A connection structure of road and bridge and construction method thereof
A technology for connecting structures and construction methods, applied in infrastructure engineering, bridges, bridge construction, etc., can solve the problems of complex connecting structures, bridge head jumping, etc., to achieve strong structural integrity, buffer the rutting pressure of vehicles, and prevent sliding deformation. Effect
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Embodiment 1
[0030] like Figures 1 to 2 As shown in the figure, a connection structure between a road and a bridge includes a sliding layer 6, an elastomer backing plate 7, a telescopic vibration damping device and a supporting foot, the upper end of the sliding layer 6 is connected with a tie plate 4, The two ends are respectively connected with the road 5 and the bridge deck 2 of the bridge; the elastomer pad 7 and the telescopic vibration damping device are arranged between the sliding layer 6 and the support feet; the sliding layer 6, the elastomer pad 7, the telescopic The vibration damping device and the supporting feet are connected in sequence from top to bottom. The sliding layer 6 is subjected to sliding friction caused by the stress generated by the passing of the vehicle, offsets part of the stress, and transmits the remaining stress to the elastomer pad 7, and the elastomer pad 7 absorbs the vibration stress generated when the vehicle ruts passes. The telescopic vibration da...
Embodiment 2
[0043] This connection structure of a road and a bridge is the same as the first embodiment except the following technical features:
[0044] The elastomer backing plate 7 is made of styrene, which has an exceptionally high elastic modulus and does not change with the relative molecular mass, and styrene is used to increase the elasticity of the elastomeric backing plate 7 .
Embodiment 3
[0046] This connection structure of a road and a bridge is the same as the first embodiment except the following technical features:
[0047] The elastomer backing plate 7 is made of polyolefin, which has excellent physical and mechanical properties and good low temperature performance, and because its molecular chain is saturated and contains relatively few tertiary carbon atoms, it has excellent properties. For heat resistance and anti-ultraviolet performance, polyolefin is used to increase the elasticity of the elastomer backing plate 7 to resist the hot melt effect when the elastomer backing plate 7 is stressed.
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