Translation-rotation hybrid vibration control system for buildings
US-2020347591-A1 · Nov 5, 2020 · US
US11664610B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11664610-B2 |
| Application number | US-201917767767-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 21, 2019 |
| Priority date | Oct 21, 2019 |
| Publication date | May 30, 2023 |
| Grant date | May 30, 2023 |
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A telescopic electric conductor includes an electrically conductive first tube having a longitudinal axis and an electrically conductive second tube movable relative to the first tube along the longitudinal axis while being at least partly received within the first tube. An electrically conductive flexible self-supporting element is arranged inside the first tube and is mechanically and electrically connected to the first tube and to the second tube. The flexible element is arranged to elastically deform along the longitudinal axis. The flexible element has a waveform shape with several cycles of the waveform includes a number of sections that are welded together, each section having a shape of a half cycle of the waveform.
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The invention claimed is: 1. A telescopic electric conductor comprising: an electrically conductive first tube having a longitudinal axis; an electrically conductive second tube movable relative to the first tube along the longitudinal axis while being at least partly received within the first tube; and an electrically conductive flexible self-supporting element arranged inside the first tube, the flexible element being mechanically and electrically connected to the first tube and to the second tube, and the flexible element being arranged to elastically deform along the longitudinal axis, wherein the flexible element has a waveform shape comprising several cycles of the waveform, wherein the flexible element comprises a plurality of sections, wherein each section has a shape of a half cycle of the waveform, and wherein the sections are welded together. 2. The telescopic electric conductor according to claim 1 , wherein the flexible element is arranged to elastically deform substantially uniformly along the longitudinal axis. 3. The telescopic electric conductor according to claim 1 , wherein the waveform shape is substantially centered with respect to the longitudinal axis. 4. The telescopic electric conductor according to claim 1 , wherein the flexible element comprises stacked sheet metal. 5. The telescopic electric conductor according to claim 1 , wherein the flexible element is arranged outside the second tube. 6. The telescopic electric conductor according to claim 1 , wherein a length of the flexible element in a neutral state is at least 20% of a length of the first tube. 7. The telescopic electric conductor according to claim 1 , wherein the telescopic electric conductor has a current-carrying capacity of at least 500 amperes. 8. The telescopic electric conductor according to claim 1 , further comprising a first support structure fixed with respect to the first tube, wherein the flexible element is connected to the first support structure. 9. The telescopic electric conductor according to claim 8 , wherein the first support structure is a plate. 10. The telescopic electric conductor according to claim 1 , further comprising a second support structure fixed with respect to the second tube, wherein the flexible element is connected to the second support structure. 11. The telescopic electric conductor according to claim 10 , wherein the second support structure is an end surface of the second tube. 12. The telescopic electric conductor according to claim 1 , further comprising a bearing arranged to support relative movements between the first tube and the second tube. 13. The telescopic electric conductor according to claim 12 , wherein the bearing is a sliding plastic bearing. 14. The telescopic electric conductor according to claim 1 , wherein the first tube comprises at least one opening for ventilating a space inside the first tube in which the flexible element is accommodated. 15. A telescopic electric conductor comprising: an electrically conductive first tube having a longitudinal axis; an electrically conductive second tube movable relative to the first tube along the longitudinal axis while being at least partly received within the first tube; and an electrically conductive flexible self-supporting element arranged inside the first tube, the flexible element being mechanically and electrically connected to the first tube and to the second tube, and the flexible element being arranged to elastically deform along the longitudinal axis, wherein the flexible element has a waveform shape comprising several cycles of the waveform, wherein the flexible element comprises a plurality of sections, wherein each section has a shape of a half cycle of the waveform, and wherein the sections are welded together; and at least one connection arrangement that comprises a mechanical connection device for mechanically connecting the telescopic electric conductor to an external structure, and an electric connection device for electrically connecting the telescopic electric conductor the external structure. 16. The telescopic electric conductor according to claim 15 , wherein the mechanical connection device comprises a joint allowing relative rotation about two axes perpendicular to the longitudinal axis. 17. The telescopic electric conductor according to claim 15 , wherein the mechanical connection device is configured to galvanically separate the external structure from the first tube and/or the second tube. 18. The telescopic electric conductor according to claim 15 , wherein the electric connection device comprises a flexible conductor. 19. The telescopic electric conductor according to claim 18 , wherein the flexible conductor comprises sheet metal. 20. A telescopic electric conductor comprising: an electrically conductive first tube having a longitudinal axis; an electrically conductive second tube movable relative to the first tube along the longitudinal axis while being at least partly received within the first tube; an electrically conductive flexible self-supporting element arranged inside the first tube, the flexible element being mechanically and electrically connected to the first tube and to the second tube, and the flexible element being arranged to elastically deform along the longitudinal axis, wherein the flexible element has a waveform shape comprising several cycles of the waveform, wherein the flexible element comprises a plurality of sections, wherein each section has a shape of a half cycle of the waveform, and wherein the sections are welded together; a first support structure fixed with respect to the first tube, wherein the flexible element is connected to the first support structure, wherein the first support structure is a plate; and a second support structure connected to the flexible element, wherein the second support structure is an end surface of the second tube.
Non-rotary current collectors for maintaining contact between moving and stationary parts of an electric circuit (end pieces terminating in a hook or the like H01R11/12; current collectors for power supply lines of electrically-propelled vehicles B60L5/00) · CPC title
for protection against corona · CPC title
for protection against vibrations · CPC title
Anti-seismic devices or installations · CPC title
Connections between or with tubular conductors (H01R4/56 takes precedence) · CPC title
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