Abstract:
A power hairbrush which oscillates in operation with a frequency in the range of 55 Hz-120 Hz and an amplitude in the range of 8-20°, with a brushhead adapted to remove sebum and other material from the scalp and hair of a user, the brushhead including a plurality of lines or rows of filament tufts, wherein each filament in the filament tufts at its distal end is split into several portions. The brushhead further includes a plurality of lines of solid tuft members positioned adjacent to the lines of filament tufts. The filament tufts are approximately 1-3 mm taller than the solid tuft members.
Abstract:
A power hairbrush which oscillates in operation with a frequency in the range of 55 Hz-120 Hz and an amplitude in the range of 8-20°, with a brushhead adapted to remove sebum and other material from the scalp and hair of a user, the brushhead including a plurality of lines or rows of filament tufts, wherein each filament in the filament tufts at its distal end is split into several portions. The brushhead further includes a plurality of lines of solid tuft members positioned adjacent to the lines of filament tufts. The filament tufts are approximately 1-3 mm taller than the solid tuft members.
Abstract:
Devices and/or methods for treating facial hair are provided in order to soften the feel thereof. The devices and/or methods generally alter the structure of the tips or ends of the hair follicles to enhance their feeling of softness. Some devices and methods employ a high speed impacting principle to split the ends of the hair follicles. Some devices and methods aim to reduce the thickness of hairs near the tips through abrasion. Some devices and/or methods employ both crushing/impacting and abrasion in order to soften the feel of a subject's facial hair.
Abstract:
A power hairbrush which oscillates in operation with a frequency in the range of 55 Hz-120 Hz and an amplitude in the range of 8-20°, with a brushhead adapted to remove sebum and other material from the scalp and hair of a user, the brushhead including a plurality of lines or rows of filament tufts, wherein each filament in the filament tufts at its distal end is split into several portions. The brushhead further includes a plurality of lines of solid tuft members positioned adjacent to the lines of filament tufts. The filament tufts are approximately 1-3 mm taller than the solid tuft members.
Abstract:
The brushhead includes a brushhead base member and at least one outer ring of bristles mounted thereto, the brush base member being non-oscillating. An inner assembly is adapted to capture a solid, semi-solid, gel or the like non-Newtonian balm element having shear thinning characteristics. In an embodiment, the inner assembly is adapted to receive energy from an oscillating action of the inner assembly produced by a motor in the appliance to which the brushhead is attachable. Oscillation of the inner portion at a selected frequency and amplitude results in the solid, semi-solid, gel or the like balm element changing to a liquid in a shear thinning effect, the liquid being useful for removal of makeup.
Abstract:
Devices and/or methods for treating facial hair are provided in order to soften the feel thereof. The devices and/or methods generally alter the structure of the tips or ends of the hair follicles to enhance their feeling of softness. Some devices and methods employ a high speed impacting principle to split the ends of the hair follicles. Some devices and methods aim to reduce the thickness of hairs near the tips through abrasion. Some devices and/or methods employ both crushing/impacting and abrasion in order to soften the feel of a subject's facial hair.