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Effect of Temperature and Dynamic Loading on the Mechanical Properties of Copper-Alloyed High-Strength Interstitial-Free Steel

机译:温度和动态载荷对铜合金高强度无间隙钢力学性能的影响

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摘要

Crash resistance and formability relevant mechanical properties of a copper-alloyed interstitial-free (IF) steel processed under various conditions of batch annealing (BA), continuous annealing (CA), and postcontinuous annealing aging have been studied in a wide range of strain rate (3.33 × 10?4 to 200 s?1) and temperature (?100 °C to +20 °C). These properties have been compared with similarly processed traditional mild and high-strength IF steels. Assessment of various parameters such as strength, elongation, strain rate sensitivity of stress, strain-hardening capacity, temperature sensitivity of stress, activation volume, and specific energy absorption of all these steels implies that copper-alloyed IF steel is soft and formable in CA condition. It can be made stronger and more crash resistant than the conventional mild- or high-strength IF steels when aged to peak strength after CA. Room-temperature strain rate sensitivity of stress of the investigated steels exhibits a two-stage behavior. Copper in solution in ferrite causes solid solution softening at low temperatures (≤20 °C) and at high strain rates (200 s?1).
机译:已经研究了在各种应变速率下在不同的分批退火(BA),连续退火(CA)和后连续退火时效条件下加工的铜合金无间隙(IF)钢的耐冲击性和可成型性相关的机械性能。 (3.33×10?4 至200 s?1 )和温度(?100°C至+20°C)。这些性能已与类似加工的传统低碳和高强度IF钢进行了比较。对所有这些钢的各种参数(例如强度,伸长率,应力的应变率敏感性,应变硬化能力,应力的温度敏感性,活化体积和比能量吸收)进行评估,表明铜合金IF钢在CA中柔软且可成形健康)状况。当在CA后老化至峰值强度时,它可以比常规的中强度或高强度IF钢更坚固,更耐碰撞。室温应变速率对应力的敏感性显示出两阶段的行为。铁素体溶液中的铜在低温(≤20°C)和高应变速率(200 s?1 )下会引起固溶软化。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第4期|856-866|共11页
  • 作者单位

    Department of Ferrous Metallurgy RWTH Aachen University D-52072 Aachen Germany;

    Department of Metallurgical and Materials Engineering Indian Institute of Technology Kharagpur Kharagpur 721 302 India;

    Department of Ferrous Metallurgy RWTH Aachen University D-52072 Aachen Germany;

    Department of Metallurgical and Materials Engineering Indian Institute of Technology Kharagpur Kharagpur 721 302 India;

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