WO2024087115A1 - 多屏显示器支架 - Google Patents

多屏显示器支架 Download PDF

Info

Publication number
WO2024087115A1
WO2024087115A1 PCT/CN2022/128048 CN2022128048W WO2024087115A1 WO 2024087115 A1 WO2024087115 A1 WO 2024087115A1 CN 2022128048 W CN2022128048 W CN 2022128048W WO 2024087115 A1 WO2024087115 A1 WO 2024087115A1
Authority
WO
WIPO (PCT)
Prior art keywords
lubricating
rotating
rotating shaft
displays
recess
Prior art date
Application number
PCT/CN2022/128048
Other languages
English (en)
French (fr)
Inventor
黎旭
于日
沈峻
Original Assignee
广西世纪创新显示电子有限公司
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 广西世纪创新显示电子有限公司 filed Critical 广西世纪创新显示电子有限公司
Priority to PCT/CN2022/128048 priority Critical patent/WO2024087115A1/zh
Publication of WO2024087115A1 publication Critical patent/WO2024087115A1/zh

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M11/00Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
    • F16M11/02Heads
    • F16M11/04Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand
    • F16M11/06Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand allowing pivoting
    • F16M11/10Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand allowing pivoting around a horizontal axis
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements

Definitions

  • the present application relates to the technical field of display brackets, and in particular to a multi-screen display bracket.
  • a monitor stand is a product that can fix monitors, laptops or tablets, etc. It can help solve various technical problems encountered by people when operating computers at home or in commercial offices. Its ergonomic design can prevent health problems caused by work fatigue, improve work efficiency, and bring an ideal space for life and work. Monitor stands have been widely used in retail, entertainment, finance, medical care, transportation and other fields; products cover single screen, dual screen, large-format spliced screen and other categories. At present, most dual-screen monitors on the market use the same column stand to arrange two sets of hinge components horizontally or vertically to install the monitor;
  • One of the purposes of the embodiments of the present application is to provide a multi-screen display stand, which aims to solve the problem that a large gap and discontinuity will be generated between the screens after the dual-screen display stand is adjusted for the two screens.
  • a multi-screen display stand which is used to support multiple displays
  • the multi-screen display stand includes: a hinge portion, which is installed between two adjacent displays, and the two adjacent displays are pivoted through the hinge portion so that the two adjacent displays can rotate relative to each other along the axis of the hinge portion; a bracket portion, which includes a bracket body and a mounting assembly, the mounting assembly is pivotally connected to the bracket body, and a pivot axis between the mounting assembly and the bracket body is parallel to the axis of the hinge portion, and the mounting assembly is fixedly connected to one of the multiple displays.
  • the shaft portion includes a shaft, a first connecting member and a second connecting member, the first connecting member is fixedly connected to the shaft, the second connecting member is pivotally connected to the shaft, and the first connecting member and the second connecting member are respectively fixedly connected to two adjacent displays.
  • the two rotating shaft parts arranged in pairs are both arranged between two adjacent displays and are respectively fixedly connected to the two side walls of the displays.
  • the shaft portion also includes a fixed member and a first rotating member, both of which are pivotally connected to the shaft, the fixed member is arranged on a side of the first connecting member away from the display, the fixed member is fixedly connected to the first connecting member, the first rotating member is arranged on a side of the second connecting member close to the display, the first rotating member is fixedly connected to the second connecting member, and the first rotating member abuts against the fixed member.
  • the rotating shaft portion also includes a second rotating member and a limiting member, the second rotating member is pivotally connected to the rotating shaft, the limiting member is fixedly connected to the rotating shaft, the second rotating member is arranged on a side of the second connecting member away from the display, the second rotating member is fixedly connected to the second connecting member, the limiting member is arranged on a side of the second connecting member away from the display and abuts against the second rotating member, a limiting protrusion is provided on the limiting member, the limiting protrusion extends in a direction approaching the first rotating member, and when the second connecting member rotates to a specific angle along the first direction, the limiting protrusion blocks the second connecting member to limit the second connecting member from continuing to rotate in the first direction.
  • the shaft portion further includes an abutment assembly, which is sleeved on the shaft and can apply a force toward the display to the limiting member so that the limiting member abuts against the second rotating member and the first rotating member abuts against the fixed member.
  • an abutment assembly which is sleeved on the shaft and can apply a force toward the display to the limiting member so that the limiting member abuts against the second rotating member and the first rotating member abuts against the fixed member.
  • a first lubrication portion is provided between the fixed member and the first rotating member, and the first lubrication portion is used to lubricate the end surfaces of the fixed member and the first rotating member that abut against each other;
  • a second lubrication portion is provided between the second rotating member and the limiting member, and the second lubrication portion is used to lubricate the end surfaces of the second rotating member and the limiting member that abut against each other.
  • the first lubrication portion includes a first lubrication recess and a second lubrication recess, the first lubrication recess is arranged on the end surface of the fixed member close to the first rotating member, and the second lubrication recess is arranged on the end surface of the first rotating member close to the fixed member, and when the two adjacent displays are fully unfolded, the first lubrication recess corresponds to the second lubrication recess;
  • the second lubrication portion includes a third lubrication recess and a fourth lubrication recess, the third lubrication recess is arranged on the end surface of the second rotating member close to the limit member, and the fourth lubrication recess is arranged on the end surface of the limit member close to the second rotating member, and when the two adjacent displays are fully unfolded, the third lubrication recess corresponds to the fourth lubrication recess;
  • first lubrication recesses there are multiple first lubrication recesses, multiple second lubrication recesses, multiple third lubrication recesses and multiple fourth lubrication recesses, and the multiple first lubrication recesses, multiple second lubrication recesses, multiple third lubrication recesses and multiple fourth lubrication recesses are all arranged at intervals along the circumferential direction of the rotating shaft.
  • the bracket body includes a base, a first support member and a second support member
  • the mounting assembly includes a third support member and a mounting member
  • the first support member is pivoted to the base, the pivot axis of the first support member and the base is vertically arranged, and multiple displays can rotate along the axis of the pivot axis of the first support member and the base
  • the second support member is movably arranged on the first support member, and the height of multiple displays can be adjusted along the length direction of the first support member
  • the first end of the third support member is pivoted to the second support member, the pivot axis of the third support member and the second support member is parallel to the axis of the rotating shaft, and multiple displays can rotate along the axis of the pivot axis of the third support member and the second support member
  • the second end of the third support member is pivoted to the mounting member, the pivot axis of the third support member and the mounting member is horizontally arranged and perpendicular to the pivot axis of the third support member and the
  • the beneficial effect of the multi-screen display bracket provided by the embodiment of the present application is that the multi-screen display bracket provided by the present application installs a hinge portion between two adjacent displays, so that the two adjacent displays are pivotally connected together through the hinge portion, so that the two adjacent displays can rotate relative to each other along the axis of the hinge portion, and while the two adjacent displays are rotating relative to each other, the gap between the two adjacent displays will not change, and the transition is natural.
  • the multi-screen display bracket provided by the present application fixes the mounting component to one of the multiple displays and pivots the mounting component to the bracket body, so that the multiple displays are firmly supported while the entirety of the multiple displays can rotate along the pivot axis between the mounting component and the bracket body, thereby effectively improving the range of activities of the multiple displays and effectively improving the user experience.
  • FIG1 is a schematic structural diagram of a multi-screen display stand provided in an embodiment of the present application.
  • FIG2 is a schematic structural diagram of a multi-screen display stand at another viewing angle provided by an embodiment of the present application.
  • FIG3 is a schematic structural diagram of a bracket portion with some parts removed provided by an embodiment of the present application.
  • FIG4 is a partial cross-sectional view of a rotating shaft portion provided in an embodiment of the present application.
  • FIG5 is a schematic structural diagram of a rotating shaft portion provided in an embodiment of the present application.
  • Second lubrication portion 31. Third lubrication recess; 32. Fourth lubrication recess;
  • first and second are only used for the purpose of convenience of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features.
  • the meaning of “multiple” is two or more, unless otherwise clearly and specifically defined.
  • an embodiment of the present application provides a multi-screen display stand, which is used to support multiple displays 50, and the multi-screen display stand includes: a hinge portion 10, the hinge portion 10 is installed between two adjacent displays 50, and the two adjacent displays 50 are pivoted through the hinge portion 10 so that the two adjacent displays 50 can rotate relative to each other along the axis of the hinge portion 10; a bracket portion 40, the bracket portion 40 includes a bracket body 41 and a mounting assembly 42, the mounting assembly 42 is pivotally connected to the bracket body 41, and the pivot axis between the mounting assembly 42 and the bracket body 41 is parallel to the axis of the hinge portion 10, and the mounting assembly 42 is fixedly connected to one of the multiple displays 50.
  • the multi-screen display bracket provided in the present embodiment installs a hinge portion 10 between two adjacent displays 50, so that the two adjacent displays 50 are pivotally connected together through the hinge portion 10, so that the two adjacent displays 50 can rotate relative to each other along the axis of the hinge portion 10, and while the two adjacent displays 50 are rotating relative to each other, the gap between the two adjacent displays 50 will not change, and the transition is natural.
  • the multi-screen display bracket provided in the present embodiment fixes the mounting component 42 to one of the multiple displays 50, and pivots the mounting component 42 to the bracket body 41, so that the multiple displays 50 are firmly supported while the entirety of the multiple displays 50 can rotate along the pivot axis between the mounting component 42 and the bracket body 41, thereby effectively improving the range of movement of the multiple displays 50 and effectively improving the user experience.
  • the rotating shaft portion 10 in this embodiment includes a rotating shaft 11, a first connecting member 12, and a second connecting member 13.
  • the first connecting member 12 is fixedly connected to the rotating shaft 11, the second connecting member 13 is pivotally connected to the rotating shaft 11, and the first connecting member 12 and the second connecting member 13 are respectively fixedly connected to the two adjacent displays 50.
  • the multiple hinge parts 10 are arranged in pairs, and the axes of the two hinge parts 10 arranged in pairs are collinear, and the two hinge parts 10 arranged in pairs are arranged between two adjacent displays 50 and are respectively fixedly connected to the two side walls of the display 50.
  • the above-mentioned side walls refer to the side walls of the side frames of the display 50.
  • the stability of the pivot connection of the two adjacent displays 50 can be effectively improved.
  • the hinge portion 10 in this embodiment also includes a fixing member 14 and a first rotating member 15.
  • the fixing member 14 and the first rotating member 15 are both pivotally connected to the shaft 11.
  • the fixing member 14 is arranged on a side of the first connecting member 12 away from the display 50.
  • the fixing member 14 is fixedly connected to the first connecting member 12.
  • the first rotating member 15 is arranged on a side of the second connecting member 13 close to the display 50.
  • the first rotating member 15 is fixedly connected to the second connecting member 13.
  • the first rotating member 15 abuts against the fixing member 14.
  • the two adjacent displays 50 can maintain relative stillness through the static friction between the first rotating member 15 and the fixing member 14 when no external force is applied.
  • three displays are provided in this embodiment, and the installation component provided in this embodiment is fixedly connected to one of the three displays.
  • the angle between the two adjacent displays 50 can be adjusted by applying a certain force to the display that is not fixedly connected to the installation component.
  • the rotating shaft portion 10 in the present embodiment further includes a second rotating member 16 and a limiting member 17, wherein the second rotating member 16 is pivotally connected to the rotating shaft 11, and the limiting member 17 is fixedly connected to the rotating shaft 11.
  • the second rotating member 16 is disposed on a side of the second connecting member 13 away from the display 50, and the second rotating member 16 is fixedly connected to the second connecting member 13.
  • the limiting member 17 is disposed on a side of the second connecting member 13 away from the display 50 and abuts against the second rotating member 16.
  • a limiting protrusion is disposed on the limiting protrusion, and the limiting protrusion extends in a direction approaching the first rotating member 15.
  • the limiting protrusion blocks the second connecting member 13 to limit the second connecting member 13 from continuing to rotate in the first direction.
  • the display surfaces of the two adjacent displays in this embodiment can be relatively opened and closed, the above-mentioned first direction is the direction in which the two display surfaces are relatively opened, and the above-mentioned specific angle is the angle between the second connecting member 13 and the first connecting member 12.
  • the specific angle provided in this embodiment can be any angle between 0 ⁇ 270°.
  • the two adjacent displays 50 can be kept relatively still by the static friction between the second rotating member 16 and the limiting member 17 when no external force is applied; at the same time, by providing a limiting protrusion extending in the direction approaching the first rotating member 15 on the limiting member 17 provided in the present embodiment, the second connecting member 13 can be blocked by the limiting protrusion when it rotates to a specific angle along the first direction, thereby limiting the second connecting member 13 from continuing to rotate in the first direction, thereby effectively limiting the rotation of the second connecting member 13 provided in the present embodiment.
  • the specific angle provided in this embodiment is 180°, and when the second connecting member 13 is rotated to the extreme position along the first direction, the angle between the screens of two adjacent displays 50 is a straight angle.
  • the rotating shaft portion 10 in this embodiment further includes an abutting assembly 18, which is sleeved on the rotating shaft 11.
  • the abutting assembly 18 can apply a force toward the display 50 to the stopper 17, so that the stopper 17 abuts against the second rotating member 16, and the first rotating member 15 abuts against the fixing member 14.
  • the stopper 17 and the second rotating member 16 can be effectively abutted together, and the first rotating member 15 and the fixing member 14 can be effectively abutted together, so that the two adjacent displays 50 can be kept relatively still by the static friction between the stopper 17 and the second rotating member 16 and the static friction between the first rotating member 15 and the fixing member 14 without being acted upon by external forces.
  • an external thread structure is provided on the end of the rotating shaft 11 provided in this embodiment away from the display 50, and the abutment assembly 18 provided in this embodiment includes a nut and an elastic washer adapted to the external thread structure.
  • the elastic washer provided in this embodiment is sleeved on the rotating shaft 11 and abuts against the limit member 17.
  • the nut provided in this embodiment is screwed onto the external thread mechanism and applies a force to the elastic washer toward the display 50.
  • a first lubricating portion 20 is arranged between the fixed member 14 and the first rotating member 15 in this embodiment, and the first lubricating portion 20 is used to lubricate the abutting end surfaces of the fixed member 14 and the first rotating member 15;
  • a second lubricating portion 30 is arranged between the second rotating member 16 and the limiting member 17, and the second lubricating portion 30 is used to lubricate the abutting end surfaces of the second rotating member 16 and the limiting member 17.
  • the first rotating member 15 provided in the present embodiment can reduce the wear between the mutually abutting end surfaces of the fixed member 14 and the first rotating member 15 through the first lubricating portion 20 when the first rotating member 15 rotates relative to the fixed member 14, thereby effectively improving the service life of the fixed member 14 and the first rotating member 15.
  • the wear between the mutually abutting end surfaces of the limiting member 17 and the second rotating member 16 can be reduced through the second lubricating portion 30, thereby effectively improving the service life of the limiting member 17 and the second rotating member 16.
  • the first lubricating portion 20 in this embodiment includes a first lubricating recess 21 and a second lubricating recess 22.
  • the first lubricating recess 21 is arranged on the end surface of the fixed member 14 close to the first rotating member 15, and the second lubricating recess 22 is arranged on the end surface of the first rotating member 15 close to the fixed member 14.
  • the first lubricating recess 21 corresponds to the second lubricating recess 22.
  • the second lubricating portion 30 includes a third lubricating recess 31 and a fourth lubricating recess 32.
  • the third lubricating recess 31 is arranged on the end surface of the second rotating member 16 close to the limit member 17, and the fourth lubricating recess 32 is arranged on the end surface of the limit member 17 close to the second rotating member 16.
  • the third lubricating recess 31 corresponds to the fourth lubricating recess 32.
  • the first lubricating recess 21, the second lubricating recess 22, the third lubricating recess 31 and the fourth lubricating recess 32 are all used to accommodate lubricating oil.
  • a fifth lubrication recess is provided on the end face of the limit member 17 provided in this embodiment away from the second rotating member 16, and the fifth lubrication recess provided in this embodiment corresponds to the fourth lubrication recess 32, and the fifth lubrication recess provided in this embodiment can accommodate lubricating oil.
  • the lubricating oil in the first lubricating recess 21 and the second lubricating recess 22 provided in the present embodiment will seep out along the gap between the fixed member 14 and the first rotating member 15, thereby effectively reducing the wear between the fixed member 14 and the first rotating member 15.
  • the lubricating oil in the third lubricating recess 31 and the fourth lubricating recess 32 provided in the present embodiment will seep out along the gap between the limit member 17 and the second rotating member 16, thereby effectively reducing the wear between the limit member 17 and the second rotating member 16.
  • the first lubrication recess 21, the second lubrication recess 22, the third lubrication recess 31 and the fourth lubrication recess 32 in this embodiment are all multiple, and the multiple first lubrication recesses 21, the multiple second lubrication recesses 22, the multiple third lubrication recesses 31 and the multiple fourth lubrication recesses 32 are all arranged at intervals along the circumferential direction of the rotating shaft 11.
  • the bracket body 41 in the present embodiment includes a base 411, a first support member 412 and a second support member 413
  • the mounting assembly 42 includes a third support member 421 and a mounting member 422
  • the first support member 412 is pivotally connected to the base 411, and the pivot axis of the first support member 412 and the base 411 is vertically arranged, and the multiple displays 50 can rotate along the axis of the pivot axis of the first support member 412 and the base 411
  • the second support member 413 is movably arranged on the first support member 412, and the multiple displays 50 can rotate along the axis of the pivot axis of the first support member 412 and the base 411
  • a first end of the third support member 421 is pivoted to the second support member 413, a pivot axis between
  • a scale indicator is provided on the bracket body 41 provided in this embodiment, and the scale indicator provided in this embodiment is used to indicate the rotation angle of the first support member 412 relative to the base 411 and the moving distance of the second support member 413 relative to the first support member 412.
  • the mounting member 422 provided in this embodiment is detachably connected to the display 50 provided in this embodiment.
  • the mounting member 422 provided in this embodiment is connected to the display 50 provided in this embodiment via a threaded fastener.
  • the mounting member 422 provided in this embodiment and the display 50 can also be detachably connected via a suction cup, a snap, or the like.
  • the two displays 50 there are two displays 50 in this embodiment, and the two displays 50 are pivotally connected by a hinge portion 10.
  • the two displays 50 provided in this embodiment have a folded state in which the screens of the displays 50 are relative and parallel and an unfolded state in which the screens of the displays 50 are coplanar.
  • the implementation of the multi-screen display bracket provided in this embodiment has at least the following beneficial technical effects: the multi-screen display bracket provided in this embodiment installs a hinge portion 10 between two adjacent displays 50, so that the two adjacent displays 50 are pivotally connected together through the hinge portion 10, so that the two adjacent displays 50 can rotate relative to each other along the axis of the hinge portion 10, and while the two adjacent displays 50 are rotating relative to each other, the gap between the two adjacent displays 50 will not change, and the transition is natural.
  • the multi-screen display bracket provided in this embodiment is fixedly connected to one of the multiple displays 50 by the mounting component 42, and the mounting component 42 is pivotally connected to the bracket body 41, so that the multiple displays 50 are firmly supported, and the multiple displays 50 as a whole can rotate along the pivot axis between the mounting component 42 and the bracket body 41, thereby effectively improving the range of activities of the multiple displays 50 and effectively improving the user experience.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)

Abstract

一种多屏显示器支架,包括:转轴部(10),转轴部(10)安装在相邻的两个显示器(50)之间,相邻的两个显示器(50)通过转轴部(10)进行枢接,以使相邻的两个显示器(50)能够沿转轴部(10)的轴线相对旋转;支架部(40),支架部(40)包括支架主体(41)及枢接在支架主体(41)上的安装组件(42),安装组件(42)和支架主体(41)之间的枢接轴与转轴部(10)的轴线平行,安装组件(42)与多个显示器(50)中的一者固定连接。这种多屏显示器支架不但能够使相邻的两个显示器(50)相对旋转,而且在旋转的过程中相邻两显示器(50)之间的间隙不会发生变化,过渡自然。

Description

多屏显示器支架 技术领域
本申请涉及显示器支架技术领域,具体涉及一种多屏显示器支架。
背景技术
显示器支架是一种可以固定显示器,笔记本或者平板电脑等的产品,可以帮助解决人们在家庭或商用办公场所操作电脑时所遇到的各种技术难题,它的人体工学设计,可以预防工作疲劳带来的健康问题,提高工作效率,带了生活和工作的理想空间。显示器支架,已经广泛引用于零售、娱乐、金融、医疗、交通等领域;产品涵盖单屏幕、双屏幕、大幅面拼接屏幕等品类。目前市面上大多数双屏显示器采用的支架大多为同一根立柱支架横向或纵向再排布两组转轴组件安装显示器;
但是,通过两组转轴组件安装显示器,使两个显示器无法同时进行俯仰角度调节、左右旋转调节、升降高度调节及横竖屏调节,且两个屏幕调节之后屏幕间会产生很大的间隙和断差,用户体验感不佳。
技术问题
本申请实施例的目的之一在于:提供一种多屏显示器支架,旨在解决双屏显示器支架在对两个屏幕进行调节之后,屏幕间会产生很大的间隙和断差的问题。
技术解决方案
为解决上述技术问题,本申请实施例采用的技术方案是:
第一方面,提供了一种多屏显示器支架,多屏显示器支架用于对多个显示器进行支撑,多屏显示器支架包括:转轴部,转轴部安装在相邻的两个显示器之间,相邻的两个显示器通过转轴部进行枢接,以使相邻的两个显示器能够沿转轴部的轴线相对旋转;支架部,支架部包括支架主体及安装组件,安装组件枢接在支架主体上,安装组件和支架主体之间的枢接轴,与转轴部的轴线平行,安装组件与多个显示器中的一者固定连接。
在一种实施例中,转轴部包括转轴、第一连接件及第二连接件,第一连接件与转轴固定连接,第二连接件枢接在转轴上,第一连接件及第二连接件分别与相邻的两个显示器的固定连接。
在一种实施例中,转轴部为多个,多个转轴部成对设置,成对设置的两个转轴部的轴线共线,成对设置的两个转轴部均设置在相邻的两个显示器之间,并分别与显示器的两个侧壁固定连接。
在一种实施例中,转轴部还包括固定件及第一旋转件,固定件及第一旋转件均与转轴枢接,固定件设置在第一连接件远离显示器的一侧上,固定件与第一连接件固定连接,第一旋转件设置在第二连接件接近显示器的一侧上,第一旋转件与第二连接件固定连接,第一旋转件与固定件抵接。
在一种实施例中,转轴部还包括第二旋转件及限位件,第二旋转件与转轴枢接,限位件与转轴固定连接,第二旋转件设置在第二连接件远离显示器的一侧,第二旋转件与第二连接件固定连接,限位件设置在第二连接件远离显示器的一侧上,并与第二旋转件抵接,限位件上设置有限位凸块,限位凸块向接近第一旋转件的方向延伸,在第二连接件沿第一方向旋转至特定角度的情况下,限位凸块对第二连接件进行阻挡,以限制第二连接件继续向第一方向转动。
在一种实施例中,转轴部还包括抵接组件,抵接组件套设在转轴上,抵接组件能够对限位件施加朝向显示器方向的力,以使限位件与第二旋转件抵接,第一旋转件与固定件抵接。
在一种实施例中,固定件与第一旋转件之间设置有第一润滑部,第一润滑部用于对固定件及第一旋转件的相互抵接的端面进行润滑;第二旋转件与限位件之间设置有第二润滑部,第二润滑部用于对第二旋转件及限位件的相互抵接的端面进行润滑。
在一种实施例中,第一润滑部包括第一润滑凹部及第二润滑凹部,第一润滑凹部设置在固定件接近第一旋转件的端面上,第二润滑凹部设置在第一旋转件接近固定件的端面上,在相邻的两显示器完全展开的情况下,第一润滑凹部与第二润滑凹部相对应;第二润滑部包括第三润滑凹部及第四润滑凹部,第三润滑凹部设置在第二旋转件接近限位件的端面上,第四润滑凹部设置在限位件接近第二旋转件的端面上,在相邻的两显示器完全展开的情况下,第三润滑凹部与第四润滑凹部相对应;第一润滑凹部、第二润滑凹部、第三润滑凹部及第四润滑凹部均用于容纳润滑油。
在一种实施例中,第一润滑凹部、第二润滑凹部、第三润滑凹部及第四润滑凹部均为多个,多个第一润滑凹部、多个第二润滑凹部、多个第三润滑凹部及多个第四润滑凹部均沿转轴的圆周方向间隔设置。
在一种实施例中,支架主体包括底座、第一支撑件及第二支撑件,安装组件包括第三支撑件及安装件,第一支撑件枢接在底座上,第一支撑件与底座的枢接轴竖直设置,多个显示器能够沿第一支撑件与底座的枢接轴的轴线进行旋转;第二支撑件可移动的设置在第一支撑件上,多个显示器能够沿第一支撑件的长度方向进行高度调节;第三支撑件的第一端枢接在第二支撑件上,第三支撑件与第二支撑件的枢接轴与转轴部的轴线平行,多个显示器能够沿第三支撑件与第二支撑件的枢接轴的轴线进行旋转;第三支撑件的第二端枢接在安装件上,第三支撑件与安装件的枢接轴水平设置,并与第三支撑件与第二支撑件的枢接轴垂直,多个显示器能够沿第三支撑件与安装件的枢接轴的轴线进行旋转;安装件与多个显示器中的一者固定连接。
有益效果
本申请实施例提供的多屏显示器支架的有益效果在于:本申请所提供的多屏显示器支架在相邻的两个显示器之间安装转轴部,使相邻的两个显示器通过转轴部枢接在一起,从而使相邻的两个显示器能够沿所述转轴部的轴线相对旋转,并且相邻的两个显示器在相对旋转的同时,相邻两显示器之间的间隙不会发生变化,过渡自然,与此同时,本申请所提供的多屏显示器支架通过将安装组件与多个显示器中的一者固定连接,并将安装组件与支架主体进行枢接,使多个显示器在得到稳固的支撑的同时,也使多个显示器的整体能够沿安装组件与支架主体之间的枢接轴进行旋转,从而有效的提高了多个显示器的活动范围,有效的提高了用户的使用体验。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例或示范性技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其它的附图。
图1是本申请实施例提供的多屏显示器支架的结构示意图;
图2是本申请实施例提供的另一视角下的多屏显示器支架的结构示意图;
图3是本申请实施例提供的拆去部分零件的支架部的结构示意图;
图4是本申请实施例提供的转轴部的局部剖视图;
图5是本申请实施例提供的转轴部的结构示意图;
上述附图所涉及的标号明细如下:
10、转轴部;11、转轴;12、第一连接件;13、第二连接件;14、固定件;15、第一旋转件;16、第二旋转件;17、限位件;18、抵接组件;
20、第一润滑部;21、第一润滑凹部;22、第二润滑凹部;
30、第二润滑部;31、第三润滑凹部;32、第四润滑凹部;
40、支架部;41、支架主体;411、底座;412、第一支撑件;413、第二支撑件;42、安装组件;421、第三支撑件;422、安装件;
50、显示器。
本发明的实施方式
为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本申请。
需说明的是,当部件被称为“固定于”或“设置于”另一个部件,它可以直接在另一个部件上或者间接在该另一个部件上。当一个部件被称为是“连接于”另一个部件,它可以是直接或者间接连接至该另一个部件上。术语“上”、“下”、“左”、“右”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制,对于本领域的普通技术人员而言,可以根据具体情况理解上述术语的具体含义。术语“第一”、“第二”仅用于便于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明技术特征的数量。“多个”的含义是两个或两个以上,除非另有明确具体的限定。
为了说明本申请所提供的技术方案,以下结合具体附图及实施例进行详细说明。
参见图1至图5所示,为了解决上述问题,根据本申请的一个方面,本申请的实施例提供了一种多屏显示器支架,多屏显示器支架用于对多个显示器50进行支撑,多屏显示器支架包括:转轴部10,转轴部10安装在相邻的两个显示器50之间,相邻的两个显示器50通过转轴部10进行枢接,以使相邻的两个显示器50能够沿转轴部10的轴线相对旋转;支架部40,支架部40包括支架主体41及安装组件42,安装组件42枢接在支架主体41上,安装组件42和支架主体41之间的枢接轴,与转轴部10的轴线平行,安装组件42与多个显示器50中的一者固定连接。本实施例所提供的多屏显示器支架在相邻的两个显示器50之间安装转轴部10,使相邻的两个显示器50通过转轴部10枢接在一起,从而使相邻的两个显示器50能够沿所述转轴部10的轴线相对旋转,并且相邻的两个显示器50在相对旋转的同时,相邻两显示器50之间的间隙不会发生变化,过渡自然,与此同时,本实施例所提供的多屏显示器支架通过将安装组件42与多个显示器50中的一者固定连接,并将安装组件42与支架主体41进行枢接,使多个显示器50在得到稳固的支撑的同时,也使多个显示器50的整体能够沿安装组件42与支架主体41之间的枢接轴进行旋转,从而有效的提高了多个显示器50的活动范围,有效的提高了用户的使用体验。
参见图4和图5所示,为了使本实施例所提供的转轴部10能够有效的将相邻的两个显示器50枢接,本实施例中的转轴部10包括转轴11、第一连接件12及第二连接件13,第一连接件12与转轴11固定连接,第二连接件13枢接在转轴11上,第一连接件12及第二连接件13分别与相邻的两个显示器50的固定连接。通过将本实施例所提供的第一连接件12与转轴11固定连接,将第二连接件13与转轴11枢接,同时使第一连接件12和第二连接件13分别与相邻的两个显示器50的固定连接,便可有效的将相邻的两个显示器50枢接在一起。
参见图1至图3所示,为了提高相邻的两个显示器50的枢接的稳定性,本实施例中的转轴部10为多个,多个转轴部10成对设置,成对设置的两个转轴部10的轴线共线,成对设置的两个转轴部10均设置在相邻的两个显示器50之间,并分别与显示器50的两个侧壁固定连接。上述侧壁是指与显示器50侧边框的侧壁,通过将本实施例所提供的成对设置的轴线共线的两个转轴部10设置在相邻的两个显示器50之间,并使两个转轴部10分别与显示器50的两个侧壁固定连接,便可有效的提高相邻的两个显示器50的枢接的稳定性。
参见图4和图5所示,为了使相邻的两个显示器50在不受外力作用的情况下,能够通过本实施例所提供的转轴部10保持相对静止,本实施例中的转轴部10还包括固定件14及第一旋转件15,固定件14及第一旋转件15均与转轴11枢接,固定件14设置在第一连接件12远离显示器50的一侧上,固定件14与第一连接件12固定连接,第一旋转件15设置在第二连接件13接近显示器50的一侧上,第一旋转件15与第二连接件13固定连接,第一旋转件15与固定件14抵接。通过将本实施例所提供的枢接在转轴11上的固定件14及第一旋转件15,分别设置在第一连接件12远离显示器50的一侧和第二连接件13接近显示器50的一侧上,并使固定件14与第一连接件12固定连接,第一旋转件15与第二连接件13固定连接,同时使第一旋转件15与固定件14抵接,使相邻的两个显示器50在不受外力作用的情况下,能够通过第一旋转件15与固定件14之间的静摩擦来保持相对的静止。
在一种具体的实施例中,本实施例所提供的显示器为三个,本实施例所提供的安装组件与三个显示器中的一者固定连接,在用户需要对相邻的两个显示器50之间的角度进行调节的情况下,只需对未与安装组件固定连接的显示器施加一定的作用力,便可实现对相邻的两个显示器50之间的角度进行调节。
参见图4和图5所示,为了使相邻的两个显示器50在不受外力作用的情况下,能够通过本实施例所提供的转轴部10保持相对静止,同时也为了对本实施例所提供的第二连接件13的转动进行限位,本实施例中的转轴部10还包括第二旋转件16及限位件17,第二旋转件16与转轴11枢接,限位件17与转轴11固定连接,第二旋转件16设置在第二连接件13远离显示器50的一侧,第二旋转件16与第二连接件13固定连接,限位件17设置在第二连接件13远离显示器50的一侧上,并与第二旋转件16抵接,限位件17上设置有限位凸块,限位凸块向接近第一旋转件15的方向延伸,在第二连接件13沿第一方向旋转至特定角度的情况下,限位凸块对第二连接件13进行阻挡,以限制第二连接件13继续向第一方向转动。其中,本实施例中的相邻的两个显示器的显示面可相对打开及闭合,上述第一方向为两个显示面相对打开的方向,上述特定角度为第二连接件13与第一连接件12之间的角度,本实施例所提供的特定角度可以为0~270°之间的任意角度。通过将本实施例所提供的与转轴11枢接的第二旋转件16及与转轴11固定连接的限位件17,分别设置在第二连接件13远离显示器50的一侧和第二连接件13远离显示器50的一侧上,并使第二旋转件16与第二连接件13固定连接,同时使限位件17与第二旋转件16抵接,便可使相邻的两个显示器50在不受外力作用的情况下,能够通过第二旋转件16与限位件17之间的静摩擦来保持相对的静止;与此同时,通过在本实施例所提供的限位件17上设置向接近第一旋转件15的方向延伸限位凸块,便可使第二连接件13在沿第一方向旋转至特定角度的情况下,能够被限位凸块阻挡,从而限制第二连接件13继续向第一方向转动,进而有效的对本实施例所提供的第二连接件13的转动进行限位。
在一种可选的实施例中,本实施例所提供的特定角度为180°,第二连接件13沿向第一方向转动至极限位置的情况下,相邻的两个显示器50的屏幕之间的角度为平角。
参见图4和图5所示,为了使本实施例所提供的限位件17与第二旋转件16能够有效的抵接在一起,第一旋转件15与固定件14能够有效的抵接在一起,本实施例中的转轴部10还包括抵接组件18,抵接组件18套设在转轴11上,抵接组件18能够对限位件17施加朝向显示器50方向的力,以使限位件17与第二旋转件16抵接,第一旋转件15与固定件14抵接。通过将本实施例所提供的抵接组件18套设在转轴11上,并使本实施例所提供的抵接组件18对限位件17施加朝向显示器50方向的力,便可使限位件17与第二旋转件16有效的抵接在一起,第一旋转件15与固定件14有效的抵接在一起,从而使相邻的两个显示器50在不受外力作用的情况下,能够通过限位件17与第二旋转件16的静摩擦力及第一旋转件15与固定件14之间的静摩擦力保持相对静止。
在一种可选的实施例中,本实施例所提供的转轴11的远离显示器50的一端上设置有外螺纹结构,本实施例所提供的抵接组件18包括与外螺纹结构相适配的螺母及弹性垫圈,本实施例所提供的弹性垫圈套设在转轴11上并与限位件17抵接,本实施例所提供的螺母旋合在外螺纹机构上,并对弹性垫圈施加朝向显示器50方向的力。
参见图4所示,为了有效的减小固定件14与第一旋转件15的相互抵接的端面之间的磨损及第二旋转件16与限位件17的相互抵接的端面之间的磨损,从而有效的提高本实施例所提供的转轴部10的使用寿命,本实施例中的固定件14与第一旋转件15之间设置有第一润滑部20,第一润滑部20用于对固定件14及第一旋转件15的相互抵接的端面进行润滑;第二旋转件16与限位件17之间设置有第二润滑部30,第二润滑部30用于对第二旋转件16及限位件17的相互抵接的端面进行润滑。通过在本实施例所提供的固定件14与第一旋转件15之间及第二旋转件16与限位件17之间,分别设置第一润滑部20和第二润滑部30,便可使本实施例所提供的第一旋转件15在与固定件14发生相对转动的情况下,能够通过第一润滑部20来减小固定件14及第一旋转件15的相互抵接的端面之间的磨损,有效的提高了固定件14与第一旋转件15的使用寿命,与此同时,本实施例所提供的第二旋转件16在与限位件17发生相对转动的情况下,能够通过第二润滑部30来减小限位件17及第二旋转件16的相互抵接的端面之间的磨损,有效的提高了限位件17与第二旋转件16的使用寿命。
参见图4所示,在一种具体的实施例中,本实施例中的第一润滑部20包括第一润滑凹部21及第二润滑凹部22,第一润滑凹部21设置在固定件14接近第一旋转件15的端面上,第二润滑凹部22设置在第一旋转件15接近固定件14的端面上,在相邻的两显示器50完全展开的情况下,第一润滑凹部21与第二润滑凹部22相对应;第二润滑部30包括第三润滑凹部31及第四润滑凹部32,第三润滑凹部31设置在第二旋转件16接近限位件17的端面上,第四润滑凹部32设置在限位件17接近第二旋转件16的端面上,在相邻的两显示器50完全展开的情况下,第三润滑凹部31与第四润滑凹部32相对应;第一润滑凹部21、第二润滑凹部22、第三润滑凹部31及第四润滑凹部32均用于容纳润滑油。
在一种可选的实施例中,本实施例所提供的限位件17的远离第二旋转件16的端面上设置有第五润滑凹部,本实施例所提供的第五润滑凹部与第四润滑凹部32相对应,本实施例所提供的第五润滑凹部能够容纳润滑油。
在一种具体的实施例中,在本实施例所提供的第一连接件12与第二连接件13发生相对转动的情况下,本实施例所提供的第一润滑凹部21与第二润滑凹部22内的润滑油便会沿固定件14与第一旋转件15之间的间隙渗出,从而有效的减小固定件14与第一旋转件15之间的磨损,与此同时,本实施例所提供的第三润滑凹部31与第四润滑凹部32内的润滑油会沿限位件17与第二旋转件16之间的间隙渗出,从而有效的减小限位件17与第二旋转件16之间的磨损。
在一种可选的实施例中,本实施例中的第一润滑凹部21、第二润滑凹部22、第三润滑凹部31及第四润滑凹部32均为多个,多个第一润滑凹部21、多个第二润滑凹部22、多个第三润滑凹部31及多个第四润滑凹部32均沿转轴11的圆周方向间隔设置。
参见图1至图3所示,在一种具体的实施例中,为了有效的提高安装在本实施例所提供的多屏显示器支架上的多个显示器50的活动范围,本实施例中的支架主体41包括底座411、第一支撑件412及第二支撑件413,安装组件42包括第三支撑件421及安装件422,第一支撑件412枢接在底座411上,第一支撑件412与底座411的枢接轴竖直设置,多个显示器50能够沿第一支撑件412与底座411的枢接轴的轴线进行旋转;第二支撑件413可移动的设置在第一支撑件412上,多个显示器50能够沿第一支撑件412的长度方向进行高度调节;第三支撑件421的第一端枢接在第二支撑件413上,第三支撑件421与第二支撑件413的枢接轴与转轴部10的轴线平行,多个显示器50能够沿第三支撑件421与第二支撑件413的枢接轴的轴线进行旋转;第三支撑件421的第二端枢接在安装件422上,第三支撑件421与安装件422的枢接轴水平设置,并与第三支撑件421与第二支撑件413的枢接轴垂直,多个显示器50能够沿第三支撑件421与安装件422的枢接轴的轴线进行旋转;安装件422与多个显示器50中的一者固定连接。
在一种可选的实施例中,本实施例所提供的支架主体41上设置有刻度指示部,本实施例所提供的刻度指示部用于对第一支撑件412先对与底座411的旋转角度及第二支撑件413可相对于第一支撑件412的移动距离进行指示。
在一种可选的实施例中,本实施例所提供的安装件422与本实施例所提供的显示器50可拆卸的连接。
在一种可选的实施例中,本实施例所提供的安装件422与本实施例所提供的显示器50之间通过螺纹紧固件进行连接,当然在其他实施例中,本实施例所提供的安装件422与显示器50之间还可以通过吸盘、卡扣等方式可拆卸的连接。
在一种可选的实施例中,本实施例中的显示器50为两个,两个显示器50之间通过转轴部10进行枢接,本实施例所提供的两个显示器50具有显示器50屏幕相对且平行的折叠状态及显示器50屏幕共面的展开状态。
综上,实施本实施例提供的多屏显示器支架,至少具有以下有益技术效果:本实施例所提供的多屏显示器支架在相邻的两个显示器50之间安装转轴部10,使相邻的两个显示器50通过转轴部10枢接在一起,从而使相邻的两个显示器50能够沿所述转轴部10的轴线相对旋转,并且相邻的两个显示器50在相对旋转的同时,相邻两显示器50之间的间隙不会发生变化,过渡自然,与此同时,本实施例所提供的多屏显示器支架通过将安装组件42与多个显示器50中的一者固定连接,并将安装组件42与支架主体41进行枢接,使多个显示器50在得到稳固的支撑的同时,也使多个显示器50的整体能够沿安装组件42与支架主体41之间的枢接轴进行旋转,从而有效的提高了多个显示器50的活动范围,有效的提高了用户的使用体验。
以上仅为本申请的较佳实施例而已,并不用以限制本申请,凡在本申请的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本申请的保护范围之内。

Claims (10)

  1. 一种多屏显示器支架,其特征在于,所述多屏显示器支架用于对多个显示器(50)进行支撑,所述多屏显示器支架包括:
    转轴部(10),所述转轴部(10)安装在相邻的两个所述显示器(50)之间,相邻的两个所述显示器(50)通过所述转轴部(10)进行枢接,以使相邻的两个所述显示器(50)能够沿所述转轴部(10)的轴线相对旋转;
    支架部(40),所述支架部(40)包括支架主体(41)及安装组件(42),所述安装组件(42)枢接在所述支架主体(41)上,所述安装组件(42)和所述支架主体(41)之间的枢接轴,与所述转轴部(10)的轴线平行,所述安装组件(42)与多个所述显示器(50)中的一者固定连接。
  2. 根据权利要求1所述的多屏显示器支架,其特征在于,所述转轴部(10)包括转轴(11)、第一连接件(12)及第二连接件(13),所述第一连接件(12)与所述转轴(11)固定连接,所述第二连接件(13)枢接在所述转轴(11)上,所述第一连接件(12)及所述第二连接件(13)分别与相邻的两个所述显示器(50)的固定连接。
  3. 根据权利要求1所述的多屏显示器支架,其特征在于,所述转轴部(10)为多个,多个所述转轴部(10)成对设置,成对设置的两个所述转轴部(10)的轴线共线,成对设置的两个所述转轴部(10)均设置在相邻的两个所述显示器(50)之间,并分别与所述显示器(50)的两个侧壁固定连接。
  4. 根据权利要求2所述的多屏显示器支架,其特征在于,所述转轴部(10)还包括固定件(14)及第一旋转件(15),所述固定件(14)及所述第一旋转件(15)均与所述转轴(11)枢接,所述固定件(14)设置在所述第一连接件(12)远离所述显示器(50)的一侧上,所述固定件(14)与所述第一连接件(12)固定连接,所述第一旋转件(15)设置在所述第二连接件(13)接近所述显示器(50)的一侧上,所述第一旋转件(15)与所述第二连接件(13)固定连接,所述第一旋转件(15)与所述固定件(14)抵接。
  5. 根据权利要求4所述的多屏显示器支架,其特征在于,所述转轴部(10)还包括第二旋转件(16)及限位件(17),所述第二旋转件(16)与所述转轴(11)枢接,所述限位件(17)与所述转轴(11)固定连接,所述第二旋转件(16)设置在所述第二连接件(13)远离所述显示器(50)的一侧,所述第二旋转件(16)与所述第二连接件(13)固定连接,所述限位件(17)设置在所述第二连接件(13)远离所述显示器(50)的一侧上,并与所述第二旋转件(16)抵接,所述限位件(17)上设置有限位凸块,所述限位凸块向接近所述第一旋转件(15)的方向延伸,在所述第二连接件沿第一方向旋转至特定角度的情况下,所述限位凸块对所述第二连接件(13)进行阻挡,以限制所述第二连接件继续向所述第一方向转动。
  6. 根据权利要求5所述的多屏显示器支架,其特征在于,所述转轴部(10)还包括抵接组件(18),所述抵接组件(18)套设在所述转轴(11)上,所述抵接组件(18)能够对所述限位件(17)施加朝向所述显示器(50)方向的力,以使所述限位件(17)与所述第二旋转件(16)抵接,所述第一旋转件(15)与所述固定件(14)抵接。
  7. 根据权利要求5所述的多屏显示器支架,其特征在于,所述固定件(14)与所述第一旋转件(15)之间设置有第一润滑部(20),所述第一润滑部(20)用于对所述固定件(14)及所述第一旋转件(15)的相互抵接的端面进行润滑;
    所述第二旋转件(16)与所述限位件(17)之间设置有第二润滑部(30),所述第二润滑部(30)用于对所述第二旋转件(16)及所述限位件(17)的相互抵接的端面进行润滑。
  8. 根据权利要求7所述的多屏显示器支架,其特征在于,所述第一润滑部(20)包括第一润滑凹部(21)及第二润滑凹部(22),所述第一润滑凹部(21)设置在所述固定件(14)接近所述第一旋转件(15)的端面上,所述第二润滑凹部(22)设置在所述第一旋转件(15)接近所述固定件(14)的端面上,在相邻的两所述显示器(50)完全展开的情况下,所述第一润滑凹部(21)与所述第二润滑凹部(22)相对应;
    所述第二润滑部(30)包括第三润滑凹部(31)及第四润滑凹部(32),所述第三润滑凹部(31)设置在所述第二旋转件(16)接近所述限位件(17)的端面上,所述第四润滑凹部(32)设置在所述限位件(17)接近所述第二旋转件(16)的端面上,在相邻的两所述显示器(50)完全展开的情况下,所述第三润滑凹部(31)与所述第四润滑凹部(32)相对应;
    所述第一润滑凹部(21)、所述第二润滑凹部(22)、所述第三润滑凹部(31)及所述第四润滑凹部(32)均用于容纳润滑油。
  9. 根据权利要求8所述的多屏显示器支架,其特征在于,所述第一润滑凹部(21)、所述第二润滑凹部(22)、所述第三润滑凹部(31)及所述第四润滑凹部(32)均为多个,多个所述第一润滑凹部(21)、多个所述第二润滑凹部(22)、多个所述第三润滑凹部(31)及多个所述第四润滑凹部(32)均沿所述转轴(11)的圆周方向间隔设置。
  10. 根据权利要求1至9中任意一项所述的多屏显示器支架,其特征在于,所述支架主体(41)包括底座(411)、第一支撑件(412)及第二支撑件(413),所述安装组件(42)包括第三支撑件(421)及安装件(422),所述第一支撑件(412)枢接在所述底座(411)上,所述第一支撑件(412)与所述底座(411)的枢接轴竖直设置,多个所述显示器(50)能够沿所述第一支撑件(412)与所述底座(411)的枢接轴的轴线进行旋转;
    所述第二支撑件(413)可移动的设置在所述第一支撑件(412)上,多个所述显示器(50)能够沿所述第一支撑件(412)的长度方向进行高度调节;
    所述第三支撑件(421)的第一端枢接在所述第二支撑件(413)上,所述第三支撑件(421)与所述第二支撑件(413)的枢接轴与所述转轴部(10)的轴线平行,多个所述显示器(50)能够沿所述第三支撑件(421)与所述第二支撑件(413)的枢接轴的轴线进行旋转;
    所述第三支撑件(421)的第二端枢接在所述安装件(422)上,所述第三支撑件(421)与所述安装件(422)的枢接轴水平设置,并与所述第三支撑件(421)与所述第二支撑件(413)的枢接轴垂直,多个所述显示器(50)能够沿所述第三支撑件(421)与所述安装件(422)的枢接轴的轴线进行旋转;
    所述安装件(422)与多个所述显示器(50)中的一者固定连接。
PCT/CN2022/128048 2022-10-27 2022-10-27 多屏显示器支架 WO2024087115A1 (zh)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2022/128048 WO2024087115A1 (zh) 2022-10-27 2022-10-27 多屏显示器支架

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2022/128048 WO2024087115A1 (zh) 2022-10-27 2022-10-27 多屏显示器支架

Publications (1)

Publication Number Publication Date
WO2024087115A1 true WO2024087115A1 (zh) 2024-05-02

Family

ID=90829693

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2022/128048 WO2024087115A1 (zh) 2022-10-27 2022-10-27 多屏显示器支架

Country Status (1)

Country Link
WO (1) WO2024087115A1 (zh)

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040011938A1 (en) * 2002-04-24 2004-01-22 Innovative Office Products, Inc. Multiple electronic device reorienting support
US20060232496A1 (en) * 2002-02-26 2006-10-19 Norikazu Sato Multi display device
CN203573300U (zh) * 2013-09-17 2014-04-30 丁乙 一种多屏一体式显示器
CN104968986A (zh) * 2013-01-21 2015-10-07 U-See2有限公司 双显示组件
CN112377763A (zh) * 2020-12-31 2021-02-19 滨州学院 一种数字媒体艺术教学用展示装置
CN214093646U (zh) * 2019-11-07 2021-08-31 信锦企业股份有限公司 支撑架
CN114857426A (zh) * 2022-04-15 2022-08-05 山东劳动职业技术学院(山东劳动技师学院) 一种计算机多屏连接装置

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060232496A1 (en) * 2002-02-26 2006-10-19 Norikazu Sato Multi display device
US20040011938A1 (en) * 2002-04-24 2004-01-22 Innovative Office Products, Inc. Multiple electronic device reorienting support
CN104968986A (zh) * 2013-01-21 2015-10-07 U-See2有限公司 双显示组件
CN203573300U (zh) * 2013-09-17 2014-04-30 丁乙 一种多屏一体式显示器
CN214093646U (zh) * 2019-11-07 2021-08-31 信锦企业股份有限公司 支撑架
CN112377763A (zh) * 2020-12-31 2021-02-19 滨州学院 一种数字媒体艺术教学用展示装置
CN114857426A (zh) * 2022-04-15 2022-08-05 山东劳动职业技术学院(山东劳动技师学院) 一种计算机多屏连接装置

Similar Documents

Publication Publication Date Title
EP2045689B1 (en) Supporting device and dual display unit having the same
CN102017611B (zh) 平板显示器安装架
US7641163B2 (en) Tilt mounting system
US7623342B2 (en) Support structure for two or more flat panel display devices
US8348206B2 (en) Electronic device
US11215315B2 (en) Display mounting device
US20110121151A1 (en) Display mount
US7712187B2 (en) Hinge assembly and display monitor with the same
KR100765242B1 (ko) 평판형 tv용 벽걸이식 거치대
KR20030058204A (ko) 2절 힌지구조를 갖는 평판형 모니터의 받침대 어셈블리
WO2024087115A1 (zh) 多屏显示器支架
US8593797B2 (en) Display device
TW200539073A (en) Torque-controlled rotational module
KR20030046900A (ko) Lcd 모니터 각도조절장치
CN218895209U (zh) 多屏显示器支架
CN209782100U (zh) 一种显示屏安装座及多屏支撑架
CN102022606B (zh) 结合不同形式转轴的屏幕定位机构与显示装置
KR200304300Y1 (ko) 디스플레이 장치용 벽걸이 장치
KR20070077847A (ko) 모니터 및 모니터 제어방법
CN220627324U (zh) 显示装置
CN213576337U (zh) 便于调节角度的显示器支架
KR100838591B1 (ko) 디스플레이 회동장치
CN2735725Y (zh) 调整倾角的结构
KR100802544B1 (ko) 회전 가능한 스탠드장치
TWI386583B (zh) 支撐機構及採用該支撐機構之升降機構