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Enhanced mechanical properties after cold process of fabrication of non-linear metallic profiles

机译:非线性金属型材的冷加工后增强的机械性能

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It is well known that the cold-forming process is likely to significantly enhance the mechanical properties of the profile by strain hardening leading to increased resistance compared to a resistance assessment based on nominal properties. It is thus necessary to accurately determine the mechanical properties after the cold process of fabrication. In this paper, experimental reference data and formulae calculating the increased proof strength in cold-formed stainless steel profiles are reviewed. A new theory-based formula for the evaluation of the actual mechanical properties of stainless steel structural members using the virgin sheet material properties is then established. This formula is dependent upon the radius of curvature to thickness ratio; it is not restricted to a single alloy but is valid for non-linear metallic materials. Prediction efficiency is evaluated against the collected experimental data and particular attention is paid to the set of experimental data related to hollow sections. The main thrust of the predictive model lies in its axiomatic roots in contrast to the traditional empirical formulae found in the literature.
机译:众所周知,与基于名义性能的电阻评估相比,冷变形工艺可能通过应变硬化显着增强型材的机械性能,从而导致电阻增加。因此,有必要在冷加工之后准确确定机械性能。本文综述了计算冷弯不锈钢型材中增加的屈服强度的实验参考数据和公式。然后建立了一个新的基于理论的公式,用于使用原始板材的性能来评估不锈钢结构构件的实际机械性能。该公式取决于曲率半径与厚度的比值。它不限于单一合金,而是对非线性金属材料有效。根据收集的实验数据评估预测效率,并特别注意与空心截面相关的一组实验数据。与文献中发现的传统经验公式相反,预测模型的主要推力在于其公理根源。

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