Massage device
A massage device includes a second massage body and a first massage body provided with an inlet, where the first massage body is provided with a massage cavity, the inlet is communicated with the massage cavity, and the massage cavity is configured to massage a first massage area. The second massage body is connected to the first massage body through a first connection portion, and the first connection portion is located at a position of the first massage body adjacent to the inlet. The second massage body has an elastic thin-shell shape, wraps and elastically compresses a second massage area, and the first massage area and the second massage area belong to different regions of a human body. The massage device provided in an embodiment of the present disclosure is capable of performing coordinated massage on a plurality of correlated regions.
1 . A massage device, comprising:
a first massage body provided with an inlet;
a second massage body;
wherein the first massage body is provided with a massage cavity, the inlet is communicated with the massage cavity, and the massage cavity is configured to massage a first massage area;
the second massage body is connected to the first massage body through a first connection portion, and the first connection portion is located at a position of the first massage body adjacent to the inlet; and
the second massage body, is configured to wrap and elastically compress a second massage area, and the first massage area and the second massage area belong to different regions of a human body, wherein
the second massage body has a semi-circular sheet-like structure; and
a straight edge of the second massage body is connected to half of a circular opening of the first massage body along an edge of the circular opening through the first connection portion, and wherein the straight edge forms a curvature matched with the circular opening, such that both ends of a circular arc edge of the second massage body naturally tilt upward to form a wrapping curved surface.
2 . The massage device according to claim 1 , further comprising a first vibration assembly provided with a conductive output portion;
wherein the first vibration assembly is disposed on the first connection portion or in an area adjacent to the first connection portion; and
the conductive output portion is located in the second massage body and configured to output vibration energy to the second massage body.
3 . The massage device according to claim 2 , further comprising a second connection portion;
wherein the second connection portion is disposed in the second massage body;
the second connection portion is configured to fix the conductive output portion;
wherein the conductive output portion has both a vibration damping path and a vibration excitation path;
the vibration damping path comprises a first vibration transmission path (L 1 ) from the conductive output portion to the first massage body, and the first vibration transmission path (L 1 ) is a direct vibration transmission path from the conductive output portion to the first massage body;
the vibration excitation path comprises a second vibration transmission path (L 2 ) from the conductive output portion to the second massage body, and the second vibration transmission path (L 2 ) is a direct vibration transmission path from the conductive output portion to the second massage body; and
wherein a vibration intensity and/or energy transmitted by the conductive output portion along the vibration damping path is less than a vibration intensity and/or energy transmitted along the vibration excitation path.
4 . The massage device according to claim 3 , wherein the vibration damping path further comprises a third vibration transmission path (L 3 );
wherein the third vibration transmission path (L 3 ) comprises a vibration transmission path in any other direction than directions of the first vibration transmission path (L 1 ) and the second vibration transmission path (L 2 ), centered around the conductive output portion.
5 . The massage device according to claim 3 , wherein the conductive output portion is provided with an embedded rib; and
the embedded rib extends in the direction of the vibration excitation path and is embedded into the second massage body.
6 . The massage device according to claim 3 , wherein an embodiment of the vibration damping path comprises an air gap formed between the first massage body and the conductive output portion.
7 . The massage device according to claim 2 , wherein a plurality of massage heads are arranged on a surface of the second massage body configured to be in contact with the second massage area;
the massage heads have a flexible sheet-like structure; and
the massage heads perform swinging massage in response to vibration energy of the conductive output portion.
8 . The massage device according to claim 7 , wherein physical parameters of the plurality of the massage heads are gradient-distributed in an arrangement direction; and
the physical parameters comprise at least one of hardness, size, and mass;
wherein the physical parameters gradient-distributed enable each of the massage heads to have a differentiated resonance frequency.
9 . The massage device according to claim 8 , wherein the first vibration assembly is configured to output a first frequency mode, and the first frequency mode excites resonance swinging of a single massage head among the plurality of the massage heads.
10 . The massage device according to claim 8 , wherein the first vibration assembly is configured to output a second frequency mode, and the second frequency mode simultaneously excites composite resonance swinging of at least two of the massage heads.
11 . The massage device according to claim 7 , wherein the second massage body comprises a first segment close to the first connection portion and a second segment away from the first connection portion;
a thickness of the first segment gradually decreases from one end close to the first connection portion to one end close to the second segment, such that an inclined surface is formed; and
the inclined surface is configured to come into contact with the second massage area.
12 . The massage device according to claim 1 , further comprising a tapping assembly;
the tapping assembly generates a tapping force via mechanical actuation; and
the tapping assembly is configured to tap the second massage body to cause deformation so as to apply a massage force to the second massage area.
13 . The massage device according to claim 12 , wherein a raised reinforcement portion is arranged on a surface of the second massage body configured to be in contact with the second massage area; and
a position of the reinforcement portion corresponds to an acting point where the tapping assembly taps the second massage body.
14 . The massage device according to claim 13 , wherein a guide groove is formed on an inner wall of the second massage body;
an output end of the tapping assembly extends into the second massage body and the guide groove; and
the reinforcement portion is arranged directly opposite to the guide groove.
15 . The massage device according to claim 1 , wherein the first massage body comprises:
an integrally formed elastic silicone sleeve, inside which the massage cavity is formed, wherein the inlet extends to a surface of the elastic silicone sleeve;
a cup body, configured to enclose an outer surface of the elastic silicone sleeve, wherein the cup body is provided with an opening; and
a driving mechanism, configured to act on the elastic silicone sleeve and drive same to perform a massage action;
wherein an inlet of the elastic silicone sleeve extends out of the opening.
16 . The massage device according to claim 15 , wherein the driving mechanism is configured to drive an inner wall of the massage cavity to vibrate and/or drive the massage cavity to contract and deform periodically.