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In a horizontal or vertical cable rail, the cables, once tensioned must be rigid enough to prevent a 4-inch sphere passing through it. Factors influencing this rigidity are: the tension of the cable, intermediate posts (or cable spacers) spacing, the diameter of the cable, top rail cap material and the cable to cable spacing. [7]
Each main cable is composed of 37 strands of 208 wires, [b] amounting to 7,696 wires in each cable. [272] [151] [473]: 247 The strands themselves measure 3 inches (76 mm) in diameter and are hexagonal; [473]: 247 the wires are 3 ⁄ 16 inch (4.8 mm) across.
Stainless-steel cable and fasteners are strong and don’t obscure the view. Contemporary frame systems use plastic-coated steel cables. [6] Glass balusters and glass panels are often used at contemporary architectural projects where unobstructed view is important. [7] All-glass railing without a top rail can be used to maximize the effect. [8]
Cable barrier, is intended for use on slopes with a 1:6 vertical to horizontal ratio. The 1V:6H requirement is based in both computer modeling and full-scale crash testing and represents sound theory. In practice, however, slopes as flat as 1V:6H are often the exception.
In a simple suspension bridge the deck lies on the main cables In a suspended deck bridge the deck is carried below the main cables by vertical "suspenders" Comparison of a catenary (black dotted curve) and a parabola (red solid curve) with the same span and sag. The catenary represents the profile of a simple suspension bridge, or the cable of ...
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