WO2023102998A1 - 连接组件以及拼接显示器 - Google Patents

连接组件以及拼接显示器 Download PDF

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Publication number
WO2023102998A1
WO2023102998A1 PCT/CN2021/138695 CN2021138695W WO2023102998A1 WO 2023102998 A1 WO2023102998 A1 WO 2023102998A1 CN 2021138695 W CN2021138695 W CN 2021138695W WO 2023102998 A1 WO2023102998 A1 WO 2023102998A1
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WO
WIPO (PCT)
Prior art keywords
groove
toothing
base
width
display screen
Prior art date
Application number
PCT/CN2021/138695
Other languages
English (en)
French (fr)
Inventor
王敏
陈尧
Original Assignee
Tcl华星光电技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tcl华星光电技术有限公司 filed Critical Tcl华星光电技术有限公司
Priority to US17/622,836 priority Critical patent/US20240036797A1/en
Publication of WO2023102998A1 publication Critical patent/WO2023102998A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • 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
    • 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
    • F16B5/0607Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them by means of clamps or clips joining sheets or plates to each other
    • F16B5/0621Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them by means of clamps or clips joining sheets or plates to each other in parallel relationship
    • F16B5/0664Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them by means of clamps or clips joining sheets or plates to each other in parallel relationship at least one of the sheets or plates having integrally formed or integrally connected snap-in-features
    • 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
    • G09F9/30Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
    • G09F9/302Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements characterised by the form or geometrical disposition of the individual elements
    • G09F9/3026Video wall, i.e. stackable semiconductor matrix display modules

Definitions

  • the present application relates to the display field, in particular to a connection component and a splicing display.
  • the applications of displays are becoming more and more extensive, not only for TVs, monitors, industrial displays, and medical displays, but also for public displays.
  • public display applications it is generally required that the display has a larger display area to meet the requirements of people watching from a long distance and displaying a large amount of information.
  • the liquid crystal display (Liquid Crystal Display (LCD for short) development status the conventional size is 32 inches to 55 inches. If displays in this size range are used for public display, multi-screen splicing is required.
  • Splicing screens usually transport multiple screens to the site, and then assemble and splice the multiple screens in sequence. In order to ensure the splicing accuracy, workers need to repeatedly confirm the position of the screens. This will undoubtedly increase the complexity of the installation steps and lead to low installation efficiency.
  • Embodiments of the present application provide a connection assembly and a splicing display, which can solve the technical problems of complicated installation steps and low installation efficiency of existing splicing screens.
  • connection assembly including:
  • the first base is provided with a first guiding structure
  • the connecting piece is used to lock the first base and the second base together, and the connecting piece is provided with a first matching structure corresponding to the first guiding structure and a first matching structure corresponding to the second guiding structure.
  • the second matching structure ;
  • the first guiding structure In the locked state, the first guiding structure is toothed and connected to the first matching structure, and the second guiding structure is toothed and connected to the second matching structure; in the unlocked state, the first guiding structure The structure is separated from the first mating structure, and the second guiding structure is separated from the second mating structure.
  • the first base is fixed to the first display screen
  • the second base is fixed to the second display screen
  • the first base and the second base can be locked together through the connecting piece, so that The first display screen and the second display screen are closely spliced, which is beneficial to eliminate the seam, the first display screen and the second display screen are not easy to shift, and workers do not need to repeatedly confirm the position, which effectively simplifies the installation process of the spliced display screen and improves Installation efficiency.
  • the first guide structure is a slide rail
  • the first matching structure is a slide groove
  • the first guide structure in a locked state, is slidably connected to the First fit structure.
  • the first guide structure is set as a slide rail
  • the first matching structure is set as a slide groove, so that the first guiding structure is slidably connected to the first matching structure.
  • the first base It is easy to assemble with connecting pieces and has a simple structure.
  • the first guiding structure includes a first connecting portion and a first toothing portion, the first connecting portion is connected to the first base, and the first teeth The engaging portion is connected to the first connecting portion, and the width of the first engaging portion is greater than the width of the first connecting portion;
  • the first matching structure includes a first toothing groove and a first connecting groove, the first toothing groove is set corresponding to the first toothing part, and the first connecting groove communicates with the first toothing groove , the first connection groove is set corresponding to the first connection part;
  • the first gearing portion is plugged into the first gearing groove, and the first connecting portion is plugged into the first connecting groove.
  • the first toothing part in the locked state, the first toothing part is inserted into the first toothing groove, and the first connecting part is inserted into the first connecting groove. Since the width of the first toothing part is larger than The width of the first connecting part means that the first toothing part cannot move from the first toothing groove to the first connecting groove, so that the first guiding structure can be prevented from being disengaged from the first matching structure, and the reliability of the connecting assembly can be effectively improved. sex.
  • the width of the first toothing portion is gradually expanded from the first connecting portion toward the first toothing portion, and the first toothing portion The width of the groove is gradually expanded from the first connecting groove toward the first meshing groove.
  • the first toothing part cannot move from the first toothing groove to the first connecting groove, which can prevent the first guiding structure from being separated from the first matching structure, and effectively improve the reliability of the connecting assembly .
  • the first guide structure is a slide groove
  • the first matching structure is a slide rail
  • in a locked state, the first matching structure is slidably connected to the The first guide structure.
  • the first guide structure as a chute and setting the first matching structure as a slide rail
  • the first matching structure is slidably connected to the first guiding structure.
  • the first base It is easy to assemble with connecting pieces and has a simple structure.
  • the first matching structure includes a first connecting portion and a first toothing portion, the first connecting portion is connected to the first base, and the first teeth The engaging portion is connected to the first connecting portion, and the width of the first engaging portion is greater than the width of the first connecting portion;
  • the first guiding structure includes a first toothing groove and a first connecting groove, the first toothing groove is set corresponding to the first toothing part, and the first connecting groove communicates with the first toothing groove , the first connection groove is set corresponding to the first connection part;
  • the first gearing portion is plugged into the first gearing groove, and the first connecting portion is plugged into the first connecting groove.
  • the first toothing part in the locked state, the first toothing part is inserted into the first toothing groove, and the first connecting part is inserted into the first connecting groove. Since the width of the first toothing part is larger than The width of the first connecting part means that the first toothing part cannot move from the first toothing groove to the first connecting groove, so that the first matching structure can be prevented from detaching from the first guiding structure, and the reliability of the connecting assembly can be effectively improved. sex.
  • the width of the first toothing portion is gradually expanded from the first connecting portion toward the first toothing portion, and the first toothing portion The width of the groove is gradually expanded from the first connecting groove toward the first meshing groove.
  • the contact area between the first toothing portion and the side wall of the first toothing groove can be increased, effectively preventing the first matching structure from being separated from the first guiding structure, and improving the reliability of the connecting assembly.
  • the second guide structure is a slide rail
  • the second matching structure is a slide groove
  • the second guide structure in a locked state, is slidably connected to the Second fit structure.
  • the second guide structure is set as a slide rail
  • the second matching structure is set as a slide groove, so that the second guiding structure is slidably connected to the second matching structure.
  • the second base It is easy to assemble with connecting pieces and has a simple structure.
  • the second guide structure includes a second connecting portion and a second toothing portion, the second connecting portion is connected to the second base, and the second tooth The engaging portion is connected to the second connecting portion, and the width of the second engaging portion is greater than the width of the second connecting portion;
  • the second matching structure includes a second toothing groove and a second connecting groove, the second toothing groove is set corresponding to the second toothing part, and the second connecting groove communicates with the second toothing groove , the second connection groove is set corresponding to the second connection part;
  • the second gearing portion is plugged into the second gearing groove, and the second connecting portion is plugged into the second connecting groove.
  • the second toothing part in the locked state, the second toothing part is inserted into the second toothing groove, and the second connecting part is inserted into the second connecting groove. Since the width of the second toothing part is larger than The width of the second connecting part means that the second toothing part cannot move from the second toothing groove to the second connecting groove, so that the second guiding structure can be prevented from being disengaged from the second matching structure, and the reliability of the connecting assembly can be effectively improved. sex.
  • the width of the second toothing portion is gradually expanded from the second connecting portion toward the second toothing portion, and the second toothing portion The width of the groove is gradually expanded from the second connecting groove to the direction of the second meshing groove.
  • the contact area between the second toothing portion and the side wall of the second toothing groove can be increased, effectively preventing the second guiding structure from detaching from the second mating structure, and improving the reliability of the connecting assembly.
  • the second guide structure is a slide groove
  • the second matching structure is a slide rail
  • in a locked state, the second matching structure is slidably connected to the Second guide structure.
  • the second guide structure is set as a slide groove
  • the second matching structure is set as a slide rail, so that the second matching structure is slidably connected to the second guide structure.
  • the second base It is easy to assemble with connecting pieces and has a simple structure.
  • the second matching structure includes a second connecting portion and a second toothing portion, the second connecting portion is connected to the second base, and the second tooth The engaging portion is connected to the second connecting portion, and the width of the second engaging portion is greater than the width of the second connecting portion;
  • the second guide structure includes a second toothing groove and a second connecting groove, the second toothing groove is set corresponding to the second toothing part, and the second connecting groove communicates with the second toothing groove , the second connection groove is set corresponding to the second connection part;
  • the second gearing portion is plugged into the second gearing groove, and the second connecting portion is plugged into the second connecting groove.
  • the second toothing part in the locked state, the second toothing part is inserted into the second toothing groove, and the second connecting part is inserted into the second connecting groove. Since the width of the second toothing part is larger than The width of the second connecting part means that the second toothing part cannot move from the second toothing groove to the second connecting groove, so that the second matching structure can be prevented from detaching from the second guiding structure, and the reliability of the connecting assembly can be effectively improved. sex.
  • the width of the second toothing portion is gradually expanded from the second connecting portion toward the second toothing portion, and the second toothing portion The width of the groove is gradually expanded from the second connecting groove to the direction of the second meshing groove.
  • the contact area between the second toothing portion and the side wall of the second toothing groove can be increased, effectively preventing the second guiding structure from detaching from the second mating structure, and improving the reliability of the connecting assembly.
  • the first base is further provided with a first positioning portion
  • the connector is provided with a first limiting portion corresponding to the first positioning portion
  • the first positioning portion In a locked state, the first positioning portion is inserted into the first limiting portion; in an unlocked state, the first positioning portion is separated from the first limiting portion.
  • the stability of the connection between the connecting piece and the first base can be further improved.
  • the first positioning part can be snap-connected to the first limiting part, so as to fix the connecting piece and the first base together.
  • one of the first positioning portion and the first limiting portion is a buckle, and the other is a slot.
  • one of the first positioning part and the first limiting part is a buckle, and the other is a slot, so that the first positioning part can be engaged and connected to the first limiting part.
  • the second base is further provided with a second positioning portion
  • the connecting member is provided with a second limiting portion corresponding to the second positioning portion
  • the second positioning portion In the locked state, the second positioning portion is inserted into the second limiting portion; in the unlocked state, the second positioning portion is separated from the second limiting portion.
  • the stability of the connection between the connecting piece and the second base can be further improved.
  • the second positioning part can be snap-connected to the second limiting part, so as to fix the connecting piece and the second base together.
  • one of the second positioning portion and the second limiting portion is a buckle, and the other is a slot.
  • one of the second positioning part and the second limiting part is a buckle, and the other is a slot, so that the second positioning part can be engaged and connected to the second limiting part.
  • connection assembly further includes a guide rail, and the first base or the second base is slidably connected to the guide rail.
  • the distance between the first base and the second base can be easily adjusted through the guide rail. After the adjustment, the first base or the second base that is slidably connected to the guide rail is fixed on the guide rail to effectively improve the assembly. efficiency.
  • the embodiment of the present application also provides a spliced display, including:
  • At least one second display screen is spliced with the corresponding first display screen
  • the first base is fixed on the back of the corresponding first display screen
  • the second base is fixed on the back of the corresponding second display screen
  • the connecting piece connects the The first base and the second base are locked together.
  • the first display screen and the second display screen are spliced together reliably by using the connection component to splice the first display screen and the second display screen, and the first display screen and the second display screen are not It is easy to move, and workers do not need to repeatedly confirm the position, which effectively simplifies the installation process of the splicing display and improves installation efficiency.
  • connection assembly further includes a guide rail extending along the first direction
  • the guide rail is arranged on the back of the first display screen, and the first base is slidably connected to the guide rail; or, the guide rail is arranged on the back of the second display screen, and the second base is slidably connected to the the rails.
  • the distance between the first base and the second base can be easily adjusted through the guide rail. After the adjustment, the first base or the second base that is slidably connected to the guide rail is fixed on the guide rail, which effectively improves the assembly. efficiency.
  • the embodiment of the present application adopts a connection component and a splicing display.
  • the connection component to splice the first display screen and the second display screen
  • the first display screen and the second display screen are reliably spliced together.
  • the first display screen and the second display screen are spliced together.
  • the second display screen is not easy to shift, and workers do not need to repeatedly confirm the position, which effectively simplifies the installation process of the splicing display screen and improves installation efficiency.
  • Fig. 1 is a schematic diagram of the three-dimensional structure of the first splicing display provided by the embodiment of the present application;
  • Fig. 2 is a schematic diagram of the explosive decomposition structure of the first connection assembly provided by the embodiment of the present application;
  • Fig. 3 is a schematic diagram of the three-dimensional structure of the first base provided by the embodiment of the present application.
  • Fig. 4 is a schematic diagram of the three-dimensional structure of the first connector provided in the embodiment of the present application.
  • Fig. 5 is a partial cross-sectional structural schematic diagram of the first type of spliced display provided by the embodiment of the present application;
  • Fig. 6 is a schematic perspective view of the second type of first base provided by the embodiment of the present application.
  • Fig. 7 is a schematic diagram of the stereoscopic structure of the second connector provided by the embodiment of the present application.
  • Fig. 8 is a schematic diagram of the three-dimensional structure of the second base of the first type provided by the embodiment of the present application.
  • Fig. 9 is a schematic front view of the second base provided by the embodiment of the present application.
  • Fig. 10 is a schematic perspective view of the second type of spliced display provided by the embodiment of the present application.
  • Fig. 11 is a schematic diagram of the explosive decomposition structure of the second connection assembly provided by the embodiment of the present application.
  • FIG. 12 is a schematic perspective view of a third type of connecting member provided in an embodiment of the present application.
  • connection component and a spliced display.
  • connection component and a spliced display.
  • the embodiment of the present application provides a connection assembly 100, which is applied to a spliced display screen.
  • the spliced display screen includes a first display screen 200 and a second display screen 300.
  • the connection assembly 100 is used to make the first The positioning and splicing of the display screen 200 and the second display screen 300 can ensure splicing accuracy, so that the first display screen 200 and the second display screen 300 are closely spliced together, which is beneficial to eliminate seams.
  • the connection assembly 100 includes a first base 110 , a second base 120 and a connecting piece 130 , and the connecting piece 130 is used to lock the first base 110 and the second base 120 together.
  • the connecting piece 130 is used to lock the first base 110 and the second base 120 together.
  • the first base 110 is provided with a first guide structure 113
  • the second base 120 is provided with a second guide structure 123
  • the connector 130 is provided with a first matching structure 131 corresponding to the first guide structure 113 and a corresponding second guide structure.
  • the second matching structure 132 provided by the structure 123; in the locked state, the first guiding structure 113 is toothed and connected to the first matching structure 131, and the second guiding structure 123 is toothed and connected to the second matching structure 132; in the unlocked state , the first guiding structure 113 is separated from the first matching structure 131 , and the second guiding structure 123 is separated from the second matching structure 132 .
  • the arrangement direction of the first base 110 and the second base 120 is the first direction X, which is perpendicular to the first direction X is the second direction Y, and the direction perpendicular to the first direction X and the second direction Y is the third direction Z. It can be understood that, according to the selection and specific needs of the actual situation, the angle between any two directions of the first direction X, the second direction Y and the third direction Z can be adjusted appropriately, as long as the angle between any two directions is not It only needs to be 0 degree, and there is no unique limitation here.
  • the connecting piece 130 locks the first base 110 and the second base 120 together, the first base 110 and the second base 120 are arranged along the first direction X, and the first guide structure 113 is engaged with the first mating structure 131 , The second guide structure 123 is meshed and connected to the second matching structure 132.
  • the connecting member 130 can define the relative position of the first base 110 and the second base 120 in the first direction X, so that the first display screen 200 and the second The two display screens 300 are closely spliced, which is beneficial to eliminate seams.
  • the first display screen 200 and the second display screen 300 are spliced together by using the connection assembly 100 so that the first display screen 200 and the second display screen 300 are reliably spliced together, and the first display screen 200 and the second display screen 300 are spliced together reliably.
  • the display screen 300 is not easily displaced, and workers do not need to repeatedly confirm the position, which effectively simplifies the installation process of the spliced display screen and improves installation efficiency.
  • the first guiding structure 113 is a sliding rail, and the first matching structure 131 is a sliding groove; in a locked state, the first guiding structure 113 is slidably connected to the first matching structure 131 .
  • the first guide structure 113 is set as a slide rail, and the first matching structure 131 is set as a slide groove, so that the first guide structure 113 is slidably connected to the first matching structure 131, under this structure , it is easy to assemble between the first base 110 and the connecting piece 130, and the structure is simple.
  • the first guide structure 113 includes a first connecting portion 1131 and a first toothing portion 1132 , the first connecting portion 1131 is connected to the first base 110 , and the first toothing portion 1132 is connected to the first base 110 .
  • the first connecting portion 1131 is connected, and the width of the first toothing portion 1132 is greater than the width of the first connecting portion 1131 .
  • the first connecting portion 1131 is connected to the first base 110 facing away from the first display along the third direction Z.
  • the first engaging portion 1132 is connected to the side of the first connecting portion 1131 away from the first base 110 along the third direction Z.
  • the width refers to the distance along the first direction X, and the meaning of the width will not be explained later.
  • the first mating structure 131 includes a first toothing groove 1312 and a first connecting groove 1311, the first toothing groove 1312 is set corresponding to the first toothing part 1132, the first toothing
  • the shape of the groove 1312 is adapted to the shape of the first toothing part 1132, so that the first toothing part 1132 can be just inserted into the first toothing groove 1312;
  • the first connecting groove 1311 communicates with the first toothing groove 1312, and the second A connecting groove 1311 is provided corresponding to the first connecting portion 1131 , and the shape of the first connecting groove 1311 is adapted to the shape of the first connecting portion 1131 , so that the first connecting portion 1131 can be just plugged into the first connecting groove 1311 .
  • the first connecting groove 1311 is provided along the third direction Z near the first display screen of the connector 130 200
  • the first interlocking groove 1312 is disposed on the side of the first connecting groove 1311 away from the first display screen 200 along the third direction Z, and the first interlocking groove 1312 communicates with the first connecting groove 1311 .
  • the first toothing part 1132 is inserted into the first toothing groove 1312, and the first connecting part 1131 is inserted into the first connecting groove 1311. Since the width of the first toothing part 1132 is larger than that of the first connecting part 1131, the first toothing part 1132 cannot move from the first toothing groove 1312 to the first connecting groove 1311, so that the first guiding structure 113 can be prevented from being disengaged from the first matching structure 131 along the third direction Z , effectively improving the reliability of the connection assembly 100 .
  • the width of the first toothing portion 1132 is gradually expanded from the first connecting portion 1131 toward the direction of the first toothing portion 1132 ; correspondingly, the width of the first toothing groove 1312 The width is gradually expanded from the first connecting groove 1311 toward the first engaging groove 1312 .
  • the contact area between the first toothing portion 1132 and the side wall of the first toothing groove 1312 can be increased, effectively preventing the first guiding structure 113 from moving from the first matching structure 131 along the third direction Z. Disengagement in the middle improves the reliability of the connection assembly 100 .
  • the cross-sectional shape of the first toothing portion 1132 is an inverted trapezoid, and correspondingly, the cross-sectional shape of the first toothing groove 1312 is also Inverted trapezoid.
  • the cross-sectional shape refers to the shape of the cross-section taken by a plane perpendicular to the second direction Y.
  • the contact area between the first toothing portion 1132 and the side wall of the first toothing groove 1312 can be increased, effectively preventing the first guiding structure 113 from being separated from the first mating structure 131 along the third direction Z, and improving the connection assembly. 100% reliability.
  • the cross-sectional shape of the first toothing part 1132 can also be an inverted triangle, arc or other shapes, as long as the width of the first toothing part 1132 is ensured by the first connection
  • the portion 1131 can be gradually expanded toward the first toothing portion 1132 , and there is no unique limitation here.
  • the first guiding structure 113 is a slide groove, and the first matching structure 131 is a sliding rail; in a locked state, the first matching structure 131 is slidably connected to the first guiding structure 113 .
  • the first matching structure 131 is slidably connected to the first guiding structure 113, under this structure , it is easy to assemble between the first base 110 and the connecting piece 130, and the structure is simple.
  • the first mating structure 131 includes a first connecting portion 1311 ′ and a first toothing portion 1312 ′, the first connecting portion 1311 ′ is connected to the connecting piece 130 , and the first toothing portion 1312 ′ is connected to the first toothing portion 1312 ′.
  • the first connecting portion 1231' is connected, and the width of the first toothing portion 1312' is greater than the width of the first connecting portion 1311'.
  • the first connecting part 1311' when the connector 130 is plugged into the first base 110, the first connecting part 1311' is connected to the side of the connector 130 close to the first display screen 200 along the third direction Z, and the first tooth engages The part 1312' is connected to a side of the first connecting part 1311' close to the first display screen 200 along the third direction Z.
  • the first guide structure 113 includes a first connecting groove 1131' and a first toothing groove 1132', the first toothing groove 1132' is set corresponding to the first toothing part 1312', and the first toothing groove
  • the shape of 1132' is adapted to the shape of the first toothing part 1312', so that the first toothing part 1312' can be inserted into the first toothing groove 1132';
  • the first connecting groove 1131' and the first toothing groove 1132', the first connection groove 1131' is set corresponding to the first connection part 1311', and the shape of the first connection groove 1131' is adapted to the shape of the first connection part 1311', so that the first connection part 1311' can be plugged in in the first connecting groove 1131'.
  • the first connecting groove 1131' is provided on the side of the first base 110 away from the first display screen 200 along the third direction Z, and the first teeth
  • the engaging groove 1132' is disposed on a side of the first connecting groove 1131' close to the first display screen 200 along the third direction Z, and the first engaging groove 1132' communicates with the first connecting groove 1131'.
  • the first toothing part 1312' is inserted into the first toothing groove 1132', and the first connecting part 1311' is inserted into the first connecting groove 1131'. Due to the width of the first toothing part 1312' Greater than the width of the first connecting part 1311', the first engaging part 1312' cannot move from the first engaging groove 1132' to the first connecting groove 1131'. Z disengages from the first guiding structure 113 , which effectively improves the reliability of the connection assembly 100 .
  • the width of the first toothing portion 1312' is gradually expanded from the first connecting portion 1311' toward the direction of the first toothing portion 1312'; correspondingly, the first toothing
  • the width of the slot 1132' is gradually expanded from the first connecting slot 1131' toward the first engaging slot 1132'.
  • the contact area between the first toothing part 1312' and the side wall of the first toothing groove 1132' can be increased, effectively preventing the first matching structure 131 from the first guide along the third direction Z.
  • the structure 113 is disengaged, which improves the reliability of the connection assembly 100 .
  • the cross-sectional shape of the first meshing portion 1312 ′ is trapezoidal, and correspondingly, the cross-sectional shape of the first toothing groove 1132 ′ is also trapezoidal. is trapezoidal.
  • the cross-sectional shape refers to the shape of the cross-section taken by a plane perpendicular to the second direction Y. Under this structure, the contact area between the first toothing part 1312' and the side wall of the first toothing groove 1132' can be increased, effectively preventing the first matching structure 131 from detaching from the first guiding structure 113 along the third direction Z, and improving The reliability of the connection assembly 100.
  • the cross-sectional shape of the first toothing part 1312' can also be triangular, arc or other shapes, as long as the width of the first toothing part 1312' is guaranteed by the first It is sufficient that the connecting portion 1311 ′ is gradually expanded toward the first toothing portion 1312 ′, and there is no exclusive limitation here.
  • the second guide structure 123 is a slide rail, and the second matching structure 132 is a slide groove; in the locked state, the second guiding structure 123 is slidably connected to the second matching structure132.
  • the second guide structure 123 is set as a slide rail, and the second matching structure 132 is set as a slide groove, so that the second guide structure 123 is slidably connected to the second matching structure 132, under this structure , it is easy to assemble between the second base 120 and the connecting piece 130, and the structure is simple.
  • the second guide structure 123 includes a second connecting portion 1231 and a second toothing portion 1232 , the second connecting portion 1231 is connected to the second base 120 , and the second toothing portion 1232 is connected to the second base 120 .
  • the second connecting portion 1231 is connected, and the width of the second toothing portion 1232 is greater than the width of the second connecting portion 1231 .
  • the second connecting part 1231 is connected to the side of the second base 120 facing away from the second display screen 300 along the third direction Z, and the second teeth engage
  • the part 1232 is connected to a side of the second connecting part 1231 away from the second base 120 along the third direction Z.
  • the second mating structure 132 includes a second toothing groove 1322 and a second connecting groove 1321, the second toothing groove 1322 is set corresponding to the second toothing part 1232, and the second toothing
  • the shape of the groove 1322 is adapted to the shape of the second toothing part 1232, so that the second toothing part 1232 can be just inserted into the second toothing groove 1322;
  • the second connection groove 1321 communicates with the second toothing groove 1322, and the second
  • the second connecting groove 1321 is disposed corresponding to the second connecting portion 1231 , and the shape of the second connecting groove 1321 is adapted to the shape of the second connecting portion 1231 , so that the second connecting portion 1231 can be inserted into the second connecting groove 1321 just right.
  • the second connecting groove 1321 is provided on the side of the connecting piece 130 close to the second display screen 300 along the third direction Z, and the second meshing groove 1322 is disposed on a side of the second connecting groove 1321 away from the second display screen 300 along the third direction Z, and the second meshing groove 1322 communicates with the second connecting groove 1321 .
  • the second toothing part 1232 is inserted into the second toothing groove 1322, and the second connecting part 1231 is inserted into the second connecting groove 1321. Since the width of the second toothing part 1232 is larger than that of the second connecting part 1231, the second toothing part 1232 cannot move from the second toothing groove 1322 to the second connecting groove 1321, so that the second guiding structure 123 can be prevented from being disengaged from the second matching structure 132 along the third direction Z , effectively improving the reliability of the connection assembly 100 .
  • the width of the second toothing portion 1232 is gradually expanded from the second connecting portion 1231 toward the direction of the second toothing portion 1232 ; correspondingly, the width of the second toothing groove 1322 The width is gradually expanded from the second connecting groove 1321 to the direction of the second meshing groove 1322 .
  • the contact area between the second toothing portion 1232 and the side wall of the second toothing groove 1322 can be increased, effectively preventing the second guiding structure 123 from moving from the second matching structure 132 along the third direction Z. Disengagement in the middle improves the reliability of the connection assembly 100 .
  • the cross-sectional shape of the second meshing portion 1232 is an inverted trapezoid, and correspondingly, the cross-sectional shape of the second toothing groove 1322 is also Inverted trapezoid.
  • the cross-sectional shape refers to the shape of the cross-section taken by a plane perpendicular to the second direction Y.
  • the contact area between the second toothing portion 1232 and the side wall of the second toothing groove 1322 can be increased, effectively preventing the second guiding structure 123 from detaching from the second matching structure 132 along the third direction Z, and improving the connection assembly. 100% reliability.
  • the cross-sectional shape of the second toothing part 1232 can also be an inverted triangle, arc or other shapes, as long as the width of the second toothing part 1232 is ensured by the second connection
  • the portion 1231 can be gradually expanded toward the second toothing portion 1232 , and there is no unique limitation here.
  • the second guiding structure 123 is a sliding groove, and the second matching structure 132 is a sliding rail; in the locked state, the second matching structure 132 is slidably connected to the second guiding structure 123 .
  • the second matching structure 132 is slidably connected to the second guiding structure 123, under this structure , it is easy to assemble between the second base 120 and the connecting piece 130, and the structure is simple.
  • the second matching structure 132 includes a second connecting portion 1321 ′ and a second toothing portion 1322 ′, the second connecting portion 1321 ′ is connected to the connecting piece 130 , and the second toothing portion 1322' is connected to the second connecting portion 1321', and the width of the second toothing portion 1322' is greater than that of the second connecting portion 1321'.
  • the connecting piece 130 is plugged into the second base 120
  • the second connecting portion 1321' is connected to the side of the connecting piece 130 close to the second display screen 300 along the third direction Z
  • the second toothing The part 1322' is connected to a side of the second connecting part 1321' close to the second display screen 300 along the third direction Z.
  • the second guiding structure 123 includes a second toothing groove 1232 ′ and a second connecting groove 1231 ′, and the second toothing groove 1232 ′ is set corresponding to the second toothing portion 1322 ′.
  • the shape of the second toothing groove 1232' is adapted to the shape of the second toothing part 1322', so that the second toothing part 1322' can be inserted into the second toothing groove 1232'; the second connecting groove 1231' and The second meshing groove 1232' communicates, and the second connecting groove 1231' is set corresponding to the second connecting part 1321'. 'can be just plugged into the second connecting groove 1231'.
  • the second connection groove 1231' is provided on the side of the second base 120 away from the second display screen 300 along the third direction Z, and the second teeth
  • the engaging groove 1232' is disposed on a side of the second connecting groove 1231' close to the second display screen 300 along the third direction Z, and the second engaging groove 1232' communicates with the second connecting groove 1231'.
  • the second toothing part 1322' is inserted into the second toothing groove 1232', and the second connecting part 1321' is inserted into the second connecting groove 1231'. Due to the width of the second toothing part 1322' Greater than the width of the second connecting portion 1321 ′, the second toothing portion 1322 ′ cannot move from the second toothing groove 1232 ′ to the second connecting groove 1231 ′. Such arrangement can prevent the second matching structure 132 from moving along the third direction. Z disengages from the second guiding structure 123 , which effectively improves the reliability of the connection assembly 100 .
  • the width of the second toothing part 1322' is gradually expanded from the second connecting part 1321' toward the direction of the second toothing part 1322'; correspondingly, the second toothing
  • the width of the slot 1232' is gradually expanded from the second connecting slot 1231' toward the second meshing slot 1232'.
  • the contact area between the second meshing portion 1322 ′ and the side wall of the second meshing groove 1232 ′ can be increased, effectively preventing the second guiding structure 123 from second mating along the third direction Z.
  • the structure 132 is disengaged, which improves the reliability of the connection assembly 100 .
  • the cross-sectional shape of the second meshing portion 1322 ′ is trapezoidal, and correspondingly, the cross-sectional shape of the second toothing groove 1232 ′ is also trapezoidal. is an inverted trapezoid. It should be understood that the cross-sectional shape refers to the shape of the cross-section taken by a plane perpendicular to the second direction Y.
  • the contact area between the second toothing portion 1322' and the side wall of the second toothing groove 1232' can be increased, effectively preventing the second guiding structure 123 from detaching from the second matching structure 132 along the third direction Z, and improving The reliability of the connection assembly 100.
  • the cross-sectional shape of the second toothing part 1322' can also be triangular, arc or other shapes, as long as the width of the second toothing part 1322' is determined by the second It is sufficient that the connecting portion 1321 ′ is gradually expanded toward the second toothing portion 1322 ′, and there is no exclusive limitation here.
  • the first base 110 is also provided with a first positioning part 1121, and the connecting piece 130 is provided with a first limiting part 135 corresponding to the first positioning part 1121; A positioning portion 1121 is snap-connected to the first limiting portion 135 ; in an unlocked state, the first positioning portion 1121 is separated from the first limiting portion 135 .
  • the stability of the connection between the connecting member 130 and the first base 110 can be further improved.
  • the first positioning part 1121 can be engaged and connected to the first limiting part 135, so as to fix the connecting part 130 and the first base 110 together.
  • the connection The component 130 and the first base 110 can be fixed together in other ways, which are not limited here.
  • one of the first positioning portion 1121 and the first limiting portion 135 is a buckle, and the other is a slot, so that the first positioning portion 1121 can be engaged and connected to the first limiting portion 135 .
  • the second base 120 is also provided with a second positioning part 1221, and the connecting piece 130 is provided with a second limiting part 136 corresponding to the second positioning part 1221;
  • the two positioning parts 1221 are snap-connected to the second limiting part 136 ; in the unlocked state, the second positioning part 1221 is separated from the second limiting part 136 .
  • the stability of the connection between the connecting member 130 and the second base 120 can be further improved.
  • the second positioning part 1221 can be engaged and connected to the second limiting part 136, so as to fix the connecting part 130 and the second base 120 together.
  • the connection The component 130 and the second base 120 can be fixed together in other ways, which are not limited here.
  • one of the second positioning portion 1221 and the second limiting portion 136 is a buckle, and the other is a locking slot, so that the second positioning portion 1221 can be engaged and connected to the second limiting portion 136 .
  • the first base 110 includes a first support base 111 and a first positioning base 112 connected to the first support base 111 , and a first guide structure 113 is disposed on the first support base 111 .
  • the first positioning seat 112 and the first guiding structure 113 are arranged on the same side of the first supporting seat 111 along the third direction Z, and the first positioning seat 112 is arranged along the second
  • the direction Y is set on the side of the first guide structure 113 away from the connecting piece 130, and the first positioning seat 112 abuts against the connecting piece 130, which can make the structure between the connecting piece 130 and the first base 110 more compact and effectively improve the connection.
  • Component 100 reliability the first positioning portion 1121 is disposed on the first positioning seat 112 .
  • the second base 120 includes a second support base 121 and a second positioning base 122 connected to the second support base 121 , and the second guide structure 123 is arranged on the second support base 121 seat 121.
  • the second positioning seat 122 and the second guiding structure 123 are arranged on the same side of the second supporting seat 121 along the third direction Z, and the second positioning seat 122 is arranged along the second
  • the direction Y is set on the side of the second guide structure 123 away from the connecting piece 130, and the second positioning seat 122 abuts against the connecting piece 130, which can make the structure between the connecting piece 130 and the second base 120 more compact and effectively improve the connection.
  • Component 100 reliability the second positioning portion 1221 is disposed on the second positioning seat 122 .
  • the connection assembly 100 also includes a guide rail 140, and the first base 110 or the second base 120 is slidably connected to the guide rail 140; When the base 110 and the second base 120 are connected, the guide rail 140 is extended along the first direction X. In this embodiment, the distance between the first base 110 and the second base 120 can be easily adjusted through the guide rail 140. After the adjustment, the first base 110 or the second base 120 that is slidably connected to the guide rail 140 is fixed on the guide rail 140 , effectively improve the assembly efficiency.
  • the second base 120 when the first base 110 is slidably connected to the guide rail 140, the second base 120 can be directly fixed on the back of the second display screen 300 by glue, screws or other methods, and the guide rail 140 can be fixed by glue, screws or other means.
  • Screws or other methods are directly fixed on the back of the first display screen 200, the guide rail 140 is extended along the first direction X, the guide rail 140 is provided with a first base 110, and when the first display screen 200 and the second display screen 300 are spliced together, The first base 110 can be slid on the guide rail 140 by pushing the first base 110 to adjust the distance between the first base 110 and the second base 120, and then the first base 110 can be fixed on the Finally, insert the connector 130 onto the first base 110 and the second base 120 on the guide rail 140 to complete the splicing of the first display screen 200 and the second display screen 300 .
  • the first base 110 can be directly fixed on the back of the first display screen 200 by glue, screws or other methods, and the guide rail 140 can be fixed by glue, screws or other methods.
  • Screws or other methods are directly fixed on the back of the second display screen 300, the guide rail 140 is extended along the first direction X, the second base 120 is provided on the guide rail 140, and when the first display screen 200 and the second display screen 300 are spliced together, The second base 120 can be slid on the guide rail 140 by pushing the second base 120 to adjust the distance between the second base 120 and the first base 110, and then the second base 120 can be fixed on the Finally, insert the connector 130 onto the second base 120 and the first base 110 on the guide rail 140 to complete the splicing of the first display screen 200 and the second display screen 300 .
  • the first base 110 when the first base 110 is slidably connected to the guide rail 140, the first base 110 is provided with a third sliding groove 1111, and the guide rail 140 is embedded in the third sliding groove 1111, so that the first base 110 is slidingly connected to the guide rail 140 .
  • the third sliding slot 1111 is disposed on the first supporting base 111 .
  • the second base 120 when the second base 120 is slidably connected to the guide rail 140, the second base 120 is provided with a third slide groove 1211, and the guide rail 140 is embedded in the third slide groove 1211, so that the second base 120 is slidably connected to guide rail 140 .
  • the third sliding slot 1211 is disposed on the second supporting base 121 .
  • both the first matching structure 131 and the second matching structure 132 of the connecting piece 130 are slide grooves; as shown in FIG. 7 , the first matching structure of the connecting piece 130 131 and the second matching structure 132 are slide rails.
  • one of the first matching structure 131 and the second matching structure 132 can be a chute, and the other can be a slide rail, as long as the first matching structure 131 and the first guiding structure 113 are ensured.
  • the second matching structure 132 and the second guiding structure 123 can be toothed and connected, and there is no exclusive limitation here.
  • the connector 130 is an integral structure, and the extension direction of the first guide structure 113 and the second guide structure 123 are the same, but according to the actual situation and specific needs, the connector 130 can also be
  • the split structure makes the extension directions of the first guiding structure 113 and the second guiding structure 123 different, which is beneficial to improve the stability of the connection assembly 100 . As shown in FIG.
  • the connector 130 may include a first connector 137 corresponding to the first base 110 and a second connector 138 corresponding to the second base 120 , the first mating structure 131 and the first limiting portion 135 are arranged on The first connecting piece 137 , the second mating structure 132 and the second limiting portion 136 are disposed on the second connecting piece 138 .
  • the first connector 137 and the second connector 137 are connected by screws or other fixed connection methods.
  • the two connecting parts 138 are fixed together, so that the first display screen 200 and the second display screen 300 are spliced together.
  • first mating structure 131 and the second mating structure 132 are in the form of chute, according to the selection and specific needs of the actual situation, the first mating structure 131 and the second mating structure 132 can both be in the form of slide rails; perhaps, one of the first mating structure 131 and the second mating structure 132 is a slide rail, and the other is in the form of a slide groove, as long as the first matching
  • the structure 131 is meshed with the first guiding structure 113
  • the second mating structure 132 is toothed and connected with the second guiding structure 123 , which is not limited here.
  • the embodiment of the present application also provides a spliced display, including at least one first display screen 200, at least one second display screen 300 and the connection assembly 100 as described above, the second display screen 300 and The corresponding first display screens 200 are spliced together, the first base 110 is fixed on the back of the corresponding first display screen 200, the second base 120 is fixed on the back of the corresponding second display screen 300, and the connector 130 is plugged into the first base 110 and the second base 120. Since the spliced display of this embodiment includes the technical solutions of all the above-mentioned embodiments, it also has the beneficial effects of all the above-mentioned embodiments, and the beneficial effects of the spliced display will not be repeated here.
  • the connection assembly 100 also includes a guide rail 140, and the first base 110 or the second base 120 is slidably connected to the guide rail 140; When the base 110 and the second base 120 are connected, the guide rail 140 is extended along the first direction X. In this embodiment, the distance between the first base 110 and the second base 120 can be easily adjusted through the guide rail 140. After the adjustment, the first base 110 or the second base 120 that is slidably connected to the guide rail 140 is fixed on the guide rail 140 , effectively improve the assembly efficiency.
  • the second base 120 when the first base 110 is slidably connected to the guide rail 140, the second base 120 can be directly fixed on the back of the second display screen 300 by glue, screws or other methods, and the guide rail 140 can be fixed by glue, screws or other means.
  • Screws or other methods are directly fixed on the back of the first display screen 200, the guide rail 140 is extended along the first direction X, the guide rail 140 is provided with a first base 110, and when the first display screen 200 and the second display screen 300 are spliced together, The first base 110 can be slid on the guide rail 140 by pushing the first base 110 to adjust the distance between the first base 110 and the second base 120, and then the first base 110 can be fixed on the Finally, insert the connector 130 onto the first base 110 and the second base 120 on the guide rail 140 to complete the splicing of the first display screen 200 and the second display screen 300 .
  • the first base 110 can be directly fixed on the back of the first display screen 200 by glue, screws or other methods, and the guide rail 140 can be fixed by glue, screws or other methods.
  • Screws or other methods are directly fixed on the back of the second display screen 300, the guide rail 140 is extended along the first direction X, the second base 120 is provided on the guide rail 140, and when the first display screen 200 and the second display screen 300 are spliced together, The second base 120 can be slid on the guide rail 140 by pushing the second base 120 to adjust the distance between the second base 120 and the first base 110, and then the second base 120 can be fixed on the Finally, insert the connector 130 onto the second base 120 and the first base 110 on the guide rail 140 to complete the splicing of the first display screen 200 and the second display screen 300 .
  • the first base 110 when the first base 110 is slidably connected to the guide rail 140, the first base 110 is provided with a third sliding groove 1111, and the guide rail 140 is embedded in the third sliding groove 1111, so that the first base 110 is slidingly connected to the guide rail 140 .
  • the third sliding slot 1111 is disposed on the first supporting base 111 .
  • the second base 120 when the second base 120 is slidably connected to the guide rail 140, the second base 120 is provided with a third slide groove 1111, and the guide rail 140 is embedded in the third slide groove 1111, so that the second base 120 is slidably connected to guide rail 140 .
  • the third sliding slot 1111 is disposed on the second supporting base 121 .
  • connection assembly and the splicing display provided by the embodiment of the present application have been introduced in detail above.
  • specific examples are used to illustrate the principle and implementation of the present application.
  • the description of the above embodiment is only to help understand the present application. method and its core idea; at the same time, for those skilled in the art, according to the idea of this application, there will be changes in the specific implementation and application scope. Application Restrictions.

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Abstract

一种连接组件(100)以及拼接显示器,连接组件(100)包括设有第一导向结构(113)的第一底座(110)、设有第二导向结构(123)的第二底座(120)以及用于将第一底座(110)和第二底座(120)锁附在一起的连接件(130),连接件(130)设有对应第一导向结构(113)设置的第一配合结构(131)和对应第二导向结构(123)设置的第二配合结构(132)。

Description

连接组件以及拼接显示器 技术领域
本申请涉及显示领域,具体涉及一种连接组件以及拼接显示器。
背景技术
随着显示器技术的不断发展,显示器的应用场合越来越广泛,不仅仅用于电视、监视器、工业显示、医疗显示,还被越来越多的应用在公共显示场合。在公共显示应用时,一般需要显示器有较大的显示面积,以满足人们远距离观看、较大信息量显示等要求。但是液晶显示器(Liquid Crystal Display,简称LCD)的发展现状,常规的尺寸在32寸到55寸。这个尺寸范围的显示器若用于公共显示,则需要采用多屏拼接的方式。
当多个屏幕拼接起来时,每个显示器的原先存在的边框互相接壤形成拼接缝,而被明显看到。业界各家面板厂开始克服相关的技术问题,缩减显示器的物理边框,以不断实现拼缝的减小。目前业界的主流拼缝在3.5毫米~5.5毫米,部分高端产品或技术展示甚至已经到达1.4毫米。
拼接屏通常是将多个屏幕运输到现场,然后依次将多个屏幕组装拼接,为了保证拼接精度,工人需要反复确认屏幕的位置,这无疑会增加安装步骤的复杂程度,导致安装效率低下。
技术问题
本申请实施例提供一种连接组件以及拼接显示器,可以解决现有的拼接屏的安装步骤复杂和安装效率低下的技术问题。
技术解决方案
本申请实施例提供一种连接组件,包括:
第一底座,设有第一导向结构;
第二底座,设有第二导向结构;以及
连接件,用于将所述第一底座和所述第二底座锁附在一起,所述连接件设有对应所述第一导向结构设置的第一配合结构和对应所述第二导向结构设置的第二配合结构;
在锁附状态下,所述第一导向结构齿合连接于所述第一配合结构,所述第二导向结构齿合连接于所述第二配合结构;在解锁状态下,所述第一导向结构与所述第一配合结构分离,所述第二导向结构与所述第二配合结构分离。
本申请实施例的拼接组件使用时,将第一底座固定于第一显示屏,将第二底座固定于第二显示屏,通过连接件可以将第一底座和第二底座锁附在一起,从而使得第一显示屏和第二显示屏紧密拼接,有利于消除拼缝,第一显示屏和第二显示屏不容易移位,工人不需要反复确认位置,有效简化拼接显示屏的安装制程和提高安装效率。
可选的,在本申请的一些实施例中,所述第一导向结构为滑轨,所述第一配合结构为滑槽,在锁附状态下,所述第一导向结构滑动连接于所述第一配合结构。
本申请实施例的拼接组件中,通过将第一导向结构设置为滑轨,将第一配合结构设置为滑槽,使得第一导向结构滑动连接于第一配合结构,此结构下,第一底座和连接件之间易于装配,结构简单。
可选的,在本申请的一些实施例中,所述第一导向结构包括第一连接部和第一齿合部,所述第一连接部与所述第一底座连接,所述第一齿合部与所述第一连接部连接,所述第一齿合部的宽度大于所述第一连接部的宽度;
所述第一配合结构包括第一齿合槽和第一连接槽,所述第一齿合槽对应所述第一齿合部设置,所述第一连接槽与所述第一齿合槽连通,所述第一连接槽对应所述第一连接部设置;
在锁附状态下,所述第一齿合部插接于所述第一齿合槽,所述第一连接部插接于所述第一连接槽。
本申请实施例的拼接组件中,在锁附状态下,第一齿合部插接于第一齿合槽,第一连接部插接于第一连接槽,由于第一齿合部的宽度大于第一连接部的宽度,第一齿合部无法从第一齿合槽中移动至第一连接槽中,如此设置,可以避免第一导向结构从第一配合结构中脱离,有效提高连接组件的可靠性。
可选的,在本申请的一些实施例中,所述第一齿合部的宽度由所述第一连接部朝所述第一齿合部的方向呈渐扩设置,所述第一齿合槽的宽度由所述第一连接槽朝所述第一齿合槽的方向呈渐扩设置。
本申请实施例的拼接组件中,第一齿合部无法从第一齿合槽中移动至第一连接槽中,可以避免第一导向结构从第一配合结构中脱离,有效提高连接组件的可靠性。
可选的,在本申请的一些实施例中,所述第一导向结构为滑槽,所述第一配合结构为滑轨,在锁附状态下,所述第一配合结构滑动连接于所述第一导向结构。
本申请实施例的拼接组件中,通过将第一导向结构设置为滑槽,将第一配合结构设置为滑轨,使得第一配合结构滑动连接于第一导向结构,此结构下,第一底座和连接件之间易于装配,结构简单。
可选的,在本申请的一些实施例中,所述第一配合结构包括第一连接部和第一齿合部,所述第一连接部与所述第一底座连接,所述第一齿合部与所述第一连接部连接,所述第一齿合部的宽度大于所述第一连接部的宽度;
所述第一导向结构包括第一齿合槽和第一连接槽,所述第一齿合槽对应所述第一齿合部设置,所述第一连接槽与所述第一齿合槽连通,所述第一连接槽对应所述第一连接部设置;
在锁附状态下,所述第一齿合部插接于所述第一齿合槽,所述第一连接部插接于所述第一连接槽。
本申请实施例的拼接组件中,在锁附状态下,第一齿合部插接于第一齿合槽,第一连接部插接于第一连接槽,由于第一齿合部的宽度大于第一连接部的宽度,第一齿合部无法从第一齿合槽中移动至第一连接槽中,如此设置,可以避免第一配合结构从第一导向结构中脱离,有效提高连接组件的可靠性。
可选的,在本申请的一些实施例中,所述第一齿合部的宽度由所述第一连接部朝所述第一齿合部的方向呈渐扩设置,所述第一齿合槽的宽度由所述第一连接槽朝所述第一齿合槽的方向呈渐扩设置。
本申请实施例的拼接组件中,可以增加第一齿合部与第一齿合槽的侧壁的接触面积,有效防止第一配合结构从第一导向结构中脱离,提高连接组件的可靠性。
可选的,在本申请的一些实施例中,所述第二导向结构为滑轨,所述第二配合结构为滑槽,在锁附状态下,所述第二导向结构滑动连接于所述第二配合结构。
本申请实施例的拼接组件中,通过将第二导向结构设置为滑轨,将第二配合结构设置为滑槽,使得第二导向结构滑动连接于第二配合结构,此结构下,第二底座和连接件之间易于装配,结构简单。
可选的,在本申请的一些实施例中,所述第二导向结构包括第二连接部和第二齿合部,所述第二连接部与所述第二底座连接,所述第二齿合部与所述第二连接部连接,所述第二齿合部的宽度大于所述第二连接部的宽度;
所述第二配合结构包括第二齿合槽和第二连接槽,所述第二齿合槽对应所述第二齿合部设置,所述第二连接槽与所述第二齿合槽连通,所述第二连接槽对应所述第二连接部设置;
在锁附状态下,所述第二齿合部插接于所述第二齿合槽,所述第二连接部插接于所述第二连接槽。
本申请实施例的拼接组件中,在锁附状态下,第二齿合部插接于第二齿合槽,第二连接部插接于第二连接槽,由于第二齿合部的宽度大于第二连接部的宽度,第二齿合部无法从第二齿合槽中移动至第二连接槽中,如此设置,可以避免第二导向结构从第二配合结构中脱离,有效提高连接组件的可靠性。
可选的,在本申请的一些实施例中,所述第二齿合部的宽度由所述第二连接部朝所述第二齿合部的方向呈渐扩设置,所述第二齿合槽的宽度由所述第二连接槽朝所述第二齿合槽的方向呈渐扩设置。
本申请实施例的拼接组件中,可以增加第二齿合部与第二齿合槽的侧壁的接触面积,有效防止第二导向结构从第二配合结构中脱离,提高连接组件的可靠性。
可选的,在本申请的一些实施例中,所述第二导向结构为滑槽,所述第二配合结构为滑轨,在锁附状态下,所述第二配合结构滑动连接于所述第二导向结构。
本申请实施例的拼接组件中,通过将第二导向结构设置为滑槽,将第二配合结构设置为滑轨,使得第二配合结构滑动连接于第二导向结构,此结构下,第二底座和连接件之间易于装配,结构简单。
可选的,在本申请的一些实施例中,所述第二配合结构包括第二连接部和第二齿合部,所述第二连接部与所述第二底座连接,所述第二齿合部与所述第二连接部连接,所述第二齿合部的宽度大于所述第二连接部的宽度;
所述第二导向结构包括第二齿合槽和第二连接槽,所述第二齿合槽对应所述第二齿合部设置,所述第二连接槽与所述第二齿合槽连通,所述第二连接槽对应所述第二连接部设置;
在锁附状态下,所述第二齿合部插接于所述第二齿合槽,所述第二连接部插接于所述第二连接槽。
本申请实施例的拼接组件中,在锁附状态下,第二齿合部插接于第二齿合槽,第二连接部插接于第二连接槽,由于第二齿合部的宽度大于第二连接部的宽度,第二齿合部无法从第二齿合槽中移动至第二连接槽中,如此设置,可以避免第二配合结构从第二导向结构中脱离,有效提高连接组件的可靠性。
可选的,在本申请的一些实施例中,所述第二齿合部的宽度由所述第二连接部朝所述第二齿合部的方向呈渐扩设置,所述第二齿合槽的宽度由所述第二连接槽朝所述第二齿合槽的方向呈渐扩设置。
本申请实施例的拼接组件中,可以增加第二齿合部与第二齿合槽的侧壁的接触面积,有效防止第二导向结构从第二配合结构中脱离,提高连接组件的可靠性。
可选的,在本申请的一些实施例中,所述第一底座还设有第一定位部,所述连接件对应所述第一定位部设有第一限位部;
在锁附状态下,所述第一定位部插接于所述第一限位部;在解锁状态下,所述第一定位部与所述第一限位部分离。
本申请实施例的拼接组件中,可以进一步提高连接件与第一底座连接的稳定性。在此实施例中,第一定位部可以卡合连接于第一限位部,从而将连接件与第一底座固定在一起。
可选的,在本申请的一些实施例中,所述第一定位部和所述第一限位部中的一个为卡扣,另一个为卡槽。
本申请实施例的拼接组件中,第一定位部和第一限位部中的一个为卡扣,另一个为卡槽,从而使得第一定位部可以卡合连接于第一限位部。
可选的,在本申请的一些实施例中,所述第二底座还设有第二定位部,所述连接件对应所述第二定位部设有第二限位部;
在锁附状态下,所述第二定位部插接于所述第二限位部;在解锁状态下,所述第二定位部与所述第二限位部分离。
本申请实施例的拼接组件中,可以进一步提高连接件与第二底座连接的稳定性。在此实施例中,第二定位部可以卡合连接于第二限位部,从而将连接件与第二底座固定在一起。
可选的,在本申请的一些实施例中,所述第二定位部和所述第二限位部中的一个为卡扣,另一个为卡槽。
本申请实施例的拼接组件中,第二定位部和第二限位部中的一个为卡扣,另一个为卡槽,从而使得第二定位部可以卡合连接于第二限位部。
可选的,在本申请的一些实施例中,所述连接组件还包括导轨,所述第一底座或所述第二底座滑动连接于导轨。
本申请实施例的拼接组件中,通过导轨可以便于调整第一底座和第二底座的间距,调整好了之后,将滑动连接于导轨的第一底座或第二底座固定于导轨上,有效提高拼装效率。
本申请实施例还提供一种拼接显示器,包括:
至少一个第一显示屏;
至少一个第二显示屏,与对应的所述第一显示屏拼接;以及
如上所述的连接组件,所述第一底座固定于对应的所述第一显示屏的背面,所述第二底座固定于对应的所述第二显示屏的背面,所述连接件将所述第一底座和所述第二底座锁附在一起。
本申请实施例的拼接显示器中,通过采用连接组件拼接第一显示屏和第二显示屏,使得第一显示屏和第二显示屏可靠地拼接在一起,第一显示屏和第二显示屏不容易移位,工人不需要反复确认位置,有效简化拼接显示屏的安装制程和提高安装效率。
可选的,在本申请的一些实施例中,所述连接组件还包括沿所述第一方向延伸设置的导轨;
所述导轨设于所述第一显示屏的背面,所述第一底座滑动连接于所述导轨;或者,所述导轨设于所述第二显示屏的背面,所述第二底座滑动连接于所述导轨。
本申请实施例的拼接显示器中,通过导轨可以便于调整第一底座和第二底座的间距,调整好了之后,将滑动连接于导轨的第一底座或第二底座固定于导轨上,有效提高拼装效率。
有益效果
本申请实施例采用一种连接组件以及拼接显示器,通过采用连接组件拼接第一显示屏和第二显示屏,使得第一显示屏和第二显示屏可靠地拼接在一起,第一显示屏和第二显示屏不容易移位,工人不需要反复确认位置,有效简化拼接显示屏的安装制程和提高安装效率。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例提供的第一种拼接显示器的立体结构示意图;
图2是本申请实施例提供的第一种连接组件的爆炸分解结构示意图;
图3是本申请实施例提供的第一种第一底座的立体结构示意图;
图4是本申请实施例提供的第一种连接件的立体结构示意图;
图5是本申请实施例提供的第一种拼接显示器的局部剖视结构示意图;
图6是本申请实施例提供的第二种第一底座的立体结构示意图;
图7是本申请实施例提供的第二种连接件的立体结构示意图;
图8是本申请实施例提供的第一种第二底座的立体结构示意图;
图9是本申请实施例提供的第二种第二底座的主视结构示意图;
图10是本申请实施例提供的第二种拼接显示器的立体结构示意图;
图11是本申请实施例提供的第二种连接组件的爆炸分解结构示意图;
图12是本申请实施例提供的第三种连接件的立体结构示意图。
本发明的实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,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。基于本申请中的实施例,本领域技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。此外,应当理解的是,此处所描述的具体实施方式仅用于说明和解释本申请,并不用于限制本申请。在本申请中,在未作相反说明的情况下,使用的方位词如“上”和“下”通常是指装置实际使用或工作状态下的上和下,具体为附图中的图面方向;而“内”和“外”则是针对装置的轮廓而言的。
本申请实施例提供一种连接组件以及拼接显示器。以下分别进行详细说明。需说明的是,以下实施例的描述顺序不作为对实施例优选顺序的限定。
请参阅图1,本申请实施例提供一种连接组件100,应用于拼接显示屏,具体来说,拼接显示屏包括第一显示屏200和第二显示屏300,连接组件100用于使第一显示屏200和第二显示屏300定位拼接,能够保证拼接精度,使得第一显示屏200和第二显示屏300紧密拼接在一起,有利于消除拼缝。
具体的,如图1和图2所示,连接组件100包括第一底座110、第二底座120以及连接件130,连接件130用于将第一底座110和第二底座120锁附在一起。本申请实施例中,通过将第一底座110固定于第一显示屏200的背面,将第二底座120固定于第二显示屏300的背面,然后采用连接件130将第一底座110和第二底座120锁附在一起,从而使得第一底座110和第二底座120通过连接件130固定在一起,进而使得第一显示屏200和第二显示屏300拼接在一起。
具体的,第一底座110设有第一导向结构113,第二底座120设有第二导向结构123,连接件130设有对应第一导向结构113设置的第一配合结构131和对应第二导向结构123设置的第二配合结构132;在锁附状态下,第一导向结构113齿合连接于第一配合结构131,第二导向结构123齿合连接于第二配合结构132,在解锁状态下,第一导向结构113与第一配合结构131分离,第二导向结构123与第二配合结构132分离。
为了便于描述,定义连接件130将第一底座110和第二底座120锁附在一起时,第一底座110和第二底座120的排列方向为第一方向X,垂直于第一方向X的方向为第二方向Y,同时垂直于第一方向X和第二方向Y的方向为第三方向Z。可以理解的是,根据实际情况的选择和具体需求,第一方向X、第二方向Y和第三方向Z的任意两个方向的夹角可以适当调整,只要保证任意两个方向的夹角不为0度即可,在此不做唯一限定。
连接件130将第一底座110和第二底座120锁附在一起时,第一底座110和第二底座120沿第一方向X排列,第一导向结构113齿合连接于第一配合结构131,第二导向结构123齿合连接于第二配合结构132,如此设置,连接件130可以限定第一底座110和第二底座120在第一方向X上的相对位置,使得第一显示屏200和第二显示屏300紧密拼接,有利于消除拼缝。
本申请实施例中,通过采用连接组件100拼接第一显示屏200和第二显示屏300,使得第一显示屏200和第二显示屏300可靠地拼接在一起,第一显示屏200和第二显示屏300不容易移位,工人不需要反复确认位置,有效简化拼接显示屏的安装制程和提高安装效率。
具体的,如图3至图5所示,第一导向结构113为滑轨,第一配合结构131为滑槽;在锁附状态下,第一导向结构113滑动连接于第一配合结构131。本申请实施例的拼接组件中,通过将第一导向结构113设置为滑轨,将第一配合结构131设置为滑槽,使得第一导向结构113滑动连接于第一配合结构131,此结构下,第一底座110和连接件130之间易于装配,结构简单。
具体的,如图3和图4所示,第一导向结构113包括第一连接部1131和第一齿合部1132,第一连接部1131与第一底座110连接,第一齿合部1132与第一连接部1131连接,第一齿合部1132的宽度大于第一连接部1131的宽度。在此实施例中,结合图1、图3和图4,于连接件130插接在第一底座110时,第一连接部1131沿第三方向Z连接于第一底座110的背离第一显示屏200的一侧,第一齿合部1132沿第三方向Z连接于第一连接部1131的背离第一底座110的一侧。
需要解释的是,本申请实施例中,宽度指的是沿第一方向X的距离,后续不再对宽度的含义进行解释。
具体的,如图3和图4所示,第一配合结构131包括第一齿合槽1312和第一连接槽1311,第一齿合槽1312对应第一齿合部1132设置,第一齿合槽1312的形状与第一齿合部1132的形状适配,使得第一齿合部1132能够正好插接于第一齿合槽1312;第一连接槽1311与第一齿合槽1312连通,第一连接槽1311对应第一连接部1131设置,第一连接槽1311的形状与第一连接部1131的形状适配,使得第一连接部1131能够正好插接于第一连接槽1311。在此实施例中,结合图1、图5和图6,于连接件130插接在第一底座110时,第一连接槽1311沿第三方向Z设于连接件130的靠近第一显示屏200的一侧,第一齿合槽1312沿第三方向Z设于第一连接槽1311的背离第一显示屏200的一侧,且第一齿合槽1312与第一连接槽1311连通。
在锁附状态下,第一齿合部1132插接于第一齿合槽1312,第一连接部1131插接于第一连接槽1311,由于第一齿合部1132的宽度大于第一连接部1131的宽度,第一齿合部1132无法从第一齿合槽1312中移动至第一连接槽1311中,如此设置,可以避免第一导向结构113沿第三方向Z从第一配合结构131中脱离,有效提高连接组件100的可靠性。
具体的,如图3和图4所示,第一齿合部1132的宽度由第一连接部1131朝第一齿合部1132的方向呈渐扩设置;相应地,第一齿合槽1312的宽度由第一连接槽1311朝第一齿合槽1312的方向呈渐扩设置。本申请实施例中,通过上述设置,可以增加第一齿合部1132与第一齿合槽1312的侧壁的接触面积,有效防止第一导向结构113沿第三方向Z从第一配合结构131中脱离,提高连接组件100的可靠性。
具体的,如图3和图4所示,本申请实施例的第一底座110中,第一齿合部1132的截面形状为倒梯形,相应地,第一齿合槽1312的截面形状也为倒梯形。应当理解的是,截面形状指的是由垂直于第二方向Y的平面所截得的截面的形状。此结构下,可以增加第一齿合部1132与第一齿合槽1312的侧壁的接触面积,有效防止第一导向结构113沿第三方向Z从第一配合结构131中脱离,提高连接组件100的可靠性。
可以理解的是,根据实际情况的选择和具体需求设置,第一齿合部1132的截面形状也可以为倒三角形、弧形或其他形状,只要保证第一齿合部1132的宽度由第一连接部1131朝第一齿合部1132的方向呈渐扩设置即可,在此不做唯一限定。
具体的,如图6和图7所示,第一导向结构113为滑槽,第一配合结构131为滑轨;在锁附状态下,第一配合结构131滑动连接于第一导向结构113。本申请实施例的拼接组件中,通过将第一导向结构113设置为滑槽,将第一配合结构131设置为滑轨,使得第一配合结构131滑动连接于第一导向结构113,此结构下,第一底座110和连接件130之间易于装配,结构简单。
具体的,如图6所示,第一配合结构131包括第一连接部1311’和第一齿合部1312’,第一连接部1311’与连接件130连接,第一齿合部1312’与第一连接部1231’连接,第一齿合部1312’的宽度大于第一连接部1311’的宽度。在此实施例中,于连接件130插接在第一底座110时,第一连接部1311’沿第三方向Z连接于连接件130的靠近第一显示屏200的一侧,第一齿合部1312’沿第三方向Z连接于第一连接部1311’的靠近第一显示屏200的一侧。
结合图6和图7,第一导向结构113包括第一连接槽1131’和第一齿合槽1132’,第一齿合槽1132’对应第一齿合部1312’设置,第一齿合槽1132’的形状与第一齿合部1312’的形状适配,使得第一齿合部1312’能够正好插接于第一齿合槽1132’;第一连接槽1131’与第一齿合槽1132’连通,第一连接槽1131’对应第一连接部1311’设置,第一连接槽1131’的形状与第一连接部1311’的形状适配,使得第一连接部1311’能够正好插接于第一连接槽1131’。在此实施例中,于连接件130插接在第一底座110时,第一连接槽1131’沿第三方向Z设于第一底座110的背离第一显示屏200的一侧,第一齿合槽1132’沿第三方向Z设于第一连接槽1131’的靠近第一显示屏200的一侧,且第一齿合槽1132’与第一连接槽1131’连通。
在锁附状态下,第一齿合部1312’插接于第一齿合槽1132’,第一连接部1311’插接于第一连接槽1131’,由于第一齿合部1312’的宽度大于第一连接部1311’的宽度,第一齿合部1312’无法从第一齿合槽1132’中移动至第一连接槽1131’中,如此设置,可以避免第一配合结构131沿第三方向Z从第一导向结构113中脱离,有效提高连接组件100的可靠性。
具体的,如图6和图7所示,第一齿合部1312’的宽度由第一连接部1311’朝第一齿合部1312’的方向呈渐扩设置;相应地,第一齿合槽1132’的宽度由第一连接槽1131’朝第一齿合槽1132’的方向呈渐扩设置。本申请实施例中,通过上述设置,可以增加第一齿合部1312’与第一齿合槽1132’的侧壁的接触面积,有效防止第一配合结构131沿第三方向Z从第一导向结构113中脱离,提高连接组件100的可靠性。
具体的,如图6和图7所示,本申请实施例的第一底座110中,第一齿合部1312’的截面形状为梯形,相应地,第一齿合槽1132’的截面形状也为梯形。应当理解的是,截面形状指的是由垂直于第二方向Y的平面所截得的截面的形状。此结构下,可以增加第一齿合部1312’与第一齿合槽1132’的侧壁的接触面积,有效防止第一配合结构131沿第三方向Z从第一导向结构113中脱离,提高连接组件100的可靠性。
可以理解的是,根据实际情况的选择和具体需求设置,第一齿合部1312’的截面形状也可以为三角形、弧形或其他形状,只要保证第一齿合部1312’的宽度由第一连接部1311’朝第一齿合部1312’的方向呈渐扩设置即可,在此不做唯一限定。
具体的,如图4、图5和图8所示,第二导向结构123为滑轨,第二配合结构132为滑槽;在锁附状态下,第二导向结构123滑动连接于第二配合结构132。本申请实施例的拼接组件中,通过将第二导向结构123设置为滑轨,将第二配合结构132设置为滑槽,使得第二导向结构123滑动连接于第二配合结构132,此结构下,第二底座120和连接件130之间易于装配,结构简单。
具体的,如图4和图8所示,第二导向结构123包括第二连接部1231和第二齿合部1232,第二连接部1231与第二底座120连接,第二齿合部1232与第二连接部1231连接,第二齿合部1232的宽度大于第二连接部1231的宽度。在此实施例中,于连接件130插接在第二底座120时,第二连接部1231沿第三方向Z连接于第二底座120的背离第二显示屏300的一侧,第二齿合部1232沿第三方向Z连接于第二连接部1231的背离第二底座120的一侧。
具体的,如图4和图8所示,第二配合结构132包括第二齿合槽1322和第二连接槽1321,第二齿合槽1322对应第二齿合部1232设置,第二齿合槽1322的形状与第二齿合部1232的形状适配,使得第二齿合部1232能够正好插接于第二齿合槽1322;第二连接槽1321与第二齿合槽1322连通,第二连接槽1321对应第二连接部1231设置,第二连接槽1321的形状与第二连接部1231的形状适配,使得第二连接部1231能够正好插接于第二连接槽1321。在此实施例中,于连接件130插接在第二底座120时,第二连接槽1321沿第三方向Z设于连接件130的靠近第二显示屏300的一侧,第二齿合槽1322沿第三方向Z设于第二连接槽1321的背离第二显示屏300的一侧,且第二齿合槽1322与第二连接槽1321连通。
在锁附状态下,第二齿合部1232插接于第二齿合槽1322,第二连接部1231插接于第二连接槽1321,由于第二齿合部1232的宽度大于第二连接部1231的宽度,第二齿合部1232无法从第二齿合槽1322中移动至第二连接槽1321中,如此设置,可以避免第二导向结构123沿第三方向Z从第二配合结构132中脱离,有效提高连接组件100的可靠性。
具体的,如图4和图8所示,第二齿合部1232的宽度由第二连接部1231朝第二齿合部1232的方向呈渐扩设置;相应地,第二齿合槽1322的宽度由第二连接槽1321朝第二齿合槽1322的方向呈渐扩设置。本申请实施例中,通过上述设置,可以增加第二齿合部1232与第二齿合槽1322的侧壁的接触面积,有效防止第二导向结构123沿第三方向Z从第二配合结构132中脱离,提高连接组件100的可靠性。
具体的,如图4和图8所示,本申请实施例的第二底座120中,第二齿合部1232的截面形状为倒梯形,相应地,第二齿合槽1322的截面形状也为倒梯形。应当理解的是,截面形状指的是由垂直于第二方向Y的平面所截得的截面的形状。此结构下,可以增加第二齿合部1232与第二齿合槽1322的侧壁的接触面积,有效防止第二导向结构123沿第三方向Z从第二配合结构132中脱离,提高连接组件100的可靠性。
可以理解的是,根据实际情况的选择和具体需求设置,第二齿合部1232的截面形状也可以为倒三角形、弧形或其他形状,只要保证第二齿合部1232的宽度由第二连接部1231朝第二齿合部1232的方向呈渐扩设置即可,在此不做唯一限定。
具体的,如图6和图9所示,第二导向结构123为滑槽,第二配合结构132为滑轨;在锁附状态下,第二配合结构132滑动连接于第二导向结构123。本申请实施例的拼接组件中,通过将第二导向结构123设置为滑槽,将第二配合结构132设置为滑轨,使得第二配合结构132滑动连接于第二导向结构123,此结构下,第二底座120和连接件130之间易于装配,结构简单。
具体的,如图6和图9所示,第二配合结构132包括第二连接部1321’和第二齿合部1322’,第二连接部1321’与连接件130连接,第二齿合部1322’与第二连接部1321’连接,第二齿合部1322’的宽度大于第二连接部1321’的宽度。在此实施例中,于连接件130插接在第二底座120时,第二连接部1321’沿第三方向Z连接于连接件130的靠近第二显示屏300的一侧,第二齿合部1322’沿第三方向Z连接于第二连接部1321’的靠近第二显示屏300的一侧。
具体的,如图6和图9所示,第二导向结构123包括第二齿合槽1232’和第二连接槽1231’,第二齿合槽1232’对应第二齿合部1322’设置,第二齿合槽1232’的形状与第二齿合部1322’的形状适配,使得第二齿合部1322’能够正好插接于第二齿合槽1232’;第二连接槽1231’与第二齿合槽1232’连通,第二连接槽1231’对应第二连接部1321’设置,第二连接槽1231’的形状与第二连接部1321’的形状适配,使得第二连接部1321’能够正好插接于第二连接槽1231’。在此实施例中,于连接件130插接在第二底座120时,第二连接槽1231’沿第三方向Z设于第二底座120的背离第二显示屏300的一侧,第二齿合槽1232’沿第三方向Z设于第二连接槽1231’的靠近第二显示屏300的一侧,且第二齿合槽1232’与第二连接槽1231’连通。
在锁附状态下,第二齿合部1322’插接于第二齿合槽1232’,第二连接部1321’插接于第二连接槽1231’,由于第二齿合部1322’的宽度大于第二连接部1321’的宽度,第二齿合部1322’无法从第二齿合槽1232’中移动至第二连接槽1231’中,如此设置,可以避免第二配合结构132沿第三方向Z从第二导向结构123中脱离,有效提高连接组件100的可靠性。
具体的,如图6和图9所示,第二齿合部1322’的宽度由第二连接部1321’朝第二齿合部1322’的方向呈渐扩设置;相应地,第二齿合槽1232’的宽度由第二连接槽1231’朝第二齿合槽1232’的方向呈渐扩设置。本申请实施例中,通过上述设置,可以增加第二齿合部1322’与第二齿合槽1232’的侧壁的接触面积,有效防止第二导向结构123沿第三方向Z从第二配合结构132中脱离,提高连接组件100的可靠性。
具体的,如图6和图9所示,本申请实施例的第二底座120中,第二齿合部1322’的截面形状为梯形,相应地,第二齿合槽1232’的截面形状也为倒梯形。应当理解的是,截面形状指的是由垂直于第二方向Y的平面所截得的截面的形状。此结构下,可以增加第二齿合部1322’与第二齿合槽1232’的侧壁的接触面积,有效防止第二导向结构123沿第三方向Z从第二配合结构132中脱离,提高连接组件100的可靠性。
可以理解的是,根据实际情况的选择和具体需求设置,第二齿合部1322’的截面形状也可以为三角形、弧形或其他形状,只要保证第二齿合部1322’的宽度由第二连接部1321’朝第二齿合部1322’的方向呈渐扩设置即可,在此不做唯一限定。
具体的,如图2和图7所示,第一底座110还设有第一定位部1121,连接件130对应第一定位部1121设有第一限位部135;在锁附状态下,第一定位部1121卡合连接于第一限位部135;在解锁状态下,第一定位部1121与第一限位部135分离。此结构下,可以进一步提高连接件130与第一底座110连接的稳定性。在此实施例中,第一定位部1121可以卡合连接于第一限位部135,从而将连接件130与第一底座110固定在一起,当然,根据实际情况的选择和具体需求设置,连接件130与第一底座110可以通过其他方式固定在一起,在此不做唯一限定。
具体的,第一定位部1121和第一限位部135中的一个为卡扣,另一个为卡槽,从而使得第一定位部1121可以卡合连接于第一限位部135。
具体的,如图2和图7所示,第二底座120还设有第二定位部1221,连接件130对应第二定位部1221设有第二限位部136;在锁附状态下,第二定位部1221卡合连接于第二限位部136;在解锁状态下,第二定位部1221与第二限位部136分离。此结构下,可以进一步提高连接件130与第二底座120连接的稳定性。在此实施例中,第二定位部1221可以卡合连接于第二限位部136,从而将连接件130与第二底座120固定在一起,当然,根据实际情况的选择和具体需求设置,连接件130与第二底座120可以通过其他方式固定在一起,在此不做唯一限定。
具体的,第二定位部1221和第二限位部136中的一个为卡扣,另一个为卡槽,从而使得第二定位部1221可以卡合连接于第二限位部136。
具体的,如图2至图4所示,第一底座110包括第一支撑座111以及与第一支撑座111连接的第一定位座112,第一导向结构113设于第一支撑座111。当连接件130插接于第一连接件130时,第一定位座112和第一导向结构113沿第三方向Z设于第一支撑座111的同一侧,且第一定位座112沿第二方向Y设于第一导向结构113的背离连接件130的一侧,第一定位座112抵接于连接件130,可以使得连接件130与第一底座110之间的结构更加紧凑,有效提高连接组件100的可靠性。在此实施例中,第一定位部1121设于第一定位座112上。
具体的,如图2、图8以及图9所示,第二底座120包括第二支撑座121以及与第二支撑座121连接的第二定位座122,第二导向结构123设于第二支撑座121。当连接件130插接于第二连接件130时,第二定位座122和第二导向结构123沿第三方向Z设于第二支撑座121的同一侧,且第二定位座122沿第二方向Y设于第二导向结构123的背离连接件130的一侧,第二定位座122抵接于连接件130,可以使得连接件130与第二底座120之间的结构更加紧凑,有效提高连接组件100的可靠性。在此实施例中,第二定位部1221设于第二定位座122上。
具体的,如图1、图2、图10以及图11所示,连接组件100还包括导轨140,第一底座110或第二底座120滑动连接于导轨140;于连接件130插接在第一底座110和第二底座120时,导轨140沿第一方向X延伸设置。在此实施例中,通过导轨140可以便于调整第一底座110和第二底座120的间距,调整好了之后,将滑动连接于导轨140的第一底座110或第二底座120固定于导轨140上,有效提高拼装效率。
如图1和图2所示,当第一底座110滑动连接于导轨140时,第二底座120可以通过胶水、螺丝或者其他方式直接固定在第二显示屏300的背面,导轨140可以通过胶水、螺丝或者其他方式直接固定在第一显示屏200的背面,导轨140沿第一方向X延伸设置,导轨140上设有第一底座110,第一显示屏200和第二显示屏300在拼接时,可以通过推动第一底座110来使第一底座110在导轨140上滑动,以调节第一底座110和第二底座120之间的间距,然后通过胶水、螺丝或者其他方式将第一底座110固定在导轨140上,最后将连接件130插接于第一底座110与第二底座120上,完成第一显示屏200和第二显示屏300的拼接。
如图10和图11所示,当第二底座120滑动连接于导轨140时,第一底座110可以通过胶水、螺丝或者其他方式直接固定在第一显示屏200的背面,导轨140可以通过胶水、螺丝或者其他方式直接固定在第二显示屏300的背面,导轨140沿第一方向X延伸设置,导轨140上设有第二底座120,第一显示屏200和第二显示屏300在拼接时,可以通过推动第二底座120来使第二底座120在导轨140上滑动,以调节第二底座120和第一底座110之间的间距,然后通过胶水、螺丝或者其他方式将第二底座120固定在导轨140上,最后将连接件130插接于第二底座120与第一底座110上,完成第一显示屏200和第二显示屏300的拼接。
具体的,如图1和图2所示,当第一底座110滑动连接于导轨140时,第一底座110设有第三滑槽1111,导轨140嵌入第三滑槽1111,从而使得第一底座110滑动连接于导轨140。在此实施例中,第三滑槽1111设于第一支撑座111。
具体的,如图10和图11所示,当第二底座120滑动连接于导轨140时,第二底座120设有第三滑槽1211,导轨140嵌入第三滑槽1211,从而使得第二底座120滑动连接于导轨140。在此实施例中,第三滑槽1211设于第二支撑座121。
具体的,在本申请实施例中,如图4所示,连接件130的第一配合结构131和第二配合结构132均为滑槽;如图7所示,连接件130的第一配合结构131和第二配合结构132均为滑轨。当然,根据实际情况的选择和具体需求设置,第一配合结构131和第二配合结构132中的一个可以为滑槽,另一个为滑轨,只要保证第一配合结构131与第一导向结构113齿合连接,第二配合结构132与第二导向结构123齿合连接即可,在此不做唯一限定。
具体的,在上述实施例中,连接件130为一体式结构,第一导向结构113和第二导向结构123的延伸方向相同,而根据实际情况的选择和具体需求设置,连接件130也可以为分体式结构,使得第一导向结构113和第二导向结构123的延伸方向不同,有利于提高连接组件100的稳定性。如图12所示,连接件130可以包括对应第一底座110的第一连接件137以及对应第二底座120的第二连接件138,第一对配结构131和第一限位部135设于第一连接件137,第二对配结构132和第二限位部136设于第二连接件138。此实施例下,在将第一连接件137插接于第一底座110,将第二连接件138插接于第二底座120后,采用螺丝或者其他固定连接方式将第一连接件137和第二连接件138固定在一起,从而使得第一显示屏200和第二显示屏300拼接。
图12所示的实施例中,虽然仅示出第一对配结构131和第二对配结构132均为滑槽的形式,而根据实际情况的选择和具体需求设置,第一对配结构131和第二对配结构132可以均为滑轨的形式;或者,第一对配结构131和第二对配结构132中的一个为滑轨,另一个为滑槽的形式,只要保证第一配合结构131与第一导向结构113齿合连接,第二配合结构132与第二导向结构123齿合连接即可,在此不做唯一限定。
请参阅图1和图10,本申请实施例还提供一种拼接显示器,包括至少一个第一显示屏200、至少一个第二显示屏300以及如上所述的连接组件100,第二显示屏300与对应的第一显示屏200拼接,第一底座110固定于对应的第一显示屏200的背面,第二底座120固定于对应的第二显示屏300的背面,连接件130插接于第一底座110和第二底座120。由于本实施例的拼接显示器包括上述所有实施例的技术方案,因此同样具有上述所有实施例的有益效果,在此不再对拼接显示器的有益效果进行赘述。
具体的,如图1、图2、图10以及图11所示,连接组件100还包括导轨140,第一底座110或第二底座120滑动连接于导轨140;于连接件130插接在第一底座110和第二底座120时,导轨140沿第一方向X延伸设置。在此实施例中,通过导轨140可以便于调整第一底座110和第二底座120的间距,调整好了之后,将滑动连接于导轨140的第一底座110或第二底座120固定于导轨140上,有效提高拼装效率。
如图1和图2所示,当第一底座110滑动连接于导轨140时,第二底座120可以通过胶水、螺丝或者其他方式直接固定在第二显示屏300的背面,导轨140可以通过胶水、螺丝或者其他方式直接固定在第一显示屏200的背面,导轨140沿第一方向X延伸设置,导轨140上设有第一底座110,第一显示屏200和第二显示屏300在拼接时,可以通过推动第一底座110来使第一底座110在导轨140上滑动,以调节第一底座110和第二底座120之间的间距,然后通过胶水、螺丝或者其他方式将第一底座110固定在导轨140上,最后将连接件130插接于第一底座110与第二底座120上,完成第一显示屏200和第二显示屏300的拼接。
如图10和图11所示,当第二底座120滑动连接于导轨140时,第一底座110可以通过胶水、螺丝或者其他方式直接固定在第一显示屏200的背面,导轨140可以通过胶水、螺丝或者其他方式直接固定在第二显示屏300的背面,导轨140沿第一方向X延伸设置,导轨140上设有第二底座120,第一显示屏200和第二显示屏300在拼接时,可以通过推动第二底座120来使第二底座120在导轨140上滑动,以调节第二底座120和第一底座110之间的间距,然后通过胶水、螺丝或者其他方式将第二底座120固定在导轨140上,最后将连接件130插接于第二底座120与第一底座110上,完成第一显示屏200和第二显示屏300的拼接。
具体的,如图1和图2所示,当第一底座110滑动连接于导轨140时,第一底座110设有第三滑槽1111,导轨140嵌入第三滑槽1111,从而使得第一底座110滑动连接于导轨140。在此实施例中,第三滑槽1111设于第一支撑座111。
具体的,如图10和图11所示,当第二底座120滑动连接于导轨140时,第二底座120设有第三滑槽1111,导轨140嵌入第三滑槽1111,从而使得第二底座120滑动连接于导轨140。在此实施例中,第三滑槽1111设于第二支撑座121。
以上对本申请实施例所提供的一种连接组件以及拼接显示器进行了详细介绍,本文中应用了具体个例对本申请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申请的方法及其核心思想;同时,对于本领域的技术人员,依据本申请的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (20)

  1. 一种连接组件,其包括:
    第一底座,设有第一导向结构;
    第二底座,设有第二导向结构;以及
    连接件,用于将所述第一底座和所述第二底座锁附在一起,所述连接件设有对应所述第一导向结构设置的第一配合结构和对应所述第二导向结构设置的第二配合结构;
    在锁附状态下,所述第一导向结构齿合连接于所述第一配合结构,所述第二导向结构齿合连接于所述第二配合结构;在解锁状态下,所述第一导向结构与所述第一配合结构分离,所述第二导向结构与所述第二配合结构分离。
  2. 如权利要求1所述的连接组件,其中,所述第一导向结构为滑轨,所述第一配合结构为滑槽,在锁附状态下,所述第一导向结构滑动连接于所述第一配合结构。
  3. 如权利要求2所述的连接组件,其中,所述第一导向结构包括第一连接部和第一齿合部,所述第一连接部与所述第一底座连接,所述第一齿合部与所述第一连接部连接,所述第一齿合部的宽度大于所述第一连接部的宽度;
    所述第一配合结构包括第一齿合槽和第一连接槽,所述第一齿合槽对应所述第一齿合部设置,所述第一连接槽与所述第一齿合槽连通,所述第一连接槽对应所述第一连接部设置;
    在锁附状态下,所述第一齿合部插接于所述第一齿合槽,所述第一连接部插接于所述第一连接槽。
  4. 如权利要求3所述的连接组件,其中,所述第一齿合部的宽度由所述第一连接部朝所述第一齿合部的方向呈渐扩设置,所述第一齿合槽的宽度由所述第一连接槽朝所述第一齿合槽的方向呈渐扩设置。
  5. 如权利要求1所述的连接组件,其中,所述第一导向结构为滑槽,所述第一配合结构为滑轨,在锁附状态下,所述第一配合结构滑动连接于所述第一导向结构。
  6. 如权利要求5所述的连接组件,其中,所述第一配合结构包括第一连接部和第一齿合部,所述第一连接部与所述第一底座连接,所述第一齿合部与所述第一连接部连接,所述第一齿合部的宽度大于所述第一连接部的宽度;
    所述第一导向结构包括第一齿合槽和第一连接槽,所述第一齿合槽对应所述第一齿合部设置,所述第一连接槽与所述第一齿合槽连通,所述第一连接槽对应所述第一连接部设置;
    在锁附状态下,所述第一齿合部插接于所述第一齿合槽,所述第一连接部插接于所述第一连接槽。
  7. 如权利要求6所述的连接组件,其中,所述第一齿合部的宽度由所述第一连接部朝所述第一齿合部的方向呈渐扩设置,所述第一齿合槽的宽度由所述第一连接槽朝所述第一齿合槽的方向呈渐扩设置。
  8. 如权利要求1所述的连接组件,其中,所述第二导向结构为滑轨,所述第二配合结构为滑槽,在锁附状态下,所述第二导向结构滑动连接于所述第二配合结构。
  9. 如权利要求8所述的连接组件,其中,所述第二导向结构包括第二连接部和第二齿合部,所述第二连接部与所述第二底座连接,所述第二齿合部与所述第二连接部连接,所述第二齿合部的宽度大于所述第二连接部的宽度;
    所述第二配合结构包括第二齿合槽和第二连接槽,所述第二齿合槽对应所述第二齿合部设置,所述第二连接槽与所述第二齿合槽连通,所述第二连接槽对应所述第二连接部设置;
    在锁附状态下,所述第二齿合部插接于所述第二齿合槽,所述第二连接部插接于所述第二连接槽。
  10. 如权利要求9所述的连接组件,其中,所述第二齿合部的宽度由所述第二连接部朝所述第二齿合部的方向呈渐扩设置,所述第二齿合槽的宽度由所述第二连接槽朝所述第二齿合槽的方向呈渐扩设置。
  11. 如权利要求1所述的连接组件,其中,所述第二导向结构为滑槽,所述第二配合结构为滑轨,在锁附状态下,所述第二配合结构滑动连接于所述第二导向结构。
  12. 如权利要求11所述的连接组件,其中,所述第二配合结构包括第二连接部和第二齿合部,所述第二连接部与所述第二底座连接,所述第二齿合部与所述第二连接部连接,所述第二齿合部的宽度大于所述第二连接部的宽度;
    所述第二导向结构包括第二齿合槽和第二连接槽,所述第二齿合槽对应所述第二齿合部设置,所述第二连接槽与所述第二齿合槽连通,所述第二连接槽对应所述第二连接部设置;
    在锁附状态下,所述第二齿合部插接于所述第二齿合槽,所述第二连接部插接于所述第二连接槽。
  13. 如权利要求12所述的连接组件,其中,所述第二齿合部的宽度由所述第二连接部朝所述第二齿合部的方向呈渐扩设置,所述第二齿合槽的宽度由所述第二连接槽朝所述第二齿合槽的方向呈渐扩设置。
  14. 如权利要求1所述的连接组件,其中,所述第一底座还设有第一定位部,所述连接件对应所述第一定位部设有第一限位部;
    在锁附状态下,所述第一定位部卡合连接于所述第一限位部;在解锁状态下,所述第一定位部与所述第一限位部分离。
  15. 如权利要求14所述的连接组件,其中,所述第一定位部和所述第一限位部中的一个为卡扣,另一个为卡槽。
  16. 如权利要求1所述的连接组件,其中,所述第二底座还设有第二定位部,所述连接件对应所述第二定位部设有第二限位部;
    在锁附状态下,所述第二定位部卡合连接于所述第二限位部;在解锁状态下,所述第二定位部与所述第二限位部分离。
  17. 如权利要求16所述的连接组件,其中,所述第二定位部和所述第二限位部中的一个为卡扣,另一个为卡槽。
  18. 如权利要求1所述的连接组件,其中,所述连接组件还包括导轨,所述第一底座或所述第二底座滑动连接于导轨。
  19. 一种拼接显示器,其包括:
    至少一个第一显示屏;
    至少一个第二显示屏,与对应的所述第一显示屏拼接;以及
    如权利要求1所述的连接组件,所述第一底座固定于对应的所述第一显示屏的背面,所述第二底座固定于对应的所述第二显示屏的背面,所述连接件将所述第一底座和所述第二底座锁附在一起。
  20. 如权利要求19所述的拼接显示器,其中,所述连接组件还包括导轨;
    所述导轨设于所述第一显示屏的背面,所述第一底座滑动连接于所述导轨;或者,所述导轨设于所述第二显示屏的背面,所述第二底座滑动连接于所述导轨。
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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003015553A (ja) * 2001-07-02 2003-01-17 Advanced Display Inc 表示装置
CN104299527A (zh) * 2014-09-24 2015-01-21 深圳市艾比森光电股份有限公司 屏体拼接装置和led租赁屏
CN206819678U (zh) * 2017-06-12 2017-12-29 北京金立翔艺彩科技有限公司 室外led拼接显示装置
CN108107978A (zh) * 2017-12-20 2018-06-01 李克法 多屏一体拼接单元、拼接显示装置和单元电子设备
CN208796613U (zh) * 2018-08-22 2019-04-26 广州冠显电子科技有限公司 液晶大屏的拼接安装结构
CN213339455U (zh) * 2020-06-05 2021-06-01 青岛海信商用显示股份有限公司 拼接屏装置
CN213635159U (zh) * 2020-10-20 2021-07-06 广州视源电子科技股份有限公司 拼接式交互平板
CN214175581U (zh) * 2020-12-08 2021-09-10 广州视源电子科技股份有限公司 显示屏拼接结构及智能交互平板

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3499052B1 (en) * 2017-12-15 2021-11-17 LG Display Co., Ltd. Tiled display device and tiling apparatus therefor
CN209762957U (zh) * 2019-04-26 2019-12-10 浙江志东照明科技有限公司 一种led灯安装结构
CN209936786U (zh) * 2019-05-15 2020-01-14 合肥联宝信息技术有限公司 锁附机构
CN210777625U (zh) * 2019-12-02 2020-06-16 深圳优色专显科技有限公司 一种便于拆装的拼接显示屏
CN211455171U (zh) * 2020-04-02 2020-09-08 重庆市透明光电科技有限公司 一种led屏拼接结构
CN212135829U (zh) * 2020-05-23 2020-12-11 苏州致汇商显信息科技有限公司 一种模块式拼装led显示屏
CN112269552A (zh) * 2020-10-22 2021-01-26 维沃移动通信有限公司 屏幕及电子设备
CN214888139U (zh) * 2021-05-31 2021-11-26 上海有电电子有限公司 一种自由组合式液晶拼接屏

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003015553A (ja) * 2001-07-02 2003-01-17 Advanced Display Inc 表示装置
CN104299527A (zh) * 2014-09-24 2015-01-21 深圳市艾比森光电股份有限公司 屏体拼接装置和led租赁屏
CN206819678U (zh) * 2017-06-12 2017-12-29 北京金立翔艺彩科技有限公司 室外led拼接显示装置
CN108107978A (zh) * 2017-12-20 2018-06-01 李克法 多屏一体拼接单元、拼接显示装置和单元电子设备
CN208796613U (zh) * 2018-08-22 2019-04-26 广州冠显电子科技有限公司 液晶大屏的拼接安装结构
CN213339455U (zh) * 2020-06-05 2021-06-01 青岛海信商用显示股份有限公司 拼接屏装置
CN213635159U (zh) * 2020-10-20 2021-07-06 广州视源电子科技股份有限公司 拼接式交互平板
CN214175581U (zh) * 2020-12-08 2021-09-10 广州视源电子科技股份有限公司 显示屏拼接结构及智能交互平板

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