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Effect of deformation temperature on the ductile-brittle transition behavior of a modified 9Cr-1Mo steel

机译:变形温度对改性9Cr-1Mo钢延性-脆性转变行为的影响

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摘要

A modified 9Cr-1Mo steel received in normalized and tempered condition has been subjected to four different hot-rolling treatments at different rolling temperatures (1050 ℃, 1000 ℃, 950 ℃ and 875 ℃) applying a constant true strain of ~0.7. The rolled plates were tempered and tested for tensile and Charpy impact properties following standard procedures. Hot-rolling increased the strength by more than 100 MPa, but reduced the ductility of the steel by more than 10%. The ductile-to-brittle transition temperature (DBTT) was found to increase by more than 25 ℃ after hot-rolling as compared to As-received steel. Among the rolled samples, the plates rolled at 950 ℃ and 1050 ℃ showed higher upper shelf energy (comparable to As-received steel), whilst the plate rolled at 1050 ℃ showed the lowest DBTT. In terms of superior strength-toughness combination rolling at 1050 ℃ can be considered to be optimum. The results have been analyzed considering the effect of rolling on parameters related to the microstructure and crystallographic texture of the steel, such as, effective grain size, ferrite fraction, fraction of low-angle boundaries, fraction of cleavage planes on the main fracture plane and the fraction of slip planes along the 45° to the main fracture plane.
机译:在正火和回火条件下得到的9Cr-1Mo改性钢在不同的轧制温度(1050℃,1000℃,950℃和875℃)下经受了四种不同的热轧处理,施加的恒定真应变为〜0.7。对轧制板进行回火,并按照标准程序测试其拉伸和夏比冲击性能。热轧使强度提高了100 MPa以上,但使钢的延展性降低了10%以上。与接受As的钢相比,发现热轧后的延展性至脆性转变温度(DBTT)提高了25℃以上。在轧制样品中,在950℃和1050℃轧制的板显示出较高的上架能量(与As-接收钢相比),而在1050℃轧制的板显示出最低的DBTT。就优异的强度-韧性而言,可以认为在1050℃轧制是最佳的。考虑到轧制对与钢的显微组织和晶体织构有关的参数的影响,对结果进行了分析,例如有效晶粒尺寸,铁素体分数,低角度边界分数,主断裂面上的分裂面分数和滑移平面与主断裂平面成45°的比例。

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