This application claims priority to German Patent Application DE102011010897.1 filed Feb. 10, 2011, the entirety of which is incorporated by reference herein.
The invention relates to a dental instrument comprising a head provided with cutting edges as well as a shaft which can be clamped into a driving member.
In detail, the invention relates to a dental instrument in which the head is made of a ceramic material and the shaft is made of a metal material.
In detail, the invention in particular refers to a milling tool which is specifically used in dental technology laboratories. However, the invention is not limited thereto. Also the use in general surgery, for example to avoid artefacts in imaging by a MRT during the treatment, is conceivable.
From the state of the art, it is known to manufacture such dental instruments either completely of metal or completely of plastics. In case of embodiments in which the head has a larger diameter and/or larger dimensions than the shaft, it is undesirable that an excessive amount of material has to be removed from the blank in the region of the shaft, in particular when manufacturing the instruments from a ceramic material, due to economic reasons as well as for reasons of precise manufacturing. Therefore, so-called hybrid dental instruments were developed, in which the head is made of a ceramic material, whereas the shaft is made of metal and in which the ceramic head is joined to the metal shaft. Such joints, however, require a secure connection which is not disconnected by the forces and/or vibrations occurring during the use of the instrument.
The object underlying the invention is to provide a dental instrument of the aforementioned type which comprises a non-detachable connection between the head and the shaft, while having a simple structure and being manufactured simply and at low costs.
According to the invention, it is thus provided that the head includes a mounting plug which is provided with an external thread. Such a mounting plug can be manufactured easily from a ceramic material, e.g. by grinding. As a result, low manufacturing costs are achieved on the one hand, and on the other hand, it is possible to configure the mounting plug as well as the thread such that a secure connection and a good force transmission results, and a construction can be chosen which decreases the danger of notch stress or the like.
According to the invention, it is provided that the shaft has a threaded recess at its front end portion, into which the mounting plug can be screwed. Also the production of the shaft including the threaded recess can be realized easily and at low costs, in particular by a machining process.
According to the invention, it is further provided that a locking recess is formed in the region between the mounting plug and the threaded recess.
In a particularly preferred embodiment of the invention, it is provided that the locking recess is configured such that it is suited for inserting a form-fit locking member. With the help of the inventive locking member, a relative rotation between the two threads of the mounting plug and the treaded recess is prevented. Consequently, it is excluded that the head detaches from the shaft due to forces, vibrations and the like occurring during the operation of the dental instrument.
In particular, the invention provides that the locking member is arranged such that it engages with at least a recess of the threaded recess and/or of the mounting plug in a form-fit manner to prevent rotation.
According to the invention, the locking member is made of a curable material which is preferably flexible, liquid or pasty prior to curing. In particular, the inventive locking member can be made of an adhesive material.
As an alternative, the locking member can also be realized by an active solder which is then heated inductively through the steel shaft fitted into the ceramic head.
The production of the inventive dental instrument is thus performed by first forming the external thread at the mounting plug and the threaded recess, after having manufactured the head and the shaft either as a blank or already having their final shape. Subsequently, the external thread of the mounting plug is screwed into the threaded recess, wherein the locking member is applied. The application of the locking member can be performed, e.g. when using a pasty, liquid or flexible locking member, such that the material of the locking member is applied onto the external thread and/or introduced into the threaded recess. Upon a subsequent screwing of the mounting plug into the threaded recess, the material of the locking member is thus squeezed between the thread pitches and is additionally introduced into the at least one locking recess. After curing the material of the locking member, such material connects the external thread of the mounting plug to the threaded recess. In addition, further contact surfaces between the head and the shaft can be glued or connected. Since the material of the locking member is particularly introduced into the locking recess, a form-fit anchoring is achieved, which prevents a relative rotation between the external thread and the thread of the threaded recess. Even in case of a disassociation of the contact or the adhesion between the material of the locking member and the external thread of the mounting plug or the thread of the threaded recess, no relative rotation may occur due to the form-fit anchoring. Therewith, the head cannot detach from the shaft.
The inventive anti-rotation device does not require a thick and voluminous configuration of the locking member. Rather, the two threads can be glued in a usual manner, wherein small amounts of adhesive are sufficient for this joint connection. It is essential that the locking recess is provided, which is filled with the material of the locking member and in which a solid locking member is thus formed after curing.
In a preferred embodiment of the invention, it can be provided to have a clearance between the thread of the mounting plug and the internal thread of the threaded recess, in order to introduce material for the locking member.
The locking recess is preferably formed as an annular groove arranged in the threaded recess, however, it is also possible to provide recesses directed in the axial direction, such as grooves or bevels. According to the invention, it is essential that a closed internal volume is present which is filled with the material of the locking member while the mounting plug is screwed into the threaded recess. Due to the subsequent curing of the material of the locking member, there results the inventive form-fit anchoring.
In a preferred embodiment of the invention, it is further provided that the mounting plug and/or the threaded recess includes a decompression recess. Such recess is preferably arranged axially (with respect to the center axis of the dental instrument). The decompression recess discharges excessive material of the locking member during the screwing step. Since the material of the locking member is non-compressible, there results a secure connection between the head and the shaft.
In a preferred embodiment of the invention, it is possible to form the decompression recess as the locking recess since also a decompression groove extending e.g. in the axial direction, after being filled with the material of the locking member and cured, prevents a relative rotation between the external thread of the mounting plug and the internal thread of the threaded recess in a form-fit manner.
According to the invention, adhesives are particularly used as the material of the locking member, which adhesives have a bio-compatibility pursuant to DIN EN ISO 10993.
It is obvious that the invention is not restricted to the construction of a mounting plug having an external thread at its head and a threaded recess at its shaft. Rather, it is also possible according to the invention to provide a threaded recess in the head and the mounting plug at the shaft.
The threads provided according to the invention can be of most different configurations, e.g., they can be single threads or multi threads. The basic shape of the mounting plug as well as of the threaded recess can be cylindrical or conical. Further, it is preferred that the thread is formed as a round thread. Therewith, notch stress is prevented. Further, different thread leads can be provided according to the invention.
In the following, the invention is described on the basis of an embodiment in connection with the drawing, in which
The inventive dental instrument includes a cylindrical metal shaft 3 which is configured and dimensioned in the usual manner. The shaft 3 can be clamped into a driving device, e.g. an angle piece. At its end portion, the shaft 3 is connected to a connection portion 11 having an enlarged diameter. A head 2 made of a ceramic material is attached at the connection portion 11 of the shaft 3. The head 2 can be configured in the usual manner, as is shown in the state of the art. The head 2 comprises a plurality of cutting edges 1; it may have a cylindrical, rounded, spherical, crowned or any other shape. Reference numeral 10 designates the center axis/rotary axis.
A mounting plug 4 is formed at the head 2, which mounting plug basically has a cylindrical shape and is provided with an external thread 5. The external thread 5 may e.g. be designed as a round thread.
Adjacent to the mounting plug 4, a contact surface 12 is formed which is shaped as a cone and is formed to match with a contact surface 13 of the connection portion 11 of the shaft 3. Therewith, there results a sealing abutment between the head 2 and the shaft 3, such that a jointless connection (in particular by gluing) is possible.
As is discernible from
For providing the inventive anti-rotation device, a locking recess 7 is formed in the region of the internal thread of the threaded recess 6, which is formed as an undercut annular groove.
According to the invention, a decompression recess 9 is provided which can be formed e.g. as a bevel or an axial groove of the mounting plug 4. Therewith, excessive material (adhesive) of the locking member is extruded.
It is obvious that the locking member 8 shown in
The material of the locking member can be a multi-component material, which is self-curing. However, it is also possible to use a material which can be cured e.g. by heat. Also a material which can be liquefied by heat, e.g. a solder material, can be used according to the invention.
According to the invention, a connection between the head and the shaft is thus performed by using an adhesive material as the material for the locking member by a common gluing by adhesion or the like. The inventive form-fit locking member serves to prevent an unscrewing and detaching of the thread in a case that the adhesive connection (joint connection) should disassociate by occurring forces or vibrations, due to temperature effects or other effects.
Number | Date | Country | Kind |
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10 2011 010 897 | Feb 2011 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
170178 | Locke et al. | Nov 1875 | A |
1191717 | Moore | Jul 1916 | A |
2086133 | Kennedy | Jul 1937 | A |
2177100 | Frame | Oct 1939 | A |
2380690 | Graham | Jul 1945 | A |
2506477 | Warren, Jr. | May 1950 | A |
2695452 | Christian | Nov 1954 | A |
2942640 | Lundeberg | Jun 1960 | A |
3002770 | Chesnut et al. | Oct 1961 | A |
3047316 | Wehring et al. | Jul 1962 | A |
3142138 | Kean et al. | Jul 1964 | A |
3339003 | Cessna | Aug 1967 | A |
3414034 | Imse | Dec 1968 | A |
3566947 | Jukes | Mar 1971 | A |
3687493 | Lock et al. | Aug 1972 | A |
3850054 | Weissman | Nov 1974 | A |
3879071 | Gockler | Apr 1975 | A |
4011121 | Doss | Mar 1977 | A |
4828294 | Bounie et al. | May 1989 | A |
4828295 | Plaquin et al. | May 1989 | A |
5028162 | Tsuno et al. | Jul 1991 | A |
5106130 | Ellsworth et al. | Apr 1992 | A |
5114286 | Calkins | May 1992 | A |
5407312 | Terrizzi | Apr 1995 | A |
5496137 | Ochayon et al. | Mar 1996 | A |
5598751 | Ochayon et al. | Feb 1997 | A |
5971670 | Pantzar et al. | Oct 1999 | A |
6106291 | Boston | Aug 2000 | A |
6565291 | Harpaz et al. | May 2003 | B2 |
7473049 | Holowczak et al. | Jan 2009 | B2 |
7611311 | Kakai et al. | Nov 2009 | B2 |
7887354 | Holliday | Feb 2011 | B2 |
20060062642 | Jonsson et al. | Mar 2006 | A1 |
20060105296 | Linder et al. | May 2006 | A1 |
20060127847 | Danger et al. | Jun 2006 | A1 |
20090170053 | Ikemi | Jul 2009 | A1 |
20100151421 | Devengencie et al. | Jun 2010 | A1 |
20100248182 | Sonoi et al. | Sep 2010 | A1 |
20100319492 | Smith et al. | Dec 2010 | A1 |
Number | Date | Country |
---|---|---|
102004047909 | Apr 2006 | DE |
102006049581 | Apr 2008 | DE |
102010015934 | Sep 2011 | DE |
1458886 | Dec 1976 | GB |
WO 2011006804 | Jan 2011 | WO |
Entry |
---|
Translation of WO20110006804. |
Translation of DE 10 2010 015 934 A1. |
Office Action from counterpart German application dated Sep. 29, 2011. |
European Search Report dated Apr. 7, 2015 for counterpart European Application No. EP12000008. |
Number | Date | Country | |
---|---|---|---|
20120208147 A1 | Aug 2012 | US |