CLAMPING DEVICE FOR CLAMPING A CYLINDRICAL INSTRUMENT SHANK
20180132971 ยท 2018-05-17
Assignee
Inventors
Cpc classification
B23B31/1177
PERFORMING OPERATIONS; TRANSPORTING
B23B31/2073
PERFORMING OPERATIONS; TRANSPORTING
International classification
A61C1/14
HUMAN NECESSITIES
B23B31/117
PERFORMING OPERATIONS; TRANSPORTING
B23B31/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a clamping device (1) for clamping a cylindrical instrument shank, in particular, a dental instrument, said clamping device comprising a spring-loaded element (2) for holding the instrument shank, a hollow shaft (3) for transmitting a rotational movement, and a plunger, wherein the spring-loaded element (2) is designed as a sleeve with a cylindrical wall, a first opening (6) and a second opening (7); and the wall has cut-outs (8). The spring-loaded element (2), the shaft (3) and the plunger (4) have axes of rotation that are arranged coaxially; the shaft (3) protrudes at least partially into the first opening (6) of the spring-loaded element (2); and the plunger (4) protrudes at least partially into the second opening (7) of the spring-loaded element (2).
Claims
1. A clamping device for clamping a cylindrical instrument shank, said clamping device comprising: a spring-loaded element for holding the instrument shank, a hollow shaft for transmitting a rotational movement, and a plunger, wherein the spring-loaded element is designed as a sleeve with a cylindrical wall, a first opening and a second opening; and the wall has cut-outs, wherein the spring-loaded element, the shaft and the plunger have axes of rotation that are arranged coaxially; the shaft protrudes at least partially into the first opening of the spring-loaded element; and the plunger protrudes at least partially into the second opening of the spring-loaded element.
2. The clamping device as claimed in claim 1, wherein the spring-loaded element is connected to the shaft in a positive engaging and/or non-positive engaging manner.
3. The clamping device as claimed in claim 1, wherein the cut-outs are formed in the wall of the spring-loaded element as slots, extending at least approximately parallel to the axis of rotation of the spring-loaded element, wherein at least one slot begins at the first opening of the spring-loaded element, and at least a second slot begins at the second opening.
4. The clamping device as claimed in claim 3, wherein the slots beginning at the first opening are arranged in the circumferential direction of the spring-loaded element in such a way that they are offset from the slots, beginning at the second opening.
5. The clamping device as claimed in claim 3, wherein the slots have a wider cut-out on an end facing away from the opening of the spring-loaded element.
6. The clamping device as claimed in claim 1, wherein the spring-loaded element is made of an acid and corrosion resistant material.
7. The clamping device as claimed in claim 1, wherein the spring-loaded element has actuating surfaces, which slope obliquely downwards towards the inside, around the first and the second opening.
8. The clamping device as claimed in claim 1, wherein the clampling device is capable of being arranged in a dental preparation instrument.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Exemplary embodiments of the invention are shown in the drawings. The drawings show in
[0024]
[0025]
[0026]
[0027]
[0028]
EXEMPLARY EMBODIMENTS
[0029]
[0030] The spring-loaded element 2, which is shown in isolation in
[0031] In the embodiment shown in
[0032] For reasons relating to production, an even number of slots on each side is to be preferred, as shown, for example, in
[0033] Furthermore, the spring-loaded element 2 has, according to the embodiment shown in
[0034] Moving the shaft 3 and/or the plunger 4 into the spring-loaded element 2 causes said spring-loaded element to widen or rather to open due to an axially generated actuating force. In this case the movement of the inner surface 13 of the spring-loaded element 2, where said inner surface is used as the surfaces that make contact with the instrument shank or, more specifically, as the holding surfaces for the instrument shank, is carried out strictly in the radial direction as a result of the inventive coaxial arrangement of the sleeve-shaped and interlocking components. The inner surface 13 stays largely parallel to the axis of rotation A of the clamping device 1. This feature allows an inner surface 13, which is used as the contact surfaces or rather the holding surfaces, to be applied uniformly, even in the case of instrument shank diameters that vary widely.
[0035] If the shaft 3 and the plunger 4 are moved out of the spring-loaded element 2 again, then this spring-loaded element contracts in the radial direction and holds an inserted instrument shank along the entire inner surface 13. This aspect achieves the objective of a pressure per unit of area that is as low as possible; and, as a result, the wear is reduced.
[0036] In order to allow the rotational movement to be transmitted from the shaft 3 to an instrument, the shaft 3 may comprise, as shown in
[0037] It is also just as possible to provide a positive engaging connection between the spring-loaded element 2 and the shaft 3 by means of one or more projections 17, arranged on the spring-loaded element 2, and one or more corresponding cut-outs 18 on the shaft 3, as shown in
[0038] Even a strictly non-positive engaging connection between the shaft and the spring-loaded element or a non-positive and/or positive engaging connection between the spring-loaded element and an additional component, which transmits the rotational movement, is possible.
[0039] The clamping device 1 may also comprise, as shown in the embodiment in
[0040] The cut-outs 8 for weakening the wall 5 of the spring-loaded element 2 may have a wide range of shapes. Some examples are shown in
LIST OF REFERENCE NUMERALS AND CHARACTERS
[0041] 1 clamping device [0042] 2 spring-loaded element [0043] 3 shaft [0044] 4 plunger [0045] 5 wall of the spring-loaded element [0046] 6 first opening of the spring-loaded element [0047] 7 second opening of the spring-loaded element [0048] 8 cut-outs [0049] 9 cut-outs [0050] 10 actuating surface of the spring-loaded element [0051] 11 actuating surface of the shaft [0052] 12 actuating surface of the plunger [0053] 13 inner surface of the spring-loaded element [0054] 14 projection [0055] 15 outer shaft [0056] 16 opening [0057] 17 projection [0058] 18 cut-out [0059] A axis of rotation of the clamping device [0060] I inside diameter