WO2019237674A1 - 交互智能平板的玻璃安装结构及交互智能平板 - Google Patents

交互智能平板的玻璃安装结构及交互智能平板 Download PDF

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Publication number
WO2019237674A1
WO2019237674A1 PCT/CN2018/118474 CN2018118474W WO2019237674A1 WO 2019237674 A1 WO2019237674 A1 WO 2019237674A1 CN 2018118474 W CN2018118474 W CN 2018118474W WO 2019237674 A1 WO2019237674 A1 WO 2019237674A1
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WIPO (PCT)
Prior art keywords
glass
connection
plate
inner corner
platform
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PCT/CN2018/118474
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English (en)
French (fr)
Inventor
李振兴
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广州视源电子科技股份有限公司
广州视臻信息科技有限公司
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Publication of WO2019237674A1 publication Critical patent/WO2019237674A1/zh

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    • 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
    • F16BDEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
    • F16B5/00Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them
    • F16B5/06Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them by means of clamps or clips
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements

Definitions

  • the invention relates to the technical field of infrared touch screens, in particular to a glass mounting structure of an interactive smart tablet and an interactive smart tablet.
  • the glass In the infrared touch device, the glass is fixed through a supporting table on the frame and a pressing block provided on the frame to clamp and fix the glass.
  • a pressing block provided on the frame to clamp and fix the glass.
  • the general combination structure of the pressed block frames is difficult to meet the installation and fixation of the glass at the corners in infrared touch devices.
  • the present invention overcomes the shortcomings of the prior art and provides a glass mounting structure of an interactive smart flat panel and an interactive smart flat panel to solve the glass mounting problem at the corner.
  • a glass mounting structure for an interactive smart flat panel includes a pressing block, glass, a frame provided around the edge of the glass, and an inner corner for connecting adjacent frames; the frame is provided with a connection platform and a support platform; The inner corner is arranged on the connecting table and connected to the frame; the pressing block includes a connected connecting plate and an abutting plate, the connecting plate is connected to the inner corner, and the abutting plate and the supporting table are spaced apart; the glass It is arranged on the supporting platform, one side of the glass is in contact with the supporting platform, and the other side of the glass is in contact with the abutting plate.
  • a support platform and a connection platform are provided on the frame.
  • the edge of the glass is set on the support table, and the connection plate of the pressure block is connected to the connection table by connecting with the inner corner.
  • the contact plate of the pressure block is spaced from the support table, and the contact plate is located on the support table.
  • the upper glass abuts and presses, and the abutment plate and the supporting table restrain the glass and the frame.
  • the pressing block is connected to the frame by connecting the connecting plate with the inner corner, eliminating the need to set a connecting table on the frame for connecting the pressing block; and using the abutting plate and the supporting table to match the glass
  • the abutment is pressed tightly to fix the glass on the frame.
  • the connecting plate is disposed between the inner corner and the connecting platform, and the connecting plate is in contact with the inner corner.
  • the connecting plate is arranged between the inner corner and the connecting table, so that the abutment of the inner plate on the connecting plate can be used to complete the installation and fixing of the connecting plate.
  • the abutting plate uses the abutting force of the inner plate on the connecting plate to press the glass against the support. On stage.
  • a PCB is provided in the frame, and the inner corner is projected on the PCB in the thickness direction of the interactive smart tablet.
  • the projection of the inner corner in the thickness direction of the interactive smart tablet is on the PCB, which can reduce the width of the frame.
  • a first mounting groove is provided on a side of the connecting platform opposite to the inner corner, and the connecting plate is disposed in the first mounting groove.
  • the connecting plate is located in the first mounting groove provided on the connecting platform, the connecting plate is positioned on the connecting platform through the first mounting groove, so as to ensure the installation and positioning accuracy of the connecting plate, thereby ensuring that the abutting plate is located in contact with the glass. Design location; and reduced the size of the interactive smart tablet in the thickness direction of the interactive smart tablet.
  • the depth of the first mounting groove is not less than the thickness of the connecting plate in the depth direction of the first mounting groove.
  • the inner corner can be recessed and deformed in a direction close to the connecting platform to achieve abutment with the connecting plate; this can prevent the inner turning angle from protruding away from the connecting platform, thereby avoiding protrusion Affects the installation fit of the frame and other components.
  • the smaller the difference between the depth of the first mounting groove and the thickness of the connecting plate is, the better, so that the amount of deformation of the inner corner can also be reduced.
  • a second mounting groove is provided on a side of the inner corner opposite to the connection platform, and the connection plate is disposed in the second mounting groove.
  • the depth of the second mounting groove is not less than the thickness of the connecting plate in the depth direction of the second mounting groove.
  • the inner corner can be recessed and deformed in a direction close to the connecting platform to abut the connecting plate; thus, the inner corner can be prevented from protruding away from the connecting platform, thereby avoiding protrusion. Affects the installation fit of the frame and other components.
  • the smaller the difference between the depth of the second mounting groove and the thickness of the connecting plate is, the better, so that the amount of deformation of the inner corner can also be reduced.
  • connection platform is higher than the support platform in the thickness direction of the glass;
  • pressure block further includes a web, the connection plate is spaced from the abutment plate, and one side of the web is connected to the connection plate The other side of the web is connected to the abutting plate.
  • the frame is provided with a step-shaped accommodating cavity for accommodating the infrared detection device, and the support table and the connection table respectively correspond to the step-shaped accommodating cavity, so that the material consumption of the frame can be reduced, and the cost can be reduced; meanwhile, each component can be reduced The space between them makes the structure of the glass mounting structure compact.
  • the pressing block is a sheet metal piece, and the connection plate fastened to the connection table and the abutment plate fastened to the glass are respectively bent and formed at both ends of the sheet metal piece, and the connection plate and the abutment The plates are respectively bent in directions away from each other, and the web is formed between the connecting plate and the abutting plate.
  • the pressing block is formed by sheet metal bending, with simple structure and convenient processing.
  • the inner corner is provided with a first connection hole
  • the connection plate is provided with a second connection hole corresponding to the first connection hole
  • the connection table is provided with a third connection corresponding to the second connection hole.
  • a first fastener is passed through the first connection hole, the second connection hole and the third connection hole.
  • the inner corner is provided with a fourth connection hole
  • the connection platform is provided with a fifth connection hole
  • the fourth connection hole and the fifth connection hole are provided with a second fastener therein.
  • a second fastener is inserted through the fourth connection hole of the connection platform and the fifth connection hole of the internal rotation angle. The stability of the connection between the internal rotation angle and the connection platform can be increased through the cooperation of the second fastener and the first fastening. .
  • An interactive smart tablet includes a side frame, an upper frame, a pressing block, an inner corner and glass.
  • the upper frame and the side frame are arranged around the edge of the glass, one end of the inner corner is connected to the side frame, and the other end of the inner corner is connected with The upper frame is connected, and the side frame is provided with a connection platform and a support platform; the inner corner is arranged on the connection platform and is connected to the connection platform; the pressing block includes a connected connection plate and an abutment plate, and the connection plate Connected to the inner corner, the abutting plate is arranged at a distance from the supporting platform; the glass is arranged on the supporting platform, one side of the glass abuts against the supporting platform, and the other side of the glass abuts against the abutting plate.
  • FIG. 1 is a glass installation structure of an interactive smart tablet and a schematic structural diagram of an interactive smart tablet according to an embodiment of the present invention
  • Figure 2 is an exploded view of Figure 1;
  • FIG. 3 is a schematic structural diagram of an inner corner according to an embodiment of the present invention.
  • DESCRIPTION OF SYMBOLS 100, pressure block, 110, connection plate, 111, second connection hole, 120, abutment plate, 130, web, 200, frame, 210, support stand, 220, connection stand, 222, first Three connection holes, 223, positioning holes, 300, glass, 400, inner corner, 410, second mounting groove, 420, first connection hole, 430, fourth connection hole, 440, positioning column, 500, side frame, 600 , Top border.
  • this embodiment provides a glass mounting structure for an interactive smart flat panel, including a pressing block 100, a frame 200, glass 300, and an inner corner 400 for connecting adjacent frames 200; the frame 200 A connecting platform 220 and a supporting platform 210 are provided thereon.
  • the inner corner 400 is disposed on the connecting platform 220 and is connected to the frame 200.
  • the pressing block 100 includes a connecting plate 110 and an abutting plate 120.
  • the corner 400 is connected, the abutting plate 120 is spaced from the support base 210; the glass 300 is disposed on the support base 210, one side of the glass 300 is abutted against the support base 210, and the other side of the glass 300 is abutted against The connecting plate 120 abuts.
  • a support stand 210 and a connection stand 220 are provided on the frame 200.
  • the edge of the glass 300 is set on the supporting table 210
  • the connecting plate 110 of the pressing block 100 is connected to the connecting table 220 by connecting with the inner corner 400
  • the abutting plate 120 of the pressing block 100 is spaced from the supporting table 210.
  • the abutting plate 120 abuts and presses the glass 300 on the support base 210, and the abutting plate 120 and the support base 210 limit the glass 300 to the frame 200.
  • the pressing block 100 is connected to the frame 200 by connecting the connecting plate 110 to the inner corner 400, eliminating the need to provide a connection table for connecting the pressing block 100 on the frame 200; and using abutment
  • the plate 120 cooperates with the support base 210 to abut and press the glass 300 to fix the glass 300 on the frame 200. In this way, the problem of fixing the glass 300 at the corner of the frame 200 is solved. With this structure, the glass 300 can be fixed at the corners of the frame 200 even when the frame 200 is narrowed.
  • the connecting plate 110 is disposed between the inner corner 400 and the connecting base 220, and the connecting plate 110 is in contact with the inner corner 400.
  • the connecting plate 110 is arranged between the inner corner 400 and the connecting table 220, so that the abutment of the inner plate 400 to the connecting plate 110 can be used to complete the installation and fixation of the connecting plate 110, while the abutting plate 120 uses the inner corner 400 to connect the connecting plate 110.
  • the abutting force presses the glass 300 on the supporting table 210.
  • the connecting plate 110 may be connected to a side of the inner corner 400 away from the connection base 220 through a connecting member, or connected to other positions on the inner corner 400 through a connecting member.
  • a PCB (not shown) is provided in the frame 200, and the inner corner 400 is projected on the PCB in the thickness direction of the frame 200.
  • the projection of the inner corner 400 in the thickness direction of the interactive smart tablet is on the PCB, so that the width of the frame 200 can be reduced.
  • the aforementioned PCB is an infrared touch PCB.
  • the thickness direction of the interactive smart tablet is perpendicular to the direction of the display screen in the interactive smart tablet.
  • a second mounting groove 410 is provided on a side of the inner corner 400 opposite to the frame 200, and the connecting plate 110 is disposed in the second mounting groove 410.
  • the connecting plate 110 is located in the second mounting groove 410 provided on the inner corner 400, the connecting plate 110 is positioned on the inner corner 400 through the second mounting groove 410, so that the installation and positioning accuracy of the connecting plate 110 can be ensured, thereby ensuring abutment
  • the plate 120 is located at a design position abutting the glass 300; at the same time, the size of the interactive smart tablet in the thickness direction of the interactive smart tablet is reduced.
  • the depth of the second mounting groove 410 is not less than the thickness of the connecting plate 110 in the depth direction of the second mounting groove 410.
  • the inner turning angle 400 can be abutted to the connecting plate 110 by being deformed in a direction close to the connecting base 220; thus, the inner turning angle 400 can be prevented from protruding away from the connecting base 220. Therefore, the protrusions are prevented from affecting the installation and cooperation of the frame 200 and other components.
  • the smaller the difference between the depth of the second mounting groove 410 and the thickness of the connecting plate 110 is, the better, and thus the amount of deformation of the inner corner 400 can also be reduced.
  • a first mounting groove (not shown in the figure) is provided on a side of the connection base 220 opposite to the inner corner 400, and the connection plate 110 is provided in the first installation.
  • the connecting plate 110 is located in the first mounting groove provided on the connecting table 220, the connecting plate 110 is positioned on the connecting table 220 through the first mounting groove, so that the installation and positioning accuracy of the connecting plate 110 can be guaranteed
  • the connecting plate 120 is located at a design position abutting the glass 300; at the same time, the size of the interactive smart tablet in the thickness direction of the interactive smart tablet is reduced.
  • installation grooves (not shown in the drawings) opposite to the notches may be respectively formed on the inner corner 400 and the connection base 220.
  • the depth of the first mounting groove is not less than the thickness of the connecting plate 110 in the depth direction of the first mounting groove.
  • the depth of the two mounting grooves is not less than the thickness of the connection plate 110.
  • the connecting platform 220 is higher than the supporting platform 210 in the thickness direction of the glass 300; the pressing block 100 further includes a web 130, and the connecting plate 110 and the abutting plate 120 are spaced from each other. One side of the plate 130 is connected to the connecting plate 110, and the other side of the web 130 is connected to the abutting plate 120.
  • a step-shaped accommodating cavity (not shown in the figure) for accommodating the PCB is provided in the frame 200, and the supporting platform 210 and the connecting platform 220 respectively correspond to the step-shaped accommodating cavity, so that the material consumption of the frame 200 can be reduced , Saving costs; at the same time, it can also reduce the spacing between various components, so that the structure of the glass installation structure is compact.
  • the pressing block 100 is a sheet metal piece, and the connection plate 110 fastened to the connection table 220 and the abutment plate 120 fastened to the glass 300 are respectively formed at two ends of the sheet metal piece.
  • the connection plate 110 And the abutting plate 120 are bent in directions away from each other, and the web 130 is formed between the connecting plate 110 and the abutting plate 120.
  • the pressing block 100 is formed by sheet metal bending, and has a simple structure and convenient processing.
  • the inner corner 400 is provided with a first connection hole 420
  • the connection plate 110 is provided with a second connection hole 111 corresponding to the first connection hole 420
  • the connection table 220 is provided with A third connection hole 222 corresponding to the second connection hole 111 is formed with a first fastener (not shown) in the first connection hole 420, the second connection hole 111, and the third connection hole 222.
  • the structure of pressing the connection plate 110 between the inner corner 400 and the connection table 220 is simple by inserting a first fastener in the first connection hole 420, the second connection hole 111, and the third connection hole 222.
  • the inner corner 400 is provided with a fourth connection hole 430
  • the connection table 220 is provided with a fifth connection hole (not shown in the figure)
  • the fourth connection hole 430 and the fifth connection hole A second fastener is worn.
  • a second fastener is inserted through the fourth connection hole 430 of the connection table 220 and the fifth connection hole of the inner corner 400. The cooperation between the second fastener and the first fastening can increase the inner corner 400 and the connection table. 220 connection stability.
  • first and second fasteners may be detachable fasteners such as bolts and screws, and may also be non-removable components such as rivets.
  • a positioning post 440 is provided on the inner corner 400, and a positioning hole 223 is provided on the connection table 220.
  • the positioning post 440 is used for installation. Within the positioning hole 223.
  • An embodiment of the present invention further provides an interactive smart tablet, which includes a side frame 500, an upper frame 600, a pressing block 100, an inner corner 400, and a glass 300.
  • the upper frame 600 and the side frame 500 are disposed around the edge of the glass 300.
  • One end of the corner 400 is connected to the side frame 500, and the other end of the inner corner 400 is connected to the upper frame 600.
  • the side frame 500 is provided with a connecting platform 220 and a support platform 210.
  • the inner corner 400 is disposed on the connecting platform 220 and It is connected to the connecting platform 220;
  • the pressing block 100 includes a connecting connecting plate 110 and an abutting plate 120, the connecting plate 110 is connected to the inner corner 400, and the abutting plate 120 is spaced from the supporting platform 220;
  • the glass 300 is disposed on the support base 210, one side of the glass 300 is in contact with the support base 210, and the other side of the glass 300 is in contact with the contact plate 120.
  • the glass mounting structure can solve the problem that it is difficult to install the glass 300 at the corner connection of the adjacent frame 200 in the interactive smart tablet.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Casings For Electric Apparatus (AREA)
  • Securing Of Glass Panes Or The Like (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)

Abstract

本发明涉及一种交互智能平板的玻璃安装结构及交互智能平板,交互智能平板的玻璃安装结构包括压块、玻璃、用于围绕所述玻璃边缘设置的边框及用于连接相邻边框的内转角;所述边框上设有连接台及支撑台;所述内转角设置于连接台上并与边框连接;所述压块包括连接的连接板和抵接板,所述连接板与内转角连接,所述抵接板与支撑台间隔设置;所述玻璃设置于支撑台上,玻璃的一侧与支撑台抵接,玻璃的另一侧与抵接板抵接;在边框的转角连接处,压块利用连接板与内转角连接的方式连接在边框上,省去需要在边框上设置用于连接压块的连接台,如此解决了边框转角处玻璃固定的问题。

Description

交互智能平板的玻璃安装结构及交互智能平板 技术领域
本发明涉及红外触摸屏技术领域,特别是涉及一种交互智能平板的玻璃安装结构及交互智能平板。
背景技术
随着科技的进步社会的发展,信息的传播在我们的生活生产中的地位已经越来越重要,随之而来的,各种信息媒体机应运而生,为了增加人机交互的便捷性,媒体机上开始出现触摸设备,红外触摸设备既是其中的一种。
红外触摸设中对玻璃的固定一般过边框上的支撑台和设置于边框上的压块实现对玻璃的夹持固定。但随着对红外触摸设备中窄边框的极致追求,普通的压块边框组合结构难以满足红外触摸设备中转角处玻璃的安装固定。
发明内容
基于此,本发明在于克服现有技术的缺陷,提供一种交互智能平板的玻璃安装结构及交互智能平板,来解决转角处的玻璃安装问题。
一种交互智能平板的玻璃安装结构,包括压块、玻璃、用于围绕所述玻璃边缘设置的边框及用于连接相邻边框的内转角;所述边框上设有连接台及支撑台;所述内转角设置于连接台上并与边框连接;所述压块包括连接的连接板和抵接板,所述连接板与内转角连接,所述抵接板与支撑台间隔设置;所述玻璃设置于支撑台上,玻璃的一侧与支撑台抵接,玻璃的另一侧与抵接板抵接。
上述交互智能平板的玻璃安装结构,边框上设有支撑台及连接台。使用中, 玻璃的边缘设置于支撑台上,压块的连接板通过与内转角连接的方式连接于连接台上,压块的抵接板与支撑台间隔设置,通过抵接板对位于支撑台上的玻璃抵接按压,抵接板与支撑台将玻璃限制与边框上。在边框的转角连接处,压块利用连接板与内转角连接的方式连接在边框上,省去需要在边框上设置用于连接压块的连接台;并且利用抵接板与支撑台配合对玻璃的抵接压紧,将玻璃固定于边框上。如此解决了边框转角处玻璃固定的问题。通过此种结构也能在边框变窄的情况下,完成边框转角处的玻璃固定。
一个实施例中,所述连接板设置于内转角与连接台之间,所述连接板与内转角抵接。将连接板设置于内转角与连接台之间,如此能利用内转角对连接板的抵接完成连接板的安装固定,同时抵接板利用内转角对连接板的抵接力将玻璃压紧于支撑台上。
一个实施例中,所述边框内设有PCB,所述内转角在交互智能平板厚度方向上的投影在PCB上。内转角在交互智能平板厚度方向上的投影在PCB上,如此能减小边框的宽度。
一个实施例中,所述连接台上与内转角相对的一侧上设有第一安装槽,所述连接板设置于第一安装槽内。当连接板位于连接台上设置的第一安装槽内时,连接板通过第一安装槽定位于连接台上,如此能保证连接板的安装定位精度,进而保证抵接板位于与玻璃抵接的设计位置;并且减小了交互智能平板在交互智能平板厚度方向上的尺寸。
一个实施例中,所述第一安装槽的深度不小于连接板在第一安装槽深度方向上的厚度。当连接板的厚度小于第一安装槽的厚度时,可通过内转角向靠近连接台的方向凹陷变形实现与连接板抵接;如此能避免内转角向远离连接台方向凸起,进而避免凸起影响边框与其他零部件的安装配合。当然,需要说明的 是,第一安装槽的深度与连接板的厚度差越小越好,如此也能降低内转角的变形量。
一个实施例中,所述内转角上与连接台相对的一侧上设有第二安装槽,所述连接板设置于第二安装槽内。当连接板位于内转角上设置的第二安装槽内时,连接板通过第二安装槽定位于内转角上,如此能保证连接板的安装定位精度,进而保证抵接板位于与玻璃抵接的设计位置;同时减小了交互智能平板在交互智能平板厚度方向上的尺寸。
一个实施例中,所述第二安装槽的深度不小于连接板在第二安装槽深度方向的厚度。当连接板的厚度小于第二安装槽的厚度时,可通过内转角向靠近连接台的方向凹陷变形实现与连接板抵接;如此能避免内转角向远离连接台方向凸起,进而避免凸起影响边框与其他零部件的安装配合。当然,需要说明的是,第二安装槽的深度与连接板的厚度差越小越好,如此也能降低内转角的变形量。
一个实施例中,在玻璃的厚度方向上所述连接台高于支撑台;所述压块还包括腹板,所述连接板与抵接板间隔设置,所述腹板的一侧与连接板连接,所述腹板的另一侧与抵接板连接。边框内设有用于容纳红外检测器件的台阶状的容置腔,支撑台和连接台分别与台阶状的容置腔对应,如此能减少边框的材料消耗,节省成本;同时也能缩小各个零部件之间的间距,使玻璃安装结构的结构紧凑。
一个实施例中,所述压块为钣金件,与连接台扣合的连接板和与玻璃扣合的抵接板分别弯折成型于钣金件的两端,所述连接板和抵接板分别向相互远离的方向弯折,所述连接板和抵接板之间形成所述腹板。压块采用钣金弯折成型,结构简单,加工方便。
一个实施例中,所述内转角设有第一连接孔,所述连接板设有与第一连接 孔对应的第二连接孔,所述连接台设有与第二连接孔对应的第三连接孔,所述第一连接孔、第二连接孔及第三连接孔内穿设有第一紧固件。通过在第一连接孔、第二连接孔及第三连接孔内穿设第一紧固件的方式,将连接板按压于内转角及连接台之间的结构简单。
一个实施例中,所述内转角设有第四连接孔,所述连接台设有第五连接孔,所述第四连接孔和第五连接孔内穿设有第二紧固件。在连接台的第四连接孔和内转角的第五连接孔内穿设有第二紧固件,通过第二紧固件与第一紧固的配合能够增加内转角与连接台的连接稳定性。
一种交互智能平板,包括侧边框、上边框、压块、内转角及玻璃,所述上边框和侧边框围绕玻璃边缘设置,所述内转角的一端与侧边框连接,内转角的另一端与上边框连接,所述侧边框上设有连接台及支撑台;所述内转角设置于连接台上并与连接台连接;所述压块包括连接的连接板和抵接板,所述连接板与内转角连接,所述抵接板与支撑台间隔设置;所述玻璃设置于支撑台上,玻璃的一侧与支撑台抵接,玻璃的另一侧与抵接板抵接。如此解决了交互智能平板中相邻边框转角连接处的玻璃难安装的问题
附图说明
图1为本发明实施例所述的交互智能平板的玻璃安装结构及交互智能平板的结构示意图;
图2为图1的爆炸图;
图3为本发明实施例所述的内转角的结构示意图。
附图标记说明:100、压块,110、连接板,111、第二连接孔,120、抵接板,130、腹板,200、边框,210、支撑台,220、连接台,222、第三连接孔,223、 定位孔,300、玻璃,400、内转角,410、第二安装槽,420、第一连接孔,430、第四连接孔,440、定位柱,500、侧边框,600、上边框。
具体实施方式
为了便于理解本发明,下面将参照相关附图对本发明进行更全面的描述。附图中给出了本发明的较佳实施方式。但是,本发明可以以许多不同的形式来实现,并不限于本文所描述的实施方式。相反地,提供这些实施方式的目的是使对本发明的公开内容理解的更加透彻全面。
需要说明的是,当元件被称为“固定于”另一个元件,它可以直接在另一个元件上或者也可以存在居中的元件。当一个元件被认为是“连接”另一个元件,它可以是直接连接到另一个元件或者可能同时存在居中元件。相反,当元件被称作“直接在”另一元件“上”时,不存在中间元件。本文所使用的术语“垂直的”、“水平的”、“左”、“右”以及类似的表述只是为了说明的目的,并不表示是唯一的实施方式。
除非另有定义,本文所使用的所有的技术和科学术语与属于本发明的技术领域的技术人员通常理解的含义相同。本文中在本发明的说明书中所使用的术语只是为了描述具体的实施方式的目的,不是旨在于限制本发明。本文所使用的术语“及/或”包括一个或多个相关的所列项目的任意的和所有的组合。
结合图1、图2所示,本实施例提供一种交互智能平板的玻璃安装结构,包括压块100、边框200、玻璃300及用于连接相邻边框200的内转角400;所述边框200上设有连接台220及支撑台210,所述内转角400设置于连接台220上并与边框200连接;所述压块100包括连接板110及抵接板120,所述连接板110与内转角400连接,所述抵接板120与支撑台210间隔设置;所述玻璃300 设置于支撑台210上,所述玻璃300的一侧与支撑台210抵接,玻璃300的另一侧与抵接板120抵接。
上述交互智能平板的玻璃安装结构,边框200上设有支撑台210及连接台220。使用中,玻璃300的边缘设置于支撑台210上,压块100的连接板110通过与内转角400连接的方式连接于连接台220上,压块100的抵接板120与支撑台210间隔设置,通过抵接板120对位于支撑台210上的玻璃300抵接按压,抵接板120与支撑台210将玻璃300限制与边框200上。在边框200的转角连接处,压块100利用连接板110与内转角400连接的方式连接在边框200上,省去需要在边框200上设置用于连接压块100的连接台;并且利用抵接板120与支撑台210配合对玻璃300的抵接压紧,将玻璃300固定于边框200上。如此解决了边框200转角处玻璃300固定的问题。通过此种结构也能在边框200变窄的情况下,完成边框200转角处的玻璃300固定。
具体地,在本实施例中,所述连接板110设置于内转角400与连接台220之间,所述连接板110与内转角400抵接。将连接板110设置于内转角400与连接台220之间,如此能利用内转角400对连接板110的抵接完成连接板110的安装固定,同时抵接板120利用内转角400对连接板110的抵接力将玻璃300压紧于支撑台210上。
需要说明的是,在其他实施例中,连接板110可以通过连接件连接于内转角400远离连接台220的一侧或者通过连接件连接于内转角400上的其他位置。
一个实施例中,所述边框200内设有PCB(图中未示出),所述内转角400在边框200厚度方向上的投影在PCB上。内转角400在交互智能平板厚度方向上的投影在PCB上,如此能减小边框200的宽度。具体前述的PCB是红外触控PCB。
需要说明的是,前述交互智能平板厚度方向是垂直于交互智能平板中显示屏的方向。
具体地,在本实施例中,所述内转角400上与边框200相对的一侧上设有第二安装槽410,所述连接板110设置于第二安装槽410内。当连接板110位于内转角400上设置的第二安装槽410内时,连接板110通过第二安装槽410定位于内转角400上,如此能保证连接板110的安装定位精度,进而保证抵接板120位于与玻璃300抵接的设计位置;同时减小了交互智能平板在交互智能平板厚度方向上的尺寸。
具体地,在本实施例中,所述第二安装槽410的深度不小于连接板110在第二安装槽410深度方向的厚度。连接板110的厚度小于第二安装槽410的深度时,可通过内转角400向靠近连接台220的方向凹陷变形实现与连接板110抵接;如此能避免内转角400向远离连接台220方向凸起,进而避免凸起影响边框200与其他零部件的安装配合。当然,需要说明的是,第二安装槽410的深度与连接板110的厚度差越小越好,如此也能降低内转角400的变形量。
需要说明的是,在其他实施例中,所述连接台220上与内转角400相对的一侧上设有第一安装槽(图中未示出),所述连接板110设置于第一安装槽内;当连接板110位于连接台220上设置的第一安装槽内时,连接板110通过第一安装槽定位于连接台220上,如此能保证连接板110的安装定位精度,进而保证抵接板120位于与玻璃300抵接的设计位置;同时减小了交互智能平板在交互智能平板厚度方向上的尺寸。以及,可以是在内转角400和连接台220上分别开设槽口相对的安装槽(图中未示出)。
需要说明的是,在其他实施例中,当所述连接台220上设有第一安装槽时,所述第一安装槽的深度不小于连接板110在第一安装槽深度方向上的厚度。或 者,当在所述连接台220和在内转角400和连接台220上分别开设槽口相对的两个安装槽时,两个安装槽的深度和不小于连接板110的厚度。
一个实施例中,在玻璃300的厚度方向上所述连接台220高于支撑台210;所述压块100还包括腹板130,所述连接板110与抵接板120间隔设置,所述腹板130的一侧与连接板110连接,所述腹板130的另一侧与抵接板120连接。边框200内设有用于容纳所述PCB的台阶状的容置腔(图中未示出),支撑台210和连接台220分别与台阶状的容置腔对应,如此能减少边框200的材料消耗,节省成本;同时也能缩小各个零部件之间的间距,使玻璃安装结构的结构紧凑。
一个实施例中,压块100为钣金件,与连接台220扣合的连接板110和与玻璃300扣合的抵接板120分别完成成型于钣金件的两端,所述连接板110和抵接板120分别相相互远离的方向弯折,所述连接板110和抵接板120之间形成所述腹板130。压块100采用钣金弯折成型,结构简单,加工方便。
具体地,在本实施例中,所述内转角400设有第一连接孔420,所述连接板110设有与第一连接孔420对应的第二连接孔111,所述连接台220设有与第二连接孔111对应的第三连接孔222,所述第一连接孔420、第二连接孔111及第三连接孔222内穿设有第一紧固件(图中未示出)。通过在第一连接孔420、第二连接孔111及第三连接孔222内穿设第一紧固件的方式,将连接板110按压于内转角400及连接台220之间的结构简单。
一个实施例中,所述内转角400设有第四连接孔430,所述连接台220设有第五连接孔(图中未示出),所述第四连接孔430和第五连接孔内穿设有第二紧固件。在连接台220的第四连接孔430和内转角400的第五连接孔内穿设有第二紧固件,通过第二紧固件与第一紧固的配合能够增加内转角400与连接台220的连接稳定性。
具体地,前述第一紧固件、第二紧固件可以是螺栓、螺钉等可拆卸的紧固件,也可以是铆钉之类的不可拆卸的零部件。
具体地,结合图2、图3所示,在本实施例中,所述内转角400上设有定位柱440,所述连接台220上设有定位孔223,所述定位柱440用于安装在定位孔223内。
本发明实施例还提供一种交互智能平板,包括侧边框500、上边框600、压块100、内转角400及玻璃300,所述上边框600和侧边框500围绕玻璃300边缘设置,所述内转角400的一端与侧边框500连接,内转角400的另一端与上边框600连接,所述侧边框500上设有连接台220及支撑台210;所述内转角400设置于连接台220上并与连接台220连接;所述压块100包括连接的连接板110和抵接板120,所述连接板110与内转角400连接,所述抵接板120与支撑台220间隔设置;所述玻璃300设置于支撑台210上,玻璃300的一侧与支撑台210抵接,玻璃300的另一侧与抵接板120抵接。通过玻璃安装结构能够解决交互智能平板中相邻边框200转角连接处的玻璃300难安装的问题。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (12)

  1. 一种交互智能平板的玻璃安装结构,其特征在于,包括压块、玻璃、用于围绕所述玻璃边缘设置的边框及用于连接相邻边框的内转角;所述边框上设有连接台及支撑台;所述内转角设置于连接台上并与边框连接;所述压块包括连接的连接板和抵接板,所述连接板与内转角连接,所述抵接板与支撑台间隔设置;所述玻璃设置于支撑台上,玻璃的一侧与支撑台抵接,玻璃的另一侧与抵接板抵接。
  2. 根据权利要求1所述的交互智能平板的玻璃安装结构,其特征在于,所述连接板设置于内转角与连接台之间,所述连接板与内转角抵接。
  3. 根据权利要求1所述的交互智能平板的玻璃安装结构,其特征在于,所述边框内设有PCB,所述内转角在交互智能平板厚度方向上的投影在PCB上。
  4. 根据权利要求2所述的交互智能平板的玻璃安装结构,其特征在于,所述连接台上与内转角相对的一侧上设有第一安装槽,所述连接板设置于第一安装槽内。
  5. 根据权利要求4所述的交互智能平板的玻璃安装结构,其特征在于,所述第一安装槽的深度不小于连接板在第一安装槽深度方向上的厚度。
  6. 根据权利要求2所述的交互智能平板的玻璃安装结构,其特征在于,所述内转角上与连接台相对的一侧上设有第二安装槽,所述连接板设置于第二安装槽内。
  7. 根据权利要求6所述的交互智能平板的玻璃安装结构,其特征在于,所述第二安装槽的深度不小于连接板在第二安装槽深度方向的厚度。
  8. 根据权利要求1所述的交互智能平板的玻璃安装结构,其特征在于,在玻璃的厚度方向上所述连接台高于支撑台;所述压块还包括腹板,所述连接板 与抵接板间隔设置,所述腹板的一侧与连接板连接,所述腹板的另一侧与抵接板连接。
  9. 根据权利要求8所述的交互智能平板的玻璃安装结构,其特征在于,所述压块为钣金件,与连接台扣合的连接板和与玻璃扣合的抵接板分别弯折成型于钣金件的两端,所述连接板和抵接板分别向相互远离的方向弯折,所述连接板和抵接板之间形成所述腹板。
  10. 根据权利要求1-9任一项所述的交互智能平板的玻璃安装结构,其特征在于,所述内转角设有第一连接孔,所述连接板设有与第一连接孔对应的第二连接孔,所述连接台设有与第二连接孔对应的第三连接孔,所述第一连接孔、第二连接孔及第三连接孔内穿设有第一紧固件。
  11. 根据权利要求10所述的交互智能平板的玻璃安装结构,其特征在于,所述内转角设有第四连接孔,所述连接台设有第五连接孔,所述第四连接孔和第五连接孔内穿设有第二紧固件。
  12. 一种交互智能平板,其特征在于,包括侧边框、上边框、压块、内转角及玻璃,所述上边框和侧边框围绕玻璃边缘设置,所述内转角的一端与侧边框连接,内转角的另一端与上边框连接,所述侧边框上设有连接台及支撑台;所述内转角设置于连接台上并与连接台连接;所述压块包括连接的连接板和抵接板,所述连接板与内转角连接,所述抵接板与支撑台间隔设置;所述玻璃设置于支撑台上,玻璃的一侧与支撑台抵接,玻璃的另一侧与抵接板抵接。
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