Protection system
09677231 · 2017-06-13
Assignee
Inventors
Cpc classification
F16F7/123
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E01F7/045
FIXED CONSTRUCTIONS
International classification
F16F7/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention relates to a device and a method for energy dissipation with a deformable, longitudinally extending material strip which comprises a longitudinal axis and is installed into a cable which can be subjected to tension; and with a deformation device which is also installed into the cable and cooperates with the material strip, characterized in that the material strip, upon application of a tension force to the cable along its longitudinal axis, can be guided in a straight line through the deformation device and in so doing can be deformed.
Claims
1. A rockfall, mudflow, and snow protection system having an energy dissipation device, comprising: a deformable, longitudinally extending material strip that is a profiled rod, has a longitudinal axis, and is configured to cooperate with a cable adapted for being tensioned; and a deformation device which cooperates with the material strip, wherein the material strip upon application of a tension force to the cable, via at least one of a rockfall, a mudflow, and a snow, along the longitudinal axis, can be guided in a straight line through the deformation device and in so doing can be deformed, further wherein the deformation device has two deformation elements in the form of rotatable rollers which can be positioned at a selectable spacing with respect to one another and in so doing define a deformation gap formed as a straight line, and further wherein the protection system includes a net coupled to at least one support of the protection system and is configured to cooperate with the cable.
2. The protection system of claim 1, further comprising an anti-kink device which, as seen in a pulling-in direction of the material strip into the deformation device, is disposed upstream of the deformation device.
3. The protection system of claim 2, wherein the anti-kink device is formed as a guide roller.
4. The protection system of claim 2, wherein the anti-kink device is formed as a cable loop arrangement.
5. The protection system of claim 1, wherein the deformation device has two spaced-apart holding plates to which a respective end of one or more deformation elements is/are attached.
6. The protection system of claim 5, further comprising a connection plate disposed between the holding plates and attached to the holding plates.
7. The protection system of claim 6, wherein the connection plate is provided with an aperture.
8. The protection system of claim 1, further comprising a support structure proximate the cable.
9. The protection system of claim 8, further wherein the net is guided via an upper support cable arrangement and a lower support cable arrangement on the support structure.
10. The protection system of claim 1, wherein the material strip is made of aluminium.
11. The protection system of claim 1, wherein the material strip is made of steel.
12. The protection system of claim 1, wherein the material strip is formed with a smooth surface.
13. The protection system of claim 1, wherein the deformation elements are provided with a friction-reducing coating.
14. The protection system of claim 1, wherein the deformation device has a securing bolt held by two tabs and passing through an aperture in the material strip.
15. The protection system of claim 1, wherein the deformation device is connected to a stationary anchoring element and is connected via the material strip to the cable.
16. The protection system of claim 1, wherein the deformation device is configured to cooperate with the cable, wherein it is connected at one end via a connecting device to a first cable portion of the cable and at the other end via the material strip to a second cable portion of the cable.
17. The protection system of claim 1, wherein the deformation device has two spaced-apart holding plates to which a respective end of the two deformation elements are attached and has a securing bolt held by two tabs and passing through an aperture in the material strip.
18. The protection system of claim 17, further comprising an anti-kink device which, as seen in a pulling-in direction of the material strip into the deformation device, is disposed upstream of the deformation device.
19. The protection system of claim 18, wherein the deformation device is connected to a stationary anchoring element and is connected via the material strip to the cable.
20. The protection system of claim 19, wherein the anti-kink device is formed as one of a guide roller or a cable loop arrangement.
21. The protection system of claim 1, wherein the deformation device has two spaced-apart holding plates, two tabs each coupled to the spaced-apart plates and extending between the two spaced-apart plates, and a securing bolt extending between the two tabs and passing through an aperture in the material strip, and wherein the securing bolt is configured to prevent relative motion of the material strip and the deformation device below a tension threshold and to shear above the tension threshold thereby allowing relative motion of the material strip and the deformation device.
22. The protection system of claim 1, wherein the longitudinally extending material strip includes a first portion extending along the longitudinal axis of the longitudinally extending material strip and a second portion extending along the longitudinal axis of the longitudinally extending material strip, with the first portion connected to the second portion along respective long edges of the first and second portions.
23. The protection system of claim 1, wherein the longitudinally extending material strip has an L-shaped cross section.
24. A rockfall, mudflow, and snow protection system having an energy dissipation device, comprising: a flat material strip that is deformable, longitudinally extending, has a longitudinal axis, and is configured to cooperate with a cable adapted for being tensioned; a deformation device which cooperates with the flat material strip, wherein the flat material strip upon application of a tension force to the cable, along the longitudinal axis, can be guided in a straight line through the deformation device and in so doing deforms the flat material strip into a profiled strip; and a net coupled to at least one support and configured to cooperate with the cable, further wherein the deformation device has two deformation elements in the form of rotatable rollers which can be positioned at a selectable spacing with respect to one another and in so doing define a deformation gap formed as a straight line.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) Further details, features and advantages of the invention will become clear from the following description of exemplified embodiments with reference to the drawing in which:
(2)
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION OF THE FIGURES
(8)
(9) The protection system 23 has a so-called support structure which is generally formed from a plurality of carriers which can be fixed e.g. via rock anchors 24 in the ground of a slope. Depending on the system length of the protection system 23, a plurality of such carriers are provided which can be positioned side by side at selected spacings with respect to one another on the slope H. In principle, it is also possible for only one such carrier or only one cable arrangement to be provided.
(10) The protection system 23 also has a net 24 which, in the region of a support head 26 of the support 25 shown in
(11) In the region of the support base 26 of the supports 25 a lower support cable arrangement 28 is provided which in turn can be formed from one or two support cables.
(12) Between the upper support cable arrangement 27 and the lower support cable arrangement 28 in the illustrated, particularly preferred example, a central cable arrangement 29 is provided. This cable arrangement 29 can have one or a plurality of central cables which can be guided over guide devices 30 and 31 on the carrier 25. The guide devices 30 and 31 can in this case be designed e.g. as shackles.
(13) Furthermore, the embodiment of the protection system 23 according to
(14) Corresponding fixing of the upper and lower support cables (which is not shown in
(15) A combined view of
(16) The device 1 firstly has a deformable material strip 2 which extends longitudinally and has a longitudinal axis L and a selectable length LA. The length LA of the material strip 2 and a material thickness can be adapted to the forces or energy to be absorbed, depending on the particular usage.
(17) The material strip 2 has an introduction portion 2A which is adapted in shape to a deformation gap 7 of a deformation device 4. In this case, the deformation gap 7 is defined by two deformation elements 5 and 6 which can be disposed at a selectable spacing A with respect to each other in the deformation device 4. In the embodiment illustrated in
(18) For this purpose, the deformation device 4 has two spaced-apart holding plates 8 and 9 which in contour and shape can also be adapted to the particular usage in each case. This naturally also applies to the material thickness and material type, which means that the deformation device 4 can be adapted to the forces to be applied in each case.
(19) The holding plates 8 and 9 receive between them the two deformation elements 5 and 6 which are fixedly connected, e.g. welded, or are rotatably connected at their respective end regions to the holding plates 8 and 9.
(20) Furthermore,
(21) The material strip 2 also has a profiled portion 2B which is L-shaped in the example illustrated in
(22) As shown by the illustration in
(23) The device 1 according to the embodiment of
(24) If, e.g. by catching a boulder by means of a slope protection system, a tension force is introduced into the cable 3, which can be part of such a slope protection system, the cable 3 pulls the material strip 2 through the deformation gap 7 of the deformation device 4, wherein previously the introduction portion 2A adapted to the shape of the deformation gap 7 has been introduced into the deformation gap 7 and has been connected to the cable 3. Since in the embodiment of
(25) According to
(26) The second embodiment has, as supplementary features, two tabs 16 and 17 which are disposed between the holding plates 8 and 9 and connected thereto and have a securing bolt 18 extending therethrough, which also passes through an aperture in the material strip 2. In this way, it is possible to prevent the material strip 2 being pulled through to a defined triggering value which is the force at which the securing bolt 18 shears through.
(27) In the embodiment according to
(28) As shown by
(29) In a manner corresponding to the illustration of
(30) All elements which correspond to the above-described embodiments in design and function are provided with the same reference numerals, so that reference can be made in relation to the description thereof to the above passages of text relating to
(31) The embodiment according to
(32) According to the illustration in
(33) As the embodiment according to
(34)
(35) All other parts which correspond to the previous embodiments are once again provided with the same reference numerals.
(36) As a combined view of
(37) As a further alternative to the previously described anti-kink devices 19 and 19 which, however, is not illustrated in the figures, it would be feasible to connect the end of the profile portion 2B to the cable 3 in a suitable manner, e.g. by suspending it via a shackle in the cable.
(38) It should also be stated that all the previously described embodiments of the energy dissipation device 1 in accordance with the invention are provided with material strips 2, 2, the respective profile portions 2B of which are to be formed with a smooth surface, apart from the provision of the stop 20, without the provision of any protrusions.
(39) The present invention relates to a device (1) and a method for energy dissipation with a deformable, longitudinally extending material strip (2) which comprises a longitudinal axis (L) and is installed into a cable (3) which can be subjected to tension; and with a deformation device (4) which is also installed into the cable (3) and cooperates with the material strip (2), characterised in that the material strip (2, 2), upon application of a tension force to the cable (3) along its longitudinal axis (L), can be guided in a straight line through the deformation device (4) and in so doing can be deformed.
(40) The present disclosure may include one or more of the following concepts: A. Protection system having an energy dissipation device (1), which comprises: a deformable, longitudinally extending material strip (2) which comprises a longitudinal axis (L) and is installed into a cable (3) which is subjected to tension; and a deformation device (4) which cooperates with the material strip (2), wherein the material strip (2), upon application of a tension force to the cable (3) along its longitudinal axis (L), can be guided in a straight line through the deformation device (4) and in so doing can be deformed, wherein the deformation device (4) has two deformation elements (5, 6) in the form of rotatable rollers which can be positioned at a selectable spacing (A) with respect to one another and in so doing define a deformation gap (7) formed as a straight line, and wherein the material strip (2) is a profiled rod. B. Protection system in accordance with paragraph A, characterized by an anti-kink device (19; 19) which, as seen in the pulling-in direction (ER) of the material strip (2) into the deformation device (4), is disposed upstream of deformation device (4). C. Protection system in accordance with paragraph A or B, characterized in that the deformation device (4) has two spaced-apart holding plates (8, 9) to which the ends of the deformation elements (5 and 6) are attached. D. Protection system in accordance with paragraph C, characterized in that a connection plate (10) is disposed between the holding plates (8, 9) and is attached to the holding plates (8, 9). E. Protection system in accordance with paragraph D, characterized in that the connection plate (10) is provided with an aperture (11). F. Protection system in accordance with any of the previous paragraphs, characterized in that the anti-kink device (19) is formed as a guide roller. G. Protection system in accordance with any of paragraphs A to E, characterized in that the anti-kink device (19) is formed as a cable loop arrangement (12A, 12B, 13A, 13B, 19A, 19B, 22, 21, 21). H. Protection system in accordance with any of paragraphs A to G, characterized by a support structure (25). I. Protection system in accordance with paragraph H, characterized by a net (24) which is guided via an upper support cable arrangement (27) and a lower support cable arrangement (28) on the support structure (25). J. Protection system in accordance with any of paragraphs A to I, characterized in that the material strip (2; 2) is made of aluminium or steel. K. Protection system in accordance with any of paragraphs A to J, characterized in that the deformation elements (5, 6) are provided with a friction-reducing coating. L. Protection system in accordance with any of paragraphs A to K, characterized in that the material strip (2) is formed with a smooth surface. M. Protection system in accordance with any of paragraphs A to L, characterized in that the deformation device (4) has a securing bolt (18) held by two tabs (16, 17) and passing through an aperture in the material strip (2). N. Protection system in accordance with any of paragraphs A to M, characterized in that the deformation device (4) is connected to a stationary anchoring element (13) and is connected via the material strip (2, 2) to the cable (3). O. Protection system in accordance with any of paragraphs A to M, characterized in that the deformation device (4) is installed into a cable (3), wherein it is connected at one end via a connecting device (12, 13) to a first cable portion (3A) and at the other end via the material strip (2) to a second cable portion (3B) of the cable (3).
(41) In addition to the above written disclosure of the invention, reference is explicitly made herein to the illustration thereof in
(42) One or more embodiments of the present disclosure may include one or more of the following features, which correspond to reference numerals in the drawings:
REFERENCE LIST
(43) 1 energy dissipation device 2, 2 material strip 2A introduction portion 2B profile portion 3 cable 4 deformation device 5, 6 deformation elements 7, 7 deformation gap 8, 9 holding plates 10 connection plate 11 aperture 12, 12A, 12B connection element/shackle 13, 13A, 13B anchoring/connecting element/tension anchor/shackle/cable loop 14 connection element/shackle 15 connecting element/cable loop 16, 17 tabs 18 securing bolt 19, 19 anti-kink device 19A, 19B portions of a cable loop 20 stop 21 shackle 21 cable loop for connection to the shackle 21 23 protection system 24 net 25 carrier 26 support base 26 support head 27 upper support cable arrangement 28 lower support cable arrangement 29 central cable arrangement 30, 31 cable guiding elements (shackles) 32, 33 upper and lower bracing cable arrangement 34, 37 attachment elements (rock anchors) 35, 36 energy dissipation device (cable brake, energy absorption element) L longitudinal axis LA length A spacing P profile H slope ER pulling-in direction