composite-girder bridge - определение. Что такое composite-girder bridge
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Что (кто) такое composite-girder bridge - определение

BRIDGE BUILT OF GIRDERS PLACED ON BRIDGE ABUTMENTS AND FOUNDATION PIERS
Girder bridges; Rolled steel girder bridge; Rolled steel girder bridges; Concrete girder bridge; Concrete girder bridges; Steel girder bridge; Steel girder bridges; Girder Bridge; Deck girder bridge; Multi-girder bridge; Deck girder; Deck girders
  • The stubs at the eastern end of the [[Dunn Memorial Bridge]] give a good cross section of girder bridge construction
  • A concrete girder bridge pier during construction prior to installation of the bridge deck and parapets, consisting of multiple angled pylons for support (bottom), a horizontal concrete cap (center), and girders (top) with temporary wood bracing

Girder bridge         
A girder bridge is a bridge that uses girders as the means of supporting its deck. The two most common types of modern steel girder bridges are plate and box.
Box girder bridge         
  • Construction of a box girder viaduct on the [[North–South Commuter Railway]], [[Philippines]].
  • [[Erskine Bridge]], near [[Glasgow, Scotland]].
  • Single box girder bridge ([[steel]]), flyover above eastern approach of the [[San Francisco–Oakland Bay Bridge]].
  • Single box girder bridge ([[concrete]]), [[Australia]]. A similar bridge on this river was fabricated ashore and pushed across its pylons.
TYPE OF BRIDGE
Box girder bridges; Concrete box girder bridge; Concrete box girder bridges; Steel box girder bridge; Steel box girder bridges; Box-girder bridge
A box girder bridge, or box section bridge, is a bridge in which the main beams comprise girders in the shape of a hollow box. The box girder normally comprises prestressed concrete, structural steel, or a composite of steel and reinforced concrete.
Composite material         
  • Carbon fibre composite part.
  • Composites are formed by combining materials together to form an overall structure with properties that differ from that of the individual components
  • The graph depicts the three fracture modes a composite material may experience depending on the angle of misorientation relative to aligning fibres parallel to the applied stress.
  • Plot of the overall strength of a composite material as a function of fiber volume fraction limited by the upper bound (isostrain) and lower bound (isostress) conditions.
  • Concrete is a mixture of adhesive and aggregate, giving a robust, strong material that is very widely used.
  • Composite sandwich structure panel used for testing at NASA
  • doi=10.1016/S0921-5093(00)00909-6}}</ref>
  • Plywood is used widely in construction
MATERIAL MADE FROM A COMBINATION OF TWO OR MORE UNLIKE SUBSTANCES
Composite materials; Composite Material; Composite manufacturing; Quartz-fiber reinforced plastic; Composite Materials; Composition material; Composition materials; Composite material); Types of composite material; Composite fabrication; Composite matrix; Composite reinforcement; Technical fabrics; Layup mold; Composite structures
A composite material (also called a composition material or shortened to composite, which is the common name) is a material which is produced from two or more constituent materials. These constituent materials have notably dissimilar chemical or physical properties and are merged to create a material with properties unlike the individual elements.

Википедия

Girder bridge

A girder bridge is a bridge that uses girders as the means of supporting its deck. The two most common types of modern steel girder bridges are plate and box.

The term "girder" is often used interchangeably with "beam" in reference to bridge design. However, some authors define beam bridges slightly differently from girder bridges.

A girder may be made of concrete or steel. Many shorter bridges, especially in rural areas where they may be exposed to water overtopping and corrosion, utilize concrete box girder. The term "girder" is typically used to refer to a steel beam. In a beam or girder bridge, the beams themselves are the primary support for the deck, and are responsible for transferring the load down to the foundation. Material type, shape, and weight all affect how much weight a beam can hold. Due to the properties of the second moment of area, the height of a girder is the most significant factor to affect its load capacity. Longer spans, more traffic, or wider spacing of the beams will all directly result in a deeper beam. In truss and arch-style bridges, the girders are still the main support for the deck, but the load is transferred through the truss or arch to the foundation. These designs allow bridges to span larger distances without requiring the depth of the beam to increase beyond what is practical. However, with the inclusion of a truss or arch the bridge is no longer a true girder bridge.