Anti-shaking line body and hand ornament data line
By using a spiral structure design of elastic wire and wire mesh, combined with a connector and locking plate, the problem of non-elasticity of conductive wire is solved, achieving a flexible and long-lasting anti-sway wire body, suitable for high-sway data transmission and special occasions.
Patent Information
- Application Number
- CN202510462183.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2045-04-14
AI Technical Summary
Existing conductive wires lack elasticity due to structural limitations, failing to meet high swing performance requirements, and have limited bending resistance, thus restricting their application range.
It adopts an elastic wire and wire mesh structure. The wire mesh is made up of several wires wound together. The wires form a spiral structure, which is flexible and stretchable. Combined with the design of the connecting seat and locking plate, it forms a stretchable anti-shaking wire body.
It achieves flexibility, stretchability, and long swing life of the anti-swing wire, making it suitable for high-swing data transmission and special occasions, and easy to wear and carry.
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Figure CN120221168B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of data connection line, in particular to an anti-shaking line body and a hand ornament data line. BACKGROUND
[0002] In recent years, smart wear has become a hot spot in the development of the technology industry. In the connection and wiring of wearable electronic devices, conductive connecting pieces need to meet the requirements of miniaturization, good elasticity, high electrical conductivity, etc., which is related to the stability and reliability of electrical signal transmission. The conductive wires on the market are widely used as power lines, data lines, audio lines, etc. The conductive wires of the prior art are generally composed of copper wire, core wire, filler, shielding layer and insulating layer. Such conductive wires are not elastic or cannot be used with the stretching mechanism to realize stretching, which limits the use of the length by consumers. The bending resistance of the traditional conductive wire can only meet 50,000 times under the limitation of structure, and the wire body is relatively rigid. Such conductive wires are not suitable for application in some special occasions with high requirements for the swinging performance of the conductive wire, such as high-swing data transmission, robot arm conductive, handle wire, etc. SUMMARY
[0003] The present application is to overcome the above-mentioned deficiencies, and aims to provide a technical solution to solve the above-mentioned problems.
[0004] An anti-shaking line body, comprising an elastic line and a wire mesh, the elastic line being elastic and having a stretchable length, the wire mesh being wrapped outside the elastic line, the wire mesh being formed by winding a plurality of wires, the plurality of wires being in a spiral trend along the axial direction of the elastic line, the plurality of wires being divided into a first wire group and a second wire group, the wires of the first wire group and the wires of the second wire group being opposite in spiral direction, and the wires of the first wire group and the wires of the second wire group being interpenetrated and woven together.
[0005] As a further scheme of the present application: if the number of wires is even, the number of wires of the first wire group is equal to the number of wires of the second wire group, the wires of the first wire group are parallel to each other and in a counterclockwise spiral trend along the axial direction of the elastic line, first gaps are formed between any two adjacent wires of the first wire group, first coils are respectively formed between the wires of the first wire group and the elastic line, the wires of the second wire group are parallel to each other and in a clockwise spiral trend along the axial direction of the elastic line, second gaps are formed between any two adjacent wires of the second wire group, second coils are respectively formed between the wires of the second wire group and the elastic line, the wires of the second wire group are interpenetrated in the first gaps and the first coils, and the wires of the first wire group are interpenetrated in the second gaps and the second coils.
[0006] As a further scheme of the present application: if yes, the number of the wires is odd, the first wire group is one wire less than the second wire group, the wire net further comprises a fixed wire, the wires of the first wire group and the fixed wire are parallel to each other and spirally arranged along the axis of the elastic wire in a counterclockwise direction, the first gap is formed between the fixed wire and its adjacent wire and between any two adjacent wires of the first wire group, the first coil is formed between the fixed wire and the elastic wire and between the wire of the first wire group and the elastic wire respectively, the wires of the second wire group are parallel to each other and spirally arranged along the axis of the elastic wire in a clockwise direction, the second gap is formed between any two adjacent wires of the second wire group, the second coil is formed between the wire of the second wire group and the elastic wire respectively, the wires of the second wire group are inserted into the first gap and the first coil, and the wires of the first wire group are inserted into the second gap and the second coil.
[0007] As a further scheme of the present application: the material of the elastic wire is one or a combination of silicone, rubber, fiber and resin.
[0008] The present application further provides a hand ornament data line, which comprises the anti-shaking wire body, one end of the anti-shaking wire body is provided with a first connecting seat with a first end head, the other end of the anti-shaking wire body is provided with a second connecting seat with a second end head, the end face of the first connecting seat is provided with a first accommodating cavity for inserting the second end head, the end face of the second connecting seat is provided with a second accommodating cavity for inserting the first end head, and the first end head and the second end head can be respectively inserted into the first accommodating cavity and the second accommodating cavity, so that the anti-shaking wire body is connected in a ring shape.
[0009] As a further scheme of the present application: one end of the first connecting seat is provided in a stepped shape and is formed with a first stepped surface, a first contact surface and a second stepped surface, the first accommodating cavity is arranged on the first stepped surface, and the first end head is arranged on the second stepped surface, one end of the second connecting seat is provided in a stepped shape and is formed with a third stepped surface, a second contact surface and a fourth stepped surface, the second accommodating cavity is arranged on the third stepped surface, and the second end head is arranged on the fourth stepped surface, and when the first end head and the second end head are respectively inserted into the first accommodating cavity and the second accommodating cavity, the first contact surface and the second contact surface are attached to each other.
[0010] As a further scheme of the present application: further comprising a locking plate, the locking plate is composed of a top plate and side plates connected on both sides of the top plate, the two side plates are both provided with a pivot hole, the two sides of the first connecting seat are provided with a pivot shaft matched with the pivot hole, the top plate can be pivotally rotated to be attached to the second connecting seat, the end of the side plate is bent to form a clamping part, and the second connecting seat is provided with a groove, when the top plate is attached to the second connecting seat, the clamping part is clamped with the groove.
[0011] As a further scheme of the present application: the end of the top plate is bent to form a folded edge part.
[0012] As a further scheme of the present application, the anti-shaking line body is sleeved with a plurality of decorative beads.
[0013] As a further scheme of the present application, the material of the decorative beads is one or a combination of more than one of crystal, glass and wood.
[0014] Compared with the prior art, the present application has the following beneficial effects:
[0015] 1. The anti-shaking line body structure has the advantages of flexibility, stretchability and good elasticity, so that the anti-shaking line body has certain elastic recovery performance, has high swing life and stretch life, and can be more flexibly applied to high swing data transmission, robot arms and handles and the like.
[0016] 2. The hand ornament data line has the anti-shaking line body with elasticity and scalable length, so that when worn, the anti-shaking line body is connected at the end to form a ring, and then the elastic force of the anti-shaking line body is directly worn on the hand, which is convenient to wear.
[0017] Additional aspects and advantages of the present application will be in part apparent and in part pointed out hereinafter. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only show some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor under the premise of the drawings.
[0019] Figure 1 is a first embodiment structure schematic diagram of the anti-shaking line body of the present application.
[0020] Figure 2 is a second embodiment structure schematic diagram of the anti-shaking line body of the present application.
[0021] Figure 3 is a third embodiment structure schematic diagram of the anti-shaking line body of the present application.
[0022] Figure 4 is a first connecting seat part structure schematic diagram of the present application.
[0023] Figure 5 is a top plate part structure schematic diagram of the present application.
[0024] Figure 6 is a groove part structure schematic diagram of the present application.
[0025] In the drawings:
[0026] 1, anti-shake line body, 11, elastic line, 12, line net, 13, wire, 140, first wire group, 141, first gap, 142, first coil, 150, second wire group, 151, second gap, 152, second coil, 16, fixed line;
[0027] 2, first connecting seat, 21, first end, 22, first accommodating cavity, 23, first step surface, 24, first contact surface, 25, second step surface, 26, pivot;
[0028] 3, second connecting seat, 31, second end, 32, second accommodating cavity, 33, third step surface, 34, second contact surface, 35, fourth step surface, 36, groove;
[0029] 4, locking plate, 41, top plate, 42, side plate, 43, pivot hole, 44, clamping part, 45, folding edge part;
[0030] 5, decorative beads. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present application will be described clearly and completely below. Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0032] Please refer to Figures 1-3 In the embodiments of the present application, an anti-shake line body 1 includes an elastic line 11 and a line net 12. The elastic line 11 has elasticity and its length is scalable. The line net 12 is wrapped outside the elastic line 11. The line net 12 is formed by winding a plurality of wires 13. The plurality of wires 13 have a spiral trend along the axial direction of the elastic line 11. The plurality of wires 13 are divided into a first wire group 140 and a second wire group 150. The wires 13 of the first wire group 140 and the wires 13 of the second wire group 150 have opposite spiral directions. The wires 13 of the first wire group 140 and the wires 13 of the second wire group 150 are woven together.
[0033] In the process of being pulled or bent, the anti-shake line body 1 provided by the present application can drive the line net 12 formed by the wires 13 to deform through the elastic line 11, adapt to the process of stretching and bending, and have a tendency to automatically retract. Therefore, the anti-shake line body 1 has certain elastic recovery performance, has high swing life and tensile life, and can be more flexibly applied to occasions such as high-swing data transmission, robot arms, and handles.
[0034] The line net 12 of the present application has different embodiments according to the number of wires 13. The first embodiment is referred toFigure 1 In the embodiment, the number of the conductive wires 13 is even, the number of the conductive wires 13 of the first conductive wire group 140 is equal to the number of the conductive wires 13 of the second conductive wire group 150, the conductive wires 13 of the first conductive wire group 140 are parallel to each other and spirally arranged along the axial direction of the elastic wire 11 in a counterclockwise direction, the first gaps 141 are formed between any two adjacent conductive wires 13 of the first conductive wire group 140, the first coils 142 are respectively formed between the conductive wires 13 of the first conductive wire group 140 and the elastic wire 11, the conductive wires 13 of the second conductive wire group 150 are parallel to each other and spirally arranged along the axial direction of the elastic wire 11 in a clockwise direction, the second gaps 151 are formed between any two adjacent conductive wires 13 of the second conductive wire group 150, the second coils 152 are respectively formed between the conductive wires 13 of the second conductive wire group 150 and the elastic wire 11, the conductive wires 13 of the second conductive wire group 150 are inserted into the first gaps 141 and the first coils 142, and the conductive wires 13 of the first conductive wire group 140 are inserted into the second gaps 151 and the second coils 152.
[0035] In the above embodiment, the spiral structure formed by the first conductive wire group 140 is fixed by the second conductive wire group 150, the two groups of conductive wires 13 are interlaced and wound on the elastic wire 11, so that the wire net 12 is more stably wrapped around the elastic wire 11 and is not easy to fall off, and according to the Figure 1 As shown in the figure, the first conductive wire group 140 and the second conductive wire group 150 are spirally wound around the elastic wire 11, the spiral direction of the first conductive wire group 140 is opposite to the spiral direction of the second conductive wire group 150, that is, the conductive wires 13 of the first conductive wire group 140 and the conductive wires 13 of the second conductive wire group 150 are interlaced and woven, and each of them forms a spiral shape in the opposite direction, specifically, in the weaving process, while the conductive wires 13 of the second conductive wire group 150 are spirally wound, they are inserted into the first gaps 141 of the first conductive wire group 140, along the direction of spiral extension, after the conductive wires 13 of the second conductive wire group 150 are extended from the first gaps 141, they are inserted into the adjacent first coils 142 close to the surface of the elastic wire 11, and then they are inserted into another first gap 141 away from the surface of the elastic wire 11, while the conductive wires 13 of the first conductive wire group 140 are spirally wound, they are inserted into the second gaps 151 of the second conductive wire group 150, along the direction of spiral extension, after the conductive wires 13 of the first conductive wire group 140 are extended from the second gaps 151, they are inserted into the adjacent second coils 152 close to the surface of the elastic wire 11, and then they are inserted into another second gap 151 away from the surface of the elastic wire 11, and the cycle is repeated, forming the wire net 12, which produces deformation with increased pitch when stretched and bent, so that the anti-shaking wire body 1 has the advantages of flexibility, stretchability, good elasticity and the like.
[0036] The second embodiment of the wire net 12 of the present application is described with reference to Figure 2In the embodiment, the number of the conductive wires 13 is odd, the first conductive wire group 140 is one conductive wire 13 less than the second conductive wire group 150, the wire net 12 further comprises a fixed wire 16, the conductive wires 13 of the first conductive wire group 140 and the fixed wire 16 are parallel to each other and spirally arranged along the axis of the elastic wire 11 in a counterclockwise direction, the first gaps 141 are formed between the fixed wire 16 and the adjacent conductive wire 13 and between any two adjacent conductive wires 13 in the first conductive wire group 140, the first coils 142 are respectively formed between the fixed wire 16 and the elastic wire 11 and between the conductive wires 13 of the first conductive wire group 140 and the elastic wire 11, the conductive wires 13 of the second conductive wire group 150 are parallel to each other and spirally arranged along the axis of the elastic wire 11 in a clockwise direction, the second gaps 151 are formed between any two adjacent conductive wires 13 in the second conductive wire group 150, the second coils 152 are respectively formed between the conductive wires 13 of the second conductive wire group 150 and the elastic wire 11, the conductive wires 13 of the second conductive wire group 150 are inserted into the first gaps 141 and the first coils 142, and the conductive wires 13 of the first conductive wire group 140 are inserted into the second gaps 151 and the second coils 152. In the embodiment, the spiral structure formed by the second conductive wire group 150 is fixed by the first conductive wire group 140 and the fixed wire 16, and the winding mode is the same as that of the first embodiment, which will not be described herein again.
[0037] On the basis of the above, the application further provides an embodiment of the wire net 12, referring to Figure 3 In the embodiment, the wire net comprises a conductive wire 13 and a fixed wire 16, the fixed wire 16 is spirally arranged along the axis of the elastic wire 11 in a counterclockwise direction, the spiral arrangement of the fixed wire 16 forms a plurality of first gaps 141 and first coils 142, the conductive wire 13 is spirally arranged along the axis of the elastic wire 11 in a clockwise direction, the spiral arrangement of the conductive wire 13 forms a plurality of second gaps 151 and second coils 152, the conductive wire 13 is inserted into the first gaps 141 and the first coils 142, and the fixed wire 16 is inserted into the second gaps 151 and the second coils 152. In the embodiment, the spiral structure formed by the conductive wire 13 is fixed by the fixed wire 16, and the winding mode is the same as that of the first embodiment, which will not be described herein again.
[0038] In order to make the elastic wire 11 have better elasticity, the material of the elastic wire 11 is one or a combination of more than one of silicone, rubber, fiber and resin.
[0039] Please refer to Figures 4-6The application further provides a hand ornament data line, comprising the anti-shaking line body 1, one end of the anti-shaking line body 1 is provided with the first connecting seat 2 with the first end head 21, the other end of the anti-shaking line body 1 is provided with the second connecting seat 3 with the second end head 31, the end surface of the first connecting seat 2 is provided with the first accommodating cavity 22 for inserting the second end head 31, the end surface of the second connecting seat 3 is provided with the second accommodating cavity 32 for inserting the first end head 21, and the first end head 21 and the second end head 31 can be inserted into the first accommodating cavity 22 and the second accommodating cavity 32 respectively, so that the anti-shaking line body 1 is connected at the head and tail to form a ring shape.
[0040] The hand ornament data line provided by the application can insert the first end head 21 and the second end head 31 into the first accommodating cavity 22 and the second accommodating cavity 32 when in use, so that the anti-shaking line body 1 forms a ring shape and is worn on the user's hand, facilitating carrying, the first accommodating cavity 22 and the second accommodating cavity 32 can shield the first end head 21 and the second end head 31, avoiding the first end head 21 and the second end head 31 being exposed, reducing damage to the first end head 21 and the second end head 31, prolonging the service life of the data line, in addition, the anti-shaking line body 1 with elasticity and a telescopic length is arranged, when wearing, the anti-shaking line body 1 is connected at the head and tail to form a ring shape, and then the elastic force of the anti-shaking line body 1 is used to directly wear on the hand, facilitating wearing.
[0041] One end of the first connecting seat 2 is arranged in a stepped shape and is formed with a first stepped surface 23, a first contact surface 24 and a second stepped surface 25, the first accommodating cavity 22 is arranged on the first stepped surface 23, and the first end head 21 is arranged on the second stepped surface 25, one end of the second connecting seat 3 is arranged in a stepped shape and is formed with a third stepped surface 33, a second contact surface 34 and a fourth stepped surface 35, the second accommodating cavity 32 is arranged on the third stepped surface 33, and the second end head 31 is arranged on the fourth stepped surface 35, when the first end head 21 and the second connecting seat 3 are inserted into the first accommodating cavity 22 and the second accommodating cavity 32 respectively, the first contact surface 24 and the second contact surface 34 are attached. In this way, the first connecting seat 2 and the second connecting seat 3 can be accurately matched and are not easy to shift up and down.
[0042] The locking plate 4 is composed of a top plate 41 and two side plates 42 connected to the two sides of the top plate 41, and the two side plates 42 are both provided with a pivot hole 43, and the two sides of the first connecting seat 2 are provided with a pivot 26 matched with the pivot hole 43, and the top plate 41 can rotate with the pivot 26 to be attached to the second connecting seat 3, and the end of the side plate 42 is bent to form a clamping part 44, and the second connecting seat 3 is provided with a groove 36, and when the top plate 41 is attached to the second connecting seat 3, the clamping part 44 is clamped with the groove 36. When the first end 21 and the second connecting seat 3 are inserted into the first accommodating cavity 22 and the second accommodating cavity 32 respectively, the locking plate 4 can be rotated to make the clamping part 44 clamped in the groove 36, thereby improving the connection tightness between the first connecting seat 2 and the second connecting seat 3.
[0043] The end of the top plate 41 is bent to form a folded edge part 45. When it is needed to separate the first connecting seat 2 and the second connecting seat 3, the locking plate 4 can be lifted by the folded edge part 45 to make the clamping part 44 disengaged from the groove 36, which is convenient for use.
[0044] The anti-shaking line body 1 is sleeved with a plurality of decorative beads 5. In this way, the appearance of the data line is increased, which is more in line with the love of the fashion crowd.
[0045] The material of the decorative bead 5 is one or a combination of more than one of crystal, glass and wood. By reasonably selecting the material combination, the decorative bead 5 can meet the needs of different aesthetic concepts of people.
[0046] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and the present application can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and range of equivalent elements of the claims are intended to be included in the present application.
Claims
1. An anti-wobble body characterized by, The anti-shaking line body comprises: an elastic line, which is elastic and has a length that can be extended or contracted; a wire net, which is wrapped outside the elastic line, is formed by a plurality of guide wires, and has a spiral trend along the axial direction of the elastic line, the plurality of guide wires are divided into a first guide wire group and a second guide wire group, the guide wires of the first guide wire group and the guide wires of the second guide wire group have opposite spiral directions, and the guide wires of the first guide wire group and the guide wires of the second guide wire group are interlaced together; the number of the guide wires is odd, the first guide wire group is one guide wire less than the second guide wire group, the wire net further comprises a fixed wire, the guide wires of the first guide wire group and the fixed wire have an anticlockwise spiral trend along the axial direction of the elastic line, first gaps are formed between the fixed wire and its adjacent guide wires and between any two adjacent guide wires of the first guide wire group, first coils are respectively formed between the fixed wire and the elastic line and between the guide wires of the first guide wire group and the elastic line, the guide wires of the second guide wire group have a clockwise spiral trend along the axial direction of the elastic line, second gaps are formed between any two adjacent guide wires of the second guide wire group, second coils are respectively formed between the guide wires of the second guide wire group and the elastic line, the guide wires of the second guide wire group are interlaced in the first gaps and the first coils, and the guide wires of the first guide wire group are interlaced in the second gaps and the second coils.
2. The anti-wobble body of claim 1, wherein: The material of the elastic line is one or a combination of silicone, rubber, fiber and resin.
3. A hand accessory data cord, characterized by: The anti-shaking line body comprises:
4. The hand accessory data cord of claim 3, wherein: the anti-shaking line body comprises:
5. The hand accessory data cord of claim 3, wherein: the first connecting seat is provided with a first stepped surface, a first contact surface and a second stepped surface, the first accommodating cavity is arranged on the first stepped surface, and the first end head is arranged on the second stepped surface; 6. The hand accessory data cord of claim 5, wherein: the second connecting seat is provided with a third stepped surface, a second contact surface and a fourth stepped surface, the second accommodating cavity is arranged on the third stepped surface, and the second end head is arranged on the fourth stepped surface; 7. The hand accessory data cord of claim 3, wherein: when the first end head and the second end head are respectively inserted into the first accommodating cavity and the second accommodating cavity, the first contact surface and the second contact surface are attached to each other.
8. The hand accessory data cord of claim 7, wherein: The anti-shaking line body further comprises a locking plate, which is composed of a top plate and side plates connected on both sides of the top plate, both side plates are provided with a pivot hole, both sides of the first connecting seat are provided with a pivot shaft matched with the pivot hole, the top plate can be pivotally rotated to be attached to the second connecting seat, the end of the side plate is bent to form a clamping part, the second connecting seat is provided with a groove, and when the top plate is attached to the second connecting seat, the clamping part is clamped with the groove. The end of the top plate is bent to form a folded edge part. A plurality of decorative beads are arranged on the anti-shaking line body. The material of the decorative beads is one or a combination of crystal, glass and wood.
Citation Information
Patent Citations
Novel telescopic wire and manufacturing method thereof
CN112366025A
Multifunctional waterproof bracelet data line wireless charging line
CN213753375U