WO2021253461A1 - 一种智能电网架设用支撑装置 - Google Patents

一种智能电网架设用支撑装置 Download PDF

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Publication number
WO2021253461A1
WO2021253461A1 PCT/CN2020/097289 CN2020097289W WO2021253461A1 WO 2021253461 A1 WO2021253461 A1 WO 2021253461A1 CN 2020097289 W CN2020097289 W CN 2020097289W WO 2021253461 A1 WO2021253461 A1 WO 2021253461A1
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Prior art keywords
sleeve
gear
pressure
support device
block
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PCT/CN2020/097289
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English (en)
French (fr)
Inventor
杨哲
秦苒
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南京唐壹信息科技有限公司
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Priority to PCT/CN2020/097289 priority Critical patent/WO2021253461A1/zh
Publication of WO2021253461A1 publication Critical patent/WO2021253461A1/zh

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H12/00Towers; Masts or poles; Chimney stacks; Water-towers; Methods of erecting such structures
    • E04H12/34Arrangements for erecting or lowering towers, masts, poles, chimney stacks, or the like
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G7/00Overhead installations of electric lines or cables

Definitions

  • the invention relates to the technical field of sports equipment, in particular to a support device for the erection of a smart grid.
  • the smart grid is the intelligence of the power grid. It is based on an integrated, high-speed two-way communication network. Through the application of advanced sensing and measurement technology, equipment technology, control methods, and advanced decision support system technology, the current grid It is still the foundation of its structure, but the traditional way of supporting the power grid is relatively simple, usually for the erection of telegraph poles. Before erection, measurement and production need to be time-consuming and labor-intensive, and work efficiency is low. To this end, we propose a support device for the erection of a smart grid.
  • the purpose of the present invention is to provide a support device for the erection of a smart grid to solve the above-mentioned problems in the background art.
  • a support device for the erection of a smart grid comprising a cross beam, the top left and right sides of the cross beam 1 are provided with clamping mechanisms 1-1, the bottom left side of the cross beam is provided with a left lift A left sleeve is provided at the bottom of the left lifting bar, a left pedal is provided on the left side of the left sleeve, a left slider is provided inside the left sleeve, a left pressure block is provided on the upper part of the left slider, and the left pressure A left pressure rod is arranged inside the block, a left pressure spring is installed inside the left sliding block, a left blocking port is arranged on the left side of the left sliding block, a right lifting rod is arranged on the right side of the bottom of the cross beam, and a right sleeve is arranged at the bottom of the right lifting rod
  • the right side of the right sleeve is provided with a right pedal, the inside of the right s
  • a right pressure spring is installed inside the block, a right baffle is provided on the right side of the right slider, a transmission device is provided between the left sleeve and the right sleeve, the transmission device includes a motor, and a main transmission gear is provided at the bottom of the motor, A main rotating gear is arranged at the bottom of the main transmission gear, a rotating shaft is arranged in the middle of the main rotating gear, a left rotating gear is arranged at the left end of the rotating shaft, a right rotating gear is arranged at the right end of the rotating shaft, a support frame is arranged at the bottom of the rotating shaft, and the transmission device
  • the upper part is provided with a control box, and the bottom of the left sleeve and the bottom of the right sleeve are both provided with mounting seats.
  • the clamping mechanism includes a plurality of second telescopic rods fixedly arranged on the inner wall of the first through hole, and one end of the plurality of second telescopic rods away from the inner wall of the first through hole is fixedly connected with the same splint, so A second spring is sleeved on the second telescopic rod.
  • the top ends of the left pressure spring and the right pressure spring are respectively fixedly connected to the left pressure block and the right pressure block, and the top ends of the left pressure block and the right pressure block are respectively connected to the bottom ends of the left lifting rod and the right lifting rod.
  • sliding grooves are provided between the left sliding block and the left pedal, the right sliding block and the right pedal, and the sliding grooves are respectively communicated with the left blocking port and the right blocking port, and the left and right blocking ports are connected to the left and right pressure rods.
  • the upper ends of the left and right pressure rods are fixedly connected with the left and right pedals.
  • a left fixing ring is provided at the bottom of the left lifting rod, the bottom of the left fixing ring is connected to the top of the transmission device, the bottom of the right lifting rod is provided with a right fixing ring, and the bottom of the right fixing ring is connected to the top of the transmission device.
  • a left transmission gear is provided on the left sleeve, the left transmission gear is engaged with the left rotation gear, the bottom of the left sleeve is provided with a left fixing seat, and the bottom of the left fixing seat is connected to the bottom of the transmission device,
  • the right sleeve is provided with a right transmission gear, the right transmission gear is engaged with the right rotation gear, the bottom of the right sleeve is provided with a right fixing seat, and the bottom of the right fixing seat is connected with the bottom of the transmission device.
  • the present invention has the beneficial effects that the motor is activated by the control box, the motor drives the main transmission gear to rotate, the main rotation gear meshes with the main transmission gear to rotate, and the shaft drives the left rotation gear and the right rotation gear to rotate together.
  • the transmission gear meshes and rotates with the left and right rotating gears, so that the left and right lifting rods are lifted and lowered from the inside of the left and right sleeves respectively to reach a suitable height, and the left and right lifting rods stop lifting, effectively adjusting the overall height of the support device, without manual operation, and satisfying the power grid in different environments
  • the installation is convenient and labor-saving.
  • the left and right pedals can be stepped on, and the left and right pressure springs are respectively forced to drive the left and right pressure blocks to move upwards, so that the left and right lifting rods are separated from the inside of the left and right sleeves, thereby adjusting the overall height of the support device , Solve the problem of insufficient power supply of the control box, enhance the overall practicability of the support device, and then fix the positions of the left lifting rod and the left sleeve, the right lifting rod and the right sleeve through the pin rods to improve the overall stability of the support device.
  • Figure 1 is a schematic diagram of the structure of the present invention
  • Figure 2 is a schematic diagram of the structure of the transmission device of the present invention.
  • Figure 3 is a schematic diagram of the structure of the clamping mechanism of the present invention.
  • a support device for the erection of a smart grid comprising a cross beam 1, the top left and right sides of the cross beam 1 are provided with clamping mechanisms 1-1, the bottom left side of the cross beam 1
  • Set the left lifting rod 4 the bottom of the left lifting rod 4 is provided with a left sleeve 5, the left side of the left sleeve 5 is provided with a left pedal 7, the left sleeve 5 is provided with a left slider 11, and the upper part of the left slider 11 is provided with a left pressure block 6,
  • the left pressure block 6 is provided with a left pressure rod 10
  • the left slide block 11 is provided with a left pressure spring 9
  • the left slide block 11 is provided with a left block 8 on the left side
  • a right lifting rod 12 is provided on the right side of the bottom of the cross beam 1
  • a right lifting rod 12 is provided at the bottom
  • a right sleeve 13 is provided
  • a right pedal 15 is provided on the right side of the right sle
  • the right slide block 14 is equipped with a right pressure spring 17, and the right slide block 19 is provided with a right block 16 on the right side.
  • the left pedal 7 and the right pedal 15 can be stepped on, and the left and right pedals follow the left and right blocks.
  • the left pressure spring 9 and the right pressure spring 17 are respectively forced to push the left pressure rod 10 and the right pressure rod 18 upward, driving the left and right pressure blocks to move upward, so that the left and right lifting rods are separated from the inside of the left and right sleeves, and the control is solved.
  • the transmission device 2 is set between the left sleeve 5 and the right sleeve 13, and the transmission device 2 includes a motor 21.
  • the bottom of the motor 21 is provided with a main transmission gear 25, the bottom of the main transmission gear 25 is provided with a main rotating gear 24, the main rotating gear 24 is provided with a rotating shaft 23, the left end of the rotating shaft 23 is provided with a left rotating gear 22, the right end of the rotating shaft 23 is provided with a right rotating gear 27, and the bottom of the rotating shaft 23
  • the support frame 26 is set, and the upper part of the transmission device 2 is provided with a control box 20.
  • the control box 20 provides power to the motor 21.
  • the control box 20 starts the motor 21.
  • the motor 21 drives the main transmission gear 25 to rotate.
  • the main rotation gear 24 meshes with the main transmission gear 25 to rotate.
  • the rotating shaft 23 rotates along the main rotating gear 24, driving the left rotating gear 22 and the right rotating gear 27 to rotate together, the left transmission gear 51 and the left rotating gear 22 mesh and rotate, and the right transmission gear 131 and the right rotating gear 27 mesh and rotate, so that the left
  • the lifting rod 4 and the right lifting rod 12 are lifted and lowered from the inside of the left sleeve 5 and the right sleeve 13 respectively to reach a suitable height, the control box 20 is operated, the motor 21 stops working, and the left and right lifting rods stop lifting, effectively adjusting the overall height of the support device. No manual operation is required, and the bottom of the left sleeve 5 and the right sleeve 13 are both provided with a mounting seat 3.
  • the clamping mechanism 1-1 includes a plurality of second telescopic rods 101 fixedly arranged on the inner wall of the first through hole, and one end of the plurality of second telescopic rods 101 away from the inner wall of the first through hole is fixedly connected with the same splint 102,
  • the splint 102 is made of corrosion-resistant rubber material
  • the second telescopic rod 101 is sleeved with a second spring 103
  • the upper and lower ends of the second spring 103 are in contact with the side wall of the splint 102 and the inner wall of the first through hole respectively;
  • the top ends of the left pressure spring 9 and the right pressure spring 17 are fixedly connected to the left pressure block 6 and the right pressure block 14 respectively.
  • the top ends of the left pressure block 6 and the right pressure block 14 are respectively connected to the bottom ends of the left lifting rod 4 and the right lifting rod 12,
  • the pressure spring 9 and the right pressure spring 17 are forced to push the left pressure rod 10 and the right pressure rod 18 upward, driving the left and right pressure blocks to move upward, so that the left and right lifting rods are separated from the inside of the left and right sleeves, thereby adjusting the overall height of the support device;
  • the left slider 11 and the left pedal 7, the right slider 19 and the right pedal 15 are provided with sliding grooves.
  • the sliding grooves are respectively communicated with the left barrier 8 and the right barrier 16, and the left and right barriers are matched with the left and right pressure rods.
  • the upper ends of the left and right pressure rods are fixedly connected to the left and right pedals. Step on the left pedal 7 and the right pedal 15. And the right pressure lever 18 is pushed upward;
  • the bottom of the left lifting rod 4 is provided with a left fixed ring 41, the bottom of the left fixed ring 41 is connected to the top of the transmission device 2, the bottom of the right lifting rod 12 is provided with a right fixed ring 121, and the bottom of the right fixed ring 121 is connected to the top of the transmission device 2, which is effective through the fixed ring Ensure the stability of the connection with the transmission device 2 when the left and right lifting rods are separated from the inside of the left and right sleeves;
  • the left sleeve 5 is provided with a left transmission gear 51, the left transmission gear 51 and the left rotation gear 22 are in meshing position.
  • the left rotation gear 22 rotates along the rotating shaft 23
  • the left transmission gear 51 and the left rotation gear 22 mesh and rotate, thereby
  • the left lifting rod 4 is lifted upward from the inside of the left sleeve 5 to adjust the overall height of the supporting device.
  • the bottom of the left sleeve 5 is provided with a left fixing seat 52, the bottom of the left fixing seat 52 is connected to the bottom of the transmission device 2, and the right sleeve 13 is on Set the right transmission gear 131, the right transmission gear 131 and the right rotation gear 27 are in meshing position.
  • the right rotation gear 27 rotates along the shaft 23
  • the right transmission gear 131 and the right rotation gear 27 are meshed and rotated, so that the right lifting rod 12 Disengage from the inside of the right sleeve 13 upwards for lifting, and adjust the overall height of the support device.
  • the bottom of the right sleeve 13 is provided with a right fixing seat 132, and the bottom of the right fixing seat 132 is connected with the bottom of the transmission device 2.
  • the control box 20 provides power to the motor 21, the control box 20 starts the motor 21, the motor 21 drives the main transmission gear 25 to rotate, the main rotation gear 24 meshes with the main transmission gear 25 to rotate, and the shaft 23 rotates along the main rotation gear 24, Drive the left rotation gear 22 and the right rotation gear 27 to rotate together, the left transmission gear 51 and the left rotation gear 22 mesh and rotate, and the right transmission gear 131 and the right rotation gear 27 mesh and rotate, so that the left lift rod 4 and the right lift rod 12 respectively move from the left
  • the inside of the sleeve 5 and the right sleeve 13 are raised and lowered to reach a suitable height, the control box 20 is operated, the motor 21 stops working, and the left and right lifting rods stop lifting, effectively adjusting the overall height of the support device without manual operation.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Invalid Beds And Related Equipment (AREA)

Abstract

一种智能电网架设用支撑装置,包括横梁(1),所述横梁(1)底部左侧设置左升降杆(4),所述左升降杆(4)底部设置左套筒(5),所述横梁(1)底部右侧设置右升降杆(12),所述右升降杆(12)底部设置右套筒(13),所述左套筒(5)和右套筒(13)之间设置传动装置(2),所述传动装置(2)包括电机(21),所述电机(21)底部设置主传动齿轮(25),所述主传动齿轮(25)底部设置主旋转齿轮(24),所述主旋转齿轮(24)中间设置转轴(23),所述转轴(23)左端设置左旋转齿轮(22),所述转轴(23)右端设置右旋转齿轮(27),所述转轴(23)底部设置支撑架(26),左右传动齿轮分别与左右旋转齿轮啮合转动,使得左右升降杆分别从左右套筒内部进行升降,有效调整支撑装置整体高度,满足不同环境下电网的架设,方便省力。

Description

一种智能电网架设用支撑装置 技术领域
本发明涉及体育器材技术领域,具体为一种智能电网架设用支撑装置。
背景技术
智能电网,就是电网的智能化,它是建立在集成的、高速双向通信网络的基础上,通过先进的传感和测量技术、设备技术、控制方法以及先进的决策支持系统技术的应用,目前电网依然使其架构的基础,但传统支撑电网的方式较为简单,通常为电线杆架设,架设前需要测量制作费时费力,工作效率低。为此,我们提出一种智能电网架设用支撑装置。
发明内容
本发明的目的在于提供一种智能电网架设用支撑装置,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种智能电网架设用支撑装置,包括横梁,横梁1的顶部左右两侧均设置有夹紧机构1-1,所述横梁底部左侧设置左升降杆,所述左升降杆底部设置左套筒,所述左套筒左侧设置左踏板,所述左套筒内部设置左滑块,所述左滑块上部设置左压力块,所述左压力块内部设置左压力杆,所述左滑块内部安装左压力弹簧,所述左滑块左侧设置左挡口,所述横梁底部右侧设置右升降杆,所述右升降杆底部设置右套筒,所述右套筒右侧设置右踏板,所述右套筒内部设置右滑块,所述右滑块上部设置右压力块,所述右压力块内部设置右压力杆,所述右滑块内部安装右压力弹簧,所述右滑块右侧设置右挡口,所述左套筒和右套筒之间设置传动装置,所述传动装置包括电机,所述电机底部设置主传动齿轮,所述主传动齿轮底部设置主旋转齿轮,所述主旋转齿轮中间设置转轴,所述转轴左端设置左旋转齿轮,所述转轴右端设置右旋转齿轮,所述转轴底部设置支撑架,所述传动装置上部设置控制箱,所述左套筒和右套筒底部均设置安装 座。
优选的,所述夹紧机构包括固定设置于第一通孔内壁上的多根第二伸缩杆,多根所述第二伸缩杆远离第一通孔内壁的一端固定连接有同一块夹板,所述第二伸缩杆上套设有第二弹簧。
优选的,所述左压力弹簧和右压力弹簧顶端分别与左压力块和右压力块固定连接,所述左压力块和右压力块顶端分别与左升降杆和右升降杆底端连接。
优选的,所述左滑块和左踏板、右滑块和右踏板之间均设置滑槽,所述滑槽分别与左挡口和右挡口相通,所述左右挡口均与左右压力杆相契合,所述左右压力杆上端均固定连接左右踏板。
优选的,所述左升降杆底部设置左固定圈,所述左固定圈底部与传动装置顶部连接,所述右升降杆底部设置右固定圈,所述右固定圈底部与传动装置顶部连接。
优选的,所述左套筒上设置左传动齿轮,所述左传动齿轮和左旋转齿轮位置相啮合,所述左套筒底部设置左固定座,所述左固定座底部与传动装置底部连接,所述右套筒上设置右传动齿轮,所述右传动齿轮和右旋转齿轮位置相啮合,所述右套筒底部设置右固定座,所述右固定座底部与传动装置底部连接。
与现有技术相比,本发明的有益效果是:通过控制箱启动电机,电机驱动主传动齿轮旋转,主旋转齿轮与主传动齿轮啮合转动,转轴带动左旋转齿轮和右旋转齿轮一起转动,左右传动齿轮分别与左右旋转齿轮啮合转动,使得左右升降杆分别从左右套筒内部进行升降,到达合适高度,左右升降杆停止升降,有效调整支撑装置整体高度,无需人工进行操作,满足不同环境下电网的架设,方便省力,控制箱内部电源不足时,可踩下左右踏板,左右压力弹簧分别受力,带动左右压力块向上运动,使得左右升降杆从左右套筒内 部脱离,从而调整支撑装置整体高度,解决控制箱电源不足的问题,增强支撑装置的整体实用性,然后通过销杆将左升降杆和左套筒、右升降杆和右套筒的位置进行固定,提高支撑装置整体的稳固性能。
附图说明
图1为本发明结构示意图;
图2为本发明传动装置结构示意图;
图3为本发明夹紧机构结构示意图。
图中:1横梁、1-1夹紧机构、11销杆、2传动装置、21电机、22左旋转齿轮、23转轴、24主旋转齿轮、25主传动齿轮、26支撑架、27右旋转齿轮、3安装座、4左升降杆、41左固定圈、5左套筒、51左传动齿轮、52左固定座、6左压力块、7左踏板、8左挡口、9左压力弹簧、10左压力杆、11左滑块、12右升降杆、121右固定圈、13右套筒、131右传动齿轮、132右固定座、14右压力块、15右踏板、16右挡口、17右压力弹簧、18右压力杆、19右滑块、20控制箱。
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1-3,本发明提供一种技术方案:一种智能电网架设用支撑装置,包括横梁1,横梁1的顶部左右两侧均设置有夹紧机构1-1,横梁1底部左侧设置左升降杆4,左升降杆4底部设置左套筒5,左套筒5左侧设置左踏板7,左套筒5内部设置左滑块11,左滑块11上部设置左压力块6,左压力块6内部设置左压力杆10,左滑块11内部安装左压力弹簧9,左滑块11左侧设置左挡口8,横梁1底部右侧设置右升降杆12,右升降杆12底部设置右套筒13, 右套筒13右侧设置右踏板15,右套筒13内部设置右滑块19,右滑块19上部设置右压力块14,右压力块14内部设置右压力杆18,右滑块14内部安装右压力弹簧17,右滑块19右侧设置右挡口16,当控制箱20内部电源不足时,可踩下左踏板7和右踏板15,左右踏板顺着左右挡口向下运动,左压力弹簧9和右压力弹簧17分别受力,将左压力杆10和右压力杆18向上推动,带动左右压力块向上运动,使得左右升降杆从左右套筒内部脱离,解决控制箱电源不足的问题,从而调整支撑装置整体高度,满足不同人群的使用,增强支撑装置的整体实用性,左套筒5和右套筒13之间设置传动装置2,传动装置2包括电机21,电机21底部设置主传动齿轮25,主传动齿轮25底部设置主旋转齿轮24,主旋转齿轮24中间设置转轴23,转轴23左端设置左旋转齿轮22,转轴23右端设置右旋转齿轮27,转轴23底部设置支撑架26,传动装置2上部设置控制箱20,控制箱20为电机21提供电源,控制箱20启动电机21,电机21驱动主传动齿轮25旋转,主旋转齿轮24与主传动齿轮25啮合转动,转轴23顺着主旋转齿轮24转动,带动左旋转齿轮22和右旋转齿轮27一起转动,左传动齿轮51和左旋转齿轮22啮合转动,右传动齿轮131和右旋转齿轮27啮合转动,使得左升降杆4和右升降杆12分别从左套筒5和右套筒13内部进行升降,到达合适高度,操作控制箱20,电机21停止工作,左右升降杆停止升降,有效调整支撑装置整体高度,无需人工进行操作,左套筒5和右套筒13底部均设置安装座3。
其中,夹紧机构1-1包括固定设置于第一通孔内壁上的多根第二伸缩杆101,多根第二伸缩杆101远离第一通孔内壁的一端固定连接有同一块夹板102,夹板102为耐腐蚀橡胶材质,第二伸缩杆101上套设有第二弹簧103,第二弹簧103的上下两端分别与夹板102的侧壁和第一通孔的内壁相抵接触;
左压力弹簧9和右压力弹簧17顶端分别与左压力块6和右压力块14固定连接,左压力块6和右压力块14顶端分别与左升降杆4和右升降杆12底 端连接,左压力弹簧9和右压力弹簧17受力,将左压力杆10和右压力杆18向上推动,带动左右压力块向上运动,使得左右升降杆从左右套筒内部脱离,从而调整支撑装置整体高度;
左滑块11和左踏板7、右滑块19和右踏板15之间均设置滑槽,滑槽分别与左挡口8和右挡口16相通,左右挡口均与左右压力杆相契合,左右压力杆上端均固定连接左右踏板,踩下左踏板7和右踏板15,左右踏板顺着左右挡口向下运动,使得左压力弹簧9和右压力弹簧17分别受力,将左压力杆10和右压力杆18向上推动;
左升降杆4底部设置左固定圈41,左固定圈41底部与传动装置2顶部连接,右升降杆12底部设置右固定圈121,右固定圈121底部与传动装置2顶部连接,通过固定圈有效保证左右升降杆脱离左右套筒内部时,与传动装置2连接的稳定性;
左套筒5上设置左传动齿轮51,左传动齿轮51和左旋转齿轮22位置相啮合,左旋转齿轮22顺着转轴23转动时,左传动齿轮51与左旋转齿轮22之间啮合转动,从而使得左升降杆4从左套筒5内部向上脱离进行升降,调整支撑装置整体高度,左套筒5底部设置左固定座52,左固定座52底部与传动装置2底部连接,右套筒13上设置右传动齿轮131,右传动齿轮131和右旋转齿轮27位置相啮合,右旋转齿轮27顺着转轴23转动时,右传动齿轮131与右旋转齿轮27之间啮合转动,从而使得右升降杆12从右套筒13内部向上脱离进行升降,调整支撑装置整体高度,右套筒13底部设置右固定座132,右固定座132底部与传动装置2底部连接。
工作原理:控制箱20为电机21提供电源,控制箱20启动电机21,电机21驱动主传动齿轮25旋转,主旋转齿轮24与主传动齿轮25啮合转动,转轴23顺着主旋转齿轮24转动,带动左旋转齿轮22和右旋转齿轮27一起转动,左传动齿轮51和左旋转齿轮22啮合转动,右传动齿轮131和右旋转齿轮27 啮合转动,使得左升降杆4和右升降杆12分别从左套筒5和右套筒13内部进行升降,到达合适高度,操作控制箱20,电机21停止工作,左右升降杆停止升降,有效调整支撑装置整体高度,无需人工进行操作,当控制箱20内部电源不足时,可踩下左踏板7和右踏板15,左右踏板顺着左右挡口向下运动,左压力弹簧9和右压力弹簧17分别受力,将左压力杆10和右压力杆18向上推动,带动左右压力块向上运动,使得左右升降杆从左右套筒内部脱离,从而调整支撑装置整体高度,满足不同电网支撑架设的使用,然后通过销杆11分别将左升降杆4和左套筒5、右升降杆12和右套筒13的位置进行固定,提高支撑装置整体的稳固性能。
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 (6)

  1. 一种智能电网架设用支撑装置,包括横梁(1),其特征在于:所述横梁(1)的顶部左右两侧均设置有夹紧机构(1-1),所述横梁(1)底部左侧设置左升降杆(4),所述左升降杆(4)底部设置左套筒(5),所述左套筒(5)左侧设置左踏板(7),所述左套筒(5)内部设置左滑块(11),所述左滑块(11)上部设置左压力块(6),所述左压力块(6)内部设置左压力杆(10),所述左滑块(11)内部安装左压力弹簧(9),所述左滑块(11)左侧设置左挡口(8),所述横梁(1)底部右侧设置右升降杆(12),所述右升降杆(12)底部设置右套筒(13),所述右套筒(13)右侧设置右踏板(15),所述右套筒(13)内部设置右滑块(19),所述右滑块(19)上部设置右压力块(14),所述右压力块(14)内部设置右压力杆(18),所述右滑块(14)内部安装右压力弹簧(17),所述右滑块(19)右侧设置右挡口(16),所述左套筒(5)和右套筒(13)之间设置传动装置(2),所述传动装置(2)包括电机(21),所述电机(21)底部设置主传动齿轮(25),所述主传动齿轮(25)底部设置主旋转齿轮(24),所述主旋转齿轮(24)中间设置转轴(23),所述转轴(23)左端设置左旋转齿轮(22),所述转轴(23)右端设置右旋转齿轮(27),所述转轴(23)底部设置支撑架(26),所述传动装置(2)上部设置控制箱(20),所述左套筒(5)和右套筒(13)底部均设置安装座(3)。
  2. 根据权利要求1所述的一种智能电网架设用支撑装置,其特征在于:所述夹紧机构(1-1)包括固定设置于第一通孔内壁上的多根第二伸缩杆(101),多根所述第二伸缩杆(101)远离第一通孔内壁的一端固定连接有同一块夹板(102),所述第二伸缩杆(101)上套设有第二弹簧(103)。
  3. 根据权利要求1所述的一种智能电网架设用支撑装置,其特征在于:所述左压力弹簧(9)和右压力弹簧(17)顶端分别与左压力块(6)和右压力块(14)固定连接,所述左压力块(6)和右压力块(14)顶端分别与左升降杆(4)和右升降杆(12)底端连接。
  4. 根据权利要求1所述的一种智能电网架设用支撑装置,其特征在于:所述左滑块(11)和左踏板(7)、右滑块(19)和右踏板(15)之间均设置滑槽,所述滑槽分别与左挡口(8)和右挡口(16)相通,所述左右挡口均与左右压力杆相契合,所述左右压力杆上端均固定连接左右踏板。
  5. 根据权利要求1所述的一种智能电网架设用支撑装置,其特征在于:所述左升降杆(4)底部设置左固定圈(41),所述左固定圈(41)底部与传动装置(2)顶部连接,所述右升降杆(12)底部设置右固定圈(121),所述右固定圈(121)底部与传动装置(2)顶部连接。
  6. 根据权利要求1所述的一种智能电网架设用支撑装置,其特征在于:所述左套筒(5)上设置左传动齿轮(51),所述左传动齿轮(51)和左旋转齿轮(22)位置相啮合,所述左套筒(5)底部设置左固定座(52),所述左固定座(52)底部与传动装置(2)底部连接,所述右套筒(13)上设置右传动齿轮(131),所述右传动齿轮(131)和右旋转齿轮(27)位置相啮合,所述右套筒(13)底部设置右固定座(132),所述右固定座(132)底部与传动装置(2)底部连接。
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