条(4)的两端分别和触头以及电磁体(7)电性连接。
  4. 根据权利要求1所述的一种智能制造计算机排线装置,其特征在于:所述磁块(9)和通电后的电磁体(7)相互靠近的一端的磁极相同。
  5. 根据权利要求1所述的一种智能制造计算机排线装置,其特征在于: 所述滑块(10)靠近固定盘(2)中心的一端形状为弧形。
  6. 根据权利要求1所述的一种智能制造计算机排线装置,其特征在于:所述固定块(12)靠近固定盘(2)中心的一端固定连接有限位条,所述限位杆(14)靠近固定盘(2)中心的一端固定连接有限位块。
  7. 根据权利要求1所述的一种智能制造计算机排线装置,其特征在于:所述电机(21)和电极板(20)电性连接。
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