CN104030082B - High Power Cable Exporter - Google Patents
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Abstract
本发明公开了高动力电缆输出机,包括支撑装置(1)和输送装置(2),所述的支撑装置(1)包括两个支撑辊筒(101),所述的输送装置(2)位于两个支撑辊筒(101)之间,其包括柜体(201),以及至少两个滚轮传动器(3),滚轮传动器(3)包括动滚轮(301)和静滚轮(302),所有动滚轮(301)和静滚轮(302)都分别通过一个电机带动旋转,所述的静滚轮(302)的本体(304)与其轮轴之间设置有环形压力传感器(5)。本发明的有益效果是:设置多组滚轮,每个滚轮单独由一个电机带动,保证了动力输出,设置传感器测试静滚轮和动滚轮对电缆的夹持力,夹持力的适中,保证电缆的安全传送。
The invention discloses a high power cable output machine, comprising a supporting device (1) and a conveying device (2), the supporting device (1) includes two supporting rollers (101), and the conveying device (2) is located Between two supporting rollers (101), it includes a cabinet body (201), and at least two roller drives (3), and the roller drives (3) include moving rollers (301) and static rollers (302), all Both the moving roller (301) and the static roller (302) are respectively driven to rotate by a motor, and an annular pressure sensor (5) is arranged between the body (304) of the static roller (302) and its axle. The beneficial effects of the present invention are as follows: multiple groups of rollers are provided, each roller is driven by a single motor to ensure the power output, sensors are arranged to test the clamping force of the static roller and the moving roller on the cable, the clamping force is moderate, and the cable is guaranteed Safe delivery.
Description
技术领域technical field
本发明涉及到一种电缆输送装置,特别是涉及到高动力电缆输出机。The invention relates to a cable conveying device, in particular to a high-power cable output machine.
背景技术Background technique
现有城市中,电线电缆在空中走太过于影响市容,如今,绝大多数电缆从地底穿过,地底敷设电缆时,一般都是通过电缆输送装置进行输送,一般都是滚轮夹住电缆,然后滚轮滚动后,进行输送电缆,但是现有的输送装置,都是采用两个滚轮夹住电缆,且一个主转滚轮,另一个是被转滚轮,在输送时,电缆传动速度非常慢,影响到了工作进度。In existing cities, wires and cables traveling in the air affect the city appearance too much. Nowadays, most cables pass through the ground. When laying cables underground, they are usually transported by cable conveying devices. Usually, the cables are clamped by rollers, and then After the rollers roll, the cable is conveyed, but the existing conveying device uses two rollers to clamp the cable, and one is the main roller, and the other is the driven roller. When conveying, the transmission speed of the cable is very slow, which affects the work progress.
发明内容Contents of the invention
本发明的目的在于克服上述现有技术的缺点和不足,提供高动力电缆输出机,解决现有的电缆输送机输送速度慢的缺陷。The object of the present invention is to overcome the shortcomings and deficiencies of the above-mentioned prior art, provide a high-power cable output machine, and solve the defect of slow conveying speed of the existing cable conveyor.
本发明的目的通过下述技术方案实现:高动力电缆输出机,包括支撑装置和输送装置,所述的支撑装置包括两个支撑辊筒,支撑辊筒包括两个竖直设置的支腿,以及设置在两个支腿之间的辊筒,所述的输送装置位于两个支撑辊筒之间,其包括柜体,以及至少两个滚轮传动器,滚轮传动器都设置在柜体上端面,其包括动滚轮和静滚轮,动滚轮和静滚轮的轮轴都呈竖直状,所有的静滚轮沿直线排列,相应动滚轮和静滚轮的连线垂直于经过所有静滚轮的直线,所有动滚轮和静滚轮都分别通过一个电机带动旋转,所有动滚轮的电机都安装在一个推拉装置上,推拉装置位于柜体内部,其包括小车,所有连接动滚轮的电机都安装在小车上,小车的侧端面上连接有一个螺旋杆,螺旋杆的延伸方向即与经过所有静滚轮的直线垂直,螺旋杆一端与小车为可旋动连接,另一端螺纹贯穿柜体的侧壁,螺旋杆位于柜体外的一端上设置有旋动轮,所述的静滚轮的本体与其轮轴之间设置有环形压力传感器,环形压力传感器的信号输出都连接到显示器上,显示器安装在柜体的侧壁上。本装置设置多组滚轮夹持电缆,而且一组滚轮中的动滚轮和静滚轮都分别用电机带动,使得本装置的动力很大,动滚轮采用推拉装置靠近或远离静滚轮,小车的车轮的移动方向即垂直于经过所有静滚轮的直线,旋动螺旋杆即可控制小车行走,因为螺旋杆与柜体侧壁是螺旋连接,所以旋动螺旋杆,螺旋杆会沿其延伸方向运动,从而对小车推动或拉动,旋动轮则是方便螺旋杆旋转,本装置还设置了环形压力传感器,通过显示器显示该压力传感器的数值,工作人员从而判断静滚轮和动滚轮夹持电缆的力道是否合适,因为力道过大容易导致电缆受损,力道过小,在传动过程中,使得电缆打滑,从而保证了电缆的安全传动。The purpose of the present invention is achieved through the following technical solutions: a high-powered cable output machine, including a support device and a conveying device, the support device includes two support rollers, and the support rollers include two vertically arranged legs, and The roller arranged between the two legs, the conveying device is located between the two support rollers, it includes a cabinet, and at least two roller drives, and the roller drives are all arranged on the upper end surface of the cabinet, It includes moving rollers and static rollers. The axles of the moving rollers and static rollers are vertical. All the static rollers are arranged in a straight line. The line connecting the corresponding moving rollers and static rollers is perpendicular to the straight line passing through all the static rollers. The rollers and static rollers are driven by a motor to rotate respectively. The motors of all the moving rollers are installed on a push-pull device. The push-pull device is located inside the cabinet, which includes a trolley. There is a screw rod connected to the end surface. The extension direction of the screw rod is perpendicular to the straight line passing through all the static rollers. One end of the screw rod is rotatably connected to the trolley, and the thread at the other end runs through the side wall of the cabinet. The screw rod is located outside the cabinet. One end is provided with a rotating wheel, and an annular pressure sensor is arranged between the body of the static roller and its axle, and the signal output of the annular pressure sensor is connected to a display, which is installed on the side wall of the cabinet. The device is equipped with multiple sets of rollers to clamp the cables, and the moving rollers and static rollers in one group of rollers are driven by motors respectively, so that the power of the device is very large. The moving rollers use a push-pull device to approach or stay away from the static rollers. The moving direction is perpendicular to the straight line passing through all the static rollers, and the trolley can be controlled by turning the screw rod, because the screw rod is connected with the side wall of the cabinet in a spiral, so when the screw rod is rotated, the screw rod will move along its extension direction, thus For pushing or pulling the trolley, the rotating wheel is convenient for the rotation of the screw rod. This device is also equipped with a ring pressure sensor. The value of the pressure sensor is displayed on the display, so that the staff can judge whether the strength of the static roller and the moving roller to clamp the cable is appropriate. Because the force is too large, it is easy to cause damage to the cable, and the force is too small, so that the cable will slip during the transmission process, thereby ensuring the safe transmission of the cable.
进一步,上述的辊筒两端都设置一个套环,两个套环分别套在两个支腿上,使得辊筒在竖直方向上运动,套环的周壁螺纹连接有一个紧固螺杆,紧固螺杆呈水平状,并穿过套环,当要移动辊筒时,向外旋出紧固螺杆,当要固定辊筒时,向内旋动紧固螺杆,使得紧固螺杆接触到支腿,从而固定住辊筒,辊筒可以升降,当电缆直径变化时,调节辊筒高度,使得电缆位于滚轮的中心上。Further, a collar is provided at both ends of the above-mentioned roller, and the two collars are respectively sleeved on the two legs, so that the roller moves in the vertical direction, and a fastening screw is threaded on the peripheral wall of the collar, and the tightness The fastening screw is horizontal and passes through the collar. When the roller is to be moved, the fastening screw is turned outward. When the roller is to be fixed, the fastening screw is turned inward so that the fastening screw touches the leg , so as to fix the roller, the roller can be raised and lowered, and when the diameter of the cable changes, adjust the height of the roller so that the cable is located on the center of the roller.
进一步,上述的紧固螺杆位于套环外侧的一端设置有一个旋转盘,旋转盘的周壁上设置有防滑纹,方便旋动紧固螺杆。Further, the above-mentioned fastening screw is provided with a rotating disk at one end outside the collar, and the peripheral wall of the rotating disk is provided with anti-skid lines, which facilitates the rotation of the fastening screw.
进一步,上述的动滚轮和静滚轮的圆周壁上布满有增加摩擦力的突起。因为动滚轮和静滚轮都分别单独由一电机带动旋动,所以对滚轮与电缆间的摩擦有很大的要求,滚轮的轮面一般是橡胶制成,再设置突起,保证了摩擦力。Further, the above-mentioned circumferential walls of the moving roller and the static roller are covered with protrusions that increase friction. Because the moving roller and the static roller are respectively driven by a motor to rotate, there is a great requirement for the friction between the roller and the cable. The wheel surface of the roller is generally made of rubber, and a protrusion is provided to ensure the friction.
本发明的有益效果是:设置多组滚轮,每个滚轮单独由一个电机带动,保证了动力输出,设置传感器测试静滚轮和动滚轮对电缆的夹持力,夹持力的适中,保证电缆的安全传送。The beneficial effects of the present invention are as follows: multiple groups of rollers are provided, each roller is driven by a single motor to ensure the power output, sensors are arranged to test the clamping force of the static roller and the moving roller on the cable, the clamping force is moderate, and the cable is guaranteed Safe delivery.
附图说明Description of drawings
图1 为实施例的结构示意图;Fig. 1 is the structural representation of embodiment;
图2 为实施例中支腿与辊筒之间的安装结构示意图;Fig. 2 is a schematic diagram of the installation structure between the legs and the roller in the embodiment;
图3 为实施例中推拉装置的结构示意图;Fig. 3 is the structural representation of push-pull device in the embodiment;
图4 为实施例中螺旋杆与小车的连接示意图;Fig. 4 is the connection schematic diagram of screw rod and trolley in the embodiment;
图5 为实施例中动滚轮的结构示意图;Fig. 5 is the structural representation of moving roller in the embodiment;
图6 为实施例中静滚轮的结构示意图;Fig. 6 is the structural representation of static roller in the embodiment;
图中,1-支撑装置,2-输送装置,3-滚轮传动器,4-推拉装置,5-环形压力传感器,6-显示器,101-支撑辊筒,102-支腿,103-辊筒,104-套环,105-紧固螺杆,201-柜体,301-动滚轮,302-静滚轮,303-突起,304-本体,401-小车,402-螺旋杆,403-旋动轮。In the figure, 1-support device, 2-transport device, 3-roller drive, 4-push-pull device, 5-ring pressure sensor, 6-display, 101-support roller, 102-leg, 103-roller, 104-collar, 105-fastening screw rod, 201-cabinet body, 301-moving roller, 302-static roller, 303-protrusion, 304-body, 401-car, 402-screw rod, 403-rotating wheel.
具体实施方式detailed description
下面结合实施例对本发明作进一步的详细说明,但是本发明的结构不仅限于以下实施例:Below in conjunction with embodiment the present invention is described in further detail, but structure of the present invention is not limited to following embodiment:
【实施例】【Example】
如图1-6所示,高动力电缆输出机,包括支撑装置1和输送装置2,所述的支撑装置1包括两个支撑辊筒101,支撑辊筒101包括两个竖直设置的支腿102,以及设置在两个支腿102之间的辊筒103,所述的输送装置2位于两个支撑辊筒101之间,其包括柜体201,以及两个滚轮传动器3,滚轮传动器3都设置在柜体201上端面,其包括动滚轮301和静滚轮302,动滚轮301和静滚轮302的轮轴都呈竖直状,所有的静滚轮302沿直线排列,相应动滚轮301和静滚轮302的连线垂直于经过所有静滚轮302的直线,所有动滚轮301和静滚轮302都分别通过一个电机带动旋转,所有动滚轮301的电机都安装在一个推拉装置4上,推拉装置4位于柜体201内部,其包括小车401,所有连接动滚轮301的电机都安装在小车401上,小车401的侧端面上连接有一个螺旋杆402,螺旋杆402的延伸方向即与经过所有静滚轮302的直线垂直,螺旋杆402一端与小车401为可旋动连接,另一端螺纹贯穿柜体201的侧壁,螺旋杆402位于柜体201外的一端上设置有旋动轮403,所述的静滚轮302的本体304与其轮轴之间设置有环形压力传感器5,环形压力传感器5的信号输出都连接到显示器6上,显示器6安装在柜体201的侧壁上。本装置设置多组滚轮夹持电缆,而且一组滚轮中的动滚轮301和静滚轮302都分别用电机带动,使得本装置的动力很大,动滚轮301采用推拉装置4靠近或远离静滚轮302,小车401的车轮的移动方向即垂直于经过所有静滚轮302的直线,旋动螺旋杆402即可控制小车401行走,因为螺旋杆402与柜体201侧壁是螺旋连接,所以旋动螺旋杆402,螺旋杆402会沿其延伸方向运动,从而对小车401推动或拉动,旋动轮则是方便螺旋杆402旋转,本装置还设置了环形压力传感器5,通过显示器6显示该压力传感器的数值,工作人员从而判断静滚轮302和动滚轮301夹持电缆的力道是否合适,因为力道过大容易导致电缆受损,力道过小,在传动过程中,使得电缆打滑,从而保证了电缆的安全传动。柜体201的上端面可以设置一个大导槽,用于静滚轮302轮轴的移动,也可以在每个静滚轮302轮轴处分别设置一个小导槽,本实施例中,采用小导槽,方便静滚轮302轮轴移动,As shown in Figures 1-6, the high power cable output machine includes a support device 1 and a conveying device 2, the support device 1 includes two support rollers 101, and the support roller 101 includes two vertically arranged legs 102, and the roller 103 arranged between the two legs 102, the conveying device 2 is located between the two supporting rollers 101, which includes a cabinet 201, and two roller drives 3, the roller drive 3 are arranged on the upper end surface of the cabinet body 201, which includes a moving roller 301 and a static roller 302. The axles of the moving roller 301 and the static roller 302 are all vertical, and all the static rollers 302 are arranged in a straight line. The corresponding moving roller 301 and static roller The connection line of the rollers 302 is perpendicular to the straight line passing through all the static rollers 302, all the moving rollers 301 and the static rollers 302 are driven to rotate by a motor respectively, and the motors of all the moving rollers 301 are installed on a push-pull device 4, and the push-pull device 4 is located at Inside the cabinet 201, it includes a trolley 401. All motors connected to the moving rollers 301 are installed on the trolley 401. A screw rod 402 is connected to the side end surface of the trolley 401. The extension direction of the screw rod 402 is the same as passing through all the static rollers 302. The straight line is vertical, one end of the screw rod 402 is rotatably connected with the trolley 401, and the other end is threaded through the side wall of the cabinet body 201, and the end of the screw rod 402 located outside the cabinet body 201 is provided with a rotating wheel 403, the static roller An annular pressure sensor 5 is arranged between the body 304 of the 302 and its axle, and the signal output of the annular pressure sensor 5 is connected to the display 6 , which is installed on the side wall of the cabinet 201 . This device is provided with multiple groups of rollers to clamp the cable, and the moving roller 301 and the static roller 302 in one group of rollers are respectively driven by motors, so that the power of the device is very large, and the moving roller 301 uses a push-pull device 4 to approach or stay away from the static roller 302 , the moving direction of the wheels of the trolley 401 is perpendicular to the straight line passing through all the static rollers 302, and the movement of the trolley 401 can be controlled by rotating the screw rod 402, because the screw rod 402 is spirally connected with the side wall of the cabinet body 201, so rotating the screw rod 402, the screw rod 402 will move along its extension direction, thereby pushing or pulling the trolley 401, and the rotating wheel is to facilitate the rotation of the screw rod 402. The device is also provided with an annular pressure sensor 5, and the value of the pressure sensor is displayed through the display 6. The staff thus judges whether the strength of the static roller 302 and the moving roller 301 to clamp the cable is appropriate, because the strength is too large and the cable is easily damaged, and the strength is too small, so that the cable slips during the transmission process, thereby ensuring the safe transmission of the cable. The upper end surface of cabinet body 201 can be provided with a large guide groove, is used for the movement of static roller 302 axles, also can be respectively provided with a small guide groove at each static roller 302 axle places, in the present embodiment, adopts small guide groove, convenient static Roller 302 axle moves,
本实施例中辊筒103两端都设置一个套环104,两个套环104分别套在两个支腿102上,使得辊筒103在竖直方向上运动,套环104的周壁螺纹连接有一个紧固螺杆105,紧固螺杆105呈水平状,并穿过套环104,当要移动辊筒103时,向外旋出紧固螺杆105,当要固定辊筒103时,向内旋动紧固螺杆105,使得紧固螺杆105接触到支腿102,从而固定住辊筒103,辊筒103可以升降,当电缆直径变化时,调节辊筒103高度,使得电缆位于滚轮的中心上。In this embodiment, a collar 104 is arranged at both ends of the roller 103, and the two collars 104 are respectively placed on the two supporting legs 102, so that the roller 103 moves in the vertical direction, and the peripheral wall of the collar 104 is screwed. A fastening screw 105, the fastening screw 105 is horizontal, and passes through the collar 104, when the roller 103 is to be moved, the fastening screw 105 is screwed out, and when the roller 103 is to be fixed, it is turned inward Tightening screw rod 105 makes fastening screw rod 105 contact support leg 102, thereby fixes roller 103, and roller 103 can lift, and when cable diameter changes, adjusts the height of roller 103, makes cable be positioned on the center of roller.
本实施例中紧固螺杆105位于套环104外侧的一端设置有一个旋转盘106,旋转盘106的周壁上设置有防滑纹,方便旋动紧固螺杆105。In this embodiment, one end of the fastening screw 105 located outside the collar 104 is provided with a rotating disc 106 , and the peripheral wall of the rotating disc 106 is provided with anti-slip lines, which facilitates the rotation of the fastening screw 105 .
本实施例中动滚轮301和静滚轮302的圆周壁上布满有增加摩擦力的突起303。因为动滚轮301和静滚轮302都分别单独由一电机带动旋动,所以对滚轮与电缆间的摩擦有很大的要求,滚轮的轮面一般是橡胶制成,再设置突起,保证了摩擦力。本实施例中突起303采用半圆体的结构。In this embodiment, the circumferential walls of the moving roller 301 and the static roller 302 are covered with protrusions 303 for increasing friction. Because the moving roller 301 and the static roller 302 are respectively driven by a motor to rotate, there is a great requirement for the friction between the roller and the cable. The wheel surface of the roller is generally made of rubber, and a protrusion is provided to ensure the friction. . In this embodiment, the protrusion 303 adopts a semicircular structure.
Claims (2)
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| CN201410274410.5A CN104030082B (en) | 2014-06-19 | 2014-06-19 | High Power Cable Exporter |
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| CN201410274410.5A CN104030082B (en) | 2014-06-19 | 2014-06-19 | High Power Cable Exporter |
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| CN105836525A (en) * | 2016-04-06 | 2016-08-10 | 胡和萍 | Transfer support for textile machinery |
| CN106877244A (en) * | 2017-02-21 | 2017-06-20 | 许昌美特桥架股份有限公司 | Cable-laying gear |
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| CN203048298U (en) * | 2012-12-31 | 2013-07-10 | 慈溪市宏晟机械设备有限公司 | Wire feeding device |
| CN203229255U (en) * | 2013-05-07 | 2013-10-09 | 安徽林安电力设备有限公司 | Cable delivery wheel |
| CN203345830U (en) * | 2013-06-08 | 2013-12-18 | 轻工业西安机械设计研究院 | Device, capable of running independently, for dragging and conveying special composite cables |
| CN203624697U (en) * | 2013-10-13 | 2014-06-04 | 浙江正导电缆有限公司 | Cable take-up buffer device capable of keeping tension in length directions of cables |
| CN203877627U (en) * | 2014-06-19 | 2014-10-15 | 国网四川省电力公司成都市新都供电分公司 | High power cable output machine |
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2014
- 2014-06-19 CN CN201410274410.5A patent/CN104030082B/en active Active
Also Published As
| Publication number | Publication date |
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| CN104030082A (en) | 2014-09-10 |
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