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Featured researches published by Gao Guhui.


Acta Metallurgica Sinica | 2015

EFFECT OF FINISH COOLING TEMPERATURE ON MICROSTRUCTURE AND LOW TEMPERATURE TOUGHNESS OF Mn-SERIES ULTRA-LOW CARBON HIGH STRENGTH LOW ALLOYED STEEL

Gao Guhui; Gui Xiaolu; An Baifeng; Tan Zhunli; Bai Bingzhe; Weng Yuqing

Recently, the steel plates used in the ship, pipeline and bridge generally required not only high strength but also excellent low temperature toughness. As a competitive candidate, the ultra- low carbon high strength low alloyed(HSLA) steel has been developed widely. The low temperature toughness depends on the microstructure of the steels. Therefore, the relationship of low temperature toughness and microstructure should be studied in detail. In the present work, the steel plates with 25 mm thickness after hot rolling were immediately water quenched to 550, 450 and 350 ℃(finish cooling temperature), respectively, and subsequently air cooled to room temperature. The effect of finish cooling temperature on the microstructure and low temperature toughness ofMn-series ultra-low carbon HSLA steel was investigated by SEM, TEM and crystallographic analysis. The results show that the granular bainite, lath bainite and martensite were obtained with finish cooling temperatures decreasing. There are three blocks with different orientations in a single packet for lath bainite microstructure in the sample with finish cooling temperature of 450 ℃, leading to the refinement of effective grain size and large amount of highangle grain boundaries. Electron backscattered diffraction analyses of the cleavage crack path show that the bainite block boundaries can strongly hinder fracture propagation, and thus the refinement of bainite blocks can improve the low temperature toughness of Mn- series ultra- low carbon HSLA steel. Finally, the yield strength of 775 MPa and ductile-brittle transition temperature of-55 ℃can be achieved when the finish cooling temperature is 450 ℃.


Archive | 2015

Preparation method of bainite/martensite/austenite composite high-strength steel

Tan Zhunli; Gao Guhui; Gui Xiaolu; Bai Bingzhe


Archive | 2014

Super strength C-Al-Mn-Si series low-density steel and its preparation method

Gao Guhui; Gui Xiaolu; Bai Bingzhe


Archive | 2014

B-P-T steel tube and preparation method thereof

Liu Wenli; Tan Zhunli; Shi Qingzhi; Gao Guhui


Acta Metallurgica Sinica | 2013

EFFECT OF SURFACE NANOCRYSTALLIZATION ON MICROSTRUCTURE AND THERMAL STABILITY OF REDUCED ACTIVATION STEEL

Liu Wenbo; Zhang Chi; Yang Zhigang; Xia Zhixin; Gao Guhui; Weng Yuqing


Archive | 2016

Multi -functional sample platform of scanning electron microscope electron backscattering

Gui Xiaolu; Cheng Cheng; Gao Guhui; Bai Bingzhe


Archive | 2017

Medium-low-carbon high-strength high-toughness corrosion-resistant bainite steel, steel rail and preparation method

Tan Zhunli; Gao Bo; Zhang Min; Gao Guhui; Bai Bingzhe


Archive | 2017

650 MPa grade high strength aseismic reinforcement steel and preparation method thereof

Tan Zhunli; Gao Bo; Zhang Min; Gao Guhui; Bai Bingzhe


Archive | 2017

BQ&P heat treatment technique of carbide-free bainite/martensite complex phase steel

Gao Guhui; Zhang Han; Gui Xiaolu; Tan Zhunli; Bai Bingzhe; Weng Yuqing


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2017

超高強度Mn‐Si‐Crベイナイト/マルテンサイト多相レール鋼の構造‐性質関係に及ぼす深冷処理の影響【Powered by NICT】

Wang Kaikai; Tan Zhunli; Gu Kaixuan; Gao Bo; Gao Guhui; Misra R.D.K.; Bai Bingzhe

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Weng Yuqing

Chinese Academy of Sciences

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