CLEANING DEVICE
20180185128 ยท 2018-07-05
Inventors
Cpc classification
A61C17/3436
HUMAN NECESSITIES
B26B19/284
PERFORMING OPERATIONS; TRANSPORTING
H02K7/06
ELECTRICITY
A61C17/3418
HUMAN NECESSITIES
H02K7/065
ELECTRICITY
International classification
Abstract
Provided is a cleaning device for personal cleaning and care, comprising a cleaning device housing detachably connected to a handle housing, a bracket for supporting the cleaning device, a cleaning element carrier and cleaning elements distributed on the cleaning element carrier, a passive assembly, and a cleaning device transducer. The cleaning device transducer comprises at least two transducer elastic elements; one end of each transducer elastic element is fixedly connected to a corresponding transducer elastic element retainer, and the other end of each transducer elastic element is fixedly connected to an transmission arm of the transducer bracket coupling elastic element; wherein a cleaning device having a natural vibration frequency f.sub.natural is constituted utilizing the bending strain of an elastic material, such that the natural frequency f.sub.natural of the cleaning device is in the range of 100 Hz to 400 Hz, and the relationship between the natural frequency f.sub.natural and the frequency f.sub.0 of the electromagnetic force produced by the drive coil in the handle satisfies: 0.85f.sub.0<f.sub.natural<1.05f.sub.0. The present cleaning device has a compact structure and an aesthetically pleasing shape, rotates steadily, and produces little noise.
Claims
1. A cleaning device for personal cleaning care and converting a reciprocating motion into a rotary motion, comprising: a cleaning device housing detachably connected to a handle housing; a bracket for supporting the cleaning device, detachably fixed to the cleaning device housing; a cleaning element carrier and cleaning elements distributed on the cleaning element carrier, wherein one end of the cleaning element carrier opposite to an end of the cleaning element carrier having the cleaning elements distributed is coupled with the cleaning device housing with a seal; a passive assembly which is located above a drive coil in the handle housing and comprises a permanent magnet carrier and a plurality of permanent magnets, wherein the permanent magnet carrier is fixed to an end of a cleaning device transducer opposite to the cleaning element carrier coupling shaft, the plurality of permanent magnets are fixed to the permanent magnet carrier; wherein the cleaning device transducer comprises a transducer bracket, at least two transducer elastic elements, transducer elastic element retainers and a cleaning element carrier coupling shaft, the cleaning element carrier coupling shaft is tightly inserted into the cleaning element carrier so that the cleaning device transducer is fixedly coupled with the cleaning element carrier; one end of each transducer elastic element is fixedly coupled with a corresponding transducer elastic element retainer, and the other end of each transducer elastic element is fixedly coupled with a transmission arm of the transducer bracket coupling elastic element; wherein the cleaning device having a natural vibration frequency f.sub.natural is constituted utilizing the bending strain of an elastic material, so that the natural frequency f.sub.natural of the cleaning device is in a range of 100 Hz to 400 Hz, and a relationship between the natural frequency f.sub.natural and a frequency f.sub.0 of an electromagnetic force generated by the drive coil in the handle meets 0.85f.sub.0<f.sub.natural<1.05f.sub.0; wherein the plurality of permanent magnets are configured in such a way that, when an alternating current flows through the drive coil fixed in the handle housing, the drive coil and the plurality of permanent magnets interact to generate an electromagnetic force, such that a resultant force of the electromagnetic forces generated between the drive coil and the plurality of permanent magnets and acting on the passive assembly is close to zero, i.e., the forces acting on the passive assembly is balanced, and at the same time, the passive assembly is subjected to a torque rotating in a clockwise or counterclockwise direction formed by the electromagnetic forces, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer is less than 60 mm60 mm.
2. The cleaning device according to claim 1, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer is less than 30 mm30 mm.
3. The cleaning device according to claim 1, wherein the transducer elastic elements comprise two transducer elastic elements, i.e., first and second transducer elastic elements, which are parallel with each other and are symmetrically distributed with respect to a rotation axis or a line parallel with the rotation axis, wherein the first and second transducer elastic elements are located on both sides of the rotation axis of the transducer bracket respectively and the angle between the first and second transducer elastic elements is 180.
4. The cleaning device according to claim 1, wherein the transducer elastic elements comprise two transducer elastic elements, i.e., the first and second transducer elastic elements, which are located on both sides of the rotation axis of the transducer, and the angle between the first and second transducer elastic elements is , wherein 90<<270.
5. The cleaning device according to claim 4, wherein, 90<<180.
6. The cleaning device according to claim 1, wherein the transducer elastic elements comprise three transducer elastic elements, wherein any two of the transducer elastic elements have an angle with respect to the third transducer elastic element, and 90<<180, and an angle between the any two transducer elastic elements is , =3602.
7. The cleaning device according to claim 1, wherein the transducer elastic elements comprise rectangular elastic elements or sheet type elastic elements.
8. The cleaning device according to claim 2, wherein the transducer elastic elements comprise rectangular elastic elements or sheet type elastic elements.
9. The cleaning device according to claim 3, wherein the transducer elastic elements comprise rectangular elastic elements or sheet type elastic elements.
10. The cleaning device according to claim 4, wherein the transducer elastic elements comprise rectangular elastic elements or sheet type elastic elements.
11. The cleaning device according to claim 5, wherein the transducer elastic elements comprise rectangular elastic elements or sheet type elastic elements.
12. The cleaning device according to claim 6, wherein the transducer elastic elements comprise rectangular elastic elements or sheet type elastic elements.
13. The cleaning device according to claim 7, wherein the sheet type elastic elements each has a thickness less than its length and width, and the thickness is between 0.05 mm to 1 mm.
14. The cleaning device according to claim 1, wherein the plurality of permanent magnets comprise four permanent magnets, i.e., two first permanent magnets each having an S-pole that may face the drive coil and two second permanent magnets each having an N-pole that may face the drive coil, wherein the second permanent magnet on the left side and the first permanent magnet on the left side are substantially symmetrically distributed with respect to an iron core of the drive coil; the first permanent magnet on the right side and the second permanent magnet on the right side are substantially symmetrically distributed with respect to the iron core of the drive coil; a transversal center line of the second permanent magnet on the upper left side is aligned with a transversal center line of the first permanent magnet on the upper right side; a transversal center line of the first permanent magnet on the lower left side is aligned with a transversal center line of the second permanent magnet on the lower right side; the above two transversal center lines are parallel with each other; and when the current is energized, the current direction of the current formed by projecting the current in the drive coil on the plane of the first permanent magnet on the same side is opposite to the current direction of the current formed by projecting the current in the drive coil on the plane of the second permanent magnet on the same side at the same time.
15. The cleaning device according to claim 13, wherein the plurality of permanent magnets comprise four permanent magnets, i.e., two first permanent magnets each having an S-pole that may face the drive coil and two second permanent magnets each having an N-pole that may face the drive coil, wherein the second permanent magnet on the left side and the first permanent magnet on the left side are substantially symmetrically distributed with respect to an iron core of the drive coil; the first permanent magnet on the right side and the second permanent magnet on the right side are substantially symmetrically distributed with respect to the iron core of the drive coil; a transversal center line of the second permanent magnet on the upper left side is aligned with a transversal center line of the first permanent magnet on the upper right side; a transversal center line of the first permanent magnet on the lower left side is aligned with a transversal center line of the second permanent magnet on the lower right side; the above two transversal center lines are parallel with each other; and when the current is energized, the current direction of the current formed by projecting the current in the drive coil on the plane of the first permanent magnet on the same side is opposite to the current direction of the current formed by projecting the current in the drive coil on the plane of the second permanent magnet on the same side at the same time.
16. An electric toothbrush or electric shaver for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 1, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 30 mm30 mm.
17. An electric toothbrush or electric shaver for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 3, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 30 mm30 mm.
18. An electric toothbrush or electric shaver for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 4, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 30 mm30 mm.
19. An electric toothbrush or electric shaver for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 5, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 30 mm30 mm.
20. An electric toothbrush or electric shaver for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 6, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 30 mm30 mm.
21. An electric face cleansing instrument or electric shower for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 1, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 60 mm60 mm.
22. An electric face cleansing instrument or electric shower for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 3, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 60 mm60 mm.
23. An electric face cleansing instrument or electric shower for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 4, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 60 mm60 mm.
24. An electric face cleansing instrument or electric shower for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 5, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 60 mm60 mm.
25. An electric face cleansing instrument or electric shower for personal cleaning care, comprising a handle and the cleaning device for converting a reciprocating motion into a rotary motion according to claim 6, wherein the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 60 mm60 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
DESCRIPTION OF MAIN REFERENCE NUMERALS
[0038] 1 drive handle [0039] 2A, 2B, 2D cleaning device [0040] 3A, 3B, 3D cleaning element carrier on the cleaning device [0041] 4A, 4B, 4D cleaning element (e.g., toothbrush bristle) [0042] 5A, 5B seal [0043] 10 handle housing [0044] 11 electronic circuit board assembly PCBA [0045] 12 batteries or power supply [0046] 13 charge coil [0047] 14 drive coil [0048] 15 iron core of the drive coil [0049] 16 switch [0050] 17 switch button [0051] 20A, 20B, 20D cleaning device housings of different structures [0052] 21A, 21B, 21D right bracket of the cleaning device of different structures [0053] 22A, 22B, 22D left bracket of the cleaning device of different structures [0054] 23A, 23B, 23C, 23D cleaning device transducer of different structures [0055] 24 first permanent magnet having an S-pole facing the drive coil of the handle [0056] 25 second permanent magnet having an N-pole facing the drive coil of the handle [0057] 26 permanent magnet carrier [0058] 27A, 27B, 27D locking screw [0059] 23A1, 23B1, 23C1, 23D1 first transducer elastic element [0060] 23A2, 23B2, 23C2, 23D2 second transducer elastic element [0061] 23A31, 23B31, 23B32, 23C3, 23D3 transducer elastic element retainer [0062] 23A4, 23B4, 23C4, 23D4 transducer bracket [0063] 23A41, 23A42, 23B41, 23B42, 23C41, 23C42, 23D41, 23D42 transmission arm of the transducer bracket coupling elastic element [0064] 23A5, 23B5 cleaning element carrier coupling shaft [0065] 23C11, 23C22, 23C33 first, second, third transducer elastic elements respectively
DETAILED DESCRIPTION
[0066] Hereinafter, an exemplary embodiment of the present invention will be described in more detail with an electric toothbrush as a typical example of a cleaning device for personal cleaning care, and with reference to the accompanying drawings. Although only the electric toothbrush is used as an example, the present invention is not limited thereto. The present invention is also applicable to the electric shavers, the electric face cleansing instruments, the electric showers, and the like.
[0067] Throughout the accompanying drawings, similar reference numerals refer to similar parts.
[0068] For the sake of clarity, the present description employs terms expressing the spatial relative position, such as up, down, upper, lower, left, right, transversal, forward, reversal and so on, to briefly describe the interrelationships between one element or feature and another element (s) or feature (s) as shown in the figures, wherein the up, down, upper and lower are relative to the axis of the cleaning device; the upward direction facing the corresponding view and parallel to the axis of the cleaning device is defined as up or upper, and the downward direction parallel to the axis of the cleaning device is defined as down or lower; the left and right are relative to the axis of the cleaning device; the left side of the axis of the cleaning device along the direction perpendicular to the axis of the cleaning device when facing the corresponding view is defined as left, and the right side thereof is defined as right; the transversal means the direction perpendicular to the axis of the cleaning device; the outwards means the direction perpendicular to the paper surface and facing the operator; the inward means the direction perpendicular to the paper surface away from the operator.
[0069] Although the terms first, second, etc. are used in the present description to describe a plurality of elements or components, these elements or components are not to be limited by these words. These words are used only to distinguish one element or component from another element or component, not including order. Thus, interchanging the ordinal numbers of those elements or components discussed below does not go beyond the conception and scope of the invention.
[0070] In addition, the word and/or as used in this application include any one of the listed one or more associated vocabularies or all combinations thereof.
[0071] In an embodiment of the present invention, as shown in
[0072] As shown in
[0073] As shown in
[0074] In the present example shown in
[0075]
[0076] When the current opposite to the current I shown in
[0077]
[0078] As shown in
[0079] Preferably, the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer, is less than or equal to 30 mm30 mm to 60 mm60 mm, which can be determined according to specific circumstances. As to the electric toothbrush and the electric shaver, the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer is less than or equal to 30 mm30 mm; as to the electric face cleansing instrument and electric shower, the maximum projection area formed by projecting the minimum plane of the same horizontal section containing all the permanent magnets of the passive assembly on a plane perpendicular to a rotation axis of the cleaning device transducer is less than or equal to 60 mm60 mm. With this structure, the personal care appliance of the present invention is more compact and has a more attractive appearance.
[0080] In the present invention, the efficient motion of the cleaning device can be achieved by the bending characteristic of the elastic elements.
[0081] As shown in
[0082] The cleaning device 2A has its own natural frequency f.sub.natural, and this cleaning device 2A can be regarded as a spring oscillator system constituted by a spring of spring stiffness factor K and a mass m. According to the vibration principle, the natural frequency f.sub.natural of the spring oscillator is directly proportional to {square root over (k/m)}, where K is the spring stiffness factor generated by all elastic elements in the cleaning device 2A being equivalent to the spring oscillator system, and m is the mass generated by all generalized mass in the cleaning device 2A being equivalent to the spring oscillator system.
[0083] In the present example shown in
[0084] According to the vibration principle, when the natural frequency f.sub.natural of the cleaning device 2A is close to or equal to the frequency f.sub.0 of the electromagnetic force generated by the drive coil 14 in the handle housing 10, the personal care appliance has a higher efficiency, and in addition, peoples always desire that the personal care appliance has a good hand feeling, its handle 1 therefore cannot be too bulky. Generally speaking, the diameter of the handle 1 should be less than 35 mm, and an efficient structure can make the handle 1 tinier so that the personal care appliance can have an aesthetical exterior. In the present invention, by reasonably designing the generalized mass of the passive assembly and the stiffness factor of the elastic elements, the electromagnetic force of a frequency f.sub.0 generated by the drive coil 14 in the handle housing 10 and acting upon the cleaning device 2A brings the cleaning device 2A into a resonance oscillation state or resonant vibration state, thus an efficient system can be obtained within a small space. According to the present invention, in combination with the selection of the dimension of the passive assembly and the reasonable configuration of the elastic elements, the natural frequency range of the cleaning device 2A can be 100 Hz to 400 Hz, that is, the cleaning device 2A of this example can match the handle 1 of the personal care appliance which outputs the electromagnetic force having a frequency between 100 Hz to 400 Hz, and an efficient energy transfer between the handle 1 and the cleaning device 2A can be implemented. In this example, the relationship between the natural frequency f.sub.natural of the cleaning device 2A and the frequency f.sub.0 of the electromagnetic force generated by the drive coil 14 in the handle 1 is:
0.85f.sub.0<f.sub.natural<1.05f.sub.0.
[0085] Preferably, as shown in
[0086] In the examples shown in
[0087] As shown in
[0088] As shown in
[0089] As shown in
[0090]
[0091] The transducer elastic element retainers 23B31, 23B32 are provided on the outer side of the transducer bracket 23B4 respectively, the right and left brackets 21B, 22B of the cleaning device and the transducer elastic element retainers 23B31, 23B32 are fixedly coupled together through the locking screw 27B. In this example, the first transducer elastic element 23B1 and the second transducer elastic element 23B2 are parallel with each other, and are symmetrically distributed with respect to the rotation axis or a line parallel with the rotation axis. The first transducer elastic element 23B1 and the second transducer elastic element 23B2 are located on both sides of the rotation axis of the transducer bracket, the angle between the first transducer elastic element 23B1 and the second transducer elastic element 23B2 is 180. Assuming that, when the drive coil 14 applies an electromagnetic force to the permanent magnets 24, 25 and the passive assembly is subjected to a clockwise torque, the transmission arms 23B41, 23B42 of the transducer bracket coupling elastic element of the cleaning device transmit a torque to the first and second transducer elastic elements 23B1, 23B2, so that the first transducer elastic element 23B1 generates bending strain around the transducer elastic element retainer 23B31 in the counterclockwise direction, and so that the second transducer elastic element 23B2 also generates bending strain in the counterclockwise rotation direction around the transducer elastic element retainer 23B32. The transducer 23B rotates clockwise around a rotation axis. On the contrary, when the passive assembly is subjected to a counterclockwise torque, the transmission arms 23B41, 23B42 of the transducer bracket coupling elastic element of the cleaning device transmit a torque to the first and second transducer elastic elements 23B1, 23B2, so that the first and second transducer elastic elements 23B1, 23B2 generates clockwise bending strains around respective transducer elastic element retainers 23B31, 23B32. The transducer 23B makes a counterclockwise rotation around the rotation axis. The motion analysis of such a cleaning device is similar to the motion analysis of the former cleaning device.
[0092]
[0093] Although the above description has been made with two transducer elastic elements as an example, the present invention is not limited to the two as shown in this example. For example, as shown in
[0094] Of course, more transducer elastic elements may be provided without departing from the scope of the present invention, which will not be enumerated here.
[0095] The present invention creatively introduces at least two transducer elastic elements, and these transducer elastic elements are distributed around the rotation axis of the cleaning device transducer or a line parallel with the rotation axis. The angel between at least two transducer elastic elements is greater than 90 and less than 270; the angle of the torque applied to the two transducer elastic elements with respect to the equivalent force of the respective transducer elastic element retainers is greater than 90 and less than 270; and the equivalent force and the moment of the respective transducer elastic element retainers have the same direction. It is preferable to provide two transducer elastic elements having an angle of 180 and to distribute them symmetrically with respect to a rotation axis or a line parallel with the rotation axis so that the forces on all transducer elastic elements are equivalent to the electromagnetic resultant force on the rotation axis of the cleaning device transducer and the electromagnetic resultant force is substantially zero, and a torque around the rotation axis of the cleaning device transducer or a line parallel with the rotation axis is produced. In comprehensive consideration of the mechanical properties and frequency response performances of the transducer elastic elements, it is preferred that the transducer elastic elements in this example are sheet type elastic elements. It is further preferred that the thicknesses of the sheet type elastic elements are smaller than their lengths and the widths. It is most preferred that the thicknesses of the sheet type elastic elements are between 0.05 mm and 1 mm.
[0096] The transducer of the present example is provided with at least two elastic elements. Two or more elastic elements may be equivalent to a plurality of springs, and the plurality of springs are equivalent to a virtual spring. The virtual spring and the mass m constitute a spring oscillator system. The spring stiffness factor in the spring oscillator system is the stiffness factor of this virtual spring, so the performance of a single elastic element directly affects the spring stiffness factor in the spring oscillator system. In the following, a description is made by taking a rectangular elastic element (a type of sheet type elastic element) as an example. Definition:K.sub.1rectangular is an equivalent stiffness factor of a single rectangular elastic element when being subjected to bending deformation; the geometrical thickness of the rectangular elastic element in the force direction is h; the geometric dimension of the rectangular elastic element in a direction from the force bearing point toward a fixation point, i.e., the direction of the force arm, has a length L and a width b; according to the principle of solid mechanics, the K.sub.1rectangular is directly proportional to bh.sup.3/L.sup.3, and the thickness h is in high correlation with the stiffness factor K.sub.1rectangular, thus by adjusting the thickness h, different K.sub.1rectangular can be obtained.
[0097] Preferably, the thickness of the sheet type elastic element is between 0.05 mm and 1 mm.
[0098] The circular elastic elements and sheet type elastic element are common elastic elements in industrial applications, and they are easy to be obtained from the market. In the following, the equivalent stiffness factors are analyzed for the rectangular elastic element (a type of the sheet type elastic element) and the circular elastic element, when the elastic element is in a bending motion. The diameter of the circular elastic element is defined as d. The magnitude of the equivalent stiffness factor K.sub.1 of the elastic element is directly proportional to the motion amplitude of the cleaning element. Since the equivalent stiffness factor K.sub.1rectangular of the rectangular elastic element is proportional to the bh.sup.3/L.sup.3, the equivalent stiffness factor K.sub.1circular of the circular elastic element is proportional to d.sup.3/L.sup.3 thus for the adjustment of the equivalent stiffness factor K1, the rectangular elastic element has a larger adjustable extent than the circular elastic element. For example, if the width b of the rectangular elastic element is adjusted to be 1.1 times the initial value, the equivalent stiffness factor K.sub.1rectangular becomes 1.1 times the initial value. Whereas when the diameter d of the circular elastic element is adjusted to 1.1 times the initial value, the equivalent stiffness factor K.sub.1circular becomes 1.74 times the initial value. Obviously, the rectangular elastic element is more likely to obtain different stiffness factor than the circular elastic element by adjusting the geometric dimensions of the members.
[0099] From the above, the rectangular elastic element may achieve a fine tuning of the equivalent stiffness factor K.sub.1rectangular of the elastic element by adjusting the value of the width b of the elastic element, and it may also achieve a coarse tuning of the equivalent stiffness factor K.sub.1rectangular of the elastic element by adjusting the value of the thickness h of the elastic element. The analyses about the sheet type elastic element and rectangular elastic element are similar to each other, and in consideration of the dimensions of the member, the sheet type elastic element is preferable for the present invention.
[0100] As stated above, in order to make the personal care appliance have an efficient energy conversion performance, the natural frequency f.sub.natural of the cleaning device should be close to or equal to the frequency f.sub.0 of the electromagnetic force generated by the drive coil in the handle housing 10. Likewise, f.sub.natural is in proportional to {square root over (k/m)}, and in the present example, different values of the stiffness factors K can be obtained by adjusting the thickness h of the sheet type elastic element, so that 0.85f.sub.0<f.sub.natural<1.05f.sub.0.
[0101] In the course of use, the personal care appliances will inevitably come into contact with the liquid, and thus the personal care appliance is usually sealed, that is, it is water-proof. Since the handle is sealed, and the power devices inside the handle have a poor heat dissipation condition, it is necessary to control the power consumption of the power devices in the personal care appliance. According to the present invention, by reasonably distributing the permanent magnets and the elastic elements so as to constitute an efficient moving mechanism, it is possible to improve the efficiency of the personal care appliance, and to ensure that the maximum input power of the electric toothbrush or the electric shaver is less than 6 W, to ensure that the maximum input power of the electric face cleansing instrument is less than 10 W, and to ensure that the maximum input power of the electric shower is less than 15 W.