Winding cooling structure of shaft motor
US-9680354-B2 · Jun 13, 2017 · US
US2016181901A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016181901-A1 |
| Application number | US-201514970568-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 16, 2015 |
| Priority date | Dec 23, 2014 |
| Publication date | Jun 23, 2016 |
| Grant date | — |
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The present invention relates to electric appliances for personal care, in particular electric shavers, comprising a magnetic linear drive unit having first and second drive components supported for linear displacement relative to each other and adapted to magnetically interact with each other, wherein a drive support is provided for supporting the drive unit onto a mounting structure. The drive support supporting the drive unit onto a mounting structure of the installation environment is adapted to provide for at least one axis of rotation for the drive unit allowing said drive unit to rotate relative to the mounting structure, said axis of rotation being spaced apart from the drive unit to provide for a transmission ratio increasing or decreasing the oscillation amplitude of the functional element driven by the drive unit vis-à-vis the oscillation amplitude of the drive unit.
Opening claim text (preview).
1 . An electric appliance for personal care, in particular electric shaver, comprising a magnetic linear drive unit having first and second drive components connected to each other by a first spring device for linear oscillation relative to each other and adapted to magnetically interact with each other, wherein a drive support including a second spring device is provided for movably supporting the drive unit onto a mounting structure, wherein said drive support provides for an axis of rotation for the drive unit relative to the mounting structure, thereby allowing said drive components to rotate relative to the mounting structure, said axis of rotation being spaced apart from a center of vibration of the drive components and/or center of gravity of the drive unit. 2 . The electric appliance according to claim 1 , wherein the second spring device of said drive support includes a pair of spring elements supporting said drive unit relative to said mounting structure, said pair of spring elements defining a four point joint supporting said drive unit rotatable about said at least one axis of rotation, wherein said four point joint includes two connection points fixed with the mounting structure and two connection points fixed with the drive unit. 3 . The electric appliance according to claim 1 , wherein a distance of the connection points fixed with the drive unit from each other is different from a distance of the connection points fixed with the mounting structure from each other. 4 . The electric appliance according to claim 2 , wherein said pair of spring elements includes leaf springs on opposite sides of the drive unit arranged with an inclination relative to each other and arranged to define, with their longitudinal axes, a virtual intersection point outside a center region of the drive unit. 5 . The electric appliance according to claim 4 , wherein said leaf springs are arranged, in a neutral position of the drive unit with the drive components being inactive, to define an angle of inclination between the leaf springs ranging from 2×1° to 2×10°. 6 . The electric appliance according to claim 4 , wherein said leaf springs are arranged in a V-configuration where the virtual intersection point is positioned on a side of the drive unit opposite to the functional element of the electric appliance driven by said drive unit. 7 . The electric appliance according to claim 4 , wherein the leaf springs are arranged in a V-configuration where the virtual intersection point is arranged on a side of the drive unit facing the functional element of the electric appliance driven by the drive unit. 8 . The electric appliance according to claim 1 , wherein at least one of the drive support and the second spring device of said drive support is configured to provide for a transmission ratio increasing or decreasing an oscillation amplitude of the functional element of the electric appliance driven by the drive unit based on the oscillation amplitude of said drive unit. 9 . The electric appliance according to claim 1 , wherein the drive support is adapted to provide for said at least one axis of rotation extending transverse to the oscillation axis of the drive unit and/or transverse to a longitudinal axis of a handpiece of the electric appliance. 10 . The electric appliance according to claim 1 , wherein said first and second drive components are connected to each other by means of a pendulum bearing or a four point bearing allowing for linear oscillation of said first and second drive components relative to each other. 11 . The electric appliance according to claim 10 , wherein said pendulum bearing is formed by said first spring device. 12 . The electric appliance according to claim 1 , wherein at least one of said first and second drive components is connected to the mounting structure by means of a pendulum bearing or a four point bearing for linear oscillation of said at least one drive component relative to said mounting structure along said linear oscillation axis. 13 . The electric appliance according to claim 12 , wherein said pendulum bearing is formed by the second spring device. 14 . The electric appliance according to claim 13 , wherein said drive support includes a damper for dampening movements of the drive carrier and the drive components supported thereon about said at least one axis of rotation.
Reciprocating, oscillating or vibrating parts of the magnetic circuit · CPC title
with armatures moving in alternate directions by alternate energisation of two coil systems · CPC title
Motors without a rotating central drive shaft, e.g. linear motors · CPC title
Means for supporting bearings, e.g. insulating supports or means for fitting bearings in the bearing-shields (magnetic bearings H02K7/09) · CPC title
with armatures moved one way by energisation of a single coil system and returned by mechanical force, e.g. by springs · CPC title
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