VIBRATION ABSORBER BUSH AND INNER TUBE ABSORBER HAVING SUCH A VIBRATION ABSORBER BUSH
A vibration absorber bush for an inner tube absorber for absorbing torsional and flexural vibrations, for the coaxial assembly in a hollow shaft which is penetrated by a central longitudinal axis includes at least one largely cylindrical first elastic element and a largely cylindrical second elastic element which are in each case disposed to be coaxial with the longitudinal axis and to be mutually adjacent in the radial direction. In embodiments, a reinforcement element is disposed between the elastic elements.
1 . A vibration absorber bush for an inner tube absorber for absorbing torsional and flexural vibrations, for coaxial assembly in a hollow shaft which is penetrated by a central longitudinal axis, comprising: at least one largely cylindrical first elastic element and a largely cylindrical second elastic element which are in each case disposed to be coaxial with the longitudinal axis and to be mutually adjacent in the radial direction, and including a reinforcement element disposed between the first and second elastic elements.
2 . The vibration absorber bush according to claim 1 , wherein the reinforcement element is held exclusively by the first and second elastic elements.
3 . The vibration absorber bush according to claim 1 , wherein the reinforcement element is held exclusively by the first and second elastic elements and is surrounded by the first and second elastic elements.
4 . The vibration absorber bush according to claim 1 , wherein said vibration absorber bush comprises an outer bearing sleeve disposed on an external circumference of the first elastic element that is the outermost in terms of the radial direction.
5 . The vibration absorber bush according to claim 1 , wherein said vibration absorber bush comprises an inner bearing sleeve disposed on an internal circumference of the second elastic element that is the innermost in terms of the radial direction.
6 . The vibration absorber bush according to claim 1 , wherein said vibration absorber bush comprises an outer bearing sleeve disposed on an external circumference of the first elastic element that is the outermost in terms of the radial direction; and said vibration absorber bush comprises an inner bearing sleeve disposed on an internal circumference of the second elastic element that is the innermost in terms of the radial direction.
7 . The vibration absorber bush according to claim 1 , wherein the first and second elastic elements are configured such that the first elastic element has a shorter longitudinal extent in comparison to the second elastic element that is directly adjacent and is more centrally disposed in terms of the radial direction.
8 . The vibration absorber bush according to claim 1 , wherein at least one of the first elastic element and the second elastic element has at least one longitudinal cut-out.
9 . The absorber bush according to claim 1 , wherein the first elastic element and the second elastic element each have a longitudinal cut-out, and the longitudinal cut-outs of adjacent first and second elastic elements are disposed to be mutually offset in the circumferential direction.
10 . An inner tube absorber for a coaxial assembly in a hollow shaft, said inner tube absorber in the longitudinal direction thereof being penetrated by a central longitudinal axis, comprising at least one vibration absorber bush according to claim 1 and including an absorber mass.
11 . The inner tube absorber according to claim 10 , wherein the at least one vibration absorber bush and/or the absorber mass is configured and/or disposed such that a ratio between the bending frequency to be absorbed and the torsion frequency to be absorbed is in the range between 10:9 and 10:1.
12 . The inner tube absorber according to claim 10 , wherein the at least one vibration absorber bush and/or the absorber mass is configured and/or disposed such that a ratio between the bending frequency to be absorbed and the torsion frequency to be absorbed is in the range between 10:7 and 10:3.
13 . The inner tube absorber according to claim 10 , wherein the at least one vibration absorber bush and/or the absorber mass is configured and/or disposed such that a ratio between the bending frequency to be absorbed and the torsion frequency to be absorbed is more than 10:5.
14 . The inner tube absorber according to claim 10 , wherein the at least one vibration absorber bush and/or the absorber mass is configured and/or disposed such that the ratio between the overall length of the inner tube absorber along the longitudinal axis and the bush external diameter is at least 2.5.