欢迎登录材料期刊网

材料期刊网

高级检索

用配备拉伸/三点弯曲试验装置的SEM原位观察分析了热镀锌合金化钢板变形时镀层中裂纹产生、扩展、镀层断裂及在塑性变形过程中镀层与钢基体界面的交互作用。结果表明,在拉应力作用下,镀层的破坏可以分为两个过程:第一阶段主要表现为粉化;第二阶段主要表现为剥落。镀层在复合应力作用下的断裂并非沿着某一固定的界面发生,而是在载荷作用的不同阶段,发生不同类型的断裂和脱落,在不同区域镀层断裂的界面不同。当镀层承受拉应力时,裂纹在Г/δ相界面产生,在艿相中沿着垂直于镀层平面的方向扩展,并沿着Г相/钢基体界面延伸,镀层塑性变形的迹象不明显;但在压应力作用下,镀层表现出了明显塑性变形的迹象,在镀层和基体的变形过程中存在裂纹之间的相互作用和不均匀变形的情况。

The generation and expansion of cracks in galvannealed coating were analyzed under the condition of compressive or tensile stress, and the interaction between the coating and the steel substrate was analyzed during galvannealed deformation by environmental scanning electron microscope (ESEM) with in-situ investigation method in tension test and three point bending test. The results showed that the damaging process of the galvannealed coating under tensile stress could be divided into two stages. In the first stage the major damage form was powdering, in the second stage, the major damage form was flaking. Under the composite tensile stress, the fracture of galvannealed coating was not along with the fixed interface but arised with different types of fractures and flakes at different stages of the loading; and the interface fracture was different in different regions. When the galvannealed coating was subjected to tensile stress, cracks occurred at the Г/δ interface and extended perpendicularly to coating plane in the 3 phase, and then propagated along with the Г/Fe interface. The signs of plastic deformation of coating was not obvious under tensile stress, but showed apparent plastic deformation under compressive stress. During the deformation of coating and steel substrate, there was substantial interaction and inhomogeneity.

参考文献

[1] Sohei lWAMOTO;Shojiro OCHIAI;Hiroshi OKUDA .Analysis of Group-buckling and -debonding Behaviors of Galvannealed Coating Layer on Steel Substrates under Applied Tensile Strain[J].ISIJ International,2009(1):139-145.
[2] Shojiro OCHIAI;Sohei IWAMOTO;Toyomitsu NAKAMURA;Hiroshi OKUDA .Crack Spacing Distribution in Coating Layer of Galvannealed Steel under Applied Tensile Strain[J].ISIJ International,2007(3):458-465.
[3] Yoshinari NUNOMURA;Takayuki TAKASUGI .Plastic Deformation and Fracture Behavior of Galvannealed Coating[J].ISIJ International,2003(3):454-460.
[4] Yoshinari NUNOMURA;Takayuki TAKASUGI .Plastic Deformation and Fracture Behavior of Galvannealed Coating[J].ISIJ International,2003(3):454-460.
[5] Moon-Hi HONG .Correlation between the Microstructure of Galvannealed Coatings and the Defoliation during Press Forming[J].ISIJ International,2005(6):896-902.
[6] Lee KK;Lee IH;Lee CR;Ahn HK .In-situ observation in a scanning electron microscope on the exfoliation behavior of galvannealed Zn-Fe coating layers[J].Surface & Coatings Technology,2007(14):6261-6266.
[7] Marder AR. .The metallurgy of zinc-coated steel [Review][J].Progress in materials science,2000(3):191-271.
[8] I. HERTVELDT .The Shear Strength of Galvannealed Coatings on IF Steels[J].ISIJ International,1999(12):1280-1288.
[9] A.T.Alpas;J.Inagaki .Effect of microstructure on fracture mechanisms in galvannealed coatings[J].ISIJ International,2000(2):172-181.
[10] Shojiro OCHIAI;Sohei IWAMOTO;Toyomitsu NAKAMURA;Hiroshi OKUDA .Crack Spacing Distribution in Coating Layer of Galvannealed Steel under Applied Tensile Strain[J].ISIJ International,2007(3):458-465.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%