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Effect of forging strain rate and deformation temperature on the mechanical properties of warm-worked 304L stainless steel

机译:锻造应变率和变形温度对热加工304L不锈钢力学性能的影响

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Stainless steel 304L forgings were produced with four different types of production forging equipment - hydraulic press, mechanical press, screw press, and high-energy rate forging (HERF). Each machine imparted a different nominal strain rate during the deformation. The final forgings were done at the warm working (low hot working) temperatures of 816℃, 843℃, and 871℃. The objectives of the study were to characterize and understand the effect of industrial strain rates (i.e. processing equipment), and deformation temperature on the mechanical properties for the final component. Some of the components were produced with an anneal prior to the final forging while others were deformed without the anneal. The results indicate that lower strain rates produced lower strength and higher ductility components, but the lower strain rate processes were more sensitive to deformation temperature variation and resulted in more within-part property variation. The highest strain rate process, HERF, resulted in slightly lower yield strength due to internal heating. Lower processing temperatures increased strength, decreased ductility but decreased within-part property variation. The anneal prior to the final forging produced a decrease in strength, a small increase in ductility, and a small decrease of within-part property variation,
机译:使用四种不同类型的生产锻造设备生产了304L不锈钢锻件-液压机,机械压力机,螺旋压力机和高能率锻造(HERF)。在变形过程中,每台机器都赋予了不同的标称应变率。最终的锻件是在816℃,843℃和871℃的热加工(低热加工)温度下完成的。该研究的目的是表征和理解工业应变速率(即加工设备)以及变形温度对最终部件的机械性能的影响。一些组件在最终锻造之前通过退火生产,而其他组件则在不进行退火的情况下变形。结果表明,较低的应变速率产生较低的强度和较高的延展性组件,但较低的应变速率过程对变形温度变化更敏感,并导致零件内部的性能变化更大。最高应变率工艺HERF由于内部加热而导致屈服强度稍低。较低的加工温度提高了强度,降低了延展性,但降低了零件内部的性能差异。在最终锻造之前的退火会导致强度降低,延展性略有增加以及零件内部性能变化的较小减少,

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