Steel Buildings in Europe
Part 10: Technical Software Specification for Composite Beams 10 - 24 6.2.3 Minimum degree of connection The minimum degree of connection, min , is calculated according to EN 1994-1-1 § 6.6.1.2, as follows: If L 25 m: min = 1 – (355/ f y ) (0,75 – 0,03 L ) But min 0,4 Otherwise: min = 1 where: L is the span length in meters f y is the yield strength in N/mm 2 6.2.4 Verification of the degree of connection At the point of maximum bending moment, if the degree of connection is lower than the minimum degree of connection ( < min ), the plastic theory does not apply (EN 1994-1-1 § 6.1.1(7)). In this case, the following message should display: “Insufficient degree of connection: you should increase the resistance of the shear connection”. 6.3 Cross-section resistance 6.3.1 General Different criteria are calculated at each design point along the beam. A criterion is the ratio of a design force to the relevant design resistance. Therefore the verification is satisfactory when the criterion, denoted , does not exceed the unity: 1,0 Verification OK 6.3.2 Classification of the cross-section It is reminded that the field of application of these specifications is limited to the plastic design of the cross-section. So it shall be checked that each cross- section is class 2 (or class 1). The class of the cross-section is the maximum of the class of the compressed flange (upper flange) and the class of the web. The limit of slenderness depends on the material parameter as defined in Section 3.1 of this guide. The first step is to determine the position y pl,a of the Plastic Neutral Axis in the structural steel section, measured from the bottom of the section. For the calculation of y pl,a , refer to Section 6.3.7 where no influence of the shear force is taken into account (i.e. = 0 in the expressions of y pl,a ). Class of the compressed upper flange If y pl,a > h – t f The upper steel flange is not fully in compression. So the flange has not to be classified.
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