Determining facial parameters
US-2017300741-A1 · Oct 19, 2017 · US
US10724599B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10724599-B2 |
| Application number | US-201815883756-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 30, 2018 |
| Priority date | Jan 30, 2018 |
| Publication date | Jul 28, 2020 |
| Grant date | Jul 28, 2020 |
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An equipment rack withstands seismic events using a tuned mass damper. The tuned mass damper is adapted for rack mounting to a shelf, thus allowing the tuned mass damper to be retrofitted into existing rack installations. The tuned mass damper also has variable and/or swappable features to suit the weight, stiffness, and other properties of the equipment rack.
Opening claim text (preview).
What is claimed is: 1. An equipment rack comprising: a plurality of vertical supports connected to a bottom base; a pair of sliding rails connected between topmost regions of the vertical supports, a sliding rail of the pair of sliding rails connected between an adjacent pair of the vertical supports, and another sliding rail of the pair of sliding rails connected between an opposite, adjacent pair of the vertical supports; a top shelf connected between the pair of sliding rails to slide in and out of the equipment rack; a carrier secured to the top shelf, the carrier having a floor and sidewalls; and a mass-spring-damper system damping a deflection of the equipment rack, the mass-spring-damper system having a mass tray supported by the floor within the sidewalls of the carrier, and the mass-spring-damper system having at least one spring-damper system having an end connected to the carrier and an opposite end connected to the mass tray, wherein a ratio of a mass inserted within the mass tray of the mass-spring-damper system to a mass of the equipment rack is about 0.1. 2. The equipment rack of claim 1 , wherein the mass-spring-damper system further comprises the mass inserted within the mass tray. 3. The equipment rack of claim 1 , further comprising a bottom base connected between the plurality of vertical supports. 4. The equipment rack of claim 3 , further comprising an adjustable foot of the bottom base. 5. The equipment rack of claim 1 , further comprising a horizontal support connected between the plurality of vertical supports. 6. The equipment rack of claim 1 , wherein the mass further comprises at least one plate for insertion within the carrier. 7. The equipment rack of claim 1 , further comprising a low friction interface between the mass tray and the floor of the carrier. 8. The equipment rack of claim 1 , wherein the mass-spring-damper system includes at least one vertically stackable plate as the mass. 9. The equipment rack of claim 1 , wherein the mass-spring-damper system further comprises a swappable spring. 10. The equipment rack of claim 1 , wherein the mass-spring-damper system further comprises a swappable damper. 11. The equipment rack of claim 1 , wherein the mass-spring-damper system further comprises a spring and a damper in a series arrangement. 12. The equipment rack of claim 1 , wherein the mass-spring-damper system further comprises a coil over damper. 13. An equipment rack, comprising: a plurality of vertical supports connected to a bottom base; a pair of sliding rails connected between topmost regions of the vertical supports, a sliding rail of the pair of sliding rails connected between an adjacent pair of the vertical supports, and another sliding rail of the pair of sliding rails connected between an opposite, adjacent pair of the vertical supports; a top shelf connected between the pair of sliding rails to slide in and out of the equipment rack; and a rectangular carrier secured to the top shelf, the rectangular carrier having a floor and sidewalls; and a tuned mass damper damping a deflection of the equipment rack, the tuned mass damper installed within the sidewalls of the rectangular carrier, the tuned mass damper comprising: a mass tray confined within the sidewalls of the rectangular carrier, the mass tray containing a plurality of vertically stackable plates as a mass; ball bearings separating the floor of the rectangular carrier from the mass tray; and a coil-over damper system having an end connected to the mass tray and an opposite end connected to a corner of the sidewalls of the rectangular carrier; wherein the mass contained within the mass tray and a mass of the equipment rack has a ratio of about 0.1.
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