ENGINE SUPPORT
20180334023 ยท 2018-11-22
Assignee
Inventors
- Hartmut Krehmer (Erlangen, DE)
- Harald Hochmuth (Hagenbuchach, DE)
- Daniel Faber (Nurnberg, DE)
- Alexander Hausmann (Erlangen, DE)
Cpc classification
F16F2228/066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2222/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An engine support (1) for preventing a linear movement, including a clamping element-blocking unit (3) that has two switched states, a housing (4) that is located radially outside the clamping element-blocking unit (3), and a rod (2); in the open switched state, the rod (2) can move linearly relative to the housing (4), and in the closed switched state, a relative linear movement between the rod (2) and the housing (4) is prevented; the clamping element-blocking unit (3) includes two clamping element cages (6, 7) which are located axially next to each other and in which a plurality of clamping elements (10) are guided, and also includes at least one spring (11, 16), the blocking effect being created by axially moving the clamping element cages (6, 7) towards each other.
Claims
1. An engine support for supporting an internal combustion engine, comprising a clamping element/blocking unit with open and closed switch states, a housing arranged radially outside of the clamping element/blocking unit, and a rod that extends axially through the clamping element/blocking unit, such that in the open switch state, the rod is movable in a linear fashion relative to the housing and, in the closed switch state, a relative linear movement between the rod and housing is blocked, the clamping element/blocking unit comprises two clamping element cages arranged axially one next to the other, a plurality of clamping elements guided in the clamping element cages, as well a and at least one spring, the clamping element cages being axially movable relative to each other to generate a blocking effect.
2. The engine support according to claim 1, wherein the clamping element cages are constructed as identical parts.
3. The engine support according to claim 1, wherein the clamping elements are constructed as balls.
4. The engine support according to claim 1, further comprising a ramp contour located on an inner wall of the housing.
5. The engine support according to claim 4, wherein the ramp contour is located on an add-on element and the add-on element is arranged in a linearly movable fashion on an inner wall of the housing.
6. The engine support according to claim 4, wherein the ramp contour encloses with a longitudinal axis (A.sub.L) of the rod an angle between 1 and 15.
7. The engine support according to claim 1, further comprising corresponding contours that engage in each other in exactly one switch state are located on facing end sides of the clamping element cages.
8. The engine support according to claim 7, further comprising at least one actuation bolt arranged on one of the clamping element cages, said actuation bolt being configured to move the clamping element cage by an actuation movement in order to open teeth of the tooth contour.
9. The engine support according to claim 1, further comprising an actuator actuates the clamping element/blocking unit and switches back and forth between the open and closed switch states.
10. An engine support for supporting an internal combustion engine, comprising: a clamping element/blocking unit with open and closed switch states, a housing arranged radially outside of the clamping element/blocking unit, a rod that extends axially into the clamping element/blocking unit such that in the open switch state, the rod is movable in a linear fashion relative to the housing and in the closed switch state, a relative linear movement between the rod and housing is blocked, the clamping element/blocking unit comprises two clamping element cages arranged axially one next to the other, at least one clamping element guided in each of the clamping element cages, and at least one spring that biases the clamping element cages axially at least one of toward or away from one another.
11. The engine support according to claim 10, further comprising an actuator that moves the clamping element cages in axial direction to switch between the open and closed switch states.
12. The engine support according to claim 10, further comprising a ramp contour located on an inner wall of the housing.
13. The engine support according to claim 12, wherein the at least one clamping element in each of the clamping element cages is a rolling element that travels on the ramp contour between an open position and a blocking position in which the rolling elements block axial movement of the rod as the clamping element/blocking unit switches from the open switch state to the closed switch state.
14. The engine support according to claim 12, wherein the ramp contour is located on an add-on element arranged in a linearly movable fashion in the housing.
15. The engine support according to claim 10, wherein the housing includes an integrated double ramp contour, and a respective one of the at least one clamping element guided in each of the clamping element cages is located on each ramp of the double ramp contour.
16. The engine support according to claim 15, wherein the at least one clamping element guided in each of the clamping element cages comprises a respective series of clamping elements that extend in a circumferential direction.
17. The engine support according to claim 16, wherein the respective series of clamping elements are guided on respective ones of the ramps of the double ramp contour.
18. The engine support according to claim 10, further comprising corresponding ramp contours that engage in each other located on facing end sides of the clamping element cages such that a relative rotation of the clamping element cages causes an axial relative movement of the clamping element cages.
19. The engine support according to claim 10, wherein a first one of the clamping element cages is configured to rotate relative to the housing, and a second one of the clamping element cages is configured to not rotate relative to the housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Additional details, features, feature combinations, and effects on the basis of the invention are given from the following description of preferred, example embodiments of the invention and from the drawings. Shown in these figures are:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION
[0026] In
[0027] The clamping element/blocking unit 3 has two clamping element cages 6, 7 that are arranged axially next to each other starting from the longitudinal axis A.sub.L of the rod 2. The clamping body cages 6, 7 are constructed as identical parts and are each surrounded partially by the housing 4. In addition, the clamping element cages 6, 7 are in a reflection-symmetric arrangement. That is, they have axis symmetry of the two clamping element cages 6, 7 from the facing end sides 8. The first clamping element cage 6 is secured against rotation relative to the housing 4, while the second clamping element cage 7 is supported so that it can rotate relative to the housing 4.
[0028] The facing end sides 8 of the clamping element cages 6 each have a contour 9 that engage in each other in the closed switch state of the engine support 1. The contour 9 is constructed here as a tooth contour. The closed switch state is shown in
[0029] In addition, a plurality of clamping elements 10 constructed here as balls are guided in both clamping element cages 6, 7. The clamping elements 10 are arranged in a row in the circumferential direction of the clamping element cage 6, 7. The rod 2 that can move in a linear fashion is supported so that it can move by these clamping elements 10 and is guided within the housing 4.
[0030] The clamping element cages 6, 7 are each spring-loaded by a return spring 11. The return springs 11 are constructed as compression springs and are each supported on the clamping element cage 6, 7 and also on the housing 4. In the closed switch state shown in
[0031] The housing 4 has an integrated double ramp contour 13 on the inner wall 12 according to
[0032] To release the clamping effect, on the second clamping element cage 7 that is supported so that it can rotate, three actuation elements 15 are located axially outside of the housing 4. The actuation elements 15 perform an adjustment movement by which the second clamping element cage 7 is rotated relative to the housing by a rotary actuator that is attached concentric to the housing and is not shown here. Optionally, the actuation elements could perform the adjustment movements by a linear actuator attached outside of the housing. Through this rotational movement of the second clamping element cage 7, an axial movement component by which the two clamping element ages 6, 7 are pressed apart from each other against the forces of the two return springs 11 is produced by the contours 9 of the two clamping element cages 6, 7 that engage in each other. In this way, the clamping elements 10 are also moved axially away from the double ramp contour, so that the clamping with the inclines 14 of the housing 4 is released. Thus, the rod 2 supported by the clamping elements 10 can move freely in the axial direction again. The engine support 1 is consequently located in the open switch state, which is shown in
[0033] In
[0034] In the construction of the engine support 1 described here, this is closed in the normal state and can be opened by the rotational movement of a clamping element cage 7. Deviating from this arrangement, by the construction of the facing end sides of the clamping element cages and by the dimensioning of the return springs, the engine support can be designed so that it is open in the normal state and can be actively closed by a rotational movement.
[0035] In
[0036] In
[0037] In addition, on the inner wall 12 of the housing 4 there is an add-on element 17 that has a double ramp contour 13 and is movable in a linear fashion on the inner wall 12 of the housing 4. The inner wall 12 of the housing 4 has a flat construction in the axial direction. The double ramp contour 13 is formed as in the first embodiment. The housing is here produced as a molded part and represents a sheet-metal sleeve.
[0038] Both clamping element cages 6, 7 have a series of clamping elements 10 that are constructed as balls in the circumferential direction as per
[0039] Axially between the add-on element 17 and the two clamping element cages 6, 7 there is a compression spring 16 that is here constructed as a corrugated spring. These two compression springs 16 ensure the release of the clamping effect as in the first embodiment.
[0040] In order to achieve the closed switch state, the second clamping element cage 7 is moved axially against the forces of the compression springs toward the other clamping element cage 6. In this way, the add-on element 17 is also moved axially in the direction of the first clamping element cage 6 until all three compression springs 16 have reached their minimum spring length. Simultaneously, the double ramp contour 13 of the add-on element 17 is constructed so that the clamping elements 10 achieve a clamping effect with the double ramp contour 13 for the minimum length of the springs 16. In this way, the closed switch state is reached and the linear movement capability of the rod is stopped.
[0041] This switch state is released in that the second clamping element cage 7 is pushed away linearly from the first clamping element cage 6 again. By the use of the compression springs 16, the clamping is released and all elements 7, 17 of the clamping element/blocking unit 3 are brought into their original state. Thus, the rod 2 can move freely again and the engine support 1 is located in the open switch state.
LIST OF REFERENCE SYMBOLS
[0042] 1 Engine support
[0043] 2 Rod
[0044] 3 Clamping element/blocking unit
[0045] 4 Housing
[0046] 5 Housing connection
[0047] 6 First clamping element cage
[0048] 7 Second clamping element cage
[0049] 8 Facing end side of the clamping element cage
[0050] 9 Contour
[0051] 10 Clamping element
[0052] 11 Return spring
[0053] 12 Inner wall of the housing
[0054] 13 Ramp contour
[0055] 14 Incline
[0056] 15 Actuation element
[0057] 16 Compression spring
[0058] 17 Add-on element
[0059] A.sub.L Longitudinal axis of the rod