CN110301918A - The pressure that braided fabric and the braided fabric are pressurized is distributed method for detecting - Google Patents

The pressure that braided fabric and the braided fabric are pressurized is distributed method for detecting Download PDF

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Publication number
CN110301918A
CN110301918A CN201810259003.5A CN201810259003A CN110301918A CN 110301918 A CN110301918 A CN 110301918A CN 201810259003 A CN201810259003 A CN 201810259003A CN 110301918 A CN110301918 A CN 110301918A
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CN
China
Prior art keywords
braiding
ontology
spun yarns
braided fabric
metal
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Application number
CN201810259003.5A
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Chinese (zh)
Inventor
杜翌群
石正邦
陈竞一
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Southern Taiwan University of Science and Technology
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Southern Taiwan University of Science and Technology
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Priority to CN201810259003.5A priority Critical patent/CN110301918A/en
Publication of CN110301918A publication Critical patent/CN110301918A/en
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/1036Measuring load distribution, e.g. podologic studies

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Oral & Maxillofacial Surgery (AREA)
  • Biophysics (AREA)
  • Pathology (AREA)
  • Engineering & Computer Science (AREA)
  • Dentistry (AREA)
  • Physics & Mathematics (AREA)
  • Medical Informatics (AREA)
  • Molecular Biology (AREA)
  • Surgery (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Force Measurement Appropriate To Specific Purposes (AREA)

Abstract

The present invention is that the pressure that a kind of braided fabric and the braided fabric are pressurized is distributed method for detecting, the braided fabric includes that a braiding ontology and a plural metal spun yarns are connected on the braiding ontology and are alternatively arranged, more than one direction is defined on the braiding ontology, and each metal spun yarns extend along the direction, wherein, which is connected with a resistance sensing device.Apply a pressure on the braiding ontology, and the resistance sensing device is made to sense a resistance value caused by the metal spun yarns on the braiding ontology;According to the resistance sensing device for generating the resistance value, to learn the pressure distribution after braiding ontology compression.

Description

The pressure that braided fabric and the braided fabric are pressurized is distributed method for detecting
Technical field
The pressure being pressurized the present invention relates to a kind of braided fabric and the braided fabric is distributed method for detecting, particularly relates to utilize braiding After object is pressurized, the variation of resistance value, the invention of Lai get Zhi pressure distribution.
Background technique
People stands in sitting, long, posture is bad or hyperkinesia, will cause Venous leg varicose or shoulder neck, waist sometimes Phenomena such as aching, muscle pressure can be also varied at this time.
Namely by obtaining the abnormal variation of muscle pressure, faulty posture can be corrected immediately, or know and rest Etc. situations.
The existing mode for knowing muscle pressure variation, it is necessary to be attached on muscle using many pressure detection devices, to obtain Obtain muscle pressure variation.
However the price of pressure detection device is higher, and the pressure that muscle is born is known using many pressure detection devices, is needed Spend cost costly.
Summary of the invention
It is an object of the invention to: the pressure that a kind of braided fabric and the braided fabric are pressurized is provided and is distributed method for detecting, is solved The above-mentioned technical problems in the prior art.
Therefore, the present invention proposes a kind of pressure distribution method for detecting that braided fabric is pressurized, including the following steps:
More than one direction is defined on a braiding ontology;Between a plural number metal spun yarns are connected on the braiding ontology simultaneously Every arrangement, and each metal spun yarns extend along the direction;Apply a pressure on the braiding ontology, and makes a resistance sensing device Sense a resistance value caused by the metal spun yarns on the braiding ontology;According to the resistance sensing device for generating the resistance value, come Know the pressure distribution after the braiding ontology is pressurized.
Further, it combines aforementioned metal to spin in the multiple directions of the braiding ontology, makes aforementioned metal spinning staggered row Column;The metal spun yarns intersection for generating the different directions of the resistance value forms a compressive region, among different compressive regions, each compression After the resistance value of multiple metal spun yarns in area is average, the pressure distribution proportion of each compressive region can be obtained;Measurement wherein one by After the actual pressure of pressure area, the actual pressure of each compressive region can be obtained according to the ratio.
Further, it combines aforementioned metal to spin on 3 to 5 directions of the braiding ontology, aforementioned metal spinning is made to exist It is staggered on 3 to 5 directions, to obtain aforementioned compressive region.
The present invention reintroduces a kind of braided fabric that aforementioned method for detecting can be used, comprising:
One braiding ontology, defines more than one direction on the braiding ontology;A plural number metal spun yarns are connected to the volume It knits on ontology and is alternatively arranged, and each metal spun yarns extend along the direction;One resistance sensing device connects each metal Spinning.
Further, the spacing of unidirectional two adjacent metal spun yarns is between 2 centimetres to 4 centimetres.More into one Step, the spacing of unidirectional two adjacent metal spun yarns are 3 centimetres.
Further, on 3 to 5 directions of the braiding ontology combine aforementioned metal spin, make aforementioned metal spinning this 3 It is staggered on to 5 directions, to obtain aforementioned compressive region.
Further, which connects up each metal spun yarns in the Vertical Square of each metal spun yarns.
Further, which is connected on the braiding ontology with Rome braiding structure.
It may achieve following effect according to above-mentioned technical characteristic:
After 1. braided fabric is pressurized, by the variation of resistance value, it can be learnt that pressure is distributed, when there is multiple regions compression, It can be seen that the ratio of the resistance value between compressive region, therefore can measure the actual pressure of single compressive region, it can be according to the resistance The ratio of value obtains the actual pressure of other compressive regions.
2. metal spun yarns price is relatively inexpensive, after measuring multiple compressive regions, it is only necessary to be detected with single a pressure detection device The actual pressure of single compressive region can be obtained the actual pressure of all compressive regions, and cost is relatively low.
Detailed description of the invention
Fig. 1 is the stereo appearance figure that braided fabric of the invention is pressure socks.
Fig. 2 is the exploded view that the metal spun yarns of different directions are combined on braiding ontology of the invention.
Fig. 3 is the enlarged plan view of the a-quadrant of Fig. 1.
Fig. 4 is the schematic diagram that metal spun yarns of the invention are connected to braiding ontology with Rome braiding structure.
Fig. 5 is that braided fabric of the invention is pressure socks and is worn on the usage state diagram with user.
Fig. 6 is the enlarged plan view of the B area of Fig. 5.
Fig. 7 is another embodiment schematic diagram of braided fabric of the invention.
Fig. 8 is the schematic diagram that braided fabric of the invention is pressure clothes.
Description of symbols: 1- weaves ontology;2- first direction;3- second direction;4- metal spun yarns;5- resistance sensing Device;6- compressive region;7- third direction;1A- weaves ontology;2A- first direction;3A- second direction;4A- metal spun yarns;6A- by Pressure area;7A- third direction;8- pressure clothes.
Specific embodiment
In summary the main function for the pressure distribution method for detecting that technical characteristic, braided fabric of the present invention and the braided fabric are pressurized Effect can be clearly appeared from following embodiments.
As shown in fig.1, the braided fabric of the present embodiment includes by taking pressure socks as an example:
One braiding ontology 1, defines more than one direction on the braiding ontology 1, the present embodiment include a first direction 2 and One second direction 3;Plural number metal spun yarns 4 are connected on the braiding ontology 1.
Refering to shown in Fig. 2 to Fig. 4, the metal spun yarns 4 in each direction are stacked in a manner of nonwoven fabric from filaments, spin aforementioned metal Yarn 4 arranges on the braiding ontology 1 along the first direction 2 and 3 interleaved of second direction, and unidirectional two phases Between 2 centimetres to 4 centimetres, the present embodiment is spun the spacing of the adjacent metal spun yarns 4 in unidirectional two adjacent metals The spacing of yarn 4 is 3 centimetres, and wherein, each metal spun yarns 4 are connected on the braiding ontology 1 with Rome braiding structure;One Resistance sensing device 5 connects each metal spun yarns 4, and the resistance sensing device 5 is in each metal spun yarns 4 in the present embodiment Vertical Square connects up each metal spun yarns 4.Refering to shown in Fig. 5 and Fig. 6, which is worn on a determinand, The present embodiment is that the pressure socks are worn on user's shank, when user's movement, after pressure is born at each position of shank, and meeting Make to 4 compressive deformation of metal spun yarns on the braiding ontology 1 and the braiding ontology 1 for should bear pressure span, at this point, the gold The resistance sensing device 5 (the resistance sensing device 5 please refers to Fig. 3) belonged in spinning 4 can sense each metal spun yarns 4 due to compressive deformation The resistance value generated.
Therefore, the pressure point after being pressurized according to the metal spun yarns 4 for generating the resistance value, Lai get Zhi user's shank Cloth.Namely as shown in Figure 6,4 intersection of metal spun yarns of the resistance value is generated and shape in the first direction 2 and the second direction 3 At a compressive region 6, there are four compressive regions 6 due to intersection in figure, among different compressive regions 6, multiple metals of each compressive region 6 After the resistance value of spinning 4 is average, the pressure distribution proportion of each compressive region 6 can be obtained.
User after pressure detection device measurement wherein actual pressure of a compressive region 6 using pressure detection device again [to be detectd Surveying the pressure that user's shank pressure bearing region is born is the prior art, is not illustrated herein], it can be according to each compression The pressure distribution proportion in area 6 converts, and can obtain the actual pressure of each compressive region 6.And the price of metal spun yarns 4 is compared with pressure Detector comes cheaply, therefore after measuring multiple compressive regions 6, it is only necessary to detect single compressive region with single a pressure detection device 6 actual pressure can be obtained the actual pressure of all compressive regions 6, therefore use cost is lower.
Further it is noted that the spacing of two adjacent metal spun yarns 4 is 3 centimetres, the design of this spacing can be compared with Accurately detect compressive region 6 different on user's shank.
As shown in fig.7, further, a plurality of metal spun yarns 4A can be combined on 3 to 5 directions of a braiding ontology 1A, If Fig. 7 makes aforementioned metal spinning 4A be staggered in a first direction 2A, a second direction 3A and a third direction 7A, can obtain Obtain more accurate compressive region 6A.And combined in more direction metal spun yarns certainly can more accurate detection go out compressive region, however too Metal spun yarns are arranged on multi-direction layer by layer, final braided fabric will be made too thick and heavy, therefore are combined on 3 to 5 directions a plurality of Metal spun yarns will be preferred configuration.
As shown in fig.8, braided fabric of the invention can also be made as the pressure clothes for burn and scald other than pressure socks 8 or other similar wears.
Described above to be merely exemplary for the purpose of the present invention, and not restrictive, those of ordinary skill in the art understand, Without departing from the spirit and scope defined by the claims, can many modifications may be made, variation or equivalent, but will all fall Enter within protection scope of the present invention.

Claims (9)

1. the pressure that a kind of braided fabric is pressurized is distributed method for detecting, it is characterized by including the following steps:
More than one direction is defined on a braiding ontology;
A plural number metal spun yarns are connected on the braiding ontology and are alternatively arranged, and each metal spun yarns prolong along the direction It stretches;
Apply a pressure on the braiding ontology, and senses a resistance sensing device produced by the metal spun yarns on the braiding ontology A resistance value;
According to the resistance sensing device for generating the resistance value, to learn the pressure distribution after braiding ontology compression.
2. the pressure that braided fabric according to claim 1 is pressurized is distributed method for detecting, it is characterised in that: in the braiding ontology Multiple directions on combine aforementioned metal spin, make aforementioned metal spinning be staggered;Generate the different directions of the resistance value Metal spun yarns intersection forms a compressive region, and among different compressive regions, the resistance value of multiple metal spun yarns of each compressive region is flat After, the pressure distribution proportion of each compressive region can be obtained;After measuring the wherein actual pressure of a compressive region, according to the ratio Example can obtain the actual pressure of each compressive region.
3. the pressure that braided fabric according to claim 2 is pressurized is distributed method for detecting, it is characterised in that: in the braiding ontology 3 to 5 directions on combine aforementioned metal spin, make aforementioned metal spinning be staggered on 3 to 5 directions, with obtain Aforementioned compressive region.
4. a kind of braided fabric, it is characterized in that including:
One braiding ontology, defines more than one direction on the braiding ontology;
A plural number metal spun yarns are connected on the braiding ontology and are alternatively arranged, and each metal spun yarns prolong along the direction It stretches;
One resistance sensing device connects each metal spun yarns.
5. braided fabric according to claim 4, it is characterised in that: the spacing of unidirectional two adjacent metal spun yarns Between 2 centimetres to 4 centimetres.
6. braided fabric according to claim 5, it is characterised in that: the spacing of unidirectional two adjacent metal spun yarns It is 3 centimetres.
7. braided fabric according to claim 4, it is characterised in that: combined on 3 to 5 directions of the braiding ontology aforementioned Metal spun yarns make aforementioned metal spinning be staggered on 3 to 5 directions.
8. braided fabric according to claim 4, it is characterised in that: the resistance sensing device is in the vertical of each metal spun yarns Side connects up each metal spun yarns.
9. braided fabric according to claim 4, it is characterised in that: each metal spun yarns are connected to Rome braiding structure On the braiding ontology.
CN201810259003.5A 2018-03-27 2018-03-27 The pressure that braided fabric and the braided fabric are pressurized is distributed method for detecting Withdrawn CN110301918A (en)

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Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810259003.5A CN110301918A (en) 2018-03-27 2018-03-27 The pressure that braided fabric and the braided fabric are pressurized is distributed method for detecting

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW200714758A (en) * 2005-10-11 2007-04-16 Taiwan Textile Res Inst Pressure sensible textile and pressure sensible device thereof
CN101201279A (en) * 2007-12-07 2008-06-18 安徽君诚体育器材有限公司 Apparatus for measuring pressure distribution and method for measuring thereof
CN105380602A (en) * 2015-11-13 2016-03-09 汪毅 Wearable human achilles tendon information collection and monitoring system
CN107560768A (en) * 2017-09-26 2018-01-09 浙江理工大学 A kind of curved surface pressure sensor device based on fibre reinforced composites

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW200714758A (en) * 2005-10-11 2007-04-16 Taiwan Textile Res Inst Pressure sensible textile and pressure sensible device thereof
CN101201279A (en) * 2007-12-07 2008-06-18 安徽君诚体育器材有限公司 Apparatus for measuring pressure distribution and method for measuring thereof
CN105380602A (en) * 2015-11-13 2016-03-09 汪毅 Wearable human achilles tendon information collection and monitoring system
CN107560768A (en) * 2017-09-26 2018-01-09 浙江理工大学 A kind of curved surface pressure sensor device based on fibre reinforced composites

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Application publication date: 20191008