Sanding device for curved surfaces

Abrading – Machine – Rotary tool

Reexamination Certificate

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Details

C451S357000

Reexamination Certificate

active

06478663

ABSTRACT:

CROSS REFERENCE TO RELATED APPLICATIONS
Applicants claim priority under 35 U.S.C. §119 of German Application No. 198 33 814.7 filed Jul. 28, 1998. Applicants also claim priority under 35 U.S.C. §120 of PCT/DE99/00082 filed Jan. 16, 1999. The international application under PCT article 21(2) was not published in English.
BACKGROUND OF THE INVENTION
1. Field of the Invention
This invention relates to a grinding apparatus with a rotor device driving an eccentrically mounted carrier device in which a shaft is mounted provided at one end with a head to which a supporting face for abrasive paper is fastened.
2. The Prior Art
Grinding apparatuses of the abovementioned kind are used in the prior art in particular for grinding plane surfaces. For this purpose one fastens to the supporting face an abrasive paper which moves over the surface to be ground due to the eccentric motion of the shaft mounted in the carrier device in the form of superimposed harmonic oscillations, thereby subjecting said surface to a grinding process upon suitable bearing pressure of the abrasive paper. Difficulties always result with conventional grinding apparatuses when curved surfaces are to be ground since the handling of a grinding apparatus is hindered by the fact that only pointwise contact of the plane abrasive paper on the curved surface is always given.
SUMMARY OF THE INVENTION
The problem of the invention is to provide a grinding apparatus for grinding different curved surfaces with simple handling.
For a grinding apparatus of the abovementioned kind this problem is solved in that the supporting face is of curved design and has curved upper and lower sides, the supporting face is fastened to the head via an elastic element, and at least two guide devices are provided which cause the supporting face to be guided by the head reciprocatingly along a curved surface with the same radius of curvature as the supporting face.
Preferred embodiments of the invention are the object of the subclaims.
In the inventive grinding apparatus the feature that the supporting face is of curved design and has curved upper and lower sides, the supporting face is fastened to the head via an elastic element, and at least two guide devices are provided which cause the supporting face to be guided by the head reciprocatingly along a curved surface with the same radius of curvature as the supporting face, results in a grinding apparatus wherein the oscillating motion of the surface of its supporting face is forced along an imaginary curved surface having the same radius of curvature as the upper side of the supporting face due to the fact that the lower side of the supporting face has the same radius of curvature as the surface of the supporting face and the lower side of the supporting face is guided by at least two guide devices which are stationary with respect to the supporting face so as to prevent oscillating motion lateral to the axis of the shaft mounted in the carrier device and the lower side of the supporting face is guided upon lateral motion of the shaft with time-variant pressure against the particular guide devices, in conjunction with an elastic element provided on the head of the shaft and interconnecting the supporting face and the shaft.
The abrasive paper to be used with the inventive abrasive paper support apparatus is preferably applicable to the supporting face in replaceable fashion, for which purpose it is either formed as adhesive abrasive paper or provided with integrated eyes cooperating with hooks provided on the supporting face or another place on the inventive apparatus. To be fastened to a spherically formed supporting face it is provided that the abrasive paper is formed not as a solid surface but like a rosette in order to ensure that no folds form in the paper.
According to a preferred embodiment of the inventive grinding apparatus, the guide devices are provided on the lower side of the supporting face. This obtains in simple and effective fashion the desired guiding effect of the supporting face by the guide devices. It is essential here that the guide devices act on a surface whose radius of curvature corresponds to that of the surface of the supporting face. One can thus fundamentally also conceive of embodiments of the inventive grinding apparatus in which the guide devices adjoin guide faces with an accordingly provided radius of curvature which are spatially separate from the lower side of the supporting face but nevertheless mechanically connected with the supporting face.
The guide devices of the inventive grinding apparatus are preferably formed as ball-bearings, rolling bearings or slide bearings. This ensures that the desired guiding effect of the guide devices on the lower side of the supporting face can be realized with low friction and low material wear. Alternatively, the guide devices can be formed as curved guide faces made of hard material with sliding ability, in particular plastic material, and having a curvature adapted to the lower side of the supporting face. This obtains the desired guiding effect of the guide devices on the lower side of the supporting face in an especially cost-effective way.
According to further preferred embodiments of the inventive grinding apparatus, one can provide three, four or more guide devices. If at least three guide devices are provided, an especially robust and exact guidance of the supporting face is obtained.
The elastic element connecting the supporting face with the shaft mounted in the carrier device is preferably formed as a spring, in particular coil spring. This achieves the result that the lift of the supporting face with respect to the head of the shaft caused by the effect of the guide devices is compensated with a predeterminable, constant force, independently of the particular excursion of the supporting face. Alternatively, the elastic element can be formed as a disk or ring made of elastic material, in particular rubber. It is only essential here that the lifting motion caused by the guide devices between the head of the shaft and the supporting face due to the curvature of the lower side of the supporting face is compensated with as little delay and as uniformly as possible.
The supporting face of the inventive grinding apparatus can have different radii of curvature for different objects to be ground depending on the embodiment. The supporting face can for example be formed cylindrically with a concave upper side for grinding convex surfaces, or formed cylindrically with a convex upper side for grinding concave surfaces. For grinding convex spherical objects the supporting face can be formed spherically with a concave upper side, and for grinding concave spherical surfaces the supporting face can be formed spherically with a convex upper side.
If the supporting face is formed cylindrically, the guide devices are preferably disposed axis-parallel to each other. If the supporting face is formed spherically, four guide devices are preferably provided, being disposed in pairs at right angles to each other. The supporting face can also be formed so as to have at least two different curvatures in two or more planes.
The supporting face of the inventive grinding apparatus is preferably made of hard material, in particular metal or hard plastic material. For special cases of application requiring especially cautious grinding, the supporting face formed of hard material can be mounted softly cushioned on a foamed plastic layer, or a foamed plastic layer can be provided on the supporting face, or the supporting face itself can be made of soft material like wood or foamed plastic.
The inventive apparatus can have an additional eccentric device for controlling the motion of the supporting face further in presettable fashion. The additional eccentric device can be controllable with the aid of centrifugal forces and/or frictional forces. The additional eccentric device permits the inventive apparatus to be advantageously executed such that the supporting face executes a variable motion resulting in a very fine grinding structure.
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