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Evaluation of Varying Ductile Fracture Criteria for 42CrMo Steel by Compressions at Different Temperatures and Strain Rates

机译:不同温度和应变速率的压缩对42crmo钢变化的延性骨折标准的评价

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Fracturing by ductile damage occurs quite naturally in metal forming processes, and ductile fracture of strain-softening alloy, here 42CrMo steel, cannot be evaluated through simple procedures such as tension testing. Under these circumstances, it is very significant and economical to find a way to evaluate the ductile fracture criteria (DFC) and identify the relationships between damage evolution and deformation conditions. Under the guidance of the Cockcroft-Latham fracture criteria, an innovative approach involving hot compression tests, numerical simulations, and mathematic computations provides mutual support to evaluate ductile damage cumulating process and DFC diagram along with deformation conditions, which has not been expounded by Cockcroft and Latham. The results show that the maximum damage value appears in the region of upsetting drum, while the minimal value appears in the middle region. Furthermore, DFC of 42CrMo steel at temperature range of 1123~1348 K and strain rate of 0.01~10 s-1are not constant but change in a range of 0.160~0.226; thus, they have been defined as varying ductile fracture criteria (VDFC) and characterized by a function of temperature and strain rate. In bulk forming operations, VDFC help technicians to choose suitable process parameters and avoid the occurrence of fracture.
机译:通过延展性损伤的压裂非常自然地发生在金属成形过程中,并且通过简单的程序如张力试验等简单的程序来评估42crmo钢的菌株软化合金的延展性骨折。在这种情况下,寻找评估延性骨折标准(DFC)并确定损伤进化和变形条件之间的关系是非常重要的和经济的。在Cockcroft-Latham骨折标准的指导下,涉及热压缩测试,数值模拟和数学计算的创新方法提供了相互支持,以评估延展性损伤累积过程和DFC图以及无变条件,尚未被Cockcroft阐述莱瑟姆。结果表明,最大损伤值出现在镦粗滚筒区域中,而最小值出现在中间区域。此外,42crmo钢的DFC温度范围为1123〜1348 k和0.01〜10 s-1的应变率,而不是恒定,但在0.160〜0.226的范围内变化;因此,它们被定义为不同的延展性裂缝标准(VDFC),其特征在于温度和应变率的函数。在散装成型操作中,VDFC帮助技术人员选择合适的工艺参数并避免发生骨折。

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