CN111965966B - Wearable device - Google Patents

Wearable device Download PDF

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Publication number
CN111965966B
CN111965966B CN202010897159.3A CN202010897159A CN111965966B CN 111965966 B CN111965966 B CN 111965966B CN 202010897159 A CN202010897159 A CN 202010897159A CN 111965966 B CN111965966 B CN 111965966B
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groove
clamping
component
guide
guide groove
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CN202010897159.3A
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CN111965966A (en
Inventor
陈远强
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Vivo Mobile Communication Co Ltd
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Vivo Mobile Communication Co Ltd
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Priority to CN202010897159.3A priority Critical patent/CN111965966B/en
Publication of CN111965966A publication Critical patent/CN111965966A/en
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    • 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
    • G04B37/0008Cases for pocket watches and wrist watches
    • 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

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  • General Physics & Mathematics (AREA)
  • Connection Of Plates (AREA)

Abstract

The application discloses wearing equipment includes: the first component is provided with a through groove, and a convex part is arranged in the through groove; the second assembly comprises a clamping end, and the clamping end is provided with a guide groove and a clamping groove which are adjacently arranged; the guide groove is connected with the clamping groove through a transition part; when the clamping end is positioned in the through groove, the bulge part can move from the guide groove to the clamping groove through the transition part; under the condition that the protruding part is inserted into the guide groove, the protruding part is in clearance fit connection with the guide groove; when the bulge part is inserted into the clamping groove, the bulge part is fixedly connected with the clamping groove in a clamping way; when the first component is the equipment main body, the second component is a wearing component; when the first assembly is the wearing piece, the second assembly is the equipment main body. The utility model provides a joint end has the guide way and the joint groove of adjacent setting, assembles the bellying during the assembly in the guide way, to leading to groove side direction application of force, and the bellying removes to the joint groove by the guide way, and this wearing equipment simple structure has simplified the dismantlement process.

Description

Wearable device
Technical Field
The application relates to the technical field of electronic equipment, especially, relate to a wearing equipment.
Background
Wearing equipment, like the wrist-watch, the watchband that generally all can form a complete set heterogeneous and different colours sells, lets the user have more selections on the watchband, also convenience of customers changes different watchbands according to different scenes, so watchband detachable convenience is more and more important. Among the prior art, the watchband can be dismantled to the tradition is through living the ear assembly to the main part, dismantles at every turn and all needs special instrument will give birth to the ear and demolish, need during the assembly again will give birth to the ear install with the wrist-watch body between the junction, the process of trading the watchband at every turn all is very loaded down with trivial details.
Disclosure of Invention
The embodiment of the application provides wearing equipment to solve the current loaded down with trivial details problem of equipment dismantlement change wearing structure process.
In a first aspect, an embodiment of the present application provides a wearable device, including:
the first component is provided with a through groove, and a protruding part is arranged in the through groove;
the second assembly comprises a clamping end, a guide groove and a clamping groove are formed in the clamping end and are arranged adjacently, and the guide groove is connected with the clamping groove through a transition part;
under the condition that the clamping end is positioned in the through groove, the protruding part can move from the guide groove to the clamping groove through the transition part; under the condition that the protruding part is inserted into the guide groove, the protruding part is in clearance fit connection with the guide groove; under the condition that the protruding part is inserted into the clamping groove, the protruding part is fixedly connected with the clamping groove in a clamping mode;
in the case where the first component is an apparatus main body, the second component is a wearing piece; in a case where the first component is a wearing member, the second component is an apparatus main body.
Like this, the above-mentioned scheme of this application sets up the guide way and the joint groove of adjacent setting at the joint end of second subassembly, sets up transition portion between guide way and the joint groove, when assembling first subassembly and second subassembly, will the bellying of first subassembly assembles in the guide way, through to lead to the direction application of force of groove side, the bellying by the guide way removes extremely the joint groove realizes that the joint is fixed. This application wearing equipment's assembly structure is simple, has simplified the dismantlement process, need not to set up the disassembly switch, makes the outward appearance more succinct.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required to be used in the description of the embodiments of the present application will be briefly described below, and it is obvious that the drawings in the description below are only some embodiments of the present application, and it is obvious for those skilled in the art that other drawings may be obtained according to these drawings without inventive labor.
FIG. 1 shows one of the schematic views of a wearable device of an embodiment of the present application;
fig. 2 shows a second schematic view of the wearable device according to the embodiment of the present application;
FIG. 3 is a diagram illustrating a structure of a card end according to an embodiment of the present application;
FIG. 4 shows one of the structural schematics of a second component of an embodiment of the present application;
FIG. 5 shows one of the schematic structural diagrams of a first component of an embodiment of the present application;
FIG. 6 illustrates a second exemplary embodiment of a first component;
FIG. 7 illustrates a second exemplary embodiment of a second component of the present application;
FIG. 8 is a schematic structural view of an insert according to an embodiment of the present application;
FIG. 9 is a schematic sectional view of a guide groove according to an embodiment of the present application;
FIG. 10 shows a cross-sectional view of a snap groove of an embodiment of the present application;
FIG. 11 shows an exploded view of a wearable device according to an embodiment of the present application;
FIG. 12 shows one of the mounting diagrams of the watch of the embodiments of the application;
fig. 13 shows a second schematic view of the mounting of the wristwatch according to the embodiment of the present application.
Description of reference numerals: 1. the first component, 2, the second component, 11, the through groove, 21, the clamping end, 111, the bulge, 211, the guide groove, 212, the clamping groove, 213, the base body, 214, the embedding body, 3 and the transition part.
Detailed Description
Exemplary embodiments of the present application will be described in more detail below with reference to the accompanying drawings. While exemplary embodiments of the present application are shown in the drawings, it should be understood that the present application may be embodied in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.
As shown in fig. 1, an embodiment of the present application provides a wearable device, including:
the first component 1 is provided with a through groove 11, and a convex part 111 is arranged in the through groove 11;
the second assembly 2 comprises a clamping end 21, the clamping end 21 is provided with a guide groove 211 and a clamping groove 212 which are adjacently arranged, and the guide groove 211 is connected with the clamping groove 212 through a transition part 3;
under the condition that the clamping end 21 is located in the through groove 11, the protrusion 111 can move from the guide groove 211 to the clamping groove 212 through the transition part 3; under the condition that the protruding part 111 is inserted into the guide groove 211, the protruding part 111 is in clearance fit connection with the guide groove 211; under the condition that the protruding part 111 is inserted into the clamping groove 212, the protruding part 111 is fixedly clamped with the clamping groove 212;
in the case that the first component 1 is an apparatus body, the second component 2 is a wearing piece; in the case where the first component 1 is a wearing article, the second component 2 is an apparatus main body.
In this embodiment, the first component 1 and the second component 2 are two components for realizing the assembly of the wearable device, such as: a watch structure body and a band. A through groove 11 is formed in the first component 1, and a convex part 111 is arranged on the inner surface of the through groove 11; the second component 2 is provided with a guide slot 211 and a clamping slot 212 at the clamping end 21, the number of the guide slot 211 and the clamping slot 212 can be multiple, and the number of the guide slot 211 and the clamping slot 212 is the same. When the protruding portion 111 is assembled into the guide groove 211, the guide groove 211 plays a guiding role, and the clamping groove 212 is used for being clamped and fixed with the protruding portion 111. A transition part 3 made of flexible material is arranged between the guide groove 211 and the clamping groove 212.
As shown in fig. 2, when the first component 1 and the second component 2 are assembled into a whole, the clamping end 21 is first inserted into the position of the guide groove 211 on the clamping end 21, and then a force is applied along the width direction of the second component 2 (i.e. the side direction of the through groove 11), so that the protrusion 111 is pushed into the clamping groove 212 and is clamped and fixed with the clamping groove 212. Because the guide way 211 with transition portion 3 has between the joint groove 212, in the application of force in-process, transition portion 3 with bellying 111 is in the state of interfering, can provide certain damping force, works as the second subassembly 2 with the back is put in place in the assembly of first subassembly 1, bellying 111 with the joint of joint groove 212, transition portion 3 can prevent bellying 111 is by the side roll-off.
When the first component 1 and the second component 2 are disassembled, the second component 2 needs to be pushed out along the side direction of the through slot 11, so that the boss 111 moves to the guide slot 211 through the transition part 3, and then is pulled out from the guide slot 211.
When the protruding portion 111 is inserted into the guide groove 211, the protruding portion 111 is in clearance fit connection with the guide groove 211, so that the protruding portion 111 can be conveniently moved out of the guide groove 211; when the protruding portion 111 is inserted into the clamping groove 212, the protruding portion 111 is fixedly connected with the clamping groove 212 in a clamping manner, so that the connection reliability between the first component 1 and the second component 2 is ensured, and the protruding portion 111 is prevented from falling off.
The wearable device includes a device main body such as a watch body of a wristwatch and a wearable member such as a band of the wristwatch, the first component 1 may be one of the device main body and the wearable member, and the second component 2 may be the other, for example: the first component 1 is the equipment main body, and the second component 2 is a wearing piece; or, the first component 1 is a wearing piece, and the second component 2 is an equipment main body.
The embodiment of this application sets up the guide way and the joint groove of adjacent setting at the joint end of second subassembly, sets up transition portion between guide way and the joint groove, when assembling first subassembly and second subassembly, will the bellying of first subassembly assembles in the guide way, through to leading to groove side direction application of force, the bellying by the guide way removes extremely the joint groove realizes that the joint is fixed. This application wearing equipment's assembly structure is simple, has simplified the dismantlement process, need not to set up the disassembly switch, makes the outward appearance more succinct.
Optionally, the transition portion 3 is made of a flexible first material. The transition portion 3 is a flexible material that can be deformed by applying force, so as to realize the movement of the protrusion portion 111 from the guide groove 211 to the clamping groove 212. The side direction of the through groove 11 is a position which is not easy to bear force, and the transition part 3 made of flexible material can prevent the protrusion 111 from being pulled out from the clamping groove 212. Alternatively, at the snap-in end 21, the portion except the transition portion 3 may be provided as a second material, and the hardness of the second material is made greater than that of the first material. In this way, the guide slot 211 and the locking slot 212 are both made of a material (such as metal) with a relatively high hardness, and are buckled with the protruding portion 111 in the pulling direction, so that a user does not have the problem that the second component is separated in the using process.
Specifically, the size of the opening of the clamping groove 212 is smaller than the size of the groove bottom of the clamping groove 212; the size of the opening of the guide groove 211 is greater than or equal to the size of the groove bottom of the guide groove 211. For example: when the inner section of the clamping groove 212 is circular, the diameter of the opening of the clamping groove 212 is smaller than the diameter of the bottom of the clamping groove 212; when the inner cross section of the fastening groove 212 is rectangular, the length of the cross section of the opening of the fastening groove 212 is smaller than the length of the cross section of the bottom of the fastening groove 212, or the width of the cross section of the opening of the fastening groove 212 is smaller than the width of the cross section of the bottom of the fastening groove 212. For the joint groove 212, the size of open-ended size is less than the size of tank bottom, makes the bellying 111 assembly gets into behind the joint groove 212, bellying 111 with joint groove 212 joint is difficult for deviating from by the notch. For the guide groove 211, for example: when the inner section of the guide groove 211 is circular, the diameter of the opening of the guide groove 211 is greater than or equal to the diameter of the groove bottom of the guide groove 211; when the inner cross section of the guide groove 211 is rectangular, the length of the cross section of the opening of the clamping groove 212 is greater than or equal to the length of the cross section of the bottom of the clamping groove 212, or the width of the cross section of the opening of the clamping groove 212 is greater than or equal to the width of the cross section of the bottom of the clamping groove 212. The opening size of the guide groove 211 is greater than or equal to the groove bottom size, so that the projection 111 can be easily removed from or entered into the guide groove 211. In this embodiment, the shapes of the locking groove 212, the guide groove 211 and the protrusion 111 are not particularly limited, and may be matched with each other to achieve the above-described functions.
Thus, when the first module 1 and the second module 2 are assembled, the projection 111 can be easily assembled into the guide groove 211 with a gap between the projection 111 and the guide groove 211. After the protruding portion 111 is moved to the clamping groove 212 by the guide groove 211, the opening of the clamping groove 212 is small, so that the protruding portion 111 can be firmly clamped, and the protruding portion 111 is prevented from being disengaged. Optionally, the opening edge of the clamping groove 212 can be provided with an inverted buckle bent towards the opening direction, so that the protruding part 111 is assembled to the clamping groove 212, and then the protruding part 111 can be firmly clamped with the clamping groove 212.
The shape of the protruding part 111 corresponds to that of the clamping groove 212, so that clamping fixation is facilitated. Wherein the size of the cross section of the first end of the protruding part 111 connected with the inner wall of the through slot 11 is smaller than the size of the cross section of the second end of the protruding part 111; the second end is an end of the protruding portion 111 away from the inner wall of the through slot 11. I.e. the size of the top of the protrusion 111 is larger than the size of the bottom of the protrusion 111. Like this, bellying 111 stretches into back in the joint groove 212, with space cooperation chucking in the joint groove 212, the opening size of joint groove 212 is less, bellying 111's first end is located the open-ended position of joint groove 212, the size that bellying 111 is located the second end of inslot is great, is difficult for deviating from by the notch.
The dimensions of the cross section of the first end and the cross section of the second end of the projection 111 are related to the shape of the projection 111, and for example: the convex part 111 is spherical, and the size of the cross section is the diameter or the area; if the protrusion 111 is a rectangular parallelepiped, the cross-sectional dimension is a length or a width.
Alternatively, as shown in fig. 3, the fastening end 21 includes a base 213 made of a first material and an embedded body 214 made of a second material, and the embedded body 214 is embedded in the base 213; the first material has a hardness less than a hardness of the second material.
In this embodiment, the clamping end 21 includes a base 213 and an embedded body 214, wherein the base 213 has a receiving groove, the embedded body 214 is disposed in the receiving groove, and the assembled surfaces of the base 213 and the embedded body 214 together form an end surface of the clamping end 21, as shown in fig. 4, the guide groove 211 and the clamping groove 212 are disposed on the end surface of the clamping end 21. The first material has a hardness less than the hardness of the second material, for example: the base body 213 is made of soft rubber material, the embedding body 214 is made of hard rubber or metal material, and during processing, the hard rubber material is injected into the soft rubber material through injection molding sleeve beer, so that the embedding body 214 is embedded in the base body 213.
The guide groove 211 and the clamping groove 212 are arranged on the embedding body 214, and the transition part 3 is positioned on the base body 213; the transition portion 3 is located between the guide groove 211 and the catching groove 212. The guide way 211 with the joint groove 212 can be the great material of hardness (like metal), the transition portion 3 is the less soft material of hardness (like the flexible glue), like this, is assembling first subassembly 1 with during second subassembly 2, will joint end 21 assemble extremely lead to the inslot 11, at first make bellying 111 stretch into extremely guide way 211 follows again lead to the side direction of groove 11 (promptly the width direction of second subassembly) application of force makes bellying 111 by guide way 211 passes through behind the transition portion 3, remove extremely joint groove 212, with the joint groove 212 joint is fixed, realizes first subassembly 1 with the assembly of second subassembly 2.
Wherein, at bellying 111 by guide way 211 to when joint groove 212 removed, transition portion 3 with bellying 111 mutual extrusion is in the interference state, provides certain damping force first subassembly 1 assembles the back in place, bellying 111 just gets into in the joint groove 212, transition portion 3 can prevent bellying 111 roll-off. Because the guide groove 211 and the clamping groove 212 are positioned on the embedding body 214 with higher hardness and are buckled with the boss 111 in the pulling direction, a user cannot have the problem that the second component and the first component fall off in the using process; the side edges are not easily stressed positions, so that the second component is prevented from falling out of the side edges by means of the transition part 3. When the disassembly is needed, the disassembly can be realized only by the reverse operation of the assembly steps.
Alternatively, the guiding slot 211 and the clipping slot 212 may be partially located on the base 213, and the rest is located on the embedding body 214, that is: as shown in fig. 3 and 4, a first concave portion is disposed on the embedding body 214, a second concave portion is disposed on the base 213, and when the embedding body 214 is embedded in the base 213, the first concave portion and the second concave portion are communicated to form the guide groove 211; the embedded body 214 is provided with a third concave part, the base body 213 is provided with a fourth concave part, and when the embedded body 214 is embedded in the base body 213, the third concave part and the fourth concave part are communicated to form the clamping groove 212; the transition part 3 is arranged on the base body 213.
In this embodiment, the guide groove 211 and the fastening groove 212 are respectively formed by two concave portions, the portion located on the embedding body 214 is made of a material with a relatively high hardness, the portion located on the base 213 is made of a material with a relatively low hardness, when the embedding body 214 is embedded in the base 213, the two concave portions are aligned to form the guide groove 211 and the fastening groove 212, and the transition portion 3 is located between the guide groove 211 and the fastening groove 212. The process of assembling the protruding portion 111 to the engaging groove 212 or separating from the engaging groove 212 in this embodiment is similar to the process of installing the guiding groove 211 and the engaging groove 212 on the embedding body 214, and is not described herein again.
In this embodiment, adopt the different base members of hardness and inlay the mode that establishes the body combination and form the joint end, the great body of establishing of inlaying of hardness can realize wearing the structure and pull the ascending fixed of orientation of second subassembly, and the less base member of hardness can realize the fixed of side assembly orientation.
Optionally, the boss 111 is made of a third material having a hardness greater than the hardness of the first material. Bellying 111 be used for with joint groove 212 joint is fixed, bellying 111 hardness when less easily by roll-off in the joint groove 212, perhaps with joint groove 212 joint is insecure, consequently constitutes the hardness of bellying 111's third material is greater than the hardness of first material, in order to realize bellying 111 with the joint of joint groove 212 is firm.
Alternatively, as shown in fig. 5 and 6, the through slot 11 penetrates through the first end surface and the second end surface of the first component 1, and the position of the protrusion 111 in the through slot 11 corresponds to the position of the clamping slot 212 at the clamping end 21. The through groove 11 forms an opening on the third end surface of the first component 1, the protrusion 111 is located at the opening, and the third end surface is connected with the first end surface and the second end surface of the through groove 11, respectively.
In this embodiment, the entire end surface of the through groove 11 on the first block 1 side is formed to be open, and the boss 111 is provided on the inner wall surface of the through groove 11. In order to ensure the neat appearance of the second component and the first component when the second component and the first component are assembled in place, the position of the protruding part 111 in the through groove 11 corresponds to the position of the clamping groove 212 at the clamping end 21. Like this, in the assembly first subassembly 1 with during the second subassembly 2, can with joint end 21 stretches into lead to the inslot 11, make bellying 111 gets into guide way 211 is following lead to the opening length direction application of force of groove 11, make bellying 111 by guide way 211 removes to joint groove 212, with joint groove 212 lock realizes the assembly. When the clamping part is disassembled, the clamping end 21 can be pushed out to one end of the through groove 11 until the protruding part 111 moves into the guide groove 211 from the clamping groove 212 and then is separated from the guide groove 211, so that the disassembly is realized.
Optionally, the clamping end 21 is provided with at least two guide grooves 211 and at least two clamping grooves 212; the number of the guide grooves 211 and the number of the catching grooves 212 may be set as required. When the two guide grooves 211 and the two clamping grooves 212 are respectively arranged, one of the guide grooves 211 and one of the clamping grooves 212 are located on the first end surface of the clamping end 21; the other guide groove 211 and the other snap-in groove 212 are located on the second end face of the snap-in end 21, that is, the guide groove 211 and the snap-in groove 212 are both disposed on the upper and lower end faces of the snap-in end 21, as shown in fig. 4 and 7, taking the second assembly 2 as a watchband as an example, the guide groove 211 and the snap-in groove 212 are both disposed on both sides of the watchband. At least two protruding parts 111 are arranged in the through groove 11; the number of the protrusions 111 corresponds to the number of the catching grooves 212. When the number of the protruding parts 111 is two, the two protruding parts 111 are respectively located on two opposite surfaces of the inner wall of the through groove 11; in the case where the engaging ends 21 are located in the through grooves 11, the two protruding portions 111 correspond to the two engaging grooves 212 one to one.
In this embodiment, when there are two guide grooves 211 and two clamping grooves 212, the two sets of guide grooves 211 and clamping grooves 212 are respectively located on the upper and lower end surfaces of the clamping end 21. Taking four guide grooves 211 and four clamping grooves 212 as an example, as shown in fig. 1 to 4, two of the guide grooves 211 and two of the clamping grooves 212 are disposed on the upper end surface of the clamping end 21, and the other two guide grooves 211 and clamping grooves 212 are disposed on the lower end surface of the clamping end 21, wherein a blocking portion made of a second material is disposed between two adjacent sets of guide grooves 211 and clamping grooves 212 to prevent the protruding portion 111 corresponding to the first set of guide grooves 211 and clamping grooves 212 from moving into the second set of guide grooves 211 and clamping grooves 212, which results in irregular appearance of the second assembly after the second assembly is assembled with the first assembly.
When the assembly, be located lead to the upper surface of groove 11 inner wall bellying 111 with be located the joint groove 212 joint of the up end of joint end 21 is located lead to the lower surface of groove 11 inner wall bellying 111 with be located the joint groove 212 joint of the lower terminal surface of joint end 21. When the installation is carried out, the clamping end 21 can be positively installed or reversely installed.
As shown in fig. 8, the embedding body 214 is provided with a through hole. The embedded body 214 can be fixed in the base body 213 in a beer-sleeving manner, and the base body 213 penetrates through the through hole of the embedded body 214 during injection molding, so that the base body 213 and the embedded body 214 can be firmly fixed when the whole clamping end 21 comes out of the mold, and the problem that the base body 213 and the embedded body 214 crack is not easy to occur during product use.
Fig. 9 isbase:Sub>A schematic sectional view of the guide groove 211 in fig. 8 inbase:Sub>A-base:Sub>A direction, and fig. 10 isbase:Sub>A schematic sectional view of the catching groove 212 in fig. 8 in B-B direction. As shown in fig. 9 and 10, the locking groove 212 may be provided with an inverted buckle facing the opening direction at the edge of the opening with respect to the guide groove 211, so that after the protrusion 111 is inserted into the locking groove 212, the locking groove 212 can be locked with the protrusion 111 firmly, and the second component cannot be taken out from the length direction; the opening edge of the guide groove 211 is not provided with an inverted buckle, so that the opening of the guide groove 211 is large, the protruding part 111 can easily enter or leave the guide groove 211, and the protruding part 111 can be conveniently moved to the guide groove 211 from the guide groove 211.
Optionally, in a case that the first assembly 1 is the main body of the device, the first assembly 1 is provided with two through slots 11, and the two through slots 11 are respectively disposed at two opposite ends of the first assembly 1. The number of the second assemblies 2 is two, and the two second assemblies are respectively connected with two opposite ends of the first assembly 1. Taking the wearable device as a watch as an example, the first assembly 1 is a main body of the watch, the second assembly 2 is a watchband of the watch, and the through grooves 11 are respectively formed at two ends of the first assembly 1 and are respectively connected with the watchband. In this embodiment, the through groove 11 is formed in the main body of the wristwatch, the protrusion 111 is disposed in the through groove 11, and the guide groove 211 and the engaging groove 212 are disposed on the band of the wristwatch and are engaged with the protrusion 111 to realize assembly and fixation. In this embodiment, only the first unit 1 is taken as an apparatus main body, i.e., a main body of a wristwatch, and the second unit 2 is taken as a wearing article, i.e., a band of the wristwatch. For the wristwatch device, the first component 1 may also be a watchband, and the second component 2 may be a main body, that is, the positions of the guide groove 211, the snapping groove 212, and the protrusion may be interchanged, that is, the snapping end 21 is disposed on the device main body, and the protrusion 111 is disposed on the watchband, and the assembling and disassembling manners are the same as or similar to those of this embodiment, and are not described herein again.
The embodiment of this application sets up the guide way and the joint groove of adjacent setting at the joint end of second subassembly, sets up transition portion between guide way and the joint groove, when assembling first subassembly and second subassembly, will the bellying of first subassembly assembles in the guide way, through the direction application of force to leading to the groove side, the bellying by the guide way removes extremely the joint groove realizes that the joint is fixed. This application wearing equipment's assembly structure is simple, has simplified the dismantlement process, need not to set up the disassembly switch, makes the outward appearance more succinct.
The wearable device provided by the present application is described in detail below by way of specific examples. Specifically, the wearable device includes a device main body and a wearable piece, the device main body is one of the first component 1 and the second component 2, and the wearable piece is the other of the first component 1 and the second component 2. The following describes how to assemble and disassemble the wearable device of the present application, taking the device body as the first component 1 and the wearing piece as the second component 2 as examples.
For convenience of description, a wristwatch will be described as a specific example of the wearable device of the present application, and it will be understood by those skilled in the art that the present invention is applicable to other wearable devices including a main body and a wearing member, in addition to a wristwatch as a wearable device.
As shown in fig. 11, if the wearing structure is a band of the wristwatch, the number of the second assemblies 2 is two, that is, two bands are installed at two ends of the wristwatch main body. Fig. 11 is an exploded view of the wearable device as a wristwatch, and as shown in fig. 11, the wearable device further includes a bottom case 5 connected to the device main body (i.e., the first component 1), and two watchbands (i.e., the two second components 2) are respectively connected to two opposite ends of the device main body.
The snapping end 21 is disposed at one end of the watchband (i.e., the second assembly 2), as shown in fig. 11, the snapping end 21 may include a base 211 and an embedded body 212; the through grooves 11 are respectively formed at two opposite ends of the device main body (i.e., the first component 1), and the through grooves 11 have protrusions 111 therein. As shown in fig. 12 and 13, when assembling a band, the protruding portion 111 of the device body is inserted into the guide groove 211 of the band, and since the guide groove 211 is not inverted and has a large opening, the protruding portion 111 can be directly inserted; protruding portion 111 inserts behind the guide way 211, with the watchband to width direction promotion, then protruding portion 111 makes transition portion 3 warp through the mode of strong pressure, passes through smoothly transition portion 3 gets into joint groove 212, with joint groove 212 joint is fixed. The buckle groove 212 may have a reverse buckle structure, so that the buckle groove 212 has a small opening, and the protrusion 111 can be prevented from being separated from the watchband in the length direction, thereby preventing the watchband from falling off from the main body when the user wears the watchband. When the watchband needs to be detached, the watchband only needs to be pushed to the side by a handle, so that the protruding part 111 enters the guide groove 211 from the clamping groove 212, and then can be separated.
The watchband adopts a mode that a base body with different hardness is combined with an embedding body, the embedding body with higher hardness solves the fixation of the watchband in the pulling direction, and the base body with lower hardness solves the fixation of the side edge assembling direction; the structure is not complex, and the disassembly and assembly process is simplified; the switch key is not needed, and the appearance is more concise; enrich the assembly methods of the watchband and diversify the assembly methods of the watchband.
The embodiments in the present specification are all described in a progressive manner, and each embodiment focuses on differences from other embodiments, and portions that are the same and similar between the embodiments may be referred to each other.
While preferred embodiments of the present application have been described, additional variations and modifications of these embodiments may occur to those skilled in the art once they learn of the basic inventive concepts. Therefore, it is intended that the appended claims be interpreted as including the preferred embodiment and all such alterations and modifications as fall within the true scope of the embodiments of the application.
Finally, it should also be noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "include", "including" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or terminal device including a series of elements includes not only those elements but also other elements not explicitly listed or inherent to such process, method, article, or terminal device. Without further limitation, an element defined by the phrases "comprising one of \ 8230; \8230;" does not exclude the presence of additional like elements in a process, method, article, or terminal device that comprises the element.
While the foregoing is directed to the preferred embodiment of the present application, it will be understood by those skilled in the art that various changes and modifications may be made without departing from the principles of the disclosure and, therefore, the scope of the disclosure is to be defined by the appended claims.

Claims (11)

1. A wearable device, comprising:
the device comprises a first component (1), wherein a through groove (11) is formed in the first component (1), and a protruding part (111) is arranged in the through groove (11);
the second assembly (2) comprises a clamping end (21), the clamping end (21) is provided with a guide groove (211) and a clamping groove (212) which are adjacently arranged, and the guide groove (211) is connected with the clamping groove (212) through a transition part (3);
wherein, under the condition that the clamping end (21) is positioned in the through groove (11), the bulge part (111) can move from the guide groove (211) to the clamping groove (212) through the transition part (3); under the condition that the protruding part (111) is inserted into the guide groove (211), the protruding part (111) is in clearance fit connection with the guide groove (211); under the condition that the protruding part (111) is inserted into the clamping groove (212), the protruding part (111) is fixedly connected with the clamping groove (212) in a clamping manner;
in the case where the first component (1) is an apparatus body, the second component (2) is a wearing piece; under the condition that the first component (1) is a wearing piece, the second component (2) is an equipment main body, the transition portion (3) is made of a flexible first material, the portion, except the transition portion (3), of the clamping end (21) is made of a second material, and the hardness of the first material is smaller than that of the second material.
2. The wearing device as claimed in claim 1, wherein the size of the opening of the clip groove (212) is smaller than the size of the groove bottom of the clip groove (212);
the size of the opening of the guide groove (211) is larger than or equal to the size of the groove bottom of the guide groove (211).
3. Wearing device according to claim 1, wherein the size of the cross section of the first end of the raised portion (111) connected to the inner wall of the through slot (11) is smaller than the size of the cross section of the second end of the raised portion (111);
the second end is the end of the bulge (111) far away from the inner wall of the through groove (11).
4. The wearing apparatus according to claim 1, wherein the clip end (21) includes a base (213) made of a first material and an insertion body (214) made of a second material, the insertion body (214) being inserted in the base (213).
5. Wearing device according to claim 4, wherein the guide groove (211) and the snap groove (212) open on the inlay (214), the transition (3) being located on the base (213);
the transition part (3) is positioned between the guide groove (211) and the clamping groove (212).
6. The wearing device of claim 4, wherein a first recessed portion is provided on the embedded body (214), a second recessed portion is provided on the base body (213), and when the embedded body (214) is embedded in the base body (213), the first recessed portion and the second recessed portion are communicated to form the guide groove (211);
the embedding body (214) is provided with a third sunken part, the base body (213) is provided with a fourth sunken part, and when the embedding body (214) is embedded in the base body (213), the third sunken part is communicated with the fourth sunken part to form the clamping groove (212);
the transition part (3) is arranged on the base body (213).
7. Wearing device according to claim 4, wherein the raised portion (111) is made of a third material having a hardness greater than the hardness of the first material.
8. Wearing apparatus according to claim 1, wherein the through slot (11) forms an opening on a third end face of the first component (1) at which the protrusion (111) is located, the third end face being connected to the first and second end faces of the through slot (11), respectively;
the first end face and the second end face are oppositely arranged.
9. The wearing apparatus according to claim 1, wherein said clip end (21) is provided with at least two said guide grooves (211) and at least two said clip grooves (212);
when the two guide grooves (211) and the two clamping grooves (212) are respectively arranged, one of the guide grooves (211) and one of the clamping grooves (212) are positioned on the first end surface of the clamping end (21); the other guide groove (211) and the other clamping groove (212) are positioned on the second end face of the clamping end (21).
10. Wearing device according to claim 9, wherein at least two protrusions (111) are provided in said through slot (11);
when the number of the protruding parts (111) is two, the two protruding parts (111) are respectively positioned on two opposite surfaces of the inner wall of the through groove (11);
under the condition that the clamping ends (21) are positioned in the through grooves (11), the two protrusions (111) correspond to the two clamping grooves (212) one by one.
11. Wearing device according to claim 1, wherein in the case where said first component (1) is said device body, said first component (1) is provided with two said through slots (11), said two through slots (11) being provided at opposite ends of said first component (1), respectively.
CN202010897159.3A 2020-08-31 2020-08-31 Wearable device Active CN111965966B (en)

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