ROTATIONALLY SYMMETRICAL HOLLOW BODY, AND METHOD FOR PRODUCING THE SAME
20190323562 ยท 2019-10-24
Inventors
Cpc classification
F16C2226/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/0475
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2326/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C3/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/0847
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2360/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/0471
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2360/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2208/78
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2303/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The invention relates to a rotationally symmetrical hollow body having a main body (18), and to a method for producing the same, having a cavity (12) which extends along a longitudinal axis (14) of the main body and which is delimited by an inner wall (17) of the main body, wherein at least one filling body (24) is inserted into the cavity, the longitudinal extent of which filling body in an axial direction with respect to the longitudinal axis of the main body is smaller than the length of the main body, and wherein the filling body is fixed in a fixing position relative to the main body by at least one clamping means which acts between the filling body and the main body, and a functional region (21) is formed in the main body by the filling body.
Claims
1. A rotationally symmetrical hollow body having a base body and a cavity extending along a longitudinal axis of the base body, said cavity being limited by an inner wall of the base body, wherein at least one filling body is inserted into the cavity, the longitudinal extension of said filling body being shorter than the length of the base body in the axial direction in relation to the longitudinal axis of the base body, and the filling body is fixed in relation to the base body in a fixing position by at least one clamp acting between the filling body and the base body, and a functional region is formed in the base body by the filling body.
2. The hollow body according to claim 1, wherein the filling body has an outer periphery having at least one contact surface, which extends at least sectionally in the peripheral direction of the contour of the inner wall, and the outer periphery of the filling body is formed to be smaller than the inner periphery of the inner wall of the base body.
3. The hollow body according to claim 1, wherein the at least one contact surface of the filling body forming the outer periphery is calculated with a transition fit or clearance fit in relation to the inner periphery of the cavity.
4. The hollow body according to claim 1, wherein the clamp between the filling body and the base body is formed by at least one embossing point and one or more embossing points lying in one or more radial planes with respect to the longitudinal axis of the base body are introduced.
5. The hollow body according to claim 4, wherein the embossing point is formed with an embossing tool, said embossing point being applied radially from the outside on the base body.
6. The hollow body according to claim 4, wherein the at least one embossing point is introduced into the base body in the region of the filling body, in which base body the at least one sectionally formed contact surface of the filling body corresponds to the inner periphery of the cavity.
7. (canceled)
8. The hollow body according to claim 4, wherein the length of the filling body is at least greater than the longitudinal extension of the embossing point of the longitudinal axis along the longitudinal axis of the base body.
9. The hollow body according to claim 8, wherein the length of the at least one contact surface on the outer periphery of the filling body, which extends in the radial direction, corresponds at least to the radial extension of the embossing point.
10. The hollow body according to claim 1, wherein the filling body has a flattened portion or indentation in the radial direction between the at least two contact surfaces formed sectionally on the outer periphery.
11. (canceled)
12. The hollow body according to claim 1, wherein the base body has a cylindrical inner wall, the diameter of which is the same across the whole length of the base body.
13. The hollow body according to claim 1, wherein a flange is provided on the front face end of the base body.
14. A method for producing a rotationally symmetrical hollow body having a base body, a cavity extending along the longitudinal axis of said base body, in which a filling body is inserted into the cavity on the front face end of the base body, in which the filling body is transferred into a fixing position axially along the longitudinal axis of the base body, and in which the filling body arranged in the fixing position is formed with the base body by a clamp acting between the filling body and the base body, and a functional region is formed.
15. The method according to claim 14, wherein an outer periphery is formed on the filling body, said outer periphery at least sectionally comprising a contact surface in the radial direction, said contact surface being adjusted to a contour of the inner wall of the cavity, and the outer periphery of the filling body is formed to be smaller than the periphery of the inner wall of the cavity.
16. The method according to claim 14, wherein a radial clamp is preferably formed by a radial embossing point between the filling body and the base body.
17. The method according to claim 16, wherein an embossing tool is supplied radially from the outside onto the base body and is impressed in the region in which the filling body is arranged in the fixing position, such that the filling body is held in a clamped manner in the fixing position.
18. The method according to claim 16, wherein the embossing tool has at least one embossing stamp which introduces the at least one radial embossing point radially from the outside, and a section of the inner wall of the cavity is transferred to the at least one contact surface of the filling body for the clamping contact.
19. The method according to claim 16, wherein two or more embossing points opposite one another are introduced into the base body, preferably in a radial plane, and, preferably, the contact surface extending at least sectionally on the outer periphery of the filling body is aligned towards the embossing point.
20. The method according to claim 14, wherein the filling body is introduced into the cavity of the hollow body with a gripping device and aligned in the fixing position and, preferably, held in the fixing position until the clamp is introduced.
21. The method according to claim 20, wherein the filling body is held frictionally and/or positively with a suction cup, magnetic gripper or with a gripping element and is transferred into the fixing position in the hollow body.
22. The method according to claim 14, wherein the outer peripheral surface of the base body and/or the functional region are processed after introducing and fixing at least one filling body in the base body.
23. The hollow body according to claim 1, wherein the outer periphery of the filling body corresponds to the contour of the inner wall of the cavity.
24. The hollow body according to claim 13, wherein the filling body is provided integrally on the flange.
Description
[0028] The invention and further advantageous embodiment and developments thereof are described and explained in more detail below using the examples depicted in the drawings. The features that can be seen in the description and the drawings can be applied according to the invention individually or in several combinations. Here are shown:
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035] A perspective view of a rotationally symmetrical hollow body 11 is depicted in
[0036] The hollow body 11 comprises, for example, a functional region 21. This functional region 21 exemplarily has a bore according to the embodiment in
[0037] A schematic side view of the hollow body 11 according to
[0038] A filling body 24 is inserted into the base body 18 for forming the functional region 21. This filling body 24 has a radial outer periphery, which comprises at least one contact surface 26. In the exemplary embodiment, two opposing contact surfaces 26 are formed. The contour of the contact surface 26 advantageously corresponds in the radial direction to a contour of the inner wall 17. A flattened portion 27 or an indentation or similar can be formed between the contact surfaces 62.
[0039] The at least one contact surface 26 of the filling body 24, said contact surface 26 extending sectionally in the radial direction, can advantageously extend completely along the length of the filling body 24, such as emerges from
[0040] The contact surface 26 can as long as it extends in the axial and radial direction be formed as a continuous surface. The contact surface 26 can also be formed as a corrugated or rippled surface or have other surface contours, which form an increased roughness.
[0041] A clamp is provided between the base body 18 and the filling body 24 for fixing the filling body 24 in a fixing position 29 to form the functional region 21. The clamp acts between the at least one contact surface 26 of the filling body 24 and a section of the inner wall 17 of the cavity 12. Thus, an inner clamp is formed between the filling body 24 and the base body 18, said clamp being independent of a contour or a progressive form of the outer peripheral surface 15 of the base body 18. Additional fastening elements are not required to form the inner clamp. The clamp is formed by at least one linear or planar pressure between the at least one section of the inner wall 17 of the cavity 12 and the contact surface of the filling body 24. A wall section of the base body 18 is preferably pressed radially in the direction of the filling body 24, in order to achieve the clamp with the filling body 24, in particular the at least one contact surface 26.
[0042] According to a preferred embodiment, the clamp is achieved by the introduction of at least one embossing point 31. Here, it is provided that the peripheral surface 15 of the base body 12 is impacted on radially from the outside with an embossing tool 32 depicted schematically and by a dashed line, in order to achieve a deformation by means of an embossing surface 33 of an embossing stamp 34, to the effect that the wall of the base body 18 is partially pressed inwards in order to clampingly abut on the filling body 24. Preferably, two sectionally formed contact surfaces 26 of the filling body 24 are formed in the region of the embossing points 31 that are preferably opposite one another, such that there is a sufficient clamping for fixing the filling body 24 in the functional region 21.
[0043] The deformation of the wall of the base body 18 preferably takes place only in the region of the embossing surface 33 of the embossing stamp 34, as emerges from the full cross-section according to
[0044] The outer periphery of the at least two contact surfaces 26 of the filling body 24 is smaller than the diameter of the inner wall 17 of the cavity 12. Preferably, the diameter of the inner wall 17 to the outer periphery of the filling body 24 is measured by a transition fit or clearance fit, such that the clamping already takes place with a minimal deformation of the wall of the base body 18.
[0045] With the filling body 24 shown in the exemplary embodiment, a bore 36 is arranged in the filling body 24, said bore 36 sitting flush with a through-bore 37 of the hollow body 11. According to a first embodiment, it can be provided that the bore 36 and the through-bore 37 are each introduced separately, before the filling body 24 is inserted into the base body 18. However, preferably, the filling body 24 is transferred into the fixing position 29 in the base body 18, clamped and then introduced in a work process together with a flush bore 36 for the through bore 37.
[0046] One embossing point 31 can also suffice, deviating from in the exemplary embodiment depicted in
[0047] The length of the filling body 24 when seen along the longitudinal axis 14 of the hollow body is advantageously smaller than the length of the base body 18 by a multiple. The length of the filling body 24 along the longitudinal axis 14 preferably extends at least by the length of the embossing point 31 extending in the direction of the longitudinal axis 14. Primarily, the length of the filling body 24 is formed by the functional region 21. If a bore is introduced, the size of the bore determines the length of the filling body 24, such that a sufficient wall strength is still provided adjacently.
[0048] The at least one contact surface 26 can be constant across the entire length of the filling body 24 in the axial extension. Alternatively, the contact surface 26 can also extend only along the embossing point 31, seen in the longitudinal direction, with respect to the length of the contact surface 26.
[0049] A schematic longitudinal section of the hollow body 11 according to
[0050] A further application case of the rotationally symmetrical hollow body to
[0051] Furthermore, it can be provided that the subassembly/subassemblies 44 can be shifted along the longitudinal axis 14, for example, and can also be held in a latched position. To do so, two balls mounted by a spring are provided, for example, in the filling body 24, which each engage on recesses of the sleeve pointing radially inwards to the functional region 21. As a result, a releasable latch connection can be created between the balls and the sleeve in order to be able to also shift the sleeve from a latch position into a further position in the axial direction along the longitudinal axis 14. Alternatively to the arrangement of a spring mounted between balls to form a releasable latch connection, a threaded insert having a spring-loaded latching ball can also be introduced on one or both sides in the functional region 21.
[0052] The arrangement of the releasable latch connection is only exemplary. The functional region 21 can complementarily be formed with further elements, components or similar in order to fulfil additional functions. Pins can be provided instead of the balls 47. Alternatively, threaded inserts can also be introduced, which receive a spring-mounted ball.
[0053] Rotationally symmetrical hollow bodies are to be understood as rotating shafts, drives or similar, which have at least one imbalance and/or have a symmetrical and/or asymmetrical course at least partially along the longitudinal axis.