A vibrating massager and massaging machine
By introducing an air guide mechanism and a vibration conversion mechanism into the vibrating massager, the problem of insufficient vibration amplitude is solved by using airflow to drive the second spring to rotate, thus achieving a combination of increased vibration amplitude and hot massage function.
Patent Information
- Application Number
- CN202211107031.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-13
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2042-09-13
AI Technical Summary
The existing high-frequency vibration unit has insufficient vibration amplitude and needs to be increased.
By introducing an air guide mechanism into the vibrating massager, the airflow drives the second spring to rotate around a set axis. Combined with a vibration conversion mechanism, the rotational motion is converted into the vibration motion of the massage element. A heating mechanism is set in the path of the airflow to the massage element to increase the amplitude and enhance the hot massage function.
It effectively increases the vibration amplitude of the massage components and drives the second spring to rotate through airflow. The overall structure is compact and also has a hot massage function.
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Figure CN115919625B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of massage equipment, in particular to a vibrating massager. BACKGROUND
[0002] Patent application CN201820946303.6 discloses a leg massager, and in combination with the patent application Figure 7 , it discloses a high-frequency vibration unit, which is driven by a vibration driving motor, an eccentric hammer spring, an eccentric hammer assembly, and a flexible spring to vibrate the vibration hammer shell. How to improve the amplitude of the foregoing high-frequency vibration unit is one of the optimization directions. In view of this, the present application is proposed. SUMMARY
[0003] The technical problem to be solved by the present application is to improve the vibration amplitude of the existing high-frequency vibration unit.
[0004] In order to achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows: a vibrating massager, comprising: a first spring extending in a set axis direction; a second spring extending in the set axis direction and sleeved on the inner peripheral side of the first spring; a motor driving the second spring to rotate around the set axis; a massage piece joined to one side of the first spring along the set axis direction; a vibration conversion mechanism arranged between the second spring and the massage piece, and converting the rotating action of the second spring into the vibration action of the massage piece swinging relative to the set axis; the massager further comprises: an air guide mechanism guiding air flow to the massage piece to improve the amplitude of the massage piece.
[0005] Preferably, the air guide mechanism is arranged between the driving shaft of the motor and the second spring, so as to drive the second spring to rotate around the set axis while guiding the air flow driven by the motor.
[0006] Preferably, the air guide mechanism is driven by the motor to guide the air flow to the massage piece.
[0007] Preferably, the air guide mechanism guides the air to flow to the massage piece along the set axis direction.
[0008] Preferably, the air guide mechanism comprises a fan blade seat and fan blades arranged on the outer periphery of the fan blade seat, and the fan blade seat is arranged between the driving shaft of the motor and the second spring.
[0009] Preferably, the other side of the first spring is joined to a housing, and the air guide mechanism is arranged in the housing.
[0010] Preferably, a motor base is mounted on the housing, and the motor is mounted on the motor base.
[0011] Preferably, the vibration conversion mechanism is an eccentric mechanism with a center of gravity deviating from a set axis.
[0012] Preferably, the vibration conversion mechanism comprises a rotating shaft and an eccentric member; the rotating shaft is arranged between the second spring and the massage member to be driven by the second spring to rotate; the eccentric member is sleeved on the rotating shaft and arranged eccentrically relative to the rotating shaft.
[0013] Preferably, the vibration massage device comprises a heating mechanism arranged in a path of air flow toward the massage member.
[0014] Preferably, the massage member has an air inlet hole for air to flow in along a set axis direction and an air outlet hole for air to flow out along a first direction, the first direction having a preset angle with the set axis direction. Preferably, the first direction is perpendicular to the set axis direction.
[0015] Preferably, the shell has an air outlet hole for air to flow out along a set axis direction and an air outlet hole for air to flow out along a second direction, the second direction having a preset angle with the set axis direction. Preferably, the second direction is perpendicular to the set axis direction.
[0016] Preferably, the massage member has an air inlet hole for air to flow in along a set axis direction and an air outlet hole for air to flow out along a first direction, the shell has an air outlet hole for air to flow out along a set axis direction and an air outlet hole for air to flow out along a second direction, the first direction, the second direction and the set axis direction being perpendicular to each other.
[0017] The application further provides a massage machine comprising the vibration massage device.
[0018] The application further provides a massage chair comprising the massage machine.
[0019] By adopting the above technical solutions, the application has the following beneficial effects:
[0020] 1. The vibration massage device of the application helps to improve the amplitude of the massage member by arranging the air guide mechanism to guide air flow toward the massage member.
[0021] 2. The air guide mechanism is arranged between the driving shaft of the motor and the second spring, so that the air guide mechanism drives the second spring to rotate around the set axis while guiding air flow, and the overall structure is compact.
[0022] 3. The heating mechanism arranged in the path of air flow toward the massage member can make the vibration massage device have a hot massage function. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description only relate to some embodiments of the present application and are not limiting of the present application.
[0024] Figure 1 and Figure 2 respectively show schematic diagrams of a vibration massager of an embodiment from different perspectives;
[0025] Figures 3 to 8 respectively show different exploded state diagrams of a vibration massager of an embodiment;
[0026] Figure 9 show a schematic diagram of a massager of an embodiment;
[0027] Figure 10 show an exploded diagram of a massager of an embodiment. DETAILED DESCRIPTION
[0028] In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the present application will be further described in detail below with reference to the drawings. The components of the embodiments of the present application described and shown in the drawings can be arranged and designed in various different configurations. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0029] Some embodiments of the present application will be described in detail below with reference to the drawings. The features in the following embodiments can be combined with each other without conflict.
[0030] In combination with Figures 1 to 8 In an embodiment, the vibration massager of the present application comprises a massaging member 1, a housing 2, a first spring 3, a rotating shaft 4, an eccentric member 5, a second spring 6, a motor 7, a fan seat 8, a fan blade 9, a connecting rod 10, a connecting pin 11, a motor base 12 and a connecting seat 13. The rotating shaft 4 and the eccentric member 5 cooperate to form a vibration conversion mechanism M, and the fan seat 8 and the fan blade 9 cooperate to form an air guide mechanism N.
[0031] The massaging member 1 comprises a first massaging part 1A and a second massaging part 1B, which are spliced to form the massaging member 1. The massaging member 1 has a protruding structure on the outer circumferential side, which can perform percussive massage on the user's limbs when the massaging member 1 vibrates. The massaging member 1 has an air inlet hole S11 for air to flow in along a set axis L direction and an air outlet hole S12 for air to flow out along a first direction H1. The first direction H1 and the set axis L direction have a preset included angle, for example, perpendicular. The first connecting structure T1 and the second connecting structure T2 can be annular clamps.
[0032] The shell 2 comprises a first shell part 2A and a second shell part 2B which are spliced to form the shell 2. The shell 2 has an air inlet and an air outlet. The shell 2 is provided with a bearing Q3. The shell 2 has an air outlet hole S21 for air to flow out in a set axis L direction, and an air outlet hole S22 for air to flow out in a second direction H2. The second direction H2 and the set axis L direction have a preset included angle, for example, perpendicular. The air guide mechanism N is arranged in the shell 2.
[0033] The first spring 3 extends in the set axis L direction, and has a first side 3A engaging the massage piece 1 and a second side 3B engaging the shell 2. The massage piece 1 is engaged with the first side 3A of the first spring 3 in the set axis L direction. The first side 3A of the first spring 3 is engaged with the massage piece 1, and has a first buffer P1 therebetween. The second side 3B of the first spring 3 is engaged with the shell 2, and has a second buffer P2 therebetween.
[0034] The vibration conversion mechanism M composed of the rotating shaft 4 and the eccentric piece 5 is an eccentric mechanism with the center of gravity deviated from the set axis L, and can convert the rotating action of the second spring 6 into the vibration action of the massage piece 1 deviated from the set axis L. The rotating shaft 4 is arranged between the second spring 6 and the massage piece 1 to be driven to rotate by the second spring 6. In this embodiment, the massage piece 1 is provided with a bearing Q1 and a bearing Q2 which are sleeved on the rotating shaft 4. The eccentric piece 5 is sleeved on the rotating shaft 4 and arranged eccentrically relative to the rotating shaft 4.
[0035] The second spring 6 extends in the set axis L direction and is sleeved on the inner circumferential side of the first spring 3, and has a first side 6A engaging the rotating shaft 4 and a second side 6B engaging the connecting rod 10. The first side 6A of the second spring 6 is connected to the rotating shaft 4 through a first connecting structure T1 to drive the rotating shaft 4 to rotate.
[0036] Motor 7 drives the second spring 6 to rotate around a set axis L. A guide mechanism N, consisting of a fan blade seat 8 and a fan blade 9, is positioned between the drive shaft of motor 7 and the second spring 6. This guide mechanism, driven by motor 7, guides airflow while simultaneously causing the second spring 6 to rotate around the set axis L. In this embodiment, the guide mechanism N guides airflow along the set axis L towards the massage member 1, thereby increasing the amplitude of the massage member 1. In this embodiment, motor 7 is connected to the second spring 6 via the guide mechanism N and connecting rod 10, thus driving the second spring 6 to rotate. The fan blade 9 is disposed on the outer periphery of the fan blade seat 8. One end of the fan blade seat 8 is connected to the drive shaft of motor 7, and the other end of the fan blade seat 8 is sleeved on one end of the connecting rod 10. A connecting pin 11 passes through the fan blade seat 8 and the connecting rod 10, thereby fixing the two together. Bearing Q3 is sleeved on the connecting rod 10. The other end of the connecting rod 10 is connected to the second side 6B of the second spring 6 via a second connecting structure T2. Through the above method, the fan blade seat 8 is positioned between the drive shaft of motor 7 and the second spring 6.
[0037] The motor base frame 12 is mounted on the housing 2, and the motor 7 is mounted on the motor base frame 12.
[0038] The connector 13 is mounted on the motor base 12. The connector 13 is used to connect with the base K1 of the massager, which will be explained further later.
[0039] The above describes one embodiment of the vibration massager of this application. The specific working method of this solution is as follows: When the motor 7 is working, the drive shaft of the motor 7 drives the fan blade seat 8 to rotate, and the fan blade 9 guides air into the housing 2. In this embodiment, some air flows out through the air outlet S21 along the set axis L, some air flows out through the air outlet S22 along the second direction H2, and some air flows into the massage element 1 along the set axis L through the air inlet S11 and flows out through the air outlet S12 along the first direction H1. When the fan blade seat 8 rotates, it drives the second spring 6 to rotate through the connecting rod 10. When the second spring 6 rotates, it drives the rotating shaft 4 to rotate. When the rotating shaft 4 rotates, it drives the massage element 1 to sway through the eccentric member 5, enabling the massage element 1 to provide vibration massage to the user. The air flowing towards the massage element 1 can increase the amplitude of the massage element 1. In this embodiment, the first direction H1, the second direction H2, and the set axis L are perpendicular to each other. This layout allows the air to flow relatively evenly relative to the massage element 1.
[0040] It should be understood that the specific implementation of the vibration massager of this application is not limited to the above-described implementation. The following will illustrate the modified implementation of the vibration massager.
[0041] The vibration conversion mechanism M is not limited to the embodiment in which the eccentric member 5 cooperates with the rotating shaft 4. In the technical concept of the eccentric mechanism in which the gravity center is offset relative to the set axis L is retained, the vibration conversion mechanism M can adopt other structures. For example, the eccentric member 5 of the vibration conversion mechanism M can be replaced by a counterweight which is fixed to the rotating shaft 4. For another example, the first side 6A of the second spring 6 can be directly connected to the massage member 1 in a rotatable manner, and the eccentric member 5 can be connected to the first side 6A of the second spring 6.
[0042] The air guide mechanism N is not limited to being arranged between the driving shaft of the motor 7 and the second spring 6. In another embodiment, a flow guide motor driving air guide mechanism N can be additionally arranged.
[0043] In the design concept in which the air guide mechanism N is driven by the motor 7 to guide the air flow to the massage member 1, the driving shaft of the motor 7 can drive the second spring 6 to rotate around the set axis by the first transmission structure, and drive the air guide mechanism N to guide the air flow to the massage member 1 by the second transmission structure.
[0044] The air guide mechanism N is not limited to guiding the air to flow to the massage member 1 along the direction of the set axis L. In another embodiment, the air guide mechanism N can be designed to guide the air to flow to the massage member 1 along a direction intersecting the direction of the set axis.
[0045] One end of the fan blade holder 8 is not limited to being directly connected to the driving shaft of the motor 7. In another embodiment, the driving shaft of the motor 7 and one end of the fan blade holder 8 can be drivingly connected by a belt or gear transmission structure.
[0046] The fan blade holder 8 is not limited to being indirectly connected to the second spring 6 by the connecting rod 10. In the design concept in which the fan blade holder 8 is arranged between the driving shaft of the motor 7 and the second spring 6, the fan blade holder 8 can be directly connected to the second spring 6.
[0047] In another embodiment, the motor 7 can be directly mounted on the housing 2.
[0048] The second side 3B of the first spring 3 is not limited to being fixed relative to the first side 3A by being engaged on the housing 2. In another embodiment, a component can be additionally provided to fix the second side 3B of the first spring 3.
[0049] In another embodiment, a heating mechanism can be further provided, and the heating mechanism is arranged in the path of the air flow to the massage member 1 so as to perform hot massage on the user's limbs. The heating mechanism is arranged on the housing 2, for example. The heating mechanism can be a common PTC heating structure.
[0050] The following will further illustrate the massage machine which can adopt the foregoing vibration massager, combined with Figure 9 and Figure 10In one embodiment, the massager of the present application comprises a base K1, a leg rest housing K2, a vibration massager K3, and a roller massager K4, the leg rest housing K2 is mounted on the base K1, the vibration massager K3 is connected to the base K1 through a connecting seat 13, and the roller massager K4 is arranged on the base K1. The leg rest housing K2 is generally in the shape of a mountain, and is used for resting the legs of a user, and has a through hole for the massage member 1 of the vibration massager K3 to pass through and a through hole for the roller of the roller massager K4 to pass through, the massage member 1 of the vibration massager K3 is used for massaging the left and right sides of the legs, and the roller of the roller massager K4 is used for massaging the back of the legs. The massager using the vibration massager as described above is not limited to the above embodiment.
[0051] Figure 9 and Figure 10 The massager can be used as part of the lower limb massage structure of a common massage chair, and is used for massaging the legs. The present application further provides a massage chair comprising the massager as described above.
[0052] The above description is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered by the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A vibrating massager, comprising: a first spring (3) extending along a set axis direction; a second spring (6) extending along the set axis direction and sleeved on an inner circumferential side of the first spring (3); a motor (7) driving the second spring (6) to rotate around the set axis; a massaging member (1) coupled to one side of the first spring (3) along the set axis direction; a vibration conversion mechanism (M) arranged between the second spring (6) and the massaging member (1) and converting a rotating action of the second spring (6) into a vibrating action of the massaging member (1) swinging relative to the set axis; characterized in that the vibrating massager further comprising: an air guiding mechanism (N) guiding air flow to the massaging member (1) to increase an amplitude of the massaging member (1); the air guiding mechanism (N) being arranged between a driving shaft of the motor (7) and the second spring (6) to drive the second spring (6) to rotate around the set axis while guiding air flow driven by the motor (7); the massaging member having an air inlet hole for air to flow in along the set axis direction and an air outlet hole for air to flow out along a first direction having a preset angle with the set axis direction.
2. The vibration massager according to claim 1, characterized by the air guiding mechanism (N) comprising a fan blade seat (8) and a fan blade (9) arranged on an outer circumferential side of the fan blade seat (8), the fan blade seat (8) being arranged between the driving shaft of the motor (7) and the second spring (6).
3. The vibration massager according to any one of claims 1 to 2, characterized in that, the other side of the first spring (3) being coupled to a housing (2), the air guiding mechanism (N) being arranged in the housing (2); the housing (2) having an air outlet hole for air to flow out along the set axis direction and an air outlet hole for air to flow out along a second direction having a preset angle with the set axis direction.
4. The vibration massager according to claim 3, characterized by a motor base (12) is mounted on the housing (2), and the motor (7) is mounted on the motor base (12).
5. The vibrating massager of claim 1, wherein the vibration conversion mechanism (M) is an eccentric mechanism with a gravity center deviating from the set axis.
6. The vibration massager according to claim 5, wherein the vibration conversion mechanism (M) comprises a rotating shaft (4) and an eccentric member (5); the rotating shaft (4) is arranged between the second spring (6) and the massaging member (1) to be driven by the second spring (6) to rotate; and the eccentric member (5) is sleeved on the rotating shaft (4) and arranged eccentrically relative to the rotating shaft (4).
7. A massaging machine characterized by comprising: the vibrating massager according to any one of claims 1 to 6.
Citation Information
Patent Citations
Leg massager
CN209301660U
Health management equipment
CN219983406U
Vibratory therapeutic applicator
CN86101310A