采用拉伸试验、金相显微镜、扫描电子显微镜对复合铸造法制备的16Mn/Zn复合材料界面层组织和性能进行了研究.研究结果表明:16Mn/Zn复合材料的强度介于锌和16Mn钢之间;受纵向拉伸的条件下,16Mn/Zn复合材料中的微裂纹首先在靠近钢一侧的界面层处萌生,并随载荷增加,微裂纹逐向锌基体扩展,与外加应力相垂直的主裂纹联接成大裂纹,最终导致锌断裂,之后应力由16Mn钢单独承载直至断裂;16Mn/Zn复合材料的纵向拉伸断口分为韧性断裂(16Mn钢)和脆性断裂(界面和锌).
参考文献
[1] | 王荣国;武卫莉;谷万里.复合材料概论[M].哈尔滨:哈尔滨工业大学出版社,1999 |
[2] | R. Schaller .Mechanical spectroscopy of interface stress relaxation in metal-matrix composites[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1/2):423-428. |
[3] | Aghdam M M;Falahatgar S R .Micromechanical modeling of interface damage of metal matrix composites subjected to transverse loading[J].Computers & Structures,2004,66(1-4):415-420. |
[4] | 包晓军,刘勇兵,曹占义,孙喜良,吴坪安.16Mn/Zn抗震复合材料的单向拉伸与循环变形行为[J].材料科学与工艺,2005(05):496-498,502. |
[5] | Takeuchi E;Zene M .Novel continuous casting progress for clad steel slabs with level magnetic field[J].Ironmaking and Steelmaking,1997,24(03):257-263. |
[6] | Haga T;Nishiyama T;Suzuki S .Strip casting of A5182 alloy using melt drag twin7roll caster[J].Journal of Materials Processing Technology,2003,133:103-107. |
[7] | Xuping Su;Nai-Yong Tang;Jim M. Toguri .Thermodynamic evaluation of the Fe-Zn system[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2001(1/2):129-136. |
[8] | Kubaschewski O;Massalski T.Binary Alloy Phase Diagrams[M].Metals Park,OH:ASM,1986:1128. |
[9] | 包晓军,刘勇兵,冉旭,曹占义,高慧婷.双金属抗震减灾复合材料设计与抗震特性分析[J].地震工程与工程振动,2006(01):78-82. |
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