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首页> 外文期刊>Archives of Metallurgy and Materials >Physical Modelling of the Plastic Working Processes of Zirconium Alloy Bars and Tubes in Thermomechanical Conditions
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Physical Modelling of the Plastic Working Processes of Zirconium Alloy Bars and Tubes in Thermomechanical Conditions

机译:热力学条件下锆合金棒材和管材塑性加工过程的物理建模

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The article presents results of physical modelling of processes of plastic working of the modified Zr-1%Nb zirconium alloy, obtained using different methods of the plastometric testing. The ?Gleeble 3800? metallurgical process simulator, a DIL805 A/D dilatometer with a plastometric attachment, and a ?Setaram? plastometer were used for testing. Based on the obtained testing results, the values of the yield stress and limiting plasticity of the tested alloy were determined for wide ranges of temperature variation (?=20÷950 °?) and strain rate variation (=0.1÷15.0 s-1) under continuous loading conditions. It was found that by using different testing methods, different alloy properties, characteristic for a given plastic working process, could be obtained.
机译:本文介绍了使用不同的塑性测试方法获得的改性Zr-1%Nb锆合金塑性加工过程的物理模型结果。 ?Gleeble 3800?冶金过程模拟器,带塑性附件的DIL805 A / D膨胀仪和“ Setaram”塑性仪用于测试。根据获得的测试结果,确定在宽温度变化范围(?= 20÷950°?)和应变速率变化范围(= 0.1÷15.0 s-1)下,被测合金的屈服应力和极限塑性值。在连续加载条件下。发现通过使用不同的测试方法,可以获得给定塑性加工工艺的不同合金性能和特性。

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