CN213788741U - Direct-pressure vibration ultrasonic massager - Google Patents
Direct-pressure vibration ultrasonic massager Download PDFInfo
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- CN213788741U CN213788741U CN202022635528.XU CN202022635528U CN213788741U CN 213788741 U CN213788741 U CN 213788741U CN 202022635528 U CN202022635528 U CN 202022635528U CN 213788741 U CN213788741 U CN 213788741U
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Abstract
The utility model discloses a direct-pressure vibration ultrasonic massager, which comprises a direct-pressure vibration component body arranged in an inner cavity of a massager main body, wherein the massager main body is connected with a handle, the inner cavity of the handle is provided with a motor, and a direct-pressure shaft is arranged in the direct-pressure vibration component body; an eccentric shaft deviating from the center of the shaft is arranged at the main shaft end of the motor; an open slot is formed in the direct pressing shaft; a shifting block is sleeved on the straight pressing shaft, a bayonet block of the shifting block is clamped on the open slot, and a driving slot of the shifting block accommodates the eccentric shaft. The front end of the direct pressing shaft is provided with a massage head, and an ultrasonic device is arranged in the massage head. The utility model has the advantages that: the utility model discloses a set up massager main part and handle connection and make the utility model discloses it is convenient to control, can exert pressure to any direction. The front end of the direct pressing shaft of the utility model is provided with a massage head, and an ultrasonic device is arranged in the massage head, thereby realizing the combination of physical pressurization and ultrasonic vibration and convenient use.
Description
Technical Field
The utility model relates to a physiotherapy instrument, in particular to a massage instrument, in particular to a direct-pressure vibration ultrasonic massager.
Background
The massage is classified into health massage, sports massage and medical massage. There are roughly 7 types of manipulations, and different manipulations have different actions. Compared with the traditional massage method, the vibration massage method is the vibration massage developed by the modern society with the help of electronic technology, is a physical therapy method, reduces the physical labor of massagers and enhances the massage effect.
At present, ultrasound is used for massage, and high-frequency ultrasonic vibration can promote and strengthen the metabolic process, play a role in diminishing inflammation, relieving pain, reducing swelling and promoting healing, and improve the regeneration function and the regulation function of tissues. Is particularly suitable for being used in the rehabilitation and training of professional athletes. However, the conventional ultrasonic massage apparatus is not combined with the ancient massage technique, and the massage effect cannot be improved more.
Application No. 201520485007.7, entitled "ultrasonic massage device" of utility model, attempts to solve the problem, but this patent does not design a structure that the user holds by hand, does not have a structure that holds by hand, just can't realize ancient massage gimmick yet.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a vertical compression vibration ultrasonic massager, the utility model discloses it is convenient to control, can apply the massage to any direction according to user's wish, can combine traditional massage gimmick and ultrasonic massage, makes the two compromise, realizes better massage physiotherapy effect.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model discloses a realize like this: the design and manufacture of the direct-pressure vibration ultrasonic massager comprises:
a direct-pressure vibration component body is arranged in the inner cavity of the massager main body, the massager main body is connected with a handle, a motor is arranged in the inner cavity of the handle, and a direct-pressure shaft is arranged in the direct-pressure vibration component body;
an eccentric shaft deviating from the center of the shaft is arranged at the main shaft end of the motor;
an open slot is formed in the direct pressing shaft;
a shifting block is sleeved on the straight pressing shaft, a bayonet block of the shifting block is clamped on the open slot, and a driving slot of the shifting block accommodates the eccentric shaft.
The front end of the direct pressing shaft is provided with a massage head, and an ultrasonic device is arranged in the massage head.
The massager is characterized in that an operating button plate is arranged on the massager body, and a circuit board is arranged in a cavity of the massager body corresponding to the operating button plate.
The bottom of the handle is provided with a cable access cavity, and a cable is led out of the cable access cavity.
The cable access cavity clamps a buffer spring, and the spring is sleeved at the end part of the cable.
The front part of the direct-pressure shaft penetrates through the buffering front shaft sleeve, the rear part of the direct-pressure shaft penetrates through the buffering rear shaft sleeve, and the buffering front shaft sleeve and the buffering rear shaft sleeve are both positioned in the direct-pressure vibration assembly body.
The utility model has the advantages that: the utility model discloses a set up massager main part and handle connection and make the utility model discloses it is convenient to control, can exert pressure to any direction. The front end of the direct pressing shaft of the utility model is provided with a massage head, and an ultrasonic device is arranged in the massage head, thereby realizing the combination of physical pressurization and ultrasonic vibration and convenient use.
Drawings
FIG. 1 is a schematic structural view of the whole of the direct-pressure vibration ultrasonic massage apparatus of the present invention;
FIG. 2 is an exploded view of the vertical-pressure vibration ultrasonic massage apparatus of the present invention, which is used to show the internal structure;
FIG. 3 is a schematic view showing the back-and-forth movement of the motor-driven direct-pressure shaft in the direct-pressure vibration ultrasonic massager of the present invention;
FIG. 4 is a schematic view showing that the eccentric shaft of the vertical compression vibration ultrasonic massager of the present invention performs a circular motion and the driving shifting block drives the vertical compression shaft to slide in the front and rear shaft sleeves;
fig. 5 is a schematic view of the direct-pressure shaft and the shifting block embedded in the direct-pressure vibration ultrasonic massager of the present invention.
Detailed Description
The present invention will be described in further detail with reference to various embodiments.
Referring to fig. 1 to 5, the direct pressure vibration ultrasonic massager is designed and manufactured to include:
a direct-pressure vibration component body 2 is arranged in the inner cavity of a massager body 11, the massager body 11 is connected with a handle 12, a motor 3 is arranged in the inner cavity of the handle 12, and a direct-pressure shaft 15 is arranged in the direct-pressure vibration component body 2;
an eccentric shaft 32 deviating from the shaft center is arranged at the end of a main shaft 31 of the motor 3;
an open slot 151 is formed on the straight pressing shaft 15;
a shifting block 21 is sleeved on the straight pressing shaft 15, a bayonet block 212 of the shifting block 21 is clamped on the opening groove 151, and a driving groove 213 of the shifting block 21 accommodates the eccentric shaft 32.
The front end of the direct pressure shaft 15 is provided with a massage head 14, and an ultrasonic device is arranged in the massage head 14.
An operation button plate 13 is arranged on the massager body 11, and a circuit board is arranged in a cavity of the massager body 11 corresponding to the operation button plate 13.
The bottom of the handle 12 is provided with a cable access chamber 18, and the cable 16 is led out from the cable access chamber 18.
The cable access cavity 18 holds a buffer spring 17 which is sleeved on the end part of the cable 16.
The front part of the direct-pressure shaft 15 penetrates through the front buffering shaft sleeve 22, the rear part of the direct-pressure shaft 15 penetrates through the rear buffering shaft sleeve 23, and the front buffering shaft sleeve 22 and the rear buffering shaft sleeve 23 are both positioned in the direct-pressure vibration component body 2.
As shown in FIG. 1, an operation button plate 13 is provided on the massager body 11, a circuit board is provided in a cavity of the massager body 11 corresponding to the operation button plate 13, and a cable 16 is led from the bottom of the handle 12.
The circuit board comprises a motor driving circuit, an ultrasonic device driving circuit and a power interface circuit.
As shown in fig. 2, the direct-pressure vibration component body 2 is fixed in the massager body 11, and the cable 16 can be led in the alternating current mains supply, so that a rectification circuit is required to be arranged on the circuit board.
The cable 16 may also be fed with low voltage dc power, thus providing a power adapter outside of the present invention. The low-voltage direct current is DC12V and DC24V or other safe voltage levels.
As shown in the third figure, the motor 3 is embedded into the direct-pressure vibration component body 2, the rotating speed of the motor is adjusted on the operation button plate 13, and the frequency of the forward and backward vibration of the direct-pressure shaft is 2-10 Hz per second.
As shown in fig. 4, the eccentric shaft 32 is selected clockwise, and at the position a1, the shifting block 21 is not stressed and stops; when the eccentric shaft 32 is at the position a2, the shifting block 21 is forced to move upwards to drive the direct pressing shaft 15 to move upwards; when the eccentric shaft 32 is at the position a3, the shifting block 21 is not stressed and stops; when the eccentric shaft 32 is at the position a4, the shifting block 21 is forced to move downwards, and the straight pressing shaft 15 is driven to move downwards.
The above description is only for the preferred embodiment of the present invention, and for those skilled in the art, there may be variations in the specific implementation and application range according to the spirit of the present invention, and the content of the description should not be construed as a limitation to the present invention.
Claims (5)
1. A direct pressure vibratory ultrasonic massager, comprising:
a direct-pressure vibration component body (2) is arranged in the inner cavity of a massager main body (11), the massager main body (11) is connected with a handle (12), the inner cavity of the handle (12) is provided with a motor (3), and a direct-pressure shaft (15) is arranged in the direct-pressure vibration component body (2);
an eccentric shaft (32) deviating from the shaft center is arranged at the end of a main shaft (31) of the motor (3);
an open slot (151) is formed in the direct pressing shaft (15);
a shifting block (21) is sleeved on the straight pressing shaft (15), a bayonet block (212) of the shifting block (21) is clamped on the open slot (151), and a driving slot (213) of the shifting block (21) accommodates the eccentric shaft (32);
the front end of the direct pressure shaft (15) is provided with a massage head (14), and an ultrasonic device is arranged in the massage head (14).
2. The direct pressure vibration ultrasonic massager as claimed in claim 1, wherein the massager body (11) is provided with an operating button plate (13), and a circuit board is provided in a cavity of the massager body (11) corresponding to the operating button plate (13).
3. The direct pressure vibrating ultrasonic massager of claim 1, wherein the handle (12) is provided at a bottom thereof with a cable insertion chamber (18), and the cable (16) is led out from the cable insertion chamber (18).
4. The ultrasonic direct pressure vibration massager as claimed in claim 3, wherein the cable access chamber (18) holds a buffer spring (17) which is fitted around the end portion of the cable (16).
5. The direct-pressure vibration ultrasonic massager as claimed in claim 1, wherein the front part of the direct-pressure shaft (15) passes through the front buffering shaft sleeve (22), the rear part of the direct-pressure shaft (15) passes through the rear buffering shaft sleeve (23), and the front buffering shaft sleeve (22) and the rear buffering shaft sleeve (23) are both located in the direct-pressure vibration assembly body (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022635528.XU CN213788741U (en) | 2020-11-16 | 2020-11-16 | Direct-pressure vibration ultrasonic massager |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022635528.XU CN213788741U (en) | 2020-11-16 | 2020-11-16 | Direct-pressure vibration ultrasonic massager |
Publications (1)
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CN213788741U true CN213788741U (en) | 2021-07-27 |
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CN202022635528.XU Active CN213788741U (en) | 2020-11-16 | 2020-11-16 | Direct-pressure vibration ultrasonic massager |
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CN (1) | CN213788741U (en) |
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2020
- 2020-11-16 CN CN202022635528.XU patent/CN213788741U/en active Active
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