A SHACKLE ASSEMBLY
20230332672 ยท 2023-10-19
Inventors
Cpc classification
International classification
Abstract
A shackle assembly comprises a shackle body, a shackle pin and a pin displacement mechanism for moving the shackle pin along its centerline between a shackle closed position and a shackle open position. The pin displacement mechanism comprises a rotation element which is mounted to the shackle body and rotatable with respect to the shackle body about an axis of rotation which extends perpendicularly to the centerline of the shackle pin and a transmission between the rotation element and the shackle pin for transmitting a rotation of the rotation element to a displacement of the shackle pin along its centerline.
Claims
1. A shackle assembly, comprising a shackle body, a shackle pin and a pin displacement mechanism for moving the shackle pin along its centerline between a shackle closed position and a shackle open position, wherein the pin displacement mechanism comprises a rotation element which is mounted to the shackle body and rotatable with respect to the shackle body about an axis of rotation which extends perpendicularly to the centerline of the shackle pin and a transmission between the rotation element and the shackle pin configured to transmit a rotation of the rotation element to a displacement of the shackle pin along its centerline.
2. The shackle assembly according to claim 1, wherein the shackle body extends in a main plane and wherein the axis of rotation extends perpendicularly to said main plane.
3. The shackle assembly according to claim 2, wherein the shackle body comprises a U-shape having a bottom and legs extending from the bottom, wherein end portions of the legs are provided with eyes for receiving the shackle pin, wherein the axis of rotation extends at a level between said bottom and the shackle pin.
4. Theshackle assembly according to claim 3, wherein the rotation element and the transmission form part of a four-bar linkage, wherein the rotation element comprises a first bar which is pivotally coupled to a second bar through a first journal, which second bar is pivotally coupled to a third bar through a second journal remote from the first journal, which third bar is rotatably coupled to the shackle body remote from the second journal, wherein the shackle body forms a fourth bar, wherein the second bar is rotatably coupled to the shackle pin through a pin pivot, wherein the pin pivot lies at a distance from the first and second journals, and wherein the bars and the journals are dimensioned and arranged such that the pin pivot is movable in the same direction as a direction of the centerline of the shackle pin.
5. The shackle assembly according to claim 4, wherein the four-bar linkage forms a Hoekens linkage, in which the first journal, the second journal and the pin pivot are aligned.
6. The shackle assembly according to claim 5, wherein the pin pivot is located outside a circumference of the shackle body in the shackle closed position.
7. The shackle assembly according to claim 6, wherein a linear actuator is rotatably mounted to both the shackle body and the third bar.
8. The shackle assembly according to claim 1, wherein the rotation element comprises a first bar which is pivotally coupled to a second bar through a first journal, which second bar is rotatably coupled to the shackle pin through a pin pivot at a distance from the first journal, and wherein the shackle pin is guided along its centerline by the shackle body.
9. The shackle assembly according to claim 8, wherein a linear actuator is rotatably mounted to both the first bar and the second bar at a distance from the axis of rotation, the first journal and the pin pivot.
10. A shackle, comprising a shackle body, a shackle pin and a pin displacement mechanism configured to move the shackle pin along its centerline between a shackle closed position and a shackle open position, wherein the shackle pin is provided with a lateral projection located at a distance from the shackle body in the shackle closed position, wherein the shackle assembly is provided with a fluid bellow which is located between the lateral projection and the shackle body such that upon introducing a fluid into the fluid bellow the fluid pushes the lateral projection including the shackle pin away from the shackle body, hence moving the shackle pin from the shackle closed position to the shackle open position.
11. The shackle assembly according to claim 10, wherein the lateral projection is formed by a flange and the fluid bellow surrounds at least a portion of the shackle pin in the shackle open position.
12. The shackle assembly according to claim 11, wherein the fluid bellow comprises a coil-shaped flexible tube.
13. The shackle assembly according to claim 12,wherein the shackle pin engages a spring which is located between the shackle pin and the shackle body so as to move the shackle pin from the shackle open position to the shackle closed position when fluid is released from the fluid bellow.
14. The shackle assembly according to claim 12, wherein the lateral projection is formed by a plate which is reciprocatingly slidable within a cylinder that is fixed to the shackle body, wherein a space in the cylinder at a side of the plate facing away from the shackle body forms a pressure chamber for receiving a pressurized fluid so as to be able to move the shackle pin from the open shackle position to the closed shackle position.
15. The shackle assembly according to claim 10, wherein the shackle pin engages a spring which is located between the shackle pin and the shackle body so as to move the shackle pin from the shackle open position to the shackle closed position when fluid is released from the fluid bellow.
16. The shackle assembly according to claim 10, wherein the lateral projection is formed by a plate which is reciprocatingly slidable within a cylinder that is fixed to the shackle body, wherein a space in the cylinder at a side of the plate facing away from the shackle body forms a pressure chamber for receiving a pressurized fluid so as to be able to move the shackle pin from the open shackle position to the closed shackle position.
17. The shackle asscmbly according to claim 3, wherein the rotation element and the transmission form part of a four-bar linkage, wherein the rotation element comprises a first bar which is pivotally coupled to a second bar through a first journal, which second bar is pivotally coupled to a third bar through a second journal remote from the first journal, which third bar is rotatably coupled to the shackle body remote from the second journal, wherein the shackle body forms a fourth bar, wherein the second bar is rotatably coupled to the shackle pin through a pin pivot, wherein the pin pivot lies at a distance from the first and second journals, and wherein the bars and the journals are dimensioned and arranged such that the pin pivot is movable in the same direction as a direction of the centerline of the shackle pin.
18. The shackle assembly according to claim 4, wherein the pin pivot is located outside a circumference of the shackle body in the shackle closed position.
19. The shackle assembly according to claim 4, wherein a linear actuator is rotatably mounted to both the shackle body and the third bar.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Aspects of the invention will hereafter be elucidated with reference to very schematic drawings showing embodiments of the invention by way of example.
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028]
[0029] The shackle pin 4 can be moved with respect to the shackle body 2 through a pin displacement mechanism 6, which comprises a four-bar linkage in the form of a so-called Hoekens linkage, which linkage is illustrated by additional lines in the rightmost picture of
[0030] The displacement mechanism 6 is provided with a first bar 7, a second bar 8 and a third bar 9. A fourth bar is formed by a support 10 which is fixed to the shackle body 2. The first bar 7 is pivotally coupled to the second bar 8 through a first journal 11 and the second bar 8 is pivotally coupled to the third bar 9 through a second journal 12 which is located at a distance from the first journal 11. The first bar 7 is rotatably coupled to the support 10 through a third journal 13 which is located at a distance from the first journal 11 and the third bar 9 is rotatably coupled to the support 10 through a fourth journal 14 which is located at a distance from the second journal 12 and the third journal 13. The axes of rotation of the journals 11-14 extend perpendicularly to the main plane of the shackle body 2.
[0031] The second bar 8 is rotatably coupled to an end of the shackle pin 4 at a pin pivot 15 whereas the second journal 12 lies halfway of the second bar 8 between the first journal 11 and the pin pivot 15. The leftmost picture of
[0032] The displacement mechanism 6 is also provided with a hydraulic actuator 16 of which one side is rotatably coupled to the support 10 and another side is rotatably coupled to the third bar 9. The rightmost picture of
[0033] The support 10 is fixed to the shackle body 2 by a bracket 17 which is clamped about one of the legs of the shackle body 2. The support 10 also comprises two parallel feet 18 which extend parallel to the centerline 5 of the shackle pin 4 at an outer side of one eye 3 of the shackle body 2. This allows the shackle assembly 1 to rest in upright orientation on the ground as shown in
[0034] In the embodiment as shown in
[0035]
[0036] The hydraulic actuator 16 is rotatably coupled to the first bar 7 and the second bar 8.
[0037]
[0038]
[0039] In order to move the shackle pin 22 from the shackle open position to the shackle closed position a fluid is introduced into the cylinder 27 at a side of the plate 24 opposite to the side where the tube 26 is located. Upon exerting a force onto the plate 24 in a direction in which the shackle pin 22 moves from the shackle open position to the shackle closed position the fluid in the tube 26 can be discharged so as to allow the tube 26 to shrink. This condition is shown in
[0040] In an alternative embodiment the shackle assembly 20 may be provided with a spring which is located at a side of the plate 24 opposite to the side where the tube 26 is located. During introducing a fluid into the tube 26 and moving the plate 24 in a direction away from the shackle body 21 the spring is loaded whereas the spring will move the shackle pin 22 back upon discharging the fluid from the tube 26.
[0041] Filling and emptying the tube 26 and the cylinder 27 may be controlled by a hydraulic controller, for example.
[0042] The invention is not limited to the embodiments shown in the drawings and described hereinbefore, which may be varied in different manners within the scope of the claims and their technical equivalents.