検索対象:     
報告書番号:
※ 半角英数字
 年 ~ 
 年

In site strain measurement of ferrite matrix in cold drawn pearlite steel during tensile loading by neutron diffraction

冷間パーライト伸線材中のフェライト母相の中性子回折による引張応力下その場ひずみ測定

塩田 佳徳; 友田 陽*; Harjo, S.   ; 神山 崇*

Shiota, Yoshinori; Tomota, Yo*; Harjo, S.; Kamiyama, Takashi*

過去に行った強冷間伸線フェライト鋼とパーライト鋼についての引張応力下その場中性子回折において、二つの点を明らかにした。ひとつはパテント処理パーライト鋼のフェライト相とセメンタイト相の応力分配である。もうひとつは外部応力3GPa以上で起こる強冷間パーライト鋼の非線形弾性変形である。しかしながら、これらの測定は引張方向に沿った{110}格子面のみに角度分散法で行い、集合組織の影響を考慮しなかった。そこで、本研究では引張方向とその垂直方向の複数{hkl}からの回折を測定した。著しい変形の間に強い{hkl}$$<$$110$$>$$繊維集合組織が形成されるため、歪み挙動は{hkl}$$<$$110$$>$$単結晶の変形に似ている。立方体系おいて主応力軸が$$<$$110$$>$$の場合、その垂直軸{hkl}変形は弾性異方性がある。

In our previous report on in site neutron diffraction during tensile loading for heavily drawn ferrite and pearlite steels, two points were made clear. One is stress partitioning between the ferrite matrix and the cemente phases for the patented pearlite steel. Another one is the nonlinear elastic deformation above the external stress of 3GPa in the heavily drawn pearlite steel. However, these measurements were performed by the angler dipersion mehteod for {110} planes along the tensile direction, the effect of texture has not been considered. Hence, diffraction from {hkl} planes both in the tensile and transverse directions were observed in this study. Beacuse strong {hkl}$$<$$110$$>$$ fiber formed during severe deformation, the strain behavior was similar to that deformation of {hkl}$$<$$110$$>$$ single crystal. As the axis of principal stress is $$<$$110$$>$$ lattice direction, transverse {hkl} deformation in cubic system possessed elastic anisotropy.

Access

:

- Accesses

InCites™

:

Altmetrics

:

[CLARIVATE ANALYTICS], [WEB OF SCIENCE], [HIGHLY CITED PAPER & CUP LOGO] and [HOT PAPER & FIRE LOGO] are trademarks of Clarivate Analytics, and/or its affiliated company or companies, and used herein by permission and/or license.