WO2015032352A1 - 一种显示设备及其底座 - Google Patents
一种显示设备及其底座 Download PDFInfo
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- WO2015032352A1 WO2015032352A1 PCT/CN2014/086061 CN2014086061W WO2015032352A1 WO 2015032352 A1 WO2015032352 A1 WO 2015032352A1 CN 2014086061 W CN2014086061 W CN 2014086061W WO 2015032352 A1 WO2015032352 A1 WO 2015032352A1
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- WIPO (PCT)
- Prior art keywords
- display device
- base
- distance
- support
- support plate
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16M—FRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
- F16M13/00—Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles
- F16M13/02—Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles for supporting on, or attaching to, an object, e.g. tree, gate, window-frame, cycle
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16M—FRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
- F16M11/00—Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
- F16M11/20—Undercarriages with or without wheels
- F16M11/22—Undercarriages with or without wheels with approximately constant height, e.g. with constant length of column or of legs
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16M—FRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
- F16M2200/00—Details of stands or supports
- F16M2200/08—Foot or support base
Definitions
- the present invention relates to the field of electronic communication technologies, and in particular, to a display device and a base thereof.
- Display devices typically include a display device and a base that functions to support and position the display device.
- the base is generally a regular structure such as a square shape or a circular shape.
- the top end of the base is connected to the display device, and the lower surface is in contact with the desktop.
- the base is usually designed with a symmetrical fulcrum, and the support of the display device can be stably realized.
- the object of the present invention is to provide a display device and a base thereof, which have a relatively complicated and beautiful structure, and are balanced by force and stably supported.
- the present invention provides a base of a display device, including a support plate; the support plate includes a bent plate and at least one arch structure, and each of the arch structures is sequentially connected, and the bent plate is The outer bottom of the arch structure of the end is connected and bent upward; the bent plate The top of each of the arch structures is connected to the display device of the display device, and the bottom of each arch structure is supported on the table top.
- the top of the bent plate and the top of each arched structure become a connection point with the display device, where the gravity and direction of the display device are downward, and the bottom of each arched structure is supported by the table top, The direction is upwards.
- the connection point contacting the display device and the support point contacting the ground are alternately arranged, that is, each adjacent three stress points form a triangular stable force, which makes the force of the entire support plate Stable, achieving stable support for the display device. It can be seen that the above-mentioned base including the support plate with the arch structure can realize the triangular stable force by the arch structure, thereby ensuring the stable support of the base to the display device.
- a first distance between the support plate and each connection point of the display device is equal, and a second distance between the support plate and each support point of the desktop is equal, and the first distance is Equal to the second distance.
- the thickness of the support plate is gradually increased from the one end to the other end where the bent plate is located.
- the top of the bent plate at one end of the support plate is in contact with the display device, and the closed support of the display device is realized, and the bottom end of the arch structure at the other end is not in contact with the display device, and the display is realized.
- Open support of the device Obviously, the open support is not as stable as the closed support, which inevitably causes deformation.
- the strength of the support plate is also increased, thereby preventing the open support end from affecting the support stability due to the large deformation amount.
- the bottom width of the arched structure is greater than the width of the remainder of the support plate.
- the lower surface of the arch structure is provided with a plurality of first reinforcing ribs, and the plurality of first reinforcing ribs are intersected to form a plurality of triangular structures.
- the first reinforcing ribs surrounding a plurality of triangular structures can greatly enhance the strength of the arch structure, thereby enhancing the bearing capacity of the arch structure.
- a top of the bent plate is fixedly connected with a connecting rod, and the connecting rod is connected to the display device by a first threaded fastener;
- a connecting plate is fixedly connected to a top of the arched structure, and the connecting A plate is disposed in parallel with the display device and coupled to the display device by a second threaded fastener.
- the invention also provides a base of a display device, comprising a support plate; At least one arch structure of the secondary connection, the top of each arch structure is connected to the display device of the display device, and the bottom of each arch structure is supported on the table top.
- each arch structure and the two bottom support points form a triangular support structure, which stabilizes the force of the entire support plate and achieves stable support for the display device.
- the present invention further provides a base of a display device, comprising a support plate; the support plate is a fold line structure, a top of the fold line structure is connected with a display device of the display device, and a bottom of the fold line structure is supported on the table top.
- each of the fold line structures and the bottom of the two fold line structures form a triangular support structure, which makes the force of the entire support plate stable, and achieves stable support for the display device.
- the bend at the top of the fold line structure is provided with a horizontal first transition portion
- the bend at the bottom of the fold line structure is provided with a horizontal second transition portion
- the top of the fold line structure passes the first transition
- the portion is connected to the display device, and the bottom of the fold line structure is supported on the table top by the second transition portion.
- the present invention also provides a display device comprising a display device and a base; the base adopts the structure as described above, and the top of the bent plate of the base and the top of each arch structure are connected to the display device.
- the display device including the base should also have the same technical effects, and details are not described herein again.
- FIG. 1 is a schematic structural view of a specific embodiment of a base provided by the present invention.
- FIG. 2 is a schematic structural view of another specific embodiment of a base provided by the present invention.
- Figure 3 is a plan view of Figure 2;
- Figure 4 is a bottom view of Figure 2;
- FIG. 5 is a schematic structural view of still another specific embodiment of a base provided by the present invention.
- FIG. 6 is a schematic structural view of a fourth embodiment of a base provided by the present invention.
- FIG. 7 is a schematic structural view of a fifth embodiment of a base provided by the present invention.
- FIG. 8 is a schematic structural diagram of a specific embodiment of a display device according to the present invention.
- Support plate 1 arch structure 11; top portion 111 of arch structure; bottom portion 112 of arch structure; first reinforcing rib 113; second reinforcing rib 114; non-slip mat 115; bent plate 12; top portion of bent plate 121 ;
- top line structure 101 a top line structure 101; a first transition portion 1011; a bottom line structure 102; a second transition portion 1021;
- the core of the present invention is to provide a display device and a base thereof, which can be designed by using an arch structure to achieve force balance and ensure stable support of the display device.
- orientation word "outer” herein refers to a direction extending along the middle of the support plate toward both ends thereof, that is, a direction extending from the middle portion to the left end and the right end in FIGS. 1 and 2; it should be understood that The orientation words are set based on the drawings of the specification, and their appearance should not affect the scope of protection of the present invention.
- FIG. 1 is a schematic structural view of a specific embodiment of a base provided by the present invention.
- the present invention provides a base of a display device including a display device 100 and the above-described base for supporting the display device 100.
- the base comprises a support plate 1 comprising a bent plate 12 and at least one arched structure 11, the arched structures 11 being connected in turn, the bent plate 12 being connected to the outer bottom of the end of the arched structure 11 and upwardly
- the top portion 121 of the bent plate and the top portion 111 of each arch structure are connected to the display device 100, and the bottom portion 112 of each arch structure is supported on the table top.
- the top portion 121 of the bent plate and the top portion 111 of each of the arched structures become connection points with the display device 100, where the gravity of the display device 100 is directed downward, and the bottom portion 112 of each arched structure is received by the table top.
- the supporting force applied is upward.
- the connection points that are in contact with the display device 100 and the support points that are in contact with the ground are alternately arranged, that is, each adjacent three stress points form a triangular stable force, which makes the entire support plate 1 Force Stable, stable support of the display device 100 is achieved.
- the above-mentioned base including the support plate 1 with the arch structure 11 can realize the triangular stable force by the arch structure 11, thereby ensuring the stable support of the base to the display device 100.
- the support plate 1 includes the bent plate 12 and the at least one arch structure 11 , and the arch structures 11 are sequentially connected” means that the support plate may include an arch structure 11 or may include two And the above arch structure 11, when the number of the arch structures 11 is two or more, the arch structures 11 are sequentially connected.
- the number of the arch structures 11 is not limited in the above embodiment.
- the figure is a schematic structural view of another embodiment of the base provided by the present invention, and the arch structure 11 can be The number is set to one, so that the base has the characteristics of simple structure and convenient processing and manufacture.
- the number of the arch structures 11 can also be set to two, three or more depending on the specific length of the actual device.
- the specific embodiment does not limit the specific number of the bending plates 12.
- the number of the bending plates 12 may be one.
- the number of the bending plates 12 may also be two.
- the symmetrical structure can strengthen the support stability of the base by being connected to the outer bottom ends of the two end portions of the integral structure formed by the arch structures 11 connected in sequence.
- the first distance between the support board 1 and each connection point of the display device 100 is equal, and the second distance between the support board 1 and each support point of the desktop is equal, and the first distance is equal to The second distance. In this way, the distance between the respective points of force is equal, which further ensures the stability of the support plate 1 under stress.
- the distance between the support plates 1 and the connection points of the display device 100 is the first distance
- the support plate 1 and the table top are The distance between each support point
- the first distance is equal to the second distance.
- this structure also makes the distances between the respective force receiving points equal, further ensuring the stability of the support plate 1 under stress.
- the first distance between the support plates 1 and the connection points of the display device 100 is equal, the support plate 1 and the table top
- the distance between each support point is a second distance, and the first distance is equal to the second distance.
- FIG. 8 is a schematic structural diagram of a specific embodiment of a display device according to the present invention.
- the number of the bent plates 12 is one and is bent from The thickness of the support plate 1 gradually increases in the direction from the one end to the other end of the plate 12.
- the top 121 of the bent plate at one end of the support plate 1 is in contact with the display device 100, and the closed support of the display device 100 is realized, and the bottom end of the arch structure 11 at the other end is realized.
- What is not in contact with the display device 100 is the open support of the display device 100.
- the open support is not as stable as the closed support, which inevitably causes deformation.
- the strength of the support plate 1 is also increased, thereby preventing the open support end from affecting the support stability due to the large deformation amount.
- FIG. 3 is a top view of FIG. 2, the bottom 112 of the arch structure having a width greater than the width of the remaining portion of the support plate 1.
- the support plate 1 can stably support the display device 100, further enhancing the support stability of the base.
- FIG. 4 is a bottom view of FIG. 2 .
- the lower surface of the arch structure 11 of the support plate 1 is provided with a plurality of first reinforcing ribs 113 , and a plurality of first reinforcing ribs 113 are intersected.
- a plurality of triangular structures Into a plurality of triangular structures.
- the first reinforcing rib 113 enclosing a plurality of triangular structures can greatly enhance the strength of the arch structure 11 by the triangular reinforcing principle, thereby enhancing the bearing capacity of the arch structure 11.
- the lower surface of the arch structure 11 is further provided with a second reinforcing rib 114 which is coincident or parallel with the contour line thereof, and the plurality of first reinforcing ribs 113 are disposed on the second reinforcing rib 114. internal.
- the middle portion is a weak point of force, so the distribution range of the first reinforcing rib 113 is narrowed by the second reinforcing rib 114 so that the first reinforcing rib 113 is disposed at the middle of the lower surface of the arch structure 11.
- the strength of the weak point of the arch structure 11 can be enhanced more specifically.
- the top 111 of the arched structure furthest from the bent plate 12 is higher than the top 121 of the bent plate, and the height difference between the two ranges from 3 mm to 6 mm.
- the arch structure 11 since the outer end of the arch structure 11 farthest from the bent plate 12 is open support, the arch structure 11 inevitably undergoes a small amount of deformation during the supporting process, causing significant
- the display device 100 is lowered to a certain height at the end, and after the height difference is set, the display device 100 can be horizontally maintained as a whole after the open support end is lowered by a certain height. Setting the height difference to the above range not only ensures that the base conforms to the standard specifications, but also further ensures the support stability of the base.
- the height difference range may be 4 mm.
- the height difference range may be set to other values according to the specific specifications of the display device 100 and the specific specifications of the base.
- the top portion 121 of the bent plate of the support plate 1 is fixedly coupled to the connecting rod 2, and the connecting rod 2 is coupled to the display device 100 by a first threaded fastener.
- connection between the end of the display device 100 and the support plate 1 can be realized by the connecting rod 2, and the disassembly and assembly process is simple, convenient, and easy to operate.
- the top portion 111 of the arch structure is fixedly connected with the connecting plate 3, and the connecting plate 3 is disposed in parallel with the display device 100 and connected to the display device 100 by the second threaded fastener.
- the connecting plate 3 When installing, the connecting plate 3 is first placed in parallel with the display device 100, and then the second screw fastener is used to connect the two. Since the top portion 111 of the arch structure is connected to the middle portion of the display device 100, the connecting plate 3 can increase the contact area with the display device 100, avoiding the display device 100 from tilting forward or backward, and further enhancing the support stability of the base. .
- the connecting plate 3 is provided with a plurality of third reinforcing ribs 31 facing the side surface of the display device 100, and the plurality of third reinforcing ribs 31 intersect to form a triangular structure.
- the third reinforcing rib 31 surrounding a plurality of triangular structures can also enhance the strength of the connecting plate 3 to ensure the connection stability of the connecting plate 3 and the display device 100.
- the bottom portion 112 of the arched structure may be provided with a non-slip mat 115. Since the bottom portion 112 of the arch structure is supported on the table top, the anti-slip mat 115 can be used to prevent the base from slipping relative to the table top, further enhancing the support stability.
- FIG. 5 is a schematic structural view of still another embodiment of the base provided by the present invention.
- the present invention also provides a base of a display device, the base comprising a support plate 1 comprising at least one arch structure 11 connected in series, the tops 111 of each arch structure being The display device 100 is connected, and the bottom 112 of each arch structure is supported by desktop.
- each arch structure and the two bottom support points form a triangular support structure, which stabilizes the force of the entire support plate 1, realizing stable support of the display device 100.
- the support plate 1 includes at least one arch structure 11 sequentially connected
- the support plate may include an arch structure 11 or at least two arch structures 11 and at least two arch structures. 11 in order to connect.
- the processing and manufacturing process of the base is simple and convenient.
- the strength is large, the support is more stable, and it is suitable for a display device having a large length.
- the width of the bottom portion 112 of the arch structure is larger than the width of the remaining portion of the support plate 1.
- the support plate 1 can stably support the display device 100, further enhancing the support stability of the base.
- the lower surface of the arch structure 11 is provided with a plurality of first reinforcing ribs 113, and the plurality of first reinforcing ribs 113 are intersected to form a plurality of triangular structures.
- the first reinforcing rib 113 enclosing a plurality of triangular structures can greatly enhance the strength of the arch structure 11 by the triangular reinforcing principle, thereby enhancing the bearing capacity of the arch structure 11.
- the lower surface of the arch structure 11 is further provided with a second reinforcing rib 114 which is coincident or parallel with the contour line thereof, and the plurality of first reinforcing ribs 113 are disposed inside the second reinforcing rib 114.
- the middle portion is a weak point of force, so the distribution range of the first reinforcing rib 113 is narrowed by the second reinforcing rib 114 so that the first reinforcing rib 113 is disposed at the middle of the lower surface of the arch structure 11.
- the strength of the weak point of the arch structure 11 can be enhanced more specifically.
- the top portion 111 of the arch structure is fixedly connected with the connecting plate 3, and the connecting plate 3 is disposed in parallel with the display device 100 and connected to the display device 100 by the second threaded fastener.
- the connecting plate 3 When installing, the connecting plate 3 is first placed in parallel with the display device 100, and then the second screw fastener is used to connect the two. Since the top portion 111 of the arch structure is connected to the middle portion of the display device 100, the connection plate 3 can increase the contact area with the display device 100, thereby avoiding the display device 100. Tilting forward or backward further enhances the support stability of the base.
- the connecting plate 3 is provided with a plurality of third reinforcing ribs 31 facing the side surface of the display device 100, and the plurality of third reinforcing ribs 31 intersect to form a triangular structure.
- the third reinforcing rib 31 surrounding a plurality of triangular structures can also enhance the strength of the connecting plate 3 to ensure the connection stability of the connecting plate 3 and the display device 100.
- FIG. 6 is a schematic structural view of a fourth embodiment of a base provided by the present invention.
- the present invention further provides a base of a display device, including a support plate 1.
- the support plate 1 is a fold line structure, and the top 101 of the fold line structure is connected to the display device 100 of the display device, and the bottom portion 102 of the fold line structure is supported. On the desktop.
- each of the fold line structure top 101 and each of the fold line structure bottoms 102 form a triangular support structure, which stabilizes the force of the entire support plate 1, and achieves stable support for the display device 100.
- the foregoing embodiment does not specifically limit the number of the fold line structures of the base. As shown in FIG. 6 , the number of the fold line structures may be multiple. Of course, the number of the fold structures may also be one. The specific number can be specifically set according to the length and weight of the display device.
- FIG. 7 is a schematic structural view of a fifth embodiment of the base provided by the present invention.
- the bent portion of the top 101 of the fold line structure is provided with a horizontal first transition portion 1011, and a fold line.
- the bend of the bottom portion 102 of the structure is provided with a horizontal second transition portion 1012.
- the top portion 101 of the fold line structure is connected to the display device 100 through the first transition portion 1011, and the bottom portion 102 of the fold line structure is supported on the table top by the second transition portion 1021.
- the present invention also provides a display device comprising a display device 100 and a base.
- the base adopts the structure as described above, and the top 121 of the bent plate of the base and the top 111 of each arch structure are connected to the display device 100.
- the display device including the base is also It should have the same technical effect and will not be described here.
- a display device and a base thereof provided by the present invention are described in detail above.
- the principles and embodiments of the present invention have been described herein with reference to specific examples, and the description of the above embodiments is only to assist in understanding the method of the present invention and its core idea. It should be noted that those skilled in the art can make various modifications and changes to the present invention without departing from the spirit and scope of the invention.
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Abstract
一种显示设备及其底座,该底座包括支撑板(1);所述支撑板(1)包括弯折板(12)和至少一个拱形结构(11),各所述拱形结构(11)依次连接,所述弯折板(12)与端部的所述拱形结构(11)的外侧底部连接、且向上弯折;弯折板的顶部(121)、各拱形结构的顶部(111)均与所述显示装置(100)连接,各拱形结构的底部(112)支撑于桌面。上述包括带有拱形结构的支撑板的底座,能够利用拱形结构实现三角形稳定受力,进而保证底座对显示装置的稳定支撑。
Description
本申请要求于2013年9月6日提交中国专利局、申请号为2013104041453、发明名称为“一种显示设备及其底座”的中国专利申请,并要求于2013年9月6日提交中国专利局、申请号为2013205552199、发明名称为“一种显示设备及其底座”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本发明涉及电子通讯技术领域,尤其涉及一种显示设备及其底座。
显示设备(例如电视、电脑显示器)通常包括显示装置和底座,底座起到支撑、定位显示装置的作用。
现有技术中,底座通常为方形、圆形等规则结构,该底座的顶端与显示装置连接,下表面与桌面接触,该底座通常采用对称支点设计,能够稳定地实现对显示装置的支撑。
随着电子产品的多元化设计,市场上对于显示设备的底座形状的要求也越来越高,因此需要设计更多形状和结构较为复杂、美观的底座,以满足消费者的视觉需求。然而,上述诸多底座都面临的一个设计问题,那就是难以达到力的平衡,容易影响底座的支撑稳定性。
有鉴于此,亟待针对上述技术问题,另辟蹊径设计一种新型的结构较为复杂、美观的底座,保证其受力平衡、支撑稳定。
发明内容
本发明的目的为提供一种显示设备及其底座,该底座具有较为复杂美观的结构,且受力平衡、支撑稳定。
为解决上述技术问题,本发明提供一种显示设备的底座,包括支撑板;所述支撑板包括弯折板和至少一个拱形结构,各所述拱形结构依次连接,所述弯折板与端部的所述拱形结构的外侧底部连接、且向上弯折;弯折板
的顶部、各拱形结构的顶部均与所述显示设备的显示装置连接,各拱形结构的底部支撑于桌面。
采用这种结构,弯折板的顶部和各拱形结构的顶部成为与显示装置的连接点,该处受到显示装置的重力、方向向下,各拱形结构的底部受到桌面施加的支撑力、方向向上。在支撑板的延伸方向上,与显示装置接触的连接点、与地面的接触的支撑点交错设置,即每相邻三个受力点均形成三角形稳定受力,这使得整个支撑板的受力稳定,实现了对显示装置的稳定支撑。由此可见,上述包括带有拱形结构的支撑板的底座,能够利用拱形结构实现三角形稳定受力,进而保证底座对显示装置的稳定支撑。
优选地,所述支撑板与所述显示装置的各连接点之间的第一距离均相等,所述支撑板与所述桌面的各支撑点之间的第二距离均相等,且第一距离等于第二距离。
优选地,从所述弯折板所在的一端到另一端的方向,所述支撑板的厚度逐渐增大。
对于上述底座来说,支撑板一端的弯折板的顶部与显示装置接触、实现了对显示装置的闭合支撑,其另一端的拱形结构的底端与显示装置未接触、实现的是对显示装置的开放支撑。显然,开放支撑不如闭合支撑稳定,不可避免地会引起变形。采用上述结构后,由于从闭合支撑端到开放支撑端的厚度越来越大,支撑板的强度也越来越大,从而避免开放支撑端由于变形量较大而影响支撑稳定性。
优选地,所述拱形结构的底部宽度大于所述支撑板的其余部分的宽度。
优选地,所述拱形结构的下表面设有多个第一加强筋,多个所述第一加强筋交叉围成多个三角形结构。
采用这种结构,利用三角补强原理,围成多个三角形结构的第一加强筋能够大大增强拱形结构的强度,进而增强拱形结构的承重能力。
优选地,所述弯折板的顶部固定连接有连接杆,所述连接杆通过第一螺纹紧固件与所述显示装置连接;所述拱形结构的顶部固定连接有连接板,所述连接板与所述显示装置平行设置、通过第二螺纹紧固件与所述显示装置连接。
本发明还提供一种显示设备的底座,包括支撑板;所述支撑板包括依
次连接的至少一个拱形结构,各拱形结构的顶部均与所述显示设备的显示装置连接,各拱形结构的底部均支撑于桌面。
采用这种结构,各拱形结构的顶点和两个底部支撑点形成三角形支撑结构,这使得整个支撑板的受力稳定,实现了对显示装置的稳定支撑。
此外,本发明还提供一种显示设备的底座,包括支撑板;所述支撑板为折线结构,折线结构顶部与所述显示设备的显示装置连接,折线结构底部支撑于桌面。
采用这种结构,各折线结构顶部和两个折线结构底部形成三角形支撑结构,这使得整个支撑板的受力稳定,实现了对显示装置的稳定支撑。
优选地,所述折线结构顶部的弯折处设有水平的第一过渡部,所述折线结构底部的弯折处设有水平的第二过渡部,所述折线结构顶部通过所述第一过渡部与所述显示装置连接,所述折线结构底部通过所述第二过渡部支撑于桌面。
本发明还提供一种显示设备,包括显示装置和底座;所述底座采用如上所述的结构,所述底座的弯折板的顶部、各拱形结构的顶部均与所述显示装置连接。
由于上述底座具有如上技术效果,因此,包括该底座的显示设备也应当具有相同的技术效果,在此不再赘述。
图1为本发明所提供底座的一种具体实施方式的结构示意图;
图2为本发明所提供底座的另一种具体实施方式的结构示意图;
图3为图2的俯视图;
图4为图2的仰视图;
图5为本发明所提供底座的又一种具体实施方式的结构示意图;
图6为本发明所提供底座的第四种具体实施方式的结构示意图;
图7为本发明所提供底座的第五种具体实施方式的结构示意图;
图8为本发明所提供显示设备的一种具体实施方式的结构示意图。
其中,图1至图8中的附图标记与部件名称之间的对应关系为:
支撑板1;拱形结构11;拱形结构的顶部111;拱形结构的底部112;第一加强筋113;第二加强筋114;防滑垫115;弯折板12;弯折板的顶部121;
折线结构顶部101;第一过渡部1011;折线结构底部102;第二过渡部1021;
连接杆2;
连接板3;第三加强筋31;
显示装置100。
本发明的核心为提供一种显示设备及其底座,上述底座能够利用拱形结构设计,实现了受力平衡,保证稳定地支撑显示装置。
为了使本领域的技术人员更好地理解本发明的技术方案,下面结合附图和具体实施例对本发明作进一步的详细说明。需要说明的是,本文中的方位词“外”指的是沿支撑板的中部向其两端延伸的方向,即图1和图2中由其中部向左端、右端延伸的方向;应当理解,该方位词是以说明书附图为基础而设定的,它们的出现不应当影响本发明的保护范围。
请参考图1,图1为本发明所提供底座的一种具体实施方式的结构示意图。
在一种具体实施方式中,如图1所示,本发明提供一种显示设备的底座,该显示设备包括显示装置100和上述底座,该底座用于支撑显示装置100。底座包括支撑板1,该支撑板1包括弯折板12和至少一个拱形结构11,各拱形结构11依次连接,弯折板12与端部的拱形结构11的外侧底部连接、且向上弯折;弯折板的顶部121、各拱形结构的顶部111均与显示装置100连接,各拱形结构的底部112支撑于桌面。
采用这种结构,弯折板的顶部121和各拱形结构的顶部111成为与显示装置100的连接点,该处受到显示装置100的重力、方向向下,各拱形结构的底部112受到桌面施加的支撑力、方向向上。在支撑板1的延伸方向上,与显示装置100接触的连接点、与地面的接触的支撑点交错设置,即每相邻三个受力点均形成三角形稳定受力,这使得整个支撑板1的受力
稳定,实现了对显示装置100的稳定支撑。
由此可见,上述包括带有拱形结构11的支撑板1的底座,能够利用拱形结构11实现三角形稳定受力,进而保证底座对显示装置100的稳定支撑。需要说明的是,这里“该支撑板1包括弯折板12和至少一个拱形结构11,各拱形结构11依次连接”指的是支撑板可以包括一个拱形结构11,也可以包括两个及以上拱形结构11,当拱形结构11的数目为两个及以上时,各拱形结构11依次连接。
上述实施方式中并未限定拱形结构11的数目,具体的方案中,如图2所示,该图为本发明所提供底座的另一种具体实施方式的结构示意图,可以将拱形结构11的数目设置为一个,使得底座具有结构简单、加工制造方便的特点。当然,如图1所示,还可以根据现实装置的具体长度,将拱形结构11的数目设置为两个、三个或更多。
此外,上述具体实施方式也并未限定弯折板12的具体数目,如图2所示,该弯折板12的数目可以为一个,当然,弯折板12的数目也可以设为两个,分别连接于依次连接的拱形结构11所形成整体结构的两端部的外侧底端,这种对称式结构能加强底座的支撑稳定性。
更具体的方案中,上述支撑板1与显示装置100的各连接点之间的第一距离均相等,支撑板1与桌面的各支撑点之间的第二距离均相等,且第一距离等于第二距离。这样,使得各个受力点之间的距离均相等,进一步保证了支撑板1受力的稳定性。
此外,对于拱形结构11的数目、弯折板12的数目均为一个的底座来说,支撑板1与显示装置100的各连接点之间的距离为第一距离,支撑板1与桌面的各支撑点之间的距离为第二距离,第一距离等于所述第二距离。与上述方案相同,这种结构也能使各受力点之间的距离均相等,进一步保证了支撑板1受力的稳定性。
此外,对于拱形结构11的数目为一个、弯折板12的数目为两个的底座来说,支撑板1与显示装置100的各连接点之间的第一距离相等,支撑板1与桌面的各支撑点之间的距离为第二距离,第一距离等于第二距离。这种结构也能使各受力点之间的距离均相等,进一步保证了支撑板1受力的稳定性。
在另一种具体实施方式中,请结合图2和图8,图8为本发明所提供显示设备的一种具体实施方式的结构示意图,上述弯折板12的数目为一个,且从弯折板12所在的一端到另一端的方向,支撑板1的厚度逐渐增大。
对于上述底座来说,如图8所示,支撑板1一端的弯折板的顶部121与显示装置100接触、实现了对显示装置100的闭合支撑,其另一端的拱形结构11的底端与显示装置100未接触、实现的是对显示装置100的开放支撑。显然,开放支撑不如闭合支撑稳定,不可避免地会引起变形。采用上述结构后,由于从闭合支撑端到开放支撑端的厚度越来越大,支撑板1的强度也越来越大,从而避免开放支撑端由于变形量较大而影响支撑稳定性。
在另一种具体实施方式中,请参考图3,图3为图2的俯视图,拱形结构的底部112宽度大于支撑板1的其余部分的宽度。
采用这种结构,即使显示装置100前后倾斜一个较小的角度,支撑板1仍然能够稳定支撑显示装置100,进一步增强底座的支撑稳定性。
具体的方案,如图4所示,图4为图2的仰视图,该支撑板1的拱形结构11的下表面设有多个第一加强筋113,多个第一加强筋113交叉围成多个三角形结构。
采用这种结构,利用三角补强原理,围成多个三角形结构的第一加强筋113能够大大增强拱形结构11的强度,进而增强拱形结构11的承重能力。
进一步的方案中,如图4所示,上述拱形结构11的下表面还设有与其轮廓线重合或平行的第二加强筋114,多个第一加强筋113设于第二加强筋114的内部。
对于上述拱形结构11,其中部是受力薄弱点,因此通过第二加强筋114缩小第一加强筋113的分布范围,以使第一加强筋113设置在拱形结构11的下表面的中部,能够更有针对地增强拱形结构11的薄弱点的强度。
在另一种具体实施方式中,距离弯折板12最远的拱形结构的顶部111高于与弯折板的顶部121,二者的高度差范围为3mm~6mm。
采用这种结构,由于距离弯折板12最远的拱形结构11的外端为开放支撑,因此在支撑过程中该拱形结构11不可避免地发生少量变形,造成显
示装置100在该端下降一定高度,设置上述高度差之后,能够使显示装置100在开放支撑端下降一定高度后整体保持水平状态。将高度差设为上述范围既能保证底座符合标准规格,又能够进一步保证底座的支撑稳定性。
具体地,上述高度差范围可以为4mm,当然,也可以根据显示装置100的具体规格、底座的具体规格将该高度差范围设置为其他数值。
还可以进一步设置上述底座与显示装置100的具体连接结构。
在另一种具体实施方式中,结合图2和图3,该支撑板1的弯折板的顶部121固定连接有连接杆2,连接杆2通过第一螺纹紧固件与显示装置100连接。
采用这种结构,通过连接杆2能够实现显示装置100端部与支撑板1的连接,且拆装过程简单、方便,容易操作。
类似的方案中,上述拱形结构的顶部111固定连接有连接板3,连接板3与显示装置100平行设置、通过第二螺纹紧固件与显示装置100连接。
安装时,先将连接板3与显示装置100平行设置,然后再用第二螺纹紧固件连接二者。由于拱形结构的顶部111与显示装置100的中部连接,因此,该连接板3能够增大与显示装置100的接触面积,避免显示装置100向前或者向后倾斜,进一步增强底座的支撑稳定性。
进一步的方案中,上述连接板3朝向显示装置100的侧面设有多个第三加强筋31,多个第三加强筋31交叉形成三角形结构。
与上述第一加强筋113的作用相同,围成多个三角形结构的第三加强筋31也能增强连接板3的强度,以保证连接板3与显示装置100的连接稳定性。
在另一种具体实施方式中,上述拱形结构的底部112可以设有防滑垫115。由于拱形结构的底部112支撑于桌面,设置防滑垫115之后能够避免底座相对于桌面发生滑动,进一步增强支撑稳定性。
如图5所示,图5为本发明所提供底座的又一种具体实施方式的结构示意图。
在另一种具体实施方式中,本发明还提供一种显示设备的底座,该底座包括支撑板1,支撑板1包括依次连接的至少一个拱形结构11,各拱形结构的顶部111均与显示装置100连接,各拱形结构的底部112均支撑于
桌面。
采用这种结构,各拱形结构的顶点和两个底部支撑点形成三角形支撑结构,这使得整个支撑板1的受力稳定,实现了对显示装置100的稳定支撑。
需要说明的是,这里“支撑板1包括依次连接的至少一个拱形结构11”指的是支撑板可以包括一个拱形结构11,或者包括至少两个拱形结构11,至少两个拱形结构11依次连接。
对于包括一个拱形结构11的支撑板1来说,底座的加工、制造过程简单、方便。对于包括至少两个依次连接的拱形结构11的支撑板1来说,强度较大,支撑更稳定,适合长度较大的显示装置。
对于上述结构的显示设备的底座,一种具体方案中,拱形结构的底部112宽度大于支撑板1的其余部分的宽度。
采用这种结构,即使显示装置100前后倾斜一个较小的角度,支撑板1仍然能够稳定支撑显示装置100,进一步增强底座的支撑稳定性。
此外,拱形结构11的下表面设有多个第一加强筋113,多个第一加强筋113交叉围成多个三角形结构。
采用这种结构,利用三角补强原理,围成多个三角形结构的第一加强筋113能够大大增强拱形结构11的强度,进而增强拱形结构11的承重能力。
更进一步的方案中,拱形结构11的下表面还设有与其轮廓线重合或平行的第二加强筋114,多个第一加强筋113设于第二加强筋114的内部。
对于上述拱形结构11,其中部是受力薄弱点,因此通过第二加强筋114缩小第一加强筋113的分布范围,以使第一加强筋113设置在拱形结构11的下表面的中部,能够更有针对地增强拱形结构11的薄弱点的强度。
另一种具体实施方式中,拱形结构的顶部111固定连接有连接板3,连接板3与显示装置100平行设置、通过第二螺纹紧固件与显示装置100连接。
安装时,先将连接板3与显示装置100平行设置,然后再用第二螺纹紧固件连接二者。由于拱形结构的顶部111与显示装置100的中部连接,因此,该连接板3能够增大与显示装置100的接触面积,避免显示装置100
向前或者向后倾斜,进一步增强底座的支撑稳定性。
进一步地,上述连接板3朝向显示装置100的侧面设有多个第三加强筋31,多个第三加强筋31交叉形成三角形结构。
与上述第一加强筋113的作用相同,围成多个三角形结构的第三加强筋31也能增强连接板3的强度,以保证连接板3与显示装置100的连接稳定性。
如图6所示,图6为本发明所提供底座的第四种具体实施方式的结构示意图。
在另一种具体实施方式中,本发明还提供一种显示设备的底座,包括支撑板1,支撑板1为折线结构,折线结构顶部101与显示设备的显示装置100连接,折线结构底部102支撑于桌面。
采用这种结构,各折线结构顶部101和各折线结构底部102形成三角形支撑结构,这使得整个支撑板1的受力稳定,实现了对显示装置100的稳定支撑。
需要说明的是,上述实施方式并未具体限定底座的折线结构的数目,如图6所示,该折线结构的数目可以为多个,当然,该折现结构的数目也可以为一个,折线结构的具体数目可以根据显示装置的长度和重量具体设置。
进一步的方案中,如图7所示,图7为本发明所提供底座的第五种具体实施方式的结构示意图,上述折线结构顶部101的弯折处设有水平的第一过渡部1011,折线结构底部102的弯折处设有水平的第二过渡部1012,折线结构顶部101通过第一过渡部1011与显示装置100连接,折线结构底部102通过第二过渡部1021支撑于桌面。
采用这种结构,由于第一过渡部1011、第二过渡部1021均水平设置,因此支撑板1与显示装置100的接触面、第二过渡部1021与桌面的接触面均增大,这样更进一步增强了对显示装置100的支撑稳定性。
本发明还提供一种显示设备,包括显示装置100和底座,底座采用如上所述的结构,底座的弯折板的顶部121、各拱形结构的顶部111均与显示装置100连接。
由于上述底座具有上述的技术效果,因此,包括该底座的显示设备也
应当具有相同的技术效果,在此不再赘述。
以上对本发明所提供的一种显示装置及其底座进行了详细介绍。本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想。应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以对本发明进行若干改进和修饰,这些改进和修饰也落入本发明权利要求的保护范围内。
Claims (20)
- 一种显示设备的底座,包括支撑板(1);其特征在于,所述支撑板(1)包括弯折板(12)和一个拱形结构(11),或者包括所述弯折板(12)和至少两个依次连接的所述拱形结构(11);所述弯折板(12)与端部的所述拱形结构(11)的外侧底部连接、且向上弯折;弯折板的顶部(121)、拱形结构的顶部(111)均与所述显示设备的显示装置(100)连接,拱形结构的底部(112)支撑于桌面。
- 根据权利要求1所述的显示设备的底座,其特征在于,所述拱形结构(11)的数目为至少两个、所述弯折板(12)的数目为一个或两个,所述支撑板(1)与所述显示装置(100)的各连接点之间的第一距离均相等,所述支撑板(1)与所述桌面的各支撑点之间的第二距离均相等,且第一距离等于第二距离。
- 根据权利要求1所述的显示设备的底座,其特征在于,所述拱形结构(11)的数目、所述弯折板(12)的数目均为一个,所述支撑板(1)与所述显示装置(100)的各连接点之间的距离为第一距离,所述支撑板(1)与所述桌面的各支撑点之间的距离为第二距离,所述第一距离等于所述第二距离。
- 根据权利要求1所述的显示设备的底座,其特征在于,所述拱形结构(11)的数目为一个、所述弯折板(12)的数目为两个,所述支撑板(1)与所述显示装置(100)的各连接点之间的第一距离相等,所述支撑板(1)与所述桌面的各支撑点之间的距离为第二距离,所述第一距离等于所述第二距离。
- 根据权利要求1所述的显示设备的底座,其特征在于,所述弯折板(12)的数目为一个,从所述弯折板(12)所在的一端到另一端的方向,所述支撑板(1)的厚度逐渐增大。
- 根据权利要求1所述的显示设备的底座,其特征在于,所述弯折板(12)的数目为两个,两个所述弯折板(12)分别连接于所有拱形结构11的两端部的外侧底端。
- 根据权利要求1-6任一项所述的显示设备的底座,其特征在于,所 述拱形结构的底部(112)宽度大于所述支撑板(1)的其余部分的宽度。
- 根据权利要求7所述的显示设备的底座,其特征在于,所述拱形结构(11)的下表面设有多个第一加强筋(113),多个所述第一加强筋(113)交叉围成多个三角形结构。
- 根据权利要求8所述的显示设备的底座,其特征在于,所述拱形结构(11)的下表面还设有与其轮廓线重合或平行的第二加强筋(114),多个所述第一加强筋(113)设于第二加强筋(114)的内部。
- 根据权利要求1-6任一项所述的显示设备的底座,其特征在于,所述弯折板的顶部(121)固定连接有连接杆(2),所述连接杆(2)通过第一螺纹紧固件与所述显示装置(100)连接;所述拱形结构的顶部(111)固定连接有连接板(3),所述连接板(3)与所述显示装置(100)平行设置、通过第二螺纹紧固件与所述显示装置(100)连接。
- 根据权利要求10所述的显示设备的底座,其特征在于,所述连接板(3)朝向所述显示装置(100)的侧面设有多个第三加强筋31,多个第三加强筋31交叉形成三角形结构。
- 一种显示设备的底座,包括支撑板(1);其特征在于,所述支撑板(1)包括一个拱形结构,或者包括依次连接的至少两个所述拱形结构(11),各拱形结构的顶部(111)均与所述显示设备的显示装置(100)连接,各拱形结构的底部(112)均支撑于桌面。
- 根据权利要求12所述的显示设备的底座,其特征在于,所述拱形结构的底部(112)宽度大于所述支撑板(1)的其余部分的宽度。
- 根据权利要求13所述的显示设备的底座,其特征在于,所述拱形结构(11)的下表面设有多个第一加强筋(113),多个所述第一加强筋(113)交叉围成多个三角形结构。
- 根据权利要求14所述的显示设备的底座,其特征在于,所述拱形结构(11)的下表面还设有与其轮廓线重合或平行的第二加强筋(114),多个所述第一加强筋(113)设于第二加强筋(114)的内部。
- 根据权利要求12-15任一项所述的显示设备的底座,其特征在于,所述拱形结构的顶部(111)固定连接有连接板(3),所述连接板(3)与所述显示装置(100)平行设置、通过第二螺纹紧固件与所述显示装置(100) 连接。
- 根据权利要求16所述的显示设备的底座,其特征在于,所述连接板(3)朝向所述显示装置(100)的侧面设有多个第三加强筋31,多个第三加强筋31交叉形成三角形结构。
- 一种显示设备的底座,包括支撑板(1);其特征在于,所述支撑板(1)为折线结构,折线结构顶部(101)与所述显示设备的显示装置(100)连接,折线结构底部(102)支撑于桌面。
- 根据权利要求18所述的显示设备的底座,其特征在于,所述折线结构顶部(101)的弯折处设有水平的第一过渡部(1011),所述折线结构底部(102)的弯折处设有水平的第二过渡部(1012),所述折线结构顶部(101)通过所述第一过渡部(1011)与所述显示装置(100)连接,所述折线结构底部(102)通过所述第二过渡部(1021)支撑于桌面。
- 一种显示设备,包括相互连接的显示装置(100)和底座;其特征在于,所述底座采用如权利要求1-19任一项所述的结构。
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201320555219.9U CN203463907U (zh) | 2013-09-06 | 2013-09-06 | 一种显示设备及其底座 |
| CN201320555219.9 | 2013-09-06 | ||
| CN201310404145.3A CN103453289B (zh) | 2013-09-06 | 2013-09-06 | 一种显示设备及其底座 |
| CN201310404145.3 | 2013-09-06 |
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Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20030156094A1 (en) * | 2002-02-20 | 2003-08-21 | Chen Yeong Kuen | Angular adjustment device for a plane display |
| US7819373B1 (en) * | 2009-08-27 | 2010-10-26 | Hannspree, Inc. | Display with a fluid balance structure |
| CN302361402S (zh) * | 2012-11-02 | 2013-03-20 | 乐视网信息技术(北京)股份有限公司 | 显示设备 |
| CN103453289A (zh) * | 2013-09-06 | 2013-12-18 | 乐视致新电子科技(天津)有限公司 | 一种显示设备及其底座 |
| CN203463907U (zh) * | 2013-09-06 | 2014-03-05 | 乐视致新电子科技(天津)有限公司 | 一种显示设备及其底座 |
-
2014
- 2014-09-05 WO PCT/CN2014/086061 patent/WO2015032352A1/zh not_active Ceased
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20030156094A1 (en) * | 2002-02-20 | 2003-08-21 | Chen Yeong Kuen | Angular adjustment device for a plane display |
| US7819373B1 (en) * | 2009-08-27 | 2010-10-26 | Hannspree, Inc. | Display with a fluid balance structure |
| CN302361402S (zh) * | 2012-11-02 | 2013-03-20 | 乐视网信息技术(北京)股份有限公司 | 显示设备 |
| CN103453289A (zh) * | 2013-09-06 | 2013-12-18 | 乐视致新电子科技(天津)有限公司 | 一种显示设备及其底座 |
| CN203463907U (zh) * | 2013-09-06 | 2014-03-05 | 乐视致新电子科技(天津)有限公司 | 一种显示设备及其底座 |
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