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Study on hot-working behavior of high carbon steel / low carbon steel composite material using processing map

机译:高碳钢/低碳钢复合材料使用加工图的热工作行为研究

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The high carbon steel (HCS)/low carbon steel (LCS) laminated composite made by centrifugal casting technology was subjected to hot compression tests on Gleeble 3500 thermomechanical simulator in a range of temperatures (800-1100 °C) and strain rates (0.02-10 s~(-1)). The hot-working behavior of the laminate was characterised by analysing the flow stress-strain curves and constructing the processing map based on dynamic materials model via superimposing efficiency of power dissipation and flow instability maps. The safe and unsafe processing conditions were identified in the processing map which was validated by microstructural examinations. Banded micro structure and micro-shear cracks occurred in the unsafe domains were responsible for the flow instability, while dynamic recrystallisation in stable domains with high efficiency of power dissipation imparted a good workability to the laminate. The optimum hot-working parameters were determined to be: (i) 800-1050 °C and 0.02-0.04 s~(-1), (ii) 800-1045 °C and 2.5-10 s~(-1) and (iii) 1050-1100 °C and 0.02-2.5 s~(-1).
机译:通过离心铸造技术制造的高碳钢(HCS)/低碳钢(LCS)层压复合材料在GLEEBLE 3500热机械模拟器上进行热压缩试验,在一系列温度(800-1100°C)和应变率(0.02- 10 s〜(-1))。通过通过耗散功耗和流量稳定性图的叠加效率分析流量应力 - 应变曲线和基于动态材料模型构建处理地图的层压材料的热工作行为。通过微观结构检查验证的处理地图中鉴定了安全和不安全的处理条件。在不安全域中发生的带状微结构和微剪切裂缝负责流量不稳定性,而具有高效率的功率耗散的稳定结构域的动态再结晶赋予层压板的良好可加工性。确定最佳的热工作参数是:(i)800-1050°C和0.02-0.04 s〜(II)800-1045°C和2.5-10 s〜(-1)和( III)1050-1100°C和0.02-2.5 S〜(-1)。

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