WO2023039982A1 - 一种双开滑动门 - Google Patents

一种双开滑动门 Download PDF

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Publication number
WO2023039982A1
WO2023039982A1 PCT/CN2021/124423 CN2021124423W WO2023039982A1 WO 2023039982 A1 WO2023039982 A1 WO 2023039982A1 CN 2021124423 W CN2021124423 W CN 2021124423W WO 2023039982 A1 WO2023039982 A1 WO 2023039982A1
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WO
WIPO (PCT)
Prior art keywords
sliding door
double
motor
extension belt
guide rail
Prior art date
Application number
PCT/CN2021/124423
Other languages
English (en)
French (fr)
Inventor
魏泽宇
孔德兵
甘宇
谢东琛
曹鹏飞
Original Assignee
方大智创科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 方大智创科技有限公司 filed Critical 方大智创科技有限公司
Publication of WO2023039982A1 publication Critical patent/WO2023039982A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61BRAILWAY SYSTEMS; EQUIPMENT THEREFOR NOT OTHERWISE PROVIDED FOR
    • B61B1/00General arrangement of stations, platforms, or sidings; Railway networks; Rail vehicle marshalling systems
    • B61B1/02General arrangement of stations and platforms including protection devices for the passengers
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F15/00Power-operated mechanisms for wings
    • E05F15/60Power-operated mechanisms for wings using electrical actuators
    • E05F15/603Power-operated mechanisms for wings using electrical actuators using rotary electromotors
    • E05F15/632Power-operated mechanisms for wings using electrical actuators using rotary electromotors for horizontally-sliding wings
    • E05F15/643Power-operated mechanisms for wings using electrical actuators using rotary electromotors for horizontally-sliding wings operated by flexible elongated pulling elements, e.g. belts, chains or cables
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/32Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing
    • E06B3/34Arrangements of wings characterised by the manner of movement; Arrangements of movable wings in openings; Features of wings or frames relating solely to the manner of movement of the wing with only one kind of movement
    • E06B3/42Sliding wings; Details of frames with respect to guiding
    • E06B3/46Horizontally-sliding wings
    • E06B3/4636Horizontally-sliding wings for doors

Definitions

  • the present application relates to the technical field of electric sliding door equipment, and more specifically relates to a double-opening sliding door.
  • the traditional electric sliding door mechanism needs at least one motor to drive the door body to open and close.
  • the motor is generally installed inside the door body or installed between the bottom of the door body, the top of the door body and the ceiling structure. Or in the supporting shell on the side structural wall, however, the installation position of the motor is in the door body or in the supporting shell, which needs to share the installation position and supporting structure with the full set of electric sliding door mechanism, so that the electric wire of the motor passes through the electric sliding door mechanism or inside the electric sliding door mechanism.
  • Auxiliary fixed on the electric sliding door mechanism however, it is easy to cause electrical equipment such as motors and wires to come into contact with the electric sliding door mechanism, resulting in the following three main problems:
  • the technical problem to be solved by this application is to provide a double-opening sliding door suitable for a narrow installation space.
  • the application provides a double-opening sliding door, which includes a guide rail installed on the platform, two sliding door bodies that are slidably installed on the guide rail through at least one slider, and two sliding doors that are respectively used to drive the two sliding door bodies along the guide rail.
  • a moving drive mechanism includes a motor and a transmission mechanism, the motor is connected to a driving wheel, the transmission mechanism includes a transmission extension belt and two driven wheels, and the transmission extension belt is wound around the driving wheel connected to the motor
  • the two ends are respectively connected with a sliding door body through a driven wheel, so that the motor is arranged outside the platform through the transmission extension belt, and a sliding door body is driven to move along the guide rail under the action of the motor.
  • the number of the guide rails is two, and each sliding door body is slidably installed on a guide rail through at least one slider, and the two driven wheels of each said driving mechanism are respectively located at two ends of a guide rail, and said The transmission mechanism also includes at least two steering wheels for changing the transmission direction of the transmission extension belt, and the two ends of the transmission extension belt are respectively connected to a sliding door through the steering wheel and the driven wheel after winding around the driving wheel.
  • the number of steering wheels in each transmission mechanism is two, each of the two steering wheels is located at the middle part below a guide rail, and the driving wheel is located below the steering wheels.
  • the motor of one of the driving mechanisms in the two driving mechanisms is located on the outer wall of the platform, and the number of steering wheels in the driving mechanism is six, and the two ends of the transmission extension belt are passed through the driven wheels in turn.
  • the motor of one of the driving mechanisms in the two driving mechanisms is located on the outer wall of the platform, and the number of steering wheels in the driving mechanism is six, and the two ends of the transmission extension belt are passed through the driven wheels in turn.
  • the double-opening sliding door also includes two first boxes, each of which is equipped with a motor and a driving wheel, and the transmission extension belt passes through the first box and Wind around on the driving wheel.
  • the double-opening sliding door also includes two fixed door bodies, and the two sliding door bodies are staggered and parallel to the fixed door body, so as to move left and right along the guide rail under the action of the motor to open or close the door.
  • the double-opening sliding door also includes a fixed baffle, a through groove is opened in the middle of the fixed baffle, the two sliding doors are staggered and parallel to the fixed baffle, and the lower end of the sliding door is connected to the slider Connected to move along the guide rail under the action of the motor to block the through slot or expose the through slot.
  • the double-opening sliding door further includes a connecting plate, and the lower end of the sliding door body is connected to the slider through the connecting plate.
  • the double-opening sliding door also includes a second box body, the guide rail, slider and driven wheel are located in the second box body, and the transmission extension belt passes through the rear two ends of the driving wheel connected to the motor. into the second box body, and pass through the driven wheels respectively to be connected with the sliding door body.
  • this application can set the motor outside the platform through the transmission extension belt.
  • the transmission extension belt will pull the sliding door body to one side to slide, and the motor reverses to affect the sliding door.
  • the body slides to the other side, so as to realize opening or closing the door, that is, to separate the electrical equipment (motor) from the mechanical structure.
  • the height of the mechanical part can be installed close to the ground without digging a groove in the ground. It is suitable for a narrow installation space and can be installed on a uniformly flat ground. There is no need to make a separate custom design for the ups and downs of the ceiling, and standardization and modularization can be adopted.
  • the design and production scheme shortens the design cycle, reduces production costs, and completely eliminates the insulation problem of the door body.
  • Fig. 1 is a schematic diagram of the specific structure of the first embodiment of the double-opening sliding door of the present application.
  • Fig. 2 is a schematic diagram of the connection of the guide rail and the driving structure in the double sliding door according to the first embodiment of the present application.
  • Fig. 3 is a partial structural diagram of the second embodiment of the double-opening sliding door.
  • the double-opening sliding door includes a guide rail 4 installed on the platform 10, and two sliding door bodies 2 that are slidably installed on the guide rail 4 through at least one slider 3 to move along the guide rail 4.
  • the drive mechanism includes a motor 51 and a transmission mechanism, the motor 51 is connected to a driving wheel 52, and the transmission mechanism includes two driven wheels 531 And transmission extension belt 532, described transmission extension belt 532 is connected with a sliding door body 2 respectively through a driven wheel 531 after the driving wheel 52 that is connected with motor 51, so that motor 51 is arranged on by transmission extension belt 532 Outside the platform 10, a sliding door body 2 is driven to move along the guide rail 4 under the action of the motor 51, that is, the motor 51 rotates forward to drive the driving wheel 52 to rotate, and then the two transmission extension belts 532 drive the two sliding door bodies 2 to slide towards each other, thereby realizing Close the door, and the counter-rotation of the motor 51 then affects the sliding door body 2 to slide to the other side to realize opening the door.
  • the transmission extension belt 532 can be a rope or a belt, or any rope or belt such as a wire rope, a belt, a timing belt, etc., and its length can be adjusted according to the actual installation position.
  • the guide rail 4 in the double-opening sliding door of the present application can be an integral guide rail, or can be spliced by multiple sections of guide rails.
  • the motor 51 can be installed outside the platform 10 through the transmission extension belt 532, so that the electrical equipment (motor 51) can be separated from the mechanical structure, and the electrical equipment separated from the main mechanism can be arranged in a more relaxed space, which is convenient for maintenance.
  • the height of the mechanical part of the double-opening sliding door in the prior art can be reduced, and it can be installed close to the ground without digging a groove in the ground, and is suitable for a narrow installation space.
  • the double-opening sliding door also includes two fixed door bodies 1, the two sliding door bodies 2 are alternately parallel to the two fixed door bodies 1, and the lower ends of the sliding door bodies 2 are connected to each other through a connecting plate 8.
  • the slider 3 is connected to move left and right along the guide rail 4 under the action of the motor 51 so as to realize opening or closing the door.
  • the two sliding doors 2 are controlled to slide left and right between the two fixed doors 1 under the drive of the two motors 51 respectively.
  • the two independent fixed door bodies 1 can be replaced by a fixed baffle plate, and a through slot can be opened in the middle of the fixed baffle plate, and the two sliding door bodies 2 Alternate and parallel with the fixed baffle, to move along the guide rail 4 under the action of the two motors 51 to block the through groove or expose the through groove, then in this embodiment, the two sliding doors 2 are driven left and right by the two motors 51 Sliding, when sliding to the back of both sides of the fixed baffle, the through groove is exposed, which is regarded as opening the door, and when sliding to the position of the through groove of the fixed baffle and blocking the through groove, it is regarded as closing the door.
  • each guide rail 4 is provided with three sliders 3, and each sliding door body 2 is slidably installed on a guide rail 4 through the slider 3,
  • the two driven wheels 531 of each said driving mechanism are located at two ends of a guide rail 4 respectively, and each said transmission mechanism also includes at least two steering wheels 533 for changing the conveying direction of the conveying extension belt 532, and said conveying extension belt 532 After winding around the driving wheel 52, the two ends are respectively connected with the sliding door body 2 through the turning wheel 533 and the driven wheel 531 successively.
  • the number of steering wheels 533 in each transmission mechanism is two, each of the two steering wheels 533 is located in the middle below the guide rail 4 , and the driving wheel 52 is located below the steering wheels 533 .
  • the transmission extension belt 532 in this embodiment can directly pass through the vertical through hole reserved on the platform 10 board, dig a groove from the ground and lead to the space below the platform 10 board to install the motor 51, so that the motor 51 is arranged on the platform 10 outside.
  • the number of guide rail 4 can also be set to one, and two sliding door bodies 2 are arranged on the same guide rail 4, and the sliding door body can also be driven by the motor 51 and the transmission extension belt 532 2 moves, and the number of sliders 3 provided on the guide rail 4 can also be increased or decreased according to demand, and a different number of steering wheels 533 can be set on the passing path of the transmission extension belt 532 connecting the driven wheel 531 and the driving wheel 52, so as to Meet the wiring layout requirements.
  • the double-opening sliding door also includes two first boxes 6 and a second box 7, each first box 6 is equipped with a motor 51 and a driving wheel 52, and the transmission extension belt 532 is passed through
  • the first box body 6 is wound around the driving wheel 52, and the guide rail 4, the slider 3 and the driven wheel 531 are all located in the second box body 7, and the transmission extension belt 532 is wound around the driving wheel connected with the motor 51.
  • the rear two ends of the wheel 52 pass through the second box body 7 , and pass through the driven wheel 531 respectively to connect with the sliding door body 2 .
  • the first box body 6 can wrap the driving wheel 52, the motor 51 and its auxiliary electrical equipment, and provide installation sites and necessary structural support for the above components, and can be buried in various civil interlayers according to the actual situation of the project.
  • Middle position that is, it can be installed at an independent installation point away from the mechanical structure such as the guide rail 4 and the sliding door body 2 of the double-opening sliding door, and the electrical wiring is also far away from the mechanical structure as a whole, so that the electrical part and the mechanical part of the double-opening sliding door are in the installation space.
  • the two are only connected by the transmission extension belt 532; and the second box body 7 can wrap the guide rail 4, the slider 3, the driven wheel 531, the steering wheel 533, and provide installation sites and necessary components for the above components.
  • the structural support can be exposed on the ground, ceiling and wall according to the actual situation of the project.
  • Fig. 3 is a structural schematic diagram of the second embodiment of the double-opening sliding door of the present application.
  • Fig. 3 is a partial structural schematic diagram of the double-opening sliding door, and the platform and sliding door body are not shown in the figure. Structure, the difference between this embodiment and the first embodiment lies in the installation position of the motor 51 in one of the drive mechanisms, the number and installation position of the steering wheels 533 are different.
  • the motor 51 in one of the two drive mechanisms is located on the outer wall 20 of the platform, and the number of steering wheels 533 in the drive mechanism is six, and the two ends of the transmission extension belt 532 All pass through the driven wheel 531 in turn, for converting the transmission extension belt 532 along the horizontal direction to transmission along the vertical direction, for converting the transmission extension belt 532 from vertical transmission to transmission along the horizontal direction, and for extending the transmission
  • the belt 532 is transferred in the horizontal direction and transformed into three steering wheels 533 that are transferred in the vertical direction, and then winds around to the driving wheel 52 connected to the motor 51 on the side wall 20 .
  • one of the first box bodies 6 is arranged in the interlayer of the peripheral column of the sliding door body 2 of the platform 10 or the interlayer of the wall body, and the electrical structures such as the motor 51 and the mechanical mechanisms such as the guide rail 4 and the sliding door body 2 can be connected.
  • the transmission extension belt 532 and the four steering wheels 533 located at a relatively long distance below the guide rail 4 can be covered and protected by the ground wiring cover, and the transmission direction of the transmission extension belt 532 can be adjusted by six steering wheels 533, so that Connect the motor 51 and the sliding door body 2 to realize opening or closing the door.
  • another first box body 6 can also be arranged on the outer wall 20 of the platform according to user requirements.
  • the sliding door body 2 and the fixed door body 1 of this application are half-height doors, which are more suitable for installation places such as open-air conference venues, open-air platforms, and grounds.
  • the usage scenarios of the double-opening sliding doors of this application are described below in combination with the actual situation:
  • indoor electric partitions are needed for hoisting billboards or building mobile display racks indoors.
  • the existing indoor electric partitions need to install fixed tracks and motors on the ceiling and are driven by motors.
  • a set of suspension frames moves along the track, and it is necessary to cover the track and motor with a suspended ceiling or wall decoration interlayer after the ceiling and wall are installed with an electric sliding door mechanism (sliding door).
  • the existing electric sliding door mechanism cannot hide the track and motor by raising the ground height of the entire floor, nor can it excavate deep grooves on the floor for the installation of electric partitions, which will damage the floor structure; And if adopt the double-open sliding door of the present application, because the second box body 7 only comprises mechanical structures such as guide rail 4, slide block 3, driven wheel 531 and steering wheel 533, does not comprise motor 51 and supporting electrical equipment and cable, therefore can
  • the volume of the entire structure contained in the second box body 7 is designed to be very small, especially the overall height of the second box body 7 can be reduced to be lower than the shortest side length of the motor 51, so this part of the mechanical structure can be directly installed on the ground
  • the height difference from the ground is very small, and there is no need to dig installation grooves on the ground, and thick carpets can be laid on both sides of the ground after installation, so that the height of the carpets on both sides is close to the height of the second box body 7 In order to achieve the effect of leveling the ground after decoration.
  • the transmission extension belt 532, the first box body 6, etc. can all be placed outside the overall mechanical structure installed on the ground, and these electrical equipment can be installed in the interlayer of the surrounding columns or walls, and can also be installed in a concealed electrical room Among them, the electrical equipment and the mechanical structure are connected through the transmission extension belt 532 and the sliding door action is transmitted, and the transmission extension belt 532 can be covered and protected by the ground wiring cover, and the decoration carpet or floor tile can leave a gap for the wiring cover to pass through , can also be laid directly on the casing, and more decoration methods can be determined by site requirements.
  • the double-opening sliding door of the present application is suitable for open-air conference venues without ceilings and walls, hotel lobbies with high ceilings, dome-shaped exhibition halls, or scenes where the ceiling installation space is relatively narrow and unsuitable for installation.
  • this part of the mechanical structure can be directly installed in a 100mm ground excavation groove. After installation, the top of the second box body 7 is aligned with the platform after the decoration is completed. flat.
  • the transmission extension belt 532, the first box body 6, etc. can all be placed outside the overall mechanical structure installed on the ground, and these electrical equipment can be installed in a concealed electrical room, or on the interlayer of surrounding columns or walls. Among them, the electrical equipment and the mechanical structure are connected through the transmission extension belt 532 and transmit the movement of the sliding door.
  • the double-opening sliding door of the present application is suitable for the high-speed rail platform 10, and the mechanical structures such as the first box body 6 can be installed in shallow slots, and only the decoration surface and the sand layer of the platform 10 are excavated without destroying the solid concrete structure. It can reduce the construction cost and avoid the structural risk of excessive civil engineering reconstruction.
  • the application can set the motor outside the platform through the transmission extension belt.
  • the transmission extension belt will drive the two sliding doors to slide towards each other, thereby realizing closing the door, and the reverse rotation of the motor will affect the sliding door.
  • the body slides to the other side to open the door, that is, to separate the electrical equipment (motor) from the mechanical structure.
  • the electrical equipment separated from the main body has a more relaxed layout space, which is convenient for maintenance and can reduce the mechanical part of the sliding door in the prior art. It can be installed close to the ground without digging grooves. It is suitable for small installation space and can be installed on a uniform ground. There is no need to make a separate custom design for the ups and downs of the ceiling. Standardized, modular design and The production plan shortens the design cycle and reduces production costs, and at the same time completely eliminates the insulation problem of the door body.

Abstract

一种双开滑动门,包括安装在站台(10)的导轨(4)、两分别通过至少一滑块(3)滑动安装于导轨(4)上的滑动门体(2)以及两分别用于驱动两滑动门体(2)沿导轨(4)移动的驱动机构,驱动机构包括一电机(51)以及传动机构,电机(51)连接有一主动轮(52),传动机构包括传送延长带(532)以及两从动轮(531),传送延长带(532)绕与电机(51)连接的主动轮(52)后两端分别经一从动轮(531)而与一滑动门体(2)连接,以通过传送延长带(532)将电机(51)设置于站台(10)外,并在电机(51)的作用下驱动一滑动门体(2)沿导轨(4)移动。该装置通过传送延长带(532)将电气设备与机械结构分离,分离于主体机构外的电气设备布置空间更加宽松,方便维保,且可降低现有技术中滑动门机械部分的高度,不需对地挖槽即可贴地安装,适应于狭小的安装空间。

Description

一种双开滑动门
本申请是以申请号为202111111421.8、申请日为2021年9月18日的中国专利申请为基础,并主张其优先权,该申请的全部内容在此作为整体引入本申请中。
技术领域
本申请涉及电动移门设备技术领域,更具体地涉及一种双开滑动门。
背景技术
传统电动移门机构需要至少一台电机以驱动门体开闭,现有的电动移门中,电机一般安装在门体内部或者是安装在设置于门体底部、门体顶部和天花板结构之间或者是侧面的结构墙上的支撑外壳内,然而将电机安装位置都在门体内或支撑外壳内需与全套电动移门机构共用安装位点和支撑结构,使电机的电线经过电动移门机构内部或辅助固定在电动移门机构上,然而这容易造成电机和电线等电气设备与电动移门机构发生接触,从而产生以下三个主要问题:
一是为了安装电气部件而必须增设安装结构,增加了电动移门机构的设计难度和生产成本;二是电气设备的维修口必须避让机械结构,增加维保难度;三是需要考虑绝缘问题,避免电气使机械结构带电。
以上三种问题共同作用导致现有的涉及电动移门机构的各类产品的安装空间无法进一步缩小,使电动移门机构不适合一些安装空间较为狭小的场所。
申请内容
本申请所要解决的技术问题是提供一种适应于狭小安装空间的双开滑动门。
为解决上述技术问题,本申请提供一种双开滑动门,包括安装在站台的导轨、两分别通过至少一滑块滑动安装于导轨上的滑动门体以及两分别用于驱动两滑动门体沿导轨移动的驱动机构,所述驱动机构包括一电机以及传动机构,所述电机连接有一主动轮,所述传动机构包括传送延长带以及两从动轮,所述传送延长带绕与电机连接的主动轮后两端分别经一从动轮而与一滑动门体连接,以通过传送延长带将电机设置于站台外,并在电机的作用下驱动一滑动门体沿导轨移动。
其进一步技术方案为:所述导轨数量为二,每一滑动门体通过至少一滑块滑动安装于一导轨上,每一所述驱动机构的两从动轮分别位于一导轨两端,且所述传动机构还包括至少两用于改变传送延长带传送方向的转向轮,所述传送延长带绕主动轮后两端分别依次经转向轮、从动轮与一滑动门体连接。
其进一步技术方案为:每一所述传动机构中的转向轮数量为二,每二转向轮位于一导轨下方中部处,且所述主动轮位于转向轮下方。
其进一步技术方案为:两所述驱动机构中的其中一驱动机构的电机位于站台外侧墙上,且该驱动机构中的转向轮数量为六,所述传送延长带的两端均依次经从动轮、用于将传送延长带沿水平方向传送转变为沿竖直方向传送、用于将传送延长带沿竖直方向传送转变为沿水平方向传送以及用于将传送延长带沿水平方向传送转变为沿竖直方向传送的三个转向轮后绕至位于侧墙上与电机连接的主动轮上。
其进一步技术方案为:所述双开滑动门还包括有两第一盒体,每一所述第一盒体内安装有一电机和一主动轮,所述传送延长带穿设所述第一盒体而绕至于主动轮上。
其进一步技术方案为:所述双开滑动门还包括两固定门体,两所述滑动门体与固定门体交错平行,以在电机的作用下沿导轨左右移动从而实现开门或关门。
其进一步技术方案为:所述双开滑动门还包括固定挡板,所述固定挡板中部开设有一通槽,两所述滑动门体与固定挡板交错平行,该滑动门体下端部与滑块连接,以在电机的作用下沿导轨移动从而挡住通槽或露出通槽。
其进一步技术方案为:所述双开滑动门还包括连接板,所述滑动门体下端部通过所述连接板与滑块连接。
其进一步技术方案为:所述双开滑动门还包括有第二盒体,所述导轨、滑块以及从动轮位于第二盒体内,所述传送延长带绕与电机连接的主动轮后两端穿入第二盒体,且分别经从动轮后穿出而与滑动门体连接。
与现有技术相比,本申请通过传送延长带可将电机设置于站台外,当电机驱动主动轮转动,则传送延长带把滑动门体向一侧牵动滑行,而电机反转则牵动滑动门体向另一侧滑行,从而实现开门或关门,即将电气设备(电机)与机械结构分离,分离于主体机构外的电气设备布置空间更加宽松,方便维保,且可降低现有技术中滑动门机械部分的高度,不需对地挖槽即可贴地安装,适应于狭小的安装空间,即可安装在一律平整的地面,不需要为天花板的起伏做单独定制设计,可以采取标准化、模块化的设计和生产方案,缩短设计周期,降低生产成本,同时还完全消除了门体绝缘问题。
附图说明
图1是本申请双开滑动门第一实施例的具体结构示意图。
图2是本申请第一实施例双开滑动门中导轨以及驱动结构的连接示意图。
图3是双开滑动门第二实施例的部分结构示意图。
具体实施方式
为使本领域的普通技术人员更加清楚地理解本申请的目的、技术方案和优点,以下结合附图和实施例对本申请做进一步的阐述。
参照图1至图2,图1至图2展示了本申请双开滑动门的第一实施例。在附图所示的实施例中,所述双开滑动门包括安装在站台10的导轨4、两分别通过至少一滑块3滑动安装于导轨4上以沿所述导轨4移动的滑动门体2以及两分别用于驱动两滑动门体2沿导轨4移动的驱动机构,所述驱动机构包括一电机51以及传动机构,所述电机51连接有一主动轮52,所述传动机构包括两从动轮531以及传送延长带532,所述传送延长带532绕与电机51连接的主动轮52后两端分别经一从动轮531而与一滑动门体2连接,以通过传送延长带532将电机51设置于站台10外,并在电机51的作用下驱动一滑动门体2沿导轨4移动,即电机51正转驱动主动轮52转动,则两传送延长带532牵动两滑动门体2相向滑行,从而实现关门,而电机51反转则牵动滑动门体2向另一侧滑行,实现开门。本申请中,所述传送延长带532可以是一根绳状或带状物,或者是金属丝绳、皮带、同步带等任何绳状或带状物,其长度可以根据实际安装位置进行调整。可理解地,本申请双开滑动门中的导轨4可为一根一体式的导轨,也可为多段导轨拼接而成的。基于上述设计,通过传送延长带532可将电机51设置于站台10外,即可将电气设备(电机51)与机械结构分离,分离于主体机构外的电气设备布置空间更加宽松,方便维保,且可降低现有技术中双开滑动门机械部分的高度,不需对地挖槽即可贴地安装,适应于狭小的安装空间。
在某些实施例中,所述双开滑动门还包括两个固定门体1,两所述滑动门体2与两固定门体1交错平行,且该滑动门体2下端部通过连接板8与滑块3连接,以在电机51的作用下沿导轨4左右移动从而实现开门或关门。基于上述设计,两滑动门体2分别在两电机51的驱动下受控地在两扇固定门体1间左右滑动,滑动到两侧固定门体1背后时,视作开门,滑动到两扇固定门体1中间并挡住两扇固定门体1之间并挡住两扇固定门体1间的出口时视作关门。可理解地,在某些其他实施例中,所述两个独立的固定门体1可替换成一个固定挡板,所述所述固定挡板中部可开设一通槽,两所述滑动门体2与固定挡板交错平行,以分别在两电机51的作用下沿导轨4移动从而挡住通槽或露出通槽,则在该实施例中,两滑动门体2分别在两电机51的驱动下左右滑动,滑动到固定挡板两侧背后时,露出通槽,视作开门,滑到固定挡板通槽位置处且挡住通槽时视作关门。
在本实施例中,如图2所示,所述导轨4数量为二,每一导轨4上设置有三个滑块3,每一滑动门体2通过滑块3滑动安装于一导轨4上,每一所述驱动机构的两从动轮531分别位于一导轨4两端,且每一所述传动机构还包括至少两用于改变传送延长带532传送方向的转向轮533,所述传送延长带532绕主动轮52后两端分别依次经转向轮533、从动轮531与滑动门体2连接。具体地,在本实施例中,每一所述传动机构中的转向轮533数量为二,每二转向轮533位于导轨4下方中部处,且所述主动轮52位于转向轮533下方。可知,本实施例中的传送延长带532可直接穿过站台10板上预留的垂直通孔,从地面挖开槽通向站台10板下方空间处安装电机51,使得电机51设置于站台10外。可理解地,在某些其他实施例中,导轨4的数量还可以设置为一个,两个滑动门体2设置在同一个导轨4上,通过电机51和传送延长带532同样可驱动滑动门体2移动,而导轨4上设置的滑块3数量还可根据需求进行增加或减少,且在传送延长带532连接从动轮531和主动轮52的经过路径上可设置不同数量的转向轮533,以满足线路布置要求。
优选地,所述双开滑动门还包括有两第一盒体6和一第二盒体7,每一第一盒体6内装有一电机51和一主动轮52,所述传送延长带532穿设所述第一盒体6而绕至于主动轮52上,而所述导轨4、滑块3以及从动轮531均位于第二盒体7内,所述传送延长带532绕与电机51连接的主动轮52后两端穿入第二盒体7,且分别经从动轮531后穿出而与滑动门体2连接。基于上述设计,所述第一盒体6能包裹主动轮52、电机51及其附属电气设备,并为上述部件提供安装位点和必要的结构支撑,可根据工程实际情况埋藏在各种土建夹层中等位置,即可以安装在远离双开滑动门导轨4、滑动门体2等机械结构的独立的安装位点,电气布线也整体远离机械结构,使得双开滑动门的电气部分和机械部分在安装空间上完全分离,两者之间只由传送延长带532连接;而所述第二盒体7能包裹导轨4、滑块3、从动轮531、转向轮533,并为上述部件提供安装位点和必要的结构支撑,可根据工程实际情况外露于地面、天花板和墙面等位置。
参照图3,图3为本申请双开滑动门第二实施例的结构示意图,为了便于展示驱动机构的结构,图3为双开滑动门的部分结构示意图,图中未示出站台和滑动门体等结构,本实施例与第一实施例的不同之处在于其中一驱动机构中电机51的安装位置、转向轮533的数量和安装位置不同。在本实施例中,两所述驱动机构中的其中一驱动机构中的电机51位于站台外侧墙20上,且该驱动机构中的转向轮533数量为六,所述传送延长带532的两端均依次经从动轮531、用于将传送延长带532沿水平方向传送转变为沿竖直方向传送、用于将传送延长带532沿竖直方向传送转变为沿水平方向传送以及用于将传送延长带532沿水平方向传送转变为沿竖直方向传送的三个转向轮533后绕至位于侧墙20上与电机51连接的主动轮52上。即本实施例中,其中的一个第一盒体6设置于站台10滑动门体2的周边立柱或墙体的夹层中,可将电机51等电气结构和导轨4和滑动门体2等机械机构分离,且传送延长带532和位于导轨4下方较远距离的四个转向轮533可被地面走线罩壳所覆盖保护,六个转向轮533可对传送延长带532的传送方向进行调整,以连接电机51和滑动门体2,从而实现开门或关门。可理解地,在某些其他实施例中,根据用户需求,另一第一盒体6也可一起设置于站台外侧墙20上。
本申请的滑动门体2和固定门体1为半高门,更适用于露天会场以及露天站台、地面等安装场所,下面结合实际情况对本申请双开滑动门的使用场景进行描述:
应用于使用室内电动隔断的场景:目前在室内吊装广告牌或者是搭建移动展示架等,需要借助室内电动隔断,现有的室内电动隔断因需要在天花板上安装固定的轨道和电机,由电机驱动一组悬挂架沿轨道运动,需要在天花板和墙壁在加装电动移门机构(滑动门)后用吊顶或墙壁装饰夹层把轨道和电机遮蔽起来,而如果试图安装在地面,若加装的是现有的电动移门机构则无法通过垫高整层楼地面高度的方式来隐藏轨道和电机,也不能为了加装电动隔断而对楼板开挖深沟槽,这种沟槽会破坏楼板结构;而若采用本申请的双开滑动门,因第二盒体7仅包括导轨4、滑块3、从动轮531以及转向轮533等机械结构,不包含电机51和配套电气设备与线缆,因此可以将包含在第二盒体7内的整个结构体积设计得很小,尤其是第二盒体7整体高度能降到低于电机51的最短边长,因此,这部分机械结构可以直接安装在地面上,与地面的高度差很小,不需要对地面挖安装槽,且可对地面安装后高起的两侧铺设厚地毯,使两侧地毯的铺起高度与第二盒体7的高度接近以达成装修后地面平整效果。另外,传送延长带532、第一盒体6等可都置于铺地安装的整体机械结构以外,这些电气设备可以安装在周边立柱或墙体的夹层中,也可以安装在隐蔽放置的电气室中,电气设备和机械结构间通过传送延长带532连接并传递移门动作,且传送延长带532可被地面走线罩壳所覆盖保护,装修地毯或地砖可为走线罩壳留出通过缝隙,也可直接铺设在罩壳上,更多装修方式可由现场需求决定。可见,本申请双开滑动门适用于没有天花板和墙壁依托的露天会场、天花板过高的酒店大堂、穹顶式展馆或天花板安装空间较为狭小而不宜安装的场景中。
应用于高铁站台的场景:现有的高铁站台上几乎没有电动移门机构,因一般是在已建成的高铁(火车、动车、磁悬浮列车或其他配装类似候车站台的列车)站台上进行二次改建,加装类似现有地铁站台门的电动移门机构,以起到和地铁站台门相似的实用效果,而现有高铁站台的地面装饰面深度小于100mm,高铁站台门的轨道和电机必须埋藏在这个有限高度的地面挖开槽内,目前的电动移门机构仅简单考虑电机和其上下部支撑再加上一层与地面齐平的踏步板就已经超过100mm的深度了,导致安装困难,而若要安装,则需要挖除100mm装饰面后再向下挖掘站台钢筋结构层,直到满足电动移门机构安装高度为止。破坏站台结构,遗留安全隐患,就算采用更昂贵的直线电机降低安装所需高度仍需少量破坏站台结构层;若考虑将电机放进滑动门体内或者放进滑动门体两侧的固定门内,电机虽然不必埋入地下,但放进滑动门体内会导致电机随门体一起移动,需增加更多的成本为连接电机的电线设置拖线结构或提供无线通讯以控制电机,放进固定门内可能会导致列车停车位置不准,常出现车门不对准移动门而对准两侧固定结构的阻挡通勤事故;而若采用本申请的双开滑动门,因第二盒体7仅包括导轨4、滑块3、从动轮531以及转向轮533等机械结构,不包含电机51和配套电气设备与线缆,因此可以将包含在第二盒体7内的整个结构体积设计得很小,尤其是第二盒体7整体高度能降到低于电机51的最短边长,因此,这部分机械结构可以直接安装在100mm地面挖开槽内,安装后,第二盒体7的顶部和站台装修完成面齐平。另外,传送延长带532、第一盒体6等可都置于铺地安装的整体机械结构以外,这些电气设备可以安装在隐蔽放置的电气室中,也可以安装在周边立柱或墙体的夹层中,电气设备和机械结构间通过传送延长带532连接并传递移门动作。可见,本申请双开滑动门适用于高铁站台10,第一盒体6等机械结构可安装在较浅的开槽内,只挖开站台10装修面和砂土层,不破坏坚实的混凝土结构,可降低施工成本,避免土建过度改造的结构风险。
综上所述,本申请通过传送延长带可将电机设置于站台外,当电机驱动主动轮转动,则传送延长带牵动两滑动门体相向滑行,从而实现关门,而电机反转则牵动滑动门体向另一侧滑行,实现开门,即将电气设备(电机)与机械结构分离,分离于主体机构外的电气设备布置空间更加宽松,方便维保,且可降低现有技术中滑动门机械部分的高度,不需对地挖槽即可贴地安装,适应于狭小的安装空间,即可安装在一律平整的地面,不需要为天花板的起伏做单独定制设计,可以采取标准化、模块化的设计和生产方案,缩短设计周期,降低生产成本,同时还完全消除了门体绝缘问题。
以上所述仅为本申请的优选实施例,而非对本申请做任何形式上的限制。本领域的技术人员可在上述实施例的基础上施以各种等同的更改和改进,凡在权利要求范围内所做的等同变化或修饰,均应落入本申请的保护范围之内。

Claims (9)

  1. 一种双开滑动门,其特征在于:所述双开滑动门包括安装在站台的导轨、两分别通过至少一滑块滑动安装于导轨上的滑动门体以及两分别用于驱动两滑动门体沿导轨移动的驱动机构,所述驱动机构包括一电机以及传动机构,所述电机连接有一主动轮,所述传动机构包括传送延长带以及两从动轮,所述传送延长带绕与电机连接的主动轮后两端分别经一从动轮而与一滑动门体连接,以通过传送延长带将电机设置于站台外,并在电机的作用下驱动一滑动门体沿导轨移动。
  2. 如权利要求1所述的双开滑动门,其特征在于:所述导轨数量为二,每一滑动门体通过至少一滑块滑动安装于一导轨上,每一所述驱动机构的两从动轮分别位于一导轨两端,且所述传动机构还包括至少两用于改变传送延长带传送方向的转向轮,所述传送延长带绕主动轮后两端分别依次经转向轮、从动轮与一滑动门体连接。
  3. 如权利要求2所述的双开滑动门,其特征在于:每一所述传动机构中的转向轮数量为二,每二转向轮位于一导轨下方中部处,且所述主动轮位于转向轮下方。
  4. 如权利要求2所述的双开滑动门,其特征在于:两所述驱动机构中的其中一驱动机构的电机位于站台外侧墙上,且该驱动机构中的转向轮数量为六,所述传送延长带的两端均依次经从动轮、用于将传送延长带沿水平方向传送转变为沿竖直方向传送、用于将传送延长带沿竖直方向传送转变为沿水平方向传送以及用于将传送延长带沿水平方向传送转变为沿竖直方向传送的三个转向轮后绕至位于侧墙上与电机连接的主动轮上。
  5. 如权利要求1所述的双开滑动门,其特征在于:所述双开滑动门还包括有两第一盒体,每一所述第一盒体内安装有一电机和一主动轮,所述传送延长带穿设所述第一盒体而绕至于主动轮上。
  6. 如权利要求1所述的双开滑动门,其特征在于:所述双开滑动门还包括两固定门体,两所述滑动门体与固定门体交错平行,以在电机的作用下沿导轨左右移动从而实现开门或关门。
  7. 如权利要求1所述的双开滑动门,其特征在于:所述双开滑动门还包括固定挡板,所述固定挡板中部开设有一通槽,两所述滑动门体与固定挡板交错平行,该滑动门体下端部与滑块连接,以在电机的作用下沿导轨移动从而挡住通槽或露出通槽。
  8. 如权利要求1所述的双开滑动门,其特征在于:所述双开滑动门还包括连接板,所述滑动门体下端部通过所述连接板与滑块连接。
  9. 如权利要求1所述的双开滑动门,其特征在于:所述双开滑动门还包括有第二盒体,所述导轨、滑块以及从动轮位于第二盒体内,所述传送延长带绕与电机连接的主动轮后两端穿入第二盒体,且分别经从动轮后穿出而与滑动门体连接。
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