WO2023137901A1 - 一种显示装置 - Google Patents

一种显示装置 Download PDF

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Publication number
WO2023137901A1
WO2023137901A1 PCT/CN2022/089809 CN2022089809W WO2023137901A1 WO 2023137901 A1 WO2023137901 A1 WO 2023137901A1 CN 2022089809 W CN2022089809 W CN 2022089809W WO 2023137901 A1 WO2023137901 A1 WO 2023137901A1
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WO
WIPO (PCT)
Prior art keywords
fixed
display device
splicing
buoys
integrated system
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PCT/CN2022/089809
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English (en)
French (fr)
Inventor
张佳
胡炳坤
刘虎军
Original Assignee
深圳市联建光电有限公司
深圳市联建光电股份有限公司
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Application filed by 深圳市联建光电有限公司, 深圳市联建光电股份有限公司 filed Critical 深圳市联建光电有限公司
Publication of WO2023137901A1 publication Critical patent/WO2023137901A1/zh

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    • 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
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B35/00Vessels or similar floating structures specially adapted for specific purposes and not otherwise provided for

Definitions

  • the present application relates to the technical field of LED display screens, in particular to a display device.
  • the outdoor display adopts super grayscale control technology, modular structure design and VLSI design technology, which greatly improves the stability, reliability and playback effect of the display system.
  • the existing large outdoor screens are usually fixed on the load-bearing wall through a steel structure to realize the installation of the large outdoor screen.
  • the existing large outdoor screens are usually fixed on the load-bearing wall through a steel structure to realize the installation of the large outdoor screen.
  • An embodiment of the present application provides a display device for floating on water, including:
  • the floating mechanism is composed of a plurality of buoys spliced together, along the vertical direction, the upper surface of the buoys is provided with positioning columns;
  • a support mechanism including a stand fixed on the floating mechanism and a slant frame, the slant frame has a first end and a second end oppositely arranged, and the first end is fixed on the stand;
  • the unloading part includes a splicing part and a unloading part arranged on the splicing part.
  • the two buoys can be inserted into and fixed on the splicing part.
  • the unloading part is provided with a positioning groove corresponding to the positioning column, and the unloading part is provided with a placement groove which is vertical and communicated with the positioning groove.
  • the unloading part is attached to the upper surface of the two buoys, and the second end part is fixed on the unloading part;
  • a limiting component one end is rotatably arranged in the placement groove, and the other end extends into the positioning groove, so as to fix or loosen the positioning column in the positioning groove;
  • the integrated system is fixed on the stand.
  • the limit assembly includes a rotating member, a reset member and a stopper
  • the rotating member is rotatably arranged in the placement groove along the vertical direction, and one end of the rotating member protrudes from the splicing portion;
  • the reset member is sleeved on the rotating member, and one end of the reset member is held against the end wall of the splicing part, so as to drive the rotating member to reset after the rotating member rotates;
  • One end of the stopper is fixed on the rotating member, and the other end extends into the positioning groove for fixing or releasing the positioning column in the positioning groove.
  • the splicing portion includes a first surface and a second surface oppositely disposed
  • One of the buoys may be fixed on the first face and the other buoy may be fixed on the second face.
  • the splicing part is provided with a connecting hole penetrating through the first surface and the second surface;
  • One buoy can extend out of the connection hole and be spliced on the other buoy.
  • a plurality of the supporting mechanisms are arranged around the floating mechanism
  • Each of the integrated systems is fixed on one of the supporting mechanisms, so that multiple integrated systems are surrounded to form a ring.
  • the four supporting mechanisms are arranged in a ring
  • the four integrated systems are respectively fixed on the four supporting mechanisms, and every two adjacent integrated systems are perpendicular to each other.
  • the integrated system includes a plurality of first display units
  • a plurality of the first display units are spliced with each other to form the plate-shaped integrated system.
  • the integrated system further includes a second display unit
  • the second display unit includes a first splicing portion, a corner portion and a second splicing portion arranged in sequence;
  • the first splicing part is fixed on the first display unit of one of the integrated systems, and the second splicing part is fixed on the first display unit of the other integrated system.
  • the display device further includes a counterweight
  • the counterweight is arranged on the bottom surface of the floating mechanism for lowering the center of gravity of the display device.
  • the display device further includes a plurality of fixing parts
  • One end of the plurality of fixing parts is fixed on the support mechanism, and the other end is fixed on the dock, so as to limit the position of the integrated system.
  • two adjacent buoys are fixed on the splicing part to form a floating mechanism, and the second end is fixed on the unloading part, so that when the supporting mechanism and the integrated system press the second end, the second end can transmit the force to the unloading part, and the unloading part distributes the force to the upper surface of the two adjacent buoys, thereby preventing buoy damage caused by excessive local force on the buoy.
  • the positioning component is set to fix or loosen the positioning column in the positioning groove, so as to realize the installation and disassembly of a single buoy and the force relief member, so that when a single buoy is punctured or damaged, it is convenient to disassemble and replace a single buoy, thereby prolonging the service life of the buoy mechanism.
  • the floating mechanism of the present application is formed by splicing multiple buoys so that the display device floats on the water surface, and when one or more buoys are damaged, the stability of the overall floating mechanism will not be affected.
  • a second display unit is provided at the corner of the two first display units to achieve a smooth transition, so as to prevent the problem of frame drop in the integrated system at the corner.
  • FIG. 1 is a top view of a display device in an embodiment of the present application.
  • Fig. 2 is a front view of the floating mechanism, supporting mechanism, integrated system and counterweight shown in Fig. 1 .
  • Fig. 3 is a cross-sectional exploded view of the force unloading member and two buoys shown in Fig. 1 .
  • Fig. 4 is a three-dimensional structural schematic view of the buoy and the force unloading member shown in Fig. 3 .
  • FIG. 5 is a schematic perspective view of the three-dimensional structure of the limiting assembly shown in FIG. 4 .
  • Fig. 6 is a sectional view along the direction AA of Fig. 2 .
  • Fig. 7 is a cross-sectional view along the direction BB of Fig. 2 .
  • 100 display device; 10, floating mechanism; 11, buoy; 111, buckle; 111a, fixing hole; 112, positioning column; 20, support mechanism; 21, vertical frame; 22, inclined frame; 221, first end; 222, second end; Positioning groove; 32b, placing groove; 33, limit component; 331, rotating member; 332, reset member; 333, stopper; 40, integrated system; 41, first display unit; 42, second display unit; 421, first splicing part; 422, corner part; 423, second splicing part; 50, counterweight part; 60, fixing part.
  • An embodiment of the present application provides a display device for floating on water, including:
  • the floating mechanism is composed of a plurality of buoys spliced together, along the vertical direction, the upper surface of the buoys is provided with positioning columns;
  • the support mechanism includes a stand and a slant frame fixed on the floating mechanism, the slant frame has a first end and a second end oppositely arranged, and the first end is fixed on the stand;
  • the unloading member includes a splicing part and a unloading part provided on the splicing part, the two buoys can be inserted into and fixed on the splicing part, the unloading part is provided with a positioning groove corresponding to the positioning column, and the unloading part is provided with a vertical placement groove connected with the positioning groove, the unloading part is attached to the upper surface of the two buoys, and the second end is fixed on the unloading part;
  • a limiting component one end is rotatably arranged in the placement groove, and the other end extends into the positioning groove, so as to fix or loosen the positioning column in the positioning groove;
  • the integrated system is fixed on the stand.
  • two adjacent buoys are fixed on the splicing part to form a floating mechanism, and the second end is fixed on the unloading part, so that when the support mechanism and the integrated system press the second end, the second end can transmit the force to the unloading part, and the unloading part distributes the force to the upper surface of the two adjacent buoys, thereby preventing the damage of the buoy due to excessive local force on the buoy.
  • the present application provides a display device 100 for floating on water.
  • the display device 100 includes a floating mechanism 10 , a supporting mechanism 20 and an integrated system 40 .
  • the floating mechanism 10 is used to float on the water surface
  • the supporting mechanism 20 is fixed on the floating mechanism 10
  • the integrated system 40 is fixed on the supporting mechanism 20, so that when the above-mentioned display device 100 is displaying, interacting or advertising, the display device 100 can float on the water surface through the floating mechanism 10, avoiding the problem that the integrated system 40 can only be fixed on the load-bearing wall of the building, increasing the applicability of the integrated system 40 and changing the traditional right-angle naked-eye 3D screen into a square and four-sided naked-eye 3D large screen. From 90 degrees to 360 degrees, a new application scenario is directly expanded.
  • the floating venues of the display device 100 include but are not limited to the sea surface, lake surface and river surface, etc., and can also float in swimming pools in amusement parks and sightseeing lakes in city centers, and the size of the display device 100 corresponds to the floating venues, that is, the display device 100 can be adjusted in size according to the size of the floating venues, so as to adapt to different venues. At the same time, it can also carry out human-computer interaction, so that the crowd can have an immersive experience.
  • the floating mechanism 10 is formed by splicing a plurality of buoys 11 .
  • a plurality of buoys 11 are spliced to form a flat plate-shaped buoy, so as to facilitate the installation of the support mechanism 20.
  • a plurality of buoys 11 can also be spliced into a ship-like structure with both ends tilted.
  • each buoy 11 is provided with buckles 111 with a height difference, and fixing holes 111a are provided on the buckles 111, so that when two buoys 11 are spliced together, the two buoys 11 can be fixed by passing through the fixing holes 111a on the two buckles 111 through studs.
  • the fixing holes 111a are provided on the buckles 111, so that when two buoys 11 are spliced together, the two buoys 11 can be fixed by passing through the fixing holes 111a on the two buckles 111 through studs.
  • the height of the buckle 111 on the left side of the buoy 11 is lower than the buckle 111 on the right side of the buoy 11, so that when the buckles 111 on the two buoys 11 are fixed together, the two buoys 11 are located on the same level, preventing unevenness after the assembly of multiple buoys 11 and affecting the operation of the operator on the floating mechanism 10, reducing the difficulty of the operator's work on the water, and improving the operating efficiency.
  • the upper surface of the buoy 11 is provided with a positioning post 112
  • the unloading portion 32 is provided with a positioning groove 32 a corresponding to the positioning post 112 .
  • the positioning column 112 can be fixed in the positioning groove 32a, or pulled out from the positioning groove 32a, so as to realize the installation and disassembly of the single buoy 11 and the force relief part 32, so that when the single buoy 11 is punctured or damaged, cooperate with the buckle 111 to realize the replacement of the buoy 11, thereby prolonging the service life of the floating mechanism 10.
  • the unloading portion 32 is provided with a placement groove 32b perpendicular to the positioning groove 32a and communicated with each other, and the force unloading member 30 further includes a limiting assembly 33 disposed in the placement groove 32b.
  • the limiting component 33 is rotatably disposed in the placing groove 32b, and the other end extends into the positioning groove 32a.
  • the positioning post 112 can push the limit assembly 33 to rotate so as to lock the positioning post 112 in the positioning slot 32a.
  • the limit assembly 33 can be unlocked and the limit assembly 33 can be pushed out, thereby realizing the separation of the positioning column 112 from the positioning groove 32a, thereby realizing the installation and disassembly of the buoy 11 on the force unloading member 30.
  • the limiting component 33 includes a rotating member 331 , a restoring member 332 and a stopper 333 .
  • the rotating member 331 is rotatably disposed in the placement slot 32b along the vertical direction.
  • the reset member 332 is sheathed on the rotating member 331 , and one end of the reset member 332 abuts against the end wall of the splicing portion 31 for driving the rotating member 331 to reset after the rotating member 331 rotates.
  • One end of the stopper 333 is fixed on the rotating member 331 , and the other end extends into the positioning groove 32 a for fixing or releasing the positioning post 112 in the positioning groove 32 a. Wherein, when the rotating member 331 rotates in the placement groove 32b, it can drive the stopper 333 to rotate in the positioning groove 32a.
  • the length of the positioning slot 32 a is greater than the sum of the length of the stopper 333 located in the positioning slot 32 a and the diameter of the positioning post 112 .
  • one end of the rotating member 331 protrudes from the splicing portion 31, so that when the buoy 11 and the force unloading member 30 need to be disassembled, the rotating member 331 can extend out of the splicing portion 31 by rotating the rotating member 331, thereby driving the part of the rotating member 331 located in the placement groove 32b to rotate, thereby facilitating the disassembly of the buoy 11 and the force unloading member 30.
  • the rotating member is a cylindrical structure.
  • the reset member is a torsion spring.
  • the stopper is a cylindrical structure.
  • the floating mechanism 10 Since the supporting mechanism 20 and the integrated system 40 are heavy, in order to prevent the entire display device 100 from sinking due to its gravity when the supporting mechanism 20 and the integrated system 40 are fixed on the floating mechanism 10 .
  • the floating mechanism 10 When the floating mechanism 10 is spliced, it will first calculate the weight of the integrated system 40 and the supporting mechanism 20, and reserve the weight of the operator, and combine the above weights to obtain the required buoyancy of the floating mechanism 10. Since the buoyancy that can be generated by a single buoy 11 is constant, the floating mechanism 10 can bear the weight of the supporting mechanism 20, the integrated system 40 and the operator without sinking by controlling the number of buoys 11.
  • the buoyancy generated by the floating mechanism 10 is greater than or equal to the gravity of the integrated system 40 and the support mechanism 20 .
  • the supporting mechanism 20 includes a stand 21 and an inclined frame 22 fixed on the floating mechanism 10 , and the integrated system 40 is fixed on the stand 21 .
  • the oblique rack 22 has the first part of the first part 221 and the second part 222. Among them, the first end of the part 221 is fixed on the stand 21, and the second end 222 is fixed on the floating mechanism 10 to form a slope support.
  • the wind shock display device 100 and the stand 21 can provide a slope support for the support mechanism 20 and integrated integrated integration and integrated integration.
  • the stability of the system 40 is to prevent the problem of the display device 100 when the wind is too large.
  • the inclined frame 22 is composed of a plurality of steel pipes and steel structural parts. Therefore, a sharp corner will be formed at the second end 222 of the inclined frame 22, and the sharp corner is fixed on the hollow buoy 11. When the wind impacts the integrated system 40 or the supporting mechanism 20 for a long time, the sharp corner on the inclined frame 22 will puncture the hollow buoy 11.
  • the stand 21 is spliced by a plurality of steel pipes and steel structural parts, and forms a rectangular surface structure at its bottom, so that when the bottom of the stand 21 contacts the buoy 11, no point pressure will be generated on the buoy 11, thereby avoiding the problem that the stand 21 will puncture the buoy 11.
  • a platform (not shown) for manual work and a channel (not shown) for laying pipelines and pipelines are provided on the stand 21, so that when the integrated system 40 or the stand 21 fails, it is convenient for the operator to carry out maintenance on the platform, and it is convenient to connect with the photoelectric integration and control device through the line to realize the release of impact.
  • the display device 100 further includes a force relief member 30 , and the force relief member 30 includes a joint portion 31 and a force relief portion 32 disposed on the joint portion 31 .
  • the two buoys 11 can be inserted into and fixed on the splicing part 31.
  • the two ends of the unloading part 32 are attached to the upper surfaces of the two buoys 11 respectively, and the second end 222 is fixed on the unloading part 32 so that when the wind impacts the integrated system 40 or the support mechanism 20 and transmits the force to the sharp corner position on the inclined frame 22, the sharp corner of the inclined frame 22 transmits the force to the unloading part 32, and the unloading part 32 transmits the force to the upper surfaces of the two buoys 11, thereby The force is converted into a surface force, which increases the force-bearing area, thereby preventing the buoy 11 from being punctured due to excessive force on the inclined frame 22, and increasing the service life of the buoy 11.
  • the force relief portion 32 is a planar steel plate structure.
  • the length of the unloading portion 32 extending to both sides along the splicing portion 31 is the same, so that the area of the unloading portion 32 attached to the two adjacent buoys 11 is equal, so that when the wind impacts the integrated system 40 and the support mechanism 20, the unloading portion 32 distributes the force equally to the two adjacent buoys 11, thereby preventing the problem of damage to a single buoy 11 caused by long-term pressure on one buoy 11, and further prolonging the service life of the display device 100.
  • the length of the unloading portion 32 extending to both sides along the splicing portion 31 can also be inconsistent. According to the specific wind direction, the unloading portion 32 can have a larger area on the buoy 11 in the downwind direction, thereby reducing the pressure per unit area on the buoy 11 on the downwind, thereby prolonging the service life of the buoy 11.
  • the splicing portion 31 includes a first surface 31A and a second surface 31B oppositely disposed.
  • One buoy 11 is detachably arranged on the first surface 31A, and the other buoy 11 is detachably arranged on the second surface 31B, so as to realize splicing of two adjacent buoys 11 . Further, by dismounting the buoys 11 on the first surface 31A and the second surface 31B, when one or several buoys 11 are damaged, it is convenient to remove the damaged buoys 11 and replace them with new buoys 11, thereby prolonging the service life of the floating mechanism 10.
  • the existing floating mechanism 10 usually adopts rows of buoys 11 and connects the rows of buoys 11 to support the integrated system 40 . Therefore, when a row of buoys 11 is damaged, the floating mechanism 10 will tilt to the damaged side.
  • the above solution forms floating mechanisms 10 in rows and columns by splicing a plurality of buoys 11, so that when one or more buoys 11 on the floating mechanism 10 is damaged, the floating mechanism 10 can float on the water surface, thereby increasing its stability.
  • the splicing part 31 is provided with a connection hole 31C that runs through the first surface 31A and the second surface 31B, and the buckle 111 on one buoy 11 can extend out of the connection hole 31C and connect with the buckle 111 on the other buoy 11 to realize the splicing of the two buoys 11 .
  • the connection hole 31C is a rectangular hole, and along the vertical direction, the width of the connection hole 31C is equal to the sum of the widths of the two buckles 111 , so that two dislocated buckles 111 can pass through the connection hole 31C at the same time for splicing.
  • the fixing hole 111a on the buckle 111 on the left side of the buoy 11 and the fixing hole 111a on the buckle 111 on the right side are all set to the left, so that when the two buckles 111 extend out of the connecting hole 31C at the same time, the overlapping fixing hole 111a of the two buckles 111 is located on the left side of the splicing part 31, thereby avoiding the problem that the overlapping fixing hole 111a interferes with the splicing part 31 and cannot be installed. It can be understood that the deflection of the fixing hole 111a on the buckle 111 is not limited thereto.
  • the fixing hole 111a on the buckle 111 on the left side of the buoy 11 and the fixing hole 111a on the buckle 111 on the right side can also be set to the right, so that the fixing hole 111a where the two buckles 111 overlap is located on the right side of the splicing part 31.
  • the display device 100 also includes a fixing member (not shown in the figure), so that when the two buoys 11 are spliced, the fixing member can be inserted into and fixed in the fixing holes 111a on the two buoys 11, so as to realize the fixing of the two buoys 11, and the separation of the two buoys 11 can be realized by pulling the fixing member away from the above-mentioned fixing hole 111a. A detachable connection of the buoy 11 is thereby achieved.
  • the above-mentioned fixing member is a stud.
  • Fig. 1 and Fig. 7 there are multiple supporting mechanisms 20 and integrated systems 40, and multiple supporting mechanisms 20 are arranged around the floating mechanism 10, and each integrated system 40 is fixed on a supporting mechanism 20, so that the multiple integrated systems 40 surround into a ring, so that the display area of a single integrated system 40 facing a certain direction is switched to the display area of a plurality of ring-shaped integrated systems 40, so that the viewing angle of the integrated system 40 is expanded from 90° to 360°, and the viewing range of the integrated system 40 is increased. All people can watch the image information on the integrated system 40, thereby expanding the scope of advertisement placement, avoiding the cumbersome operation of setting up multiple display devices to advertise to people in different regions, and reducing costs.
  • the four supporting mechanisms 20 are arranged in a ring, and the four integrated systems 40 are respectively fixed on the four supporting mechanisms 20, and every two adjacent integrated systems 40 are perpendicular to each other, so that when the four integrated systems 40 are subjected to wind, the pressure on the four surfaces can cancel each other out, thereby preventing the display device 100 from shifting due to a large one-way force, and preventing the display device 100 from being blown away from its original position by the influence of the wind when the display device 100 is used in windy weather, resulting in difficulty in equipment recovery.
  • the number of support mechanisms 20 and integrated systems 40 is not limited thereto, as in another embodiment, the number of support mechanisms 20 and integrated systems 40 may also be two or three. Two integrated systems 40 are arranged facing each other, and three integrated systems 40 are arranged in a triangle, so as to realize the setting of omnidirectional viewing angles.
  • the integrated system 40 includes a plurality of first display units 41 , and the plurality of first display units 41 are spliced together to form a plate-shaped integrated system 40 .
  • a plurality of the above-mentioned integrated systems 40 are spliced together to form an all-round display.
  • the first display unit 41 is an LED display module.
  • the integrated system 40 further includes a second display unit 42 .
  • the second display unit 42 is arranged at the corner, and is used to connect two first display units 41 with different angles, so as to avoid the problem of frame drop in the integrated system 40 at the corner.
  • the second display unit 42 includes a first splicing portion 421 , a corner portion 422 and a second splicing portion 423 arranged in sequence.
  • the first splicing part 421 is fixed on the first display unit 41 of one integrated system 40
  • the second splicing part 423 is fixed on the first display unit 41 of another integrated system 40, so as to form a screen display structure with smooth transition.
  • first splicing part 421 , the corner part 422 and the second splicing part 423 are all LED display modules, so image information can be normally displayed everywhere in the spliced integrated system 40 .
  • corner portion 422 is arc-shaped, so that the spliced integrated system 40 transitions smoothly at the corner, and there is a vertical frame line at the corner portion 422, thereby avoiding the problem of frame drop.
  • the integrated system 40 is a 3D large screen.
  • the display device 100 also includes a counterweight 50.
  • the counterweight 50 is arranged on the bottom surface of the floating mechanism 10 to lower the center of gravity of the display device 100 as a whole and to stabilize the chassis of the display device 100, thereby effectively preventing the display device 100 from being blown and turned over in windy weather.
  • the material of the counterweight 50 is tungsten alloy, but it is obviously not limited thereto.
  • the counterweight 50 can also be other objects such as iron blocks.
  • the display device 100 also includes a plurality of fixing parts 60, one end of the plurality of fixing parts 60 is fixed on the supporting mechanism 20, and the other end is fixed on the wharf, so that when the display device 100 needs to be fixed somewhere, the display device 100 can be fixed using the plurality of fixing parts 60.
  • a plurality of fixing pieces 60 are evenly fixed on the side body of the support mechanism 20, so as to fix the support mechanism 20 from multiple different ranges, so as to achieve the effect of position limitation.
  • the fixing member 60 is an iron chain, but it is obviously not limited thereto.
  • the fixing member 60 can also be other structures or devices capable of fixing the supporting mechanism 20 .
  • the display device 100 formed the floating mechanism 10 by fixing two adjacent buoys 11 on the splicing part 31, and fixes the second end 222 on the unloading part 32, so that when the supporting mechanism 20 and the integrated system 40 press the second end 222, the second end 222 can transmit the force to the unloading part 32, and the unloading part 32 distributes the force evenly to the upper surface of the two adjacent buoys 11, thereby preventing the buoys 11 from being partially stressed The buoy 11 damage problem that occurs greatly.

Abstract

本申请提供了一种显示装置,用于漂浮于水面上,包括,浮动机构,包括多个浮筒拼接而成,沿竖直方向,浮筒上表面设有定位柱;支撑机构,包括固定于浮动机构上的立架和斜架,斜架具有相对设置的第一端部和第二端部,第一端部固定于立架上;卸力件,包括拼接部和设于拼接部上的卸力部,两个浮筒可伸入并固定于拼接部上,卸力部开设有与定位柱相对应的定位槽,且卸力部开设有垂直并与定位槽连通的放置槽,卸力部贴合于两个浮筒上表面,第二端部固定于卸力部上;限位组件,一端可转动地设于放置槽内,另一端伸入定位槽内,以将定位柱固定或松开于定位槽内;集成系统,固定于立架上。

Description

一种显示装置 【技术领域】
本申请涉及LED显示屏技术领域,尤其涉及一种显示装置。
【背景技术】
户外显示屏是采用超级灰度控制技术,模块化结构设计和超大规模集成电路设计技术,极大地提高了显示屏系统的稳定性,可靠性及播放效果。
随着科技的进步,户外大屏逐渐进入人们的视线。尤其是当前最为火爆的裸眼3D大屏,屏体面积大,在广场或商场等场地使用时,能极大的吸引人的眼球,从而达到广告招商以及作为地标来提升城市的形象。
而现有的户外大屏通常都是通过钢结构固定于承重墙上,以实现户外大屏的安装,当需要在海面或其他水面上进行宣传时,通过钢结构将大屏安装于浮漂上时,由于钢结构以及大屏的重量,会压迫钢结构上的尖角部位,从而会出现钢结构将浮漂扎穿或扎坏的问题。
【发明内容】
有鉴于此,有必要提供一种能防止钢结构将浮漂扎穿的显示装置,以解决上述问题。
本申请的实施例提供一种显示装置,用于漂浮于水面上,包括,
浮动机构,包括多个浮筒拼接而成,沿竖直方向,所述浮筒上表面设有定位柱;
支撑机构,包括固定于所述浮动机构上的立架和斜架,所述斜架具有相对设置的第一端部和第二端部,所述第一端部固定于所述立架上;
卸力件,包括拼接部和设于所述拼接部上的卸力部,两个所述浮筒可伸入并固定于所述拼接部上,所述卸力部开设有与所述定位柱相对应的定 位槽,且所述卸力部开设有垂直并与所述定位槽连通的放置槽,所述卸力部贴合于两个所述浮筒上表面,所述第二端部固定于所述卸力部上;
限位组件,一端可转动地设于所述放置槽内,另一端伸入所述定位槽内,以将所述定位柱固定或松开于所述定位槽内;
集成系统,固定于所述立架上。
在本申请的至少一个实施例中,所述限位组件包括转动件、复位件及止挡件;
所述转动件沿竖直方向可转动地设于所述放置槽内,且所述转动件一端伸出所述拼接部设置;
所述复位件套设于所述转动件上,且所述复位件一端抵持于所述拼接部端壁上,以在所述转动件转动后,带动所述转动件复位;
所述止挡件一端固定于所述转动件上,另一端伸入所述定位槽内,用于将定位柱固定或松开于所述定位槽内。
在本申请的至少一个实施例中,所述拼接部包括相对设置的第一面和第二面;
一个所述浮筒可固定于所述第一面上,另一个所述浮筒可固定于所述第二面上。
在本申请的至少一个实施例中,所述拼接部开设有贯穿所述第一面和所述第二面的连接孔;
一个所述浮筒可伸出所述连接孔并拼接于另一个所述浮筒上。
在本申请的至少一个实施例中,所述支撑机构和所述集成系统均有多个;
多个所述支撑机构环绕设于所述浮动机构上;
每一所述集成系统固定于一个所述支撑机构上,以使多个所述集成系统围绕成环状。
在本申请的至少一个实施例中,所述支撑机构和所述集成系统均有四个;
四个所述支撑机构环形设置;
四个所述集成系统分别固定于四个所述支撑机构上,且每两相邻的所述集成系统相互垂直。
在本申请的至少一个实施例中,所述集成系统包括多个第一显示单元;
多个所述第一显示单元相互拼接,以形成平板状的所述集成系统。
在本申请的至少一个实施例中,所述集成系统还包括第二显示单元;
所述第二显示单元包括依次设置的第一拼接部、转角部和第二拼接部;
所述第一拼接部固定于一个所述集成系统的所述第一显示单元上,所述第二拼接部固定于另一个所述集成系统的所述第一显示单元上。
在本申请的至少一个实施例中,所述显示装置还包括配重件;
所述配重件设于所述浮动机构下底面,用于降低所述显示装置的重心。
在本申请的至少一个实施例中,所述显示装置还包括多个固定件;
多个所述固定件一端固定于所述支撑机构上,另一端固定于码头上,以限制所述集成系统的位置。
有益效果:
1、本申请通过将两个相邻的浮筒固定于拼接部上,以形成浮动机构,并使第二端部固定于卸力部上,以在支撑机构及集成系统压迫第二端部时,第二端部能将力传递至卸力部上,卸力部将力分均至两个相邻的浮筒的上表面,从而防止因浮筒局部受力过大而出现的浮筒损坏问题。
2、本申请通过设置限位组件,以将定位柱固定或松开于定位槽内,从而实现单个浮筒与卸力件的安拆,以在单个浮筒被扎破或者损坏时,方便将单个浮筒拆卸以更换,从而延长了浮筒机构的使用寿命。
3、本申请的浮动机构通过将多个浮筒拼接而成,以使显示装置浮于水面上,且单个或多个浮筒损坏时,不影响整体浮动机构的稳定性。
4、本申请通过在两个第一显示单元的转角处设置第二显示单元,以平稳过渡,以防止集成系统在转角处出现掉帧的问题。
【附图说明】
图1为本申请一实施例中显示装置的俯视图。
图2为图1所示的浮动机构、支撑机构、集成系统及配重件的正视图。
图3为图1所示的卸力件与两个浮筒的剖视分解图。
图4为图3所示的浮筒与卸力件的立体结构示意图。
图5为图4所示的限位组件的立体结构示意图。
图6为图2沿A-A方向的剖视图。
图7为图2沿B-B方向的剖视图。
【主要元件符号说明】
100、显示装置;10、浮动机构;11、浮筒;111、卡扣;111a、固定孔;112、定位柱;20、支撑机构;21、立架;22、斜架;221、第一端部;222、第二端部;30、卸力件;31、拼接部;31A、第一面;31B、第二面;31C、连接孔;32、卸力部;32a、定位槽;32b、放置槽;33、限位组件;331、转动件;332、复位件;333、止挡件;40、集成系统;41、第一显示单元;42、第二显示单元;421、第一拼接部;422、转角部;423、第二拼接部;50、配重件;60、固定件。
【具体实施方式】
下面将结合本申请实施例中的附图,对本申请实施例进行描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。
需要说明的是,当一个组件被认为是“连接”另一个组件,它可以是直接连接到另一个组件或者可能同时存在居中组件。当一个组件被认为是“设于”另一个组件,它可以是直接设置在另一个组件上或者可能同时存在居中组件。本文所使用的术语“顶”、“底”、“上”、“下”、“左”、“右”、“前”、“后”、以及类似的表述只是为了说明的目的。
本申请的实施例提供一种显示装置,用于漂浮于水面上,包括,
浮动机构,包括多个浮筒拼接而成,沿竖直方向,所述浮筒上表面设有定位柱;
支撑机构,包括固定于所述浮动机构上的立架和斜架,所述斜架具有 相对设置的第一端部和第二端部,所述第一端部固定于所述立架上;
卸力件,包括拼接部和设于所述拼接部上的卸力部,两个所述浮筒可伸入并固定于所述拼接部上,所述卸力部开设有与所述定位柱相对应的定位槽,且所述卸力部开设有垂直并与所述定位槽连通的放置槽,所述卸力部贴合于两个所述浮筒上表面,所述第二端部固定于所述卸力部上;
限位组件,一端可转动地设于所述放置槽内,另一端伸入所述定位槽内,以将所述定位柱固定或松开于所述定位槽内;
集成系统,固定于所述立架上。
上述提供的显示装置通过将两个相邻的浮筒固定于拼接部上,以形成浮动机构,并使第二端部固定于卸力部上,以在支撑机构及集成系统压迫第二端部时,第二端部能将力传递至卸力部上,卸力部将力分均至两个相邻的浮筒的上表面,从而防止因浮筒局部受力过大而出现的浮筒损坏问题。
下面结合附图,对本申请的一些实施例作详细说明。在不冲突的情况下,下述的实施例及实施例中的特征可以相互组合。
请参阅图1、图2和图3,本申请提供一种显示装置100,用于漂浮在水面上。显示装置100包括浮动机构10、支撑机构20和集成系统40。浮动机构10用于漂浮于水面上,支撑机构20固定于浮动机构10上,集成系统40固定于支撑机构20上,以在上述显示装置100在展示、互动或打广告时,显示装置100能通过浮动机构10漂浮于水面上,避免了只能将集成系统40固定于建筑承重墙的问题,增加了集成系统40的适用性并将传统的直角裸眼3D屏变为四方四面的裸眼3D大屏,使受众角度由90度变为360度,直接拓展出全新的应用场景。
需要说明的是,上述显示装置100漂浮的场地包括但不限于海面、湖面及河面等,还可漂浮于游乐园的游泳池及城市中心的观光湖等场地,且显示装置100的大小与漂浮的场地相对应,即显示装置100可根据漂浮场地的大小相应的调整大小,从而适应于不同的场地。同时还能进行人机互动,让人群能有沉浸式的体验。
浮动机构10包括多个浮筒11拼接而成。优选的,多个浮筒11拼接以 形成平板状的浮漂,以便于支撑机构20的安装。但显然并不限于此,如,多个浮筒11还可拼接成船板状两头翘起的结构均可。
进一步地,为了便于多个浮筒11的拼接,每一浮筒11的相对两端设有具有高度差的卡扣111,卡扣111上开设有固定孔111a,以在两个浮筒11拼接时,可以通过螺柱穿过两个卡扣111上的固定孔111a,以将两个浮筒11固定。优选的,如图3所示,位于浮筒11左侧的卡扣111的高度低于位于浮筒11右侧的卡扣111,以使得两个浮筒11上的卡扣111固定在一起时,两个浮筒11位于同一水平面上,防止多个浮筒11组装后出现高低不平而影响操作人员在浮动机构10上操作的问题,降低了操作人员在水上作业的难度,提高了操作效率。
请结合图4和图5,再进一步地,沿竖直方向,浮筒11的上表面设有定位柱112,卸力部32开设有与定位柱112相对应的定位槽32a。定位柱112可固定于定位槽32a内,或从定位槽32a内拔出,从而实现单个浮筒11与卸力部32的安拆,以在单个浮筒11被刺破或损坏时,配合卡扣111以实现浮筒11的更换,从而延长浮动机构10的使用寿命。
更近一步地,卸力部32上还开设有与定位槽32a垂直且相互连通的放置槽32b,卸力件30还包括设于放置槽32b内的限位组件33。其中,限位组件33一端可转动地设于放置槽32b内,另一端伸入定位槽32a内。以在定位柱112伸入定位槽32a过程中,定位柱112能推动限位组件33转动从而将定位柱112卡死在定位槽32a内。并在定位柱112退出定位槽32a时能解锁限位组件33并将限位组件33推出,从而实现定位柱112与定位槽32a的分离,从而实现浮筒11于卸力件30的安拆。
在一具体实施例中,限位组件33包括转动件331、复位件332及止挡件333。转动件331沿竖直方向可转动地设于放置槽32b内。复位件332套设于转动件331上,且复位件332一端抵持于拼接部31端壁上,用于在转动件331转动后带动转动件331复位。止挡件333一端固定于转动件331上,另一端伸入定位槽32a内,用于将定位柱112固定或松开于定位槽32a内。其中,转动件331在放置槽32b内转动时,能带动止挡件333在定位 槽32a内转动。
进一步地,定位槽32a的长度大于止挡件333位于定位槽32a内的长度与定位柱112的直径之和。以在需要将浮筒11与卸力件30拆分时,通过转动转动件331带动止挡件333在定位槽32a内转动时,防止止挡件333与定位柱112干涉而无法转动的问题。
更进一步地,转动件331一端伸出拼接部31设置,以在需要将浮筒11与卸力件30拆分时,能通过转动转动件331伸出拼接部31的部分,从而带动位于放置槽32b内的转动件331部分转动,从而便于浮筒11与卸力件30的拆卸。
优选的,转动件为圆柱体结构。
优选的,复位件为扭簧。
优选的,止挡件为圆柱体结构。
由于支撑机构20及集成系统40的重量较重,为了防止在支撑机构20及集成系统40固定于浮动机构10上时,由于其重力导致的整个显示装置100下沉的问题。浮动机构10在拼接时,首先会计算集成系统40、支撑机构20的重量,并预留操作人员的体重,将上述重量综合起来得出浮动机构10所需的浮力大小,并由于单个浮筒11能产生的浮力一定,通过控制浮筒11的数量以使得浮动机构10能承受支撑机构20、集成系统40及操作人员的重量而不会下沉。优选的,浮动机构10产生的浮力大于或等于集成系统40、支撑机构20重力。
请结合图6,支撑机构20包括固定于浮动机构10上的立架21和斜架22,集成系统40固定于立架21上。斜架22具有相对设置的第一端部221和第二端部222,其中,第一端部221固定于立架21上,第二端部222固定于浮动机构10上,以形成斜向的支撑,以在风冲击显示装置100及立架21时,斜架22能提供一个斜向的支撑力,从而保证支撑机构20及集成系统40的稳定性,以防在风过大时,导致显示装置100侧翻的问题。
需要说明的是,斜架22均由多个钢管以及钢结构件拼合而成,因此,在斜架22上的第二端部222处会形成尖角,尖角固定于空心浮筒11上, 当风长期冲击集成系统40或支撑机构20会导致斜架22上的尖角刺破空心浮筒11的问题。
进一步地,立架21由多个钢管以及钢结构件拼接而成,并在其底端形成一个矩形面结构,以使立架21底端与浮筒11接触时,不会对浮筒11产生点部的压力,从而避免立架21将浮筒11刺破的问题。
更进一步地,立架21上开设有用于人工作业的平台(图未示)及用于铺设线路管道的通道(图未示),以使集成系统40或立架21出现故障时,便于操作人员在平台上进行维修,并便于通过线路与光电集成与控制装置连接,以实现影响的投放。
为了解决尖角刺破浮筒11的问题,显示装置100还包括卸力件30,卸力件30包括拼接部31和设于拼接部31上的卸力部32。两个浮筒11可伸入并固定于拼接部31上,卸力部32两端分别贴合于两个浮筒11的上表面,第二端部222固定于卸力部32上,以在风冲击集成系统40或支撑机构20并将力传递至斜架22上的尖角位置处时,斜架22的尖角将力传递至卸力部32上,卸力部32将力传递至两个浮筒11的上表面,从而将点受力转换为面受力,增加了受力的面积,从而防止在斜架22处受力过大而导致的浮筒11被刺破的问题,增加了浮筒11的使用寿命。
进一步地,卸力部32为平面的钢板结构。优选的,卸力部32沿拼接部31向两侧延伸的长度一致,以使卸力部32贴合两个相邻的浮筒11的面积相等,从而在风冲击集成系统40及支撑机构20时,卸力部32将力均分至两个相邻的浮筒11上,从而防止长期将力压迫于一个浮筒11而导致单个浮筒11损坏的问题,进一步地延长了显示装置100的使用寿命。
可以理解的是,卸力部32沿拼接部31向两侧延伸的长度还可不一致,可根据具体的风向,使卸力部32在顺风所在方向的浮筒11上具有较大的面积,从而减少顺风的浮筒11上单位面积上的压力,从而延长浮筒11的使用寿命。
拼接部31包括相对设置的第一面31A和第二面31B。一个浮筒11可拆卸地设于第一面31A上,另一个浮筒11可拆卸地设于第二面31B上,从 而实现两个相邻浮筒11的拼接。进一步地,通过将浮筒11可拆卸地设于第一面31A和第二面31B上,以在单个或几个浮筒11损坏时,便于将损坏的浮筒11拆除以更换新的浮筒11,从而延长了浮动机构10的使用寿命。
需要说明的是,现有的浮动机构10通常采用成排的浮筒11,并将成排的浮筒11连接,以支撑集成系统40。从而当成排的某一个浮筒11损坏时,会导致浮动机构10向损坏的一侧倾斜的问题。上述方案通过将多个浮筒11拼接以形成成排及成列的浮动机构10,从而在浮动机构10上某一个或多个浮筒11损坏时,浮动机构10任能漂浮于水面上,从而增加了其稳定性。
进一步地,拼接部31开设有贯穿第一面31A和第二面31B的连接孔31C,一个浮筒11上的卡扣111可伸出连接孔31C并与另一个浮筒11上的卡扣111连接,以实现两个浮筒11的拼接。优选的,连接孔31C为矩形孔,且沿竖直方向,连接孔31C的宽度等于两个卡扣111的宽度之和,以使两个错位的卡扣111能同时穿过连接孔31C进行拼接。
更进一步地,图3所示的浮筒11中,位于浮筒11左侧的卡扣111上的固定孔111a和位于右侧的卡扣111上的固定孔111a均偏左设置,以使两个卡扣111同时伸出连接孔31C时,两个卡扣111重合的固定孔111a位于拼接部31左侧,从而避免重合的固定孔111a与拼接部31干涉而无法安装的问题。可以理解的是,卡扣111上固定孔111a的偏向并不限于此,如在另一实施例中,位于浮筒11左侧的卡扣111上的固定孔111a和位于右侧的卡扣111上的固定孔111a还可偏右设置,以使两个卡扣111重合的固定孔111a位于拼接部31右侧。
再进一步地,显示装置100还包括固定件(图未示),以在两个浮筒11拼接时,固定件可伸入并固定于两个浮筒11上的固定孔111a内,以实现两个浮筒11的固定,并可通过将固定件抽离上述固定孔111a,以实现两个浮筒11的分离。从而实现浮筒11的可拆卸连接。优选的,上述固定件为螺柱。
请参阅图1和图7,支撑机构20和集成系统40有多个,多个支撑机 构20环绕设于浮动机构10上,每一集成系统40固定于一个支撑机构20上,以使多个集成系统40环绕成环状,从而使单个集成系统40朝向某一个方向的显示区域切换成多个环形的集成系统40的显示区域,从而使集成系统40的观看视角从90°拓展成360°,增加了集成系统40的观影范围,使得不同角度的人群均能观看到集成系统40上影像信息,从而扩大了广告的植入范围,避免了需要设置多处显示设备才能实现对不同区域人群进行广告的的繁琐操作,降低了成本。
优选的,支撑机构20和集成系统40均有四个。四个支撑机构20环形设置,四个集成系统40分别固定于四个支撑机构20上,且每两相邻的集成系统40相互垂直,以在四个集成系统40受到风作用时,四个面的压力能相互抵消,从而防止由于单向受力较大而出现的显示装置100偏移的问题,以防止在起风天气使用显示装置100时,受到风的影响,从而出现显示装置100被吹走而脱离原位置,从而产生的设备回收难的问题。
可以理解的是,支撑机构20及集成系统40的数量不限于此,如在另一实施例中,支撑机构20和集成系统40的数量还可为两个或三个等。两个集成系统40背对设置,三个集成系统40成三角设置,以实现全方位视角设置。
请结合图7,集成系统40包括多个第一显示单元41,多个第一显示单元41相互拼接,以形成平板状的集成系统40。多个上述的集成系统40拼接以形成全方位的屏显,优选的,第一显示单元41为LED显示模块。
需要说明,在上述平板状的集成系统40相互拼接时,在转角的部位容易产生折痕,而出现掉帧的问题。
为了防止多个集成系统40在转角处出现掉帧的问题,集成系统40还包括第二显示单元42。第二显示单元42设置于转角处,用于连接两个不同角度的第一显示单元41,从而避免整体的集成系统40在转角处出现掉帧的问题。
进一步的,第二显示单元42包括依次设置的第一拼接部421、转角部422和第二拼接部423。第一拼接部421固定于一个集成系统40的第一显 示单元41上,第二拼接部423固定于另一个集成系统40的第一显示单元41上,以形成过渡平滑的屏显结构。
需要说明的是,第一拼接部421、转角部422和第二拼接部423均为LED显示模块,从而在拼接完成的集成系统40各处均能正常显示影像信息。
进一步地,转角部422为圆弧状,以使拼接完成的集成系统40在转角处平稳过渡,并在转角部422存在一竖直的帧线,从而避免掉帧的问题。
需要说明的是,在平板状的集成系统40拼接时,在转角处会存在一个拼接的间隙,在间隙处无法实现帧线的安装,从而会导致在转角处出现掉帧而出现立体感不强的问题。
优选的,集成系统40为3D大屏。
显示装置100还包括配重件50,配重件50设于浮动机构10下底面,以降低显示装置100整体的重心,以稳固显示装置100的底盘,从而在大风天气时,可以有效防止显示装置100被吹而侧翻的问题。
在一实施例中,配重件50的材质为钨合金,但显然并不限于此,如在另一实施例中,配重件50还可为铁块等其他物件。
显示装置100还包括多个固定件60,多个固定件60一端固定于支撑机构20上,另一端固定于码头上,以在需要将显示装置100固定于某处时,使用多个固定件60以将显示装置100固定。
优选的,多个固定件60均匀的固定于支撑机构20的侧身上,以从多个不同的范围对支撑机构20进行固定,从而达到限位的作用。
在一实施例中,固定件60为铁链,但显然并不限于此,如在另一实施例中,固定件60还可为其他能固定支撑机构20的结构或装置等。
上述提供的显示装置100通过将两个相邻的浮筒11固定于拼接部31上,以形成浮动机构10,并使第二端部222固定于卸力部32上,以在支撑机构20及集成系统40压迫第二端部222时,第二端部222能将力传递至卸力部32上,卸力部32将力分均至两个相邻的浮筒11的上表面,从而防止因浮筒11局部受力过大而出现的浮筒11损坏问题。
以上所述的仅是本申请的实施方式,在此应当指出,对于本领域的普 通技术人员来说,在不脱离本申请创造构思的前提下,还可以做出改进,但这些均属于本申请的保护范围。

Claims (10)

  1. 一种显示装置,用于漂浮于水面上,其特征在于,包括,
    所述浮动机构,包括多个浮筒拼接而成,沿竖直方向,所述浮筒上表面设有定位柱;
    支撑机构,包括固定于所述浮动机构上的立架和斜架,所述斜架具有相对设置的第一端部和第二端部,所述第一端部固定于所述立架上;
    卸力件,包括拼接部和设于所述拼接部上的卸力部,两个所述浮筒可伸入并固定于所述拼接部上,所述卸力部开设有与所述定位柱相对应的定位槽,且所述卸力部开设有垂直并与所述定位槽连通的放置槽,所述卸力部贴合于两个所述浮筒上表面,所述第二端部固定于所述卸力部上;
    限位组件,一端可转动地设于所述放置槽内,另一端伸入所述定位槽内,以将所述定位柱固定或松开于所述定位槽内;
    集成系统,固定于所述立架上。
  2. 根据权利要求1所述的显示装置,其特征在于,所述限位组件包括转动件、复位件及止挡件;
    所述转动件沿竖直方向可转动地设于所述放置槽内,且所述转动件一端伸出所述拼接部设置;
    所述复位件套设于所述转动件上,且所述复位件一端抵持于所述拼接部端壁上,以在所述转动件转动后,带动所述转动件复位;
    所述止挡件一端固定于所述转动件上,另一端伸入所述定位槽内,用于将定位柱固定或松开于所述定位槽内。
  3. 根据权利要求2所述的显示装置,其特征在于,所述拼接部包括相对设置的第一面和第二面;
    一个所述浮筒可固定于所述第一面上,另一个所述浮筒可固定于所述第二面上。
  4. 根据权利要求3所述的显示装置,其特征在于,所述拼接部开设有贯穿所述第一面和所述第二面的连接孔;
    一个所述浮筒可伸出所述连接孔并拼接于另一个所述浮筒上。
  5. 根据权利要求1所述的显示装置,其特征在于,所述支撑机构和所述集成系统均有多个;
    多个所述支撑机构环绕设于所述浮动机构上;
    每一所述集成系统固定于一个所述支撑机构上,以使多个所述集成系统围绕成环状。
  6. 根据权利要求5所述的显示装置,其特征在于,所述支撑机构和所述集成系统均有四个;
    四个所述支撑机构环形设置;
    四个所述集成系统分别固定于四个所述支撑机构上,且每两相邻的所述集成系统相互垂直。
  7. 根据权利要求6所述的显示装置,其特征在于,所述集成系统包括多个第一显示单元;
    多个所述第一显示单元相互拼接,以形成平板状的所述集成系统。
  8. 根据权利要求7所述的显示装置,其特征在于,所述集成系统还包括第二显示单元;
    所述第二显示单元包括依次设置的第一拼接部、转角部和第二拼接部;
    所述第一拼接部固定于一个所述集成系统的所述第一显示单元上,所述第二拼接部固定于另一个所述集成系统的所述第一显示单元上。
  9. 根据权利要求1所述的显示装置,其特征在于,所述显示装置还包括配重件;
    所述配重件设于所述浮动机构下底面,用于降低所述显示装置的重心。
  10. 根据权利要求1所述的显示装置,其特征在于,所述显示装置还包括多个固定件;
    多个所述固定件一端固定于所述支撑机构上,另一端固定于码头上,以限制所述集成系统的位置。
PCT/CN2022/089809 2022-01-21 2022-04-28 一种显示装置 WO2023137901A1 (zh)

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