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Tensile ductility improvement of AlSi9Cu1 alloy by chemical composition optimization

Tensile ductility improvement of AlSi9Cu1 alloy by chemical composition optimization
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摘要 Diesel engines, characterized by higher breakout pressure and compression ratio in comparison with gasoline engines, require particularly elevated tensile properties for their engine parts. In order to maintain both high strength and high ductility in the cylinder head, i.e., to obtain higher percent elongation without further reducing the tensile strength, Al Si9Cu1 alloy was used to prepare the cylinder head in an aluminum diesel engine. At the same time, the effect of different modification elements, Na or Sr, and Fe content on the reduction of secondary dendrite arm spacing(SDAS) was discussed, and the design of T7 heat treatment parameters were analyzed in order to improve the tensile ductility. The result shows:(1) The SDAS is as small as 18±3 μm for the Sr modified alloy.(2) The percent elongation of the alloy with Sr modification increases by 66.7% and 42.9%, respectively, compared with the unmodified alloy and the alloy with Na modification.(3) Lower Fe content alloy(0.10%) gives good results in percent elongation compared to the alloy with higher Fe content(0.27%); in particular, after Sr modification and T7 heat treatment, the elongation of over 5% is obtained. Diesel engines, characterized by higher breakout pressure and compression ratio in comparison with gasoline engines, require particularly elevated tensile properties for their engine parts. In order to maintain both high strength and high ductility in the cylinder head, i.e., to obtain higher percent elongation without further reducing the tensile strength, Al Si9Cu1 alloy was used to prepare the cylinder head in an aluminum diesel engine. At the same time, the effect of different modification elements, Na or Sr, and Fe content on the reduction of secondary dendrite arm spacing(SDAS) was discussed, and the design of T7 heat treatment parameters were analyzed in order to improve the tensile ductility. The result shows:(1) The SDAS is as small as 18±3 μm for the Sr modified alloy.(2) The percent elongation of the alloy with Sr modification increases by 66.7% and 42.9%, respectively, compared with the unmodified alloy and the alloy with Na modification.(3) Lower Fe content alloy(0.10%) gives good results in percent elongation compared to the alloy with higher Fe content(0.27%); in particular, after Sr modification and T7 heat treatment, the elongation of over 5% is obtained.
出处 《China Foundry》 SCIE 2017年第2期80-84,共5页 中国铸造(英文版)
基金 supported by the major project of Shandong Science and Technology(No.2015ZDZX03004) the project of Shandong Science and Technology Development Plan(No.2014GGX103035) the National“Thousand Talents Plan”of China
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  • 1任勤.ADC12铝硅合金铸件热处理工艺的改进[J].金属热处理,1997,22(1):47-49. 被引量:7
  • 2《铸造有色合金及其熔炼》联合编写组.铸造有色金属及其熔炼[M].北京:国防工业出版社,1980.
  • 3MURALI S,RAMAN K S,MURTH K S S.The formation of β-Fe-SiA15 and Be-Fe phases in A1-7Si-0.3Mg alloy containing Be[J].Materials Science and Engineering,1995,A190(1-2):165-172.
  • 4MURALI S,RAMAN K S,MURTHY K S S.Effect of magnesium iron(impurity)and solidification on the toughness of A1-7Si-0.3Mg casting alloy[J].Material Science and Engineering,1992,A151(1):1-10.
  • 5COUNTER A.Iron in aluminum casling alloys-a literatue survey[J].AFS International Cast Metal Journal,1981,126(2-3):103-112.
  • 6ANANTHA N L,SAMUEL F H,Gruzleski J E.Dissolution of iron intermetallics in Al-Si alloys through nonequilibrium beat treatment[J].Metallurgical and Materials Transactions,1995,26(8):2161-2174.
  • 7RATHINDRA D G.Influence of iron on microstructure and mechanical properties of Sr-modified aluminum alloys[J].Die Gasting Engineer.1996,40(3):65-67.
  • 8CREPCAU P N.The effect of processing and micmstructure on the mechanical properties of aluminum alloy[J].AFS Transactions,1995(103):361-366.
  • 9COUTURE A .Iron in aluminum casting alloy a literature survey[J].AFS interational Cast Metal Joumal,1981,64(4):9-17.
  • 10ANANTHANARAYANAN L,SAMUEL F H,Gruzleski J E.Crystallization behavior of iron-containing inter metallic compounds in 319 aluminum alloy[J].Metallurgical and Materials Transactions A,1994,25A(5):1761-1765.

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