Vibrating Breast Pad with Air Ventilation
Abstract
A vibrating breast pad with air ventilation, including: a breast pad main body and a micro vibration component; wherein the micro vibration component can be easily fitted into a receiving hole found at one end of the breast pad main body and be fixed to that position via the position-fixing part; the receiving hole is combined with a passing-through air vent, which is combined with a row of air ducts across the other end of said receiving hole, and exhaust vents are installed thereof; and during use, the activation component is pressed to actuate the vibration motor and the breasts of the wearer are massaged by vibration, and the fan starts to rotate and evenly distributes the airflow through the air vent and row of air ducts towards the exhaust vent and thus the breast pad can prevent hot feeling and achieve ventilation and dissipation of heat.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A vibrating breast pad with air ventilation, comprising:
a breast pad main body, one side of which comprising a receiving hole, said receiving hole being combined with an air vent that passes through all of its structure, said receiving hole comprising a position-fixing part, and said air vent being combined with a row of air ducts across the other end of said receiving hole, and said row of air ducts being formed of plurality of interlinked grooves arranged in a concave manner at the inner surface of the breast pad main body, such that said breast pad main body comprises at least one exhaust vent passing through said grooves; a micro vibration component, which is positioned inside the receiving hole of said breast pad main body and fixed by means of a position-fixing part, said micro vibration component comprising an open-ended casing, a vibration motor, a battery, an activation component, and a fan, such that said vibration motor is coupled to said fan and said fan is positioned close to the open end within the casing, said fan is adjacent to said air vent, and said activation component is positioned at the other end of the casing.
2 . A vibrating breast pad with air ventilation according to claim 1 , wherein said breast pad main body comprises plurality of cavities on its inner surface.
3 . A vibrating breast pad with air ventilation according to claim 2 , wherein said cavity can comprise functional granules, and said cavity diameter varies between 5-8 mm, and said functional granules can have more or less spherical shape with 5-8 mm size, and said functional granules can be far infrared granules or negative ion granules.
4 . A vibrating breast pad with air ventilation according to claim 3 , wherein said casing comprises an air intake vent positioned across the fan at the other side of the open end.
5 . A vibrating breast pad with air ventilation according to claim 3 , wherein at least one row of wind channel is positioned in said receiving hole.
6 . A vibrating breast pad with air ventilation according to claim 2 , wherein a membrane is laminated to said row of air ducts, and said membrane shape is opposite of the shape of said row of air ducts, and said grooves comprise plurality of concave parts, and said membrane comprises plurality of convex parts positioned across said plurality of concave parts, such that said membrane comprises a through hole positioned opposite to said exhaust vent.
7 . A vibrating breast pad with air ventilation according to claim 6 , wherein said membrane comprises far infrared elements or negative ion elements spread on said membrane.
8 . A vibrating breast pad with air ventilation according to claim 6 , wherein said breast pad main body is formed as a whole by injection molding of a soft rubber material, and the soft rubber material is silicone or thermoplastic rubber.
9 . A vibrating breast pad with air ventilation according to claim 6 , wherein said casing comprises an air intake vent positioned opposite to the fan at the other side of the open end.
10 . A vibrating breast pad with air ventilation according to claim 6 , wherein said breast pad main body comprises plurality of convex granules on its inner surface.
11 . A vibrating breast pad with air ventilation according to claim 6 , wherein a row of wind channel is positioned inside said receiving hole.
12 . A vibrating breast pad with air ventilation according to claim 6 , wherein the combination place of said receiving hole and the air vent has a difference in diameter, which forms the position-fixing part, and the diameter of said receiving hole is greater than the diameter of said air vent.
13 . A vibrating breast pad with air ventilation according to claim 6 , wherein the diameter of said exhaust vent varies between 1-2 mm, and the diameter is 2 mm.
14 . A vibrating breast pad with air ventilation according to claim 6 , wherein said grooves have a depth between 2-5 mm, and said grooves have a width between 2-5 mm.
15 . A vibrating breast pad with air ventilation according to claim 6 , wherein a piece of cloth is placed to the outer surface of said breast pad main body.
16 . A vibrating breast pad with air ventilation according to claim 6 , wherein a piece of cloth is symmetrically placed on said breast pad main body in order to form a brassiere.
17 . A vibrating breast pad with air ventilation according to claim 6 , wherein said breast pad main body can be positioned in a brassiere and the two sides of said brassiere can comprise symmetrical pad pockets, so that said breast pad main body can be separately positioned.
18 . A vibrating breast pad with air ventilation, comprising:
a breast pad main body, which is formed as a whole by injection molding of a soft rubber material, and which comprises a receiving hole at one side, said receiving hole being combined with an air vent that passes through all of its structure, said receiving hole comprising a position-fixing part, and said air vent being combined with a row of air ducts across the other end of said receiving hole, and said row of air ducts being formed of plurality of interlinked grooves arranged in a concave manner at the inner surface of the breast pad main body, such that said breast pad main body comprises at least one exhaust vent passing through said grooves, and said breast pad main body inner surface comprises a cavity and a plurality of convex granules, and at lest one row of wind channel is positioned within said receiving hole; a micro vibration component, which is positioned inside the receiving hole of said breast pad main body, said micro vibration component comprising an open-ended casing, a vibration motor, a battery, an activation component, and a fan, such that said vibration motor is coupled to said fan and said fan is positioned close to the open end within the casing, said fan is adjacent to said air vent, said activation component is positioned at the other end of the casing, and said casing comprises at least one air intake vent at the other side of the open end across the fan; a plurality of functional granules, which are positioned in said cavity; and a piece of cloth, which is placed to the outer surface of said breast pad main body.
19 . A vibrating breast pad with air ventilation, comprising:
a breast pad main body, which is formed as a whole by injection molding of a soft rubber material, and which comprises a receiving hole at one side, said receiving hole being combined with an air vent that passes through all of its structure, said receiving hole comprising a position-fixing part, and said air vent being combined with a row of air ducts across the other end of said receiving hole, and said row of air ducts being formed of plurality of interlinked grooves arranged in a concave manner at the inner surface of the breast pad main body, said grooves having a depth between 2-5 mm, and said grooves having a width between 2-5 mm, said breast pad main body comprising at least one exhaust vent passing through said grooves, said breast pad main body inner surface comprising a cavity and a plurality of convex granules, and at lest one row of wind channel being positioned within said receiving hole; a micro vibration component, which is positioned inside the receiving hole of said breast pad main body, said micro vibration component comprising an open-ended casing, a vibration motor, a battery, an activation component, and a fan, such that said vibration motor is coupled to said fan and said fan is positioned close to the open end within the casing, said fan is adjacent to said air vent, said activation component is positioned at the other end of the casing, and said casing comprises at least one air intake vent at the other side of the open end across the fan; a membrane with a shape that is opposite to the shape of said row of air ducts, said membrane comprising plurality of convex parts positioned opposite to said plurality of concave parts, such that said membrane comprises a through hole opposite to said exhaust vent; a piece of cloth, which is placed to the outer surface of said breast pad main body.Join the waitlist — get patent alerts
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