Hair Removal Device
The present invention is concerned with a hair removal device that comprises a hair removal unit, a cap element having a skin contacting surface that extends at least on a side of the hair removal unit, and wherein elongated and elevated structures are arranged on the skin contacting surface, which elongated and elevated structures all extend essentially parallel to each other. Such a hair removal device is specifically beneficial for application on wet skin.
The present invention relates to hair removal devices, specifically those comprising a hair removal unit and a cap element having a skin contacting surface.
BACKGROUND OF THE INVENTIONThe Braun Silk épil Xpressive epilator device has several detachable cap elements that can be attached over the epilation cylinder. One such cap element (the so called efficiency cap element) has a skin contacting surface that is flat. It was found that the flat skin contacting surface is inconvenient to use on partially wet skin as the alternately wet and dry skin areas lead to a jerky gliding operation.
SUMMARY OF THE INVENTIONIt is hence desirable to improve the known hair removal device specifically with respect to better use on wet or partially wet skin.
An improved hair removal device is provided according to claim 1. Further embodiments are defined by the dependent claims.
A hair removal device as proposed comprises a hair removal unit and a cap element that has a skin contacting surface that is intended to contact the skin during regular operation. The skin contacting surface extends at least on a side the hair removal unit. The skin contacting surface may extends at least behind the hair removal unit, where “behind” is defined with respect to a preferred use direction of the hair removal device. Elongated and elevated structures are arranged on the skin contacting surface, which elongated and elevated structures all extend essentially parallel to each other. In a refinement, the elongated and elevated structures are linear structures. A preferred use direction of the hair removal device is defined by the direction into which the elongated and elevated structures extend as the gliding properties of the skin contacting surface over wet or partially wet skin is optimal if the hair removal device is drawn over the skin along the extension direction of the elongated and elevated structures (which hence is the preferred use direction).
In an embodiment, the elongated and elevated structures have a height between about 0.1 mm and about 1 mm, in particular between about 0.2 mm and about 0.6 mm. These height values specifically support the gliding properties of the skin contacting surface over wet or partially wet skin.
In another embodiment, the skin contacting surface has an average surface roughness of about 0.5 μm to about 5 μm, preferably between 1 μm and about 3 μm, and even more preferably between 2.0 μm and about 2.5 μm. Such a microstructure of the skin contacting surface was found to enhance the gliding properties of the cap element over wet or partially wet skin.
In a further embodiment, the elongated and elevated structures have a cross section (taken perpendicular to their extension direction) that is quadratic, triangular, circular, or trapezoidal, where it is understood that these cross sections may be modified in particular because of necessary rounded edges to e.g. enhance the removal of the cap element from a mould.
In an even further embodiment, the height of the elongated and elevated structures increases with increasing distance to the hair removal unit. This specifically allows for close contact of the hair removal unit with the skin or hairs growing on the skin during regular operation, while the gliding properties on wet skin are enhanced.
In a different embodiment, the skin contacting surface extends also at the sides of the hair removal unit (i.e. the skin contacting surface surrounds the hair removal unit at three sides). The skin contacting surface may further enclose the hair removal unit (i.e. the skin contacting surface may extend at all four sides of the hair removal unit).
In an embodiment, the cap element is detachable.
In another embodiment, the hair removal device is an epilator device and the hair removal unit is an epilation unit. In such a case, the preferred use direction is defined by the rotation direction of an epilation cylinder being part of the epilation unit. The preferred use direction is such that the rotating epilation cylinder surface moves towards the hairs growing on the skin when the epilator device is drawn over the skin along the preferred use direction.
The invention is further concerned with a cap element of a hair removal device and a kit that comprises such a cap element and a housing of a hair removal device.
The invention will be further elucidated by detailed discussion of an exemplary embodiment and by reference to figures. In the figures
The elongated and elevated structures 112 extend essentially parallel to the preferred use direction D on the skin contacting surface 111. This macrostructure enhance the gliding properties of the skin contacting surface over a wet or partially wet skin. A flat, essentially untextured skin contacting surface as was used so far was found to lead to a jerky operation due to ruptures of the liquid film between skin surface and skin contacting surface.
In contrast to the shown embodiment, a hair removal device as proposed may not be assembled from a hand piece part and a head part, which head part comprises a cap element. In another embodiment, the skin contacting surface 111 is an integral part of a housing of the hair removal device.
Further to the above, the elongated and elevated structures 112 raise at their two ends out of the continuous skin contacting surface to the respective height h so that the skin contacting surface 111 has a frontal edge and a back edge that are essentially unstructured. The distance of the elongated and elevated structures perpendicular to their extension direction may be about 0.5 mm to 2 mm, in particular the distance may be between about 1.0 mm and 1.5 mm. The frontal edge and the back edge of the trimmer comb necessarily are structured (alternate arrangement of teeth and cut-outs) to perform the combing task.
The material of the skin contacting surface 111 and of the elongated and elevated structures 112 may be polycarbonate (PC). Other parts of the cap element 110 may be made of polyamide (e.g. PA66). The gliding properties of the skin contacting surface (which includes the surface of the elongated and elevated structures arranged on the skin contacting surface) can be enhanced by a microstructure of the surface, e.g. the skin contacting surface 111 may have an average surface roughness (generally abbreviated by Ra) of about Ra=0.5-5 μm according to VDI 3400. The average surface roughness may in particular be chosen to lie in a range of Ra=1 μm-3 μm and it may even more particularly be chosen to lie in a range of Ra=2 μm-2.5 μm. The average surface roughness may be achieved by an according erosion process when making the mould for the cap element 110 so that the surface roughness of the mould is impressed into the skin contacting surface.
The dimensions and values disclosed herein are not to be understood as being strictly limited to the exact numerical values recited. Instead, unless otherwise specified, each such dimension is intended to mean both the recited value and a functionally equivalent range surrounding that value. For example, a dimension disclosed as “40 mm” is intended to mean “about 40 mm.”
Claims
1. Hair removal device comprising:
- a hair removal unit;
- a cap element having a skin contacting surface that extends at least on a side of the hair removal unit;
- wherein elongated and elevated structures are arranged on the skin contacting surface, which elongated and elevated structures all extend essentially parallel to each other.
2. Hair removal device according to claim 1, wherein the elongated and elevated structures are linear.
3. Hair removal device according to claim 2, wherein the elongated and elevated structures have a height of about 0.1 mm to about 1 mm.
4. Hair removal device according to claim 2, wherein the elongated and elevated structures have a height of about 0.21 mm to about 0.6 mm.
5. Hair removal device according to claim 1, wherein the skin contacting surface has an average surface roughness of about 0.5 μm to about 5 μm, and preferably of about 1 μm to about 3 μm and even more preferably of about 2.0 μm to about 2.5 μm.
6. Hair removal device according to claim 1, wherein the elongated and elevated structures have a quadratic, triangular, circular, or trapezoidal cross section.
7. Hair removal device according to claim 3, wherein the height of the elongated and elevated structures increases with increasing distance to the hair removal unit.
8. Hair removal device according to claim 4, wherein the skin contacting surface also extends at the sides of the hair removal unit.
9. Hair removal device according to claim 1, wherein the cap element is detachable.
10. Hair removal device according to claim 1, wherein the hair removal device is an epilator device and the hair removal unit is an epilation unit.
11. Cap element intended for removable attachment to a housing of a hair removal device, which cap element has a mounting structure that is arranged so as to detachably mate with a mounting structure of the housing, which cap element has a skin contacting surface on which elongated and elevated structures are arranged that all extend essentially parallel to each other.
12. Kit comprising:
- a housing of a hair removal device comprising a hair removal unit arranged at the housing; and
- a cap element of a hair removal device intended for detachable attachment onto the housing, which cap element has a skin contacting surface on which elongated and elevated structures are arranged that all extend essentially parallel to each other.
Type: Application
Filed: Apr 26, 2010
Publication Date: Nov 4, 2010
Inventors: Matthias Huisinga (Giessen), Joachim Nickel (Waldems)
Application Number: 12/767,051
International Classification: A45D 26/00 (20060101);