CN106617353A - Wire structure and intelligent clothes - Google Patents

Wire structure and intelligent clothes Download PDF

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Publication number
CN106617353A
CN106617353A CN201610971813.4A CN201610971813A CN106617353A CN 106617353 A CN106617353 A CN 106617353A CN 201610971813 A CN201610971813 A CN 201610971813A CN 106617353 A CN106617353 A CN 106617353A
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China
Prior art keywords
wire
fold
fabric
wires
conductor structure
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Granted
Application number
CN201610971813.4A
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Chinese (zh)
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CN106617353B (en
Inventor
王键强
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ZHEJIANG HUAER TEXTILE TECHNOLOGY Co Ltd
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ZHEJIANG HUAER TEXTILE TECHNOLOGY Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN201610971813.4A priority Critical patent/CN106617353B/en
Publication of CN106617353A publication Critical patent/CN106617353A/en
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Publication of CN106617353B publication Critical patent/CN106617353B/en
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Classifications

    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D1/00Garments
    • A41D1/002Garments adapted to accommodate electronic equipment
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D27/00Details of garments or of their making

Abstract

The embodiment of the invention provides a wire structure and intelligent clothes. The wire structure includes fabric serving as a wire carrier, and wires arranged on the fabric, wherein the stretchability of the fabric is higher than that of the wires, extensile wrinkle structures are arranged on the fabric, the wires slidably pass through wrinkles, and the extending direction of the wrinkles is same as the stretchable direction of the wires. Since the wrinkles are extended when the fabric is stretched, in the wrinkle extending process, a part of stretching energy is consumed, energy applied on the wires is thus reduced, and pulling force reduction is achieved. On the basis that mechanical properties of the wires are constant, since the wrinkles reduce the pulling force, the probability of wire parting is reduced and the stretching resistance of the wires is enhanced.

Description

Conductor structure and intelligent clothing
Technical field
The present invention relates to intelligence wearing technology, more particularly to a kind of conductor structure and intelligent clothing.
Background technology
Because intelligent clothing needs to measure various human body physiological datas, so as to be integrated with intelligent clothing The electronic devices such as multiple sensors, processor, these electronic devices operationally, can be related to power and data transfer is asked Topic.
In the prior art, wearable circuit is powered and during data transfer to electronic device, often using wire this Plant the mode that cost is more cheap and is easily achieved.
But during wire to be applied to intelligent clothing, just, it can be seen that because intelligent clothing needs the life to human body Reason data be acquired, thus, intelligent clothing compared to traditional clothing with greater need for laminating human body, frequently with higher elasticity Fabric makes;But wire does not then have draftability, during the intelligent clothing of dress, when fabric is stretched, with fabric phase Fixed wire is subject to larger pulling force, the risk that there is wire fracture.
The content of the invention
The present invention provides a kind of conductor structure and intelligent clothing, for strengthening the stretch-resistance of wire.
To reach above-mentioned purpose, embodiments of the invention are adopted the following technical scheme that:
First aspect, there is provided a kind of conductor structure, including the fabric as wire carrier and being arranged on the fabric Wire, the tensility of the fabric is better than the tensility of the wire;Extendable pleat is provided with the fabric Wrinkle structure, the wire is slidably disposed through the fold;The extension direction of the fold and the stretchable direction of the wire It is identical.
Alternatively, as the first possible implementation of first aspect, the extension direction of the fold is knitted with described The thing probability highest direction that is stretched is identical.
Alternatively, as second possible implementation of first aspect, through hole is provided with the fold, it is described to lead Line is slidably disposed through the through hole.
Alternatively, as the third possible implementation of first aspect, the wire is knitted with the formation fold Line mutually weaves.
Alternatively, as the 4th kind of possible implementation of first aspect, the fold is arc.
Alternatively, as the 5th kind of possible implementation of first aspect, a plurality of wire intersects to form net Shape structure, the cancellated mesh parallelogram;In the parallelogram, it is provided with the fabric described Fold.
Second aspect, there is provided a kind of intelligent clothing, including the conductor structure described in first aspect.
Alternatively, as the first possible implementation of second aspect, extension direction and the human body of the fold Vertical direction or horizontal direction are consistent.
Conductor structure provided in an embodiment of the present invention and intelligent clothing, by including the fabric as wire carrier and setting Wire on fabric, the tensility of the fabric is better than the tensility of wire, wherein, it is provided with fabric extendable Pleated structure, wire is slidably disposed through the fold, and the extension direction of fold is identical with the stretchable direction of wire.Due to In the case where fabric is stretched, fold occurs extension, so as in fold spreading process, consume a part of stretching energy Amount, so as to reduce the energy being applied on wire, realizes the purpose for slowing down pulling force.Even wire mechanical performance not On the basis of change, because fold slow down pulling force, so as to reduce the probability that wire is pulled off, the stretch-proof of wire is enhanced Property.
Described above is only the general introduction of technical solution of the present invention, in order to better understand the technological means of the present invention, And can be practiced according to the content of specification, and in order to allow the above and other objects of the present invention, feature and advantage can Become apparent, below especially exemplified by the specific embodiment of the present invention.
Description of the drawings
By the detailed description for reading hereafter preferred embodiment, various other advantages and benefit is common for this area Technical staff will be clear from understanding.Accompanying drawing is only used for illustrating the purpose of preferred embodiment, and is not considered as to the present invention Restriction.And in whole accompanying drawing, it is denoted by the same reference numerals identical part.In the accompanying drawings:
Fig. 1 is a kind of schematic diagram of conductor structure that the embodiment of the present invention one is provided;
Fig. 2 is cancellated schematic diagram;
Fig. 3 is one of schematic diagram of fold 30;
Fig. 4 is the two of the schematic diagram of fold 30;
Fig. 5 is one of schematic diagram of intelligent clothing;
Fig. 6 is the two of the schematic diagram of intelligent clothing.
Specific embodiment
The exemplary embodiment of the disclosure is more fully described below with reference to accompanying drawings.Although showing the disclosure in accompanying drawing Exemplary embodiment, it being understood, however, that may be realized in various forms the disclosure and should not be by embodiments set forth here Limited.On the contrary, there is provided these embodiments are able to be best understood from the disclosure, and can be by the scope of the present disclosure Complete conveys to those skilled in the art.
Conductor structure provided in an embodiment of the present invention and intelligent clothing are described in detail below in conjunction with the accompanying drawings.
Embodiment one
Fig. 1 is a kind of schematic diagram of conductor structure that the embodiment of the present invention one is provided, and the conductor structure may be disposed at fabric On 20, as shown in figure 1, conductor structure includes the fabric 20 and the wire being arranged on the fabric 20 as the carrier of wire 11 11。
Wherein, the tensility of fabric 20 is better than the tensility of wire 11.As shown in figure 1, being provided with fabric 20 The structure of extendable fold 30, wire 11 is slidably disposed through the fold 30.
Due to the extension direction of fold 30 and the stretchable direction of wire 11 it is identical, in the case where fabric 20 is stretched, Fold 30 occurs extension, so as in the spreading process of fold 30, consume a part of tensile energy, so as to reduce applying Energy on wire 11, realizes the purpose for slowing down pulling force.Even on the basis of the mechanical performance of wire 11 is constant, by Pulling force is slow down in fold 30, so as to reduce the probability that wire 11 is pulled off, the stretch-resistance of wire 11 is enhanced.
In conductor structure, some of wire 11 part can be with the fold 30 of fabric face or non-pleated 30 position Place is mutually fixed, and the remainder of wire 11, as shown in figure 1, can then be slidably disposed through these folds 30.
In the case where wire 11 is stretched in company with fabric 20, fold 30 occurs relative while launching with wire 11 Slide, so as to avoid fabric 20 from too stretching wire 11, cause the excessive appearance fracture of the stress of wire 11.
Wherein, when wire 11 can be slidably disposed through these folds 30, specifically there are two kinds of possible implementations.One The mode of kind is that wire 11 can pass through the through hole set by fabric face and pass through fold 30;Another way, can be in fold 30 parts, using wire 11 as a Gent it is different knit line, together woven with the line of knitting for forming fold 30, so as to wire is compiling What the mode knitted was formed through fold 30 knits line, so as to pass through fold 30.
Used as a kind of possible implementation, Fig. 1 illustrates wire 11 and passes through pleat by the through hole set by fabric face Wrinkle 30 when situation, it should be noted that Fig. 1 is only used for schematically describing wire 11 through the mode of fold 30, actually should With in, the direction of fold 30 and wire 11 is not necessarily orthogonal, can also be any angle between 0-90 degree.
In the present embodiment, the structure of extendable fold 30 is provided with fabric 20, wire 11 is slidably disposed through the pleat Wrinkle 30, and the extension direction of fold 30 is identical with the stretchable direction of wire 11.In the case of being stretched in fabric 20, Fold 30 occurs extension, so as in the spreading process of fold 30, consume a part of tensile energy, so as to reduce applying Energy on wire 11, realizes the purpose for slowing down pulling force.Even on the basis of the mechanical performance of wire 11 is constant, by Pulling force is slow down in fold 30, so as to reduce the probability that wire 11 is pulled off, the stretch-resistance of wire 11 is enhanced.
Embodiment two
Because the purpose for arranging fold 30 is, by its extension, to slow down the pulling force of wire 11, therefore, fold 30 is being carried out During setting, it shall be noted that the extension direction of fold 30 should be identical with the probability highest direction that is stretched of fabric 20, can make There is higher probability can extend along draw direction to obtain fold 30.
It can be seen that, when fabric has multiple draw directions, the extension direction of fold 30 is more, can have higher Probability realizes the purpose for slowing down pulling force by extending, and the probability that wire 11 is pulled off is also lower.
Below by taking cancellated wire 11 as shown in Figure 2 as an example, fold 30 is described in detail.
For particularly for cancellated wire 11, a plurality of wire 11 intersects and defines network structure, and this is netted There is structure wire 11 to intersect the multiple mesh 12 to be formed, as shown in Fig. 2 each mesh 12 is in parallel four side Shape.For for each mesh 12, mesh 12 is enclosed by four section leads and formed, also, between two relative section leads It is parallel to each other so that mesh 12 presents parallelogram, wire 11 to intersect and be designated as crosspoint 13 at position.
Fig. 3 is one of schematic diagram of fold 30, and fold 30 as shown in Figure 3 is linear pattern, only with an extending side To the horizontal direction in i.e. Fig. 3.
As a kind of possible implementation, for a cancellated mesh 12 for, on parallel four side Four crosspoints 13 that there should be a plurality of linear fold 30, parallelogram can mutually be fixed with fabric in shape, such as pass through The modes such as sewing mutually fix this four crosspoints 13 with fabric, are stretched in the horizontal direction so as to extend so as to work as fold 30 When opening, this four crosspoints 13 are not in displacement, only can opposed fabric as the wire 11 of the four edges of parallelogram There is relative motion, these folds 30 can be slidably disposed through.In the case of being stretched in company with fabric in network structure, There is relative slip while launching with wire 11 in fold 30, so as to avoid fabric from rupturing the too stretching of wire 11.
But, when the in the vertical direction of fold 30 shown in Fig. 3 is stretched, then there is no this ductility, in net The wire 11 of shape structure is because when deformation occurs in stretching, fold 30 is fixed due to portion with wire 11, on the contrary can be to wire 11 constitute reaction force, cause the too stretching of wire 11 and rupture.
Fold 30 shown in Fig. 3, simply one kind in the way of realization of various folds 30, due to needing fold 30 along stretching Direction has certain ductility, for the fold 30 in Fig. 3, the stretching gone up in the horizontal direction is only adapted to, in vertical direction On have ductility.And the fold 30 in Fig. 4 is arc, at the middle part of fold 30 extending straight up, in fold 30 Both ends are extending upwards in level, thus have the ductility in horizontal direction and vertical direction concurrently on a fold 30. Even if when having the draw direction of multiple high probabilities when fabric 20, fold 30 also disclosure satisfy that the demand of ductility.
Embodiment three
On the basis of previous embodiment, a kind of intelligent clothing is present embodiments provided, include previous embodiment and carried For conductor structure.Specifically, the intelligent clothing is to be cut out to form by elastic fabric, and a plurality of wire is provided with fabric 11, the tensility of fabric is better than the tensility of wire 11.
Fig. 5 is one of schematic diagram of intelligent clothing, as shown in figure 5, fold 30 is linear, it is extending in the horizontal direction, And the stretchable direction of wire 11 is consistent with the extending direction of fold 30, horizontal direction is.This is due to for intelligent clothing For thing, in torso portion, intelligent clothing is stretched probability in the horizontal direction when wearing with highest, vertical direction On the probability that is stretched take second place, therefore, it can according to mode as shown in Figure 4, fold 30 and wire 11 are laid on intelligent clothing, So that the extension direction of fold 30 is consistent with the horizontal direction of human body.
Fig. 6 is in two, Fig. 6 of the schematic diagram of intelligent clothing, to illustrate alternatively possible conductor structure, i.e., a plurality of wire 11 intersect, and define network structure, and there is the network structure wire 11 to intersect the multiple mesh 12 to be formed, each The equal parallelogram of individual mesh 12, and cornerwise both direction of parallelogram should be with the vertical direction of human body and level Direction is consistent.In mesh 12, arc fold 30 is laid on fabric 20, fold 30 vertically can prolong with horizontal direction Exhibition, so as to the extension direction of fold 30 is consistent with the vertical direction of human body and horizontal direction.
In intelligent clothing in Fig. 6, because cornerwise both direction of parallelogram is cancellated maximum Two stretchable directions, and for intelligent clothing, in torso portion, intelligent clothing has in the horizontal direction when wearing There is highest to be stretched probability, the probability that is stretched on vertical direction takes second place, therefore, it can cornerwise the two of parallelogram Individual direction is vertically and horizontally consistent with human body respectively, and wire 11 is avoided to greatest extent in intelligent clothing so as to cross Caused fracture by larger pulling force when thing is worn, meanwhile, reaction force of the wire 11 to fabric is also mitigated, reduce wire Interference caused by the activity of 11 couples of users.
For the wire 11 of other ways of realization, the extension of fold 30 should also be as the vertical direction with human body, or The horizontal direction of human body is consistent, for the application scenarios of other way of realization wires 11 are repeated no more in the present embodiment.
Intelligent clothing provided in an embodiment of the present invention, is provided with the structure of extendable fold 30, wire 11 on fabric 20 The fold 30 is slidably disposed through, and the extension direction of fold 30 is identical with the stretchable direction of wire 11.Due in fabric In the case that 20 are stretched, fold 30 occurs extension, so as in the spreading process of fold 30, consume a part of stretching energy Amount, so as to reduce the energy being applied on wire 11, realizes the purpose for slowing down pulling force.Even in the mechanicalness of wire 11 On the basis of energy is constant, because fold 30 slow down pulling force, so as to reduce the probability that wire 11 is pulled off, wire 11 is enhanced Stretch-resistance.
It should be noted that parallel mentioned in various embodiments of the present invention is not parallel in absolute sense, but It is parallel on relative meaning, due to due to the aspects such as technique realization, there can be certain folder between two parallel wires Angle, the size of this angle should be in the error range that can realize the principle of the invention.
It is further to note that it is not absolute meaning that direction mentioned in various embodiments of the present invention is consistent or identical yet It is identical in justice, but it is identical on relative meaning, it is allowed to there is certain error, as long as the principle of the invention can be realized, Within the scope of the present embodiment.
Finally it should be noted that:Various embodiments above only to illustrate technical scheme, rather than a limitation;To the greatest extent Pipe has been described in detail with reference to foregoing embodiments to the present invention, it will be understood by those within the art that:Its according to So the technical scheme described in foregoing embodiments can be modified, either which part or all technical characteristic are entered Row equivalent;And these modifications or replacement, do not make the essence disengaging various embodiments of the present invention technology of appropriate technical solution The scope of scheme.

Claims (8)

1. a kind of conductor structure, it is characterised in that include the fabric and the wire that is arranged on the fabric as wire carrier, The tensility of the fabric is better than the tensility of the wire;
Extendable pleated structure is provided with the fabric, and the wire is slidably disposed through the fold;
The extension direction of the fold is identical with the stretchable direction of the wire.
2. conductor structure according to claim 1, it is characterised in that drawn with the fabric in the extension direction of the fold Stretch probability highest direction identical.
3. conductor structure according to claim 1, it is characterised in that through hole is provided with the fold, the wire can Slidably pass through the through hole.
4. conductor structure according to claim 1, it is characterised in that the wire is mutually compiled with the line of knitting for forming the fold Knit.
5. the conductor structure according to any one of claim 1-4, it is characterised in that the fold is arc.
6. the conductor structure according to any one of claim 1-4, it is characterised in that a plurality of wire intersects to be formed Network structure, the cancellated mesh parallelogram;
In the parallelogram, the fold is provided with the fabric.
7. a kind of intelligent clothing, it is characterised in that include the conductor structure as described in any one of claim 1-6.
8. intelligent clothing according to claim 7, it is characterised in that the extension direction of the fold and the vertical side of human body To or horizontal direction it is consistent.
CN201610971813.4A 2016-11-04 2016-11-04 Conductor structure and intelligent clothing Active CN106617353B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112022118A (en) * 2020-09-15 2020-12-04 上海定九康科技股份有限公司 Wearable intelligent device

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2003087451A2 (en) * 2002-04-05 2003-10-23 Vikram Sharma Tubular knit fabric and system
CN101035397A (en) * 2007-04-13 2007-09-12 潘舒伟 Electrically-heating vest
EP2700741A1 (en) * 2012-08-22 2014-02-26 King's Metal Fiber Technologies Co., Ltd. Control device for use in woven article
WO2015136521A1 (en) * 2014-03-09 2015-09-17 Healthwatch Ltd. Elastic conductive stripe and methods of utilizing thereof
WO2016181690A1 (en) * 2015-05-14 2016-11-17 グンゼ株式会社 Electrically conductive stretchable knitted fabric and electrically conductive harness

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2003087451A2 (en) * 2002-04-05 2003-10-23 Vikram Sharma Tubular knit fabric and system
CN101035397A (en) * 2007-04-13 2007-09-12 潘舒伟 Electrically-heating vest
EP2700741A1 (en) * 2012-08-22 2014-02-26 King's Metal Fiber Technologies Co., Ltd. Control device for use in woven article
WO2015136521A1 (en) * 2014-03-09 2015-09-17 Healthwatch Ltd. Elastic conductive stripe and methods of utilizing thereof
WO2016181690A1 (en) * 2015-05-14 2016-11-17 グンゼ株式会社 Electrically conductive stretchable knitted fabric and electrically conductive harness

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112022118A (en) * 2020-09-15 2020-12-04 上海定九康科技股份有限公司 Wearable intelligent device

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