采用多块均匀分布过剩TiH2的球形孔泡沫铝合金作为坯料置于异型件模具中,用二次泡沫化方法制备出具有均匀孔结构的高孔隙率泡沫铝合金合金异型件,用光学显微镜和层析X射线成像仪(X-CT)观察异型件的冶金结合界面结构,并对异型件冶金结合界面的拉伸性能进行了实验研究,结果表明,采用二次发泡方法在发泡温度700-900℃、发泡时间250-800s条件下,可以实现泡沫铝合金的有效冶金结合;形成的异型件结合界面连接机制分为界面机械连接与界面扩散连接;泡沫铝合金异型件冶金结合面的抗拉强度随着孔隙率的升高而降低,泡沫铝合金异型件的孔隙率为74.9%时,结合界面处抗拉强度与泡沫铝合金的本体强度相当.
参考文献
[1] | M.F.Ashby,T.J.Lu,Metal foams:A survey,Science in China(Series B),46(6),521(2003) |
[2] | M.F.Ashby,A.G.Evans,Metal Foams:A Design Guide (Oxford,Butterworth Heinemann,2000)p.25 |
[3] | H.P.Degischer,B.Kriszi,Handbook of Cellular Metals:Production,Processing,Applications(Weinheim,WileyVCH Verlag GmbH2001)p.71 |
[4] | J.Banhart,Aluminum foams for lighter vehicles,International Journal of Vehicle Design,37(2/3),114(2005) |
[5] | C.J.Yu,H.H.Eifert,J.Banhart,Metal foams,Advanced Materials & Processes,154(5),45(1998) |
[6] | HE Deping,Ultra-lightweight Porous Metal,(Beijing,Science Press of China,2007)p.5(何德坪,超轻多孔金属(北京,科学出版社,2007)p.5) |
[7] | A.R.Kennedy,S.Asavavisithchai,Effect of ceramic particle additions on foam expansion and stability in compacted A1一TiH2 powder precursors,Advanced Engineering Materials,6(6),400(2004) |
[8] | V.Gergely,B.Clyne,The FORMGRIP process:Foaming of reinforced metals by gas release in precursors,Advanced Engineering Materials,2(4),175(2000) |
[9] | J.Pcei,V.Gergely,A.Mortensen,B.Clyne,The effect of Drior deformation on the foaming behavior of"FORMGRIP"precursor material,Advanced Engineering Materials,4(10),749(2002) |
[10] | HE Deping,SHANG Jintang,ZHANG Yongming,Fabrication method of two step foaming for shaped foamed A1 alloy,China Patent,CNl644724(2005)(何德坪,尚金堂,张勇明,二次泡沫化制备泡沫铝合金异型件的方法,中国专利,CN1644724(2005)) |
[11] | SHANG Jintang,HE Deping,The two steps thermal decompositions of TiH2 and two steps foaming of A1 alloy,Science in China(Series B),48(6),523(2005) |
[12] | ZUO Xiaoqing,MEI Jun,XIONG Heng,ZHOU Yun,SUN Jialin,Dispersion of TiH2 foaming agent in precursor for two-step foaming process of aluminum foam,The Chinese Journal of Nonferrous Metals,18(1),78(2008) (左孝青,梅俊,熊恒,周芸,孙加林,泡沫铝二次发泡工艺用先驱体中TiH2发泡剂的分散性,中国有色金属学报,18(1),78(2008)) |
[13] | HE Deping,SHANG Jintang,HE Siyuan,CHU Xuming,Fabrication method of two step foaming for foamed Al alloy,China Patent,CN1876862(2006)(何德坪,尚金堂,何思渊,褚旭明,二次泡沫化制备泡沫铝合金制品的方法,中国专利,CN1876862(2006)) |
[14] | SHANG Jintang,Research on A1 alloy with spherical pores and shaped A1 alloy foam of two step foaming,Ph D thesis,Southeast University(2006) (尚金堂,球形孔泡沫铝合金和二次泡沫化形成异型件研究,博士学位论文,东南大学(2006)) |
[15] | CHU Xuming,WANG Hui,HE Siyuan,HE Deping,Production of foamed aluminum alloy spherical parts using a secondary foam method,Journal of Harbin Engineering University,29(4),420(2008) (褚旭明,王辉,何思渊,何德坪,泡沫铝合金球形件的二次发泡法制备成型,哈尔滨工程大学学报,29(4),420(2008)) |
[16] | WANG Hui,HE Deping,CHU Xuming,HE Siyuan,DAI Ge,WANG Quan,Interface structure and mechanical performance of N2 shielded furnace brazing A1 foam joinks,Transactions of the China Welding Institution,29(10),1(2008) (王辉,何德坪,褚旭明,何思渊,戴戈,王权,泡沫铝氮气保护炉中钎焊界面结构及力学性能,焊接学报,29(10),1(2008)) |
[17] | HE Deping,CHU Xuming,HE Siyuan,WANG Hui,DAI Ge,A welding method of foamed A1 and A1 alloy,China Patent,CN101214583(2008) (何德坪,褚旭明,何思渊,王辉,戴戈,一种泡沫铝及合金的焊接方法,中国专利,CN101214583(2008)) |
[18] | ZOU Yi,HE Deping,JIANG Jiaqiao,New type of spherical pore A1 alloy foam with low porosity and high strength,Science in China(Series B),47(5),407(2004) |
[19] | LIN Gang,LIN Huiguo,ZHAO Yutao,Applied Handbook of Aluminium Alloy(Beijing,Machinery Press of China,2005)p.513 (林钢,林慧国,赵玉涛,铝合金应用手册(北京,机械工业出版社,2005)p.513) |
[20] | E.Maire,A.Fazekas,L.Salvo,R.Dendievel,S.Youssef,P.Cloetens.J.M.Letang,X-ray tomography applied to characterization of cellular materials,Related finite element modeling problems,Composites Science and Technology,63(16),2431(2003) |
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:
-
10%
-
20%
-
30%
-
40%
-
50%