WO2018210290A1 - 导轨 - Google Patents

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Publication number
WO2018210290A1
WO2018210290A1 PCT/CN2018/087235 CN2018087235W WO2018210290A1 WO 2018210290 A1 WO2018210290 A1 WO 2018210290A1 CN 2018087235 W CN2018087235 W CN 2018087235W WO 2018210290 A1 WO2018210290 A1 WO 2018210290A1
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WO
WIPO (PCT)
Prior art keywords
track
sliding plate
lower sliding
guide rail
plate
Prior art date
Application number
PCT/CN2018/087235
Other languages
English (en)
French (fr)
Inventor
邓来明
Original Assignee
北京华沁智联科技有限公司
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Publication date
Application filed by 北京华沁智联科技有限公司 filed Critical 北京华沁智联科技有限公司
Publication of WO2018210290A1 publication Critical patent/WO2018210290A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66FHOISTING, LIFTING, HAULING OR PUSHING, NOT OTHERWISE PROVIDED FOR, e.g. DEVICES WHICH APPLY A LIFTING OR PUSHING FORCE DIRECTLY TO THE SURFACE OF A LOAD
    • B66F11/00Lifting devices specially adapted for particular uses not otherwise provided for

Definitions

  • the utility model relates to the field of machinery, in particular to a guide rail.
  • the robot When the robot is working, it is operated by bearings and oil pumps, and when the arm of the robot moves, it often moves along one coordinate axis and then moves along the other coordinate axis.
  • the inventors of the present invention found that there is a problem in the prior art that the arm of the robot cannot move in the direction of a plurality of coordinate axes at the same time.
  • the present invention provides a guide rail for use in a vending machine to drive a robot to move in a plurality of coordinate axes simultaneously.
  • the embodiment of the present invention provides a guide rail, including:
  • the two ends are provided with grooves matching with the track, and slidingly connecting with the track in the glide path;
  • An upper slideway, the lower plane is provided with a track, and is slidably connected with the groove in the sliding mechanism;
  • the sliding mechanism includes: a lower sliding plate, the bottom surface is provided with a groove matching with the track, and is slidably connected with the track in the sliding channel;
  • the upper sliding plate is fixedly connected to the vertical plate, and the top surface is provided with a groove matching with the track, and is slidably connected with the track in the upper sliding track.
  • the sliding mechanism can move in the horizontal direction through the upper slide and the glide path.
  • the robot can slide vertically on the vertical plate, and the vertical plate moves horizontally with the sliding mechanism, so that the robot can move in multiple coordinate axes at the same time. .
  • the sliding mechanism further includes:
  • a transmission rod is installed in parallel with the vertical plate, and two ends respectively penetrate the upper sliding plate and the lower sliding plate, and two ends are respectively provided with transmission teeth;
  • the transmission motor is mounted on the lower sliding plate and is rotatably connected to the transmission rod through a steering gear.
  • the power generated by the transmission motor through the transmission rod can drive the upper sliding plate and the lower sliding plate to move, thereby realizing the movement of the robot in the horizontal direction.
  • the glide path, the upper plane is provided with a toothed rail
  • the upper slide has a toothed rail on a lower plane
  • the toothed rail cooperates with a drive tooth on the transmission rod.
  • the movement can be moved along the upper slide and the glides, thereby realizing the movement of the robot in the horizontal direction.
  • the sliding mechanism includes:
  • the motor is mounted on the lower sliding plate and connected to the horizontal gear mounted on the lower sliding plate through the turning wheel.
  • the horizontal gears on the mounting and lower sliding plates are driven to rotate, thereby driving the belt to slide, and the driving sliding belt drives the horizontal gears mounted on the sliding plate, thereby realizing the sliding of the belt, thereby realizing the vertical movement of the device fixedly connected with the belt. .
  • the sliding mechanism includes:
  • the booster has an "n" shape, one end is fixed to the lower sliding plate, and the other end is fixedly connected with the lifting platform.
  • the sliding mechanism is fixedly connected with the transmission belt through the fixing clip, and slides along the vertical plate through the lifting platform, so that the power transmission of the sliding mechanism through the transmission belt moves vertically along the vertical plate.
  • the glide path includes two of the tracks, and the two tracks are fixed in parallel on the glide path;
  • the upper slide includes two of the rails, and the two rails are equally fixed on the upper slide.
  • FIG. 1 is a structural view of a guide rail provided by an embodiment of the present invention.
  • FIG. 2a is a structural view of a guide rail provided by an embodiment of the present invention.
  • 2b is a structural view of a guide rail provided by an embodiment of the present invention.
  • an embodiment of the present invention provides a guide rail, including:
  • the upper plane is provided with a track 1011, and is fixed to the ground;
  • the sliding mechanism 102 is provided with a groove 1021 matched with the rail 1011 at both ends, and is connected with the track sliding 1011 of the glide path 101;
  • the upper slide 103 is provided with a track on the lower plane, and is slidably connected to the groove in the sliding mechanism 102;
  • the sliding mechanism 102 includes: a lower sliding plate 1022, and a bottom surface is provided with a groove matching with the track, and is slidably connected with the track in the glide path;
  • the riser 1023 is fixedly connected to the lower sliding plate and is slidably connected to the robot;
  • the upper sliding plate 1024 is fixedly connected perpendicularly to the vertical plate, and the top surface is provided with a groove matching with the track, and is slidably connected with the track in the upper sliding track.
  • the utility model provides a guide rail.
  • the sliding mechanism can be moved in the horizontal direction through the upper slide rail and the slide rail.
  • the robot can slide vertically on the vertical plate, and the vertical plate moves horizontally with the sliding mechanism to realize the robot. Simultaneously move in multiple coordinate axes.
  • the sliding mechanism further includes:
  • the transmission rod is installed in parallel with the vertical plate, and the two ends respectively penetrate the upper sliding plate and the lower sliding plate, and the two ends are respectively provided with transmission teeth;
  • the transmission motor is mounted on the lower sliding plate and is rotatably connected to the transmission rod through the steering gear.
  • the power generated by the transmission motor through the transmission rod can drive the upper sliding plate and the lower sliding plate to move, thereby realizing the movement of the robot in the horizontal direction.
  • the toothed rail cooperates with the drive teeth on the drive rod.
  • the toothed rails provided on the upper slide and the glide path, and the transmission teeth provided on the transmission rod, when the transmission teeth rotate, can move along the upper slide and the slideway, thereby realizing the robot Move in the horizontal direction.
  • Sliding mechanism including:
  • the motor is mounted on the lower sliding plate and connected to the horizontal gear mounted on the lower sliding plate via the turning wheel.
  • the rotation of the motor drives the horizontal gears on the mounting and lower sliding plates to rotate, thereby driving the transmission belt to slide, and the driving sliding belt drives the horizontal gears mounted on the sliding plate, thereby realizing the sliding of the transmission belt, thereby realizing the fixing with the transmission belt.
  • the connected device moves vertically.
  • Sliding mechanism including:
  • a lifting platform that is slidably coupled to two risers
  • the fixing clip is fixedly mounted on the lifting platform and fixedly connected with the transmission belt;
  • the power assisting member has an "n" shape, one end is fixed to the lower sliding plate, and the other end is fixedly connected with the lifting platform.
  • the sliding mechanism is fixedly connected to the transmission belt through the fixing clip, and is slid along the vertical plate through the lifting platform, so that the power transmission of the sliding mechanism through the transmission belt is vertically moved along the vertical plate.
  • the glide path includes two tracks, and the two tracks are fixed in parallel on the glide path;
  • the upper slide includes two tracks, and the two tracks are equally fixed on the upper slide.
  • the upper slide rail and the glide path are respectively provided with two rails, so that the device for sliding movement with the rail is more stable, and the stability of the device is improved.
  • an embodiment of the present invention provides a guide rail, including:
  • the glide path 201 has two tracks 2011 on the upper plane, the two tracks are fixed in parallel on the glide path, and are fixed on the ground, and the upper plane is provided with a tooth track 2012;
  • the sliding mechanism 202 is provided with a groove matched with the track at both ends, and is slidably connected with the track in the glide path;
  • the upper slide 203 has two tracks on the lower plane, the two tracks are equally fixed on the upper slide, and are slidably connected with the groove in the sliding mechanism, and the lower plane is provided with a toothed track;
  • the sliding mechanism 202 includes:
  • a lower sliding plate 2021 the bottom surface is provided with a groove matching with the track, and is slidably connected with the track in the glide path;
  • the riser 2022 is fixedly connected to the lower sliding plate and is slidably connected to the robot;
  • the upper sliding plate 2023 is fixedly connected perpendicularly to the vertical plate, and the top surface is provided with a groove matching with the track, and is slidably connected with the track in the upper sliding track;
  • the transmission rod 2024 is installed in parallel with the vertical plate, and the two ends respectively penetrate the upper sliding plate and the lower sliding plate, and the two ends are respectively provided with transmission teeth, and the toothed rails are matched with the transmission teeth on the transmission rod;
  • the transmission motor 2025 is mounted on the lower sliding plate and is rotatably connected to the transmission rod through the steering gear.
  • the horizontal gear 2026 is mounted on the lower sliding plate plane and the lower sliding plate lower plane;
  • a drive belt 2027 having teeth cooperating with the horizontal gear and rotating in cooperation with the horizontal gear;
  • the motor 2028 is mounted on the lower sliding plate and connected to the horizontal gear mounted to the lower sliding plate via the turning wheel.
  • Two risers 2029 are mounted in parallel and are fixedly connected to the lower sliding plate;
  • a lifting platform 20210 which is slidably connected to two vertical plates;
  • the fixing clip 20211 is fixedly mounted on the lifting platform and fixedly connected with the driving belt;
  • the booster 20212 has an "n" shape, one end is fixed to the lower sliding plate, and the other end is fixedly connected to the lifting platform.
  • the utility model provides a guide rail.
  • the sliding mechanism can be moved in the horizontal direction through the upper slide rail and the slide rail.
  • the robot can slide vertically on the vertical plate, and the vertical plate moves horizontally with the sliding mechanism to realize the robot. Simultaneously move in multiple coordinate axes.

Abstract

本实用新型是关于一种导轨,用于自动售货机中,带动机械手同时在多个坐标轴方向上移动。包括:下滑道,上平面设有轨道,并且固定于地面;滑动机构,两端设有与所述轨道相配合的凹槽,与所述下滑道中轨道滑动连接;上滑道,下平面设有轨道,与所述滑动机构中凹槽滑动连接;其中,滑动机构,包括:下滑动板,底面设有与所述轨道相配合的凹槽,与所述下滑道中轨道滑动连接;竖板,与所述下滑动板垂直固定连接,与机械手滑动连接;上滑动板,与所述竖板垂直固定连接,顶面设有与所述轨道相配合的凹槽,与所述上滑道中轨道滑动连接。图1

Description

导轨 技术领域
本实用新型涉及机械领域,尤其涉及导轨。
背景技术
目前,随着自动化技术的发展,机械设备可以代替人工进行生产及工作,如机械手可以代替人工进行生产及工作,精度更强,力度更大。
机械手在工作时,是通过轴承及油泵进行工作的,而且机械手的手臂在移动时,往往先沿一个坐标轴方向上移动,再沿另一个坐标轴的方向移动。
本实用新型的发明人发现现有技术中存在如下问题:机械手的手臂无法同时在多个坐标轴方向上移动。
实用新型内容
为克服相关技术中存在的问题,本实用新型提供一种导轨,用于自动售货机中,带动机械手同时在多个坐标轴方向上移动。
本实用新型实施例提供了一种导轨,包括:
下滑道,上平面设有轨道,并且固定于地面;
滑动机构,两端设有与所述轨道相配合的凹槽,与所述下滑道中轨道滑动连接;
上滑道,下平面设有轨道,与所述滑动机构中凹槽滑动连接;
其中,所述滑动机构,包括:下滑动板,底面设有与所述轨道相配合的凹槽,与所述下滑道中轨道滑动连接;
竖板,与所述下滑动板垂直固定连接,与机械手滑动连接;
上滑动板,与所述竖板垂直固定连接,顶面设有与所述轨道相配合的凹槽,与所述上滑道中轨道滑动连接。
滑动机构通过上滑道及下滑道可以实现在水平方向上进行移动,机械手可以在竖板上竖直滑动,而竖板又随滑动机构水平移动,实现了机械手同时在多个坐标轴方向上移动。
进一步地,所述滑动机构,还包括:
传动杆,与所述竖板平行安装,两端分别贯穿所述上滑动板及下滑动板,并且两端分别设有传动齿;
传动电机,安装于所述下滑动板上,通过转向齿轮与所述传动杆转动连接。
通过传动杆将传动电机产生的动力,可以带动上滑动板及下滑动板移动,实现了机械手在水平方向上移动。
所述下滑道,上平面设有齿状轨;
所述上滑道,下平面设有齿状轨;
所述齿状轨与所述传动杆上的传动齿相配合。
通过上滑道与下滑道上设有的齿状轨,与传动杆上设有的传动齿,当传动齿转动时,可以沿上滑道及下滑道移动,从而实现了机械手在水平方向上移动。
所述滑动机构,包括:
水平齿轮,安装于所述下滑动板上平面及上滑动板下平面;
传动带,带有与所述水平齿轮相配合的齿,与所述水平齿轮配合转动;
电机,安装于所述下滑动板上,与安装于所述下滑动板的水平齿轮通过转身轮连接。
通过电机转动,带动安装及下滑动板上的水平齿轮转动,从而带动传动带滑动,传动滑带动上滑动板上安装的水平齿轮,从而实现传动带滑动,从而可以实现与传动带固定连接的设备竖直运动。
所述滑动机构,包括:
两个竖板,平行安装,与所述下滑动板垂直固定连接;
升降台,与所述两个竖板滑动连接;
固定夹,固定安装于所述升降台上,并与所述传动带固定连接;
助力件,为“n”形,一端固定于所述下滑动板上,另一端与所述升降台固定连接。
滑动机构通过固定夹与传动带固定连接,通过升降台沿竖板滑动,实现了滑动机构通过传动带的动力传送沿竖板竖直移动。
所述下滑道,包括两个所述轨道,所述两个轨道平行固定于所述下滑道上;
所述上滑道,包括两个所述轨道,所述两个轨道平等固定于所述上滑道上。
上滑道及下滑道分别设有两个轨道,使与轨道滑动移动的设备放置更稳定,提高了设备的稳定性。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,并不能限制本实用新型。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本实用新型的实施例,并与说明书一起用于解释本实用新型的原理。
图1是本实用新型实施例提供的一种导轨的结构图。
图2a是本实用新型实施例提供的一种导轨的结构图。
图2b是本实用新型实施例提供的一种导轨的结构图。
具体实施方式
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本实用新型相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本实用新型的一些方面相一致的装置和方法的例子。
如图1所示,本实用新型实施例提供了一种导轨,包括:
下滑道101,上平面设有轨道1011,并且固定于地面;
滑动机构102,两端设有与轨道1011相配合的凹槽1021,与下滑道101中轨道滑动1011连接;
上滑道103,下平面设有轨道,与滑动机构102中凹槽滑动连接;
其中,滑动机构102,包括:下滑动板1022,底面设有与轨道相配合的凹槽,与下滑道中轨道滑动连接;
竖板1023,与下滑动板垂直固定连接,与机械手滑动连接;
上滑动板1024,与竖板垂直固定连接,顶面设有与轨道相配合的凹槽,与上滑道中轨道滑动连接。
本实用新型提供了一种导轨,滑动机构通过上滑道及下滑道可以实现在水平方向上进行移动,机械手可以在竖板上竖直滑动,而竖板又随滑动机构水平移动,实现了机械手同时在多个坐标轴方向上移动。
进一步地,滑动机构,还包括:
传动杆,与竖板平行安装,两端分别贯穿上滑动板及下滑动板,并且两端分别设有传动齿;
传动电机,安装于下滑动板上,通过转向齿轮与传动杆转动连接。
在本实施例中,通过传动杆将传动电机产生的动力,可以带动上滑动板及下滑动板移动,实现了机械手在水平方向上移动。
下滑道,上平面设有齿状轨;
上滑道,下平面设有齿状轨;
齿状轨与传动杆上的传动齿相配合。
在本实施例中,通过上滑道与下滑道上设有的齿状轨,与传动杆上设有的传动齿,当传动齿转动时,可以沿上滑道及下滑道移动,从而实现了机械手在水平方向上移动。
滑动机构,包括:
水平齿轮,安装于下滑动板上平面及上滑动板下平面;
传动带,带有与水平齿轮相配合的齿,与水平齿轮配合转动;
电机,安装于下滑动板上,与安装于下滑动板的水平齿轮通过转身轮连接。
在本实施例中,通过电机转动,带动安装及下滑动板上的水平齿轮转动,从而带动传动带滑动,传动滑带动上滑动板上安装的水平齿轮,从而实现传动带滑动,从而可以实现与传动带固定连接的设备竖直运动。
滑动机构,包括:
两个竖板,平行安装,与下滑动板垂直固定连接;
升降台,与两个竖板滑动连接;
固定夹,固定安装于升降台上,并与传动带固定连接;
助力件,为“n”形,一端固定于下滑动板上,另一端与升降台固定连接。
在本实施例中,滑动机构通过固定夹与传动带固定连接,通过升降台沿竖板滑动,实现了滑动机构通过传动带的动力传送沿竖板竖直移动。
下滑道,包括两个轨道,两个轨道平行固定于下滑道上;
上滑道,包括两个轨道,两个轨道平等固定于上滑道上。
在本实施例中,上滑道及下滑道分别设有两个轨道,使与轨道滑动移动的设备放置更稳定,提高了设备的稳定性。
下面通过具体实施例详细解释自动售货机的推货机构的结构。
如图2所示,本实用新型实施例提供了一种导轨,包括:
下滑道201,上平面设有两个轨道2011,两个轨道平行固定于下滑道上,并且固定于地面,上平面设有齿状轨2012;
滑动机构202,两端设有与轨道相配合的凹槽,与下滑道中轨道滑动连接;
上滑道203,下平面设有两个轨道,两个轨道平等固定于上滑道上,与滑动机构中凹槽滑动连接,下平面设有齿状轨;
其中,滑动机构202,包括:
下滑动板2021,底面设有与轨道相配合的凹槽,与下滑道中轨道滑动连接;
竖板2022,与下滑动板垂直固定连接,与机械手滑动连接;
上滑动板2023,与竖板垂直固定连接,顶面设有与轨道相配合的凹槽,与上滑道中轨道滑动连接;
传动杆2024,与竖板平行安装,两端分别贯穿上滑动板及下滑动板,并且两端分别设有传动齿,齿状轨与传动杆上的传动齿相配合;
传动电机2025,安装于下滑动板上,通过转向齿轮与传动杆转动连接。
水平齿轮2026,安装于下滑动板上平面及上滑动板下平面;
传动带2027,带有与水平齿轮相配合的齿,与水平齿轮配合转动;
电机2028,安装于下滑动板上,与安装于下滑动板的水平齿轮通过转身轮连接。
两个竖板2029,平行安装,与下滑动板垂直固定连接;
升降台20210,与两个竖板滑动连接;
固定夹20211,固定安装于升降台上,并与传动带固定连接;
助力件20212,为“n”形,一端固定于下滑动板上,另一端与升降台固定连接。
本实用新型提供了一种导轨,滑动机构通过上滑道及下滑道可以实现在水平方向上进行移动,机械手可以在竖板上竖直滑动,而竖板又随滑动机构水平移动,实现了机械手同时在多个坐标轴方向上移动。
本领域技术人员在考虑说明书及实践这里公开的实用新型后,将容易想到本实用新型的其它实施方案。本申请旨在涵盖本实用新型的任何变型、用途或者适应性变化,这些变型、用途或者适应性变化遵循本实用新型的一般性原理并包括本实用新型未公开的本技术 领域中的公知常识或惯用技术手段。说明书和实施例仅被视为示例性的,本实用新型的真正范围和精神由下面的权利要求指出。
应当理解的是,本实用新型并不局限于上面已经描述并在附图中示出的精确结构,并且可以在不脱离其范围进行各种修改和改变。本实用新型的范围仅由所附的权利要求来限制。

Claims (6)

  1. 一种导轨,其特征在于,包括:
    下滑道,上平面设有轨道,并且固定于地面;
    滑动机构,两端设有与所述轨道相配合的凹槽,与所述下滑道中轨道滑动连接;
    上滑道,下平面设有轨道,与所述滑动机构中凹槽滑动连接;
    其中,滑动机构,包括:
    下滑动板,底面设有与所述轨道相配合的凹槽,与所述下滑道中轨道滑动连接;
    竖板,与所述下滑动板垂直固定连接,与机械手滑动连接;
    上滑动板,与所述竖板垂直固定连接,顶面设有与所述轨道相配合的凹槽,与所述上滑道中轨道滑动连接。
  2. 如权利要求1所述的导轨,其特征在于,所述滑动机构,还包括:
    传动杆,与所述竖板平行安装,两端分别贯穿所述上滑动板及下滑动板,并且两端分别设有传动齿;
    传动电机,安装于所述下滑动板上,通过转向齿轮与所述传动杆转动连接。
  3. 如权利要求2所述的导轨,其特征在于,所述下滑道,上平面设有齿状轨;
    所述上滑道,下平面设有齿状轨;
    所述齿状轨与所述传动杆上的传动齿相配合。
  4. 如权利要求1所述的导轨,其特征在于,所述滑动机构,包括:
    水平齿轮,安装于所述下滑动板上平面及上滑动板下平面;
    传动带,带有与所述水平齿轮相配合的齿,与所述水平齿轮配合转动;
    电机,安装于所述下滑动板上,与安装于所述下滑动板的水平齿轮通过转身轮连接。
  5. 如权利要求4所述的导轨,其特征在于,所述滑动机构,包括:
    两个竖板,平行安装,与所述下滑动板垂直固定连接;
    升降台,与所述两个竖板滑动连接;
    固定夹,固定安装于所述升降台上,并与所述传动带固定连接;
    助力件,为“n”形,一端固定于所述下滑动板上,另一端与所述升降台固定连接。
  6. 如权利要求1所述的导轨,其特征在于,所述下滑道,包括两个所述轨道,所述两个轨道平行固定于所述下滑道上;
    所述上滑道,包括两个所述轨道,所述两个轨道平等固定于所述上滑道上。
PCT/CN2018/087235 2017-05-18 2018-05-17 导轨 WO2018210290A1 (zh)

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