Massage device
20190159961 ยท 2019-05-30
Inventors
Cpc classification
A61H1/008
HUMAN NECESSITIES
A61H1/00
HUMAN NECESSITIES
A61H2201/5005
HUMAN NECESSITIES
A61H39/04
HUMAN NECESSITIES
A61H2201/1669
HUMAN NECESSITIES
A61H23/0218
HUMAN NECESSITIES
International classification
Abstract
A massage device comprising an output shaft, a plurality of permanent magnets arranged on the output shaft, and an electromagnetic driving module arranged radially outside the permanent magnets. The stator yoke of the electromagnetic driving module and the permanent magnets interact to generate a cogging torque. The electromagnetic driving module interacts with the permanent magnets to generate an electromagnetic driving force. The massage device has improvements in efficiency and output, is compact and reduces heat generation. The activation of the electromagnetic driving module actuates the output shaft to strike forward. The cogging torque applies a first pulling force to the output shaft to provide braking and buffering to the output shaft. When the output shaft is urged to move in the direction opposite to the strike forward direction from the idle state, the cogging torque applies a first thrust to the output shaft, to thereby increase the output.
Claims
1. A massage device comprising: an output shaft; a plurality of permanent magnets disposed on the output shaft, and generating a radial magnetic field on a partial region of the output shaft; and an electromagnetic driving module comprising at least one stator yoke and at least one coil, the electromagnetic driving module being disposed radially outside the plurality of permanent magnets; wherein the at least one stator yoke of the electromagnetic driving module is configured to interact with the plurality of permanent magnets of the output shaft to generate a cogging torque; the at least one coil of the electromagnetic driving module is driven by a current to generate an electromagnetic field, and is configured to interact with the radial magnetic field of the plurality of permanent magnets to generate an electromagnetic driving force.
2. The massage device according to claim 1, wherein the cogging torque applies a first thrust to the output shaft before an intermediate point of an output stroke, and the cogging torque starts to reverse after the intermediate point of the output stroke, and applies a first pulling force to the output shaft.
3. The massage device according to claim 2, wherein when the at least one coil of the electromagnetic driving module is driven by the current, the output shaft is actuated to strike forward in an axial direction; the cogging torque applies the first pulling force to the output shaft after the intermediate point of the output stroke; when the current supply is interrupted, the cogging torque returns the output shaft to a rest position, and when the output shaft is urged to move in the direction opposite to the strike forward direction to pass the rest position, the cogging torque applies a first thrust to the output shaft.
4. The massage device according to claim 1, further comprising at least one magnetically permeable member disposed on the output shaft for guiding the magnetic field of the magnet to become a radial magnetic field.
5. The massage device according to claim 1, further comprising a control module electrically connected to the electromagnetic driving module, the control module being configured to adjust the frequency of the electromagnetic driving force by controlling the frequency of the current input to the electromagnetic driving module; to adjust the magnitude of the electromagnetic driving force by controlling the magnitude of the current input to the electromagnetic driving module; and to adjust the length of the output stroke by controlling the duration of the current input to the electromagnetic driving module.
6. The massage device according to claim 5, further comprising an adjustment module electrically connected to the control module, the adjustment module being configured to adjust at least one of the magnitude, frequency and duration of the current input to the electromagnetic driving module.
7. The massage device according to claim 5, further comprising at least one position detector electrically connected to the control module, and adapted to detect the position of the output shaft.
8. The massage device according to claim 1, wherein the electromagnetic driving module further comprising at least one annular coil holder around which the at least one coil electrically connected to the control module is wound, the at least one coil holder includes a central through hole through which the output shaft extends.
9. The massage device according to claim 1, further comprising a massage head corresponding to one end of the output shaft, and an impact magnetic set disposed between the massage head and the output shaft; the impact magnetic set includes a pair of separated impact magnets arranged adjacent to each other, in which the opposing ends of the pair of separated impact magnets have the same polarity.
10. The massage device according to claim 1, wherein the control module includes a storage unit configured to store at least one application, the control module adjusts at least one of the magnitude, frequency and duration of the current input to the electromagnetic driving module based on the at least one application.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0024] The present invention is related to a massage device. In the descriptions, similar elements will be denoted by the same reference numerals. Moreover, the drawings illustrating the present invention are only schematic and not necessarily drawn to scale, and may not show all details thereof.
[0025] Referring to
[0026] In this embodiment, the electromagnetic driving module 5 includes an annular coil holder 51, a coil 52 and a stator yoke 53. The coil 52 is wound around the annular coil holder 51. The coil holder 51 includes a central through hole 511 through which the output shaft 2, the permanent magnet 3 and the magnetically permeable member 4 extend and move axially (to be explained hereinafter). Further, as shown in the figure, the stator yoke 53 may retain the annular coil holder 51, and guide the magnetic field of the permanent magnets 3 to interact with the current flowing in the coil to generate electromagnetic force. Also shown is a motor housing 54 that is structured to accommodate and retain the permanent magnet 3, the magnetically permeable member 4, the stator yoke 53, and a portion of the output shaft 2.
[0027] On the other hand the massage head 7 for directly contacting the skin of the user is disposed on the output shaft 2. In this embodiment, the massage head 7 is detachable, and thus can be replaced with one in different form to cope with the circumstances. For example, a massage head 7 having an acute angle at the head end is preferred for massaging deep-layered muscles or acupuncture points, while a massage head 7 in the shape of a disc is preferred for massaging an extensive, shallow layered muscles of large area. In addition, a position detector 8 is disposed on the motor housing 54 for detecting the stroke of the output shaft 2.
[0028] As shown in the drawings, the control module 6 designed to control various functions of the massage device comprises a processor, a storage unit 60, a circuit board, and other electronic components. The adjustment module 9 is designed for the user to operate, adjust, and set various functions, such as the magnitude of the massage force, the distance of the massage stroke, and the speed frequency. The adjustment module 9, the position detector 8 and the electromagnetic driving module 5 are electrically connected to the control module 6. The storage unit 60 stores therein a plurality of applications to actuate different operation modes. The applications may set different current frequencies, different current magnitudes, and different timing and period input of the current for the electromagnetic driving module, so that the output shaft 2 may operate at different modes.
[0029]
[0030] As shown in
[0031] Then, the cogging torque Tc1 begins to reverse after the intermediate point (T5) of the output stroke, and descends abruptly to become a reverse pulling force. In other words, the cogging torque Tc1 turns abruptly from the first thrust Fp1 to the first pulling force Fr1. On the other hand, the output F1 of the output shaft 2 also reverses after the intermediate point (D5) of the output stroke following the reversal of the cogging torque Tc1. However, after three quarters of the output stroke, that is, after D7, the output F1 of the output shaft 2 is converted into a pulling force, that is the second pulling force Fr2 as shown in the figure, because the electromagnetic driving force is less than the cogging torque Tc1.
[0032] However, it should be noted that the operation stroke between D7 and D9 is an abnormal working state. Generally speaking, a normal massage operation stroke will not this section of actuation stroke (to be explained hereinafter), and the electromagnetic driving module 5 will not be energized during this stroke. Furthermore, as the current input to the electromagnetic driving module 5 increases, the position where the electromagnetic driving force is smaller than the cogging torque Tc1 (i.e., the position of D7) will shift to the right correspondingly, so as to increase the operation stroke of the massage. In other words, the magnitude of the current input not only affects the magnitude of the electromagnetic driving force, but also affects the operation stroke.
[0033] The function and effect of the cogging torque Te1 are as explained below. When deactivated, the output shaft 2 stops in the region where the resultant force of the cogging torque Tc1 and the frictional force is zero, which is about in the region between T5 and T6. However, when the electromagnetic driving module 5 is energized, the output shaft 2 is actuated to strike forward in the axial direction, and the cogging torque Tc1 applies a first pulling force Fr1 to the output shaft 2, so as to provide the output shaft 2 with braking and buffering functions. When the electromagnetic driving module 5 is deenergized, the output shaft 2 may return to the region where the resultant force of the cogging torque Te1 and the friction force along the axial direction is zero, without the need for a buffer spring. As such, noise is reduced the reliability and compactness of the device are improved. When the output shall 2 is urged to move in the direction opposite to the strike forward direction from the idle state, the cogging torque T1 applies the first thrust Fp1 to the output shall 2, so that the output is increased.
[0034] Accordingly, to operate the massage device, the user operates to urge the massage head 7 against the user's skin, and places the output shaft 2 at the initial position of the output stroke, that is, in proximity to D4 and T4. Then, the electromagnetic driving module 5 is driven by the current to perform the entire output stroke, that is, from D4 to D6 and from T4 to T6. After the output stroke is completed, since the user still urges the massage head 7 against the user's skin, and due to the first pulling force Fr1 provided by the cogging torque Te1, the output shall 2 will quickly return to the initial position, and the cycle is repeated.
[0035] Referring now to
[0036] In addition, the user can adjust the magnitude of the massage force, the length of the massage stroke, and the massage frequency (speed) by means of the adjustment module 9. The adjustment module 9 includes a knob device composed of a variable resistor, which may also be a touch screen, a physical button or user interfaces and electronic components of the equivalent. According to this embodiment, when the user operates on the adjustment module 9, the control module 6 may adjust the current input to the electromagnetic driving module 5, to adjust the magnitude of the electromagnetic driving force F1 and the length of the stroke. Alternatively, the adjustment module 9 can be configured to control the duration of the current supplied to the electromagnetic driving module 5 so as to adjust the length of the output stroke, and to control the cycle period and frequency of the current supplied to electromagnetic driving mode so as to adjust the cycle period and frequency of the output stroke. In the present embodiment, when the frequency of the current supplied to the electromagnetic driving module 5 is high, the operating frequency of the massage becomes higher, that is to say, the time for the massage to make a round becomes shorter, and thus the operation stroke becomes shorter. Furthermore, the time required to activate and deactivate the electromagnetic driving module 5 not only will affect the frequency (cycle) of the massage operation, but will also affect the operation stroke. This is because if it takes a shorter time to activate the electromagnetic driving module, the operation stroke tends to become shorter.
[0037] In this embodiment, the storage unit 60 can store a plurality of applications responsible for different massage modes, and the control module 6 can adjust the magnitude, frequency and duration of the current supplied to the electromagnetic driving module 5 according to each respective application, to thereby present different massage strengths, massage frequencies, and lengths of output shaft strokes under different modes. Moreover, during the operation of each respective mode, the application can also modify the magnitude, frequency, and duration of the current input to the electromagnetic driving module 5 in the process of time. That is to say, the massage strength, frequency and stroke of the output shaft can be continuously changed according to the progress of the massage stroke.
[0038] The control mode of the present invention can be achieved in various ways. For example, the duration and frequency of the current input to the electromagnetic driving module 5 may be controlled by using TRIAL' to change the conduction angle, or by using a power switch element in combination with a pulse width modulation module (PWM).
[0039] Referring now to
[0040] As shown in
[0041] In addition, as shown in
[0042]
[0043] Further, when in the idle state, the repulsive force between the two impact magnets 711, 712 causes the massage head 7 to urge forward, and the output shaft 2 to retreat, as shown in
[0044] When the massage head 7 retracts to a predetermined position, the electromagnetic driving module 5 is energized to trigger the output shaft 2 to strike forward, as shown in
[0045] The preferred embodiments of the present invention are illustrative only, and are not limited to the details disclosed in the drawings and the specification. Various changes can be made by those having ordinary skill in the art without departing from the equivalent changes and modifications made by the claims of the present invention, and should belong to the scope of the prevent invention.