CONNECTION OF TWO ADAPTER PARTS OF A SUPPORTING APPARATUS WHICH CAN BE CONSTRUCTED IN A MODULAR MANNER
20180003337 · 2018-01-04
Assignee
Inventors
Cpc classification
F16M11/2078
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/106
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16M11/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A connection of two adapter parts of a modularly-constructed supporting apparatus includes a first adapter part which has an end-side attachment with a partially spherical recess, a second adapter part which has an end-side spherical attachment for insertion into the partially spherical recess in the first adapter part and has a clamping ring which bears against the spherical attachment, on its half which is averted from the partially spherical recess, and a connecting clamp which engages behind the attachment and the clamping ring on sides which are averted from one another and also fixes the attachment and the clamping ring axially and radially in relation to one another, wherein the attachment and the clamping ring each have at least one weakening region for deforming the attachment and the clamping ring when the connecting clamp acts on the attachment and the clamping ring. The connection is secure when tools, workpieces or the like of a relatively high weight are held by the supporting apparatus.
Claims
1. A connection of two adapter parts of a modularly constructed supporting apparatus for the support of tools, workpieces or the like, comprising a first adapter part, which has an end-side protrusion having a partially spherical recess, a second adapter part, which has an end-side spherical protrusion for insertion into the partially spherical recess in the first adapter part, and a clamping ring, which bears against the spherical protrusion on that half thereof which is facing away from the partially spherical recess, a connecting clamp, which back-grips the protrusion of the first adapter part and the clamping ring of the second adapter part on mutually opposing sides and secures said protrusion and clamping ring axially and radially relative to each other, wherein the protrusion of the first adapter part and the clamping ring respectively have at least one weakening region for the deformation of the protrusion of the first adapter part, and also the clamping ring, when these are acted on by means of the connecting clamp.
2. The connection as claimed in claim 1, wherein the partially spherical recess is configured as a hemisphere.
3. The connection as claimed in claim 1, wherein the contact surfaces of the partially spherical recess and at least one of the spherical protrusion and the contact surfaces of the spherical protrusion and clamping ring are matched to each other.
4. The connection as claimed in claim 1, wherein the protrusion of the first adapter part and the clamping ring respectively have a plurality of weakening regions.
5. The connection as claimed in claim 4, wherein the protrusion of the first adapter part has weakening regions, which are configured as one or more slots in the protrusion, wherein the respective slot in the protrusion extends perpendicular to a plane of action of the connecting clamp.
6. The connection as claimed in claim 5, wherein the respective slot extends perpendicular to the plane of action of the connecting clamp through to outside a range of action of the connecting clamp on the protrusion of the first adapter part.
7. The connection as claimed in claim 5, wherein the respective slot extends, perpendicular to the plane of action of the connecting clamp, over the entire depth of the partially spherical recess.
8. The connection as claimed in claim 5, wherein the respective slot extends radially from the partially spherical recess in the first adapter part through to the radially outer limit of the first adapter part, related to its contact region with the connecting clamp.
9. The connection as claimed in claim 5, wherein adjacent slots are arranged at the same circular angle to one another, in particular four slots at a circular angle of respectively 90° to one another.
10. The connection as claimed in claim 1, wherein the protrusion of the first adapter part has on its side facing the second adapter part a flat surface, and the clamping ring of the second adapter part has on its side facing the protrusion of the first adapter part a flat surface, wherein these flat surfaces are arranged parallel to each other, in particular the two adapter parts make contact with each other in the region of these surfaces.
11. The connection as claimed in claim 1, wherein the clamping ring is interrupted in an annular region by means of a radially extending slot.
12. The connection as claimed in claim 11, wherein the clamping ring has a weakening region formed by at least one slot in the clamping ring, which slot extends over a part of the radial thickness of the clamping ring.
13. The connection as claimed in claim 12, wherein, in the weakening region of the clamping ring, a plurality of slots are formed in the clamping ring, wherein at least one slot projects from radially inside into the clamping ring and at least one other slot projects from radially outside into the clamping ring.
14. The connection as claimed in claim 11, wherein the slot interrupting the clamping ring and at least one other slot of the clamping ring are arranged diametrically.
15. The connection as claimed in claim 14, wherein the slots in the clamping ring extend over its axial extent.
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURES
[0026] In the accompanying drawing figures, the invention is described on the basis of an exemplary embodiment of a supporting apparatus which has various adapter parts respectively connected in pairs, without the invention being limited to the described exemplary embodiment.
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION
[0040]
[0041] The supporting apparatus 1 has a multiplicity of rods 2, which are connected to one another by means of adapter parts. Rods 2, which due to the configuration of the adapter parts interact with these, can herein be arranged at different angle to one another, in accordance with the concrete requirements regarding the placement of the tools, workpieces or the like.
[0042] The respective adapter pair, which is formed by two adapter parts which interact with each other and allow an arrangement of the adapter parts in different angular position relative to each other, is denoted by the reference numeral 3. Other adapter pairs, in which the adapter parts are not optionally positionable relative to each other, are denoted by the reference numeral 4. The connection of these adapter parts of the adapter pairs 4 is realized as described in EP 2 778 492 A1.
[0043] In the region of various rods 2, the fastening of the tools, workpieces or the like is realized according to the demands which are placed on the modularly constructed supporting apparatus 1.
[0044]
[0045] As can be seen from the representation of
[0046] A component part of the adapter part 5 is further formed by a clamping ring 9, which is illustrated in
[0047] The weakened configuration of the clamping ring 9 due to the slot 16 allows the clamping ring 9 to be elastically deformed in such a way that the end faces of the clamping ring 9 which are located in the region of the slot 16 come closer together, to the point of their contact, when a force is applied to the clamping ring 9. This elastic deformation of the clamping ring 9 is simplified by the additional weakening of the clamping ring 9 in the region of the slots 17, 18.
[0048]
[0049] A component part of the adapter part 19 is further formed by an end-side protrusion 25, which has a partially spherical recess 26. The protrusion 25 is essentially of disk-shaped design and has an end face 28 facing away from the receptacle 27 for the rod 2. This end face is arranged parallel to an end face 29 of the basic portion 20. The outer diameter of the protrusion 25 in the region of the end face 28 corresponds to the outer diameter of the clamping ring 9 in the region of its end face 10. Starting from the end face 28, peripheral surfaces 30, 31, which are axially parallel with respect to the protrusion 25 and the outer diameter of which corresponds to the outer diameter of the peripheral surfaces 12 and 13 of the clamping ring 9, are configured in the protrusion 25. In accordance with the conically arranged peripheral surface 14 of the clamping ring 9, the protrusion 25 has a conical peripheral surface 32, which connects the peripheral surfaces 30 and 31 one to the other.
[0050] Not only does the clamping ring 9 have the weakening regions 33, by virtue of the slot 16 and the slots 17, 18, but the protrusion 25 too is provided with weakening regions 34. For the formation of these weakening regions 34 the protrusion 25 has four slots 35, which are identically configured and extend from the end face 28 to close to the end face 29 of the basic portion 20. Related to the total circle of the protrusion 25, adjacent slots assume an angle of 90° to each other. The respective slot 35 in the protrusion 25 extends perpendicular to the plane of action of a connecting clamp to be described in greater detail below, thus perpendicular to the end face 28 of the protrusion 25. In detail, the respective slot 35 extends over the whole of the depth of the partially spherical recess 26. Radially, the respective slot 35 extends from the partially spherical recess 26 through to the radially outer limit of the protrusion 25, thus opens out into the peripheral surface 31.
[0051] The configuration of the protrusion 25 with the four slots 35 enables an elastic deformation of the protrusion 35 when this is acted on by fastening forces for the connection of the two adapter parts 5, 19.
[0052] The assembly of the two adapter parts 5, 19 for the creation of the connection according to
[0053] In
[0054] The spherical protrusion 7 is matched with respect to its outer contour to the inner contour of the partially spherical recess 26, so that the protrusion 7, once the connection is assembled, makes full-faced contact with the recess 26.
[0055] The adapter part 5 pre-assembled according to the representation of
[0056] For the axial and radial securement of the adapter parts 5, 19 in variable angular position relative to each other by virtue of the ball joint, a connecting clamp 36 is provided. This has two legs 37, 38. The two legs are connected to each other by means of a joint 39. In the region of its end facing away from the joint 39, the leg 37 has a U-shaped bearing lug 40. In the region of its end facing away from the joint 39, the other leg 38 pivotably receives a bearing bolt 41, in which is made a threaded bore (not illustrated), into which a screw 42 configured as a hexagon socket screw is screwed. When the connecting clamp 36 is in the closed position, when the legs 37, 38 are pivoted toward each other, the screw 42 is pivoted into the U-shaped bearing lug 40 and the head of the screw 42 there back-grips the leg 37. By tightening of the screw 42, the legs 37, 38 of the connecting clamp 36 are moved closer together and thus serve to connect the clamping ring 9, and thus the spherical protrusion 7, to the protrusion 25, whereupon the spherical protrusion 7 makes contact with the partially spherical recess 26.
[0057] Based on the representation in
[0058] As a result of the elastically resilient configuration of the adapter parts 5, 19 in the region of their slots 16 to 18 or 35, a high clamping force between the two adapter parts 5, 19 can be achieved, and thus high moments can be transmitted between the adapter parts by virtue of the fixed ball connection.
[0059]
[0060]
[0061] The described configuration of a protrusion 25 thus enables both the articulated linkage of the adapter part 5 with the spherical protrusion 7 and the non-articulated linkage of an adapter part which has a protrusion configured according to the protrusion 25. In this case, the wavy depressions 47 serve to receive a disk (not shown) which serves as an anti-rotation mechanism and is inserted into the depressions 7 of both interacting protrusions 25, as is described in connection with EP 2 778 492 A1.
[0062] By virtue of the kink in the adapter part 46, the design of the adapter part 46 enables rods 2 assigned to this adapter part 46 to be arranged at a more acute angle than when an adapter part 19 is used.