The invention relates to a sharpener for an oval pencil, having a sharpener body, having a guide collar which is provided with an oval bore defining a pencil-guiding channel, and which is mounted on the sharpener body such that it can be rotated essentially about the axis of the pencil-guiding channel, and having a shaving blade which is fastened on a blade holder of the sharpener body such that it is positioned in an axially offset manner in relation to the guide collar and obliquely in relation to the axis, a concave guide contour, into which the shaving blade projects by way of a cutting edge, being formed on an inner surface of the blade holder which is adjacent to the pencil-guiding channel.
Such a sharpener is known from DE 76 29 766 U1. In the case of the known sharpener, the guide collar is guided in the sharpener body such that it can be displaced along a normal direction which runs perpendicularly to the axis of the pencil-guiding channel and approximately perpendicularly to the blade surface. The tip of the pencil which is to be sharpened is pressed against the shaving blade by a spring-loaded pressure-exerting body, which has a mating contour curved in the opposite direction to the concave guide contour.
A further sharpener of the abovementioned type is known from DE 100 55 008 A1. In this document, the guide collar, and thus the axis of the pencil-guiding channel, is arranged in a stationary manner in a sharpener housing which forms the sharpener body. In contrast, the blade holder, and thus the shaving blade, can be displaced along the normal direction.
Conventional sharpeners of the abovementioned type often have the problem of the pencil only being shaved non-uniformly along the circumference of its tip during the sharpening operation. This is frequently associated with the pencil “catching” on the shaving blade, i.e. with rotation being opposed by an abruptly fluctuating torque. This is unpleasant for handling reasons and may result in the pencil surface splintering in the region of the tip of the pencil or even in the pencil core breaking off.
Furthermore, it is known from DE 25 55 564 B2, in the case of a sharpener for an oval pencil, for a guide collar for the pencil to be provided with a plurality of cams which, when the guide collar is rotated in relation to a sharpener body, roll over corresponding stops of the sharpener body. As a result, the axis of a pencil pushed into the guide collar is guided in relation to the sharpener body, when the pencil is rotated, such that the lateral surface of the pencil always remains in contact with the cutting edge of the shaving blade. The known sharpener, however, is of comparatively complicated construction and is thus disadvantageous for production reasons.
The object of the invention is to specify a sharpener which is of straightforward design and thus, in particular, is inexpensive to realize and is particularly suitable for sharpening an oval pencil.
This object is achieved according to the invention by the features of claim 1. Accordingly, for a sharpener of the type mentioned in the introduction, it is provided that the guide contour and guide collar are designed such that, when the pencil positioned in the pencil-guiding channel defined by the guide collar is rotated in relation to the sharpener body, the axis of the pencil-guiding channel is guided on an essentially oval path in relation to the cutting edge of the shaving blade.
The invention is based on the knowledge that the functional drawbacks of conventional sharpeners of the generic type are attributable to the fact that, in these sharpeners, the pencil axis and the cutting edge of the shaving blade, during sharpening, are merely displaced in relation to one another along the normal direction perpendicular to the pencil axis. This is because this results in the lateral surface of the pencil butting smoothly against the cutting edge only in the regions where the radius of the pencil is at a minimum or a maximum. Between these regions, the lateral surface of the pencil usually lifts off from the cutting edge of the shaving blade, which results in the above described malfunctioning. If, in contrast, the lateral surface of the oval pencil is rolled precisely over the cutting edge, as is the case with the sharpener known from DE 25 55 564 B2, then the pencil axis describes an oval path in relation to the cutting edge in cross-sectional projection, that is to say it moves both in the normal direction in relation to the cutting edge and, perpendicularly thereto, in the lateral direction.
The invention takes as its basis the consideration of using simplified design means to achieve this elliptical guidance of the pencil axis when the pencil is rotated in relation to the sharpening body. This design simplification is achieved, as is known, with the aid of a concave guide structure in the region of the cutting edge, as has already been disclosed by DE 76 29 766 U1 (
There are a number of advantageous variants of providing the axis of the pencil-guiding channel with the necessary lateral freedom of movement. On the one hand, in this respect, provision is made for mounting the guide collar in the sharpener body with play, in particular, in the lateral direction. As an alternative, or in addition, it is provided that this play is obtained from the guide collar itself by the guide collar being formed from an elastic material, with the result that, on account of this elasticity, the wall of the bore provided in the guide collar is flexible such that a pencil pushed into the guide collar (and thus the axis of the pencil-guiding channel) can be pivoted slightly in relation to the axis of the guide collar.
With sufficiently flexible guidance of the axis of the pencil-guiding channel by way of the guide collar, it is possible for the shaving blade, as is provided in a particularly straightforward embodiment of the invention, to be fixed in a stationary manner on the sharpener body. However, particularly good sharpening behavior is achieved in a preferred embodiment of the sharpener in which the shaving blade can be deflected elastically essentially in the normal direction. This can be realized particularly straightforwardly in design terms by the blade holder being formed as a resilient lug which is made of an elastic material, in particular an elastic polymer material, and is connected to the rest of the constituent parts of the sharpener body along a side line or side edge.
The blade holder designed in this way is preferably fixed on the sharpener body along a side line which is Essentially parallel to the cutting edge, especially since in this way, with the elastic deflection of the blade holder during the sharpening operation, the positioning angle of the shaving blade remains essentially constant in relation to the pencil axis. Furthermore, in particular in the vicinity of the line along which it is connected to the sharpener body, the blade holder expediently has a predetermined bending location.
In an advantageous development of the invention, the guide collar is snapped into a corresponding bearing bore of the sharpener body, it being possible for this snap-in connection to be released without being destroyed. This allows, for example, a straightforward exchange of different guide collars which are provided for different pencil cross sections.
It is preferable, furthermore, for the surface of the shaving blade to be positioned slightly obliquely in relation to the tangent to the pencil-guiding channel at the location of the cutting edge. It has been found that a particularly good cutting behavior can be achieved as a result.
Exemplary embodiments of the invention are explained in more detail hereinbelow with reference to a drawing, in which:
Parts which correspond to one another are always provided with the same designations in all the figures.
The sharpener 1, which is illustrated in a plan view from above in
The sharpener body 2 is an essentially wedge-shaped design with a flattened wedge tip 5. On the wedge base 6, which is directed away from the wedge tip 5, the sharpener body 2 is provided with a base wall 7 configured as a double wall. Introduced into the base wall 7 is a bearing bore 8 in which, in turn, the guide collar 3 is mounted in a rotatable manner (in
A wall arranged on the wedge slope 9 of the sharpener body 2 serves as a blade holder 10. The blade holder 10 has a mount 11 in which the shaving blade 4 is positioned such that it projects slightly, by way of a cutting edge 12, through a shaving-discharge slot 13 in relation to an inner surface 14 of the blade holder 10. The shaving blade 4 is fixed on the blade holder 10 by means of a fastening screw 15. The sharpener body 2 is open in the direction of the horizontal surface 16 of the wedge shape.
The guide collar 3, which is illustrated in longitudinal sections which have been rotated through 90° in relation to one another in
The bore 17 defines a pencil-guiding channel 18. The pencil-guiding channel 18 referred to is the abstract volume which the pencil S pushed into the sharpening position in the guide collar 3 takes up in relation to the sharpener 1. The pencil-guiding channel 18 is obtained essentially by the interior of the bore 17 and the imaginary extension of the latter outside the guide collar 3. In particular, the pencil-guiding channel 18 has an oval cross section 19 corresponding to the cross section of the bore 17 and the pencil cross section. Furthermore, the axis of the bore 17 defines an axis 20 of the pencil-guiding channel 18.
The guide collar 3 is snapped into the bearing bore 8 of the sharpener body 2. In order to allow the guide collar 3 to be snapped in, it is slotted a number of times starting from its end 22 which is directed toward the interior 21 of the sharpener body 2 (
In order to give the pencil axis (and thus the axis 20 of the pencil-guiding channel 18) a certain freedom of movement in relation to the sharpener body 2, the guide collar 3 is mounted in the bearing bore 8 with a little play, in particular, in the lateral direction 25. The lateral direction 25 referred to here is the direction which is perpendicular to the axis 20 in a cross-sectional projection according to
Furthermore, the guide collar 3 is produced from a polymer material which is comparatively soft and can thus be subjected to slight elastic deformation. This material serves, in turn, to provide the axis 20 of the pencil-guiding channel 18 with a certain amount of play in relation to the sharpener body 2. As is shown in a highly exaggerated schematic illustration in
This freedom of movement of the axis 20 in relation to the sharpener body 2 is utilized according to the invention in order for it to be possible during the sharpening operation, i.e. when the pencil S pushed into the sharpening position in the guide collar 3 is rotated in relation to the sharpener body 2, for the axis 20 to be deflected in relation to the cutting edge 12, at the axial height of the shaving blade 4, both in the lateral direction 25 and in the normal direction 26. As is illustrated hereinbelow with reference to
Each of
If then, during the sharpening operation, the pencil S is rotated in relation to the original position 29 according to
As the pencil S rotates further, according to
If one looks at the change in position of the axis 20 over the course of
The free end 36 of the horizontal leg 35 just rests loosely on the frame 31. The blade holder 10 is thus connected to the rest of the constituent parts of the sharpener body 2 merely in the region of the vertical leg 32 and thus, in the plan view according to
The resilient suspension of the shaving blade 4 improves the sharpening behavior of the sharpener 1. In particular, in this configuration, the shaving blade 4 yields slightly when the pencil S is pushed into the guide collar 3, for sharpening purposes, with excessive force, and thus prevents the pencil core from breaking off. In addition, the shaving blade 4 yields if the pencil-guiding channel 18 is displaced through approximately 90° from the lateral position illustrated in
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Number | Date | Country | |
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20050257386 A1 | Nov 2005 | US |