EMS shoulder and back training bra

By designing an EMS shoulder training bra, using conductive silicone patches and contacts to achieve electrical stimulation training on the back muscles, the existing training bras cannot target the back, provides muscle massage and muscle building functions, and improves wear comfort.

CN223125884UActive Publication Date: 2025-07-22GUANGZHOU HINGTO IND CO LTD
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Patent Information

Application Number
CN202422143743.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2025-07-22
Estimated Expiration
2034-09-02

AI Technical Summary

Technical Problem

Existing training bras are not designed for female backs EMS conductive silicone patches, and cannot effectively train back muscles.

Method used

An EMS shoulder and back training bra was designed. The inner and outer back cut pieces were stacked with breathable notches. The inner back cut pieces were equipped with a conductive silicone patch on the shoulder and back. The outer back cut pieces were equipped with conductive contacts and circuits, and the EMS host was used to control current to stimulate muscles.

Benefits of technology

Targeted electrical stimulation training for back muscles is achieved, muscle massage or muscle building training is possible, and the breathable design improves wear comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an EMS shoulder and back training bra which comprises an inner side back cutting piece and an outer side back cutting piece, the inner side back cutting piece and the outer side back cutting piece are mutually overlapped, the lower side of the inner side back cutting piece and the lower side of the outer side back cutting piece are respectively provided with a breathable notch, and the inner side back cutting piece and the outer side back cutting piece are both in a crossed shape. Shoulder conductive silica gel stickers are arranged on the inner sides of the corresponding positions of the two shoulders of the inner side back cutting piece, back conductive silica gel is arranged on the inner sides of the two edges of the ventilation notch of the inner side back cutting piece, a positive electrode conductive contact and a negative electrode conductive contact are arranged on the outer side back cutting piece in a penetrating mode, and an insulating layer is arranged on the inner side of the outer side back cutting piece. The insulating layer covers the inner ends of the positive conductive contact and the negative conductive contact, an EMS host is arranged at the outer ends of the positive conductive contact and the negative conductive contact, and a positive loop and a negative loop are arranged on the inner side of the outer back cutting piece. According to the utility model, targeted electrical stimulation training can be carried out on back muscles of a wearer.
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Description

Technical Field

[0001] The utility model relates to the field of EMS training clothing, and particularly relates to an EMS shoulder and back training bra. Background Art

[0002] EMS, the full English name is Electric Muscle Stimulation. Its principle is to simulate the bioelectric signals released by the brain by wearing a special conductive training clothing, and stimulate muscle neurons in the form of electrical pulses to cause muscle contraction.

[0003] In recent years, women sometimes wear training bras during fitness. However, this ordinary training bra has a single function. It is not specifically designed for the back of the human body with EMS conductive silicone stickers, so it cannot effectively train the back of the wearer. Content of the Utility Model

[0004] The purpose of the utility model is to provide an EMS shoulder and back training bra, which can conduct targeted electrical stimulation training on the back muscles of the wearer.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] An EMS shoulder and back training bra includes an inner back piece and an outer back piece. The inner back piece and the outer back piece are overlapped with each other. Ventilation gaps are provided on the lower sides of both the inner back piece and the outer back piece, so that both the inner back piece and the outer back piece are in a cross shape. Shoulder conductive silicone stickers are provided on the inner sides of the corresponding positions of the two shoulders of the inner back piece. Back conductive silicone is provided on the inner sides of the two edges of the ventilation gap of the inner back piece. The outer back piece is provided with a positive conductive contact and a negative conductive contact. An insulating layer is provided on the inner side of the outer back piece, covering the inner ends of the positive conductive contact and the negative conductive contact. An EMS main unit is provided at the outer ends of the positive conductive contact and the negative conductive contact. A positive circuit and a negative circuit are provided on the inner side of the outer back piece. Both the positive circuit and the negative circuit are routed with conductive fiber strips. The positive conductive contact, the shoulder conductive silicone sticker on the left side, and the back conductive silicone are all connected to the positive circuit. The negative conductive contact, the shoulder conductive silicone sticker on the right side, and the back conductive silicone are all connected to the negative circuit.

[0007] Specifically, two pieces of back conductive silicone are provided on the inner sides of the two edges of the ventilation gap of the inner back piece. The two pieces of back conductive silicone on the left side are all connected to the positive circuit. The two pieces of back conductive silicone on the right side are all connected to the negative circuit.

[0008] Specifically, the positive conductive contact and the negative conductive contact are arranged at the collar edge of the outer back piece. The partial section of the positive circuit runs from the positive conductive contact to the ventilation notch and then along the left edge of the ventilation notch. Correspondingly, the partial section of the negative circuit runs from the negative conductive contact to the ventilation notch and then along the right edge of the ventilation notch.

[0009] Specifically, the edge of the inner back piece is sewn to the edge of the outer back piece.

[0010] Specifically, the inner ends of the positive conductive contact and the negative conductive contact on the inner side of the outer back piece are coated with an adhesive layer. The adhesive layer bonds the conductive fiber strip to the positive conductive contact and the negative conductive contact, and an insulating layer is coated on the surface of the adhesive layer.

[0011] Specifically, the conductive fiber strip is a silver fiber cloth strip, and an insulating layer is coated on the side of the silver fiber cloth strip that abuts against the human body.

[0012] Specifically, a partial section of the silver fiber cloth strip runs along the edge of the ventilation notch.

[0013] Specifically, the left and right bottom ends of the ventilation notch of the inner back piece are connected by a bottom strip.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0015] When wearing the EMS shoulder and back training bra, the shoulder conductive silicone stickers and the back conductive silicone on the left and right sides are all closely attached to the human body. The human body serves as a conductor to conduct the shoulder conductive silicone stickers on the left and right sides, and similarly conducts the back conductive silicone on the left and right sides. When the EMS host is turned on, an electric current acts on each shoulder conductive silicone sticker and the back conductive silicone, thereby performing electroshock training on the corresponding muscles.

[0016] Ventilation notches are provided on the lower sides of both the inner back piece and the outer back piece, making both the inner back piece and the outer back piece in a cross shape. The back conductive silicone is arranged along the edge of the ventilation notch, making the shoulder conductive silicone stickers and the back conductive silicone conform to the human muscle trend, so as to be able to perform electroshock stimulation training on the muscle position more accurately. The EMS host can be wirelessly connected to a mobile phone, so that the current size can be conveniently adjusted. A small current can be used for muscle massage, or a large current can be used for muscle building training. Description of the Drawings

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] Figure 1 Front view of the EMS shoulder and back training bra;

[0019] Figure 2 Back view of the EMS shoulder and back training bra;

[0020] Figure 3 Exploded view of the EMS shoulder and back training bra;

[0021] Figure 4 For Figure 3 Partial view of;

[0022] Figure 5 Front view of the inner back piece;

[0023] Figure 6 Exploded view of the positive and negative conductive contacts, adhesive layer and insulating layer;

[0024] Figure 7 View after the shoulder conductive silicone patch and back conductive silicone are attached to the human body;

[0025] Figure 8 Comparison view of the shoulder conductive silicone patch and back conductive silicone with human muscles.

[0026] In the figure:

[0027] 1. Inner back piece; 11. Ventilation notch; 12. Shoulder conductive silicone patch; 13. Back conductive silicone;

[0028] 2. Outer back piece; 21. Positive conductive contact; 22. Negative conductive contact; 23. Insulating layer; 24. Positive circuit; 25. Negative circuit; 26. Adhesive layer;

[0029] 3. Bottom strip. Detailed implementation manners

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments.

[0031] See Figures 1 to 8 , an EMS shoulder and back training bra, including an inner back piece 1 and an outer back piece 2, and the inner back piece 1 and the outer back piece 2 are superposed on each other. Ventilation notches 11 are provided on the lower sides of the inner back piece 1 and the outer back piece 2, so that both the inner back piece 1 and the outer back piece 2 are in a cross shape.

[0032] On the inner sides corresponding to the two shoulders of the inner back piece 1, there are shoulder conductive silicone stickers 12. On the inner sides of the two edges of the ventilation notch 11 of the inner back piece 1, there are back conductive silicones 13. The outer back piece 2 is provided with a positive conductive contact 21 and a negative conductive contact 22. An insulating layer 23 is provided on the inner side of the outer back piece 2, and the insulating layer 23 covers the inner ends of the positive conductive contact 21 and the negative conductive contact 22. At the outer ends of the positive conductive contact 21 and the negative conductive contact 22 ( Figure 2 at A in the figure), there is an EMS main unit (not shown in the figure). On the inner side of the outer back piece 2, there are a positive circuit 24 and a negative circuit 25, and both the positive circuit 24 and the negative circuit 25 are routed with conductive fiber strips. See Figure 4 , the positive conductive contact 21, the shoulder conductive silicone sticker 12 on the left side, and the back conductive silicone 13 are all connected to the positive circuit 24. Correspondingly, the negative conductive contact 22, the shoulder conductive silicone sticker 12 on the right side, and the back conductive silicone 13 are all connected to the negative circuit 25.

[0033] Specifically, on the inner sides of the two edges of the ventilation notch 11 of the inner back piece 1, there are two pieces of back conductive silicones 13. The two pieces of back conductive silicones 13 on the left side are all connected to the positive circuit 24, and the two pieces of back conductive silicones 13 on the right side are all connected to the negative circuit 25.

[0034] Specifically, see Figure 4 , the positive conductive contact 21 and the negative conductive contact 22 are provided at the collar edge of the outer back piece 2. A partial section of the positive circuit 24 is routed from the positive conductive contact 21 to the ventilation notch 11, and then routed along the left edge of the ventilation notch 11. Correspondingly, a partial section of the negative circuit 25 is routed from the negative conductive contact to the ventilation notch 11, and then routed along the right edge of the ventilation notch 11.

[0035] Specifically, the edge of the inner back piece 1 is sewn to the edge of the outer back piece 2.

[0036] Specifically, see Figure 6 , on the inner side of the outer back piece 2, the inner ends of the positive conductive contact 21 and the negative conductive contact 22 are coated with an adhesive layer 26. The adhesive layer 26 bonds the conductive fiber strip to the positive conductive contact 21 and the negative conductive contact 22 to form an electrical connection. The surface of the adhesive layer 26 is coated with an insulating layer 23.

[0037] Specifically, the conductive fiber strip (refer to Figure 4 the positive circuit 24 and the negative circuit 25 in the figure) is a silver fiber cloth strip, and an insulating layer is coated on the side of the silver fiber cloth strip that abuts against the human body.

[0038] Specifically, a partial section of the silver fiber cloth strip is routed along the edge of the ventilation notch 11 (see Figure 4 ).

[0039] Specifically, the left and right bottom ends of the ventilation notch 11 of the inner back piece 1 are connected by a bottom strip 3.

[0040] The working principle of the EMS shoulder and back training bra of the present utility model is as follows:

[0041] The shoulder conductive silicone patch 12 and the back conductive silicone 13 on the left side are connected to the positive circuit 24, and the shoulder conductive silicone patch 12 and the back conductive silicone 13 on the right side are connected to the negative circuit 25. An EMS main unit is provided at the outer ends of the positive conductive contact 21 and the negative conductive contact 22.

[0042] When wearing the EMS shoulder and back training bra, the shoulder conductive silicone patches 12 and the back conductive silicone 13 on both the left and right sides are closely attached to the human body. The human body serves as a conductor to conduct the shoulder conductive silicone patches 12 on both the left and right sides, and similarly conduct the back conductive silicone 13 on both the left and right sides. When the EMS main unit is turned on, current acts on each shoulder conductive silicone patch 12 and the back conductive silicone 13, thereby performing electroshock training on the corresponding muscles.

[0043] Ventilation notches 11 are provided on the lower sides of both the inner back piece 1 and the outer back piece 2, making both the inner back piece 1 and the outer back piece 2 in a crossed shape. The back conductive silicone 13 is arranged along the edge of the ventilation notch 11, making the shoulder conductive silicone patches 12 and the back conductive silicone 13 conform to the human muscle trend (see Figure 8 ), so as to be able to more accurately perform electroshock stimulation training on the muscle position. The EMS main unit can be wirelessly connected to a mobile phone, so as to be able to conveniently adjust the magnitude of the current. Small current can be used for muscle massage, and large current can also be used for muscle building training.

[0044] The ventilation notch 11 can ventilate and sweat, so that there will be no stuffiness during training, and it feels more refreshing and comfortable. Both the inner back piece 1 and the outer back piece 2 are in a crossed shape, so as to be able to form a four-point contact wrap on the back, making the wearing more comfortable. The back conductive silicone 13 along the ventilation notch 11 is all flexible conductive silicone, which is soft and comfortable without the need to spray water for wetting during use.

[0045] The above is only a preferred embodiment of the present utility model, and does not impose any form of limitation on the present utility model. Although the present utility model has been disclosed above with the preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to make equivalent embodiments of equivalent changes within the scope of the technical solution of the present utility model. However, as long as it does not depart from the content of the technical solution of the present utility model, any brief modification, equivalent change and modification made to the above embodiments based on the technical essence of the present utility model still fall within the scope of the technical solution of the present utility model.

Claims

1. An EMS shoulder and back training bra, characterized in that: It includes an inner back piece and an outer back piece. The inner back piece and the outer back piece overlap with each other. Ventilation gaps are provided on the lower sides of both the inner back piece and the outer back piece, making both the inner back piece and the outer back piece in a crossed shape. Shoulder conductive silicone patches are provided on the inner sides of the corresponding positions of the two shoulders of the inner back piece. Back conductive silicone is provided on the inner sides of the two edges of the ventilation gap of the inner back piece. The outer back piece is provided with a positive conductive contact and a negative conductive contact. An insulating layer is provided on the inner side of the outer back piece, covering the inner ends of the positive conductive contact and the negative conductive contact. An EMS main unit is provided at the outer ends of the positive conductive contact and the negative conductive contact. A positive circuit and a negative circuit are provided on the inner side of the outer back piece. Both the positive circuit and the negative circuit are routed with conductive fiber strips. The positive conductive contact, the shoulder conductive silicone patch on the left side, and the back conductive silicone are all connected to the positive circuit. The negative conductive contact, the shoulder conductive silicone patch on the right side, and the back conductive silicone are all connected to the negative circuit.

2. The EMS shoulder and back training bra according to claim 1, characterized in that: Two pieces of back conductive silicone are provided on the inner sides of the two edges of the ventilation gap of the inner back piece. The two pieces of back conductive silicone on the left side are all connected to the positive circuit. The two pieces of back conductive silicone on the right side are all connected to the negative circuit.

3. The EMS shoulder and back training bra according to claim 1, characterized in that: The positive conductive contact and the negative conductive contact are provided at the collar edge of the outer back piece. A partial section of the positive circuit is routed from the positive conductive contact to the ventilation gap and then along the left edge of the ventilation gap. Correspondingly, a partial section of the negative circuit is routed from the negative conductive contact to the ventilation gap and then along the right edge of the ventilation gap.

4. The EMS shoulder and back training bra according to claim 1, characterized in that: The edge of the inner back piece is sewn to the edge of the outer back piece.

5. The EMS shoulder and back training bra according to claim 1, characterized in that: Adhesive layers are coated on the inner ends of the positive conductive contact and the negative conductive contact on the inner side of the outer back piece. The adhesive layers bond the conductive fiber strips to the positive conductive contact and the negative conductive contact, and an insulating layer is coated on the surface of the adhesive layers.

6. The EMS shoulder and back training bra according to claim 1, wherein: The conductive fiber strip is a silver fiber cloth strip, and an insulating layer is coated on the side of the silver fiber cloth strip that abuts against the human body.

7. The EMS shoulder and back training bra according to claim 6, characterized in that: A partial section of the silver fiber cloth strip is routed along the edge of the ventilation gap.

8. The EMS shoulder and back training bra according to claim 1, wherein: The left and right bottom ends of the ventilation gap of the inner back piece are connected by a bottom strip.