The present invention relates to a mechanized dental instrument, in particular, an endodontic instrument.
Generally, mechanized dental instruments include an active part, and a sleeve arranged at an end of the dental instrument which is remote from the active part. The sleeve of the dental instrument is provided with a rotary drive means which, when mounted in the head of a handpiece, is able to mesh directly with a rotary drive means located upstream of the head of the handpiece. An example of such structure is described, in particular, in commonly owned French Patent Application No. 2,759,574.
Such dental instruments are generally made partially of plastic overmolded on the active part. The major disadvantage of such a production method is the resistance of the teeth of the pinions which comprise the rotary drive means, at substantial torques, leading either to fracturing or premature wear of the teeth.
The object of the present invention is to provide a mechanized dental instrument which can remedy some or all of the aforementioned disadvantages.
To this end, and in accordance with the present invention, a mechanized dental instrument is provided which includes an active part, and a sleeve arranged at an end of the dental instrument which is remote from the active part. The sleeve of the dental instrument is provided with a rotary drive means which, when mounted in the head of a handpiece, is able to mesh directly with a rotary drive means located upstream of the head of the handpiece. The drive means is produced from a flat metal piece which is fixed to the active part by being slid over the axle of the active part. The metal piece is provided with at least one opening shaped in such a way as to permit circulation of the plastic material forming the sleeve during overmolding of the sleeve on the axle to ensure the connection of the rotary drive means on the axle.
In an alternative embodiment, the opening is formed by the combination of flats formed on the axle of the active part and the central orifice of the drive means, permitting introduction of the axle through the central orifice.
In an advantageous embodiment, the drive means is produced from a flat piece having toothing which is formed by cutting and then, if appropriate, by bending.
Further detail regarding the characteristics of the present invention will become apparent from a reading of the description of illustrative embodiments which is provided hereafter, with reference to the following drawings.
The sleeve 3 of the dental instrument 1 is provided with a pinion-type rotary drive means 4 which, when mounted in a head of a handpiece, meshes directly with a rotary drive means located upstream of the head of the handpiece.
In accordance with the present invention, the drive means 4 is produced from a flat metal piece which is fixed to the active part by being slid over the axle 2a. The piece is provided with at least one opening 5 which is shaped to permit circulation of the plastic material forming the sleeve 3 when the sleeve 3 is overmolded on the axle 2a. This ensures connection of the drive means 4 on the axle 2a. As can be seen from
In the alternative embodiment of the mechanized dental instrument which is shown in
Referring to
It will be appreciated from the above description that the dental instrument of the present invention is relatively simple to produce and permits greater resistance of the drive means. Although the invention has been described in connection with two particular embodiments, the present invention will further encompass all technical equivalents of the means described.
Number | Date | Country | Kind |
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03 07090 | Jun 2003 | FR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/FR2004/001323 | 5/28/2004 | WO | 00 | 9/14/2005 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2005/004741 | 1/20/2005 | WO | A |
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2692473 | Dec 1993 | FR |
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Number | Date | Country | |
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20060172256 A1 | Aug 2006 | US |