FALL ARREST DEVICE
20230233882 · 2023-07-27
Inventors
- Thorsten AKGUEN (Bergisch Gladbach, DE)
- Andreas JEBING (Kuerten, DE)
- Thomas ROTTLAENDER (Overath, DE)
- Klaus-Dieter OTT (Kuerten, DE)
- Alexander STEINHAUER (Neunkirchen-Seelscheid, DE)
Cpc classification
F16D63/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A62B35/0081
HUMAN NECESSITIES
International classification
F16D63/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fall arrest device for blocking a rope when a relative speed between the rope and the device reaches a threshold value comprises a blocking mechanism for blocking the rope, and a trigger mechanism configured for triggering an activation lever of the blocking mechanism for activating the blocking mechanism for blocking the rope when the speed reaches the threshold value, wherein the trigger mechanism comprises a drive axis rotated by the rope upon relative movement between the rope and the fall arrest device, the drive axis carrying a centrifugal weight holder, wherein at least one centrifugal weight is held acting against a restoring force of a spring, wherein the at least one centrifugal weight is movable between an inactive position and a trigger position for triggering the activation lever when the speed reaches the threshold value. The centrifugal weight holder is arranged rotatably relative to a release gear that comprises a toothing engagable by an actuator member of the at least one centrifugal weight, when the at least one centrifugal weight is in the trigger position.
Claims
1. A fall arrest device for blocking a rope when a relative speed between the rope and the device reaches a threshold value, the device comprising: a blocking mechanism for blocking the rope, said blocking mechanism including an activation lever; a trigger mechanism configured for triggering said activation lever of said blocking mechanism for activating said blocking mechanism for blocking said rope when said relative speed reaches said threshold value, wherein said trigger mechanism comprises a drive axis configured for being rotated by said rope upon relative movement between said rope and said fall arrest device, said drive axis carrying a centrifugal weight holder rigidly secured to said drive axis; and a release gear supported on said drive axis freely rotatable thereto, said release gear comprising an outer toothing and an inner toothing; wherein on said centrifugal weight holder there are held two centrifugal weights acting against a restoring force, each centrifugal weight comprising an actuator member, said two centrifugal weights being movable between an inactive position and a trigger position for triggering said activation lever when said speed reaches said threshold value; wherein said centrifugal weight holder is arranged rotatably relative to said release gear, said outer toothing of said release gear being engagable by said actuator member of said two centrifugal weights, when said two centrifugal weights are in said trigger position for triggering said activation lever for blocking said rope; wherein said two centrifugal weights are arranged pivotably about swivel axes each of which is located on said centrifugal weight holder, a spring being arranged between said two centrifugal weights exerting said restoring force for biasing said two centrifugal weights against each other, and wherein said two centrifugal weights upon rotation of said drive axis are movable from said inactive position to said trigger position for triggering said activation lever when said restoring force of said spring is overcome by a centrifugal force exerted on said two centrifugal weights upon reaching said threshold value; wherein each centrifugal weight comprises an actuator member configured as an actuator pin being arranged for engaging said inner toothing of said release gear when said at least one centrifugal weight is in said trigger position.
2. A fall arrest device for blocking a rope when a relative speed between the rope and the device reaches a threshold value, the device comprising: a blocking mechanism for blocking the rope, said blocking mechanism including an activation lever; a trigger mechanism configured for triggering said activation lever of said blocking mechanism for activating said blocking mechanism for blocking said rope when said relative speed reaches said threshold value, wherein said trigger mechanism comprises a drive axis configured for being rotated by said rope upon relative movement between said rope and said fall arrest device, said drive axis carrying a centrifugal weight holder rigidly secured to said drive axis; and a release gear supported on said drive axis freely rotatable thereto, said release gear comprising an outer toothing and an inner toothing; wherein on said centrifugal weight holder there are held two centrifugal weights acting against a restoring force, each centrifugal weight comprising an actuator member, said two centrifugal weights being movable between an inactive position and a trigger position for triggering said activation lever when said speed reaches said threshold value; wherein said centrifugal weight holder is arranged rotatably relative to said release gear, said outer toothing of said release gear being engagable by said actuator member of said two centrifugal weights, when said two centrifugal weights are in said trigger position for triggering said activation lever for blocking said rope; wherein said two centrifugal weights are arranged pivotably about swivel axes each of which is located on said centrifugal weight holder, a spring being arranged between said two centrifugal weights exerting said restoring force for biasing said two centrifugal weights against each other, and wherein said two centrifugal weights upon rotation of said drive axis are movable from said inactive position to said trigger position for triggering said activation lever when said restoring force of said spring is overcome by a centrifugal force exerted on said two centrifugal weights upon reaching said threshold value.
3. The fall arrest device of claim 2, wherein said activation lever is arranged pivotably about an axis arranged at a distance outside from said release gear.
4. The fall arrest device of claim 2, wherein said activation lever comprises a first end cooperating with said outer toothing of said release gear, wherein said activation lever engages said outer toothing with said first end when said activation lever is in an open position corresponding to said inactive position of said trigger mechanism.
5. The fall arrest device of claim 4, wherein said activation lever comprises a second end comprising a catch section engaging a catch roll when being in said open position, said catch roll upon triggering of said trigger mechanism being moved by said outer toothing from said open position into a closed position, thereby activating said blocking mechanism by releasing said catch roll.
6. The fall arrest device of claim 5, wherein said catch section of said second end of said activation lever is configured as a claw engaging a recess of said latching roll when being in said open position, said claw being released from said recess of said latching roll upon triggering of said trigger mechanism, thereby activating said blocking mechanism.
7. A fall arrest device for blocking a rope when a relative speed between the rope and the device reaches a threshold value, the device comprising: a blocking mechanism for blocking the rope, said blocking mechanism including an activation lever; a trigger mechanism configured for triggering said activation lever of said blocking mechanism for activating said blocking mechanism for blocking said rope when said relative speed reaches said threshold value, wherein said trigger mechanism comprises a drive axis configured for being rotated by said rope upon relative movement between said rope and said fall arrest device, said drive axis carrying a centrifugal weight holder rigidly secured to said drive axis; and a release gear supported on said drive axis freely rotatable thereto, said release gear comprising an outer toothing and an inner toothing; wherein on said centrifugal weight holder there is held at least one centrifugal weight acting against a restoring force, each centrifugal weight comprising an actuator member, said at least one centrifugal weight being movable between an inactive position and a trigger position for triggering said activation lever when said speed reaches said threshold value; wherein said centrifugal weight holder is arranged rotatably relative to said release gear, said outer toothing of said release gear being engagable by said actuator member of said at least one centrifugal weight, when said at least one centrifugal weight is in said trigger position for triggering said activation lever for blocking said rope.
8. The fall arrest of claim 2, wherein two centrifugal weights are arranged pivotably about swivel axes each of which is located on said centrifugal weight holder, a spring being arranged between said two centrifugal weights exerting a restoring force for biasing said two centrifugal weights against each other, and wherein said two centrifugal weights upon rotation of said drive axis are movable from said inactive position to said trigger position for triggering said activation lever when said restoring force of said spring is overcome by a centrifugal force exerted on said two centrifugal weights upon reaching said threshold value.
9. The fall arrest device of claim 8, wherein that each centrifugal weight comprises an actuator member cooperating with said inner toothing of said release gear for rotating said outer and said inner toothings by means of said actuator member upon reaching said threshold value.
10. The fall arrest device of claim 7, wherein said outer toothing comprises a plurality of teeth including at least eight teeth.
11. The fall arrest device of claim 8, wherein said two centrifugal weights are held eccentrically on said centrifugal weight holder acting against said restoring force of said spring.
12. The fall arrest device of claim 11, wherein each of said centrifugal weights is arranged pivotably about a swivel axis arranged eccentrically on said centrifugal weight holder.
13. The fall arrest device of claim 7, wherein each centrifugal weight carries a pin engaging a slot provided within a bracket extending across said centrifugal weights.
14. The fall arrest device of claim 7, wherein each centrifugal weight comprises an actuator member configured as an actuator pin being arranged for engaging said inner toothing of said release gear when said at least one centrifugal weight is in said trigger position.
15. The fall arrest device of claim 14, wherein said inner toothing of said release gear is configured for engaging said actuator pin only, if said rope ascents with respect to said device or said device descents with respect to said rope.
16. The fall arrest device of claim 7, wherein said outer toothing of said release gear, when being in said trigger position, engages said activation lever for rotating said activation lever into a position for activating said blocking mechanism.
17. The fall arrest device of claim 8, wherein each of said centrifugal weights has a substantially semi-cylindrical shape being supported at one end pivotably about said swivel axis against said restoring force of said spring which biases said centrifugal weights against each other.
18. The fall arrest device of claim 7, wherein said drive axis comprises a bearing disk being mounted rotatably thereon.
19. The fall arrest device of claim 18, wherein said bearing disk is rigidly secured to said release gear.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0040] In the drawings show:
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EMBODIMENTS
[0058] In
[0059] The fall arrest device 10 is provided as a safety measure for effecting automatic stopping and holding of a suspended equipment, such as a suspended access equipment (SAE) suspended from ropes. The fall arrest device 10 according to
[0060] In
[0061] The fall arrest device 10 comprises a housing 14 and a top cover 16 whereon a handle 18 can be seen. The handle 18 can be switched manually between a blocking position and an open position as indicated on the top cover 16. However, such a manual switching is only possible when the fall errest device 10 is not under load.
[0062] The fall arrest device 10 is shown in
[0063] The fall arrest device 10 according to the invention comprises a blocking mechanism which can be seen in
[0064] The blocking mechanism 23 cooperates with a trigger mechanism 30 which forms the novel and inventive part of the fall arrest device 10.
[0065] The trigger mechanism 30 comprises a drive axis 32 which can be seen in
[0066] On the drive axis 32 at an upper section thereof, there is held a bearing disk 49 which is freely rotatable relative to the drive axis 32 (see
[0067] The second end of the activation lever 24 opposite to the first end 26 carries a curved catch section 80 that cooperates with a catch roll 82 (see
[0068] A spring 28 engaging the activation lever 24 at the side of the first end 26 pulls the activation lever 24 into the open position, wherein the first end 26 engages the outer toothing 72 of the release gear 48.
[0069] The trigger mechanism 30 comprises two centrifugal weights 36, 38 that are held on a centrifugal weight holder 34 which is rigidly secured to the drive axis 32. The centrifugal weights 36, 38 have a substantially semi-cylindrical shape and are attached eccentrically at one end thereof pivotably about a swivel axis 35, 37 (see
[0070] Between the two pins 43, 44 there is secured a tension spring 40. So in case of rotation of the drive axis 32 the centrifugal weights 36, 38 are urged to the outside, however cannot move as long as the centrifugal force does not overcome the bias force of the tension spring 40. If the relative speed between the rope 12 and the device 10 reaches the threshold value, the two centrifugal weights 36, 38 will overcome the bias force of the tension spring 40 and will move to the outside so that the pins 43, 44 will move within the respective slots 45, 46 of the compensation bracket 42.
[0071] In particular from
[0072] It is noted that the inner toothing 74 is designed with a slanted tooting configured so that an engagement with the actuator pins 76, 78 occurs only when the rope 12 moves upwardly with respect to the fall arrest device 10 or when the fall arrest device 10 moves downwardly with respect to the rope 12.
[0073] So when the trigger mechanism 30 is activated, the actuator pins 76, 78 engage with the inner toothing 74, whereby the release gear 48 is moved in the release direction which is this case is in the clockwise direction thus activating the blocking mechanism 23 by moving the activation lever 24 against the action of the spring 28 from the engaged position with the outer toothing 72 shown in
[0074] As can be seen in
[0075] A blocking or braking action is effected thereby, since brake pads 51, 56, which can be seen in
[0076] Thus under the action of the pressure spring 66 that is held on the spring carrier 65 and that engages the first brake lever pair 52 the first brake lever pair 52 is moved into the closed or braking position. Thereby, also control lever 50 that is fixed to axis 22 (see
[0077] The control lever 50 that is attached to the axis 22, whereon the handle 18 is attached, can be used to move the fall arrest device 10 manually between the closed position shown in
[0078] For use as a safety device in the beginning the handle 18 of the fall arrest device 10 is moved into the open position shown in
[0079] Starting from this position the trigger mechanism 30 will be activated, when the relative speed between the rope 12 and the device 10 reaches the threshold value to overcome the restoring force of the tension spring 40.
[0080] Thereby the actuator pins 76, 78 will engage the inner toothing 74 of the release gear 48 and rotate the release gear 48. Thus the outer toothing 72 of the release gear 48 will move the activation lever 24 from the open position into the activated or closed position (see
[0081] For comparison in
[0082] The prior art fall arrest device 100 also comprises a blocking mechanism 123 including an activation lever 124 cooperating with a trigger mechanism 130 comprising two substantially semi-circular centrifugal weights 136, 138 that are supported on a centrifugal weight holder that is driven by a drive axis, if there is a relative speed between the rope and the fall arrest device 100. The activation lever 124 is pulled by a spring into the open position. The two centrifugal weights 136, 138 are biased against each other by a spring 140. If the relative speed between the rope and the fall arrest device 100 reaches the threshold value, the force of the spring 140 is overcome so that the centrifugal weights 136, 138 swivel outwardly, until one of the centrifugal weights 136, 138 will engage the first end of the activation lever 126. Thereby the blocking mechanism 123 is activated for blocking the rope.
[0083] In
[0084] The fall arrest device 10a according to