Background of the Invention
The invention relates to a dental instrument with a tool for treating teeth, the tool being fixed in a gripping shaft and is also removable therefrom.
Dental instruments for manually working on teeth are known in numerous different forms. In the simplest constructional embodiment the dental instrument is constituted by a single piece formed by a gripping shaft and a tool. As it is necessary to use tools of different shapes and sizes when treating teeth, it is necessary to have a correspondingly large number of instruments. These instruments also include those in which although the gripping shaft and tool are constituted by two parts, said parts are not detachably joined together.
In addition, two-part dental instruments are known, in which the gripping shaft and tool are interconnected in a detachable manner, either manually or by using a wrench. In the first embodiment the connection is brought about by a collet, which requires additional securing against the tool twisting. By turning a sleeve it is possible to fix or release the tool with respect to the gripping shaft. Thus, the tool can be replaced without difficulty if breakage occurs of it becomes worn.
This also applies with respect to the second embodiment, in which onto the base part of the tool are shaped a taper sleeve and to the latter a threaded bolt. The taper sleeve and threaded bolt can be screwed into a tapped hole provided in the gripping shaft with a taper shaped onto the mouth of the hole and can be fixed with a wrench. This solution also makes it possible to replace the tool without difficulty.
As it is an unavoidable requirement of dental instruments of the aforementioned type that the gripping shaft and the tool are reliably interconnected, so that in part very considerable force exerted when treating the teeth, particularly in the direction of the shaft axis and in the circumferential direction, can be applied without any relative movement between the gripping shaft and the tool. Thus, the instrument with the collet requires an additional securing means to prevent twisting and the other instrument requires a securing cone or tape.
Summary of the Invention
The problem of the present invention is to so construct a dental instrument of the aforementioned type, that it is possible to extremely rapidly replace the tool and it is possible to reliably ensure a firm immovable connection between gripping shaft and tool under all stressing conditions. A dental instrument in accordance with the principles of this invention employes a tool having an upper portion for use in contacting teeth and a lower portion defining a shank with a lower shaft and a lower end. The instrument also employs a hollow elongated gripping holder having an opening at on end. First means in the holder communicates with the opening in the holder to removably receive said shank.
A manually operated coupling mechanism includes a first section connected to the holder and a second section on the shank. The mechanism has a lock position at which the first section engages the second section in such a manner that the tool is locked immovably in position for use. The mechanism has a release position at which the first and second sectins are disengaged and the tool can be removed from the holder.
The aforementioned objects and advantages of the invention as well as other objects and advantages thereof will either be explained or will become apparent to those skilled in the art when this specification is read in conjunction with the accompanying drawing and specific description of preferred embodiments which follows.
Brief Description of the Drawings
FIG. 1 is a diagrammatically represented view of a dental instrument in accordance with one embodiment of the invention;
FIG. 2 is a diagrammatically represented partial longitudinal section of the structure shown in FIG. 1;
FIG. 3 is a detail view in cross-section of a portion of the structure shown in FIG. 1;
FIG. 4 is a cross-section taken along line IV--IV in FIG. 3;
FIG. 5 is a cross-section taken along line V--V in FIG. 3;
FIG. 6 is a detail view of a portion of the tool used in the instrument of FIG. 1.
Detailed Description of the Preferred Embodiment
A dental instrument known as a scaler 1 shown in FIG. 1 has a cylindrical gripping shaft or holder 2 and a tool generally indicated at 3. An actuating ring 5 is displaceably guided on the tool-side end 4 of gripping shaft 2. The displacement of actuating ring 5 and therefore the release and replacement of tool 3 can only take place if inward depression occurs of two pushbuttons 7 provided in depression 6 on the actuating ring 5. Even if only a single pushbutton 7 is depressed, as can unintentionally take place during the treatment of teeth, this does not lead to the separation of tool 3 from gripping shaft 2. The connection between gripping shaft 2 and tool 3 can only be broken on depressing both pushbuttons 7.
The longitudinal section represented in FIG. 2 shows the tool side end 4 of gripping shaft 2 and tool 3. The tool has an upper portion which used in contacting teeth for dental treatment and a lower portion which is a shank or base 8 having a lower end. The shank is inserted in a chuck 9. This chuck is the upper portion or hollow cylinder or rod 10 housed in gripping shaft or holder 2 and on which is displaceably guided a control sleeve 11 counter to the tension of a compression spring 12.
As shown in FIG. 3, two longitudinal slots 13 with different widths face one another in control sleeve 11, extend in the direction of axis 14 of gripping shaft 2 and are open toward the tool-side front face 15.
As can be gathered from FIG. 4, the ends of a coupling pin 16 project into the two longitudinal slots 13. Coupling pin 16 is located in a groove 17 of chuck 9 which is at right angles to instrument axis 14. According to FIG. 6, at the end of the base part 8 of tool 3 is provided a surface 18, at whose transition to the full base part cross-section there is a groove-like depression 19.
The contour of longitudinal slots 13 has a portion 20 sloping towards the instrument axis 14. If the control sleeve 11 is moved by the tension of compression spring 12 against the tool-side end 4 of griping shaft 2, through the inclined portion 20 of the two longitudinal slots 13 coupling pin 16 is moved into the groove-like depression 19 of base part 8, which corresponds to FIG. 3 and 6. The inclination of sloping portion 20 is such that self-locking occurs between coupling pin 16 and portion 20. As a result of this arrangement of coupling pin 16, there is not only a clearance-free connection between tool 3 and gripping shaft 2, but there can be no detachment of this connection through the forces occurring when treating the teeth. Through the use of coupling pin 16, there is no possibility of tool 3 turning, even if very high circumferential forces occur thereon. A securing or retaining ring 21 on control sleeve 11 prevents the coupling pin 16 from falling out.
As the control sleeve 11 is located in the interior of gripping shaft 2, an acutating sleeve 22 is provided for the actuation thereof and said sleeve has on the tool side an inner flange 23 which, for the displacement of control sleeve 11, acts on the front face 15 thereof. At the end of actuating sleeve 22 remote from inner flange 23 are shaped two elastically deformable arms 24, which are provided at their ends with a reinforced portion 25, with the aid of which arms are supported on the inner rim of openings 26, which are located below the top of the depressions 6 of actuating ring 5. On pressing down the two pushbuttons 7, arms 24 are elastically bent inwards, so that they move away from the inner rim of openings 26 and can therefore be displaced by actuating ring 5. The openings 26 provide clearance for the ring 5 to be slid along the holder away from the tool receiving end to release the shank. The ring can be slid back whereby reinforced portions 25 again snap into openings 26. In the reinforced portions 25 of arms 24 is fixed the pushbutton 7, e.g. in the form of a cheese-head screw, which projects into depression 6 of actuating ring 5.
To prevent rotation of control sleeve 11, a radially directed slot portion 27 is provided in each of the longitudinal slots 13.
The end of a stop pin 28 project into the two slotted portions 27, said pin being fixed in chuck 98, cf. FIG. 5.
The above described connection between the gripping shaft and the tool located in the former has proved to be very reliable and can be used in all manual dental instruments 1. Due to the extremely rapid tool change possibility, this connection can be used in a particularly advantageous manner in mechanical, i.e. power-driven scalers.
While the fundamental novel features of the invention have been shown and described and pointed out, it will be understood that various substitutions and changes in the form of the details of the embodiments shown may be made by those skilled in the art without departing from the concepts of the invention as limited only by the scope of the claims which follows.