DEVICE FOR MOUNTING AND DEMOUNTING A HOLLOW NEEDLE ON AND FROM A PHACO INSTRUMENT HANDPIECE
20220117785 · 2022-04-21
Inventors
Cpc classification
A61F9/00763
HUMAN NECESSITIES
International classification
Abstract
The device (10) for mounting and demounting a hollow needle (12) on or from a phaco instrument handpiece (14) comprises a housing (16) having a torque limiting and non-return coupling (34). The coupling (34) is provided with corresponding coupling release projections (58) and coupling recesses (56) on two coupling surfaces (36), (38). Said coupling surfaces (36, 38) further have corresponding non-return projections (62) and non-return recesses (60). The coupling (34) is formed by a driver element (32) and a rotary shaft (18) having a plug-on end (22) for plugging on the hollow needle (12) to be mounted and demounted, respectively.
Claims
1. A device for mounting and demounting a hollow needle on and from a phaco instrument handpiece, comprising a manually operable housing, a rotary shaft rotatably mounted in the housing, the rotary shaft comprising a plug-on end extending outwards from an opening of the housing for plugging on the hollow needle, the plug-on end comprising internal engaging projections for engaging with recesses in the outside of the hollow needle for the purpose of rotating the hollow needle when manually rotating the housing, a torque limiting and non-return coupling having a contact surface arranged at the rotary shaft as a first coupling surface, and a driver element arranged coaxially to the rotary shaft in the housing, being coupled to the housing and having a contact surface as a second coupling surface of the torque limiting and non-return coupling, wherein the two coupling surfaces rest against each other by being spring-loaded against each other, wherein the one coupling surface has at least one coupling release projection and the other coupling surface has at least one coupling recess being complementary to the form of the coupling release projection, wherein the one coupling surface has at least one non-return projection and the other coupling surface has at least one non-return recess, wherein the at least one non-return recess—viewed in circumferential direction of a circular line concentrically to the axis of the rotary shaft—has an extension being larger, in particular more than twice larger than the extension of the non-return projection in circumferential direction of the circular line, wherein the at least one non-return projection rests against one of the two ends of the non-return recess arranged as viewed in the circumferential direction of the circular line when the at least one coupling release projection is immersed in the at least one coupling recess, wherein the at least one non-return projection, when viewed in axial extension of the rotary shaft, has a height which is smaller than the height of the at least one coupling release projection, and wherein the at least one non-return projection is entirely moved out of the at least one non-return recess when the at least one coupling release projection is moved out of the at least one coupling recess, and moved above or on the coupling surface comprising the non-return recess, until the at least one coupling release projection is again immersed in the at least one coupling recess when the housing continues to rotate.
2. The device according to claim 1, wherein the one coupling surface comprises a plurality of coupling release projections and the other coupling surface comprises a number of coupling recesses equal to the number of coupling release projections or a number of coupling recesses larger by factor 2 or 3 than the number of coupling release projections, wherein the relative arrangement of a number of coupling recesses equal to the number of coupling release projections is equal to the relative arrangement of the coupling release projections.
3. The device according to claim 1, wherein the coupling surface has a larger number of non-return recesses than non-return projections are arranged at the other coupling surface.
4. The device according to claim 2, wherein the number of non-return recesses is equal to or larger by factor 2 or 3 or more than the number of non-return projections.
5. The device according to claim 1, wherein the one coupling surface has three coupling release projections each arranged offset by 120° relative to one another, and the other coupling surface has six coupling recesses each arranged offset by 60° relative to one another, and that the one coupling surface has three non-return projections arranged offset by 120° relative to one another, and the other coupling surface has six non-return recesses arranged offset by 60° relative to one another, wherein the non-return recesses are each arranged in alignment with the center between two coupling recesses.
6. The device according to claim 1, wherein the at least one or each coupling release projection and the at least one or each coupling release recess are arranged on a first circular line being concentric to the rotary shaft, and that the at least one or each non-return projection and the at least one or each non-return recess is arranged on a second circular line being concentric to the rotary shaft and being different from the first circular line.
7. The device according to claim 1, wherein the rotary shaft in the housing is rotatably mounted by means of bearing bushes and/or that the rotary shaft extends through the driver element and/or that a helical compression spring is arranged concentrically on the rotary shaft, the helical compression spring extending and being supported between a support surface in the hosing and a support surface on the rotary shaft.
8. The device according to claim 1, wherein the at least one or each engaging projection and the at least one or each coupling release projection are spherically formed, and that the at least one or each non-return projection and the at least one or each non-return recess comprise contact surfaces extending at right angles or substantially at right angles to the coupling surfaces and abutting each other when the at least one coupling release projection is immersed in the at least one coupling recess.
9. The device according to claim 2, wherein the coupling surface has a larger number of non-return recesses than non-return projections are arranged at the other coupling surface.
10. The device according to claim 3, wherein the number of non-return recesses is equal to or larger by factor 2 or 3 or more than the number of non-return projections.
Description
[0030] In the following, the invention is described in more detail by means of an exemplary embodiment and with reference to the drawing, in which
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039] The rotary shaft 18, together with a driver element 32, forms a torque limiting and non-return coupling 34 (hereinafter referred to as a coupling for convenience only) having a first coupling surface 36 and a second coupling surface 38. The first coupling surface 36 is formed in this embodiment as a radial contact surface 40 on the rotary shaft 18, while the second coupling surface 38 is formed as a radial contact surface 42 of the driver element 32. Both coupling surfaces 36, 38 are resiliently tensioned against each other by means of a spring 44, which in this exemplary embodiment is designed as a spiral compression spring. The rotary shaft 18 is rotatably mounted within the housing 16 via bearing sleeves 46, 48, 50. Meanwhile, the rotary shaft 18 penetrates the driver element 32. The spring 44, which is seated coaxially on the rotary shaft 18, is located on the side of the driver element 32 facing away from the first coupling surface 36. A closing cover 52 is located at the end of the housing 16 facing away from the opening 20 for the plug-on end 22 of the rotary shaft 18. The spring 44 is supported, on the one hand, on a support surface in the housing 16 (not shown) and, on the other hand, on a support surface 45 arranged on the driver element 32, facing away from the second coupling surface 38 of the driver element 32.
[0040] The driver element 32 is arranged in the housing 16 in a form-fit manner. For this purpose, the driver element 32 has two circumferential recesses 54 which engage with internal driver lugs (not shown) in the housing 16. Thus, when the housing 16 is rotated, the driver element 32 is rotated therein as well, wherein it can shift axially on the rotary shaft 18 without that the driver lugs of the housing 16 become disengaged from the circumferential recesses 54.
[0041] The essential element of the device 10 is the coupling 34, which is shown again in perspective view in
[0042] The coupling 34 according to the invention serves to provide a torque limitation in the one of two opposite rotational movements of the housing 16. This rotational movement is the rotational movement by which the housing must be rotated in order to screw on the hollow needle 12. The further function of the coupling 34 is to exclude torque limitation in the opposite direction of rotation of the housing 16. In the following, this non-given torque limitation is also called “non-return”, which means that the torque limitation is blocked, i.e. cancelled.
[0043]
[0044] In the condition of the coupling engagement (see, e.g.
[0045] In the reverse case, i.e. when the housing 16 is twisted to unscrew the hollow needle 12, the initial situation is again as shown in
[0046]
LIST OF REFERENCE NUMERALS
[0047] 10 device [0048] 12 hollow needle [0049] 14 phacoemulsification handpiece [0050] 16 housing [0051] 18 rotary shaft of housing [0052] 20 opening of housing [0053] 22 plug-on end of rotary shaft [0054] 24 engaging projections [0055] 26 conical portion of hollow needle [0056] 28 threaded socket of hollow needle [0057] 30 recesses in portion 26 [0058] 32 driver element of housing [0059] 34 torque limiting and non-return coupling [0060] 36 first coupling surface [0061] 38 second coupling surface [0062] 40 first contact surface [0063] 42 second contact surface [0064] 44 spring [0065] 45 support surface on driver element for the spring [0066] 46 bearing sleeve [0067] 48 bearing sleeve [0068] 50 bearing sleeve [0069] 52 closing cover of housing [0070] 54 circumferential recesses on driver element [0071] 56 coupling recesses [0072] 58 coupling release projection [0073] 60 non-return recesses [0074] 62 non-return projections [0075] 64 arrow (direction of rotation) [0076] 66 arrow (direction of rotation)