Woven watchband and wearable device
By inserting the braided belt and embedding part of it in the tail particles, the problem of high tail particles detachment in wearable devices is solved, and a more stable connection between the braided belt and the tail particles is achieved, improving the reliability of the equipment.
Patent Information
- Application Number
- CN202311704803.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-12
- Publication Date
- 2025-06-13
AI Technical Summary
In existing wearable devices, the tail particles and the tails of the braided belt are not firmly connected, resulting in a high detachment rate of tail particles. It is necessary to design a braided belt of reliable quality to prevent the tail particles from falling off.
By woven-connecting the braided tape to the insert and embedding the insert at least partially embedded in the tail particles, the connection strength and stability of the braided tape to the tail particles are improved.
It effectively reduces the risk of tail particles falling off, improves the connection stability between the braided belt and tail particles, and thus improves the reliability and service life of wearable devices.
Smart Images

Figure CN120130737A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of wearable devices, and particularly to a braided watch band and a wearable device. Background Art
[0002] With the development of wearable devices, more and more attention is paid to the aesthetics and practicality of wearable devices. Among them, for a wearable device with a braided band, by providing a tail grain at the end of the braided band, the aesthetics of the braided band can be improved, and the risk of the braided thread at the end of the braided band coming off can be reduced.
[0003] However, in existing wearable devices, the connection between the tail grain and the end of the braided band is not firm, resulting in a relatively high detachment rate of the tail grain. Therefore, it is necessary to design a braided band with reliable quality to prevent the tail grain of the braided band from falling off. Summary of the Invention
[0004] The present application provides a braided watch band and a wearable device. The braided watch band provided by the present application is woven and connected with an insert, and the insert is snap-fitted into the tail grain, which improves the connection stability between the braided band and the tail grain, thereby reducing the risk of the tail grain falling off.
[0005] In a first aspect, the present application provides a braided watch band, including a braided band, an insert, and a tail grain. One end of the braided band is woven and connected with the insert, at least part of the insert is embedded in the tail grain, and the insert is snap-fitted with the tail grain.
[0006] In the present application, weaving and connecting the braided band with the insert can improve the connection stability between the braided band and the insert, and at least part of the insert being embedded in the tail grain can improve the connection strength between the braided band and the tail grain.
[0007] In some possible implementation manners, the insert includes a snap. The tail grain has an inner cavity, at least part of the insert is received in the inner cavity, a bayonet is provided in the inner cavity, and the snap is embedded in the bayonet.
[0008] In this implementation manner, by embedding the snap in the bayonet, the connection stability between the insert and the tail grain can be improved.
[0009] In some possible implementation manners, the snap includes a first part and a second part. The height of the first part of the snap is greater than that of the second part of the snap, and the first part of the snap is closer to the end of the braided watch band than the second part of the snap.
[0010] In some possible implementation manners, the first part of the snap includes an inclined surface. The height of the first end of the inclined surface is lower than that of the second end of the inclined surface, wherein the first end of the inclined surface is farther from the second part of the snap than the second end of the inclined surface.
[0011] In this implementation, since the first part of the buckle may include an inclined surface, the buckle presents a wedge-shaped structure. During the process of inserting the insert into the inner cavity of the tail piece, the opening of the inner cavity of the tail piece can be gradually squeezed and expanded through the inclined surface to reduce the resistance of inserting the insert into the inner cavity of the tail piece, thereby facilitating the insertion of the insert into the inner cavity of the tail piece.
[0012] Among them, the first part of the buckle may include a top surface and an end surface. The top surface of the first part of the buckle is connected to the second end of the inclined surface, and the top surface of the first part of the buckle faces away from the first surface. The end surface of the first part of the buckle is connected to the first end of the inclined surface and the first surface. The first end of the inclined surface may be arc-connected to the end surface of the first part of the buckle, and the second end of the inclined surface may be arc-connected to the top surface of the first part of the buckle.
[0013] In this implementation, since the first end of the inclined surface can be arc-connected to the end surface of the first part of the buckle, and the second end of the inclined surface can be arc-connected to the top surface of the first part of the buckle, the pressure when the first end and the second end of the inclined surface are squeezed against the first inner surface and the second inner surface of the inner cavity can be smaller, which is beneficial to the smoother process of inserting the insert into the inner cavity of the tail piece.
[0014] In some possible implementations, the bayonet includes a first part and a second part. The depth of the first part of the bayonet is greater than the depth of the second part of the bayonet. The first part of the buckle is embedded in the first part of the bayonet, and the second part of the buckle is embedded in the second part of the bayonet.
[0015] In this implementation, since the height of the first part of the buckle is greater than that of the second part of the buckle, and the depth of the first part of the bayonet is greater than the depth of the second part of the bayonet, the buckle is embedded in the bayonet in an inverted hook structure, which can improve the matching degree of the buckle and the bayonet, thereby facilitating the improvement of the connection stability between the insert and the tail piece.
[0016] Among them, the second part of the buckle may include a top surface. The top surface of the second part of the buckle is connected to the first part of the buckle, and the top surface of the second part of the buckle faces away from the first surface. The first part of the buckle may further include a clamping surface, and the clamping surface connects the top surface of the first part of the buckle and the top surface of the second part of the buckle.
[0017] Among them, the bayonet may include a first part and a second part. And the depth of the first part of the bayonet is greater than the depth of the second part of the bayonet. Among them, the first part of the bayonet may have a limiting wall, and the limiting wall connects the bottom wall of the first part of the bayonet and the bottom wall of the second part of the bayonet.
[0018] In this implementation, since the first part of the buckle includes a clamping surface that connects the top surface of the first part of the buckle to the top surface of the second part of the buckle, and the first part of the bayonet can have a limiting wall that connects the bottom wall of the first part of the bayonet to the bottom wall of the second part of the bayonet, the buckle is embedded in the bayonet so that the clamping surface abuts against the limiting wall. Through the interaction between the clamping surface and the limiting wall, the buckle can be prevented from falling out of the bayonet, improving the clamping stability between the buckle and the bayonet, and further improving the connection stability between the insert and the tail grain.
[0019] In some possible implementations, the height of the buckle is greater than the depth of the bayonet.
[0020] In this implementation, the insert forms a transition fit or an interference fit with the tail grain through the buckle, thereby improving the connection stability between the insert and the tail grain.
[0021] In some possible implementations, the insert has a first outer surface and a second outer surface that are arranged opposite to each other, and a plurality of buckles are respectively arranged on the first outer surface and the second outer surface. The inner cavity has a first inner surface and a second inner surface that are arranged opposite to each other, and a plurality of bayonets are respectively arranged on the first inner surface and the second inner surface of the inner cavity.
[0022] In this implementation, by arranging a plurality of buckles on both opposite surfaces of the insert, the connection stability between the insert and the tail grain can be improved.
[0023] In some possible implementations, the buckles arranged on the first outer surface and the buckles arranged on the second outer surface are arranged staggeredly, and the bayonets arranged on the first inner surface and the bayonets arranged on the second inner surface are arranged staggeredly.
[0024] In this implementation, the staggered arrangement of a plurality of buckles can cause the extrusion forces generated by the buckles arranged on the first outer surface and the tail grain to be at least partially offset from the extrusion forces generated by the buckles arranged on the second outer surface in the thickness direction of the braided watch band. As a result, the deformation regions of the insert caused by the extrusion of a plurality of buckles can be at least partially offset, reducing the resistance to extrude the insert, and further reducing the resistance when the insert is inserted into the inner cavity of the tail grain, which is beneficial to the insert being inserted into the inner cavity of the tail grain. In addition, it can also cause the deformation regions of the tail grain caused by the extrusion of a plurality of buckles to be at least partially offset, reducing the resistance to extrude the tail grain, and further reducing the resistance when the insert is inserted into the inner cavity of the tail grain, which is beneficial to the insert being inserted into the inner cavity of the tail grain.
[0025] Among them, the multiple buckles provided on the first outer surface can be arranged in a straight line, and the multiple buckles provided on the second outer surface can be arranged in a straight line. Correspondingly, the multiple bayonets provided on the first inner surface are arranged in a straight line, and the multiple bayonets provided on the second inner surface are arranged in a straight line, so that the buckles and the bayonets can correspond one by one and can be snapped together simultaneously.
[0026] Among them, the multiple buckles provided on the first outer surface are arranged in a spline curve, and the multiple buckles provided on the second outer surface can be arranged in a spline curve. Correspondingly, the multiple bayonets provided on the first inner surface are arranged in the same spline curve as the multiple buckles provided on the first outer surface, and the multiple bayonets provided on the second inner surface are arranged in the same spline curve as the multiple buckles provided on the second outer surface, so that the buckles and the bayonets can correspond one by one and can be snapped together simultaneously. Among them, the inclined surfaces of the multiple buckles face the same direction, or the inclined surface of each buckle faces away from the arc center corresponding to the buckle.
[0027] In some possible implementation manners, in the vertical direction of the first outer surface, the distance between the first inner surface and the second inner surface is greater than the distance between the first outer surface and the second outer surface.
[0028] In this implementation manner, by setting an assembly gap, there is a space for coating an adhesive to form an adhesive layer between the insert and the tail grain. By setting the adhesive layer, the connection stability between the insert and the tail grain can be improved. In addition, by setting the assembly gap, the resistance to inserting the insert into the inner cavity of the tail grain can be reduced.
[0029] In some possible implementation manners, a first opening and a second opening are respectively provided on the first outer surface and the second outer surface. The woven watch band further includes a woven wire, and the woven wire passes through the first part of the woven band, the first opening, the second opening, and the second part of the woven band, and is woven to connect the woven band and the insert.
[0030] Among them, the woven wire is the woven wire reserved at the end of the woven band, which can improve the efficiency of weaving and connecting the woven band and the insert. Or, the woven wire is an additionally provided woven wire, which can improve the flexibility of weaving and connecting the woven band and the insert. Or, the woven wire includes a first part reserved at the end of the woven band and a second part provided additionally. By jointly weaving and connecting the woven band and the insert with the first part and the second part of the woven wire, the flexibility of weaving and connecting the woven band and the insert can be improved.
[0031] In some possible implementation manners, the first part and the second part of the woven band are different parts in the length direction of the woven watch band.
[0032] In this implementation, the braided wire is braided and connected to the braided band and the insert in the length direction of the braided watch band, so that the braided wire can cover the junction of the insert and the second part of the braided band, which is beneficial to improving the connection strength between the second part of the braided band and the insert, thereby improving the connection stability between the braided band and the insert.
[0033] Among them, the braided wire can include multiple turns of line segments, and the line segments pass through the first opening, the first part of the braided band, the second opening, and the second part of the braided band.
[0034] Among them, the length direction of the first opening can be parallel to the width direction of the braided watch band, and the length direction of the second opening can be parallel to the width direction of the braided watch band.
[0035] In this implementation, by setting the length directions of both the first opening and the second opening to be parallel to the width direction of the braided watch band, the braiding area where the braided wire braids and connects the braided band and the insert in the width direction of the braided watch band is increased, thereby improving the connection stability between the braided band and the insert.
[0036] Among them, at least one of the first outer surface and the second outer surface can be provided with a slot for receiving a part of the braided wire. The slot provided on the first outer surface communicates with the first opening and penetrates the first outer surface and the end face of the insert facing the braided band. The slot provided on the second outer surface communicates with the second opening and penetrates the second outer surface and the end face of the insert facing the braided band.
[0037] In this implementation, by providing the slot, the braided wire located on the first outer surface and / or the second outer surface can be received, thereby improving the flatness of the outer surface of the insert, which is beneficial to inserting the insert into the end piece. In addition, the side wall of the slot can form a limit for the braided wire to prevent the braided wire wound around the insert from loosening, which is beneficial to improving the connection stability between the braided band and the insert.
[0038] Among them, the buckle is arranged closer to the tail end of the braided watch band than the first opening and the second opening.
[0039] In this implementation, the positions of the first opening and the second opening are set to shorten the distance between the first opening and the second opening and the second part of the braided band, which is beneficial to braiding and connecting the braided band and the insert. In addition, arranging the buckle at a position close to the tail end of the braided watch band is beneficial to inserting the insert into the end piece and can improve the connection stability between the end piece and the insert after the buckle is embedded in the bayonet.
[0040] Among them, the buckle provided on the first outer surface of the insert is arranged in the width direction of the braided watch band with the first opening to shorten the dimension of the insert in the length direction of the braided watch band, thereby being beneficial to reducing the dimension of the tail end of the braided watch band and improving the appearance beauty of the braided watch band.
[0041] In some other possible implementation manners, the first part of the braided band and the second part of the braided band are different parts in the width direction of the braided watch band.
[0042] In this implementation manner, the braided wire braids and connects the braided band and the insert in the width direction of the braided watch band, increasing the area where the end of the braided band is braided and stitched to the insert, thereby improving the connection stability between the braided band and the insert.
[0043] Among them, the braided wire may include multiple turns of line segments, and the line segments pass through two adjacent first openings, two adjacent second openings, and the first part of the braided band.
[0044] Among them, the length direction of the first opening may be parallel to the length direction of the braided watch band, and the length direction of the second opening may be parallel to the length direction of the braided watch band.
[0045] In this implementation manner, by setting the length directions of both the first opening and the second opening to be parallel to the length direction of the braided watch band, the braiding area where the braided wire braids and connects the braided band and the insert in the length direction of the braided watch band is increased, thereby improving the connection stability between the braided band and the insert. In addition, the number of the first openings and the second openings can also be increased, thereby increasing the number of braiding turns of the braided wire, and further increasing the braiding area for braiding and connecting the braided band and the insert, which is beneficial to improving the connection stability between the braided band and the insert.
[0046] Among them, at least one of the first outer surface and the second outer surface may be provided with a slot for receiving a part of the braided wire. The slot provided on the first outer surface communicates with two adjacent first openings, and the slot provided on the second outer surface communicates with two adjacent second openings.
[0047] In this implementation manner, by providing the slot, the braided wire located on the first outer surface and / or the second outer surface can be received, thereby improving the flatness of the outer surface of the insert, which is beneficial to inserting the insert into the tail grain. In addition, the side wall of the slot can form a limit for the braided wire to prevent the braided wire wound around the insert from loosening, which is beneficial to improving the connection stability between the braided band and the insert.
[0048] Among them, the buckle is arranged closer to the tail end of the braided watch band than the first opening and the second opening.
[0049] In this implementation manner, the position setting of the buckle can avoid affecting the passing of the braided wire through two adjacent first openings and two adjacent second openings, which is beneficial to braiding and stitching the braided band and the insert. In addition, arranging the buckle at a position close to the tail end of the braided watch band is beneficial to inserting the insert into the tail grain, and can improve the connection stability between the tail grain and the insert after the buckle is embedded in the bayonet.
[0050] In some possible implementation manners, the first openings are a plurality of first openings arranged at intervals along the width direction of the woven strap, and the second openings are one or more second openings arranged opposite to the first openings along the vertical direction of the first outer surface.
[0051] In this implementation manner, the first openings and the second openings are arranged opposite to each other along the vertical direction of the first outer surface of the insert, which can increase the weaving area of the braided line for weaving and connecting the insert and the woven strap, thereby improving the connection stability between the woven strap and the insert. In other implementation manners, the first openings and the second openings may be partially arranged opposite to each other along the Z direction.
[0052] In some possible implementation manners, the sum of the number of weaving layers of the braided line and the number of weaving layers at the end of the woven strap is in the range of 2 to 20, and the number of weaving meshes of the braided line and the number of weaving meshes at the end of the woven strap are in the range of 4 to 20,000.
[0053] In this implementation manner, it is beneficial to improve the structural strength of the woven connection between the woven strap and the insert and is beneficial to the realization of the weaving process.
[0054] In some possible implementation manners, the material of the woven strap includes at least one of nylon, leather, and silica gel wire.
[0055] In this implementation manner, it is beneficial to weave and form the woven strap, and is beneficial to improving the wearing comfort of the woven strap. In addition, it makes the woven strap easy to thread a needle, which is beneficial to weaving and connecting the woven strap and the insert. In addition, it is beneficial to squeeze the first part of the woven strap into the receiving groove of the insert so that the first part of the woven strap is embedded in the receiving groove.
[0056] In some possible implementation manners, the material of the braided line includes at least one of nylon and silica gel wire.
[0057] In this implementation manner, it is beneficial for the braided line to weave and connect the woven strap and the insert.
[0058] In some possible implementation manners, the material of the insert includes at least one of metal, plastic, ceramic, and composite material, and the material of the end grain includes at least one of metal, plastic, ceramic, and composite material.
[0059] In this implementation manner, by selecting the above materials to design the insert and the end grain, the structural strength of the insert and the end grain can be improved, which is beneficial to improving the connection stability between the insert and the end grain.
[0060] In some possible implementation manners, the woven strap further includes an adhesive layer, the adhesive layer is located between the insert and the end grain, and the adhesive layer bonds the insert and the end grain.
[0061] In this implementation, by setting the bonding layer, the connection stability between the insert and the tail grain can be improved. Among them, the bonding layer is a layer structure formed by the solidification of the binder coated on the inner surface of the inner cavity after the insert is inserted into the inner cavity.
[0062] In some possible implementations, the tail grain and the insert are arranged at the tail end of the braided belt.
[0063] In this implementation, the braided belt is provided with a tail grain, which can improve the aesthetics of the braided belt, and the tail grain can protect the tail end of the braided belt, preventing the braided wires at the tail end of the braided belt from loosening, thereby increasing the service life of the braided belt. In addition, the braided belt can be driven by the tail grain for adjustment, thereby improving the feel of the operation.
[0064] In a second aspect, the present application also provides a wearable device, including a braided watchband and a main body as described in any one of the above, and the main body is connected to the braided watchband.
[0065] In the present application, the braided watchband can improve the aesthetics of the wearable device through the tail grain, can protect the tail end of the braided belt through the tail grain, prevent the braided wires at the tail end of the braided belt from loosening, and can also drive the braided belt through the tail grain for operation, improving the feel of the operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0066] Figure 1 is a schematic structural diagram of the wearable device provided by the present application in some embodiments;
[0067] Figure 2 is Figure 1 a partial structural schematic diagram of the braided watchband in the shown wearable device;
[0068] Figure 3 is Figure 2 a partial structural exploded schematic diagram of the shown braided watchband in some embodiments;
[0069] Figure 4A is Figure 3 a schematic cross-sectional structure diagram of the insert in the shown braided watchband cut along A-A;
[0070] Figure 4B is Figure 3 a schematic cross-sectional structure diagram of the insert in the shown braided watchband cut along B-B;
[0071] Figure 5A is Figure 3 a schematic structural diagram of the insert in the shown braided watchband partially inserted into the tail grain;
[0072] Figure 5B is Figure 5A a schematic cross-sectional structure diagram of the shown braided watchband cut along C-C;
[0073] Figure 5C is Figure 5A Schematic cross-sectional structure diagram of the shown braided watchband cut along D-D;
[0074] Figure 6A is Figure 2 Schematic cross-sectional structure diagram of the shown braided watchband cut along E-E;
[0075] Figure 6B is Figure 2 Schematic cross-sectional structure diagram of the shown braided watchband cut along F-F;
[0076] Figure 7 is Figure 3 Schematic structure diagram of the inlay in the shown braided watchband in some embodiments;
[0077] Figure 8 is Figure 3 Schematic exploded structure diagram of the braided band and the inlay in the shown braided watchband in some embodiments;
[0078] Figure 9A is Figure 8 Schematic structure diagram of the shown braided band inserted into the inlay;
[0079] Figure 9B is Figure 9A Schematic cross-sectional structure diagram of the shown braided band and the inlay after connection cut along G-G;
[0080] Figure 10A is Figure 9A Schematic structure diagram of the shown braided band and the inlay after braided connection;
[0081] Figure 10B is Figure 10A Schematic cross-sectional structure diagram of the shown braided band and the inlay after braided connection cut along H-H;
[0082] Figure 11A is Figure 3 Schematic structure diagram of the inlay in the shown braided watchband in some other embodiments;
[0083] Figure 11B is Figure 11A Schematic structure diagram of the inlay and the braided band braided and connected in some embodiments;
[0084] Figure 12 is Figure 3 Schematic exploded structure diagram of the braided band and the inlay in the shown braided watchband in some other embodiments;
[0085] Figure 13A is Figure 12 Schematic structure diagram of the braided band inserted into the inlay in;
[0086] Figure 13B is Figure 13A Schematic cross-sectional structure diagram of the braided belt and the insert along the section at I-I;
[0087] Figure 14A is Figure 13A Schematic structure diagram of the braided belt and the insert after braided connection;
[0088] Figure 14B is Figure 14A Schematic cross-sectional structure diagram of the braided belt and the insert after braided connection along the section at J-J;
[0089] Figure 15A is Figure 3 Schematic structure diagram of the insert in the braided watchband in some other embodiments;
[0090] Figure 15B is Figure 15A Schematic structure diagram of the insert and the braided belt after braided connection in some embodiments;
[0091] Figure 16 is Figure 3 Schematic structure diagram of the insert in the braided watchband in some other embodiments. Detailed implementation manners
[0092] The embodiments of the present application will be described below with reference to the accompanying drawings in the embodiments of the present application.
[0093] In the description of the embodiments of the present application, it should be noted that unless otherwise clearly specified and limited, the terms "installation" and "connection" should be understood in a broad sense. For example, "connection" can be a detachable connection or a non-detachable connection; it can be a direct connection or an indirect connection through an intermediate medium. "Plurality" means at least two.
[0094] The orientation terms mentioned in the embodiments of the present application, such as "upper", "lower", "inner", "outer", "top", "bottom", "side", etc., are only with reference to the direction of the accompanying drawings. Therefore, the orientation terms used are for better and clearer description and understanding of the embodiments of the present application, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be understood as a limitation to the embodiments of the present application.
[0095] In the embodiments of the present application, the limitations on the relative position relationships, such as parallel, perpendicular, alignment, etc., are all with respect to the current technological level and are not absolute and strict limitations. A small deviation is allowed, and being approximately parallel, approximately perpendicular, approximately aligned, etc. are all acceptable. For example, when it is stated that A is parallel to B, it means that A is parallel to B or approximately parallel to B, and the included angle between A and B can be between 0 degrees and 10 degrees. For example, when it is stated that A is perpendicular to B, it means that A is perpendicular to B or approximately perpendicular to B, and the included angle between A and B can be between 80 degrees and 100 degrees.
[0096] In the embodiments of the present application, the terms "first", "second", "third", and "fourth" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second", "third", and "fourth" may explicitly or implicitly include one or more of such features.
[0097] Please refer to Figure 1 , Figure 1 which is a schematic structural diagram of the wearable device 1000 provided by the present application in some embodiments.
[0098] In some embodiments, the wearable device 1000 may include a connecting band 100 and a main body 200.
[0099] Among them, the wearable device 1000 may be an electronic watch, a wearable measurement device, a mechanical watch, etc. The main body 200 may be the functional main body 200 of the wearable device 1000, which may include a housing and a display screen mounted on the housing. The main body 200 may also include other components, such as a main board, a battery, a processor, a camera module, a receiver, a speaker, etc. installed inside the housing. Among them, the main body 200 may not include a display screen. In this case, the wearable device 1000 may be a mechanical watch. It should be noted that the wearable device 1000 may include some of the above components or may include more components, which are not limited herein. For example, the wearable device 1000 may only include the connecting band 100.
[0100] Among them, the connecting band 100 is connected to both ends of the main body 200, and the connecting band 100 and the main body 200 are connected to form a ring for wearing on the human body. Among them, the connecting band 100 may be a watch band, or a cuff, or a neck band, and the connecting band 100 and the main body 200 may be detachably connected or non-detachably connected.
[0101] In some embodiments, the connecting band 100 may include a woven watch band 10 and a fixing band 20. The woven watch band 10 may include a woven band 1 and a tail grain 2. The woven band 1 may include a head end 11 and a tail end 12 which are oppositely arranged. The head end 11 of the woven band 1 is fixedly connected to one end of the housing, and the tail end 12 of the woven band 1 is fixedly connected to the tail grain 2. The fixing band 20 fixes the other end of the housing, and the fixing band 20 and the woven band 1 are detachably connected.
[0102] In this embodiment, the overlapping part when the woven band 1 and the fixing band 20 are connected is the overlapping portion. By adjusting the length of the overlapping portion of the fixing band 20 and the woven band 1, the circumferential length of the connecting band 100 when the wearable device 1000 is worn can be adjusted, so as to adjust the tightness when the wearable device 1000 is worn. In addition, since the woven band 1 is provided with the tail grain 2, the aesthetic property of the woven band 1 can be improved, and the tail grain 2 can protect the tail end 12 of the woven band 1, preventing the braided wires 6 at the tail end 12 of the woven band 1 from becoming loose, thereby improving the service life of the woven band 1. In addition, the woven band 1 can be driven by the tail grain 2 for adjustment, thereby improving the operating feel.
[0103] Exemplarily, the wearable device 1000 may further include a watch ring for connecting the woven watch band 10 or the fixing band 20. Alternatively, the wearable device 1000 may further include two watch rings which are respectively connected to the woven watch band 10 and the fixing band 20.
[0104] Wherein, the watch ring can be detachably connected to the woven watch band 10, or the watch ring can be detachably connected to the fixing band 20, so as to facilitate the disassembly and replacement of the connecting band 100.
[0105] Exemplarily, the fixing band 20 may include a woven band and a watch ring. The head end 11 of the woven band 1 of the woven watch band 10 is fixedly connected to one end of the housing, one end of the woven band of the fixing band 20 is fixed to the other end of the housing, and the other end of the woven band of the fixing band 20 is connected to the watch ring of the fixing band 20. The tail grain 2 of the woven watch band 10 can pass through the watch ring of the fixing band 20 to drive the woven band 1 part of the woven watch band 1 to pass through the watch ring of the fixing band 20.
[0106] Wherein, the woven band of the fixing band 20 and the woven band 1 of the woven watch band 10 may adopt the same material and weaving structure, or may adopt different materials or different weaving structures.
[0107] In some other embodiments, the connecting band 100 may be a continuous integral structure. The connecting band 100 may include a braided watch band 10, and the braided watch band 10 may include a braided band 1 and a tail grain 2. The braided band 1 may include a head end 11 and a tail end 12 which are oppositely arranged. The head end 11 of the braided band 1 is fixedly connected to one end of the housing, the tail end 12 of the braided band 1 is connected to the tail grain 2, and the tail grain 2 and the tail end 12 of the braided band 1 may pass through a watch ring installed at the other end of the housing together, and the tail end 12 of the braided band 1 can be folded back to the middle of the braided band 1 and fixed.
[0108] In this embodiment, the fixation between the tail end 12 of the braided band 1 and the middle of the braided band 1 is a detachable fixation. By adjusting the fixation position, the circumferential length of the braided band 1 when the wearable device 1000 is worn can be adjusted, so as to adjust the tightness when the wearable device 1000 is worn. In addition, since the braided band 1 is provided with the tail grain 2, the tail grain 2 can improve the operability of the tail end 12 of the braided band 1 passing through the watch ring on the housing, which is beneficial to the wearing of the wearable device 1000, and the tail grain 2 can protect the tail end 12 of the braided band 1 and reduce the risk of the braided wire 6 detaching after the tail end 12 of the braided band 1 is scratched.
[0109] It should be noted that Figure 1 in the embodiments of the present application, the connecting band 100 is exemplified by including the braided watch band 10 and the fixing band 20, and the specific composition structure of the connecting band 100 is not limited.
[0110] Among them, the material of the braided band 1 includes at least one of nylon, leather, and silica gel wire, which is beneficial to braiding to form the braided band 1 and is beneficial to improving the wearing comfort of the braided band 1.
[0111] Please refer to Figure 2 and Figure 3 , Figure 2 which Figure 1 is a partial structural schematic diagram of the braided watch band 10 in the wearable device 1000 shown; Figure 3 which Figure 2 is an exploded schematic diagram of a partial structure of the braided watch band 10 in some embodiments shown.
[0112] For the convenience of description hereinafter, it is defined that the braided watch band 10 has a length direction X, a width direction Y, and a thickness direction Z, and the above three are perpendicular to each other in pairs. Among them, the length direction of the braided watch band 10 is the length direction when the braided watch band 10 is flattened. In other embodiments, the coordinate system setting of the braided watch band 10 can be flexibly set according to specific actual needs.
[0113] In some embodiments, the braided watch band 10 may further include an insert 3 and an adhesive layer 4. The end 12 of the braided band 1 is connected to the insert 3, the adhesive layer 4 bonds the insert 3 and the end piece 2, and at least part of the insert 3 is embedded in the end piece 2. The adhesive layer 4 is a layer structure formed by solidification of an adhesive coated in the end piece 2 after the insert 3 is inserted into the end piece 2.
[0114] In this embodiment, at least part of the insert 3 is embedded in the end piece 2, which can improve the connection strength between the braided band 1 and the end piece 2, and by bonding the insert 3 and the end piece 2 through the adhesive layer 4, the connection stability between the braided band 1 and the end piece 2 can be further improved.
[0115] Exemplarily, the insert 3 may include a buckle 31. The insert 3 has a first outer surface 32, and the buckle 31 is disposed on the first outer surface 32. The buckle 31 is used for snapping onto the end piece 2. In this embodiment, by providing a set of buckles 31, the connection stability between the insert 3 and the end piece 2 can be improved.
[0116] The number of the buckles 31 is multiple, and the multiple buckles 31 are arranged at intervals along the width direction of the braided watch band 10, that is, the multiple buckles 31 are arranged at intervals along the Y direction, so as to improve the connection strength between the insert 3 and the end piece 2.
[0117] The buckle 31 may include a first part 31a and a second part 31b. The height of the first part 31a of the buckle 31 is greater than that of the second part 31b of the buckle 31, and the first part 31a of the buckle 31 is closer to the end 5 of the braided watch band 10 than the second part 31b of the buckle 31. In other words, the maximum distance between the first part 31a of the buckle 31 and the first surface is greater than the maximum distance between the second part 31b of the buckle 31 and the first surface, and the second part 31b and the first part 31a of the buckle 31 are arranged and connected along the X direction.
[0118] It should be noted that Figure 3 In the embodiment, the dotted line on the buckle 31 is a schematic for dividing the first part 31a and the second part 31b of the buckle 31. In other embodiments, the first part 31a and the second part 31b of the buckle 31 may also be divided at other positions.
[0119] The first part 31a of the buckle 31 may include an inclined surface 311. The inclined surface 311 may include a first end 3111 and a second end 3112 which are oppositely arranged. The height of the first end 3111 of the inclined surface 311 is lower than that of the second end 3112 of the inclined surface 311. The first end 3111 of the inclined surface 311 is farther from the second part 31b of the buckle 31 than the second end 3112 of the inclined surface 311.
[0120] Among them, the first part 31a of the buckle 31 may further include a top surface 312 and an end surface 313. The top surface 312 of the first part 31a of the buckle 31 is connected to the second end 3112 of the inclined surface 311, and the top surface 312 of the first part 31a of the buckle 31 faces away from the first surface. The end surface 313 of the first part 31a of the buckle 31 is connected to the first end 3111 of the inclined surface 311 and the first surface. The first end 3111 of the inclined surface 311 may be arc-connected to the end surface 313 of the first part 31a of the buckle 31, and the second end 3112 of the inclined surface 311 may be arc-connected to the top surface 312 of the first part 31a of the buckle 31.
[0121] Among them, the second part 31b of the buckle 31 may include a top surface 315. The top surface 315 of the second part 31b of the buckle 31 is connected to the first part 31a of the buckle 31, and the top surface 315 of the second part 31b of the buckle 31 faces away from the first outer surface 32. The first part 31a of the buckle 31 may further include a clamping surface 314, and the clamping surface 314 connects the top surface 312 of the first part 31a of the buckle 31 and the top surface 315 of the second part 31b of the buckle 31.
[0122] Exemplarily, the tail grain 2 may have an inner cavity 21, and the inner cavity 21 may be used to accommodate at least a part of the insert 3.
[0123] Please refer to Figure 4A and Figure 4B , Figure 4A is Figure 3 a schematic cross-sectional structure diagram of the insert 3 in the woven watch band 10 shown in the A-A section; Figure 4B is Figure 3 a schematic cross-sectional structure diagram of the insert 3 in the woven watch band 10 shown in the B-B section.
[0124] In some embodiments, the inner cavity 21 of the tail grain 2 may be provided with a bayonet 211. The inner cavity 21 may have a first inner surface 212 and a second inner surface 213. The first inner surface 212 and the second inner surface 213 are oppositely arranged, and a plurality of bayonets 211 are respectively arranged on the first inner surface 212 and the second inner surface 213 of the inner cavity 21. Among them, the first inner surface 212 and the second inner surface 213 are oppositely arranged in the Z direction. In some other embodiments, the first inner surface 212 and the second inner surface 213 may also be oppositely arranged in the Y direction.
[0125] Exemplarily, the bayonets 211 provided on the first inner surface 212 and the bayonets 211 provided on the second inner surface 213 are staggeredly arranged. In other words, the orthographic projection of the bayonets 211 provided on the first inner surface 212 on the second inner surface 213 is staggeredly arranged with the bayonets 211 provided on the second inner surface 213.
[0126] Among them, the multiple bayonets 211 provided on the second inner surface 213 are arranged in a straight line. The orthographic projection of the bayonets 211 provided on the first inner surface 212 on the second inner surface 213 may fall on the connecting line segment of the multiple bayonets 211 provided on the second inner surface 213, or on the extension line of the connecting line segment of the multiple bayonets 211 provided on the second inner surface 213.
[0127] Among them, the bayonet 211 may include a first part 211a and a second part 211b. And the depth of the first part 211a of the bayonet 211 is greater than the depth of the second part 211b of the bayonet 211. Among them, the first part 211a of the bayonet 211 may have a limiting wall 2111, and the limiting wall 2111 connects the bottom wall 2112 of the first part 211a of the bayonet 211 and the bottom wall 2113 of the second part 211b of the bayonet 211.
[0128] Please refer to Figures 5A to 5C , Figure 5A is Figure 3 a schematic structural diagram of the insert 3 partially inserted into the tail grain 2 in the woven watchband 10 shown; Figure 5B is Figure 5A a schematic cross-sectional structural diagram of the woven watchband 10 shown cut along C-C; Figure 5C is Figure 5A a schematic cross-sectional structural diagram of the woven watchband 10 shown cut along D-D. Among them, Figure 5B and Figure 5C the bonding layer is not shown in the figure.
[0129] In some embodiments, the insert 3 may further include a second outer surface 33, the second outer surface 33 is disposed opposite to the first outer surface 32, and a plurality of buckles 31 are respectively disposed on the first outer surface 32 and the second outer surface 33. In this embodiment, by disposing a plurality of buckles 31 on both opposite side surfaces of the insert 3, the connection stability between the insert 3 and the tail grain 2 can be improved. Among them, at least one of the insert 3 and the tail grain 2 can be deformed. In the embodiments of the present application Figure 5B and Figure 5C the insert 3 and the tail grain 2 are both deformable for illustration.
[0130] In this embodiment, since the first part 31a of the buckle 31 may include an inclined surface 311, the buckle 31 presents a wedge-shaped structure. During the process of inserting the insert 3 into the inner cavity 21 of the tail grain 2, the inclined surface 311 can gradually squeeze and expand the opening of the inner cavity 21 of the tail grain 2, so as to reduce the resistance of inserting the insert 3 into the inner cavity 21 of the tail grain 2, thereby facilitating the insertion of the insert 3 into the inner cavity 21 of the tail grain 2.
[0131] In this embodiment, since the first end of the inclined surface 311 can be connected in an arc shape to the end surface 313 of the first part 31a of the buckle 31, and the second end of the inclined surface 311 can be connected in an arc shape to the top surface 312 of the first part 31a of the buckle 31, the first end of the inclined surface 311 and the second end of the inclined surface 311 can be subjected to less pressure when squeezed with the first inner surface 212 and the second inner surface 213 of the inner cavity 21, which is conducive to smoother insertion of the embedded component 3 into the inner cavity 21 of the tail particle 2.
[0132] Exemplarily, the buckles 31 disposed on the first outer surface 32 may be arranged alternately with the buckles 31 disposed on the second outer surface 33. In other words, the orthographic projection of the buckles 31 disposed on the first outer surface 32 on the second outer surface 33 is arranged alternately with the buckles 31 disposed on the second outer surface 33.
[0133] In this embodiment, the staggered arrangement of the plurality of buckles 31 can make the extrusion force generated by the mutual extrusion of the buckles 31 and the tail 2 provided on the first outer surface 32 and the extrusion force generated by the mutual extrusion of the buckles 31 and the tail 2 provided on the second outer surface 33 be at least partially staggered, so that the deformation area of the inlay 3 caused by the extrusion of the plurality of buckles 31 can be at least partially staggered, so as to reduce the resistance of the extrusion of the inlay 3, thereby reducing the resistance of the inlay 3 inserted into the inner cavity 21 of the tail 2, which is conducive to the insertion of the inlay 3 into the inner cavity 21 of the tail 2. In addition, the deformation area of the tail 2 caused by the extrusion of the plurality of buckles 31 can be at least partially staggered, so as to reduce the resistance of the extrusion of the tail 2, thereby reducing the resistance of the inlay 3 inserted into the inner cavity 21 of the tail 2, which is conducive to the insertion of the inlay 3 into the inner cavity 21 of the tail 2.
[0134] In some examples, the multiple buckles 31 provided on the first outer surface 32 can be arranged in a straight line, and the multiple buckles 31 provided on the second outer surface 33 can be arranged in a straight line. Correspondingly, the multiple snap-ons 211 provided on the first inner surface 212 are arranged in a straight line, and the multiple snap-ons 211 provided on the second inner surface 213 are arranged in a straight line, so that the buckles 31 and the snap-ons 211 can correspond one by one and can be snapped together at the same time.
[0135] In some other examples, the multiple latches 31 disposed on the first outer surface 32 are arranged in a spline curve, and the multiple latches 31 disposed on the second outer surface 33 can be arranged in a spline curve. Correspondingly, the multiple bayonets 211 disposed on the first inner surface 212 and the multiple latches 31 disposed on the first outer surface 32 adopt the same spline curve arrangement, and the multiple bayonets 211 disposed on the second inner surface 213 and the multiple bayonets 211 disposed on the second outer surface 33 adopt the same spline curve arrangement, so that the latches 31 and the bayonets 211 can correspond one by one and can be latched simultaneously. Among them, the inclined surfaces 311 of the multiple latches 31 face the same direction, or the inclined surface 311 of each latch 31 is arranged facing away from the arc center corresponding to the latch 31.
[0136] In some embodiments, the material of the insert 3 may include at least one of metal, plastic, ceramic, and composite material, and the material of the tail piece 2 may include at least one of metal, plastic, ceramic, and composite material.
[0137] In this embodiment, by selecting the above materials to design the insert 3 and the tail piece 2, the structural strength of the insert 3 and the tail piece 2 can be improved, which is beneficial to improving the connection stability between the insert 3 and the tail piece 2.
[0138] By Figure 5B and Figure 5C inserting the insert 3 into the inner cavity 21 of the tail piece 2 as shown, the insert 3 and the tail piece 2 can form a state as shown in Figure 6A and Figure 6B shown.
[0139] Please refer to Figure 4B 、 Figure 6A and Figure 6B together, Figure 6A is Figure 2 a schematic cross-sectional structure diagram of the braided watch band 10 shown cut along the E-E; Figure 6B is Figure 2 a schematic cross-sectional structure diagram of the braided watch band 10 shown cut along the F-F.
[0140] In some embodiments, the latch 31 can be embedded in the bayonet 211, where one latch 31 corresponds to and is embedded in one bayonet 211. In this embodiment, by embedding the latch 31 in the bayonet 31, the connection stability between the insert 3 and the tail piece 2 can be improved.
[0141] In this embodiment, since the buckles 31 provided on the first outer surface 32 and the buckles 31 provided on the second outer surface 33 can be arranged in an interleaved manner, the clamping strength between the buckles 31 and the bayonets 211 is improved, thereby improving the connection stability between the insert 3 and the tail piece 2. In addition, the area of the region where the insert 3 is clamped with the tail piece 2 in the width direction (i.e., the Y direction) of the woven watch band 10 is also increased, which is beneficial to improving the dimensional utilization rate of the insert 3.
[0142] Exemplarily, the first part 31a of the buckle 31 can be embedded in the first part 211a of the bayonet 211, and the second part 31b of the buckle 31 can be embedded in the second part 211b of the bayonet 211.
[0143] In this embodiment, since the height of the first part 31a of the buckle 31 is greater than that of the second part 31b of the buckle 31, and the depth of the first part 211a of the bayonet 211 is greater than that of the second part 211b of the bayonet 211, the buckle 31 is embedded in the bayonet 211 in an inverted hook structure, which can improve the fitting degree of the buckle 31 and the bayonet 211, thereby being beneficial to improving the connection stability between the insert 3 and the tail piece 2.
[0144] In this embodiment, since the first part 31a of the buckle 31 includes a clamping surface 314, the clamping surface 314 connects the top surface 312 of the first part 31a of the buckle 31 and the top surface 315 of the second part 31b of the buckle 31, and the first part 211a of the bayonet 211 can have a limiting wall 2111, the limiting wall 2111 connects the bottom wall 2112 of the first part 211a of the bayonet 211 and the bottom wall 2113 of the second part 211b of the bayonet 211. The buckle 31 is embedded in the bayonet 211 so that the clamping surface 314 abuts against the limiting wall 2111. Through the interaction between the clamping surface 314 and the limiting wall 2111, the buckle 31 can be prevented from falling off from the bayonet 211, improving the clamping stability between the buckle 31 and the bayonet 211, and further improving the connection stability between the insert 3 and the tail piece 2.
[0145] Exemplarily, in the vertical direction (i.e., the Z direction) of the first outer surface 32, the distance between the first inner surface 212 and the second inner surface 213 can be greater than the distance between the first outer surface 32 and the second outer surface 33, so that there is an assembly gap between the insert 3 and the tail piece 2.
[0146] In this embodiment, by setting the assembly gap, there is a space for coating an adhesive to form an adhesive layer 4 between the insert 3 and the tail piece 2. By providing the adhesive layer 4, the connection stability between the insert 3 and the tail piece 2 can be improved. In addition, by setting the assembly gap, the resistance of the insert 3 inserted into the inner cavity 21 of the tail piece 2 can be reduced.
[0147] Among them, the height of the buckle 31 can be greater than the depth of the bayonet 211, so that the difference between the height of the buckle 31 and the depth of the bayonet 211 can cover the assembly gap, so that the insert 3 forms a transition fit or an interference fit with the tail grain 2 through the buckle 31, thereby improving the connection stability between the insert 3 and the tail grain 2.
[0148] Please refer to Figure 5B , Figure 5C and Figure 7 , Figure 7 which Figure 3 is a schematic structural diagram of the insert 3 in the woven watchband 10 shown in some embodiments.
[0149] In some embodiments, the multiple buckles 31 may include a first buckle 316 and a second buckle 317. The height of the first buckle 316 may be less than the height of the second buckle 317.
[0150] In this embodiment, since the height of the first buckle 316 is less than the height of the second buckle 317, during the process of inserting the insert 3 into the inner cavity 21 of the tail grain 2, the extrusion force between the first buckle 316 and the tail grain 2 is less than the extrusion force between the second buckle 317 and the tail grain 2, thereby reducing the overall extrusion force between the insert 3 and the tail grain 2, and further reducing the resistance of the insert 3 inserted into the insert of the tail grain 2, which is beneficial to the insertion of the insert 3 into the tail grain 2.
[0151] Exemplarily, the first buckle 316 may be closer to the tail end 5 of the woven watchband 10 than the second buckle 317.
[0152] In this embodiment, during the process of inserting the insert 3 into the inner cavity 21 of the tail grain 2, the first buckle 316 first squeezes with the tail grain 2, and the second buckle 317 then squeezes with the tail grain 2. Since the height of the first buckle 316 is less than the height of the second buckle 317, when the second buckle 317 contacts the tail grain 2, the opening of the inner cavity 21 of the tail grain 2 has been opened and deformed, thereby reducing the extrusion resistance between the second buckle 317 and the tail grain 2, which is beneficial to inserting the insert 3 into the tail grain 2.
[0153] Please refer to Figure 3 and Figure 8 , Figure 8 which Figure 3 is a schematic exploded view of the woven band 1 and the insert 3 in the woven watchband 10 shown in some embodiments. Among them, Figure 8 the dotted line in
[0154] In some embodiments, the braided belt 1 is braided and connected to the insert 3. Among them, the braided connection means using braiding technology to braid and stitch the braided belt 1 and the insert 3 together through a braidable material. In this embodiment, since the material of the braided belt 1 includes at least one of nylon, leather, and silica gel wire, the braided belt 1 is easy to thread a needle, which is beneficial to braiding and connecting the braided belt 1 and the insert 3. Braiding and connecting the braided belt 1 and the insert 3 can improve the connection stability between the braided belt 1 and the insert 3.
[0155] Exemplarily, the braided watchband 10 may further include a braided wire 6, and the braided wire 6 is braided and connected to the braided belt 1 and the insert 3. Among them, the material of the braided wire 6 includes at least one of nylon and silica gel wire, which is beneficial to the braided wire 6 braiding and connecting the braided belt 1 and the insert 3.
[0156] In some examples, the braided wire 6 is the braided wire 6 reserved at the tail end 12 of the braided belt 1, which can improve the efficiency of braiding and connecting the braided belt 1 and the insert 3. In other examples, the braided wire 6 is an additionally provided braided wire 6, which can improve the flexibility of braiding and connecting the braided belt 1 and the insert 3. In still other examples, the braided wire 6 includes a first part reserved at the tail end 12 of the braided belt 1 and a second part provided additionally. By jointly braiding and connecting the braided belt 1 and the insert 3 through the first part and the second part of the braided wire 6, the flexibility of braiding and connecting the braided belt 1 and the insert 3 can be improved. Figure 8 In the embodiment, an example is given with the braided wire 6 being the braided wire 6 reserved at the tail end 12 of the braided belt 1.
[0157] Exemplarily, the braided belt 1 may include a first part 1a and a second part 1b. A first opening 34 and a second opening 35 may be respectively provided on the first outer surface 32 and the second outer surface 33. The braided wire 6 may pass through the first part 1a, the first opening 34, the second opening 35, and the second part 1b of the braided belt 1 to braid and connect the braided belt 1 and the insert 3.
[0158] In this embodiment, by providing the first opening 34 and the second opening 35, the braided wire 6 can pass through the inside of the insert 3, which is beneficial to the braided wire 6 braiding and connecting the insert 3 and the braided belt 1, and can improve the stability of braiding and connecting the insert 3 and the braided belt 1.
[0159] Among them, the first opening 34 is a plurality of first openings 34 arranged at intervals in the width direction (i.e., the Y direction) of the braided watchband 10, and the second opening 35 is one or more second openings 35 arranged opposite to the first opening 34 in the vertical direction (i.e., the Z direction) of the first outer surface 32.
[0160] In this embodiment, the first opening 34 and the second opening 35 are arranged opposite to each other in the vertical direction (i.e., the Z direction) of the first outer surface 32 of the insert 3, which can increase the braiding area for braiding and connecting the insert 3 and the braiding tape 1 by the braiding wire 6, thereby improving the connection stability between the braiding tape 1 and the insert 3. In other embodiments, the first opening 34 and the second opening 35 may be partially arranged opposite to each other in the Z direction.
[0161] In some examples, the number of the first openings 34 is multiple, the number of the second openings 35 is one, and all the first openings 34 are arranged opposite to one second opening 35 in the vertical direction of the first outer surface 32. In other words, the orthographic projection of the second opening 35 on the first outer surface 32 covers all the first openings 34. Among them, the orthographic projection of the second opening 35 on the first outer surface 32 may exactly cover all the first openings 34; or, the orthographic projection of the second opening 35 on the first outer surface 32 may cover all the first openings 34 and extend beyond the edges in the length direction and / or width direction of the first openings 34.
[0162] In other examples, the number of the first openings 34 is multiple, the number of the second openings 35 is multiple, and the number of the first openings 34 is different from the number of the second openings 35. Among them, one first opening 34 is arranged opposite to multiple second openings 35 in the vertical direction of the first outer surface 32, or one second opening 35 is arranged opposite to multiple first openings 34 in the vertical direction of the first outer surface 32.
[0163] In still other examples, the number of the first openings 34 is the same as the number of the second openings 35, and one first opening 34 is arranged opposite to one second opening 35 in the vertical direction of the first outer surface 32.
[0164] It should be noted that the number setting of the first openings 34 is inversely proportional to the opening area of a single first opening 34. Specifically, the smaller the card hole area of a single first opening 34, the more the number of the first openings 34, so as to increase the braiding area for braiding and connecting the insert 3 and the braiding tape 1. The number setting of the second openings 35 is inversely proportional to the opening area of a single second opening 35. Specifically, the smaller the area of a single second opening 35, the more the number of the second openings 35, so as to increase the braiding area for braiding and connecting the insert 3 and the braiding tape 1.
[0165] Exemplarily, the insert 3 may further be provided with a receiving groove 36, the receiving groove 36 communicates with the first opening 34 and the second opening 35, and the receiving groove 36 has an opening facing the braiding tape 1.
[0166] Please refer to Figure 8 、 Figure 9A and Figure 9B , Figure 9A is Figure 8Schematic diagram of the structure where the woven belt 1 shown is inserted into the insert 3; Figure 9B is Figure 9A Schematic cross-sectional structure diagram of the woven belt 1 shown after being connected to the insert 3 and cut along the G-G.
[0167] In some embodiments, the first part 1a and the second part 1b of the woven belt 1 can be different parts in the length direction (i.e., the X direction) of the woven watchband 10. For illustration, the first part 1a of the woven belt 1 is located at the tail end 12 of the woven belt 1 and is connected to the second part 1b of the woven belt 1.
[0168] In this embodiment, since the insert 3 is provided with a receiving groove 36, the first part 1a of the woven belt 1 can be embedded in the receiving groove 36, which is beneficial to the woven connection between the woven belt 1 and the insert 3. Since the material of the woven belt 1 includes at least one of nylon, leather, and silica gel wire, it is beneficial to squeeze the first part 1a of the woven belt 1 into the receiving groove 36 of the insert 3 so that the first part 1a of the woven belt 1 is embedded in the receiving groove 36.
[0169] Exemplarily, the first part 1a of the woven belt 1 can be in interference fit with the receiving groove 36, so that the first part 1a of the woven belt 1 is compressed in the receiving groove 36, thereby embedding the first part 1a of the woven belt 1 in the receiving groove 36. And since the receiving groove 36 is communicated with both the first opening 34 and the second opening 35, part of the first part 1a of the woven belt 1 is embedded in the first opening 34 and the second opening 35, thereby improving the connection stability between the woven belt 1 and the insert 3.
[0170] Exemplarily, the woven wire 6 can include multiple turns of line segments 61, and the line segments 61 pass through the first opening 34, the first part 1a of the woven belt 1, the second opening 35, and the second part 1b of the woven belt 1. Figure 9B The dotted line shown is a schematic diagram of one turn of the line segment 61, and the arrow indicates the sewing direction of this turn of the line segment 61. Through Figure 9B the weaving method shown in the embodiment, the woven belt 1 and the insert 3 can be woven and connected to form a structure as shown in Figure 10A and Figure 10B shown.
[0171] It should be noted that Figure 9B the sewing direction and sequence of the line segments 61 in the woven wire 6 shown are only for illustration. For example, in other embodiments, the sewing direction of the woven wire 6 can be opposite to the Figure 9B sewing direction shown, and one turn of the line segment 61 of the woven wire 6 can sequentially pass through the second part 1b of the woven belt 1, the second opening 35, the first part 1a of the woven belt 1, and the first opening 34.
[0172] Please refer to Figure 8 , Figure 10A andFigure 10B , Figure 10A is Figure 9A a schematic structural view of the braided belt 1 and the insert 3 after being braided and connected; Figure 10B is Figure 10A a schematic cross-sectional view taken along the H-H line after the braided belt 1 and the insert 3 are braided and connected.
[0173] In some embodiments, the braided thread 6 can stitch the braided belt 1 and the insert 3 in the length direction of the braided watchband 10. Among them, the braided thread 6 is braided and connected to the first part 1a and the second part 1b of the braided belt 1 through the first opening 34 and the second opening 35, and is braided and connected to the braided belt 1 and the insert 3.
[0174] In this embodiment, the braided thread 6 is braided and connected to the braided belt 1 and the insert 3 in the length direction (i.e., the X direction) of the braided watchband 10, so that the braided thread 6 can cover the joint between the insert 3 and the second part 1b of the braided belt 1, which is beneficial to improving the connection strength between the second part 1b of the braided belt 1 and the insert 3, thereby improving the connection stability between the braided belt 1 and the insert 3.
[0175] Exemplarily, the length direction of the first opening 34 can be parallel to the width direction of the braided watchband 10, and the length direction of the second opening 35 can be parallel to the width direction of the braided watchband 10.
[0176] In this embodiment, by setting the length directions of both the first opening 34 and the second opening 35 to be parallel to the Y direction, the braiding area of the braided thread 6 braiding and connecting the braided belt 1 and the insert 3 in the Y direction is increased, thereby improving the connection stability between the braided belt 1 and the insert 3.
[0177] Among them, the number of the first openings 34 can be one or more, and the number of the second openings 35 can be one or more, as long as the first opening 34 and the second opening 35 are arranged opposite to each other in the vertical direction of the first outer surface 32 of the insert 3.
[0178] Exemplarily, the second part 1b of the braided belt 1 can be provided with a braiding groove (not shown in the figure) in the vertical direction (i.e., the Z direction) of the first outer surface 32 of the insert 3. The braiding groove is used to accommodate a part of the braided thread 6, so that after the braided belt 1 and the insert 3 are braided and stitched, the braided thread 6 can fill the braiding groove, so that the outer surface of the second part 1b of the braided belt 1 is flat, thereby improving the appearance of the braided belt 1.
[0179] It should be noted that after the braided thread 6 braids and stitches the braided belt 1 and the insert 3, the braided thread 6 is inserted inside the braided belt 1, and the braided thread 6 and the braided belt 1 can be regarded as an integral structure, and the same cross-hatching is used to represent them in the cross-sectional view.
[0180] In some embodiments, the sum of the number of braided layers of the braided wire 6 and the number of braided layers of the end 12 of the braided tape 1 is in the range of 2 to 20, and the number of braided meshes of the braided wire 6 and the number of braided meshes of the end 12 of the braided tape 1 are in the range of 4 to 20,000, which is beneficial to improving the structural strength of the braided connection between the braided tape 1 and the insert 3 and facilitating the realization of the braiding process.
[0181] For example, the sum of the number of braided layers of the braided wire 6 and the number of braided layers of the end 12 of the braided tape 1 can be, but is not limited to, 2, or 6, or 10, or 14, or 18, or 20, or other values between 2 and 20. The number of braided meshes of the braided wire 6 and the number of braided meshes of the end 12 of the braided tape 1 are 4, or 100, or 1000, or 1400, or 3000, or 6000, or 10000, or 14000, or 16000, or 18000, or 20000, or other values between 4 and 20,000.
[0182] Please refer to Figure 11A and Figure 11B , Figure 11A is Figure 3 a schematic structural view of the insert 3 in some other embodiments in the shown braided watchband 10; Figure 11B is Figure 11A a schematic structural view of the connection between the insert 3 and the braided tape 1 by braiding in some embodiments.
[0183] In some embodiments, at least one of the first outer surface 32 and the second outer surface 33 may be provided with a slot 37, and the slot 37 houses a part of the braided wire 6. Among them, the slot 37 provided on the first outer surface 32 communicates with the first opening 34 and penetrates through the first outer surface 32 and the end face of the insert 3 facing the braided tape 1. The slot 37 provided on the second outer surface 33 communicates with the second opening 35 and penetrates through the second outer surface 33 and the end face of the insert 3 facing the braided tape 1.
[0184] In this embodiment, by providing the slot 37, the braided wire 6 located on the first outer surface 32 and / or on the second outer surface 33 can be housed, thereby improving the flatness of the outer surface of the insert 3 and facilitating the insertion of the insert 3 into the tail grain. In addition, the side wall of the slot 37 can form a limit for the braided wire 6 to prevent the braided wire 6 wound around the insert 3 from loosening, which is beneficial to improving the connection stability between the braided tape 1 and the insert 3.
[0185] Please refer to Figure 5C , Figure 10A and Figure 10B , in some embodiments, the buckle 31 is disposed closer to the end 5 of the braided watchband 10 than the first opening 34 and the second opening 35.
[0186] In this embodiment, the positions of the first opening 34 and the second opening 35 are set to shorten the distance between the first opening 34 and the second opening 35 and the second part 1b of the braided belt 1, which is beneficial to braided connection of the braided belt 1 and the insert 3. In addition, the buckle 31 is arranged at a position close to the tail end 12 of the braided belt 10, which is beneficial to inserting the insert 3 into the tail grain 2 and can improve the connection stability between the tail grain 2 and the insert 3 after the buckle 31 is embedded in the bayonet 211.
[0187] In other embodiments, the buckle 31 arranged on the first outer surface 32 of the insert 3 and the first opening 34 are arranged along the width direction of the braided belt 10 (not shown in the figure) to shorten the size of the insert 3 in the length direction of the braided belt 10, thereby being beneficial to reducing the size of the tail end 5 of the braided belt 10 and improving the appearance beauty of the braided belt 10.
[0188] Please refer to Figures 12 to 13B , Figure 12 which Figure 3 is a schematic exploded view of the structure of the braided belt 1 and the insert 3 in the braided belt 10 shown in some other embodiments; Figure 13A which Figure 12 is a schematic structural view of the braided belt 1 inserted into the insert 3; Figure 13B which Figure 13A is a schematic cross-sectional structure view of the braided belt 1 and the insert 3 cut along the I-I position. Among them, Figures 12 to 13B the insert 3, the braided belt 1 and the braided wire 6 in the embodiment shown may include Figures 8 to 9B most of the technical features of the insert 3, the braided belt 1 and the braided wire 6 in the embodiment shown. The following mainly describes the differences between the two, and most of the same content of the two will not be elaborated.
[0189] In some embodiments, the first part 1a and the second part 1b of the braided belt 1 may be different parts in the width direction of the braided belt 10. Among them, both the first part 1a and the second part 1b of the braided belt 1 are located at the tail end 12 of the braided belt 1. The first part 1a of the braided belt 1 is arranged opposite to the first opening 34 and the second opening 35. The second part 1b of the braided belt 1 is located between the first opening 34 and the second opening 35. Multiple first parts 1a and multiple second parts 1b of the braided belt 1 are arranged alternately.
[0190] Among them, Figure 12 the dashed line in
[0191] In this embodiment, the braided wire 6 passes through the first opening 34, the first part 1a of the braided tape 1, and the second opening 35, which can increase the braided area between the tail end 12 of the braided tape 1 and the insert 3, thereby improving the connection stability between the braided tape 1 and the insert 3.
[0192] Exemplarily, the braided wire 6 may include multiple turns of wire segments 61, and the wire segments 61 pass through two adjacent first openings 34, two adjacent second openings 35, and the first part 1a of the braided tape 1. Figure 13B The dashed line shown is a schematic illustration of one turn of the wire segment 61, and the arrow indicates the stitching direction of this turn of the wire segment 61. By Figure 13B the braiding method shown in the embodiment, the braided tape 1 and the insert 3 can be braided and connected to form a structure as shown in Figure 14A and Figure 14B shown.
[0193] It should be noted that Figure 13B the stitching direction and sequence of the wire segments 61 in the braided wire 6 shown are only for illustration and are not limited again.
[0194] Please refer to Figure 12 , Figure 14A and Figure 14B , Figure 14A which Figure 13A is a schematic structural diagram of the braided tape 1 and the insert 3 after being braided and connected; Figure 14B which Figure 14A is a schematic cross-sectional structural diagram of the braided tape 1 and the insert 3 after being braided and connected along the J-J position.
[0195] In some embodiments, the braided wire 6 can braid and stitch the braided tape 1 and the insert 3 in the width direction of the braided watchband 10. Among them, the braided wire 6 passes through two adjacent first openings 34 and two adjacent second openings 35 to braid and connect two adjacent first parts 1a of the braided tape 1, so as to braid and connect the braided tape 1 and the insert 3.
[0196] In this embodiment, the braided wire 6 braids and connects the braided tape 1 and the insert 3 in the width direction (i.e., the Y direction) of the braided watchband 10, increasing the braided and stitched area between the tail end 12 of the braided tape 1 and the insert 3, thereby improving the connection stability between the braided tape 1 and the insert 3.
[0197] Among them, the number of the first openings 34 can be multiple, the number of the second openings 35 can be multiple, and the first openings 34 and the second openings 35 are arranged in a one-to-one correspondence in the vertical direction (i.e., the Z direction) of the first outer surface 32 of the insert 3, so as to increase the braided and stitched area between the tail end 12 of the braided tape 1 and the insert 3.
[0198] Please refer to Figure 15A and Figure 15B , Figure 15AYes Figure 3 Schematic structural diagram of the insert 3 in the woven watch band 10 shown in some other embodiments; Figure 15B Yes Figure 15A Schematic structural diagram of the insert 3 woven and connected to the woven band 1 in some embodiments.
[0199] In some embodiments, at least one of the first outer surface 32 and the second outer surface 33 may be provided with a slotted opening 37, and the slotted opening 37 houses a part of the braided wire 6. The slotted opening 37 provided on the first outer surface 32 communicates with two adjacent first openings 34, and the slotted opening 37 provided on the second outer surface 33 communicates with two adjacent second openings 35.
[0200] In this embodiment, by providing the slotted opening 37, the braided wire 6 located on the first outer surface 32 and / or the second outer surface 33 can be housed, thereby improving the flatness of the outer surface of the insert 3 and facilitating the insertion of the insert 3 into the end piece 2. In addition, the side wall of the slotted opening 37 can form a limit for the braided wire 6 to prevent the braided wire 6 wound around the insert 3 from loosening, which is beneficial to improving the connection stability between the woven band 1 and the insert 3.
[0201] Please refer to in combination with Figure 5C 、 Figure 14A and Figure 14B In some embodiments, the buckle 31 is disposed closer to the end 5 of the woven watch band 10 than the first opening 34 and the second opening 35.
[0202] In this embodiment, the position setting of the buckle 31 can avoid affecting the passing of the braided wire 6 through two adjacent first openings 34 and two adjacent second openings 35, which is beneficial to the weaving and stitching of the woven band 1 and the insert 3. In addition, by disposing the buckle 31 at a position close to the end 12 of the woven watch band 10, it is beneficial to insert the insert 3 into the end piece 2, and can improve the connection stability between the end piece 2 and the insert 3 after the buckle 31 is inserted into the bayonet 211.
[0203] Please refer to in combination with Figure 14A 、 Figure 14B and Figure 16 , Figure 16 Yes Figure 3 Schematic structural diagram of the insert 3 in the woven watch band 10 shown in some other embodiments.
[0204] In some embodiments, the length direction of the first opening 34 may be parallel to the length direction of the woven watch band 10, and the length direction of the second opening 35 may be parallel to the length direction of the woven watch band 10.
[0205] In this embodiment, by setting the length directions of the first opening 34 and the second opening 35 to be parallel to the X direction, the weaving area of the braided wire 6 connecting the braided belt 1 and the insert 3 in the X direction is increased, thereby improving the connection stability between the braided belt 1 and the insert 3. In addition, the number of the first opening 34 and the second opening 35 can also be increased, thereby increasing the number of weaving loops of the braided wire 6, and further increasing the weaving area of the braided connection between the braided belt 1 and the insert 3, which is beneficial to improving the connection stability between the braided belt 1 and the insert 3.
[0206] Please refer to again Figure 9B and Figure 13B , in some embodiments, the braided wire 6 may include multiple loops of line segments 61. Among them, some of the line segments 61 are woven along the length direction of the braided belt 10 in the manner of the Figure 9B illustrated embodiment, and some other line segments 61 are woven along the width direction of the braided belt 10 in the manner of the Figure 13B illustrated embodiment to achieve staggered weaving, thereby improving the structural stability of the braided wire 6 connecting the braided belt 1 and the insert 3.
[0207] In some other embodiments, the braided wire 6 can also be woven and connected to the insert 3 and the braided belt 1 on one side of the first outer surface 32 of the insert 3, and the braided wire 6 can be woven and connected to the insert 3 and the braided belt 1 on one side of the second outer surface 33 of the insert 3. In other words, the braided wire 6 can be woven and connected to the insert 3 and the braided belt 1 on the opposite sides of the insert 3 respectively.
[0208] It should be noted that the weaving method of the braided wire 6 in the embodiments of the present application is schematically shown, and the weaving method of the braided wire 6 is not limited. The braided wire 6 can adopt existing weaving means to weave and connect the insert 3 and the braided belt 1. For example, the braided wire 6 can be woven and connected to the insert 3 and the braided belt 1 by weaving methods such as cross weaving, branch weaving, cuboid weaving, herringbone weaving, etc.
[0209] It should be noted that in some other embodiments, the braided belt 10 provided in the embodiments of the present application can also be applied to other braided belt products, such as canvas bag belts, safety belts, decorative belts for clothing, etc.
[0210] It should be noted that without conflict, the embodiments and the features in the embodiments in the present application can be combined with each other. Any combination of the features in different embodiments is also within the protection scope of the present application. That is to say, the above-described multiple embodiments can also be arbitrarily combined according to actual needs.
[0211] It should be noted that all the above drawings are exemplary illustrations of the present application and do not represent the actual size of the product. And the dimensional proportional relationship between the components in the drawings is not used as a limitation to the actual product of the present application.
[0212] The above are only some embodiments and implementation manners of the present application. The protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or substitutions within the technical scope disclosed in the present application, and all should be covered within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.
Claims
1. A woven watchband (10), characterized in that, it includes a woven belt (1), an insert (3) and a tail piece (2). One end of the woven belt (1) is woven and connected to the insert (3), at least part of the insert (3) is embedded in the tail piece (2), and the insert (3) is snap - connected to the tail piece (2).
2. The woven watchband (10) according to claim 1, characterized in that, the insert (3) includes a buckle (31); the tail piece (2) has an inner cavity (33), at least part of the insert (3) is received in the inner cavity (33), a bayonet (211) is provided in the inner cavity (33), and the buckle (31) is embedded in the bayonet (211).
3. The woven watchband (10) according to claim 2, characterized in that, the buckle (31) includes a first part (31a) and a second part (31b). The height of the first part (31a) of the buckle (31) is greater than that of the second part (31b) of the buckle (31), and the first part (31a) of the buckle (31) is closer to the tail end (12) of the woven watchband (10) than the second part (31b) of the buckle (31).
4. The woven watchband (10) according to claim 3, characterized in that, the first part (31a) of the buckle (31) includes an inclined surface (311). The height of the first end (3111) of the inclined surface (311) is lower than that of the second end (3112) of the inclined surface (311). Wherein, the first end (3111) of the inclined surface (311) is farther from the second part (31b) of the buckle (31) than the second end (3112) of the inclined surface (311).
5. The woven watchband (10) according to claim 3 or 4, characterized in that, the bayonet (211) includes a first part (211a) and a second part (211b). The depth of the first part (211a) of the bayonet (211) is greater than the depth of the second part (211b) of the bayonet (211). The first part (31a) of the buckle (31) is embedded in the first part (211a) of the bayonet (211), and the second part (31b) of the buckle (31) is embedded in the second part (211b) of the bayonet (211).
6. The woven watchband (10) according to any one of claims 2 to 5, characterized in that, the height of the buckle (31) is greater than the depth of the bayonet (211).
7. The woven watchband (10) according to any one of claims 2 to 6, characterized in that, the insert (3) has a first outer surface (32) and a second outer surface (33). The first outer surface (32) and the second outer surface (33) are arranged back - to - back, and a plurality of the buckles (31) are respectively arranged on the first outer surface (32) and the second outer surface (33); The inner cavity (33) has a first inner surface (212) and a second inner surface (213), the first inner surface (212) and the second inner surface (213) are disposed opposite to each other, and a plurality of the bayonets (211) are respectively disposed on the first inner surface (212) and the second inner surface (213) of the inner cavity (33).
8. The woven watchband (10) according to claim 7, wherein, the buckles (31) disposed on the first outer surface (32) and the buckles (31) disposed on the second outer surface (33) are arranged in a staggered manner, and the bayonets (211) disposed on the first inner surface (212) and the bayonets (211) disposed on the second inner surface (213) are arranged in a staggered manner.
9. The woven watchband (10) according to claim 7 or 8, wherein, in the vertical direction of the first outer surface (32), the distance between the first inner surface (212) and the second inner surface (213) is greater than the distance between the first outer surface (32) and the second outer surface (33).
10. The woven watchband (10) according to any one of claims 7 to 9, wherein, a first opening (34) and a second opening (35) are respectively provided on the first outer surface (32) and the second outer surface (33); the woven watchband (10) further includes a woven thread (6), and the woven thread (6) passes through a first portion (1a) of the woven band (1), the first opening (34), the second opening (35), and a second portion (1b) of the woven band (1), and is woven to connect the woven band (1) and the insert (3).
11. The woven watchband (10) according to claim 10, wherein, the first portion (1a) of the woven band (1) and the second portion (1b) of the woven band (1) are different portions in the length direction of the woven watchband (10); or, the first portion (1a) of the woven band (1) and the second portion (1b) of the woven band (1) are different portions in the width direction of the woven watchband (10).
12. The woven watchband (10) according to claim 10 or 11, wherein, the first openings (34) are a plurality of the first openings (34) arranged at intervals in the width direction of the woven watchband (10), and the second openings (35) are one or more of the second openings (35) disposed opposite to the first openings (34) in the vertical direction of the first outer surface (32).
13. The woven watchband (10) according to any one of claims 10 to 12, wherein, at least one of the first outer surface (32) and the second outer surface (33) is provided with a slot (37), and the slot (37) houses a part of the woven thread (6).
14. The woven watchband (10) according to any one of claims 10 to 13, wherein, the buckle (31) is disposed closer to the tail end (5) of the woven watchband (10) than the first opening (34) and the second opening (35).
15. The braided watchband (10) according to any one of claims 10 to 14, characterized in that, the sum of the number of braided layers of the braided wire (6) and the number of braided layers of the tail end (12) of the braided watchband (1) is in the range of 2 to 20, and the number of braided meshes of the braided wire (6) and the number of braided meshes of the tail end (12) of the braided watchband (1) are in the range of 4 to 20,000.
16. The braided watchband (10) according to any one of claims 10 to 15, characterized in that, the material of the braided watchband (1) includes at least one of nylon, leather, and silicone wire, and the material of the braided wire (6) includes at least one of nylon and silicone wire.
17. The braided watchband (10) according to any one of claims 1 to 16, characterized in that, the material of the insert (3) includes at least one of metal, plastic, ceramic, and composite material, and the material of the end piece (2) includes at least one of metal, plastic, ceramic, and composite material.
18. The braided watchband (10) according to any one of claims 1 to 17, characterized in that, the braided watchband (10) further includes an adhesive layer (4), the adhesive layer (4) is located between the insert (3) and the end piece (2), and the adhesive layer (4) bonds the insert (3) and the end piece (2).
19. The braided watchband (10) according to any one of claims 1 to 18, characterized in that, the end piece (2) and the insert (3) are arranged at the tail end (12) of the braided watchband (1).
20. A wearable device (1000), characterized in that, it includes the braided watchband (10) according to any one of claims 1 to 19 and a main body (200), and the main body (200) is connected to the braided watchband (10).