外文翻译---桥梁施工方法
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1、 外文翻译 Bridge Construction Techniques The final cost of a bridge is the sum of the cost of permanent materials,the proportionate cost to the project of plant and temporary works and the cost of labor .The cost of permanent materials can be estimated reasonably correctly.Withexperience,a bridge contra
2、ctor can deal completely with cost of plant and temporary works .But the labor cost does not lend itself to exact analysis .Recent competitive designs have attempted to introduce innovations in construction methods with a view to effect economy in the cost on labor by reducing temporary works and by
3、 minimizing the duration of site work. The suitable techniques of construction of bridge superstructure will vary from site to site,and will depend on the spans and length of the bridge, type of the bridge,materials used and site conditions. For instance, cast-in-site concrete construction could be
4、adopted for short spans up to 40 m, if the river bed is dry for a considerate portion of the year, whereas free cantilever construction with prestressed concrete decking would be appropriate for long spans in rivers with navigational requirements. The current trend is towards the avoidance of stagin
5、g as much as possible and to use precast or prefabricated components to maximum extent.Also , construction machinery such as cranes and launching girders are coming into wider use . These are greater savings to be effected by paying attention to the method of construction even from the design stage
6、than by attacking permanent materials . Short Span Bridges For bridges involving spans up to 40 m , the superstructure may be built on staging supported on the ground . Alternatively , the girders may be precast for the full span length and erected using launching girders or cranes,if the bridge has
7、 many equal spans.In the latter procedure , the additional cost on erection equipment should be less than the saving in the cost of formwork and in the labour cost resulting from faster construction . Long Span Concrete Bridges Long span concrete bridges are usually of post-tensioned concrete and co
8、nstructed either as conditions beams types or as free vercantilestructures . Many methods have been developed for continuous deck construction . If the clearance between the ground and bottom of the deck is small and the soil is firm , the superstructure can be built on staging . This method is beco
9、ming obsolete .Currently , free-cantilever and movable scaffold systems are increasingly used to save time and improve safety . The movable scaffold system employs movable forms stiffened by steel frames . These forms extend one span length and are supported by steel girders which rest on a pier at
10、one end and can be moved from span to span on a second set of auxiliary steel girders . An economical construction technique known as incremental push-launching method developed by Baur-Leonhard team is shown schematically in Figure 22.1. The total continuous deck is subdivided longitudinally into s
11、egments of 10 to 30 m length depending on the length of spans and the time available for construction . Each of these segments is constructed immediately behind the abutment of the bridge in steel framed forms , which remain in the same place for concreting all segments .The forms are so designed as
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