WO2022156415A1 - 锁合结构、壳体组件、智能穿戴设备以及电子设备 - Google Patents

锁合结构、壳体组件、智能穿戴设备以及电子设备 Download PDF

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Publication number
WO2022156415A1
WO2022156415A1 PCT/CN2021/136621 CN2021136621W WO2022156415A1 WO 2022156415 A1 WO2022156415 A1 WO 2022156415A1 CN 2021136621 W CN2021136621 W CN 2021136621W WO 2022156415 A1 WO2022156415 A1 WO 2022156415A1
Authority
WO
WIPO (PCT)
Prior art keywords
locking
pressing member
pressing
structure body
latching
Prior art date
Application number
PCT/CN2021/136621
Other languages
English (en)
French (fr)
Inventor
邹希凡
方福平
耿景卓
Original Assignee
Oppo广东移动通信有限公司
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
Priority claimed from CN202110069698.2A external-priority patent/CN114826312A/zh
Priority claimed from CN202120141448.0U external-priority patent/CN214205515U/zh
Priority claimed from CN202120140667.7U external-priority patent/CN214151402U/zh
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Publication of WO2022156415A1 publication Critical patent/WO2022156415A1/zh
Priority to US18/344,287 priority Critical patent/US20230337789A1/en

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Classifications

    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C5/00Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
    • A44C5/14Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps characterised by the way of fastening to a wrist-watch or the like
    • A44C5/147Watchcase itself used as fastener
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B37/00Cases
    • G04B37/18Cases for pocket or wrist watches
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/3827Portable transceivers
    • H04B1/3888Arrangements for carrying or protecting transceivers

Definitions

  • the present application relates to the field of wearable devices, and in particular, to a locking structure, a housing assembly, a smart wearable device, and an electronic device.
  • Smart wearable devices have the advantage of being worn on the body, and they can detect physical health conditions, instant messaging and many other functions at any time. In recent years, more and more people have begun to pay attention to the recognition and use of smart wearable devices.
  • Traditional smart watches all include a watch body and a watch strap connected to the watch body, and the watch strap can be wound around and installed on the user's wrist.
  • the traditional watch strap is connected to the watch body through the matching structure of the slot and the raw ear.
  • the strap and the watch body can be connected stably.
  • a special tool such as a raw ear needle must be used for disassembly and assembly, which is extremely inconvenient to operate.
  • Embodiments of the present application provide a locking structure, a housing assembly, a smart wearable device, and an electronic device.
  • the embodiments of the present application provide a locking structure.
  • the locking structure includes a first structure body, a second structure body, a pressing member and a clamping member.
  • the first structure body is provided with a first installation part and a second installation part
  • the second structure body includes a main body and a locking part protruding relative to the main body.
  • the pressing member is movably disposed to be configured to move relative to the first mounting portion under external force pressing.
  • the clamping part is movably arranged on the second installation part, and is positioned on the first structure body by the second installation part; the clamping part is configured to be engaged with the clamping part; Relative settings.
  • the engaging member is driven by the locking portion to move relative to the second mounting portion, and reset to be engaged with the locking portion.
  • the pressing member can be pressed to drive the latching member to move so as to be disengaged from the latching portion.
  • an embodiment of the present application further provides a locking structure, including a first structure body, a second structure body, a pressing member, and a clamping member.
  • the first structure body is provided with a first installation part and a second installation part
  • the second structure body is matched and connected with the first structure body
  • the pressing part is arranged on the first installation part
  • the clamping part is arranged at the second installation part.
  • the clip is used to cooperate with the second structure body in the first position, so that the second structure body is limited to the first structure body.
  • the pressing member moves to the second position relative to the first structure body when being pressed, and in the process of switching the first structure body from the first position to the second position, the pressing member drives the clamping member to move.
  • the latching element is disengaged from the second structure body, so that the second structure body can be detached from the first structure body.
  • the embodiments of the present application further provide a smart wearable device, including a device body, a wearing piece, and the above-mentioned locking structure, wherein the first structure body is provided on the device body, and the second structure body is provided on the wearer.
  • an embodiment of the present application further provides a casing assembly, including a middle frame, a casing, and a button.
  • the casing is provided with a first mounting portion
  • the middle frame is provided with a second mounting portion.
  • the keys are attached to the midframe and are configured to connect the midframe to the outer structure.
  • the button includes a pressing part and a clipping part.
  • the pressing member is movably disposed on the first mounting portion, and is configured to move relative to the first mounting portion along a first direction under external force pressing.
  • the clipping part is movably arranged on the second installation part, and is positioned on the middle frame by the second installation part; the clipping part is configured to be engaged with the external structure;
  • the outer structure moves along the second direction to push the clips to move relative to the middle frame along the first direction, and the clips can be reset to be engaged with the outer structure;
  • the outer structure is detached from the middle frame
  • the pressing member can be pressed to drive the clamping member to move in a first direction to be separated from the external structure, wherein the first direction is different from the second direction.
  • an embodiment of the present application provides an electronic device, including a casing, a button, and a clip.
  • the shell is provided with a first installation part and a second installation part that are connected to each other;
  • the button includes a pressing piece and an elastic connecting piece, the elastic connecting piece is connected to the pressing piece, and the pressing piece is arranged on the first installation part;
  • the clamping piece is arranged on the second In the installation part, the fitting and positioning of the clip and the casing and the fitting and positioning of the pressing member and the casing are independent of each other;
  • the clip is used to cooperate with the strap, so that the strap is limited to the casing; the strap is limited to the shell
  • the pressing member is limited to the casing;
  • the pressing member moves relative to the casing when being pressed, and the pressing member drives the clamping member to move, so that the clamping member and the strap are released fit and enable the strap to be detached from the housing.
  • FIG. 1 is a partial perspective schematic diagram of a locking structure provided by an embodiment of the present application.
  • FIG. 2 is a schematic exploded perspective view of the locking structure shown in FIG. 1 from a first perspective.
  • FIG. 3 is a schematic three-dimensional assembly diagram of the housing and the pressing member of the locking structure shown in FIG. 1 .
  • FIG. 4 is a schematic three-dimensional assembly diagram of the housing and the pressing member shown in FIG. 3 from another perspective.
  • FIG. 5 is a schematic exploded perspective view of the housing and the pressing member shown in FIG. 3 .
  • FIG. 6 is an orthographic assembly schematic diagram of the first structure body of the locking structure shown in FIG. 1 cooperating with a key.
  • FIG. 7 is a perspective view of the key of the locking structure shown in FIG. 2 .
  • FIG. 8 is a schematic cross-sectional view of the key shown in FIG. 7 in cooperation with the housing.
  • FIG. 9 is an exploded schematic view of the first structure body of the locking structure shown in FIG. 1 .
  • FIG. 10 is a schematic cross-sectional view of the locking structure shown in FIG. 1 .
  • FIG. 11 is an exploded schematic view of the connecting assembly and the first structure shown in FIG. 8 .
  • FIG. 12 is an exploded schematic view of the connecting assembly and the first structure shown in FIG. 11 from another perspective.
  • FIG. 13 is a partial cross-sectional schematic view of the elastic connector of the locking structure shown in FIG. 11 .
  • FIG. 14 is a schematic exploded perspective view of the locking structure shown in FIG. 1 from a second viewing angle.
  • FIG. 15 is a schematic exploded perspective view of the locking structure shown in FIG. 1 from a third perspective.
  • FIG. 16 is another schematic cross-sectional view of the locking structure shown in FIG. 1 .
  • FIG. 17 is a schematic perspective view of an electronic device provided by an embodiment of the present application.
  • FIG. 18 is a schematic perspective view of a smart wearable device provided by an embodiment of the present application.
  • Traditional smart watches all include a watch body and a watch strap connected to the watch body, and the watch strap can be wound around and installed on the user's wrist.
  • the traditional watch strap is connected to the watch body through the matching structure of the slot and the raw ear. When the two ends of the raw ear are inserted into the slot, the strap and the watch body can be connected stably.
  • a special tool such as a raw ear needle must be used for disassembly and assembly, which is extremely inconvenient to operate.
  • the locking structure includes a first structure body, a second structure body, a pressing member and a clamping member.
  • the first structure body is provided with a first installation part and a second installation part
  • the second structure body includes a main body and a locking part protruding relative to the main body.
  • the pressing member is movably disposed to be configured to move relative to the first mounting portion under external force pressing.
  • the latching member is movably disposed on the second mounting portion, and is positioned on the first structure body by the second mounting portion, and the latching member is configured to be engaged with the latching portion.
  • At least part of the structure of the clip is arranged opposite to the pressing member.
  • the engaging member is driven by the locking portion to move relative to the second mounting portion, and reset to be engaged with the locking portion.
  • the pressing member can be pressed to drive the latching member to move so as to be disengaged from the latching portion.
  • the pressing member and the latching member are configured to be connected between the first structural body and the second structural body, and the latching member can be used to engage with the latching portion of the second structural body.
  • the second structure body can be conveniently connected to the first structure body and can also be easily separated from the first structure body by utilizing the structure in which the engagement piece and the locking portion can be movably engaged.
  • the latching member is driven by the latching portion to move relative to the first structure body, and is reset to be engaged with the latching portion. At this time, the second structure can be realized.
  • the pressing member can be pressed to drive the latching member to move so as to be disengaged from the latching portion, at this time
  • the convenient disassembly between the second structure body and the first structure body can be realized.
  • the locking structure 100 includes a first structure body 10 , a second structure body 30 and a connecting component 50 , and the connecting component 50 is connected between the first structure body 10 and the second structure body 30 for realizing the first structure body 10 , the second structure body 30 and the second structure body 30 . Removable connection of the second structure 30 .
  • the first structure body 10 may be arranged on one of the two components to be connected, and the second structure body 30 may be arranged on the other of the two components to be connected.
  • the two components can be detachably connected together, wherein the first structure body 10 and the second structure body 30 can be structural components of the components to be connected, or they can be components attached to the required connection.
  • the component structure of the component is not limited in the present application, so that the application range of the locking structure 100 can be wider.
  • the first structural body 10 is provided with a first mounting portion 101 and a second mounting portion 103 , and the first mounting portion 101 and the second mounting portion 103 are used for mounting the connecting component 50 .
  • the specific structures of the first mounting portion 101 and the second mounting portion 103 are not limited.
  • the first mounting portion 101 may include one or more of mounting and accommodating structures such as mounting grooves, mounting holes, or snap structures, so as to Facilitate the installation of the connection assembly 50; similarly, the second installation portion 103 may include one or more of installation and accommodating structures such as installation grooves, installation holes, or snap structures, so as to facilitate the installation of the connection assembly 50, and the first installation portion
  • the structure of 103 may be the same as or different from that of the first mounting portion 101 .
  • the first mounting portion 101 includes a key slot 1011 that communicates with each other, and the second mounting portion 103 may include a groove 1031.
  • the key slot 1011 extends to the outer surface of the housing 14, that is, the key slot 1011 extends to the housing 14 that can be touched by the user. surface.
  • the groove 1031 is opened in the middle frame 12 , and the second structure 30 can be installed from the groove 1031 to the electronic device 500 (as shown in FIG. 17 ) and can be detached from the groove 1031 .
  • the installation grooves 133 can be used as a reference, the two installation grooves 133 are disposed at opposite ends of the width direction of the electronic device 500 , and the display module 120 and the housing 14 of the electronic device 500 are respectively are located at both ends of the electronic device 500 in the thickness direction.
  • the width direction of the electronic device 500 may be regarded as the first direction
  • the thickness direction of the electronic device 500 may be the second direction, that is, the first direction and the second direction are perpendicular to each other.
  • the second structure body 30 can be inserted into the groove 1031 along the first direction, so that the second structure body 30 is limited to the first structure body 10 .
  • the first direction and the second direction are only used for reference, so as to describe the position of the second structure body 30 and other components relative to the middle frame 12 clearly and concisely, and should not be regarded as a technical solution. strictly limited.
  • the second structural body 30 includes a main body 32 and a latching portion 34 protruding from the main body 32 .
  • the latching portion 34 is used for engaging with the connecting assembly 50 to realize the connection between the second structural body 30 and the first structural body 10 . Detachable connection.
  • the connection assembly 50 includes a key 54 configured to connect the first structural body 10 and the second structural body 30 .
  • the button 54 includes a pressing member 541 and a clamping member 543 .
  • the pressing member 541 is movably disposed on the first mounting portion 101, so as to be configured to move relative to the first mounting portion 101 (for example, move along the first direction X) under external force pressing.
  • the pressing member 541 is formed by
  • the first mounting portion 101 is positioned on the first structural body 10 .
  • the engaging member 543 is positioned on the first structural body 10 by the second mounting portion 103 , and is configured to be engaged with the locking portion 34 . At least a part of the structure of the clamping member 543 is disposed opposite to the pressing member 541 .
  • the latching member 543 is driven by the latching portion 34 to move relative to the second mounting portion 103 , and reset to engage with the latching portion 34 .
  • the pressing member 541 can be pressed to drive the latching member 543 to move and disengage from the latching portion 34 .
  • the button 54 is connected between the first structure body 10 and the second structure body 30 .
  • the button 54 is disposed on the first structure body 10 , its engaging member 543 can be connected to the second structure body 30 .
  • the latching part 34 of the second structure is engaged with each other, and the latching part 543 and the latching part 34 are driven by the pressing member 541 to be movably engaged, so that the second structure body 30 can be easily connected to the first structure body 10. detached from the first structure body 10 .
  • the structure in which the pressing member 541 and the clamping member 543 are disposed opposite to each other is not limited to the two directly opposite to each other and spaced apart. In some embodiments, the two may be disposed opposite to each other. At least part of the structure is spaced apart from at least part of the structure of the clamping part 543 , and a central element or component, etc.
  • the pressing part 541 and the clamping part 543 may be provided between the pressing part 541 and the clamping part 543 ; in other embodiments, the pressing part 541 and the clamping part 543 They can be opposite to each other and stacked or attached, for example, at least part of the structure of the pressing member 541 is in contact with or surface-fitted with at least part of the structure of the clamping member 543 ; There is a preset gap between at least some of the structures, and the width of the gap should meet the preset range. For example, the width of the gap can be greater than or equal to 0.1mm and less than or equal to 1.5mm.
  • the pressing member 541 When the pressing member 541 is pressed by an external force , the pressing member 541 can move against the engaging member 543 after the moving distance is greater than the width, so as to prevent the pressing member 541 from being pressed by mistake and causing the engaging member 543 to be separated from the locking portion 34 .
  • the pressing member 541 can be pressed and drive the clamping member 543 to move, so the two can realize the transmission of movement through the relative positional relationship.
  • the pressing member 541 In order to ensure that the pressing member 541 can reliably drive the clipping member 543 to move after the two are positioned relative to each other, the pressing member 541 should be positioned on the first mounting portion 101 or positioned on the first structural body 10 by the first mounting portion 101.
  • the clipping member 5453 Should be positioned on the second mounting portion 103 or positioned on the first structural body 10 by the second mounting portion 103 .
  • a part is "positioned" on another part, it should be understood that the position of the former relative to the latter is generally defined by the structure of the latter itself or by a centering element, so that the former is movable relative to the latter.
  • the range is within the predetermined range.
  • the pressing member 541 when the pressing member 541 is positioned on the first mounting portion 101, it can be understood that the pressing member 541 is limited within a predetermined range of motion by the structure of the first mounting portion 101 or/and a third-party element;
  • a mounting portion 101 is positioned on the second structural body 10 , which can be understood as limiting the pressing member 541 within a predetermined range of motion by the structure of the first mounting portion 101 , and can also be understood as relying on the structure of the first mounting portion 101 and the pressing member 541 or/and the structure of the third-party element to cooperate to limit the pressing member 541 to a predetermined range of motion;
  • the first mounting portion 101 for limiting the pressing member 541 may include a hole structure, a groove structure, a guide rail structure, etc.
  • the clip 543 is positioned on the first structural body 10 by the second installation portion 103 , which should be understood as limiting the clip 543 within a predetermined range of motion by means of the structure of the second installation portion 103 , wherein the The second mounting portion 103 of the clip 543 may include limit structures such as a hole structure, a groove structure, a guide rail structure, etc., and the effect of positioning the clip 543 is achieved by cooperating with the limit structure of the clip 543 .
  • limit structures will be described in detail later in this specification according to some specific embodiments of the present application.
  • the pressing member 541 and the clipping member 543 when assembled, they can be positioned by the first mounting portion 101 and the second mounting portion 103 respectively, so as to realize the positioning and installation of the pressing member 541 and the clipping member 543 respectively, which avoids It solves the installation and matching problem caused by the excessively long dimension chain caused by the fixed connection between the pressing member 541 and the clamping member 543 through other snap-fit structures.
  • the button 54 is designed as a substantially separate pressing member 541 and a clipping member 543 , and the pressing member 541 and the clipping member 543 can be respectively disposed on the first mounting portion 101 and the second mounting portion 101 of the first structure 10 .
  • the installation part 103 is to meet the assembly requirements of being positioned and assembled respectively, so that there is no assembly dimensional chain relationship between the pressing member 541 and the clamping member 543 , so that the button 54 is installed on the first structure 10 Dimensional chain
  • the relatively shorter length reduces the difficulty of producing and assembling the locking structure 100 .
  • the first structure 10 includes a middle frame 12 and a casing 14 connected to the middle frame 12 .
  • the casing 14 is substantially covered on the middle frame 12 and is used to form the main appearance surface of the first structure body 10
  • the first mounting portion 101 is arranged on the casing 14
  • the second mounting portion 103 is arranged on the middle frame 12.
  • the middle frame 12 is used to form the main support structure.
  • the middle frame 12 may be used to form a support structure for the component to which it is connected to accommodate the electronic components of the component.
  • this specification defines the first direction X, the second direction Y and the third direction Z with reference to the length, width and height of the middle frame 12. As shown in FIG.
  • the first direction X is defined as the middle frame 12.
  • the thickness direction of the positive direction of the first direction X is towards the bottom in the figure;
  • the second direction Y is defined as the length direction of the middle frame 12, the positive direction of the second direction Y is towards the upper left in the figure;
  • the third direction Z is defined as In the width direction of the middle frame 12, the positive direction of the third direction Z is toward the lower left in the figure.
  • the first direction X, the second direction Y and the third direction Z may be perpendicular to each other.
  • the middle frame 12 can be arranged on the component to be connected, or can be used as an integral part of the component.
  • the middle frame 12 may be disposed on the watch body of the smart watch, or may be a part of the watch body.
  • the shape of the middle frame 12 is not limited, and it can be in the shape of a rectangular frame, a circular frame or other blocks.
  • the first mounting portion 101 may include an accommodating groove 141 disposed on the casing 14 , and the accommodating groove 141 penetrates two opposite surfaces of the casing 14 .
  • the accommodating groove 141 may be defined to penetrate two opposite surfaces of the housing 14 along the first direction X, so as to define the direction of the movement of the pressing member 541 in the accommodating groove 141 to allow the pressing member 541 to move It moves in the accommodating groove 141 along the first direction X.
  • the accommodating groove 141 may be a notch formed on the edge of the housing 14 , so as to facilitate the forming of the accommodating groove 141 and the control of dimensional accuracy. For example, in the embodiment shown in FIGS.
  • the housing 14 may include an outer surface 145, an inner surface 147, and a sidewall surface 149, the outer surface 145 and the inner surface 147 facing away from each other, wherein the outer surface 145 is located on the housing On the side of the casing 14 facing away from the middle frame 12 , the inner surface 147 is located on the side of the housing 14 facing the middle frame 12 , and the side wall surface 149 is connected between the outer surface 145 and the inner surface 147 .
  • the accommodating groove 141 penetrates through the outer surface 145 and the inner surface 147 and extends to the side wall surface 149 to form a notch structure opened in the casing 14 to facilitate the forming of the accommodating groove 141 .
  • the accommodating groove 141 When the accommodating groove 141 is used for accommodating the button 54
  • the structure of the button 54 can be made closer to the edge of the casing 14, which is beneficial to free up more space inside the first structure body 10 to install other electronic components, thereby helping to improve the space utilization rate.
  • the accommodating slot 141 may also be formed in other parts of the casing 14 .
  • the accommodating slot 141 may be a through hole formed near the edge of the casing 14 , but does not necessarily extend to the sidewall surface 149 .
  • the outer surface 145 of the housing 14 can be a curved surface to provide a smoother appearance surface, so that the user has a good touch.
  • the outer surfaces 145 of the body 14 may be coplanar, so that the locking structure 100 has a more consistent appearance and structural performance.
  • “coplanar” can be understood as the plane coplanar or/and the curved surface coplanar, that is, the surface of the pressing member 541 and the outer surface 145 of the housing 14 are substantially flush at the connection point, and the two Roughly continuous arc surface, the two transition roughly smoothly at the junction.
  • the first structural body 10 may be provided with a limiting portion 143 , and the limiting portion 143 is used to cooperate with the pressing member 541 to limit the position of the pressing member 541 in the accommodating groove 141 , so that the pressing member 541 It can be mounted on the housing 14 reliably.
  • the accommodating groove 141 and the limiting portion 143 together form the main structure of the first mounting portion 101 for mounting the pressing member 541 .
  • the structure of the first installation portion 101 is not limited to this, and it may also include other buckles and accommodating structures, as long as the positioning and installation of the pressing member 541 can be achieved, and this specification does not describe the same an enumeration.
  • the second installation portion 103 is an installation structure disposed on the middle frame 12 .
  • the second installation portion 103 may include holes, grooves, or buckle structures on the middle frame 12 .
  • the middle frame 12 may be provided with There is a positioning structure matched with the clip 543 , and the positioning structure can be regarded as the second mounting portion 103 .
  • the middle frame 12 may be provided with a first positioning portion 105, and correspondingly, the clip 543 may be provided with a second positioning portion 5438 (FIG. 8), and the second positioning portion 5438 cooperates with the first positioning portion to hold the card
  • the connector 543 is positioned on the middle frame 12 .
  • the first positioning portion 105 can be regarded as a structure constituting the second mounting portion 103 , and the second mounting portion 103 includes the first positioning portion 105 .
  • the structure of the first positioning portion 105 is not limited, and it may be a hole, a groove structure, or a buckle structure or the like opened on the middle frame 12 .
  • the second mounting portion 103 or the first positioning portion 105 may include an accommodating space 121 provided on the middle frame 12 , and the accommodating space 121 is used for accommodating the clip 543 .
  • the accommodating space 121 and the accommodating groove 141 are substantially opposite to each other to accommodate the connecting assembly 50 together, and allow the pressing member 541 in the accommodating groove 141 to push against the engaging member 543 in the accommodating space 121 to move.
  • the second mounting portion 103 or the first positioning portion 105 may further include a holding hole 127 provided on the middle frame 12 .
  • the holding hole 127 communicates with the accommodating space 121 and is used for connecting with the locking member 543 .
  • the second positioning portion 5438 is snap-fitted to locate the snap-on member 543 in the accommodating space 121 .
  • the second positioning portion 5438 may be a retaining protrusion 5439 ( FIG. 8 ) provided on the retaining member 543 , and the retaining protrusion 5439 is movably accommodated in the retaining hole 127 to realize the retaining member 543 positioning installation.
  • the size of the holding protrusion 5439 along the first direction X is smaller than the size of the holding hole 127 along the first direction X, so that the holding protrusion 5439 can move in the first direction X in the holding hole 127, thereby ensuring the snap 543 degrees of freedom of movement in the first direction X.
  • the size of the holding protrusion 5439 along the third direction Z is slightly smaller than or equal to the size of the holding hole 127 along the third direction Z, so as to limit the freedom of movement of the locking member 543 in the third direction Z, thereby avoiding The clip 543 moves in the third direction Z to ensure reliable positioning of the clip 543 in the accommodating space 121 .
  • the holding hole 127 can be used as a guide structure to form the main structure of the second installation portion 103 (ie, the first positioning portion 105 ) together with the accommodating space 121 for installing the clip 543 .
  • the holding hole 127 can be replaced by a guide groove structure, and the holding protrusion 5439 is movably disposed in the guide groove structure, and can be opposite to the first structure body 10 in the first direction X
  • the positioning and matching structure between the clip 543 and the second mounting part 103 may include the matching structure of the guide rail and the guide groove, for example, the first positioning part 105 and the second positioning part 5438
  • One includes a guide structure such as a guide rail or a guide groove, and the guide structure is arranged along a predetermined direction, such as the first direction X, and the other of the first positioning part 105 and the second positioning part 5438 includes sliding parts (such as sliders, protrusions, etc.
  • the sliding member is slidably connected to the guide structure such as the guide rail (or guide groove), and can slide along the first direction X in the guide structure, so that the clip 543 can be easily removed from the second mounting part 103 is positioned on the first structure body 10 .
  • the holding hole 127 may be omitted.
  • the second mounting portion 103 or the first positioning portion 105 may only include the accommodating space 121 provided in the middle frame 12 , and the size of the accommodating space 121 is the same as that of the clamping part.
  • the size of the clip 543 is adapted to be positioned and installed on the second installation portion 103 .
  • the middle frame may include an inner wall 1210 disposed in the accommodating space 121 .
  • the inner wall 1210 defines the range of the accommodating space 121 , so that the accommodating space 121 has relatively referenced size parameters, and the clips 543 are arranged on the inner wall 1210 . within the surrounding area.
  • the size of the holding protrusion 5439 along the first direction X is smaller than the size of the accommodating space 121 along the first direction X, so that the holding protrusion 5439 can move in the first direction X in the accommodating space 121, thereby ensuring the clamping
  • the freedom of movement of the member 543 in the first direction X is slightly smaller than or equal to the size of the accommodating space 121 along the third direction Z, so as to limit the freedom of movement of the engaging piece 543 in the third direction Z, thereby avoiding jamming.
  • the connector 543 moves in the third direction Z to ensure reliable positioning of the clip 543 in the accommodating space 121 .
  • the structure of the second installation portion 103 is not limited to this, and it may also include other buckles and accommodating structures, as long as the positioning and installation of the clips 543 can be achieved, and this specification will not List them one by one.
  • the second installation portion 103 can also be regarded as at least a part of the structure of the middle frame 12 , for example, the second installation portion 102 can be understood as the part of the middle frame 12 with the accommodating space 121 , which can be understood as the middle frame
  • the part of the 12 with the holding hole 127 or the part with other holes and groove structures for positioning can also be understood as the part of the middle frame 12 with the accommodating space 121 and the holding hole 127, which can also be understood as The overall structure of the middle frame 12.
  • the clip 543 can be conveniently positioned on the first structure body 10 from the second mounting portion 103 (eg, the solid structure of the middle frame 12 , or the hole, groove structure, etc.), independent of the clip 543
  • the connection or fixing structure with the pressing member 541 is used for positioning, so that the clamping member 543 and the pressing member 541 can be positioned and installed respectively, and the original size chain of the button 50 is interrupted, so that the button 50 is installed on the first structure body 10.
  • the size chain of 100 is relatively shorter, which reduces the difficulty of producing and assembling the locking structure 100 .
  • the clip 543 When the clip 543 is mounted on the second mounting portion 103 , at least part of the structure thereof is disposed opposite to the pressing member 541 mounted on the first mounting portion 101 .
  • the pressing member 541 When the pressing member 541 is pressed by an external force, it moves toward the clipping member 543 along the first direction X, and can push the clipping member 543 to move along the first direction X.
  • the two On the basis of their respective positioning and installation, the two can realize the transmission of motion through the relative positional relationship, which avoids the dimensional chain crossing caused by the fixed connection between the pressing member 541 and the clamping member 543 through other fastening structures. The problem of installation and coordination caused by the length is difficult.
  • the pressing member 541 is positioned and installed on the housing 14
  • the clipping member 543 is positioned and installed on the middle frame 12 , so that the pressing member 541 and the clipping member 543 do not need to be strictly assembled together before being installed on the first structural body 10 . Therefore, there is no assembly dimensional chain relationship between the pressing member 541 and the latching member 543 , so that the dimensional chain when the button 54 is installed on the first structure body 10 is relatively shorter, which reduces the difficulty of production and assembly of the locking structure 100 .
  • the structure in which the pressing member 541 and the clamping member 543 are disposed opposite to each other is not limited to the two directly opposite to each other and spaced apart, and a central element or component may be disposed between the two to improve the connection assembly 50 .
  • the stability of the overall structure may be referred to FIG. 7 , the button 54 may further include a buffer member 545 , and the buffer member 545 is disposed between the pressing member 541 and the clipping member 543 .
  • the buffer member 545 can be made of elastic material, which can be used to slow down the impact force between the pressing member 541 and the clipping member 543, so as to avoid the fitting wear between the pressing member 541 and the clipping member 543, and improve the key 54 the pressing feel. Further, the buffer member 545 can be configured to apply a supporting force to the pressing member 541, so that the pressing member 541 and the limiting portion 143 cooperate reliably, so that the size of the gap between the pressing member 541 and the side wall of the accommodating groove 141 satisfies The preset range prevents the button 54 from loosening and deviates from the accommodating groove 141 after repeated use. It can ensure that the circumferential installation gap of the button 54 always meets the predetermined size requirements, and the installation gap is uniform and controllable. , so that the structural texture of the locking structure 100 is high, which is beneficial to ensure that the user has a good use experience.
  • the difference between the pressing member 541 and the engaging member 543 is There is a gap 547 therebetween, and at least part of the buffer member 545 is disposed in the gap 547 for filling the gap 547 .
  • one object is limited to another object, which can be simply understood as that one object can limit the movement range of the other object, and it is difficult for the two objects to escape under normal circumstances.
  • the second structure body 30 is limited to the first structure body 10, which means that the first structure body 10 can limit the movement range of the second structure body 30, so that the second structure body 30 does not It can be easily detached from the first structure body 10 .
  • the gap between the second structure body 30 and the first structure body 10 may be able to move or rotate relative to the first structure body 10 in a small range due to the existence of the gap .
  • the second structure body 30 can also be tightly fitted with the first structure body 10 so that the second structure body 30 is almost fixedly connected to the first structure body 10 .
  • the pressing member 541 has a first position and a second position relative to the first structure body 10 .
  • the clip 543 is used to cooperate with the second structure 30 in the first position, so that the second structure 30 is limited to the first structure 10 , and the clip 543 presses the buffer member 545 , and the buffer member 545 abuts against the buffer member 545 . Hold the pressing member 541 so that the pressing member 541 is limited to the installation groove 133 .
  • the pressing member 541 moves to the second position relative to the first structure body 10 when being pressed, and in the process of switching the pressing member 541 from the first position to the second position, the pressing member 541 presses the buffer member 545 and drive the clip 543 to move.
  • the engaging member 543 is disengaged from the second structure body 30 , so that the second structure body 30 can be detached from the first structure body 10 .
  • the buffer member 545 can be a block made of elastic material to improve its structural stability and enhance the support force for the pressing member 541.
  • the buffer member 545 can be made of rubber, Made of plastic and other materials.
  • the buffer member 545 can also be an elastic structure with elastic deformation ability, for example, it can be an elastic structure made of non-elastic material,
  • the pressing member 541 exerts a supporting force, so that the size of the gap between the pressing portion 5411 and the side wall of the accommodating slot 141 can meet the requirements, and the movement between the pressing member 541 and the clamping member 543 can be reliably transmitted.
  • the elastic deformation of the buffer member 545 can be used to adapt to the gap between the pressing member 51 and the clip member 543
  • the dimensional changes make it easier for the assembly gaps between the various components of the locking structure 100 to meet the tolerance requirements.
  • the two are directly abutted against each other.
  • the dimension chain that becomes the component is relatively long, and the resulting installation error must be relatively large.
  • the larger installation error may be different from other parts of the first structure body 10. In this case, in order to reduce the probability of this phenomenon, the manufacturing precision of the pressing member 541 and the clamping member 543 will be very high, and the production cost will also be increased.
  • the pressing member 51 and the clamping member 543 are relatively spaced apart and an installation gap is set between them, and the buffer member 545 is arranged in the installation gap between the pressing member 51 and the clamping member 543.
  • the buffer member 545 can be compressed to reduce the installation gap.
  • the size requirements are equivalent to the manufacturing tolerances and installation errors of the pressing member 541 and the clipping member 543, and the installation error is absorbed by the buffer member 545, which greatly reduces the manufacturing accuracy requirements of the pressing member 541 and the clipping member 543, and also reduces the assembly difficulty and production cost.
  • the connection structure between the buffer member 545 and the pressing member 541 and the clipping member 543 is not limited.
  • the buffer member 545 may be directly disposed between the pressing member 541 and the clipping member 543 without being physically connected to the pressing member 541 or the clipping member 543 .
  • the buffering member 545 may utilize the The structure achieves positioning, or the buffer member 545 is clamped by the pressing member 541 and the clipping member 543 .
  • the buffer member 545 may form a physical connection relationship with one of the pressing member 541 and the clipping member 543, and is relatively spaced from or overlapped with the other of the pressing member 541 and the clipping member 543 place or fit together.
  • the two sides of the buffer member 545 can be connected to the pressing member 541 and the clamping member 543 respectively.
  • the buffer member 545 can be respectively connected to the pressing member 541 through a structure in which the buffer member 545 is nested and fitted with each other.
  • the clamping part 543 is beneficial to make the buffer part 545 , the pressing part 541 and the clamping part 543 roughly form a modular whole, the structure of which is stable and reliable, and easy to disassemble and assemble.
  • the buffer member 545 is connected to the clamping member 543 . Further, the buffer member 545 is provided with a first connection portion 5451 , and the first connection portion 5451 is used to be detachably connected with the clamping member 543 , so that the structure of the buffer member 545 is relatively stable and reliable. In other embodiments, the first connecting portion 5451 may be used to connect with the pressing member 541 .
  • the clipping member 543 may include an abutting portion 5431 and a clipping portion 5433 .
  • the abutting portion 5431 is used for connecting the buffer member 545
  • the engaging portion 5433 is connected to the abutting portion 5431 and used for engaging with the locking portion 34 .
  • the abutting portion 5431 is disposed on one side of the pressing member 541 , and may be arranged at an opposite distance from the pressing member 541 , or the two may only be connected by surface contact, or may be connected to the pressing member 541 through a centering component (such as the buffer member 545 ). touch.
  • a buffer member 545 is disposed between the clip member 543 and the pressing member 541
  • the abutting portion 5431 abuts the buffer member 545
  • the buffer member 545 abuts the end of the pressing member 541 .
  • the engaging portion 5433 is disposed at the end of the abutting portion 5431 , and is disposed opposite to the first structure 10 at a distance.
  • a latching space 5434 is formed between the latching portion 5433 and the first structural body 10 , and the latching space 5434 is used to accommodate the latching portion 34 of the second structural body 30 . Access space 5434.
  • the locking structure 100 may include a baffle 16 detachably connected to the first structure body 10 , and the baffle 16 is disposed on the second installation portion 103 and blocks at least part of the snap-fit 543, the baffle 16 is provided with a through hole 161 for inserting the locking portion 34.
  • the cross section of the baffle plate 16 can be in the shape of a racetrack, and a connecting hole and a through hole 161 corresponding to the locking portion 34 can be formed on the baffle plate 16 .
  • the connection holes can be used to install threaded fasteners, so as to realize the detachable connection between the baffle plate 16 and the first structure body 10 .
  • the baffle plate 16 can also limit the movement of the engaging member 543 on the second mounting portion 103 , so that the engaging member 543 can move smoothly on the second mounting portion 103 .
  • the body 32 is located on the side of the baffle plate 16 away from the locking member 543 , and the through hole 161 can restrict the locking portion 34 in the moving direction relative to the first structure body 10 .
  • the number of the through holes 161 is the same as that of the locking portions 34
  • the shape of the through holes 161 matches the shape of the locking portions 34 .
  • the locking portion 34 is cylindrical
  • the through hole 161 is a circular hole
  • the diameter of the circular hole is approximately equal to the diameter of the locking portion 34 .
  • the locking portion 34 may be in a prismatic shape, such as a triangular prism, a quadrangular prism or a pentagonal prism, and the cross-sectional shape of the through hole 161 matches the shape of the locking portion 34, so as to facilitate the connection between the through hole 161 and the locking portion 34.
  • the locking portion 34 forms a close fit, thereby facilitating the waterproof and dustproof design of the wearable device 10 .
  • the arrangement of the through holes 161 can also guide and limit the movement of the locking portion 34, prevent the movement of the locking portion 34 in the second mounting portion 103 from being deflected, and enable the locking portion 34 to smoothly push the locking piece 543 moves on the second mounting portion 103 .
  • connection assembly 50 may further include a reset member 58, and the reset member 58 is disposed on the side of the abutment portion 5431 away from the buffer member 545, and It is located between the abutting portion 5431 and the first structural body 10 (eg, the middle frame 12 , the casing 14 , etc.), so as to exert a supporting force toward the buffer member 545 on the abutting portion 5431 .
  • the first structural body 10 eg, the middle frame 12 , the casing 14 , etc.
  • the pressing member 541 can be pressed, and then the reset member 58 is compressed to apply a supporting force toward the buffer member 545 and the pressing member 541 to the latching member 543 .
  • the restoring member 58 can provide a restoring force for movement to the entirety of the latching member 543 and the pressing member 541 .
  • the reset member 58 in the normal state, also applies a supporting force to the clip member 543 toward the buffer member 545 and the pressing member 541 (for example, in the normal state, the reset member 58 is located between the clip member 543 and the first structural body). 10 and in a compressed state) to ensure the reliability of the connection between the clip 53 and the locking portion 34 .
  • a receiving groove 5432 is provided on the side of the abutting portion 5431 that faces away from the second positioning portion 5438 . At one end of the main body 1431 facing away from the pressing member 541 , the receiving groove 5432 extends to the end face of the abutting portion 5431 . One end of 58 is accommodated in the receiving groove 5432 . In this embodiment, there are two reset members 58 , which are in one-to-one correspondence with the receiving grooves 5432 . The provision of the second positioning portion 5438 can guide and limit the movement of the clip 543 in the accommodating slot 141 .
  • the position of the accommodating groove 5432 may correspond to the position of the second positioning portion 5438 , that is, the thickness of the abutting portion 5431 is thicker where the accommodating groove 5432 is located.
  • the cooperation of the accommodating groove 141 realizes the guiding and limiting of the clip 543 , and can also improve the structural strength of the abutting portion 5431 at the accommodating groove 5432 , so as to enhance the strength of the connection structure between the reset member 58 and the abutting portion 5431 .
  • the reset member 58 may include a first magnet 581 and a second magnet 583 , the first magnet 581 is connected to the engaging member 543 , and the second magnet 583 is connected to the first structure 10 .
  • the first magnet 581 and the second magnet 583 approach each other and generate magnetic repulsion.
  • the clip member 543 may further include a second connection portion 5435, and the second connection portion 5435 is connected to the The abutting portion 5431 is used for mating connection with the first connecting portion 5451 of the buffer member 545 , so that the buffer member 454 is fixed relative to the clamping member 543 .
  • One of the first connecting portion 5451 and the second connecting portion 5435 is a groove, and the other is a protrusion matched with the groove. The mating connection between the connecting portion 5435 and the first connecting portion 5451 .
  • the first connecting portion 5451 may be a groove provided on the buffer member 545
  • the second connecting portion 5435 may be a protrusion provided on the abutting portion 5431
  • the first connection portion 5451 and the second connection portion 5435 may be other connection structures, such as a hook structure, a sticking structure, and the like.
  • the connection structure between the first connection portion 5451 and the second connection portion 5435 provided in this embodiment is applied between the buffer member 545 and the clamping member 543. It should be understood that in other embodiments, the first connection The connection structure between the part 5451 and the second connecting part 5435 can be applied between the buffer part 545 and the pressing part 541 .
  • the connecting portion 5451 is matched and connected, which is not repeated in this specification.
  • the pressing member 541 is movably passed through the accommodating groove 141 , so that the button 54 can move in the accommodating groove 141 along the first direction X.
  • the pressing member 541 includes a pressing portion 5411 and a protruding portion 5413 connected to the pressing portion 5411 , and the protruding portion 5413 can be integrally formed with the pressing portion 5411 .
  • the pressing portion 5411 is substantially block-shaped, and is movably accommodated in the accommodating groove 141 .
  • the surface of the pressing portion 5411 is substantially coplanar with the outer surface 145 of the housing 14 , so that the locking structure 100 has a relatively consistent appearance and structural performance.
  • the protruding portion 5413 is disposed on the side of the pressing portion 5411 away from the casing 14 , protrudes relative to the pressing portion 5411 , and extends toward the engaging member 543 .
  • the protruding portion 5413 is substantially cylindrical, and is used for connecting the clip 543 .
  • the elastic connector 52 is fixedly connected to at least one of the pressing portion 5411 and the protruding portion 5413 .
  • the elastic connecting piece 52 is arranged in the keyway 1011 , and in the first position, the elastic connecting piece 52 abuts against the housing 14 , so that the end surface of the pressing portion 5411 exposed on the housing 14 is flat with the surface of the housing 14 at the keyway 1011 together.
  • the elastic connecting member 52 , the pressing portion 5411 and the protruding portion 5413 are integrally formed.
  • the elastic connecting member 52 may be a protrusion extending from the edge of the pressing portion 5411 .
  • the end face of the pressing portion 5411 exposed on the end face of the casing 14 and the casing 14 at the keyway 1011 can be made to be exposed.
  • the end faces form a high-precision fit to meet flush requirements.
  • the elastic connecting piece 52 of the pressing piece 541 can use the housing 14 as an assembly reference to shorten the dimensional chain of assembly and reduce the influence of tolerances in processing and assembling, so that the end face of the pressing part 5411 exposed to the housing 14 and the The purpose of flushing the end face of the housing 14 at the keyway 1011 is easy to achieve.
  • the protruding portion 5413 is disposed between the pressing portion 5411 and the engaging member 543.
  • the pressing portion 5411 drives the protruding portion 5413 to push the engaging member 543 along the first direction X move to release the engaging structure between the latching member 543 and the latching portion 34 .
  • the locking part 34 can move in the second direction Y to insert the first structure body 10 , and the locking part 543 is driven by the locking part 34 to be relatively opposite to the first structure body 10 .
  • the structural body 10 moves, and is reset under the support of the reset member 58 to engage with the locking portion 34, wherein the second direction Y is substantially intersected with the first direction X (for example, the second direction Y is substantially perpendicular to the first direction X). ); in the process of detaching the second structure 30 from the first structure 10, the pressing member 541 can be pressed, so that the latching member 543 can be disengaged from the latching portion 34.
  • a positioning connecting member that cooperates with the limiting portion 143 may be provided so that the pressing portion 5411 can be positioned on the housing 14 of the first structure body 10 .
  • the connecting assembly 50 may further include an elastic connecting piece 52 , the elastic connecting piece 52 is connected to the pressing part 5411 and is used for cooperating with the limiting part 143 of the housing 14 to locate the pressing piece 541 , the elastic connecting member 52 is disposed in the first installation portion 101 , and when in the first position, the elastic connecting member 52 limits the movement range of the pressing member 541 . Further, referring to FIGS.
  • the elastic connecting member 52 is provided with a positioning portion 5201 , and the positioning portion 5201 is configured to cooperate with the limiting portion 143 , so that the pressing member 541 is configured to be able to limit the position in the accommodating groove 141 .
  • Movement eg, movement in the first direction X.
  • the elastic connecting member 52 can be squeezed and deformed by the side wall of the accommodating groove 141 until the positioning portion 5401 is accommodated in the limiting portion 143 and cooperates with the limiting portion 143 .
  • the elastic connecting member 52 In order to define the position of the pressing member 541 relative to the first structure body 10 .
  • the embodiment of the present application does not limit the deformation form of the elastic connecting member 52.
  • the elastic connecting member 52 itself can undergo elastic deformation (for example, it is an elastic structure body or is made of elastic material), so that the positioning portion 5201 can be relative to the pressing member 541. Deformation or/and expansion to facilitate disassembly; for another example, the elastic connecting member 52 may include an elastic structure, and through the deformation of the elastic structure, the positioning portion 5201 can be deformed or/and expanded relative to the pressing member 541 to facilitate disassembly.
  • the elastic connecting member 52 itself is a retractable structure, and through the retractable deformation of the retractable structure, the positioning portion 5201 can be extended and retracted relative to the pressing member 541 to facilitate disassembly and assembly.
  • the elastic connecting member 52 includes a fixing portion 521 , and the fixing portion 521 is fixedly connected to the pressing portion 5411 of the pressing member 541 (for example, the pressing portion 5411 may be provided with a accommodating groove), the positioning portion 5201 is movably connected to the fixing portion 521 and can protrude relative to the pressing portion 5411 .
  • the positioning portion 5201 can be pressed by the side wall of the accommodating slot 141 to retract relative to the fixing portion 521 , and can be protruded relative to the fixing portion 521 to connect with the limiting portion 143 .
  • the position of the pressing member 541 relative to the first structure body 10 is limited.
  • the positioning portion 5201 is movably accommodated in the limiting portion 143 of the housing 14 , so that the button 54 can move in the accommodating groove 141 along the first direction X.
  • the positioning portion 5201 is a protruding structure, and the positioning portion 143 that cooperates with it is a groove structure, and the two are in the form of being embedded to achieve a snap fit.
  • the term “snap fit”, “snap engagement” or “snap connection” in the present application should be understood as the two sides that cooperate with each other may have corresponding accommodating and embedding structures (such as the above-mentioned grooves and protruding structure) or clamping structure, etc., does not mean that the two mating parties need to be clamped to each other by external force.
  • the fixing portion 521 is substantially rod-shaped, and a accommodating cavity 5211 is opened therein, and the accommodating cavity 5211 is used for accommodating the positioning portion 5201 .
  • the accommodating cavity 5211 may be opened along the length direction of the fixing portion 521 and penetrate through opposite ends of the fixing portion 521 .
  • There may be two positioning portions 5201 and the two positioning portions 5201 may be respectively disposed at opposite ends of the accommodating cavity 5211 , and both can protrude out of the fixing portion 521 through the accommodating cavity 5211 to be opposite to the pressing portion 5411 respectively. Both ends of the s protrude so as to cooperate with the two limiting portions 143 .
  • the elastic connecting member 52 may further include an elastic portion 523 disposed between the two positioning portions 5201 to provide the positioning portion 5201 with a supporting force for the positioning portion 5201 to protrude from the fixing portion 521 .
  • the fixing portion 521 may be provided with a limiting boss 5213 in the accommodating cavity 5211, the limiting boss 5213 may be disposed at the end of the accommodating cavity 5211, and the positioning portion 5201 may be provided with a limiting flange 5215 to limit The positioning flange 5215 is accommodated in the accommodating cavity 5211 and is disposed opposite to the limiting boss 5213. When the limiting flange 5215 and the limiting boss 5213 abut, the positioning portion 5201 protrudes relative to the fixing portion 521 to the limit position, In order to prevent the positioning part 5201 from falling off from the fixing part 521 .
  • first structure body 10 is the main supporting structure for installing the connection assembly 50 , other detailed structures of the first structure body 10 will be introduced below according to some of the embodiments of the present application.
  • the middle frame 12 includes a main body portion 120 , and the main body portion 120 forms the main support structure of the first structure body 10 , which can be roughly rectangular frame shape, circular frame shape, oval frame shape or other regular geometric shapes The shape or irregular shape, etc., is not limited in this application.
  • the main body portion 120 includes a bearing surface 123 and a side surface 125 connected to the bearing surface 123 , and the bearing surface 123 is used for bearing the casing 14 .
  • the orientation of the bearing surface 123 is different from the orientation of the side surface 125 .
  • the bearing surface 123 is substantially perpendicular to the first direction X
  • the side surface 125 is substantially perpendicular to the second direction Y.
  • the bearing surface 123 and the side surface 125 may be a plane or a curved surface, and may also be a plane or a curved surface with grooves and/or raised structures, etc., which are not limited in this application.
  • the accommodating space 121 of the middle frame 12 is formed inside the main body portion 120 and penetrates through the bearing surface 123 and the side surface 125 .
  • the accommodating space 121 penetrates through the bearing surface 123 to form a first opening 1211 , and the first opening 1211 is used for installing and accommodating the button 54 .
  • the accommodating space 121 penetrates through the side surface 125 to form a second opening 1213 , and the second opening 1213 is used for installing the locking portion 34 of the second structure 30 .
  • the locking portion 34 can be inserted through the second opening 1213 to engage with the engaging member 543 in the accommodating space 121 .
  • the orientation of the first opening 1211 is substantially consistent with the first direction X
  • the orientation of the second opening 1213 is substantially consistent with the second direction Y, eg, the orientation of the first opening 1211 is substantially perpendicular to each other.
  • the middle frame 12 may further include a frame portion 129 .
  • the frame portion 129 is disposed on the side of the main body portion 120 and is used to cover the main body portion 120 and communicate with the casing. 14 together form the appearance surface of the locking structure 100 .
  • the frame portion 129 can be covered on the side surface 125 of the main body portion 120 and partially cover the second opening 1213 to avoid excessive exposure of the second opening 1213 to the external environment, which is beneficial to ensure the locking structure 100 It has better dust-proof performance, and can also reduce the number or/and area of openings on the appearance surface of the locking structure 100, so as to improve the consistency of its appearance structure.
  • the frame portion 129 may be provided with a through hole 1291 that communicates with the second opening 1213 .
  • the size of the through hole 1291 is smaller than that of the second opening 1213 , and is used to allow the locking portion 34 of the second structure body 30 to pass through.
  • the frame portion 129 covers the side surface 125 of the middle frame 12
  • at least part of the frame portion 129 is disposed opposite to the side wall surface 149 of the housing 14 , so that the frame portion 129 can cover the opening of the notch structure of the accommodating slot 141 . part, thereby limiting the freedom of movement of the key 54 in the second direction Y, which may intersect with the first direction X (eg, the two are substantially perpendicular), preventing the key 54 from falling out of the opening.
  • the frame portion 129 when the frame portion 129 is disposed on one side of the side surface 125 , it can protrude relative to the bearing surface 123 so as to be disposed opposite to the side wall surface 149 of the casing 14 , so that the casing 14 is covered with On the bearing surface 123 , the structure in which the protruding frame portion 129 and the side wall surface 149 are disposed opposite to each other can realize the tight combination of the middle frame 12 and the housing 14 , thereby ensuring that the first structure 10 has a high waterproof and dustproof sealing effect.
  • the material of the frame portion 129 may be different from the material of the main body portion 120.
  • the two may be formed and connected by a process such as two-color molding or insert molding.
  • the frame portion 129 may substantially cover the side surface 125, or may It is only connected to one side of the side surface 125 or only connected to the bearing surface 123 and protrudes relative to the bearing surface 123 , which is not limited in this specification.
  • the accommodating groove 141 is substantially opposite to the first opening 1211 of the middle frame 12 . .
  • the limiting portion 143 is disposed adjacent to the accommodating groove 141 for limiting the position of the elastic connecting member 52 , thereby limiting the relative position of the pressing member 54 in the accommodating groove 141 .
  • the limiting portion 143 is substantially a groove structure, which is used for accommodating the positioning portion 5201 of the elastic connecting member 52 .
  • the specific location of the limiting portion 143 is not limited.
  • the limiting portion 143 can be disposed on the side wall of the accommodating slot 141 and extend to the side of the housing 14 facing the middle frame 12 . surface (eg inner surface 147).
  • the number of the limiting portions 143 may be two, and the two limiting portions 143 may be respectively disposed at opposite ends of the accommodating slot 141 .
  • the limiting portion 143 may be provided at other positions.
  • the limiting portion 143 may be provided on the inner wall of the accommodating groove 141 without extending to the inner surface 147 of the housing 14.
  • the limiting portion 143 may be It is a structure such as a hole or a groove on the inner wall of the accommodating groove 141; for another example, the limiting portion 143 can be provided on the inner surface 147 of the housing 14 without being communicated with the accommodating groove 141.
  • the limiting portion 143 can be provided
  • the elastic connecting member 54 is also disposed on the end of the pressing member 541, such as the hole or groove on the inner surface 147.
  • the positioning portion 5201 of the elastic connecting member 52 can protrude and bend relative to the pressing portion 5411, so as to It can be matched and connected with the limiting portion 143 .
  • the housing 14 may further include a protruding portion 148 , and the protruding portion 148 is disposed in the accommodating groove 141 and protrudes relative to the sidewall of the accommodating groove 141 .
  • the protruding portion 148 may be disposed on the side of the accommodating groove 141 close to the middle frame 14 and opposite to at least part of the key 54 to limit the position of the key 54 moving in the first direction in the accommodating groove 141 .
  • the limiting portion 143 is a groove
  • the groove has a bottom wall 1431 opposite to the middle frame 12 (see FIG. 12 ).
  • the positioning portion 5201 When in the groove of the limiting portion 143, the positioning portion 5201 is disposed opposite to the bottom wall 1431, and the bottom wall 1431 of the groove is used to limit the position of the positioning portion 5201 and the pressing member 541 in the first direction X; the protruding portion 148 is disposed opposite at least part of the pressing member 541 to limit the position of the pressing member 541 away from the first direction X, that is, the protrusion 148 and the bottom wall 1431 of the groove limit the pressing member 541 in the first direction
  • the movement stroke on X is beneficial to ensure that the locking structure 100 has strong structural stability.
  • the second structure body 30 is detachably connected to the first structure body 10 .
  • the body 32 of the second structure 30 may be disposed on the component to be connected, or may be a component of the component.
  • the body 32 may be disposed on the watch strap of the smart watch, or may be a part of the watch strap.
  • the locking portion 34 of the second structure 30 is disposed at the end of the main body 32 and protrudes from the surface of the main body 32 .
  • the locking portion 34 is disposed on the side of the main body 32 facing the first structure body 10 .
  • the locking portion 34 is substantially in the shape of a hook, and is used for matching with the locking member 543 .
  • the locking portion 34 is provided with a locking groove 341 , and the locking groove 341 is used for accommodating part of the structure of the locking member 543 , so as to realize the connection between the locking portion 34 and the locking member 543 .
  • the card-holding cooperation between them are provided.
  • the locking portion 34 may be substantially a columnar structure disposed on the surface of the body 32 , and the locking groove 341 is disposed on the peripheral wall of the columnar structure.
  • the side of the locking portion 34 away from the body 32 may also be provided with a first guiding inclined surface 343 , and the first guiding inclined surface 343 and the locking groove 341 are located on the same side of the columnar structure.
  • the inclination direction of the first guiding slope 343 intersects with the axial direction of the columnar structure, which is used to guide the movement direction of the locking portion 34 when it is inserted into the second opening 1213 and guide the locking portion 34 to engage with the engaging member 543 . .
  • the number of the latching portions 34 is not limited, and it can be one or more.
  • One-to-one correspondence which is not limited in this application.
  • there are two locking portions 34 and the two locking portions 34 are arranged on the main body 32 at intervals to strengthen the connection between the second structural body 30 and the locking member 543 .
  • the stability of the interlocking structure there may also be two latching portions 5433 of the latching member 543 , and the two latching portions 5433 are respectively disposed at opposite ends of the abutting portion 5431 and corresponding to the two latching portions 34 respectively.
  • the locking portion 54 passes through the locking space 5434 , the locking portion 5433 is at least partially accommodated in the locking groove 341 , so that the second structure body 30 can be connected to the first structure body 10 .
  • an external force is applied to the pressing member 541 along the first direction X, so that the pressing member 541 pushes against the engaging portion 5433 and moves along the first direction X until it is separated from the locking groove 341, and then the second The structure body 30 can be pulled out to be separated from the first structure body 10 .
  • the pressing member 541 and the clamping member 543 of the button 54 return to their original positions under the action of the reset member 58 .
  • the locking portion 34 When the first structure body 30 needs to be connected to the first structure body 10, the locking portion 34 is inserted into the locking space 5434 from the second opening 1213 along the second direction Y, and the first guiding slope 343 of the locking portion 34 Pushes the latching portion 5433 and gradually penetrates into the latching space 5434.
  • the latching portion 5433 moves along the first direction X under the pushing of the latching portion 34 to cause the reset member 58 to compress and deform.
  • the latching portion 5433 moves to the latching
  • the groove 341 is aligned with the latching portion 5433
  • the latching portion 5433 is pushed into the latching groove 341 under the action of the elastic restoring force of the reset member 58.
  • the engaging portion 5433 may also be provided with a second guiding slope 5437 corresponding to the locking portion 34 , and the second guiding slope 5437 may be disposed on the engaging portion 5433 facing the second structural body 30 .
  • the latching portion 34 pushes against the guiding slope of the latching portion 543 to force the latching member 543 to be installed relative to the second structure 10. Section 103 moves.
  • the second guide slope 5437 is used to cooperate with the first guide slope 343 to improve the smoothness of the movement of the locking portion 34 into the locking space 5434 .
  • at least one of the latching portion 5433 and the latching portion 34 is provided with a guiding slope.
  • a first transition surface 345 is provided between the first guiding inclined surface 343 of the locking portion 34 and the locking groove 341 , and the first transition surface 345 may be a plane surface or an arc surface.
  • the first guide slope 343 is separated from the second guide slope 5437, and the engaging portion 5433 of the engaging member 543 abuts against the first transition surface 345 and moves relative to the first transition surface 345 until the engaging portion 5433 is separated from the first transition surface 345 and enters the locking groove 341 of the locking portion 34, and the locking member 543 can be driven to move in a direction that is close to the pressing member 541, so that the locking groove 341 is used to form the locking portion 5433.
  • Limiting function to prevent the second structure body 30 from falling out of the first structure body 10 .
  • the surface of the locking groove 341 facing away from the first guiding inclined surface 343 is a plane and is substantially perpendicular to the movement direction of the locking portion 34 .
  • the surface of the locking groove 341 facing away from the first guiding slope 343 or the surface of the locking groove 341 facing the main body 32 may be flat and the included angle with the moving direction of the locking portion 34 is 85°-90°. Therefore, the locking portion 34 can be effectively limited by the engaging portion 5433 to prevent the second structural body 30 from easily falling out of the first structural body 10 under tension.
  • the surface of the latching portion 5433 facing away from the second guiding inclined surface 5437 may also be a plane and substantially perpendicular to the movement direction of the latching portion 34 .
  • the surface of the engaging portion 5433 facing away from the second guiding inclined surface 5437 can also be flat and the angle between the engaging portion 5433 and the moving direction of the engaging portion 34 is 85°-90 degrees, so that the engaging portion 5433 can be locked against the locking portion 34 .
  • the effective position of the locking portion 34 prevents the second structure body 30 from easily falling out of the first structure body 10 when the second structure body 30 is under tension.
  • a second transition surface 5436 may be provided on the side of the clamping portion 5433 facing the pressing member 541 , and the second transition surface 5436 may be a flat surface or an arc surface.
  • the locking portion 34 can abut on the second transition surface 5436 and follow the first guide slope 5436 .
  • the second transition surface 5436 continues to move toward the inside of the electronic device 500 until the locking portion 34 is disengaged from the second transition surface 5436 .
  • the locking portion 34 is provided with the first transition surface 345
  • the locking member 543 can enter the locking groove 341 to realize the locking portion 34
  • the second structure body 30 is limited to the first structure body 10 .
  • the arrangement of the first transition surface 345 can enhance the structural strength of the locking portion 34 at the edge of the locking groove 341 .
  • the provision of the second transition surface 5436 can enhance the strength of the engaging portion 5433 at the edge of the second guiding slope 5437 .
  • the first transition surface 345 and the second transition surface 5436 do not necessarily exist.
  • the clip 543 can enter the clip of the locking portion 34 .
  • the locking groove 341 forms a limit fit with the locking portion 34 . In other words, at least one of the first transition surface 345 and the second transition surface 5436 may default.
  • the first position and the second position can be regarded as the extreme positions of the pressing member 541 during the movement process
  • the third position and the fourth position can be regarded as the clamping member 543 during the movement process. limit position.
  • the introduction of these positions is only for reference in motion, so as to clearly explain that during the process of installing the second structure body 30 on the first structure body 10 , the pressing member 541 , the first matching portion 220 , the clipping member 543 and the first structure
  • the relative positions of the body 10 may not be uniquely determined. For example, in the case of considering engineering errors, these positions on the first structure body 10 should be in a suitable area, which should not be construed as a strict limitation on the technical solution.
  • the pressing member 541 can be considered to be at the first position. Under normal circumstances, the pressing member 541 can no longer move out of the electronic device 500 along the second direction.
  • the first structure body 10 may be provided with a limiting structure, and the pressing member 541 is in contact with the limiting structure in the second position. Under normal circumstances, the pressing member 541 cannot continue to move into the electronic device 500 in the second direction, thereby preventing the pressing member 541 from being excessively pressed and causing structural damage.
  • the first structure body 10 may be provided with a corresponding limiting structure. When the pressing member 541 is in contact with the limiting structure in the first position and the second position, the above-mentioned first and second positions can be determined.
  • the first position and the second position may also be determined in other ways.
  • the end face of the pressing member 541 exposed to the casing 14 is flush with the end face of the casing 14 at the keyway 1011 , and this appearance characteristic can be used to determine the pressing the first position of the piece 541 .
  • the pressing member 541 is pressed so that the second structural body 30 can be detached from the first structural body 10 , it can be considered that the pressing member 541 is located at the second position.
  • the third position and the fourth position can also be determined in various ways.
  • the clip 543 can be considered to be located at the third position.
  • the pressing member 541 can no longer move in the direction close to the pressing member 541 along the second direction.
  • another limit position of the clip 543 in the second direction is the fourth position. If the imaginary engaging member 543 is fixed at the fourth position relative to the first structure body 10 , the first matching portion 220 of the second structure body 30 can smoothly enter and exit the groove 1031 .
  • the third position and the fourth position can also be determined by the cooperation between the protrusion 1437 of the clip 543 and the limiting groove 133c.
  • the button is configured to be connected between the first structure body and the second structure body, and while the button is arranged on the first structure body, its clip can be used to connect with the second structure body.
  • the locking parts of the body are engaged with each other, and the second structure body can be easily connected to the first structure body and can be easily separated from the first structure body by using the structure that the locking part and the locking part can be movably engaged.
  • the latching member is driven by the latching portion to move relative to the first structure body, and is reset to be engaged with the latching portion. At this time, the second structure can be realized.
  • the pressing member can be pressed to drive the latching member to move so as to be disengaged from the latching portion, at this time
  • the convenient disassembly between the second structure body and the first structure body can be realized.
  • the pressing member and the clipping member of the button are respectively positioned on the first structure body by the first mounting portion and the second mounting portion, and at least part of the structure of the pressing member and the clipping member are arranged opposite to each other,
  • the pressing piece can be pressed and drive the clipping piece to move, so the two can realize the transmission of movement through the relative positional relationship, and can realize the positioning and installation of the pressing piece and the clipping piece respectively, which avoids the need for the pressing piece and the clipping piece.
  • the installation and coordination problem caused by the excessively long dimension chain caused by the fixed connection between the clips through other snap-fit structures.
  • the button is designed as a roughly separate pressing member and a clip, which interrupts the original size chain of the button, and there is no assembly dimension chain relationship between the pressing member and the clip, and can be respectively arranged in
  • the first mounting part and the second mounting part of the first structure body make the dimension chain when the button is mounted on the first structure body relatively shorter, which reduces the difficulty of production and assembly of the locking structure.
  • an embodiment of the present application further provides a smart wearable device.
  • the smart wearable device provided by the embodiments of the present application is a portable device that is directly worn on the body or integrated into the user's clothes or accessories.
  • the smart wearable device may include, but is not limited to, a watch, a smart bracelet, a smart wristband, Smart glasses, rings or helmets, etc.
  • the strap provided by the embodiment of the present application can be adapted according to the different positions where the smart wearable device is worn.
  • an embodiment of the present application provides an electronic device 500 with a locking structure 100 .
  • the electronic device 500 includes a first structure body 10 , a circuit board (not shown) and a battery (not shown) disposed on the first structure body 10 . Not shown) and other electronic components.
  • the first structure 10 may include a middle frame 12 and a casing 14 connected to the middle frame 12 , the middle frame 12 and the casing 14 are enclosed to form a receiving space 131 , and the receiving space 131 is used for receiving circuit boards, batteries, etc. of the electronic device 500 .
  • Electronic Component After the smart wearable device 300 (as shown in FIG.
  • the middle frame 12 can be made of non-metallic materials such as plastic, rubber, silica gel, wood, ceramics or glass, and the middle frame 12 can also be made of metal materials such as stainless steel, aluminum alloy or magnesium alloy.
  • the middle frame 12 can also be a metal injection molded part, that is, metal material is used to ensure the structural rigidity of the middle frame 12, and the inner surface of the metal body is formed by injection molding to form protrusions, grooves, threaded holes and other structures for assembly and positioning.
  • the housing 14 may be made of glass, ceramics or plastic, and the material of the housing 14 may be the same as or different from the middle frame 12 .
  • the middle frame 12 may be integrally formed with the housing 14 .
  • an embodiment of the present application provides a smart wearable device 300 with a locking structure 100.
  • the smart wearable device 300 may be, but not limited to, a watch, a smart bracelet, a smart wristband, smart glasses, a finger ring, or a helmet, etc. Smart wearable devices.
  • the smart wearable device 300 in this embodiment is described by taking a smart watch as an example, and the locking structure 100 is described by taking the connection structure between the watch strap and the watch body of the smart watch as an example.
  • the smart wearable device 300 includes a device body 200 , a locking structure 100 and a wearing piece.
  • the wearing piece 400 is connected to both sides of the device body 200 through the locking structure 100 for the user to wear.
  • the device main body 200 is a watch body, and the watch body can be a main body capable of realizing the function of a smart watch.
  • the first structure body 10 of the locking structure 100 is disposed on the device main body 200 .
  • the device main body 200 may include a display screen 201, and the display screen 201 is connected to the casing 14 and together form a cavity, and components such as a chip, a sensor, and a battery may be arranged inside the cavity.
  • the types of sensors include but are not limited to temperature sensors that can detect body temperature, vibration sensors or photoelectric sensors that can detect heart rate, or pressure sensors that detect blood pressure, etc., so that the sensors can detect various health indicators of the wearer's body, Information such as heart rate, body temperature or blood pressure. Sensors may also include image sensors, visible light sensors, infrared light sensors, and the like.
  • a chip may include one or more processing units, for example, it may include an application processor (AP), a modem processor, memory, a digital signal processor (DSP), a baseband processor, and / or neural network processor (Neural-network processing unit, NPU), etc.
  • AP application processor
  • DSP digital signal processor
  • NPU neural network processing unit
  • the display screen 201 may be a liquid crystal display (Liquid Crystal Display, LCD) or an organic light-emitting display (Organic Light-Emitting Diode, OLED), etc.
  • the display screen 201 may be used to display various information such as time, health indicators, and information.
  • the display screen 201 may be a touch screen, or the display screen 201 may be provided with operation components such as keys.
  • the battery can provide power for components such as the display screen 201 , the controller, and the processor, and the types of batteries include but are not limited to lithium batteries, dry batteries, and accumulators.
  • the device main body 200 may further include a wireless communication module, and the wireless communication module may provide wireless local area networks (Wireless local area networks, WLAN), Bluetooth (Bluetooth, BT), frequency modulation (Frequency modulation) applied on the smart watch. modulation, FM), infrared technology (Infrared, IR) and other wireless communication solutions.
  • the wireless communication module can realize the communication connection between the smart wearable device 300 and external devices, such as mobile phones, computers and other terminals.
  • the wearing member 400 is used to form a structure for wearing at the place of use, and the second structure body 30 of the locking structure 100 is disposed on the wearing member 400 .
  • the wearing member 400 includes a first wearing member 410 , a second wearing member 430 and a locking member 450 .
  • the first wearing member 410 and the second wearing member 430 are respectively connected to the device body 200 through the locking structure 100 .
  • the locking members 450 are used to connect the first wearing member 410 and the second wearing member 430 together, so that the first wearing member 410 and the second wearing member 430 and the device body 200 together form a general shape for the user to wear. ring structure.
  • the wearing parts 400 include two pieces (one of which is shown in the figure), the opposite ends of the device main body 200 are respectively provided with installation slots 133 , each of the two wearing parts 400 has one end connected to the device main body 200 , and the two wearing parts 400 The end away from the device body 200 can be fastened together to form a receiving space, so that the device body 200 can be worn on the user's wrist through the wearing member 400 .
  • the wearing member 400 may be a one-piece structure, one end of the wearing member 400 is connected to one end of the device body 200, and the other end of the device body 200 may be provided with a buckle for the wearing member 400 to pass through , the free end of the wearing piece 400 can penetrate and bypass the buckle and then be fixed to other positions of the wearing piece 400 to form a accommodating space, and the size of the accommodating space can be easily adjusted to be convenient for the user to wear.
  • the button is configured to be connected between the first structure body and the second structure body, and the button is arranged on the first structure body, and its clip can be used for
  • the second structure body can be easily connected to the first structure body, and can also be easily separated from the second structure body by using the structure that the locking member and the locking portion can be movably engaged.
  • a structure For example, during the process of installing the second structure body to the first structure body, the latching member is driven by the latching portion to move relative to the first structure body, and is reset to be engaged with the latching portion. At this time, the second structure can be realized.
  • the pressing member can be pressed to drive the latching member to move so as to be disengaged from the latching portion, at this time
  • the convenient disassembly between the second structure body and the first structure body can be realized.
  • an embodiment of the present application further provides a casing assembly (not shown in the figure), the casing assembly including the above-mentioned casing 14 , the middle frame 12 and the button 54 .
  • the housing 14 is provided with a first mounting portion 101
  • the middle frame 12 is provided with a second mounting portion 103
  • the button 54 is connected to the middle frame 12 and configured to connect the middle frame 12 and the external structure.
  • the button 54 includes a pressing member 541 and a clamping member 543 .
  • the pressing member 541 is movably disposed on the first mounting portion 2101 and is configured to move relative to the first mounting portion 101 along a first direction under external force pressing.
  • the latching member 543 is movably disposed on the second mounting portion 103 and positioned on the middle frame 12 by the second mounting portion 103 , and is configured to be engaged with an external structure (eg, the latching portion 34 ).
  • an external structure eg, the latching portion 34 .
  • the outer structure moves in the second direction to push the clips 543 to move relative to the middle frame in the first direction, and the clips can be reset to be engaged with the outer structure;
  • the pressing member 541 can be pressed to drive the engaging member 543 to move in a first direction so as to be disengaged from the external structure, wherein the first direction is different from the second direction.
  • the middle frame 12 , the housing 14 , the pressing member 541 and the clip 543 can form a modular assembly, and when it is applied, the modular assembly can be directly connected to other assemblies of the actual product. Together, the assembly of the locking structure 200 can be achieved, so the assembly efficiency of the assembly can be improved.
  • the housing assembly may further include the features and structures introduced in any of the above embodiments, which will not be repeated in this specification.
  • the embodiment of the present application further provides an electronic device, which may be, but is not limited to, smart watches, smart bracelets, smart wristbands, smart glasses, finger rings, or helmets, etc. device or intelligent portable communication device.
  • the electronic device can be used to install a strap, and the strap can have any one or a combination of the features of the second structure provided in the above embodiment, which will not be described in detail in this embodiment.
  • the electronic device includes a casing, a button, and a clip. Wherein, the housing may have any one or a combination of the features of the first structure provided in the above embodiments, which will not be described in detail in this embodiment.
  • the casing is provided with a first installation part and a second installation part which are communicated with each other.
  • the button includes a pressing piece and an elastic connecting piece, the elastic connecting piece is connected to the pressing piece, and the pressing piece is arranged on the first installation part.
  • the clamping part is arranged on the second installation part, and the assembling and positioning of the clamping part and the casing and the assembling and positioning of the pressing part and the casing are independent of each other.
  • the clip is used to cooperate with the strap, so that the strap is limited to the housing; when the strap is limited to the housing, the elastic connecting piece is abutted against the housing, so that the pressing member is limited to the housing; the pressing member is opposite to the housing when pressed
  • the casing moves, and the pressing member drives the clip to move, so as to disengage the clip from the strap and enable the strap to be detached from the casing.

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Abstract

本申请实施例提供一种锁合结构、壳体组件、智能穿戴设备以及电子设备。锁合结构包括第一结构体、第二结构体、按压件及卡接件。第一结构体设有第一安装部及第二安装部,第二结构体包括本体及卡锁部,按压件可活动地设置于第一安装部,并被配置为在外力按压下相对第一安装部运动。卡接件可活动地设置于所述第二安装部,并由第二安装部定位于第一结构体,且被配置为与卡锁部相卡合;卡接件的至少部分与按压件相对。在第二结构体安装至第一结构体的过程中,卡接件被卡锁部驱使以移动并复位以与卡锁部卡合。在第二结构体从第一结构体脱离的过程中,按压件被按压以驱使卡接件运动从而与卡锁部脱离。上述锁合结构中,第二结构体与第一结构体之间的拆装易于操作。

Description

锁合结构、壳体组件、智能穿戴设备以及电子设备
相关申请的交叉引用
本申请要求于2021年01月19日提交中国专利局的申请号为CN 202120141448.0、名称为“锁合结构、壳体组件以及智能穿戴设备”的中国专利申请,2021年01月19日提交中国专利局的申请号为CN 202110069698.2、名称为“锁合结构、壳体组件以及智能穿戴设备”的中国专利申请,以及2021年01月19日提交中国专利局的申请号为CN 202120140667.7、名称为“电子设备及可穿戴设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及可穿戴设备领域,尤其涉及一种锁合结构、壳体组件、智能穿戴设备以及电子设备。
背景技术
智能穿戴设备具有贴身佩戴的优势,其可随时检测身体健康情况、即时通讯等诸多功能。近年来,越来越多的人开始关注认可和使用智能穿戴设备。传统的智能手表均包括表体以及连接在表体上的表带,表带可以绕设安装在用户的腕部。
传统的表带通过插槽和生耳的配合结构连接至表体,当生耳两端插入插槽后,表带和表体可以实现稳定连接。然而,由于生耳的结构较为细小及特殊,若需要将生耳从插槽中脱离或将生耳安装至插槽中,均需采用生耳针等专用工具来进行拆装,操作极为不便。
发明内容
本申请实施例提供一种锁合结构、壳体组件、智能穿戴设备以及电子设备。
第一方面,本申请实施例提供一种锁合结构。锁合结构包括第一结构体、第二结构体、按压件以及卡接件。第一结构体设有第一安装部以及第二安装部,第二结构体包括本体以及相对于本体凸出的卡锁部。按压件可活动地设置于,以被配置为在外力按压下相对第一安装部运动。卡接件可活动地设置于第二安装部,并由第二安装部定位于第一结构体,卡接件被配置为与卡锁部相卡合;卡接件的至少部分结构与按压件相对设置。在第二结构体安装至第一结构体的过程中,卡接件被卡锁部驱使以相对第二安装部移动,并复位以与卡锁部卡合。在第二结构体从第一结构体脱离的过程中,按压件能够被按压,以驱使卡接件能够运动从而与卡锁部脱离。
第二方面,本申请实施例还提供一种锁合结构,包括第一结构体、第二结构体、按压件以及卡接件。第一结构体设有第一安装部以及第二安装部,第二结构体与第一结构体配合连接,按压件设于第一安装部,卡接件设于第二安装部。按压件在被按压时相对第一结构体从第一位置移动至第二位置,在第一位置时,在按压件相对第一结构体的移动方向上,按压件与卡接件之间存在间隔,卡接件用于在第一位置时与第二结构体相配合,以使第二结构体限位于第一结构体。按压件在被按压时相对第一结构体移动至第二位置,在第一结构体从第一位置切换至第二位置的过程中,按压件驱使卡接件移动。在第二位置时,卡接件与第二结构体解除配合,以使第二结构体能够从第一结构体拆离。
第三方面,本申请实施例还提供一种智能穿戴设备,包括设备主体、佩戴件以及上述的锁合结构,第一结构体设置于设备主体,第二结构体设置于佩戴件。
第四方面,本申请实施例还提供一种壳体组件,包括中框、壳体、以及按键。壳体设有第一安装部,中框设有第二安装部。按键连接于中框,并被配置为连接中框与外部结构。按键包括按压件以及卡接件。按压件可活动地设置于第一安装部,并被配置为在外力按压下沿第一方向相对第一安装部运动。卡接件可活动地设置于第二安装部,并由第二安装部定位于中框,卡接件被配置为与外部结构相卡合;卡接件的至少部分结构与按压件相对设置。在外部结构安装至中框的过程中,外部结构沿第二方向运动以推动卡接件沿第一方向相对中框移动,卡接件能够复位以与外部结构卡合;在外部结构从中框脱离的过程中,按压件能够被按压,以驱使卡接件能够沿第一方向运动与外部结构脱离,其中,第一方向与第二方向不同。
第五方面,本申请实施例提供一种电子设备,包括壳体、按键以及卡接件。壳体开设有相连通的第一安装部和第二安装部;按键包括按压件和弹性连接件,弹性连接件连接于按压件,按压件设于第一安装部;卡接件设于第二安装部,卡接件与壳体的装配定位、按压件与壳体的装配定位相互独立;卡接件用于与绑带相配合,以使绑带限位于壳体;在绑带限位于壳体时,弹性连接件抵持于壳体,以使按压件限位于壳体;按压件在被按压时相对壳体移动,且按压件驱使卡接件移动,以使卡接件与绑带解除配合,并使绑带能够从壳体拆离。
附图说明
为了更清楚地说明申请的技术方案,下面将对实施方式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申请的一些实施方式,对于本领域普通技术人员来讲,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是本申请一个实施例提供的锁合结构的局部立体示意图。
图2是图1所示锁合结构在第一视角的立体分解示意图。
图3是图1所示锁合结构的壳体与按压件的立体组装示意图。
图4是图3所示壳体与按压件在另一视角的立体组装示意图。
图5是图3所示壳体与按压件的立体分解示意图。
图6是图1所示锁合结构的第一结构体与按键配合的正投影组装示意图。
图7是图2所示锁合结构的按键的立体示意图。
图8是图7所示按键与壳体配合的剖面示意图。
图9是图1所示锁合结构的第一结构体的分解示意图。
图10为图1所示锁合结构的剖面示意图。
图11是图8所示连接组件和第一结构体的分解示意图。
图12是图11所示连接组件和第一结构体在另一视角的分解示意图。
图13是图11所示锁合结构的弹性连接件的局部剖面示意图。
图14是图1所示锁合结构在第二视角的立体分解示意图。
图15是图1所示锁合结构在第三视角的立体分解示意图。
图16是图1所示锁合结构的另一种剖面示意图。
图17是本申请一个实施例提供的电子设备的立体示意图。
图18是本申请一个实施例提供的智能穿戴设备的立体示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例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,本领域普通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。
传统的智能手表均包括表体以及连接在表体上的表带,表带可以绕设安装在用户的腕部。传统的表带通过插槽和生耳的配合结构连接至表体,当生耳两端插入插槽后,表带和表体可以实现稳定连接。然而,由于生耳的结构较为细小及特殊,若需要将生耳从插槽中脱离或将生耳安装至插槽中,均需采用生耳针等专用工具来进行拆装,操作极为不便。
为了解决上述问题,本申请实施例提供了一种锁合结构、智能穿戴设备以及壳体组件。锁合结构包括第一结构体、第二结构体、按压件以及卡接件。第一结构体设有第一安装部以及第二安装部,第二结构体包括本体以及相对于本体凸出的卡锁部。按压件可活动地设置于,以被配置为在外力按压下相对第一安装部运动。卡接件可活动地设置于第二安装部,并由第二安装部定位于第一结构体,卡接件被配置为与卡锁部相卡合。卡接件的至少部分结构与按压件相对设置。在第二结构体安装至第一结构体的过程中,卡接件被卡锁部驱使以相对第二安装部移动,并复位以与卡锁部卡合。在第二结构体从第一结构体脱离的过程中,按压件能够被按压,以驱使卡接件能够运动从而与卡锁部脱离。
本申请实施例提供的锁合结构中,按压件和卡接件被配置为连接于第一结构体和第二结构体之间,卡接件能够用于与第二结构体的卡锁部相卡合,利用卡接件和卡锁部可活动卡合的结构,使第二结构体能够方便地连接于第一结构体,也能够方便地脱离第一结构体。例如,在第二结构体安装至第一结构体的过程中,卡接件被卡锁部驱使以相对第一结构体移动,并复位以与卡锁部卡合,此时能够实现第二结构体和第一结构体的便捷安装;又如,在第二结构体从第一结构体脱离的过程中,按压件能够被按压,以驱使卡接件能够运动从而与卡锁部脱离,此时能够实现第二结构体和第一结构体之间的便捷拆卸。当锁合结构应用于智能穿戴设备中时,设备主体和佩戴件之间通过上述的锁合结构,能够实现操作便捷的可拆卸连接。
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。
请参阅图1,本申请的其中一个实施例提供一种锁合结构100,用于连接两个零部件,使该两个零部件能够可拆卸地连接于一起,并且使两个零部件之间的连接易于拆装。锁合结构100包括第一结构体10、第二结构体30以及连接组件50,连接组件50连接于第一结构体10和第二结构体30之间,以用于实现第一结构体10、第二结构体30的可拆卸连接。在具体的应用实施例中,第一结构体10可以设置于需要连接的两个零部件的其中一个,第二结构体30可以设置于需要连接的两个零部件的其中之另一个,如此,便能实现两个零部件可拆卸地连接于一起,其中,第一结构体10和第二结构体30可以为所需连接的零部件的结构组成部分,也可以为附加于所需连接的零部件的部件结构,本申请对此不作限制,如此,能够使锁合结构100的应用范围更加广泛。
请参阅图2,在本申请实施例中,第一结构体10设有第一安装部101和第二安装部103,第一安装部101和第二安装部103用于安装连接组件50。第一安装部101和第二安装部103的具体结构不受限制,例如,第一安装部101可以包括安装槽、安装孔或者卡扣结构等安装、容纳结构中的一种或多种, 以利于安装连接组件50;类似地,第二安装部103可以包括安装槽、安装孔或者卡扣结构等安装、容纳结构中的一种或多种,以利于安装连接组件50,且第一安装部103的结构可以与第一安装部101的结构相同或不同。例如,第一安装部101包括相连通的键槽1011,第二安装部103可以包括凹槽1031,键槽1011延伸至壳体14的外表面,即键槽1011延伸至壳体14的可供用户触摸的表面。凹槽1031开设于中框12,第二结构体30可以从凹槽1031安装至电子设备500(如图17所示)并能够从凹槽1031拆离。具体地,在本实施方式中,可以以安装槽133作为参考,两个安装槽133相对设置于电子设备500的宽度方向的两端,电子设备500的显示屏模组120和壳体14则分别位于电子设备500的厚度方向的两端。为简化表述,电子设备500的宽度方向可视为第一方向,电子设备500的厚度方向可为第二方向,也即第一方向与第二方向相互垂直。第二结构体30能够沿第一方向装入凹槽1031,并使得第二结构体30限位于第一结构体10。在本申请实施方式中,第一方向和第二方向仅用于作为参考,以便于清楚、简洁地描述第二结构体30及其他零部件相对中框12的位置,不应视为对技术方案的严格限定。例如,在其他实施方式中,无需以电子设备500的宽度方向作为第一方向,或者以电子设备500的厚度方向作为第二方向,在其他实施方式中,第一方向与第二方向可以呈锐角。
第二结构体30包括本体32以及相对本体32凸出的卡锁部34,卡锁部34用于与连接组件50相卡合,以实现第二结构体30和第一结构体10之间的可拆卸连接。
连接组件50包括按键54,按键54被配置为连接第一结构体10和第二结构体30。按键54包括按压件541以及卡接件543。按压件541可活动地设置于第一安装部101,以被配置为在外力按压下相对第一安装部101运动(例如沿第一方向X运动),在本申请实施例中,按压件541由第一安装部101定位于第一结构体10。卡接件543由第二安装部103定位于第一结构体10,并被配置为与卡锁部34相卡合。卡接件543的至少部分结构与按压件541相对设置。在第二结构体30安装至第一结构体10的过程中,卡接件543被卡锁部34驱使以相对第二安装部103移动,并复位以与卡锁部34卡合。在第二结构体30从第一结构体10脱离的过程中,按压件541能够被按压,以驱使卡接件543能够运动从而与卡锁部34脱离。在锁合结构100中,通过按键54连接于第一结构体10和第二结构体30之间,按键54设置于第一结构体10的同时,其卡接件543能够与第二结构体30的卡锁部34相卡合,利用按压件541驱使卡接件543和卡锁部34可活动卡合的结构,使第二结构体30能够方便地连接于第一结构体10,也能够方便地脱离第一结构体10。
在本申请实施例中,按压件541与卡接件543相对设置的结构并不局限于二者直接相对间隔设置,在一些实施例中,二者之间可以相对设置,例如,按压件541的至少部分结构与卡接件543的至少部分结构相间隔,按压件541与卡接件543之间可以设置有居中的元件或组件等;在另一些实施例中,按压件541与卡接件543可以彼此相对并叠置或贴合,如按压件541的至少部分结构与卡接件543的至少部分结构相抵接或者表面贴合;在又一些实施例中,按压件541与卡接件543的至少部分结构之间存在预设的间隙,该间隙的宽度尺寸应满足预设的范围,例如,该间隙的宽度尺寸可以大于或等于0.1mm且小于等于1.5mm,当按压件541被外力按压时,按压件541在运动的距离大于该宽度尺寸后方能抵推卡接件543运动,从而能够避免按压件541被误按压导致卡接件543与卡锁部34脱离。如此,通过将按压件541和卡接件543的至少部分结构相对设置,按压件541能够被按压并驱使卡接件543运动,因此二者能够通过相对设置的位置关系实现运动的传递。
为了保证二者相对设置后按压件541能够可靠驱动卡接件543运动,按压件541应被定位于第一安装部101或者由第一安装部101定位于第一结构体10,卡接件5453应被定位于第二安装部103或者由第二安装部103定位于第一结构体10。其中,在本说明书中,一个部件“定位于”另一个部件,应被理解通过后者本身的结构或者通过居中元件将前者相对于后者的位置大致限定,使前者相对于后者可活动的范围在预定的范围内。例如,按压件541被定位于第一安装部101,可以理解为借助第一安装部101的结构或/及第三方元件将按压件541限定在预定的活动范围内;或者,按压件541由第一安装部101定位于第二结构体10,可以理解为借助第一安装部101的结构将按压件541限定在预定的活动范围内,也可以理解为借助第一安装部101的结构与按压件541或/及第三方元件的结构相配合,以将按压件541限定在预定的活动范围;其中,用于限定按压件541的第一安装部101可以包括孔结构、槽结构、导轨结构等限位结构,通过这些限位结构与按压件541的结构限位配合,达到定位按压件541的效果内。又如,卡接件543由第二安装部103定位于第一结构体10,应理解为借助第二安装部103的结构将卡接件543限定在预定的活动范围内,其中,用于限定卡接件543的第二安装部103可以包括孔结构、槽结构、导轨结构等限位结构,通过这些限位结构与卡接件543的结构限位配合,达到定位卡接件543的效果。本说明书后文将根据本申请的一些具体实施例对这些限位、定位结构进行具体阐述。
如此,按压件541和卡接件543在装配时,能够分别通过第一安装部101和第二安装部103定位,实现了按压件541和卡接件543二者的分别定位安装,这就避免了按压件541和卡接件543之间通过其他扣合结构固定连接所带来的尺寸链过长导致的安装配合问题。例如,在现有技术中,要安装按键时, 通常将按键本身的多个零部件(如按压部和抵接部)先组装于一起,再将组装后的按键安装到第一结构体上,在这种情况下当按压件和卡接件中的任一个存在制造公差时,将二者先组装成为组件的尺寸链较长、产生的安装误差必然相对较大,当需将二者的整体安装至第一结构体上时,该整体较大的安装误差导致二者的整体尺寸极有可能不满足该整体与第一结构体的装配公差要求,该整体与第一结构体的其他部位结构产生干涉而无法安装的概率大大增加,因此对这些零部件(如按压件和卡接件)的制造尺寸精度要求很高,生产、装配难度很大。而在本申请中,将按键54设计为大致分体的按压件541和卡接件543,按压件541以及卡接件543能够分别设置于第一结构体10的第一安装部101和第二安装部103,以实现分别被定位、分别被装配的组装要求,使按压件541以及卡接件543之间不存在装配尺寸链关系,从而使按键54安装于第一结构体10时的尺寸链相对更短,降低了锁合结构100生产装配的难度。
下文将结合附图所示的实施例对本申请提供的锁合结构100进行具体阐述。
在图2所示的实施例中,第一结构体10包括中框12以及连接于中框12的壳体14。在本实施例中,壳体14大致盖设于中框12,并用于形成第一结构体10的主要外观表面,第一安装部101设置于壳体14,第二安装部103设置于中框12。中框12用于形成主要支撑结构,例如,中框12可以用于形成对于其所连接的零部件的支撑结构,以收容该零部件的电子元件。为便于描述,本说明书借助中框12的长、宽、高的参考方向定义第一方向X、第二方向Y以及第三方向Z,如图2所示,第一方向X定义为中框12的厚度方向,第一方向X的正向朝向图中的下方;第二方向Y定义为中框12的长度方向,第二方向Y的正向朝向图中的左上方;第三方向Z定义为中框12的宽度方向,第三方向Z的正向朝向图中的左下方。进一步地,第一方向X、第二方向Y以及第三方向Z可以两两垂直。中框12可以设置于其所需连接的零部件,也可以作为该零部件的组成部分。例如,当锁合结构100应用于智能手表时,中框12可以设置于该智能手表的表体,也可以作为该表体的一部分。中框12的形状不受限制,其可以呈现为矩形框状、圆形框状或者其他块状体。
请参阅图3,在本实施例中,第一安装部101可以包括设置于壳体14上的容置槽141,容置槽141贯穿壳体14的相对两个表面。在本实施例中,可以定义容置槽141沿第一方向X贯穿壳体14的相对两个表面,以用于限定按压件541在容置槽141中运动的方向,以允许按压件541能够沿第一方向X在容置槽141中运动。在本实施例中,容置槽141可以为开设于壳体14的边缘的缺口,如此便于容置槽141的成型以及尺寸精度的控制。例如,在图4及图5所示的实施例中,壳体14可以包括外表面145、内表面147以及侧壁面149,外表面145和内表面147相互背离,其中,外表面145位于壳体14背离中框12的一侧,内表面147位于壳体14朝向中框12的一侧,侧壁面149连接于外表面145和内表面147之间。容置槽141贯穿外表面145和内表面147,并延伸至侧壁面149,以形成开设于壳体14的缺口结构,以利于容置槽141的成形,当容置槽141用于容纳按键54的结构时,可以使按键54的结构更靠近壳体14的边缘,有利于为第一结构体10内部腾出更多的空间安装其他的电子部件,从而有利于提高空间利用率。在其他的实施例中,容置槽141也可以开设于壳体14的其他部位,例如,容置槽141可以为开设于壳体14靠近边缘处的通孔,但不必延伸至侧壁面149。
进一步地,壳体14的外表面145可以为曲面,以提供较为顺畅的外观面,使用户具有良好的触感,当按压件541安装于容置槽141内时,按压件541的外表面与壳体14的外表面145可以共面设置,以使锁合结构100具有较为一致的外观结构表现。在本实施例中,“共面”可以理解为平面共面或/及曲面共面,也即,按压件541的表面与壳体14的外表面145在连接处是大致平齐的,二者大致呈连续的弧面,二者在连接处大致平滑过渡。
在一些实施例中,第一结构体10可以设有限位部143,限位部143用于与按压件541配合连接,以限定按压件541在容置槽141中的位置,从而使按压件541能够可靠地安装于壳体14上,可见,在本实施例中,容置槽141与限位部143共同形成了用于安装按压件541的第一安装部101的主要结构。当然,在其他的实施例中,第一安装部101的结构不局限于此,其还可以包括其他的卡扣、容纳结构,只要能够实现按压件541的定位安装即可,本说明书不再一一列举。
请参阅图6,第二安装部103为设置于中框12的安装结构,例如,第二安装部103可以包括中框12上的孔、槽或者卡扣结构等,例如,中框12可以设有与卡接件543配合的定位结构,该定位结构即可视为第二安装部103。举例说明,中框12可以设有第一定位部105,相应地,卡接件543可以设有第二定位部5438(图8),第二定位部5438与第一定位部相配合以将卡接件543定位于中框12,此时,第一定位部105则可视为构成第二安装部103的结构,也可任务,第二安装部103包括了第一定位部105。第一定位部105的结构不受限制,其可以为开设于中框12上的孔、槽结构,或者卡扣结构等。具体在图6所示的实施例中,第二安装部103或者第一定位部105可以包括中框12上设置的容纳空间121,容纳空间121用于容纳卡接件543。容纳空间121与容置槽141大致相对设置,以共同容纳连接组件50,并允许容置槽141中的按压件541能够抵推容纳空间121中的卡接件543运动。
在本实施例中,第二安装部103或者第一定位部105还可以包括中框12上设置的卡持孔127,卡 持孔127与容纳空间121连通,其用于与卡接件543的第二定位部5438相卡持配合,以将卡接件543定位在容纳空间121中。例如,第二定位部5438可以为卡接件543上所设置的卡持凸起5439(图8),卡持凸起5439可移动地容置于卡持孔127中,以实现卡接件543的定位安装。卡持凸起5439沿第一方向X的尺寸小于卡持孔127沿第一方向X的尺寸,使卡持凸起5439能够在卡持孔127中沿第一方向X运动,从而保证卡接件543在第一方向X上的运动自由度。进一步地,卡持凸起5439沿第三方向Z的尺寸略小于或者等于卡持孔127沿第三方向Z的尺寸,以限制卡接件543在第三方向Z上的运动自由度,从而避免卡接件543在第三方向Z上运动,以保证实现卡接件543在容纳空间121中的可靠定位。可见,在本实施例中,卡持孔127可以作为导向结构与容纳空间121共同形成了用于安装卡接件543的第二安装部103的主要结构(也即第一定位部105)。
在其他的一些实施例中,卡持孔127可以由导槽结构代替,卡持凸起5439则可活动地设置于该导槽结构中,并能够在第一方向X上相对第一结构体10运动;在又一些实施例中,卡接件543和第二安装部103之间的定位配合结构可以包括导轨、导槽的配合结构,例如,第一定位部105、第二定位部5438中的一个包括导轨或导槽等导向结构,该导向结构沿预定方向,如第一方向X设置,第一定位部105、第二定位部5438中的另一个包括滑动部件(如滑块、凸起等结构),该滑动部件可滑动地连接于该导轨(或导槽)等导向结构,并能够在该导向结构沿第一方向X滑动,如此,能够方便地将卡接件543由第二安装部103定位于第一结构体10。
在另一些实施例中,卡持孔127可以省略,例如,第二安装部103或者第一定位部105可以仅包括设置于中框12的容纳空间121,该容纳空间121的尺寸与卡接件543的尺寸相适应,以将卡接件543定位安装在第二安装部103。具体而言,中框可以包括设在容纳空间121内的内壁1210,内壁1210界定了容纳空间121的范围,使容纳空间121存在相对可参考的尺寸参数,卡接件543则设置在内壁1210所环绕的范围内。进一步地,卡持凸起5439沿第一方向X的尺寸小于容纳空间121沿第一方向X的尺寸,使卡持凸起5439能够在容纳空间121中沿第一方向X运动,从而保证卡接件543在第一方向X上的运动自由度。进一步地,卡持凸起5439沿第三方向Z的尺寸略小于或者等于容纳空间121沿第三方向Z的尺寸,以限制卡接件543在第三方向Z上的运动自由度,从而避免卡接件543在第三方向Z上运动,以保证实现卡接件543在容纳空间121中的可靠定位。
当然,在其他的实施例中,第二安装部103的结构不局限于此,其还可以包括其他的卡扣、容纳结构,只要能够实现卡接件543的定位安装即可,本说明书不再一一列举。在一些实施例中,第二安装部103也可以视为中框12的至少一部分结构,例如,第二安装部102可以理解为中框12上设有容纳空间121的部分,可以理解为中框12上设有卡持孔127的部分或开设有其他用于定位的孔、槽结构的部分,也可以理解为中框12上开设有容纳空间121和卡持孔127的部分,还可以理解为中框12的全部结构。在此基础上,卡接件543能够方便地由第二安装部103(如中框12的实体结构、或者孔、槽结构等)定位至第一结构体10上,不依赖于卡接件543与按压件541之间的连接或固定结构来定位,从而实现卡接件543、按压件541分别定位安装,打断了按键50原有的尺寸链,使按键50安装于第一结构体10时的尺寸链相对更短,降低了锁合结构100生产装配的难度。
当卡接件543安装于第二安装部103时,其至少部分结构与安装于第一安装部101的按压件541相对设置。当按压件541受到外力按压时,其沿着第一方向X朝向卡接件543运动,并能够抵推卡接件543沿着第一方向X运动,在按压件541和卡接件543二者的分别定位安装的基础上,二者能够通过相对设置的位置关系实现运动的传递,这就避免了按压件541和卡接件543之间通过其他扣合结构固定连接所带来的尺寸链过长导致的安装配合较难的问题。如此,将按压件541定位安装于壳体14,而将卡接件543定位安装于中框12,使按压件541以及卡接件543不必严格地组装于一起再安装至第一结构体10,因此按压件541以及卡接件543二者之间不存在装配尺寸链关系,使按键54安装于第一结构体10时的尺寸链相对更短,降低了锁合结构100生产装配的难度。
在安装于第一结构体10后,按压件541与卡接件543相对设置的结构并不局限于二者直接相对间隔设置,二者之间可以设置居中的元件或组件,以提高连接组件50整体结构的稳定性。例如,在一些实施例中,请参阅图7,按键54还可以包括缓冲件545,缓冲件545设置于按压件541和卡接件543之间。缓冲件545可以由弹性材料制成,其可以用于减缓按压件541和卡接件543之间的冲击力,从而避免按压件541和卡接件543之间的配装磨损,并提高按键54的按压手感。进一步地,缓冲件545可以被配置为向按压件541施加支持力,以令按压件541和限位部143可靠配合,从而使按压件541与容置槽141的侧壁之间的间隙尺寸满足预设范围,避免按键54在多次、反复使用后发生松动而相对容置槽141发生偏离的现象,能够保证按键54周向的安装缝隙始终满足预定的尺寸要求,该安装缝隙均匀、可控,使锁合结构100的结构质感较高,有利于保证用户拥有良好的使用体验。
请参阅图7,在本实施例中,在第二结构体30限位于第一结构体10时,在按压件541相对第一结构体10的移动方向上,按压件541与卡接件543之间存在间隔547,至少部分缓冲件545设于间隔547 内以用于填充间隔547。在本申请实施的方式中,一物限位于另一物可以简单地理解为,一物可以限制另一物的移动范围,在正常情况下两物难以脱离。例如,在本实施方式中,第二结构体30限位于第一结构体10意即第一结构体10可以限制第二结构体30的移动范围,使得第二结构体30在正常使用情况下不会轻易从第一结构体10脱离。在第二结构体30限位于第一结构体10的情况下,第二结构体30与第一结构体10之间可以因间隙的存在而能够相对第一结构体10在小范围内移动或转动。在一些实施方式中,第二结构体30也可以与第一结构体10实现紧配合以使第二结构体30近乎固定连接于第一结构体10。
在一些实施例中,按压件541相对第一结构体10具有第一位置和第二位置。卡接件543用于在第一位置时与第二结构体30相配合,以使第二结构体30限位于第一结构体10,且卡接件543挤压缓冲件545,缓冲件545抵持于按压件541,以使按压件541限位于安装槽133。如图11所示,按压件541在被按压时相对第一结构体10移动至第二位置,且在按压件541从第一位置切换至第二位置的过程中,按压件541挤压缓冲件545并驱使卡接件543移动。在第二位置时,卡接件543与第二结构体30解除配合,以使第二结构体30能够从第一结构体10拆离。
进一步地,在本实施例中,缓冲件545可以为由弹性材料制成的块状体,以提高其结构稳定性,并增强对按压件541的支持力,例如,缓冲件545可以由橡胶、塑胶等材料制成。缓冲件545还可以为具有弹性形变能力的弹性结构,例如,其可以为由非弹性材料制成的弹性结构,具体地,缓冲件545可以为弹性套筒、弹片、弹簧等弹性结构,以向按压件541施加支持力,使按压部5411与容置槽141的侧壁之间的间隙尺寸满足要求,并可靠传递按压件541和卡接件543之间的运动。本申请实施例中,由于在按压件541和卡接件543之间设置能够产生弹性形变的缓冲件545,可以利用缓冲件545的弹性形变适应于按压件51和卡接件543之间的间隙尺寸变化,使锁合结构100的各部件之间的组装间隙更容易满足公差要求。
例如,在未采用缓冲件545的结构中,若按压件541和卡接件543直接抵接,当按压件541和卡接件543中的任一个存在制造公差时,将二者直接彼此抵接成为组件的尺寸链较长、产生的安装误差必然相对较大,当需将二者组装后安装至第一结构体10上时,较大的安装误差有可能与第一结构体10的其他部位结构产生干涉而无法安装,此时,为了降低此现象发生的概率,对于按压件541和卡接件543的制造精度要求将非常高,生产成本也将提高。在本实施例中,按压件51和卡接件543相对间隔且二者之间设置安装间隙,将缓冲件545设置在按压件51和卡接件543之间的安装间隙中,当按压件541和卡接件543中的任一个存在制造公差时,为限制按压件541、卡接件543以及缓冲件545三者组装后的安装误差,缓冲件545可以被压缩使得该安装间隙减小,此时,将该三者组装后安装至第一结构体10时,安装间隙能够由于缓冲件545的弹性形变(压缩)而改变,使三者的组装整体结构和尺寸适应于第一结构体10的尺寸要求,相当于按压件541、卡接件543的制造公差、安装误差被缓冲件545吸收,大大降低了按压件541和卡接件543的制造精度要求,也降低了组装难度和生产成本。
在本申请实施例中,缓冲件545设置于按压件541和卡接件543之间时,其与按压件541、卡接件543之间的连接结构不受限制。在一些实施例中,缓冲件545可以直接设置于按压件541和卡接件543之间,而不必与按压件541或卡接件543形成物理连接,例如,缓冲件545可以利用中框12的结构实现定位,或者缓冲件545被按压件541和卡接件543夹持。在另一些实施例中,缓冲件545可以与按压件541和卡接件543中的其中一者形成物理连接关系,并与按压件541和卡接件543中的另一者相对间隔或相叠置或相贴合。在又一些实施例中,缓冲件545的两侧可以分别连接于按压件541和卡接件543,如,缓冲件545可以通过卡槽、凸起相互嵌套配合的结构分别连接于按压件541和卡接件543,有利于使得缓冲件545、按压件541以及卡接件543三者大致形成一个模块整体,其结构稳定可靠,并便于拆装。
请参阅图7及图8,在本实施例中,缓冲件545连接于卡接件543。进一步地,缓冲件545设有第一连接部5451,第一连接部5451用于与卡接件543可拆卸地连接,以使缓冲件545的结构较为稳定可靠。在其他的实施例中,第一连接部5451可以用于与按压件541连接。
在本实施例中,为了适应于缓冲件545的连接结构,卡接件543可以包括抵接部5431和卡接部5433。抵接部5431用于连接缓冲件545,卡接部5433连接于抵接部5431并用于与卡锁部34相卡合。
抵接部5431设置于按压件541的一侧,其可以与按压件541相对间隔设置,或者二者之间可以仅为表面接触连接,也可以通过居中组件(如缓冲件545)与按压件541接触。例如,在本实施例中,卡接件543和按压件541之间设置有缓冲件545,抵接部5431与缓冲件545相抵接、缓冲件545与按压件541的端部相抵接。卡接部5433设置于抵接部5431的端部,并与第一结构体10相对间隔设置。卡接部5433和第一结构体10之间形成卡接空间5434,该卡接空间5434用于容纳第二结构体30的卡锁部34,彼时,卡锁部34可活动地设置于卡接空间5434内。
进一步,请参阅图9,在本实施方式中,锁合结构100可以包括可拆卸地连接于第一结构体10的挡板16,挡板16设于第二安装部103并遮挡至少部分卡接件543,挡板16开设有用于装入卡锁部34的穿孔161。 挡板16的横截面可以呈跑道形,其上可以开设连接孔及对应于卡锁部34的穿孔161。连接孔可用于装入螺纹紧固件,以实现挡板16与第一结构体10的可拆卸连接。进一步,挡板16还可以对卡接件543在第二安装部103的移动起到限位作用,以使卡接件543在第二安装部103能够平稳地移动。
在卡锁部34安装于第一结构体10后,本体32位于挡板16的背离卡接件543的一侧,穿孔161能够限制卡锁部34在相对于第一结构体10的移动方向上运动。在卡锁部34为两个的实施方式中,穿孔161的数量与卡锁部34的数量相同,穿孔161的形状与卡锁部34的形状匹配。例如,在一些实施方式中,卡锁部34呈圆柱状,穿孔161呈圆孔状且圆孔的直径与卡锁部34的直径大致相等。在另一些实施方式中,卡锁部34可以呈棱柱状例如三棱柱状或者四棱柱状或者五棱柱等其他形状,穿孔161横截面的形状与卡锁部34的形状匹配,以利于穿孔161与卡锁部34形成紧密的配合,进而利于可穿戴设备10的防水防尘设计。穿孔161的设置,还可以对卡锁部34的运动进行导向和限位,防止卡锁部34在第二安装部103的运动产生偏斜,并使卡锁部34能够顺利地推动卡接件543在第二安装部103运动。
为了保证抵接部5431、缓冲件545、按压件541之间抵接的可靠性,连接组件50还可以包括复位件58,复位件58设置于抵接部5431远离缓冲件545的一侧,并位于抵接部5431和第一结构体10(如中框12、壳体14等)之间,以对抵接部5431施加朝向缓冲件545的支持力。在第二结构体30从第一结构10体脱离的过程中,按压件541能够被按压,进而复位件58被压缩以向卡接件543施加朝向缓冲件545、按压件541的支持力。当施加于按压部5411的外力撤销时,复位件58可以向卡接件543和按压件541的整体提供运动的回复力。在一些实施例中,在常态下,复位件58还对卡接件543施加朝向缓冲件545、按压件541的支持力(例如在常态下,复位件58位于卡接件543和第一结构体10之间并处于压缩状态),以保证卡接件53和卡锁部34之间连接的可靠性。
进一步地,抵接部5431的背向第二定位部5438的一侧设有收容槽5432,在本体1431的背向按压件541的一端,收容槽5432延伸至抵接部5431的端面,复位件58的一端容置于收容槽5432。在本实施方式中,复位件58设置为两个,且与收容槽5432一一对应。第二定位部5438的设置可以对卡接件543在容置槽141的移动起到导向和限位作用。在另一些实施方式中,收容槽5432的位置可以和第二定位部5438的位置对应,即抵接部5431在收容槽5432所在处厚度较厚,这种设置既能利用第二定位部5438与容置槽141的配合实现卡接件543的导向和限位,又能提升收容槽5432处的抵接部5431的结构强度,以提升复位件58与抵接部5431的连接结构的强度。
请参阅图10,在其他实施方式中,复位件58可以包括第一磁铁581和第二磁铁583,第一磁铁581连接于卡接件543,第二磁铁583连接于第一结构体10。在卡锁部34装入第二安装部103的过程中,第一磁铁581和第二磁铁583相互靠近并产生磁斥力。
进一步地,请再次参阅图8,为了增强缓冲件545和卡接件543之间的连接,在一些实施例中,卡接件543还可以包括第二连接部5435,第二连接部5435连接于抵接部5431,并用于与缓冲件545的第一连接部5451配合连接,使缓冲件454相对于卡接件543固定。第一连接部5451和第二连接部5435中的一个为凹槽,另一个为与凹槽配合的凸起,通过凹槽和凸起的结构相嵌套,可以通过较为简单的结构实现第二连接部5435与第一连接部5451之间的配合连接。具体地,第一连接部5451可以为设置于缓冲件545上的凹槽,第二连接部5435可以为设置于抵接部5431的凸起。在其他实施例中,第一连接部5451、第二连接部5435可以为其他的连接结构,如可以为卡勾结构、粘贴结构等等。本实施例所提供的第一连接部5451和第二连接部5435之间的连接结构应用于缓冲件545与卡接件543之间,应当理解的是,在其他的实施例中,第一连接部5451和第二连接部5435之间的连接结构可以应用于缓冲件545与按压件541之间,如,第二连接部5435可以设置于按压件541的一端,并与缓冲件545的第一连接部5451配合连接,本说明书不再一一赘述。
在图8所示的实施例中,按压件541可活动地穿设于容置槽141,以使按键54能够沿第一方向X在容置槽141中运动。按压件541包括按压部5411以及连接于按压部5411的凸伸部5413,凸伸部5413可以与按压部5411一体成型。在本实施例中,按压部5411大致呈块状,其可活动地容置于容置槽141中。按压部5411的表面与壳体14的外表面145大致共面,以使锁合结构100具有较为一致的外观结构表现。凸伸部5413设置于按压部5411背离壳体14的一侧,并相对于按压部5411凸出,朝向卡接件543延伸。凸伸部5413大致呈柱状,以连接卡接件543。
在一些实施例中,弹性连接件52与按压部5411及凸伸部5413中的至少一者固定连接。弹性连接件52设于键槽1011内,且在第一位置时弹性连接件52抵持于壳体14,以使按压部5411外露于壳体14的端面与键槽1011处的壳体14的表面平齐。
在一些实施方式中,弹性连接件52、按压部5411及凸伸部5413一体成型。例如,弹性连接件52可以为从按压部5411的边缘延伸而出的凸起。按压件541在第一位置时,弹性连接件52抵持于键槽1011的槽壁,从而使得按压件541与壳体14的位置相对固定,进而使得按压部5411的外露于壳体14端面与键槽1011处的壳体14的端面平齐。可以理解的是,只需使得键槽1011的加工精度及弹性连接件52的加工精度满足 装配精度的要求,即可使得按压部5411的外露于壳体14的端面与键槽1011处的壳体14的端面形成高精度的配合,以满足平齐的要求。例如,按压件541的弹性连接件52可以以壳体14作为装配基准,以缩短装配的尺寸链,减小加工、装配的公差的影响,以使得按压部5411的外露于壳体14的端面与键槽1011处的壳体14的端面平齐的目的易于实现。
在本实施例中,凸伸部5413设置于按压部5411和卡接件543之间,当有外力按压按压部5411时,按压部5411带动凸伸部5413推动卡接件543沿第一方向X运动,以释放卡接件543和卡锁部34之间的卡合结构。在第二结构体30安装至第一结构体10的过程中,卡锁部34可以沿第二方向Y运动以插入第一结构体10,卡接件543被卡锁部34驱使以相对第一结构体10移动,并在复位件58的支持下复位以与卡锁部34卡合,其中,第二方向Y大致与第一方向X可以相交(如第二方向Y大致与第一方向X垂直);在第二结构体30从第一结构10体脱离的过程中,按压件541能够被按压,以使卡接件543能够与卡锁部34相脱离。
为了有效定位按压部5411,可以设置与限位部143相互配合的定位连接件以使按压部5411能够被定位在第一结构体10的壳体14。例如,请参阅图11,在一些实施例中,连接组件50还可以包括弹性连接件52,弹性连接件52连接于按压部5411,并用于与壳体14的限位部143配合以定位按压件541,弹性连接件52设于第一安装部101内,在第一位置时,弹性连接件52限制按压件541的运动范围。进一步地,请参阅图11图12,弹性连接件52设有定位部5201,定位部5201被配置为与限位部143相配合,使按压件541被配置为能够在容置槽141中限位运动(例如沿第一方向X运动)。在按压件141安装至容置槽141的过程中,弹性连接件52能够被容置槽141的侧壁挤压形变,直至定位部5401容置于限位部143中与限位部143配合,以限定按压件541相对于第一结构体10的位置。
本申请实施例对弹性连接件52的形变形式不作限定,例如,弹性连接件52本身可以发生弹性形变(如本身为弹性结构体或者由弹性材料制成),使定位部5201能够相对按压件541变形或/及伸缩从而方便拆装;又如,弹性连接件52可以包括弹性结构体,通过弹性结构体的形变,定位部5201能够相对按压件541变形或/及伸缩从而方便拆装。在本实施例中,弹性连接件52本身为可伸缩结构,其通过可伸缩结构的伸缩形变,使定位部5201能够相对按压件541伸缩从而方便拆装。
在图11图12所示的实施例中,弹性连接件52包括固定部521,固定部521固定地连接于按压件541的按压部5411(例如,按压部5411可以设有用于容纳固定部521的容纳槽),定位部5201可活动地连接于固定部521,并能够相对按压部5411凸出。在按压件541安装至容置槽141的过程中,定位部5201能够被容置槽141的侧壁挤压至相对固定部521缩回,并能够相对固定部521伸出以与限位部143配合,以限定按压件541相对于第一结构体10的位置。进一步地,定位部5201可活动地容置于壳体14的限位部143中,从而使按键54能够沿第一方向X在容置槽141中运动。在本实施例中,定位部5201为凸起结构,而与其配合的限位部143为凹槽结构,二者通过相嵌的形式实现卡持配合。应当理解的是,本申请中的“卡持配合”、“卡合”或“卡接”,应当理解为相配合的双方可以具备相应的容纳、嵌入结构(如上述彼此嵌套的凹槽和凸起结构)或者夹持结构等,并不意味着相配合的双方需要借助外力彼此卡住。
请参阅图12图13,在本实施例中,固定部521大致呈杆状,其开设有容置腔5211,容置腔5211用于容纳定位部5201。容置腔5211可以沿固定部521的长度方向开设,并贯穿固定部521的相对两端。定位部5201可以为两个,两个定位部5201可以分别设置于容置腔5211的相对两端,并均能够经由容置腔5211凸伸出固定部521之外,以分别相对于按压部5411的两端凸出,从而与两个限位部143配合。进一步地,弹性连接件52还可以包括弹性部523,弹性部523设置于两个定位部5201之间,以向定位部5201提供使定位部5201凸伸出固定部521的支持力。进一步地,固定部521在容置腔5211内可以设有限位凸台5213,限位凸台5213可以设置于容置腔5211的端部位置,定位部5201上可以设有限位凸缘5215,限位凸缘5215容纳于容置腔5211内并与限位凸台5213相对设置,当限位凸缘5215和限位凸台5213相抵接时,定位部5201相对固定部521凸出到达极限位置,以避免定位部5201从固定部521中脱落。
由于第一结构体10为用于安装连接组件50的主要支撑结构,下文将根据本申请的其中一些实施例来介绍第一结构体10的其他细节结构。
请参阅图13图14,中框12包括主体部120,主体部120形成第一结构体10的主要支撑结构,其可以大致为矩形框状、圆形框状、椭圆形框状或者其他规则几何形状或者不规则形状等,本申请对此不作限制。主体部120包括承载面123以及与承载面123相接的侧面125,承载面123用于承载壳体14。在本实施例中,承载面123的朝向与侧面125的朝向不同,进一步地,承载面123大致垂直于第一方向X,侧面125大致垂直于第二方向Y。承载面123和侧面125可以为平面或曲面,也可以为带有凹槽或/及凸起结构的平面或曲面等,本申请对此不作限制。中框12的容纳空间121形成于主体部120的内部并贯穿承载面123和侧面125。其中,容纳空间121贯穿承载面123形成第一开口1211,第一开口1211用于安装、容纳按键54。容纳空间121贯穿侧面125形成第二开口1213,第二开口1213用于安装第二结构体30的卡锁部34,如,在第二结构体30安装至第一结构体10的过程中,卡锁部34可以穿设于 第二开口1213,以与容纳空间121内的卡接件543相卡合。在本实施例中,第一开口1211的朝向大致与第一方向X一致,第二开口1213的朝向大致与第二方向Y一致,如和第一开口1211的朝向大致相互垂直。
请参阅图14图15及14,在一些实施例中,中框12还可以包括边框部129,边框部129设置于主体部120的侧边,其用于包覆主体部120,并与壳体14共同形成锁合结构100的外观表面。在本实施例中,边框部129可以盖设于主体部120的侧面125,并部分地覆盖第二开口1213,以避免第二开口1213过多地暴露于外界环境,有利于保证锁合结构100具有较佳的防尘性能,也能够减少锁合结构100的外观面开孔的数量或/及面积,以提高其外观结构的一致性。进一步地,边框部129可以设有与第二开口1213连通的通孔1291,该通孔1291的尺寸小于第二开口1213的尺寸,其用于允许第二结构体30的卡锁部34穿设。进一步地,当边框部129盖设于中框12的侧面125时,边框部129的至少部分与壳体14的侧壁面149相对设置,使边框部129能够覆盖容置槽141的缺口结构的开口部分,从而限定按键54在第二方向Y上的运动自由度,避免按键54从该开口中脱出,其中,第二方向Y可以与第一方向X相交(如,二者大致垂直)。
进一步地,在本实施例中,边框部129设置于侧面125的一侧时,其可以相对承载面123凸出,以便于与壳体14的侧壁面149相对设置,从而使得壳体14盖设于承载面123时,凸出的边框部129与侧壁面149相对设置的结构能够实现中框12与壳体14的紧密结合,进而保证第一结构体10具有较高的防水防尘密封效果。在一些实施例中,边框部129的材质可以与主体部120的材质不同,例如,二者可以采用双色成型或嵌件成型等工艺制成并连接,边框部129可以基本覆盖侧面125,也可以仅连接于侧面125的一侧或者仅连接于承载面123,并相对于承载面123凸伸,本说明书对此不作限制。
当壳体14盖设于承载面123时,容置槽141与中框12的第一开口1211大致相对设置。。
请参阅图14图15,限位部143邻近容置槽141设置,其用于限定弹性连接件52的位置,从而限定按压件54在容置槽141的相对位置。在图14图15所示的实施例中,限位部143大致为凹槽结构,其用于容纳弹性连接件52的定位部5201。限位部143的具体设置位置不受限制,在图14图15所示的实施例中,限位部143可以设置于容置槽141的侧壁,并延伸至壳体14朝向中框12的表面(如内表面147)。限位部143的数量可以为两个,两个限位部143可以分别设置于容置槽141的相对两端。在其他的实施例中,限位部143可以设置于其他位置,例如,限位部143可以设置于容置槽141的内壁而不必延伸至壳体14的内表面147,此时限位部143可以为容置槽141的内壁上的孔或槽等结构;又如,限位部143可以设置于壳体14的内表面147,而不必与容置槽141连通,此时限位部143可以为设置于内表面147上的孔或槽等结构,相应地,弹性连接件54也设置于按压件541的端部,如弹性连接件52的定位部5201可以相对按压部5411凸伸并弯折,以能够与限位部143配合连接。
在一些实施例中,请再次参阅图8及图11,壳体14还可以包括凸出部148,凸出部148设置于容置槽141内,并相对于容置槽141的侧壁凸出。凸出部148可以设置于容置槽141靠近中框14的一侧,并与按键54的至少部分相对设置,以限定按键54在容置槽141中沿第一方向的运动的位置。具体而言,若限位部143为凹槽,该凹槽具有与中框12相对的底壁1431(见图12),当按压件541设置于容置槽141中,且定位部5201容置于限位部143的凹槽中时,定位部5201与底壁1431相对设置,该凹槽的底壁1431用于限定定位部5201及按压件541在第一方向X上的位置;凸出部148与按压件541的至少部分相对设置,以限定按压件541在背离第一方向X上的位置,也就是说,凸出部148和凹槽的底壁1431限制了按压件541在第一方向X上的运动行程,有利于保证锁合结构100具有较强的结构稳定性。
请再次参阅图15,第二结构体30可拆卸地连接于第一结构体10。第二结构体30的本体32可以设置于其所需连接的零部件,也可以作为该零部件的组成部分。例如,当锁合结构100应用于智能手表时,本体32可以设置于该智能手表的表带,也可以作为该表带的一部分结构。
请参阅图16,第二结构体30的卡锁部34设置于本体32的端部,并相对于本体32的表面凸出。当第二结构体30连接于第一结构体10时,卡锁部34设置于本体32朝向第一结构体10的一侧。卡锁部34大致呈卡勾状,其用于与卡接件543相配合。具体在图16所示的实施例中,卡锁部34设有卡锁槽341,卡锁槽341用于容置卡接件543的部分结构,以实现卡锁部34和卡接件543之间的卡持配合。进一步地,卡锁部34可以大致呈设置于本体32表面的柱状结构,卡锁槽341设置于该柱状结构的周壁。卡锁部34背离本体32的一侧还可以设有第一导引斜面343,第一导引斜面343与卡锁槽341位于该柱状结构的同一侧。第一导引斜面343的倾斜方向与该柱状结构的轴线方向相交,其用于导正卡锁部34插入第二开口1213时的运动方向并引导卡锁部34与卡接件543相卡合。
在本申请实施例中,卡锁部34的数量不受限制,其可以为一个或多个,相应地,卡接件543的卡接部5433也可以为一个或多个并与卡锁部34一一对应,本申请对此不进行限制。在图14图15及14所示的实施例中,卡锁部34为两个,两个卡锁部34间隔地设置于本体32上,用以增强第二结构体30 和卡接件543之间卡接结构的稳定性。相应地,卡接件543的卡接部5433也可以为两个,两个卡接部5433分别设置于抵接部5431的相对两端,并分别与两个卡锁部34一一对应设置。当卡锁部54穿设于卡接空间5434时,卡接部5433至少部分地容置于卡锁槽341内,从而使第二结构体30得以连接至第一结构体10。当需要拆卸第二结构体30时,沿第一方向X施加外力于按压件541,使按压件541抵推卡接部5433沿着第一方向X运动至脱离卡锁槽341,再将第二结构体30抽出使其脱离第一结构体10即可,此时按键54的按压件541和卡接件543在复位件58的作用下回复原位。当需要将第一结构体30连接于第一结构体10时,沿着第二方向Y将卡锁部34自第二开口1213插入卡接空间5434,卡锁部34的第一导引斜面343抵推卡接部5433并逐渐深入卡接空间5434,卡接部5433在卡锁部34的推动下沿着第一方向X运动使复位件58产生压缩形变,当卡接部5433运动至卡锁槽341对正卡接部5433时,在复位件58的弹性回复力作用下,卡接部5433被推动至卡锁槽341中,此时,卡接部5433和卡锁部34完成卡接。在上述的拆卸、安装过程中,第二结构体30拆装操作简单便捷。进一步地,在一些实施例中,卡接部5433也可以设置有与卡锁部34对应的第二导引斜面5437,第二导引斜面5437可以设置于卡接部5433朝向第二结构体30的本体32的一侧,例如,在第二结构体03安装至第一结构体10的过程中,卡锁部34抵推卡接部543的导引斜面以驱使卡接件543相对第二安装部103运动。第二导引斜面5437用于与第一导引斜面343相配合,以提高卡锁部34插入卡锁空间5434的运动的流畅性。在一些实施例中,卡接部5433和卡锁部34中的至少一个设有导引斜面。
在本实施方式中,卡锁部34的第一导引斜面343与卡锁槽341之间设有第一过渡面345,第一过渡面345可以为平面或者弧面。在第二结构体30的卡锁部34装入第二安装部103的过程中,第一导引斜面343驱使卡接件543移动至卡接件543的位置后,卡锁部34可以继续向锁合结构100内部移动一段距离。在此过程中,第一导引斜面343从第二导引斜面5437脱离,卡接件543的卡接部5433抵接于第一过渡面345并相对第一过渡面345移动,直至卡接部5433从第一过渡面345脱离并进入卡锁部34的卡锁槽341,且卡接件543可以被驱使沿即靠近按压件541的方向移动,从而利用卡锁槽341对卡接部5433形成限位作用,以防止第二结构体30脱出第一结构体10。例如,在本实施方式中,卡锁槽341的背向第一导引斜面343的表面为平面且与卡锁部34的运动方向大致垂直。例如,卡锁槽341的背向第一导引斜面343或者说卡锁槽341的朝向本体32的表面可以呈平面状且与卡锁部34的运动方向的夹角为85度-90度,从而可以实现卡接部5433对卡锁部34的有效限位,以防止第二结构体30受拉力时轻易脱出第一结构体10。
当然,卡接部5433的背向第二导引斜面5437的表面也可以为平面且与卡锁部34的运动方向大致垂直。例如,卡接部5433的背向第二导引斜面5437的表面也可以呈平面状且与卡锁部34的运动方向的夹角为85度-90度,从而可以实现卡接部5433对卡锁部34的有效限位,以防止第二结构体30受拉力时轻易脱出第一结构体10。
卡接部5433的朝向按压件541的一侧可以设置第二过渡面5436,第二过渡面5436可以为平面或者弧面。在第二结构体30装入第一结构体10的过程中,第一导引斜面343从第二导引斜面5437脱离后,卡锁部34可以抵接于第二过渡面5436并沿着第二过渡面5436继续向电子设备500内部移动,直至卡锁部34从第二过渡面5436脱离。例如,在卡锁部34设有第一过渡面345的实施方式中,第一过渡面345从第二过渡面5436脱离后,卡接件543可以进入卡锁槽341,以实现卡锁部34与卡接部5433的配合,即将第二结构体30限位于第一结构体10。
第一过渡面345的设置,可以增强卡锁槽341边缘的卡锁部34的结构强度。第二过渡面5436的设置,可以增强第二导引斜面5437的边缘的卡接部5433的强度。当然,可以理解的是,第一过渡面345、第二过渡面5436不是必须存在的。例如,在第一过渡面345和第二过渡面5436均缺省的情况下,第一导引斜面343从第二导引斜面5437脱离后,卡接件543即可进入卡锁部34的卡锁槽341,并与卡锁部34形成限位配合。换言之,第一过渡面345和第二过渡面5436中的至少一者可以缺省。
可以理解的是,在上述实施方式中,第一位置、第二位置可以视为按压件541在运动过程中的极限位置,第三位置和第四位置可以视为卡接件543在运动过程中的极限位置。这些位置的引入仅是为了作为运动参考,以清楚地说明在第二结构体30安装于第一结构体10的过程中,按压件541、第一配合部220、卡接件543与第一结构体10的相对位置,这些位置可以不是唯一确定的。例如,在考虑工程误差的情况下,这些位置在第一结构体10上应该处于一个合适的区域内,不应理解为对技术方案的严格限定。
例如,在第二结构体30未安装于电子设备500,或者第二结构体30已安装于电子设备500并可正常使用的情况下,可以认为按压件541位于第一位置。正常情况下,按压件541不能再沿第二方向向电子设备500外移动。又如,第一结构体10可以设置限位结构,在第二位置时按压件541与限位结构抵接。正常情况下,按压件541不能继续沿第二方向向电子设备500内移动,从而防止按压件541被过度按压而造成结构损坏。第一结构体10可以设置相应的限位结构,在第一位置、第二位置时按压件541 与限位结构抵接,即可实现确定上述第一位置和第二位置。
当然,第一位置和第二位置还可以采用其他方式来确定。例如,在上述实施方式中,按压件541在第一位置时,按压件541的外露于壳体14的端面与键槽1011处的壳体14的端面平齐,这种外观特性即可用于确定按压件541的第一位置。又如,按压件541被按压以使第二结构体30能够从第一结构体10拆卸时,即可认为按压件541位于第二位置。
同理,第三位置和第四位置也可以多种方式来确定。例如,在第二结构体30未安装于电子设备500,或者第二结构体30已安装于电子设备500并可正常使用的情况下,可以认为卡接件543位于第三位置。正常情况下,按压件541不能再沿第二方向向靠近按压件541的方向移动。在第二结构体30装入第一结构体10的过程中,卡接件543在第二方向的另一个运动的极限位置即是第四位置。假想卡接件543在第四位置相对第一结构体10的位置固定,则第二结构体30的第一配合部220能够顺畅地进出凹槽1031。又如,在前述实施方式中,用卡接件543的凸起1437和限位槽133c的配合也可确定第三位置和第四位置。
本申请实施例提供的锁合结构中,按键被配置为连接于第一结构体和第二结构体之间,按键设置于第一结构体的同时,其卡接件能够用于与第二结构体的卡锁部相卡合,利用卡接件和卡锁部可活动卡合的结构,使第二结构体能够方便地连接于第一结构体,也能够方便地脱离第一结构体。例如,在第二结构体安装至第一结构体的过程中,卡接件被卡锁部驱使以相对第一结构体移动,并复位以与卡锁部卡合,此时能够实现第二结构体和第一结构体的便捷安装;又如,在第二结构体从第一结构体脱离的过程中,按压件能够被按压,以驱使卡接件能够运动从而与卡锁部脱离,此时能够实现第二结构体和第一结构体之间的便捷拆卸。当锁合结构应用于智能穿戴设备中时,设备主体和佩戴件之间通过上述的按键结构,能够实现操作便捷的可拆卸连接。
进一步地,在上述的锁合结构中,按键的按压件以及卡接件分别由第一安装部和第二安装部定位于第一结构体,按压件和卡接件的至少部分结构相对设置,按压件能够被按压并驱使卡接件运动,因此二者能够通过相对设置的位置关系实现运动的传递,又能够实现按压件和卡接件二者的分别定位安装,这就避免了按压件和卡接件之间通过其他扣合结构固定连接所带来的尺寸链过长导致的安装配合问题。如此,将按键设计为大致分体的按压件和卡接件,打断了按键原有的尺寸链,而按压件以及卡接件二者之间不存在装配尺寸链关系,并能够分别设置于第一结构体的第一安装部和第二安装部,使按键安装于第一结构体时的尺寸链相对更短,降低了锁合结构生产装配的难度。当锁合结构应用于智能穿戴设备或/及智能手表中时,有利于提高按键安装精度、保证智能穿戴设备或智能手表的零部件安装良率和外观结构的一致性。
基于上述的锁合结构,本申请实施例还提供一种智能穿戴设备。本申请实施例提供的智能穿戴设备是一种直接穿在身上或是整合到用户的衣服或配件的一种便携式设备,智能穿戴设备可以包括但不限于为手表、智能手环、智能腕带、智能眼镜、指环或者头盔等等。为了方便解释,以下以智能手表为例进行详细说明。而本申请实施例提供的表带可以根据智能穿戴设备佩戴的位置不同而做出适应性调整。
请参阅图17,本申请实施方式提供一种具有锁合结构100的电子设备500,电子设备500包括第一结构体10及设于第一结构体10的电路板(未图示)、电池(未图示)等电子元器件。第一结构体10可以包括中框12及连接于中框12的壳体14,中框12与壳体14围合形成收容空间131,收容空间131用于收纳电子设备500的电路板、电池等电子元器件。在智能穿戴设备300(如图18所示)佩戴至用户的手腕后,壳体14的至少部分表面贴合用户的手腕。中框12可以由塑胶、橡胶、硅胶、木材、陶瓷或玻璃等非金属材质制成,中框12也可以由不锈钢、铝合金或镁合金等金属材质制成。中框12还可以为金属注塑件,即利用金属材质保证中框12的结构刚性,金属体的内表面则通过注塑形成凸起、凹槽、螺纹孔等用于装配定位的结构。壳体14可以为玻璃或者陶瓷或者塑胶材质,壳体14的材质可以和中框12相同,也可以不同。在一些实施方式中,中框12可以和壳体14一体成型。
请参阅图18,本申请实施方式提供一种具有锁合结构100的智能穿戴设备300,智能穿戴设备300可以为但不限于为手表、智能手环、智能腕带、智能眼镜、指环或者头盔等智能穿戴设备。本实施方式的智能穿戴设备300以智能手表为例进行说明,锁合结构100则以智能手表的表带和表体之间的连接结构为例进行说明。智能穿戴设备300包括设备主体200、锁合结构100以及佩戴件,佩戴件400通过锁合结构100连接于设备主体200的两侧,以供用户佩戴。
本实施例中,设备主体200为表体,表体可以为能够实现智能手表功能的主体,锁合结构100的第一结构体10设置于设备主体200。设备主体200可以包括显示屏201,显示屏201连接于壳体14并共同围成腔体,该腔体内部可以设置有芯片、传感器、电池等部件。
传感器的种类包括但不限于能够检测体温的温度传感器、能够检测心率的振动感应传感器或者光电传感器、或用于检测血压的压力传感器等,以使传感器能够检测佩戴者的身体的各种健康指标,例如心率、体温或血压等信息。传感器也可以包括图像传感器、可见光传感器、红外光传感器等。芯片可以包 括一个或多个处理单元,例如:其可以包括应用处理器(Application processor,AP),调制解调处理器,存储器,数字信号处理器(Digital signal processor,DSP),基带处理器,和/或神经网络处理器(Neural-network processing unit,NPU)等。显示屏201可以为液晶显示屏(Liquid Crystal Display,LCD)或有机发光显示屏(Organic Light-Emitting Diode,OLED)等,显示屏201可以用于显示时间、健康指标、信息等多种信息。当然,显示屏201可以是触摸屏,或者显示屏201上可以设置有按键等操作部件。电池能够为显示屏201、控制器和处理器等部件提供电能,电池的种类包括但不限于锂电池、干电池、蓄电池等。
在本申请实施例中,设备主体200还可以包括无线通信模块,无线通信模块可以提供应用在智能手表上的包括无线局域网(Wireless local area networks,WLAN),蓝牙(Bluetooth,BT),调频(Frequency modulation,FM),红外技术(Infrared,IR)等无线通信的解决方案。无线通信模块可以实现智能穿戴设备300与外部设备,例如手机、电脑等终端的通信连接。
佩戴件400用于形成供用处佩戴的结构,锁合结构100的第二结构体30设置于佩戴件400。在本实施例中,佩戴件400包括第一穿戴件410、第二穿戴件430以及锁紧件450,第一穿戴件410和第二穿戴件430分别通过锁合结构100连接于设备主体200的相对两侧,锁紧件450用于将第一穿戴件410和第二穿戴件430连接于一起,以使第一穿戴件410和第二穿戴件430、设备主体200共同形成供用户佩戴的大致环状结构。需要说明的是,在本申请说明书中,当一个组件被认为是“设置于”另一个组件,它可以是连接于或者直接设置在另一个组件上,或者可能同时存在居中组件(也即二者间接连接);当一个组件被认为是“连接”另一个组件,它可以是直接连接到另一个组件或者可能同时存在居中组件,也即,两个组件之间可以是间接连接。
在本申请实施方式中,
佩戴件400包括两条(图中示出了其中一条),设备主体200的相对的两端分别设有安装槽133,两条佩戴件400各有一端连接设备主体200,两条佩戴件400的背离设备主体200的一端可以相扣合形成收容空间,以通过佩戴件400将设备主体200佩戴至用户的手腕。在另一些实施方式中,佩戴件400可以为一整段式的结构,佩戴件400的一端连接于设备主体200的一端,设备主体200的另一端可以设有供佩戴件400穿过的扣环,佩戴件400的自由端可以穿入并绕过扣环再固定至佩戴件400的其他位置以形成收容空间,且收容空间的尺寸易于调整,以方便用户佩戴。
本申请实施例提供的智能穿戴设备及其锁合结构中,按键被配置为连接于第一结构体和第二结构体之间,按键设置于第一结构体的同时,其卡接件能够用于与第二结构体的卡锁部相卡合,利用卡接件和卡锁部可活动卡合的结构,使第二结构体能够方便地连接于第一结构体,也能够方便地脱离第一结构体。例如,在第二结构体安装至第一结构体的过程中,卡接件被卡锁部驱使以相对第一结构体移动,并复位以与卡锁部卡合,此时能够实现第二结构体和第一结构体的便捷安装;又如,在第二结构体从第一结构体脱离的过程中,按压件能够被按压,以驱使卡接件能够运动从而与卡锁部脱离,此时能够实现第二结构体和第一结构体之间的便捷拆卸。当锁合结构应用于智能穿戴设备中时,设备主体和佩戴件之间通过上述的按键结构,能够实现操作便捷的可拆卸连接。
基于上述的锁合结构100以及智能穿戴设备300,本申请实施例还提供一种壳体组件(图中未标出),该壳体组件包括上述的壳体14、中框12以及按键54。其中,壳体14设有第一安装部101,中框12设有第二安装部103,按键54连接于中框12,并被配置为连接中框12与外部结构。按键54包括按压件541和卡接件543。按压件541可活动地设置于第一安装部2101,并被配置为在外力按压下沿第一方向相对第一安装部101运动。卡接件543可活动地设置于第二安装部103,并由第二安装部103定位于中框12,且被配置为与外部结构(如卡锁部34)相卡合。在外部结构安装至中框12的过程中,外部结构沿第二方向运动以推动卡接件543沿第一方向相对中框移动,卡接件能够复位以与外部结构卡合;在外部结构从中框12脱离的过程中,按压件541能够被按压,以驱使卡接件543能够沿第一方向运动从而能够与外部结构脱离,其中,第一方向与第二方向不同。如此,中框12、壳体14、按压件541和卡接件543能够形成一个模块化的组件,当将其应用时,可以直接将该模块化的组件与实际应用的产品的其他组件连接于一起,即可实现锁合结构200的组装,因此能够提高组件的组装效率。在其他的实施例中,该壳体组件还可以包括上述任一个实施例中所介绍的特征和结构,本说明书不再赘述。
基于上述的锁合结构100以及智能穿戴设备300,本申请实施例还提供一种电子设备,电子设备可以为但不限于为手表、智能手环、智能腕带、智能眼镜、指环或者头盔等智能设备或智能便携通信设备。电子设备能够用于安装绑带,该绑带可具备上述实施例所提供的第二结构体的任一种或多种特征的组合,本实施例不作一一赘述。电子设备包括外壳、按键以及卡接件。其中,外壳可具备上述实施例所提供的第一结构体的任一种或多种特征的组合,本实施例不作一一赘述。外壳开设有相连通的第一安装部和第二安装部。按键包括按压件和弹性连接件,弹性连接件连接于按压件,按压件设于第一安装部。卡接件设于第二安装部,卡接件与外壳的装配定位、按压件与外壳的装配定位相互独立。卡接件用于与绑带相 配合,以使绑带限位于外壳;在绑带限位于外壳时,弹性连接件抵持于外壳,以使按压件限位于外壳;按压件在被按压时相对外壳移动,且按压件驱使卡接件移动,以使卡接件与绑带解除配合,并使绑带能够从外壳拆离。
在本说明书中,描述的具体特征或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。最后应说明的是:以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不驱使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。

Claims (39)

  1. 一种锁合结构,其特征在于,包括:
    第一结构体,设有第一安装部以及第二安装部;
    第二结构体,包括本体以及相对于所述本体凸出的卡锁部;以及
    按压件,可活动地设置于所述第一安装部,以被配置为在外力按压下相对所述第一安装部运动;
    卡接件,可活动地设置于所述第二安装部,并由所述第二安装部定位于所述第一结构体,所述卡接件被配置为与所述卡锁部相卡合;所述卡接件的至少部分结构与所述按压件相对设置;
    在所述第二结构体安装至所述第一结构体的过程中,所述卡接件被所述卡锁部驱使以相对所述第二安装部移动,并复位以与所述卡锁部卡合;在所述第二结构体从所述第一结构体脱离的过程中,所述按压件能够被按压,以驱使所述卡接件能够运动从而与所述卡锁部脱离。
  2. 如权利要求1所述的锁合结构,其特征在于,所述按压件的一端与所述卡接件的至少部分结构相互叠置。
  3. 如权利要求1所述的锁合结构,其特征在于,所述按压件的一端与所述卡接件的至少部分结构相对间隔设置。
  4. 如权利要求3所述的锁合结构,其特征在于,所述锁合结构还包括缓冲件,所述缓冲件设置于所述按压件与所述卡接件之间,并被配置为在所述按压件被按压时推动所述卡接件运动。
  5. 如权利要求4所述的锁合结构,其特征在于,所述缓冲件的一侧连接于所述按压件、所述卡接件的其中之一者,所述缓冲件的另一侧与所述按压件、所述卡接件的其中之另一者间隔设置。
  6. 如权利要求4所述的锁合结构,其特征在于,所述缓冲件的一侧连接于所述按压件、所述卡接件的其中之一者,所述缓冲件的另一侧连接于所述按压件、所述卡接件的其中之另一者。
  7. 如权利要求4所述的锁合结构,其特征在于,所述缓冲件设有第一连接部,所述卡接件设有第二连接部,所述第一连接部和所述第二连接部配合连接使所述缓冲件相对于所述卡接件固定;所述第一连接部和所述第二连接部中的一个为凹槽,另一个为与所述凹槽配合的凸起。
  8. 如权利要求1所述的锁合结构,其特征在于,所述第一结构体还设有限位部,所述锁合结构还包括连接于所述按压件的弹性连接件,所述弹性连接件设有定位部,所述定位部被配置为与所述限位部配合;在所述按压件安装至所述安装部的过程中,所述弹性连接件能够被所述第一结构体挤压形变,直至所述定位部与所述限位部配合,以限定所述按压件相对于所述第一结构体的位置。
  9. 如权利要求8所述的锁合结构,其特征在于,所述第一安装部包括设置于所述第一结构体的容置槽,所述按压件可活动地容置于所述容置槽,所述定位部与所述限位部可活动地配合以使所述按压件能够沿第一方向在所述容置槽中运动;在所述第二结构体安装至所述第一结构体的过程中,所述卡锁部沿第二方向运动以驱使所述卡接件沿所述第一方向相对所述第一结构体移动;所述第一方向与所述第二方向垂直。
  10. 如权利要求9所述的锁合结构,其特征在于,所述限位部为凹槽,所述凹槽具有底壁,所述定位部容置于所述凹槽中并与所述底壁相对设置;所述第一结构体设有位于所述容置槽内的凸出部,所述凸出部与所述按压件的至少部分相对设置,所述底壁和所述凸出部用于限制所述按压件在所述容置槽中的运动。
  11. 如权利要求8所述的锁合结构,其特征在于,所述弹性连接件包括固定部,所述固定部连接于所述按压件,所述定位部可活动地连接于所述固定部,并能够相对于所述按压件凸出;在所述按压件安装至所述第一安装部的过程中,所述定位部能够被所述第一结构体挤压至相对所述固定部缩回,并能够相对所述固定部伸出以与所述限位部配合,以限定所述按压件相对于所述第一结构体的位置。
  12. 如权利要求11所述的锁合结构,其特征在于,所述固定部设有容置腔,所述定位部为两个,两个所述定位部分别设置于所述容置腔的相对两端,并均能够经由所述容置腔凸伸出所述固定部之外,以分别相对于所述按压件的两端凸出;所述弹性连接件还包括弹性部,所述弹性部设置于两个所述定位部之间。
  13. 如权利要求1所述的锁合结构,其特征在于,所述锁合结构还包括复位件,所述复位件设置于所述卡接件与所述第一结构体之间;在所述第二结构体从所述第一结构体脱离的过程中,所述按压件能够被按压以驱使所述卡接件运动,进而所述复位件被压缩以向所述卡接件施加朝向所述按压件的支持力。
  14. 如权利要求13所述的锁合结构,其特征在于,所述按压件包括按压部以及凸伸部,所述按压部设置于所述第一安装部;所述凸伸部连接于所述按压部朝向所述卡接件的一侧,并相对于所述按压部凸出;所述卡接件包括抵接部和连接于所述抵接部的卡接部;所述抵接部与所述凸伸部相对间隔或相抵接,所述卡接部与所述按压部相间隔,所述第二结构体安装于所述第一结构体时,所述卡锁部设置于所述卡接部与所述按压部之间,并与所述卡接部相卡合。
  15. 如权利要求14所述的锁合结构,其特征在于,所述按压部、所述凸伸部以及所述弹性连接件 一体成型。
  16. 如权利要求14所述的锁合结构,其特征在于,所述卡锁部设有卡锁槽,在所述第二结构体安装至所述第一结构体的过程中,所述卡接部被所述卡锁部驱使以相对所述第一结构体移动,并复位以至少部分地容置于所述卡锁槽中从而与所述卡锁部卡合;在所述第二结构体从所述第一结构体脱离的过程中,所述按压件能够被按压,以驱使所述卡接部能够从所述卡锁槽中脱离。
  17. 如权利要求13所述的锁合结构,其特征在于,所述复位件包括第一磁铁以及第二磁铁,所述第一磁铁连接于所述卡接件,所述第二磁铁连接于所述第一结构体;在所述卡锁部安装于所述第一结构体的过程中,所述第一磁铁与所述第二磁铁相互靠近并产生磁斥力。
  18. 如权利要求14所述的锁合结构,其特征在于,所述卡锁部背离所述本体的一侧设有导引斜面;或/及
    所述卡接部的一侧设有导引斜面,在所述第二结构体安装至所述第一结构体的过程中,所述卡锁部抵推所述卡接部的导引斜面以驱使所述卡接件相对所述第二安装部运动。
  19. 如权利要求1~18中任一项所述的锁合结构,其特征在于,所述第一结构体包括中框以及壳体,所述壳体连接于所述中框,所述第一安装部设置于所述壳体,所述第二安装部设置于所述中框。
  20. 如权利要求19所述的锁合结构,其特征在于,所述壳体包括相背离的外表面和内表面,以及连接于所述外表面和所述内表面之间的侧壁面;所述第一安装部包括设置于所述壳体的容置槽,所述容置槽贯穿所述内表面及所述外表面,并延伸至所述侧壁面。
  21. 如权利要求20所述的锁合结构,其特征在于,所述按压件可活动地设置于所述容置槽中,所述按压件的表面与所述壳体的外表面共面。
  22. 如权利要求20所述的锁合结构,其特征在于,所述第二安装部包括设置于所述中框的容纳空间,所述中框包括承载面以及与所述承载面相接的侧面,所述容纳空间贯穿所述承载面形成第一开口,并贯穿所述侧面形成第二开口;所述壳体盖设于所述承载面;所述中框还包括边框部,所述边框部盖设于所述侧面,并部分地覆盖所述第二开口,所述卡锁部穿设于所述第二开口与所述卡接件卡合。
  23. 如权利要求19所述的锁合结构,其特征在于,所述中框设有第一定位部,所述卡接件设有第二定位部,所述第一定位部与所述第二定位部配合连接,使所述卡接件定位于所述中框,并具有沿预定方向的运动自由度。
  24. 如权利要求23所述的锁合结构,其特征在于,所述第一定位部和所述第二定位部的其中一者包括导向结构,所述导向结构沿所述预定方向设置,所述第一定位部和所述第二定位部的其中之另一者包括滑动部件,所述滑动部件可滑动地连接于所述导向结构。
  25. 如权利要求24所述的锁合结构,其特征在于,所述抵接部背向所述第二定位部的一侧设有收容槽;在所述抵接部的背向所述按压件的一端,所述收容槽延伸至所述抵接部的端面,所述弹性连接件的一端容置于所述收容槽。
  26. 如权利要求20所述的锁合结构,其特征在于,所述第二安装部包括设置于所述中框的卡持孔,所述卡接件设有卡持凸起,所述卡持凸起可移动地容置于所述卡持孔中,所述卡持凸起沿预定方向的尺寸小于所述卡持孔沿所述预定方向的尺寸。
  27. 如权利要求1所述的锁合结构,其特征在于,所述锁合结构还包括缓冲件,所述缓冲件设置于所述按压件与所述卡接件之间。
  28. 如权利要求1所述的锁合结构,其特征在于,所述锁合结构还包括可拆卸地连接于所述第一结构体的挡板,所述挡板设于所述第二安装部并遮挡至少部分所述卡接件,所述挡板开设有用于安装所述卡锁部的穿孔。
  29. 一种锁合结构,其特征在于,包括:
    第一结构体,设有第一安装部以及第二安装部;
    第二结构体,与所述第一结构体配合连接;
    按压件,设于所述第一安装部;
    卡接件,设于所述第二安装部;
    所述按压件在被按压时相对所述第一结构体从第一位置移动至第二位置,在第一位置时,在所述按压件相对所述第一结构体的移动方向上,所述按压件与所述卡接件之间存在间隔;所述卡接件用于在第一位置时与所述第二结构体相配合,以使所述第二结构体限位于所述第一结构体;
    所述按压件在被按压时相对所述第一结构体移动至第二位置,在所述第一结构体从第一位置切换至第二位置的过程中,所述按压件驱使所述卡接件移动;
    在第二位置时,所述卡接件与所述第二结构体解除配合,以使所述第二结构体能够从所述第一结构体拆离。
  30. 如权利要求29所述的锁合结构,其特征在于,所述锁合结构包括缓冲件,在所述按压件相对 所述第一结构体的移动方向上,至少部分所述缓冲件设于所述间隔内;在第一位置时,所述按压件与所述第一结构体的位置相对固定;在所述按压件从第一位置切换至第二位置的过程中,所述按压件挤压所述缓冲件并驱使所述卡接件移动。
  31. 根据权利要求30所述的锁合结构,其特征在于,所述锁合结构还包括弹性连接件,所述弹性连接件连接于所述按压件,所述弹性连接件设于所述第一安装部内;在第一位置时,所述弹性连接件限制所述按压件的运动范围。
  32. 根据权利要求31所述的锁合结构,其特征在于,所述按压件包括按压部和连接于所述按压部的凸伸部,所述按压部及所述凸伸部中的至少一者与所述弹性连接件固定连接;在第一位置时,所述缓冲件抵持于所述凸伸部以使所述按压部的端面与所述第一安装部处的表面平齐。
  33. 根据权利要求32所述的锁合结构,其特征在于,所述弹性连接件包括固定部、弹性部及定位部,所述固定部与所述按压部及所述凸伸部中的至少一者固定连接;所述固定部套设所述弹性部及所述定位部,所述定位部可伸缩地设于所述固定部的一端并与所述弹性部的一端抵接。
  34. 根据权利要求30-33任一项所述的锁合结构,其特征在于,所述第二结构体包括本体和连接于所述本体的卡锁部,所述卡锁部设于所述本体的一端;所述卡接件包括抵接部和连接于所述抵接部的卡接部,至少部分所述缓冲件设于所述抵接部和所述按压件之间;在第一位置时,所述卡接部用于与所述卡锁部相配合,以使所述第二结构体限位于所述第一结构体,所述抵接部挤压所述缓冲件,以使所述按压件限位于所述第一结构体。
  35. 根据权利要求34所述的锁合结构,其特征在于,所述卡锁部设有第一导引斜面,所述卡接部设有第二导引斜面,所述卡接件相对所述第一结构体具有第三位置和第四位置,在所述按压件相对所述第一结构体的移动方向上,第四位置相比第三位置更远离第一位置的所述按压件;在第三位置时,所述卡接件挤压所述缓冲件以使所述按压件位于第一位置;在第二位置时,所述按压件挤压所述缓冲件以使所述卡接件位于第四位置;在所述卡锁部安装于所述第二安装部的过程中,所述第一导引斜面抵持于所述第二导引斜面并相对所述第二导引斜面移动,以驱使所述卡接件沿所述按压件相对所述第一结构体的移动方向从第三位置移动至第四位置。
  36. 根据权利要求35所述的锁合结构,其特征在于,所述锁合结构包括复位件,所述复位件连接于所述第一结构体和所述卡接件中的至少一者,所述复位件用于驱使所述卡接件从第四位置移动至第三位置。
  37. 一种智能穿戴设备,其特征在于,包括设备主体、佩戴件以及权利要求1~36任一项所述的锁合结构,所述第一结构体设置于所述设备主体,所述第二结构体设置于所述佩戴件。
  38. 一种壳体组件,其特征在于,包括:
    壳体,设有第一安装部;
    中框,设有第二安装部;以及
    按键,连接于所述中框,并被配置为连接所述中框与外部结构;所述按键包括:
    按压件,可活动地设置于所述第一安装部,并被配置为在外力按压下沿第一方向相对所述第一安装部运动;以及
    卡接件,可活动地设置于所述第二安装部,并由所述第二安装部定位于所述中框,所述卡接件被配置为与外部结构相卡合;所述卡接件的至少部分结构与所述按压件相对设置;
    在所述外部结构安装至所述中框的过程中,所述外部结构沿第二方向运动以推动所述卡接件沿所述第一方向相对所述中框移动,所述卡接件能够复位以与所述外部结构卡合;在所述外部结构从所述中框脱离的过程中,所述按压件能够被按压,以驱使所述卡接件能够沿所述第一方向运动与所述外部结构脱离,其中,所述第一方向与所述第二方向不同。
  39. 一种电子设备,其特征在于,所述电子设备能够用于安装绑带,所述电子设备包括:
    外壳,开设有相连通的第一安装部和第二安装部;
    按键,包括按压件和弹性连接件,所述弹性连接件连接于所述按压件,所述按压件设于所述第一安装部;以及
    卡接件,设于所述第二安装部,所述卡接件与所述外壳的装配定位、所述按压件与所述外壳的装配定位相互独立;
    所述卡接件用于与所述绑带相配合,以使所述绑带限位于所述外壳;在所述绑带限位于所述外壳时,所述弹性连接件抵持于所述外壳,以使所述按压件限位于所述外壳;所述按压件在被按压时相对所述外壳移动,且所述按压件驱使所述卡接件移动,以使所述卡接件与所述绑带解除配合,并使所述绑带能够从所述外壳拆离。
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CN214205515U (zh) * 2021-01-19 2021-09-14 Oppo广东移动通信有限公司 锁合结构、壳体组件以及智能穿戴设备

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CN115469527A (zh) * 2022-09-08 2022-12-13 广东小天才科技有限公司 智能主机及智能穿戴设备
CN115469527B (zh) * 2022-09-08 2024-03-19 广东小天才科技有限公司 智能主机及智能穿戴设备

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