CN211814803U - Conductive antibacterial cloth and therapeutic apparatus, medical apparatus, wearable device and textile thereof - Google Patents

Conductive antibacterial cloth and therapeutic apparatus, medical apparatus, wearable device and textile thereof Download PDF

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CN211814803U
CN211814803U CN201921650242.XU CN201921650242U CN211814803U CN 211814803 U CN211814803 U CN 211814803U CN 201921650242 U CN201921650242 U CN 201921650242U CN 211814803 U CN211814803 U CN 211814803U
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conductive
antibacterial cloth
cloth
fiber
skin
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陈铭同
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Shanghai Zhenbing Technology Co ltd
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Shanghai Zhenbing Technology Co ltd
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Abstract

The utility model relates to an electrically conductive antibiotic cloth and therapeutic instrument, medical instrument, wearable device and fabrics thereof, electrically conductive antibiotic cloth is woven into twill tissue by natural cellulose fibre and electrically conductive metal fiber each other. The utility model overcomes the defect that the prior art can not effectively keep asepsis and allergy prevention, and realizes lasting antibiosis and allergy prevention; meanwhile, the skin-friendly property of the fabric is further improved, and the skin can be repaired and the skin can be regenerated while electrotherapy is carried out.

Description

Conductive antibacterial cloth and therapeutic apparatus, medical apparatus, wearable device and textile thereof
Technical Field
The utility model belongs to electrotherapy massage field, in particular to electrically conductive antibiotic cloth and therapeutic instrument, medical instrument, wearable device and fabrics thereof.
Background
EMS is known as a muscle electrical stimulation technique, also known as a muscle electrical motor technique. EMS is to directly transmit signals to muscles through current stimulation to promote the muscles to perform passive movement, thereby achieving the effect of body building. The electric therapy massagers or the electric therapy rehabilitation devices sold in the market are often large in size, can only be fixedly arranged in medical places or at home for use, are expensive and not suitable for people, and are very inconvenient for patients needing frequent treatment; secondly, the device is required to be dragged during treatment, so that the device cannot move or do other things, and the flexibility is low; furthermore, the biggest problem is that the patch structure of the device contacting with human body is not good enough.
The adhesive patch is of a single-point contact type, and is often stuck on the skin of a human body for a long time when being used for electrotherapy, so that the skin of a patient to which the patch is stuck is easy to lack water and dry, and the skin surface after being detached is allergic and red and swollen. More importantly, the patch adopts a single point to contact the skin for conduction, so that the electrotherapy effect cannot achieve the comprehensive effect and even cannot be further transmitted to the deep layer of muscles, and the patch only forces the superficial epidermis to perform twitch effect at best, but cannot achieve the effect of enabling the deep layer of muscles to perform passive movement.
In addition, although a technique for improving the problem of the adhesive patch has been disclosed in part. However, the following disadvantages still exist: 1) although the antibacterial agent can be repeatedly used, bacteria can still be generated in the case of long-time use, and skin allergy, red swelling and the like can also be caused; 2) the skin-friendly property is still not good enough, and the feeling is uncomfortable when the mask is used.
Disclosure of Invention
The utility model aims to solve the technical problem of providing a conductive antibacterial cloth and a therapeutic apparatus, a medical apparatus, a wearable device and a textile thereof, the conductive antibacterial cloth overcomes the defect that the prior art can not effectively keep sterility and allergy prevention, and realizes lasting antibiosis and allergy prevention; meanwhile, the skin-friendly property of the fabric is further improved, and the skin can be repaired and the skin can be regenerated while electrotherapy is carried out.
The utility model provides a conductive antibacterial cloth, which is made of natural fiberThe cellulose fibers and the conductive metal fibers are interwoven into twill weave; the natural cellulose fiber is Lyocell fiber containing zinc oxide therein, i.e. Zinc oxide Lyocell fiber (smartcel)TMsensitive)。
Furthermore, the lyocell fibers are formed by cross-weaving natural cellulose long fibers and natural cellulose short fibers. The conductive antibacterial cloth contains zinc, which is a trace element required by a human body, on the basis of the specially designed lyocell fibers and the addition of zinc oxide. Zinc has key effects on immune system, sensory nerve function and metabolism, and skin regeneration and protection, and further improves the skin affinity of the fabric, and can repair skin and promote skin regeneration while performing electrotherapy.
Furthermore, the zinc oxide is high-quality medical zinc white zinc oxide. By the cleaning and antibacterial mechanism, the combination of skin regeneration and skin protection functions can be promoted, and the cleaning and antibacterial agent has the advantages of environmental protection and complete biological decomposition.
Furthermore, the conductive metal fiber is stainless steel fiber, silver fiber or other metal fibers, and can be selected according to the functional requirements of customers and products. When stainless steel fiber is selected, the cost can be reduced, and the electric conductivity and the corrosion resistance are high; when the silver fiber is selected, electromagnetic shielding radiation protection, sterilization and odor removal can be improved, electric conduction is further more uniform, and the overall antibacterial effect of the antibacterial cloth is improved.
Furthermore, the stainless steel fiber is one of 316L stainless steel, 304 stainless steel and 321 stainless steel, and can be selected according to the requirements of customers and product functions.
Further, the natural cellulose fibers and the conductive metal fibers are woven by tatting.
Further, the skin-contacting mask comprises a contact surface layer close to the skin surface. The contact surface layer of the utility model has no special requirements, and can directly carry out electrotherapy without water or other media.
Furthermore, the surface of the conductive antibacterial cloth can be coated with a silver coating. Further enhancing the conductive effect of the cloth.
The utility model also provides a therapeutic apparatus (electric therapy massage apparatus) using the conductive antibacterial cloth.
The device comprises a coating layer, wherein a fixing device is arranged in the middle of the coating layer, and a controller is covered in the fixing device; and one surface of the controller is provided with two contacts;
and a group of conducting layers, have two the same shapes and can splice into the electrically conductive antibiotic cloth the same with this coating appearance or less, electrically conductive antibiotic cloth is fixed to the controller inflection to contact with two contacts with this controller and form and connect and switch on. The power supply arranged in the controller can adopt a lithium battery or other light, thin, short and small power supplies.
The utility model discloses a therapeutic instrument can further connect and set a mobile device, and this mobile device has wifi or bluetooth unit and display element at least, and a built-in exclusive APP software, borrows this through the operation of this exclusive APP software, utilizes behind bluetooth wireless or other wireless transmission mode are connected to this controller, reaches to carry out the electrotherapy and the low frequency pulse effect of various different depth degrees according to the different demands of user.
The conductive antibacterial cloth of the utility model needs to be woven and dyed when weaving, namely, a piece dyeing (piece dyed) process is adopted.
The utility model discloses a therapeutic instrument's principle is "low cycle pulse", through the utility model discloses a therapeutic instrument of electrically conductive antibiotic cloth preparation reaches the multiple spot current conduction (through bluetooth or other wireless control) and touches human motor nerve, amazing deep muscular tissue motion to improve that blood circulation is bad, peripheral nerve paralysis, temper muscle power and the ache of releiving.
Additionally, the utility model discloses an electrically conductive antibiotic cloth still can be used to wearable device, protective equipment, medical instrument or fabrics and functional clothing.
Advantageous effects
(1) The conductive antibacterial cloth of the utility model is based on natural cellulose fiber and high-quality zinc oxide, and the natural cellulose fiber (lyocell fiber) is biodegradable, environment-friendly, soft in hand feeling and good in compatibility with skin;
(2) the utility model further improves the skin-friendly property of the fabric by adding high-quality zinc oxide, and can repair skin and regenerate skin while carrying out electrotherapy; meanwhile, zinc oxide provides important antibacterial and mildew-proof effects, and zinc element also has the functions of diminishing inflammation, resisting ultraviolet rays, reducing peculiar smell, preventing allergy and the like.
(3) The utility model discloses a lyocell fibre, zinc oxide, conductive metal fiber's combination has promoted holistic close skin nature of cloth and antibiotic effect comprehensively, has given surface fabric flame retardant property simultaneously, can not produce black cigarette and harmful substance during the burning, has excellent comprehensive properties.
(4) Use the utility model discloses the therapeutic instrument based on electrically conductive antibiotic cloth carries out the electrotherapy massage, can play following effect:
warming up; secondly, the muscle endurance is improved; thirdly, metabolism is promoted; fourthly, strengthening the bone mineral density; promoting blood circulation; sixthly, the injury is recovered; seventhly, preventing muscle atrophy; eighthly, relieving pain; and ninthly, preventing muscle fascia tissues from being sticky.
Drawings
Fig. 1 is a schematic structural view of the conductive antibacterial cloth of the present invention; wherein 101 is natural cellulose fiber, and 102 is conductive metal fiber.
FIG. 2 is a schematic view of the therapeutic apparatus of the present invention; wherein, 1 is the antibiotic cloth of electrically conductive, 2 is fixing device, 3 is the controller, 4 is the contact.
Detailed Description
The present invention will be further described with reference to the following specific examples. It should be understood that these examples are for illustrative purposes only and are not intended to limit the scope of the present invention. Furthermore, it should be understood that various changes and modifications of the present invention may be made by those skilled in the art after reading the teachings of the present invention, and these equivalents also fall within the scope of the appended claims.
Example 1
As shown in fig. 1, the present embodiment provides a conductive antibacterial cloth, which is made by interweaving natural cellulose fibers and conductive metal fibers into twill weave; the natural cellulose fiber is lyocell fiber containing zinc oxide inside. The diameter of the conductive metal fiber yarn is within the range of 0.01-0.35 mm.
The conductive antibacterial cloth is produced by winding a conductive metal fiber in a lyocell fiber, winding a metal yarn having a bulk (twist) of about 1cm and 2 to 5 windings (actually 2.86 windings (350 windings/m)), and weaving by tatting.
The preparation method of the natural cellulose fiber, namely the mode of adding zinc oxide into the lyocell fiber, comprises the following steps: adding zinc oxide powder into the lyocell fiber in the form of wood pulp, uniformly mixing, and molding.
The impedance value of the conductive antibacterial cloth of the embodiment is 500 +/-100 Ohms/5x5 cm. The thickness is about 0.2 plus or minus 0.05 mm.
The natural cellulose fibers in the example were subjected to a deodorizing test using FTTS-FA-018-:
Figure DEST_PATH_GDA0002677862510000041
the conductive antibacterial cloth of the present example was subjected to an antibacterial test, which was AATCC100-2012, and the results are shown in the following table:
Figure DEST_PATH_GDA0002677862510000042
as can be seen from the above table, the conductive antibacterial cloth of the present embodiment has an excellent antibacterial effect, and the removal rate of various bacteria can reach 99%, and has a good durability, and other products in the market do not have such an effect at present.
Example 2
This example provides an electrotherapy massage apparatus using the conductive antibacterial cloth of example 1.
The device comprises a coating layer, wherein a fixing device is arranged in the middle of the coating layer, and a controller is covered in the fixing device; and one surface of the controller is provided with two contacts;
and a group of conducting layers, have two the same shapes and can splice into the electrically conductive antibiotic cloth the same with this coating appearance or less, electrically conductive antibiotic cloth is fixed to the controller inflection to contact with two contacts with this controller and form and connect and switch on. The power supply arranged in the controller can adopt a lithium battery or other light, thin, short and small power supplies.
The embodiment can set different product forms according to different parts of human body, for example, when electrotherapy massage is carried out on waist, the product is in a belt shape; when electrotherapy massage is carried out on the shoulders, the product is in a back belt shape; when electrotherapy massage is performed for the elbow, the product is in a 'mouse pad' shape and the like. But the basic structure for generating the "low cycle pulse" remains unchanged.

Claims (10)

1. The conductive antibacterial cloth is characterized in that: natural cellulose fibers and conductive metal fibers are interwoven into twill weave; the natural cellulose fiber is zinc oxide lyocell fiber.
2. The conductive antibacterial cloth according to claim 1, characterized in that: the conductive metal fiber is stainless steel fiber or silver fiber.
3. The conductive antibacterial cloth according to claim 2, characterized in that: the stainless steel fiber is one of 316L stainless steel, 304 stainless steel and 321 stainless steel.
4. The conductive antibacterial cloth according to claim 1, characterized in that: also includes a contact surface layer adjacent to the skin surface.
5. The conductive antibacterial cloth according to claim 1, characterized in that: and coating a silver coating on the surface of the conductive antibacterial cloth.
6. An apparatus for treating a patient using the conductive antibacterial cloth according to claim 1.
7. An apparatus according to claim 6, wherein:
the device comprises a coating layer, wherein a fixing device is arranged in the middle of the coating layer, and a controller is covered in the fixing device; and one surface of the controller is provided with two contacts;
and a group of conducting layers, have two the same shapes and can splice into the electrically conductive antibiotic cloth the same with this coating appearance or less, electrically conductive antibiotic cloth is fixed to the controller inflection to contact with two contacts with this controller and form and connect and switch on.
8. A medical device using the conductive antibacterial cloth of claim 1.
9. A wearable device using the conductive antibacterial cloth of claim 1.
10. A textile using the conductive antibacterial cloth of claim 1.
CN201921650242.XU 2019-09-30 2019-09-30 Conductive antibacterial cloth and therapeutic apparatus, medical apparatus, wearable device and textile thereof Active CN211814803U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921650242.XU CN211814803U (en) 2019-09-30 2019-09-30 Conductive antibacterial cloth and therapeutic apparatus, medical apparatus, wearable device and textile thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921650242.XU CN211814803U (en) 2019-09-30 2019-09-30 Conductive antibacterial cloth and therapeutic apparatus, medical apparatus, wearable device and textile thereof

Publications (1)

Publication Number Publication Date
CN211814803U true CN211814803U (en) 2020-10-30

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Country Status (1)

Country Link
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