The invention relates to a pencil with a pencil casing made of a sharpenable casing material, for example of wood or plastic, and a core held in a central receiving bore in the pencil casing that extends in the longitudinal direction of the pencil. In a pencil of this type, after a core section that protrudes from the forward end of the pencil has been used up, part of the pencil casing is typically removed with the aid of a pencil sharpener in order to expose a further core section.
It is an object of the invention to provide a pencil which is improved in terms of its utilitarian design and which has an alternative design that provides an improvement in particular in terms of its handling and its possible applications.
With the foregoing and other objects in view there is provided, in accordance with the invention, a pencil, comprising:
a pencil casing formed of a sharpenable casing material, said pencil casing having a rear end, a forward end, and a central receiving bore formed therein extending in a longitudinal direction defined by said pencil casing;
a core disposed in said central receiving bore of said pencil casing;
at least one optical fiber at least partially surrounded by said casing material of said pencil casing and extending in the longitudinal direction, said at least one optical fiber being made of a sharpenable material and having a light entry surface disposed at said rear end of said pencil casing and a light exit surface at said forward end of said pencil casing; and
a light source disposed at said rear end of said pencil casing and configured to inject light at said light entry surface, wherein light exits at said light exit surface of said optical fiber at said forward end of said pencil casing.
In other words, the objects of the invention are achieved by providing a pencil as outlined above which, in addition, has at least one optical fiber in the pencil casing and which extends in the pencil's longitudinal direction. The optical fiber is also made of a sharpenable material and the light entry surface of it is arranged at the rear end of the pencil casing such that a light source, which is present there, can be used to apply light to said light entry surface. The light exit surface of the optical fiber exits at the front end of the pencil casing. The light exit surface is movable, as it were, when the pencil front end is sharpened. Firstly, such a pencil can be used, if required, to illuminate a surface on which a core deposit takes place, such as paper in the case of a writing, drawing or sketching pencil or the skin in the case of a cosmetics pencil. In addition to visible light, a surface of the type mentioned can also be irradiated with UV or infrared light, for example in order to effect a crosslinking reaction in a UV-curable core mass transferred onto the surface or in order to accelerate the drying of a core mass by addition of heat using IR radiation.
A light source, which emits for example in the visible, UV or IR range of the electromagnetic spectrum, and a power source, which serves for supplying power to the light source, such as one or more button cells or chargeable batteries, are accommodated in a container located at the rear pencil end at least when the pencil is in use. This container may be connected to the pencil fixedly or preferably detachably. In the latter case, the container, which is preferably in the form of a pencil extension or a pencil cap, can be used further in a new pencil after a pencil has been used up. In order to ensure the sharpenability of the pencil casing, which consists of materials such as wood, plastic or wood-plastic compounds, the optical fibers used are made of a sharpenable plastic such as PMMA, PC, PS, ABS or PET, for example having a diameter of 250 μm to 1000 μm, preferably at most 500 μm.
Other features which are considered as characteristic for the invention are set forth in the appended claims.
Although the invention is illustrated and described herein as embodied in a luminous pencil, it is nevertheless not intended to be limited to the details shown, since various modifications and structural changes may be made therein without departing from the spirit of the invention and within the scope and range of equivalents of the claims.
The construction and method of operation of the invention, however, together with additional objects and advantages thereof will be best understood from the following description of specific embodiments when read in connection with the accompanying drawings.
Referring now to the figures of the drawing in detail the pencils of the embodiments shown in the figures all comprise a pencil sheath or casing 1 made of a sharpenable material. The casing 1 is formed with a receiving bore or hole 3 extending through the pencil casing in its longitudinal direction or coaxially to its central longitudinal axis 2. The receiving bore 3 is filled with a core mass forming a core 4. When the core is in the sharpened state—i.e., when a tip 5 is formed at the forward end of the pencil—the core protrudes from the pencil casing 1. As mentioned, the pencil casing consists of a sharpenable material for example wood, with cedar, poplar, linden, pine, pulai and gmeline being particularly suitable here. The pencil casing 1 can also consist of a plastics material as long as it has a consistency that is amenable to sharpening, for example by a corresponding addition of plasticizers or other measures. Suitable for this are, for example, olefins or cellulose acetate butyrate or cellulose propionate with a proportion of a plasticizer, for example of a fatty acid ester, of 5 to 35 percent by weight. The pencil casing 1 can also consist, for example, of composite materials, such as a wood-plastic compound.
A plurality of optical fibers 6 are disposed in the pencil casing 1, with the optical fibers 6 being at least partially surrounded on their entire length by the pencil casing 1 or by the material forming that pencil casing. An optical fiber of the type mentioned here usually consists of a plastic such as PMMA, PC, PS, ABS or PET, with PMMA being particularly preferred. If only one optical fiber 6′ is used, it is preferably designed as a hollow fiber which encloses the core 4 concentrically (
In a preferred embodiment variant, a light source 8, a power source 10 and optionally a switch 20 for switching the light source 8 on and off are arranged in a container 13, which is designed in the manner of a sleeve and is fixed, at least while the pencil is in use, at the rear end 14 of the pencil casing 1, for example plugged thereon or screwed thereon (see
A container 13, which is fixed detachably to the pencil casing 1, is preferably designed as a pencil extension or extender 17, with a holding clip 11 optionally being disposed on it (
A container 13, which can be detachably fixed to the rear end 14 of the pencil casing 1, can also be designed as a closure cap 29 which can be plugged onto the forward end 30 of the pencil casing 1 in order to protect the core 4 (
In the case of a pencil casing 1 which consists of a thermoplastic, an optical waveguide 6 can be embedded into the plastics material, which can be realized for example by way of producing the pencil casing 1 by coextrusion. In this case, it is easily possible to maintain, if necessary, a radial spacing 32 between core 4 and an optical fiber 6 or 6′, with the result that the core is surrounded completely by the material of the pencil casing 1 on its entire length (
In the exemplary embodiment shown in
Depending on the type of desired use of a pencil according to the invention, a light source 8, preferably a light-emitting diode, is chosen which emits the suitable radiation for the respective intended application. If the aim is to improve the use of the pencil under poor light conditions, a light source 8 which emits visible light is used. On account of the close proximity of the optical fibers 6 or their light exit surfaces 37 to the core 4, the region of a writing or drawing substrate or a skin region on which a core deposit is meant to take place is illuminated. In another use, a light source 8 which emits light in the ultraviolet range rather than visible light is used, for example a light-emitting diode on aluminum nitride basis or aluminum gallium nitride basis. In this case, the core consists of a UV-crosslinkable core mass.
Curing of a deposit can then take place preferably while the deposit on a writing or drawing substrate is produced, for example with the aim to produce a waterproof coating which adheres fixedly to the substrate. Finally, a light source which emits infrared radiation preferably in a wavelength range of 1 μm to 2 μm can be used as the light source 8, for example a light-emitting diode on gallium arsenide basis. Such a use is sensible for example in the field of cosmetics. The user perceives the warming infrared radiation during application of the core mass onto the skin as pleasant. In addition, the infrared radiation can generally be used to heat a deposit of core mass produced on a substrate in order to accelerate drying thereof.
Number | Date | Country | Kind |
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10 2009 049 722 | Oct 2009 | DE | national |
This application is a continuation, under 35 U.S.C. §120, of copending international application No. PCT/EP2010/064854, filed Oct. 5, 2010, which designated the United States; this application also claims the priority, under 35 U.S.C. §119, of German patent application No. DE 10 2009 049 722.6, filed Oct. 17, 2009; the prior applications are herewith incorporated by reference in their entirety.
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Number | Date | Country | |
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Parent | PCT/EP2010/064854 | Oct 2010 | US |
Child | 13038816 | US |