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Tiêu chuẩn Châu Âu EC4: Kết cấu bê tông cốt thép liên hợp phần 2: Thiết kế cầu (Eurocode4 BS EN1994 2 e 2005 Design of composite structures part 2: General rules and rules for bridges)

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(1) Part 2 of Eurocode 4 gives design rules for steelconcrete composite bridges or members of bridges, additional to the general rules in EN 199411. Cable stayed bridges are not fully covered by this part. (2) The following subjects are dealt with in Part 2: Section 1: General Section 2: Basis of design Section 3: Materials Section 4: Durability Section 5: Structural analysis Section 6: Ultimate limit states Section 7: Serviceability limit states Section 8: Decks with precast concrete slabs Section 9: Composite plates in bridges (3) Provisions for shear connectors are given only for welded headed studs.

Licensed Copy: x x, University of Glamorgan, Sat Apr 28 16:10:32 GMT+00:00 2007, Uncontrolled Copy, (c) BSI BRITISH STANDARD Eurocode — Design of composite steel and concrete structures — Part 2: General rules and rules for bridges The European Standard EN 1994-2:2005 has the status of a British Standard ICS 91.010.30; 91.080.10; 91.080.40; 93.040 12 &23[...]... possibility of applying the most recent editions of the normative documents indicated below For undated references the latest edition of the normative document referred to applies 1 .2. 1 General reference standards EN 1090 -21 ) Execution of steel structures and aluminium Structures- Part 2: Technical requirements for the execution of steel structures EN 1990: 20 02 Basis of structural design 1 .2. 2 Other reference... standards EN 19 92- 1-1: 20 04 Eurocode 2: Design of concrete structures- Part 1-1: General rules and rules for buildings EN 1993-1-1: 20 05 Eurocode 3: Design of steel structures – Part 1-1: General rules and rules for buildings 1 Eurocode 3: Design of steel structures – Part 1-3: Cold-formed thin gauge EN 1993-1-3 members and sheeting EN 1993-1-5 1 1 To be published 12 Eurocode 3: Design of steel structures- ... Distance between the steel reinforcement in tension to the extreme fibre of the composite slab in compression; distance between the longitudinal reinforcement in tension and the centroid of the beam’s steel section Edge distance Either of 2eh or 2ev Gap between the reinforcement and the end plate in a composite column Lateral distance from the point of application of force Fd to the relevant steel web,... Geotechnical design EN 1998 Design of structures for earthquake resistance (4) Eurocode 4 is subdivided in various parts: Part 1-1: General rules and rules for buildings Part 1 -2: Structural fire design Part 2: General rules and rules for bridges 1.1 .2 Scope of Part 1-1 of Eurocode 4 (1) Part 1-1 of Eurocode 4 gives a general basis for the design of composite structures together with specific rules for. .. designers and constructors ; – relevant authorities EN 1994 -2 contains the general rules from EN 1994-1-1 and specific rules for the design of composite steel and concrete bridges or composite members of bridges EN 1994 -2 is intended to be used with EN 1990, the relevant parts of EN 1991, EN 1993 for the design of steel structures and EN 19 92 for the design of concrete structures Numerical values for. .. constant of the structural steel section Second moment of area of the un-cracked concrete section Effective second moment of area of filler beams Second moment of area of the steel reinforcement Second moment of area of the effective equivalent steel section assuming that the concrete in tension is un-cracked Second moment of area of the effective equivalent steel section neglecting concrete in tension... Apr 28 16:10: 32 GMT+00:00 20 07, Uncontrolled Copy, (c) BSI EN 1994 -2: 20 05 (E) EN 1993 EN 1994 EN 1995 EN 1996 EN 1997 EN 1998 EN 1999 Eurocode 3: Eurocode 4: Eurocode 5: Eurocode 6: Eurocode 7: Eurocode 8: Eurocode 9: Design of steel structures Design of composite steel and concrete structures Design of timber structures Design of masonry structures Geotechnical design Design of structures for earthquake... resistance of the structural steel section to normal force Design value of the plastic resistance of the composite section to compressive normal force Characteristic value of the plastic resistance of the composite section to compressive normal force Design value of the resistance of the concrete to compressive normal force Number of stress-range cycles Design value of the plastic resistance of the steel reinforcement... 0,70 L2 for beff,1 4 Le= 2 L3 for beff ,2 beff ,2 Figure 5.1: Equivalent spans, for effective width of concrete flange 5.4 .2 Linear elastic analysis 5.4 .2. 1 General (1) Allowance should be made for the effects of cracking of concrete, creep and shrinkage of concrete, sequence of construction and pre-stressing 5.4 .2. 2 Creep and shrinkage (1)P Appropriate allowance shall be made for the effects of creep and. .. design force of a bonded or unbonded tendon applied after the shear connection has become effective Design longitudinal force per stud Design transverse force per stud Design tensile force per stud Shear modulus of structural steel Shear modulus of concrete Second moment of area of the effective composite section neglecting concrete in tension Second moment of area of the structural steel section St Venant ... moment of area of the un-cracked concrete section Effective second moment of area of filler beams Second moment of area of the steel reinforcement Second moment of area of the effective equivalent... document referred to applies 1 .2. 1 General reference standards EN 1090 -21 ) Execution of steel structures and aluminium Structures- Part 2: Technical requirements for the execution of steel structures. .. structures EN 1990: 20 02 Basis of structural design 1 .2. 2 Other reference standards EN 19 92- 1-1: 20 04 Eurocode 2: Design of concrete structures- Part 1-1: General rules and rules for buildings EN

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