WO2017036167A1 - 壳体组件及移动终端 - Google Patents

壳体组件及移动终端 Download PDF

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Publication number
WO2017036167A1
WO2017036167A1 PCT/CN2016/081497 CN2016081497W WO2017036167A1 WO 2017036167 A1 WO2017036167 A1 WO 2017036167A1 CN 2016081497 W CN2016081497 W CN 2016081497W WO 2017036167 A1 WO2017036167 A1 WO 2017036167A1
Authority
WO
WIPO (PCT)
Prior art keywords
sub
housing assembly
strip
periphery
light incident
Prior art date
Application number
PCT/CN2016/081497
Other languages
English (en)
French (fr)
Inventor
唐义梅
王晓辉
刘兵
许宇初
陈伟
李勇
张伟
廖新风
孙毅
邹宏
胡志勤
Original Assignee
广东欧珀移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 广东欧珀移动通信有限公司 filed Critical 广东欧珀移动通信有限公司
Publication of WO2017036167A1 publication Critical patent/WO2017036167A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K5/00Casings, cabinets or drawers for electric apparatus
    • H05K5/02Details
    • H05K5/03Covers

Definitions

  • the present invention relates to the field of electronic devices, and in particular, to a housing assembly and a mobile terminal.
  • a step is arranged on the inner side of the frame, and a protrusion is arranged on the step, and the periphery of the transparent panel is carried by the protrusion of the step to make the periphery and the step of the transparent panel.
  • the step width is narrow, so the strip must be disposed around the protrusion, so that the protrusion on the step It is easy to cut off the strip, which causes the strip to break, which results in the transparent panel and the frame being weakly bonded. Therefore, the assembly structure of the mobile phone caused by the broken glue is not good, and the use performance of the mobile phone is not good.
  • the present invention provides a housing assembly and a mobile terminal that can improve the performance of use.
  • the present invention provides a housing assembly, wherein the housing assembly includes a transparent panel, a bezel, and a display screen, the transparent panel includes a light incident surface and a panel side connected to a peripheral edge of the light incident surface, the bezel includes An inner side surface and a step protruding from the inner side surface, the frame is enclosed on a periphery of the transparent panel, the inner side surface is attached to the side surface of the panel, and covers the side surface of the panel, and the step includes a step top a surface of the step and a side surface of the step, wherein the top surface of the step is connected to the inner side surface, and the top surface of the step is provided with a plurality of hemispherical protrusions, and the plurality of protrusions are arranged along the circumference of the light incident surface a periphery of the light-incident surface, such that a gap exists between the peripheral edge of the light-incident surface and the top surface of the step, and a strip is disposed in the
  • the top surface of the step is provided with a glue groove extending in a direction parallel to the length of the inner side surface, the glue groove is adjacent to the plurality of protrusions, the glue groove Filling the strip with the side of the step connected to the
  • the display top surface includes a display surface and an outer side surface enclosed by the periphery of the display surface, the display surface is attached to the light incident surface, and the outer side surface is opposite to the front surface
  • the step side is disposed, and a buffer foam is fixed between the outer side surface and the side surface of the step.
  • the top surface of the step includes a first sub-step surface and a second sub-step surface on both sides of the glue tank, the first sub-step surface is connected to the inner side surface, and the second sub-step surface is connected On a side of the step, a part of the strip is located on the first sub-step surface or the second sub-step surface, and another part is filled in the glue tank.
  • the glue tank comprises a plurality of sub-glues, a plurality of the sub-tanks are arranged along a circumferential direction parallel to the light-incident surface, and are disposed apart, and the protrusions are located adjacent to the two sub-tanks between.
  • the glue groove is provided with a rough inner surface, and the rough inner surface is bonded to the rubber strip.
  • the distance from the glue groove to the inner side surface is equal to the distance from the glue groove to the side surface of the step.
  • the present invention also provides a housing assembly, wherein the housing assembly includes a transparent panel and a bezel, the transparent panel includes a light incident surface and a panel side connected to a periphery of the light incident surface, the bezel including an inner side And a frame protruding from the inner side surface, the frame is enclosed by the periphery of the transparent panel, the inner side surface is attached to the side of the panel, and covers the side surface of the panel, and the step includes a top surface of the step.
  • the top surface of the step is connected to the inner side surface, and the top surface of the step is provided with a plurality of hemispherical protrusions, and a plurality of the protrusions are arranged along a circumference of the light incident surface, and the plurality of protrusions are abutted a periphery of the light-incident surface, such that a gap exists between the peripheral edge of the light-incident surface and the top surface of the step, and a strip is disposed in the pitch, and the strip extends in a direction parallel to a peripheral edge of the light-incident surface. And wrapped around a plurality of the protrusions.
  • the step further includes a step side surface connected to a side of the step top surface away from the inner side surface
  • the housing assembly further includes a display screen, the display screen including a display surface and an enclosure
  • the outer surface of the periphery of the display surface, the display surface is attached to the light incident surface, the outer side surface is disposed opposite to the side surface of the step, and a buffer foam is fixed between the outer side surface and the side surface of the step.
  • the top surface of the step is provided with a glue groove extending in a direction parallel to a peripheral edge of the light-incident surface, the glue groove is adjacent to the plurality of protrusions, and the glue groove is filled in the glue groove.
  • the top surface of the step includes a first sub-step surface and a second sub-step surface on both sides of the glue tank, the first sub-step surface is connected to the inner side surface, and the second sub-step surface is connected On a side of the step, a part of the strip is located on the first sub-step surface or the second sub-step surface, and another part is filled in the glue tank.
  • the glue tank comprises a plurality of sub-glues, a plurality of the sub-tanks are arranged along a circumferential direction parallel to the light-incident surface, and are disposed apart, and the protrusions are located adjacent to the two sub-tanks between.
  • the rubber groove has a U-shaped groove in cross section.
  • the glue groove comprises opposite first and second side walls, the first side wall is parallel to the second side wall, and the first side wall and the second side wall are both Bracted in a braided shape.
  • the glue tank comprises a bottom surface, and the bottom surface is in a shape of a dome.
  • the width of the top surface of the step is 0.35 mm to 0.45 mm, and the width of the glue groove is 0.15 mm to 0.25 mm.
  • the present invention also provides a mobile terminal, wherein the mobile terminal includes a housing assembly, the housing assembly includes a transparent panel and a frame, and the transparent panel includes a light incident surface and a panel connected to a periphery of the light incident surface a side surface, the frame includes an inner side surface and a step protruding from the inner side surface, the frame is enclosed on a periphery of the transparent panel, and the inner side surface is attached to the side of the panel and covers the side of the panel.
  • the step includes a step top surface, the step top surface is connected to the inner side surface, and the step top surface is provided with a plurality of hemispherical protrusions, and the plurality of the protrusions are arranged along the circumference of the light incident surface a plurality of the protrusions abut against a circumference of the light incident surface, so that a gap exists between the peripheral edge of the light incident surface and the top surface of the step, and a strip is disposed in the gap, and the strip is parallel Extending in a peripheral direction of the light incident surface and covering a plurality of the protrusions; the mobile terminal further includes a back cover, a main board and a control component disposed on the main board, wherein the rear cover is provided with an opening orientation a housing cavity of the housing assembly, the housing The closure member receiving cavity, said control board and said components are secured in the receiving chamber.
  • the step further includes a step side surface connected to a side of the step top surface away from the inner side surface
  • the housing assembly further includes a display screen, the display screen including a display surface and an enclosure An outer side surface of the periphery of the display surface, the display surface is attached to the light incident surface, the outer side surface is disposed opposite to the side surface of the step, and a buffer foam is fixed between the outer side surface and the side surface of the step.
  • the control component is electrically connected to the display screen to control the display screen to display information.
  • the top surface of the step is provided with a glue groove extending in a direction parallel to the length of the inner side surface, the glue groove is adjacent to the plurality of protrusions, and the glue groove is filled in the glue groove.
  • the top surface of the step includes a first sub-step surface and a second sub-step surface on both sides of the glue tank, the first sub-step surface is connected to the inner side surface, and the second sub-step surface is connected On a side of the step, a part of the strip is located on the first sub-step surface or the second sub-step surface, and another part is filled in the glue tank.
  • the glue tank comprises a plurality of sub-glues, a plurality of the sub-tanks are arranged along a circumferential direction parallel to the light-incident surface, and are disposed apart, and the protrusions are located adjacent to the two sub-tanks between.
  • the glue groove is provided with a rough inner surface, and the rough inner surface is bonded to the rubber strip
  • the housing assembly and the mobile terminal of the present invention are provided with a plurality of hemispherical protrusions on the top surface of the step on the inner side of the frame, and the plurality of the protrusions abut against the periphery of the light incident surface, thereby making the protrusion Abutting against the light incident surface in a point contact manner, so that the rubber strip disposed in the pitch can be wrapped around the protrusion and not blocked by the protrusion, thereby preventing the glue breakage from occurring.
  • the frame and the transparent panel can be tightly bonded and the structure is stable, thereby improving the performance of the housing assembly.
  • FIG. 1 is a schematic structural view of a housing assembly provided by the present invention
  • FIG. 2 is a schematic structural view of a housing assembly of a preferred embodiment provided by the present invention.
  • Figure 3 is a cross-sectional view of the housing assembly of Figure 2 taken along section II-II;
  • FIG. 4 is a cross-sectional view of the housing assembly of FIG. 2 taken along section III-III.
  • the housing assembly 100 includes a transparent panel 10 and a frame 20 .
  • the frame 20 surrounds the periphery of the transparent panel 10 .
  • the frame 20 includes an inner side surface 21 and a step 22 protruding from the inner side surface 21, the step 22 includes a step top surface 221 and a step side surface 222, and the step top surface 221 is provided with a plurality of hemispherical protrusions 23 a plurality of the protrusions 23 support the periphery of the transparent panel 10 such that there is a gap between the step top surface 221 and the transparent panel 10, and a strip of glue is disposed in the gap, so that the strip can be adhered Attaching the frame 20 and the transparent panel 10 to the periphery of the plurality of protrusions 23 by using the strip, thereby achieving adhesion of the transparent panel 20 to the frame 10, and avoiding the glue
  • the strip is interrupted by the projections 23 to avoid a breakage condition, thereby improving the
  • the housing assembly 100 is applied to a mobile terminal, which may be a mobile phone, a tablet computer, a notebook computer or a liquid crystal display, etc., and the housing assembly 100 can be understood as a mobile phone, or a tablet computer, or A decorative front cover that illuminates the display screen in a laptop.
  • a mobile terminal which may be a mobile phone, a tablet computer, a notebook computer or a liquid crystal display, etc.
  • the housing assembly 100 can be understood as a mobile phone, or a tablet computer, or A decorative front cover that illuminates the display screen in a laptop.
  • the transparent panel 10 includes oppositely disposed light incident surfaces 11 and light exiting surfaces 12, and is fixed to the light incident surface 11 And a panel side surface 13 between the light exit surface 12.
  • the panel side surface 13 surrounds the periphery of the light incident surface 11 and surrounds the periphery of the light exit surface 12 .
  • the transparent panel 10 is a light transmissive glass, and the transparent panel 10 is a rectangular plate.
  • the light-incident surface 11 faces away from the user for being attached to the display screen and is incident on the display screen.
  • the light-emitting surface 12 faces the user and emits the display light of the display screen.
  • the outer surface of the transparent panel 10 is described.
  • the transparent panel 10 enhances light transmission to the display screen, thereby enhancing the visual effect of the housing assembly 100.
  • the transparent panel 10 is a transparent hard plate member, and the transparent panel 10 is well combined with the frame 20, and has good protection for the internal parts of the terminal, and achieves good light transmission.
  • the transparent panel 10 may also be made of sapphire glass or made of plexiglass.
  • the light incident surface 11 is a flat surface, and the peripheral edge of the light incident surface 11 is fixed to the step top surface 221 .
  • the peripheral edge of the light incident surface 11 abuts against the protrusion 23 and is adhered to the step top surface 221 by the strip.
  • the periphery of the light incident surface 11 is coated with an ink layer 111, and the ink layer 111 shields the step top surface 221 such that the step top surface 221 cannot be observed through the transparent panel 10, and the step is
  • the top surface 221 acts as a concealment, thereby preventing the step top surface 221 from affecting the appearance of the housing assembly 100.
  • the peripheral edge of the light incident surface 11 may further provide a groove corresponding to the protrusion 23, and the groove is matched with the protrusion 23 to make the transparent panel 10 and the step.
  • the top surface 221 is more firmly bonded.
  • the light-emitting surface 12 is used as an outer surface of the transparent panel 10, and the light-emitting surface 12 is in smooth contact with the outer surface of the frame 20.
  • the periphery of the light-emitting surface 12 is provided with a circular chamfer, and the circular chamfer and the outer surface of the frame 20 are arc-transitioned.
  • the arcuate chamfer covers or partially covers the ink layer 111 on the orthographic projection area on the light incident surface 11, so that the circular arc chamfer refracts the emitted light of the ink layer 111, thereby transmitting
  • the transparent panel 10 observes the ink layer 111,
  • the ink layer 111 is made to have a narrower width, so that the undisplayable area of the terminal front cover 100 is narrowed, thereby improving the appearance effect of the terminal front cover 100, conforming to ergonomics, and improving the use performance.
  • the periphery of the light-emitting surface 12 may also be provided with a chamfering angle, and the ink layer 111 is refracted by the light, thereby making the ink layer 111 visually narrow, thereby improving the front cover of the terminal.
  • the appearance of 100 may also be provided with a chamfering angle, and the ink layer 111 is refracted by the light, thereby making the ink layer 111 visually narrow, thereby improving the front cover of the terminal. The appearance of 100.
  • the panel side surface 13 is perpendicular to the light incident surface 11 , and the panel side surface 13 is closely adhered to the inner side surface 21 of the frame 20 , so that the transparent panel 10 and the frame 20 are The joints are seamlessly combined to improve the waterproof and dustproof effect of the housing assembly 100.
  • the panel side surface 13 may also be inclined with respect to the light incident surface 11 to increase the area of the panel side surface 13 such that the transparent panel 10 is more stable in combination with the bezel 20.
  • the frame 20 has a rectangular ring shape, and the frame 20 forms a protection for the periphery of the transparent panel 10, and the frame 20 forms a bearing for the transparent panel 10, so that the transparent panel 10 is applied to the terminal housing.
  • the terminal housing may be a housing of the terminal or a structural support member.
  • the bezel 20 can also be fixed to the back cover of the mobile terminal at the same time, so that the housing assembly 100 and the rear cover form the outer casing of the mobile terminal.
  • the inner side surface 21 of the frame 20 is attached to the side surface 13 of the panel and covers the side surface 13 of the panel.
  • the inner side surface 21 is in clearance engagement with the panel side surface 13.
  • the inner side surface 21 is provided with a groove 211, and a waterproof rubber 211a is disposed in the groove 211. Therefore, the gap between the inner side surface 21 and the side surface 13 of the panel can be filled by the waterproof rubber 211a, so that the housing assembly 100 achieves a waterproof and dustproof effect. More specifically, before the transparent panel 10 is assembled to the frame 20, a hot-melt waterproof rubber 211a is sprayed on the groove 211 of the inner side surface 21, and the waterproof rubber 211a completely fills the groove 211.
  • the transparent panel 10 is assembled to the frame 20, and the waterproof rubber of the groove 211 is pressed by the panel side 13 211a, so that the waterproof rubber 211a completely fills the gap between the side surface 13 of the panel and the inner side surface 21 under the action of the pressing force.
  • the step 22 protrudes from the inner side surface 21 , and the step 22 is adjacent to the light incident surface 11 of the transparent panel 10 .
  • the step 22 realizes the bearing of the transparent panel 10, so that the structure of the transparent panel 10 and the frame 20 is more stable.
  • the step top surface 221 is connected to the inner side surface 21, and the step top surface 221 is perpendicular to the inner side surface 21, and the step top surface 221 is parallel to the light incident surface 11.
  • the step top surface 221 is disposed opposite to the peripheral edge of the light incident surface 11 .
  • a glue groove 223 is disposed on the top surface 221 of the step, so that the glue groove 223 can accommodate the rubber strip, thereby utilizing the glue groove 223 to achieve an anti-overflow effect, thereby improving the performance of the housing assembly 100.
  • the step top surface 221 includes a first sub-step surface 221a and a second sub-step surface 221b on both sides of the glue groove 223, and the first sub-step surface 221a and the second sub-step surface 221b are coplanarly disposed. .
  • the first sub-step surface 221a is connected to the inner side surface 21, and the second sub-step surface 221b is away from the inner side surface 21.
  • the second sub-step surface 221b is adjacent to the periphery of the glue groove 223 to bond the strip, so that when the transparent panel 10 is assembled with the frame 20, the light-incident surface 11 presses the second
  • the strip of the sub-step surface 221b is such that the strip is first pressed into the glue tank 223 to prevent the strip from being pressed onto the first sub-step surface 221a, thereby avoiding the strip overflow.
  • Glue is applied between the inner side 21 and the panel side 13. More specifically, the step top surface 22 has a width of 0.35 mm to 0.45 mm. As a preferred solution, the step top surface 22 has a width of 0.4 mm.
  • the first sub-step surface 221a and the second sub-step surface 221b have a width of 0.1 mm, that is, the glue groove 223 and the inner side surface 21 and the glue groove 223 are equidistant from the step side surface 222.
  • the step top surface 221 can sufficiently buffer the flow of the strip to prevent the strip from overflowing.
  • the first sub-step surface 221a is adjacent to the periphery of the glue groove 23 to adhere the strip, thereby preventing the strip from overflowing onto the step side surface 222, thereby affecting the shell.
  • the assembly of the body assembly 100 and the display screen; or the first sub-step surface 221a and the second sub-step surface 221b are bonded to the strip, thereby increasing the strip and the step 22;
  • the contact area makes the bonding of the step 22 and the transparent panel 10 stronger.
  • the step side surface 222 is connected to the step top surface 221 and away from the circumference of the inner side surface 21 .
  • the step side 222 is perpendicular to the step top surface 221 .
  • the step side surface 222 is disposed opposite to the side wall of the display screen that is attached to the light incident surface 11 , so that the frame 20 also protects the display screen mounted on the inner side of the transparent panel 10 .
  • the step side surface 222 is bonded with a buffer foam 222a, and the buffer foam 222a is fixed between the step side surface 222 and the side wall of the display screen, so that the buffer foam 222a forms protection for the display screen.
  • the buffer foam 222a can also absorb the rubber strip overflowing from the second sub-step surface 221b, increasing the elastic performance of the buffer foam 222a, thereby improving the performance of the housing assembly 100.
  • the buffer foam 222a may also be bonded to the sidewall of the display screen.
  • the glue groove 223 is formed on the top surface 221 of the step, and the glue groove 223 extends along a circumferential direction parallel to the light incident surface 11, that is, the geometric center axis of the glue groove 223 is parallel. On the periphery of the light incident surface 11.
  • the glue groove 223 is not connected to the inner side surface 21 and the step side surface 222, that is, the inner side surface 21 and the step side surface 222 are away from the opening of the glue groove 223.
  • the glue groove 223 includes a first sidewall 223a and a second sidewall 223b disposed opposite to each other, and a bottom surface 223c connected between the first sidewall 223a and the second sidewall 223b.
  • the first sidewall 223a and the second sidewall 223b are disposed in parallel, and the first sidewall 223a and the second sidewall 223b are bent in a meandering manner, and the first sidewall 223a is away from the
  • the second side wall 223b is 0.2 mm.
  • the first side wall 223a and the second side wall 223b are bent, so that the contact area of the glue groove 223 with the strip is increased, so that the strip is bonded to the frame 20 more firmly.
  • the glue tank 223 is prevented from overflowing.
  • the bottom surface 223c is curved in a meandering manner, thereby further increasing the contact area between the glue groove 223 and the rubber strip, and further improving the anti-overflow performance of the glue groove 223.
  • the depth of the glue groove 223 is 0.25 mm to 0.35 mm, and preferably, the depth of the glue groove 223 is 0.25 mm.
  • the glue groove 223 is provided with a rough inner surface (not labeled), and the rubber strip is adhered to the rough inner surface, and the rough inner surface may be the first side wall 223a and the first The two side walls 223b may also be the bottom surface 223c.
  • the glue groove 223 may also have a U-shaped groove in cross section, so that the glue groove 223 is convenient to process, and the glue groove 223 is more easily filled with the rubber strip.
  • the glue tank 223 includes a plurality of sub-tanks 224.
  • Each of the plurality of sub-tanks 224 extends in a meandering manner, and a plurality of the sub-tanks 224 are arranged in a direction parallel to the peripheral edge of the light-incident surface 11 and are disposed to be disconnected. Therefore, a partition wall 224a is disposed between two adjacent sub-tanks 224.
  • the protrusions 23 are disposed on the partition wall 224a such that the area of the step top surface 221 is fully utilized, so that the width of the step top surface 221 can be reduced, thereby making the housing assembly 100 non-
  • the display area can be further reduced such that the "black side" of the housing assembly 100 can be made extremely narrow, improving the visual appearance of the housing assembly 100.
  • a plurality of the protrusions 23 are disposed on the step top surface 221, and each of the protrusions 23 is located on a top surface of the partition wall 224a, and the protrusions 23 are hemispherical bulges.
  • the protrusion 23 abuts against the periphery of the light-incident surface 11 , so that the protrusion 23 and the light-incident surface 11 are in point contact manner, and then the rubber strip is wrapped around the protrusion 23 .
  • the protrusion 23 is prevented from blocking the strip, so that the strip extending along the length of the glue groove 223 does not break the glue, and the adhesive property of the strip is increased, thereby improving the
  • the adhesive properties of the transparent panel 10 and the bezel 20 further improve the performance of the housing assembly 100.
  • the height of the protrusion 23 is 0.1 mm to 0.15 mm, preferably 0.1 mm, that is, the step top surface 221 is 0.1 mm to 0.15 mm, preferably 0.1 mm, from the light incident surface 11.
  • the protrusions 23 may be tapered ribs disposed on opposite sides of the opening of the glue groove 223, and the ridge line of the top end of the protrusion 23 abuts against the light incident surface 11, On the one hand, the light-incident surface 11 is supported, and on the other hand, the glue strip in the glue tank 223 is prevented from being broken.
  • the housing assembly 100 also includes a display screen 30.
  • the display screen 30 includes a display surface 31 and an outer side surface 32 that is enclosed around the periphery of the display surface 31.
  • the display surface 31 is attached to the light incident surface 11 , and the outer side surface 32 is disposed opposite to the step side surface 222 , and a spacing is disposed between the outer side surface 32 and the step side surface 222 .
  • the display surface 31 is disposed on a side of the display screen 30 adjacent to the transparent panel 10 .
  • the display screen 30 can be an LCD (Liquid) Crystal Display, LCD flat panel display) LCD screen, or LCM (LCD) Module, liquid crystal display module) components.
  • the display screen 30 can also be a touch screen.
  • the spacing between the step side 222 and the outer side 32 serves as a safe spacing of the display screen 30 to prevent the housing assembly 100 or the mobile terminal to which the housing assembly 100 is applied from vibrating during use.
  • the outer side surface 32 of the display screen 30 strikes the step side surface 222, causing a damage accident, thereby improving the housing by the spacing between the step side surface 222 and the outer side surface 32 of the display screen 30.
  • the buffer foam 222a adhered to the step side 222 can buffer the display screen 30, further improving the safety performance of the housing assembly 100.
  • the buffer foam 222a may be bonded to the outer side surface 32 of the display screen 30, or the buffer foam 222a may be filled on the outer side surface 32 and the step side surface 222. The spacing between them.
  • the present invention also provides a mobile terminal (not shown) including the housing assembly 100, a rear cover (not shown), a main board (not shown), and a control component disposed on the main board (not shown), the rear cover is provided with a receiving cavity facing the housing assembly 100, the housing assembly 100 covers the receiving cavity, and the display screen 30 is received in the receiving cavity
  • the main board and the control component are both fixed in the receiving cavity, and the control component is electrically connected to the display screen 30 to control the display screen 30 to display information.
  • the mobile terminal can be a mobile phone, a notebook computer, a tablet computer, an electronic reader, an electronic photo album, a display, or the like.
  • the housing assembly and the mobile terminal of the present invention are provided with a plurality of hemispherical protrusions on the top surface of the step on the inner side of the frame, and the plurality of the protrusions abut against the periphery of the light incident surface, thereby making the protrusion
  • the contact with the light incident surface forms a point-to-face contact form, and the rubber strip disposed in the pitch can be wrapped around the protrusion and not blocked by the protrusion, thereby preventing the glue breakage from occurring.
  • the frame and the transparent panel can be tightly bonded and the structure is stable, thereby improving the performance of the housing assembly.

Abstract

一种壳体组件,包括透明面板和边框,该边框包括内侧面和凸出于内侧面的台阶,该内侧面贴合于面板侧面,台阶包括台阶顶面,该台阶顶面设有多个呈半球形的凸起,多个该凸起抵靠入光面的周缘,以使入光面周缘和台阶顶面之间存在间距,该间距内设置胶条,该胶条包覆于多个该凸起的周围。本发明实施例还公开了一种移动终端。

Description

壳体组件及移动终端 技术领域
本发明涉及电子设备领域,尤其涉及一种壳体组件及移动终端。
背景技术
目前手机的前盖多数将透明面板粘接于手机的边框上,通常在边框的内侧设置台阶,台阶上设置凸起,利用台阶的凸起承载透明面板的周缘,以使透明面板的周缘和台阶之间存在间隙,从而方便在该间隙内设置胶条,以将透明面板粘接于边框,然而此结构中台阶宽度较窄,因而胶条必须设置于凸起的周围,从而台阶上的凸起容易将胶条进行隔断,导致胶条断胶,从而导致透明面板与边框粘接不牢固,因而由断胶引起手机的组装结构不佳,使得手机的使用性能不佳。
技术问题
有鉴于此,本发明提供一种可以提高使用性能的壳体组件及移动终端。
技术解决方案
本发明提供一种壳体组件,其中,所述壳体组件包括透明面板、边框以及显示屏,所述透明面板包括入光面及与所述入光面周缘连接的面板侧面,所述边框包括内侧面和凸出于所述内侧面的台阶,所述边框围合于所述透明面板周缘,所述内侧面贴合于所述面板侧面,并覆盖所述面板侧面,所述台阶包括台阶顶面和台阶侧面,所述台阶顶面连接于所述内侧面,所述台阶顶面设有多个呈半球形的凸起,多个所述凸起沿所述入光面周缘排列,并抵靠所述入光面的周缘,以使所述入光面周缘和所述台阶顶面之间存在间距,所述间距内设置胶条,所述胶条沿平行于入光面周缘方向延伸,并包覆于多个所述凸起的周围,所述台阶顶面设有沿平行于所述内侧面长度方向延伸的胶槽,所述胶槽靠近多个所述凸起,所述胶槽内填充所述胶条,所述台阶侧面连接于所述台阶顶面远离所述内侧面的一边,所述显示屏包括显示面和围合于所述显示面周边的外侧面,所述显示面贴合于所述入光面,所述外侧面相对所述台阶侧面设置,所述外侧面与所述台阶侧面之间固定有缓冲泡棉。
其中,所述台阶顶面包括位于所述胶槽两侧的第一子台阶面和第二子台阶面,所述第一子台阶面连接于所述内侧面,所述第二子台阶面连接于所述台阶侧面,所述胶条的一部分位于所述第一子台阶面或所述第二子台阶面上,另一部分填充于所述胶槽内。
其中,所述胶槽包括多个子胶槽,多个所述子胶槽沿平行所述入光面的周缘方向排列,且断开设置,所述凸起位于相邻两个所述子胶槽之间。
其中,所述胶槽设置粗糙内表面,所述粗糙内表面粘接所述胶条。
其中,所述胶槽至所述内侧面的距离与所述胶槽至所述台阶侧面的距离相等。
本发明还提供一种壳体组件,其中,所述壳体组件包括透明面板和边框,所述透明面板包括入光面及与所述入光面周缘连接的面板侧面,所述边框包括内侧面和凸出于所述内侧面的台阶,所述边框围合于所述透明面板周缘,所述内侧面贴合于所述面板侧面,并覆盖所述面板侧面,所述台阶包括台阶顶面,所述台阶顶面连接于所述内侧面,所述台阶顶面设有多个呈半球形的凸起,多个所述凸起沿所述入光面周缘排列,多个所述凸起抵靠所述入光面的周缘,以使所述入光面周缘和所述台阶顶面之间存在间距,所述间距内设置胶条,所述胶条沿平行于入光面周缘方向延伸,并包覆于多个所述凸起的周围。
其中,所述台阶还包括台阶侧面,所述台阶侧面连接于所述台阶顶面远离所述内侧面的一边,所述壳体组件还包括显示屏,所述显示屏包括显示面和围合于所述显示面周边的外侧面,所述显示面贴合于所述入光面,所述外侧面相对所述台阶侧面设置,所述外侧面与所述台阶侧面之间固定有缓冲泡棉。
其中,所述台阶顶面设有沿平行于所述入光面周缘方向延伸的胶槽,所述胶槽靠近多个所述凸起,所述胶槽内填充所述胶条。
其中,所述台阶顶面包括位于所述胶槽两侧的第一子台阶面和第二子台阶面,所述第一子台阶面连接于所述内侧面,所述第二子台阶面连接于所述台阶侧面,所述胶条的一部分位于所述第一子台阶面或所述第二子台阶面上,另一部分填充于所述胶槽内。
其中,所述胶槽包括多个子胶槽,多个所述子胶槽沿平行所述入光面的周缘方向排列,且断开设置,所述凸起位于相邻两个所述子胶槽之间。
其中,所述胶槽截面为U形凹槽。
其中,所述胶槽包括相对设置的第一侧壁和第二侧壁,所述第一侧壁平行于所述第二侧壁,所述第一侧壁和所述第二侧壁均呈蜿蜒状弯曲。
其中,所述胶槽包括底面,所述底面呈蜿蜒状。其中,所述台阶顶面的宽度为0.35mm~0.45mm,所述胶槽的宽度为0.15mm~0.25mm。
本发明还提供一种移动终端,其中,所述移动终端包括壳体组件,所述壳体组件包括透明面板和边框,所述透明面板包括入光面及与所述入光面周缘连接的面板侧面,所述边框包括内侧面和凸出于所述内侧面的台阶,所述边框围合于所述透明面板周缘,所述内侧面贴合于所述面板侧面,并覆盖所述面板侧面,所述台阶包括台阶顶面,所述台阶顶面连接于所述内侧面,所述台阶顶面设有多个呈半球形的凸起,多个所述凸起沿所述入光面周缘排列,多个所述凸起抵靠所述入光面的周缘,以使所述入光面周缘和所述台阶顶面之间存在间距,所述间距内设置胶条,所述胶条沿平行于入光面周缘方向延伸,并包覆于多个所述凸起的周围;所述移动终端还包括后盖、主板和设置于所述主板上的控制组件,所述后盖设有开口朝向所述壳体组件的收容腔,所述壳体组件封盖所述收容腔,所述主板和所述控制组件均固定于所述收容腔内。
其中,所述台阶还包括台阶侧面,所述台阶侧面连接于所述台阶顶面远离所述内侧面的一边,所述壳体组件还包括显示屏,所述显示屏包括显示面和围合于所述显示面周边的外侧面,所述显示面贴合于所述入光面,所述外侧面相对所述台阶侧面设置,所述外侧面与所述台阶侧面之间固定有缓冲泡棉,所述控制组件电连接所述显示屏,以控制所述显示屏显示信息。
其中,所述台阶顶面设有沿平行于所述内侧面长度方向延伸的胶槽,所述胶槽靠近多个所述凸起,所述胶槽内填充所述胶条。
其中,所述台阶顶面包括位于所述胶槽两侧的第一子台阶面和第二子台阶面,所述第一子台阶面连接于所述内侧面,所述第二子台阶面连接于所述台阶侧面,所述胶条的一部分位于所述第一子台阶面或第二子台阶面上,另一部分填充于所述胶槽内。
其中,所述胶槽包括多个子胶槽,多个所述子胶槽沿平行所述入光面的周缘方向排列,且断开设置,所述凸起位于相邻两个所述子胶槽之间。
其中,所述胶槽设置粗糙内表面,所述粗糙内表面粘接所述胶条
有益效果
本发明的壳体组件及移动终端,通过在边框内侧的台阶顶面上设置多个半球形凸起,利用多个所述凸起抵靠所述入光面的周缘,从而使得所述凸起采用点接触的方式抵靠于所述入光面,进而使得设置于所述间距内的胶条可以包覆于所述凸起周围,且不被所述凸起隔断,从而避免断胶情况发生,进而可以使得所述边框和所述透明面板可以十分紧密的粘接配合,且结构稳固,进而提高所述壳体组件的使用性能。
附图说明
图1是本发明提供的壳体组件的结构示意图;
图2是本发明提供的较优实施方式的壳体组件的结构示意图;
图3是图2的壳体组件沿II-II部分的剖面示意图;
图4是图2的壳体组件沿III-III部分的剖面示意图。
本发明的最佳实施方式
下面将结合本发明实施例中的附图,对本发明实施方式中的技术方案进行清楚、完整地描述。显然,所描述的实施方式是本发明的一部分实施方式,而不是全部实施方式。基于本发明中的实施方式,本领域普通技术人员在没有做出创造性劳动的前提下所获得的所有其他实施方式,都应属于本发明保护的范围。
请参阅图1,本发明提供的一种壳体组件100,所述壳体组件100包括透明面板10和边框20,所述边框20围合于所述透明面板10周缘。所述边框20包括内侧面21和凸出于所述内侧面21的台阶22,所述台阶22包括台阶顶面221和台阶侧面222,所述台阶顶面221设有多个半球形凸起23,多个所述凸起23支撑所述透明面板10的周缘,从而所述台阶顶面221与所述透明面板10之间存在间距,所述间距内设置胶条,从而所述胶条可以粘接所述边框20和所述透明面板10,利用所述胶条包覆于多个所述凸起23周围,从而实现所述透明面板20与所述边框10的粘接,且避免所述胶条被所述凸起23隔断,避免出现断胶情况,从而使得所述壳体组件100的使用性能提高。可以理解的是,所述壳体组件100应用于移动终端上,该移动终端可以是手机、平板电脑、笔记本电脑或者液晶显示器等,所述壳体组件100可以理解是手机、或平板电脑、或笔记本电脑中实现透过显示屏光线的装饰前盖。
请一并参阅图2、图3和图4,本发明提供一种较优实施方式,所述透明面板10包括相对设置的入光面11和出光面12,以及固定于所述入光面11和所述出光面12之间的面板侧面13。所述面板侧面13围合于所述入光面11的周边,以及围合于所述出光面12的周边。本实施方式中,所述透明面板10为透光玻璃,所述透明面板10为矩形板件。所述入光面11背离使用者,用于贴合于显示屏,并入射显示屏的显示光线,所述出光面12朝向使用者,并出射显示屏的显示光线,所述出光面12作为所述透明面板10的外表面。所述透明面板10增强对显示屏的透光性,从而增强壳体组件100的视觉效果。另外,所述透明面板10为透明的硬质板件,所述透明面板10与所述边框20良好结合的同时,对终端内部零件起到良好的保护作用,并且实现良好的透光作用。在其他实施方式中,所述透明面板10还可以采用蓝宝石玻璃材质,或者采用有机玻璃材质。
本实施方式中,所述入光面11为平整面,所述入光面11的周缘固定于所述台阶顶面221上。所述入光面11的周缘抵靠于所述凸起23,且通过所述胶条与所述台阶顶面221相粘接。所述入光面11的周缘涂设油墨层111,所述油墨层111遮蔽所述台阶顶面221,从而使得透过所述透明面板10不能观察到所述台阶顶面221,对所述台阶顶面221起到隐藏作用,进而避免所述台阶顶面221影响所述壳体组件100的外观效果。在其他实施方式中,所述入光面11的周缘还可以对应所述凸起23设置凹槽,利用所述凹槽与所述凸起23相配合以使所述透明面板10与所述台阶顶面221粘接更稳固。
本实施方式中,所述出光面12作为所述透明面板10的外表面,所述出光面12与所述边框20的外表面光滑相接。具体的,所述出光面12的周缘设置圆弧倒角,所述圆弧倒角与所述边框20的外表面圆弧过渡。所述圆弧倒角在所述入光面11上的正投影区域覆盖或部分覆盖所述油墨层111,从而所述圆弧倒角对所述油墨层111的出射光线产生折射,进而透过所述透明面板10观察所述油墨层111, 使得所述油墨层111看起来宽度变窄,实现所述终端前盖100的不能显示区域变窄,进而提高所述终端前盖100的外观效果,符合人体工学,提高使用性能。在其他实施方式中,所述出光面12的周缘还可以设置倒斜角,利用对所述油墨层111产生光线折射,进而使得所述油墨层111视觉上变窄,进而提高所述终端前盖100的外观效果。
本实施方式中,所述面板侧面13垂直所述入光面11,所述面板侧面13与所述边框20的内侧面21紧密贴合,进而使得所述透明面板10和所述边框20之间无缝结合,从而使得所述壳体组件100的防水防尘效果提高。在其他实施方式中,所述面板侧面13还可以是相对所述入光面11倾斜,从而增加所述面板侧面13的面积,使得所述透明面板10与所述边框20结合更稳固。
所述边框20呈矩形环状,所述边框20对所述透明面板10的周缘形成保护,同时所述边框20对所述透明面板10形成承载,方便所述透明面板10应用于终端壳体上,该终端壳体可以是终端的外壳,或者结构支撑部件。所述边框20同时还可以固定于移动终端的后盖上,使得所述壳体组件100与该后盖形成移动终端的外壳。具体的,所述边框20的内侧面21贴合于所述面板侧面13,并覆盖所述面板侧面13。所述内侧面21与所述面板侧面13间隙配合。所述内侧面21设有凹槽211,所述凹槽211内设置防水胶211a。从而利用所述防水胶211a可以填充所述内侧面21与所述面板侧面13之间的缝隙,从而使得所述壳体组件100达到防水防尘效果。更为具体的,在所述透明面板10装配于所述边框20之前,在所述内侧面21的凹槽211上喷涂热熔的防水胶211a,所述防水胶211a完全填充所述凹槽211,并且露出于所述凹槽211,进而待所述防水胶211a固化后,将所述透明面板10装配于所述边框20,利用所述面板侧面13挤压露出所述凹槽211的防水胶211a,从而使得所述防水胶211a在挤压力作用下,完全填充于所述面板侧面13与所述内侧面21之间的缝隙。在其他实施方式中,还可以是在所述面板侧面13和所述内侧面21同时设置凹槽。
本实施方式中,所述台阶22凸出于所述内侧面21,所述台阶22靠近于所述透明面板10的入光面11。所述台阶22实现对所述透明面板10的承载,使得所述透明面板10与所述边框20的结构更稳固。具体的,所述台阶顶面221连接于所述内侧面21,所述台阶顶面221垂直所述内侧面21,所述台阶顶面221平行所述入光面11。所述台阶顶面221与所述入光面11的周缘相对设置。所述台阶顶面221上设置胶槽223,使得所述胶槽223可以容纳所述胶条,从而利用所述胶槽223达到防溢胶效果,进而提高所述壳体组件100的使用性能。所述台阶顶面221包括位于所述胶槽223两侧的第一子台阶面221a和第二子台阶面221b,所述第一子台阶面221a和所述第二子台阶面221b共面设置。所述第一子台阶面221a连接于所述内侧面21,所述第二子台阶面221b远离所述内侧面21。所述第二子台阶面221b靠近所述胶槽223的周缘粘接所述胶条,从而在所述透明面板10与所述边框20装配时,所述入光面11挤压所述第二子台阶面221b的胶条,使得所述胶条首先会挤压至所述胶槽223中,避免所述胶条挤压至所述第一子台阶面221a上,从而避免所述胶条溢胶至所述内侧面21和所述面板侧面13之间。更为具体的,所述台阶顶面22的宽度为0.35mm~0.45mm。作为一种优选方案,所述台阶顶面22的宽度为0.4mm。所述第一子台阶面221a和第二子台阶面221b的均宽度为0.1mm,即所述胶槽223与所述内侧面21及所述胶槽223与所述台阶侧面222等距设置,从而所述台阶顶面221可以充分对所述胶条的流动进行缓冲,以防止所述胶条溢出。在其他实施方式中,所述第一子台阶面221a靠近所述胶槽23的周缘粘接所述胶条,从而避免所述胶条溢胶至所述台阶侧面222上,进而影响所述壳体组件100与显示屏的装配;或者是,所述第一子台阶面221a和所述第二子台阶面221b均粘接所述胶条,进而可以增加所述胶条与所述台阶22的接触面积,进而使得所述台阶22与所述透明面板10的粘接更牢固。
本实施方式中,所述台阶侧面222连接所述台阶顶面221并且远离所述内侧面21的周缘。所述台阶侧面222垂直所述台阶顶面221。所述台阶侧面222与贴合于所述入光面11的显示屏侧壁相对设置,从而所述边框20还对装配于所述透明面板10内侧的显示屏进行保护。所述台阶侧面222粘接有缓冲泡棉222a,所述缓冲泡棉222a固定于所述台阶侧面222和显示屏的侧壁之间,从而所述缓冲泡棉222a形成对所述显示屏的保护,同时所述缓冲泡棉222a还可以吸走从所述第二子台阶面221b上溢出的胶条,增加所述缓冲泡棉222a弹性性能,从而提升所述壳体组件100的使用性能。在其他实施方式中,所述缓冲泡棉222a还可以是粘接于显示屏的侧壁上。
本实施方式中,所述胶槽223开设于所述台阶顶面221上,所述胶槽223沿平行于所述入光面11的周缘方向延伸,即所述胶槽223的几何中心轴线平行于所述入光面11的周边。所述胶槽223不连接所述内侧面21和所述台阶侧面222,即所述内侧面21和所述台阶侧面222均远离所述胶槽223的开口。具体的,所述胶槽223包括相对设置的第一侧壁223a和第二侧壁223b,以及连接于所述第一侧壁223a和所述第二侧壁223b之间的底面223c。所述第一侧壁223a和所述第二侧壁223b平行设置,所述第一侧壁223a和所述第二侧壁223b均呈蜿蜒状弯曲,所述第一侧壁223a距离所述第二侧壁223b为0.2mm。利用所述第一侧壁223a和所述第二侧壁223b蜿蜒弯曲,使得所述胶槽223与所述胶条的接触面积增加,从而所述胶条粘接所述边框20更牢固,同时增加所述胶槽223防溢胶性能。本实施例中,所述底面223c呈蜿蜒状起伏弯曲,从而更进一步增加所述胶槽223与所述胶条的接触面积,同时更进一步提高所述胶槽223的防溢胶性能。所述胶槽223的深度为0.25mm~0.35mm,优选地,所述胶槽223的深度为0.25mm。进一步地,所述胶槽223设有粗糙内表面(未标注),所述胶条粘接于所述粗糙内表面上,所述粗糙内表面可以是所述第一侧壁223a和所述第二侧壁223b,也可以是所述底面223c。在其他实施方式中,所述胶槽223还可以截面呈U形的凹槽,从而使得所述胶槽223方便加工,且使得所述胶槽223更容易填充所述胶条。
本实施方式中,所述胶槽223包括多个子胶槽224。多个所述子胶槽224均呈蜿蜒状延伸,且多个所述子胶槽224沿平行所述入光面11的周缘方向进行排列,且断开设置。从而两个相邻所述子胶槽224之间设置隔断壁224a。所述隔断壁224a上设置所述凸起23,从而使得所述台阶顶面221的面积被充分利用,使得所述台阶顶面221的宽度可以减小,从而使得所述壳体组件100的非显示区域可以进一步减小,使得所述壳体组件100的“黑边”可以做到极窄,提高所述壳体组件100的外观视觉效果。
本实施方式中,所述台阶顶面221上设置多个所述凸起23,每一个所述凸起23位于所述隔断壁224a的顶面上,所述凸起23为半球形鼓包。所述凸起23与所述入光面11的周缘相抵靠,从而所述凸起23与所述入光面11采用点接触方式,进而在所述胶条包覆于所述凸起23周围的情况下,避免所述凸起23隔断所述胶条,使得沿所述胶槽223长度方向延伸的胶条不会出现断胶情况,增加所述胶条的粘接性能,进而提高所述透明面板10与所述边框20的粘接性能,进而提高所述壳体组件100的使用性能。所述凸起23的高度为0.1mm~0.15mm,优选地为0.1mm,即所述台阶顶面221距离所述入光面11为0.1mm~0.15mm,优选地为0.1mm。在其他实施方式中,所述凸起23还可以是设置于所述胶槽223开口周缘两侧的锥形加强筋,所述凸起23顶端的棱线抵靠于所述入光面11,从而一方面支撑所述入光面11,另一方面防止所述胶槽223内的胶条断胶。
为了增加所述壳体组件100的适配性,所述壳体组件100还包括显示屏30。所述显示屏30包括显示面31和围合于所述显示面31周边的外侧面32。所述显示面31贴合于所述入光面11,所述外侧面32相对所述台阶侧面222设置,所述外侧面32与所述台阶侧面222之间设置间距。所述显示面31设置于所述显示屏30靠近所述透明面板10一侧。所述显示屏30可以是LCD(Liquid Crystal Display,液晶平面显示器)液晶屏,也可以是LCM(LCD Module,液晶显示模组)组件。所述显示屏30还可以是触控屏。所述台阶侧面222与所述外侧面32之间的间距作为所述显示屏30的安全间距,以避免所述壳体组件100或应用所述壳体组件100的移动终端在使用时出现振动的情况下,所述显示屏30的外侧面32撞击所述台阶侧面222,出现损坏事故,从而利用所述台阶侧面222与所述显示屏30的外侧面32之间的间距,提高所述壳体组件100的安全性能,以及增加使用寿命。同时,粘接于所述台阶侧面222的缓冲泡棉222a可以对所述显示屏30起到缓冲作用,进一步使得壳体组件100的安全性能提高。在其他实施方式中,还可以是在所述显示屏30的外侧面32上粘接所述缓冲泡棉222a,或者是所述缓冲泡棉222a填充于所述外侧面32和所述台阶侧面222之间的间距。
本发明还提供一种移动终端(未图示),所述移动终端包括所述壳体组件100、后盖(未图示)、主板(未图示)和设置于所述主板上的控制组件(未图示),所述后盖设有开口朝向所述壳体组件100的收容腔,所述壳体组件100封盖所述收容腔,且所述显示屏30收容于所述收容腔内,所述主板和所述控制组件均固定于所述收容腔内,所述控制组件电连接所述显示屏30,以控制所述显示屏30显示信息。可以理解的是,所述移动终端可以是手机、笔记本电脑、平板电脑、电子阅读器、电子相册、显示器等。
本发明的壳体组件及移动终端,通过在边框内侧的台阶顶面上设置多个半球形凸起,利用多个所述凸起抵靠所述入光面的周缘,从而使得所述凸起与所述入光面的接触形成点对面的接触形式,进而设置于所述间距内的胶条可以包覆于所述凸起周围,且不被所述凸起隔断,从而避免断胶情况发生,进而可以使得所述边框和所述透明面板可以十分紧密的粘接配合,且结构稳固,进而提高所述壳体组件的使用性能。
以上是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本发明的保护范围。

Claims (20)

  1. 一种壳体组件,其中,所述壳体组件包括透明面板、边框以及显示屏,所述透明面板包括入光面及与所述入光面周缘连接的面板侧面,所述边框包括内侧面和凸出于所述内侧面的台阶,所述边框围合于所述透明面板周缘,所述内侧面贴合于所述面板侧面,并覆盖所述面板侧面,所述台阶包括台阶顶面和台阶侧面,所述台阶顶面连接于所述内侧面,所述台阶顶面设有多个呈半球形的凸起,多个所述凸起沿所述入光面周缘排列,并抵靠所述入光面的周缘,以使所述入光面周缘和所述台阶顶面之间存在间距,所述间距内设置胶条,所述胶条沿平行于入光面周缘方向延伸,并包覆于多个所述凸起的周围,所述台阶顶面设有沿平行于所述内侧面长度方向延伸的胶槽,所述胶槽靠近多个所述凸起,所述胶槽内填充所述胶条,所述台阶侧面连接于所述台阶顶面远离所述内侧面的一边,所述显示屏包括显示面和围合于所述显示面周边的外侧面,所述显示面贴合于所述入光面,所述外侧面相对所述台阶侧面设置,所述外侧面与所述台阶侧面之间固定有缓冲泡棉。
  2. 根据权利要求1所述的壳体组件,其中,所述台阶顶面包括位于所述胶槽两侧的第一子台阶面和第二子台阶面,所述第一子台阶面连接于所述内侧面,所述第二子台阶面连接于所述台阶侧面,所述胶条的一部分位于所述第一子台阶面或所述第二子台阶面上,另一部分填充于所述胶槽内。
  3. 根据权利要求1所述的壳体组件,其中,所述胶槽包括多个子胶槽,多个所述子胶槽沿平行所述入光面的周缘方向排列,且断开设置,所述凸起位于相邻两个所述子胶槽之间。
  4. 根据权利要求1所述的壳体组件,其中,所述胶槽设置粗糙内表面,所述粗糙内表面粘接所述胶条。
  5. 根据权利要求1所述的壳体组件,其中,所述胶槽至所述内侧面的距离与所述胶槽至所述台阶侧面的距离相等。
  6. 一种壳体组件,其中,所述壳体组件包括透明面板和边框,所述透明面板包括入光面及与所述入光面周缘连接的面板侧面,所述边框包括内侧面和凸出于所述内侧面的台阶,所述边框围合于所述透明面板周缘,所述内侧面贴合于所述面板侧面,并覆盖所述面板侧面,所述台阶包括台阶顶面,所述台阶顶面连接于所述内侧面,所述台阶顶面设有多个呈半球形的凸起,多个所述凸起沿所述入光面周缘排列,并抵靠所述入光面的周缘,以使所述入光面周缘和所述台阶顶面之间存在间距,所述间距内设置胶条,所述胶条沿平行于入光面周缘方向延伸,并包覆于多个所述凸起的周围。
  7. 根据权利要求6所述的壳体组件,其中,所述台阶还包括台阶侧面,所述台阶侧面连接于所述台阶顶面远离所述内侧面的一边,所述壳体组件还包括显示屏,所述显示屏包括显示面和围合于所述显示面周边的外侧面,所述显示面贴合于所述入光面,所述外侧面相对所述台阶侧面设置,所述外侧面与所述台阶侧面之间固定有缓冲泡棉。
  8. 根据权利要求6所述的壳体组件,其中,所述台阶顶面设有沿平行于所述内侧面长度方向延伸的胶槽,所述胶槽靠近多个所述凸起,所述胶槽内填充所述胶条。
  9. 根据权利要求8所述的壳体组件,其中,所述台阶顶面包括位于所述胶槽两侧的第一子台阶面和第二子台阶面,所述第一子台阶面连接于所述内侧面,所述第二子台阶面连接于所述台阶侧面,所述胶条的一部分位于所述第一子台阶面或所述第二子台阶面上,另一部分填充于所述胶槽内。
  10. 根据权利要求8所述的壳体组件,其中,所述胶槽包括多个子胶槽,多个所述子胶槽沿平行所述入光面的周缘方向排列,且断开设置,所述凸起位于相邻两个所述子胶槽之间。
  11. 根据权利要求8所述的壳体组件,其中,所述胶槽截面为U形凹槽。
  12. 根据权利要求8所述的壳体组件,其中,所述胶槽设置粗糙内表面,所述粗糙内表面粘接所述胶条。
  13. 根据权利要求8所述的壳体组件,其中,所述胶槽至所述内侧面的距离与所述胶槽至所述台阶侧面的距离相等。
  14. 根据权利要求8所述的壳体组件,其中,所述台阶顶面的宽度为0.35mm~0.45mm,所述胶槽的宽度为0.15mm~0.25mm。
  15. 一种移动终端,其中,所述移动终端包括:
    壳体组件,所述壳体组件包括透明面板和边框,所述透明面板包括入光面及与所述入光面周缘连接的面板侧面,所述边框包括内侧面和凸出于所述内侧面的台阶,所述边框围合于所述透明面板周缘,所述内侧面贴合于所述面板侧面,并覆盖所述面板侧面,所述台阶包括台阶顶面,所述台阶顶面连接于所述内侧面,所述台阶顶面设有多个呈半球形的凸起,多个所述凸起沿所述入光面周缘排列,并抵靠所述入光面的周缘,以使所述入光面周缘和所述台阶顶面之间存在间距,所述间距内设置胶条,所述胶条沿平行于入光面周缘方向延伸,并包覆于多个所述凸起的周围;
    后盖,所述后盖设有开口朝向所述壳体组件的收容腔,所述壳体组件封盖所述收容腔;
    主板,所述主板固定于所述收容腔内;
    控制组件,所述控制组件设置于所述主板上,并且所述控制组件固定于所述收容腔内。
  16. 根据权利要求15所述的移动终端,其中,所述台阶还包括台阶侧面,所述台阶侧面连接于所述台阶顶面远离所述内侧面的一边,所述壳体组件还包括显示屏,所述显示屏包括显示面和围合于所述显示面周边的外侧面,所述显示面贴合于所述入光面,所述外侧面相对所述台阶侧面设置,所述外侧面与所述台阶侧面之间固定有缓冲泡棉,所述控制组件电连接所述显示屏,以控制所述显示屏显示信息。
  17. 根据权利要求15所述的移动终端,其中,所述台阶顶面设有沿平行于所述内侧面长度方向延伸的胶槽,所述胶槽靠近多个所述凸起,所述胶槽内填充所述胶条。
  18. 根据权利要求17所述的移动终端,其中,所述台阶顶面包括位于所述胶槽两侧的第一子台阶面和第二子台阶面,所述第一子台阶面连接于所述内侧面,所述第二子台阶面连接于所述台阶侧面,所述胶条的一部分位于所述第一子台阶面或第二子台阶面上,另一部分填充于所述胶槽内。
  19. 根据权利要求17所述的移动终端,其中,所述胶槽包括多个子胶槽,多个所述子胶槽沿平行所述入光面的周缘方向排列,且断开设置,所述凸起位于相邻两个所述子胶槽之间。
  20. 根据权利要求17所述的移动终端,其中,所述胶槽设置粗糙内表面,所述粗糙内表面粘接所述胶条。
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