西安交通大学焊接研究所,西安,710049
网络首发:2008-01-10,
纸质出版:2008
移动端阅览
张贵锋, 苗慧霞, 张建勋, 等. 焊后多次正火对超细晶粒钢热影响区组织与硬度的影响[J]. 西安交通大学学报, 2008,42(1):65-69.
张贵锋, 苗慧霞, 张建勋, et al. Effects of Multiple Post Welding Normalizations on Microstructure and Hardness of Heat Affected Zone of Ultra-Fine Grained Steel[J]. 2008, 42(1): 65-69.
为研究400 MPa级超细晶粒钢焊接接头热影响区粗晶区的晶粒细化行为
对其空冷与水冷接头均进行了3次焊后正火热处理.组织观察表明:第1次正火后粗晶区晶粒明显细化
但细晶区和母材区的晶粒均比正火前的稍微粗大
第2次与第3次正火并不能进一步细化晶粒; 冷却条件对热影响区组织的影响并不十分显著.显微硬度测试表明:第1次正火使接头硬度大幅度降低
甚至低于母材的原始硬度
后续正火对硬度的影响较小; 在所有试样中
仅水冷接头第1次正火后的热影响区硬度与原始母材及母材区的硬度接近.由于焊后多次正火并不能使热影响区晶粒进一步细化
反而使其有粗化与软化的趋势
故应避免焊后多次正火处理.
To investigate the refinement of the grains in the coarse grain heat affected zone(CGHAZ)of 400 MPa ultra-fine grained steel joints welded by gas tungsten arc welding(GTAW)with air cooling and water cooling
post welding normalization treatments(PWNT)are performed respectively for three times. The microstructure examinations show that the grains of CGHAZ are remarkably refined after the first PWNT
however the grains in the fine grain heat affected zone(FGHAZ)and base metal are slightly coarsened. The grains can not be further refined after the second and third normalizations. The cooling conditions after welding exert less effect on the microstructure in heat affected zone(HAZ). The results of micro-hardness test indicate that the joints hardness decreases greatly after the first PWNT
so that the whole joints hardness is below the original hardness of base metal. Further PWNTs have less effect on the hardness of HAZ. Among all specimens
after the first PWNT only the HAZ hardness of the joints with water cooling is equivalent to the hardness of the original base metal. Multi-normalization post welding ought to be avoided since the grains in the HAZ can not be refined further
on the contrary
coarsening and softening may arise.
张贵锋,张建勋. 日本关于新世纪结构材料(超微细钢)及其焊接的研究[J]. 焊接, 2001(5): 37-40.
ZHANG Guifeng, ZHANG Jianxun. Study of 21st century structural materials projects(ultra-fine grained structural steels)and its welding projects in Japan [J]. Welding, 2001(5): 37-40.
张贵锋,米运卿,张建勋,等. 超细晶粒钢制备工艺与机制与传统控轧控冷(TMCP)钢的异同[J]. 材料导报,2004,18(8): 53-55.
ZHANG Guifeng, MI Yunqing, ZHANG Jianxun, et al. Similarities and differences in prepared technologies and its mechanisms between ultrafine-grained(UFG)steels and TMCP steels [J]. Journal of Material, 2004,18(8): 53-55.
张贵锋,苗慧霞,张建勋,等. 超细晶粒钢的焊接方法及接头组织特征[J].焊管,2007,30(2):39-43.
ZHANG Guifeng, MIAO Huixia, ZHANG Jianxun, et al. Welding methods and microstructural characteristics of ultra-fine grained(UFG)steel joints welded by variant methods [J]. Weld Pipe, 2007,30(2):39-43.
田志凌,屈朝霞,杜则裕,等. 细晶钢焊接热影响区晶粒长大及组织转变[J]. 材料科学与工艺, 2000, 8(3): 16-20.
TIAN Zhiling, QU Chaoxia, DU Zeyu,et al. Grain growth and microstructure transformation in heat affected zone of fine-grain steels [J]. Material Science and Technology, 2000, 8(3): 16-20.
彭云,王成,陈武柱,等. 两种规格超细晶粒钢的激光焊接[J]. 焊接学报,2001, 22(1):31-35.
PENG Yun, WANG Cheng, CHEN Wuzhu, et al. Laser welding of two super-fine grain steels [J]. Transactions of the China Welding Institution, 2001, 22(1):31-35.
田志凌,何长红,张晓牧,等. 400 MPa级超细晶粒钢的焊接[J]. 焊接学报, 2001, 22(6): 1-3.
TIAN Zhiling, HE Changhong, ZHANG Xiaomu, et al. Welding of 400 MPa ultra-fine grain steels [J]. Transactions of the China Welding Institution, 2001, 22(6): 1-3.
张贵锋,张建勋. 日本关于超细晶粒钢制备与焊接新工艺的研究进展[J]. 材料导报, 2005, 19(9): 94-96.
ZHANG Guifeng, ZHANG Jianxun. Recent progress in new producing and welding process for ultrafine-grained steels in Japan [J]. Journal of Material, 2005, 19(9): 94-96.
傅博,李巍,程钢. 鞍钢ANS400超细晶粒钢焊接热影响区的冲击韧性[J]. 焊接, 2004(1):23-25.
FU Bo, LI Wei, CHENG Gang. Impact toughness of ANS400 ultra-fine grained steel heat affected zone [J]. Welding, 2004(1):23-25.
孙建伦,张万山,王科强,等. 鞍钢超细晶粒钢的开发[J]. 钢铁钒钛, 2005, 26(1):26-29.
SUN Jianlun, ZHANG Wanshan, WANG Keqiang, et al. Development of ultra-fine grain steels in Anshan Steel Group [J].Iron Steel Vanadium Titanium, 2005, 26(1): 26-29.
0
浏览量
6
下载量
1
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621