The hot deformation in the range of 900℃∼1000℃, 0.05/sec∼1.15/sec were performed to study the effect of dynamic recrystallization in the controlled rolling of Nb-microalloyed structural was steel with decreasing temperature (T), increasing str...
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https://www.riss.kr/link?id=A3233728
1995
Korean
436
KCI등재
학술저널
1284-1288(5쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
The hot deformation in the range of 900℃∼1000℃, 0.05/sec∼1.15/sec were performed to study the effect of dynamic recrystallization in the controlled rolling of Nb-microalloyed structural was steel with decreasing temperature (T), increasing str...
The hot deformation in the range of 900℃∼1000℃, 0.05/sec∼1.15/sec were performed to study the effect of dynamic recrystallization in the controlled rolling of Nb-microalloyed structural was steel with decreasing temperature (T), increasing strain rate(ε), and pass strain (ε₁) of 0.2 and /or 0.5. The flow stress dependence(σ) of T, ε, and strain(ε) is also exaned. The critical strain of dynamic recrystallization(ε_o) was determined from the Lnσ/Lnε vs. ε plots. The Brain refinement can be obtained by progressing the process and controlling the degree of dynamic recrystallization. By increasing the pass stain from 0.2 to 0.5 at the penultimate deformation step in this process, dynamic recrystallization could be induced.
목차 (Table of Contents)
TiAl 계 금속간화합물의 반응합성온도에 미치는 압출과 승온속도의 영향
텅스텐 함유 이상스테인리스강의 초소성에 미치는 σ 상의 영향