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Static resistance of axially loaded multiplanar gap KK-joints of Circular Hollow sections at elevated temperatures

机译:升高温度下圆形中空部分轴向加载多平面间隙Kk关节的静电电阻

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This paper presents the results of a numerical investigation of the behaviour, and proposes a method to calculate the static resistance of axially loaded Circular Hollow Section Double K-joints (DKK) at elevated temperatures. This type of joints is widely used in building construction, but currently, there is no method to calculate their static resistance at elevated temperatures. The numerical investigations of this paper cover a wide range of design parameters, including brace axial load combination, joint temperature, angles between brace members, longitudinal and transverse gap sizes, chord diameter to thickness ratio and brace diameter to chord diameter ratio.The results of this paper indicate that the ratio of joint elevated temperature resistance to ambient temperature resistance may be lower than the reduction factor for the yield strength of steel at elevated temperatures.There are two joint failure modes, one for small and one for large transverse gap. These failure modes and the demarcation between small and large gaps are independent of joint temperature. For joints with large gap, the ratio of joint resistance at elevated temperature to that at ambient temperature is close to the average of steel yield strength and Young's modulus reduction factors at elevated temperature. For joints with small gap, the joint resistance ratio follows the steel Young's modulus factor variation at elevated temperature if all four braces are under compression, but the trend changes to the average ratio of steel Young's modulus and yield strength reduction factors if the axial brace loads are balanced (compression in two brace members equal to tension force in the other two brace members). Linear interpolation can be applied between these two different loading cases.
机译:本文介绍了对行为的数值研究的结果,并提出了一种方法来计算轴向加载的圆形中空部分双k关节(DKK)在升高的温度下的静电。这种类型的接头广泛用于建筑结构,但目前,没有方法可以在升高的温度下计算它们的静电电阻。本文的数值研究涵盖了各种设计参数,包括支架轴向载荷组合,接头温度,支撑构件之间的角度,纵向和横向间隙尺寸,弦直径与厚度比和括号直径与弦直径比。结果本文表明,接头升高的耐温性与环境耐温性的比率可能低于升高温度钢屈服强度的减少因子。有两个关节衰竭模式,一个用于小的,一个用于大的横向间隙。这些故障模式和小差距之间的分界与关节温度无关。对于具有较大差距的关节,在环境温度下升高到该温度下的关节电阻与升高温度下的钢屈服强度和杨氏模量减少因子的平均值。对于具有小的间隙的关节,如果所有四个括号都在压缩,则接头阻力比在升高的温度下升高的模量因子变化,但如果轴向支架载荷,则趋势变化为钢杨氏模量的平均比率和屈服强度降低因素。是平衡的(在两个支撑构件中的压缩等于其他两个支撑构件中的张力)。线性插值可以应用于这两个不同的装载案例。

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