中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2014年
9期
2307-2314
,共8页
范建磊%郑成坤%罗宗强%张卫文
範建磊%鄭成坤%囉宗彊%張衛文
범건뢰%정성곤%라종강%장위문
Al-Li-Cu合金%挤压铸造%组织%力学性能
Al-Li-Cu閤金%擠壓鑄造%組織%力學性能
Al-Li-Cu합금%제압주조%조직%역학성능
Al-Li-Cu alloy%squeeze casting%structure%mechanical property
采用直接挤压铸造工艺制备一种密度为2.525 g/cm3的A1-2.47Li-1.49Cu合金铸锭,通过宏观腐蚀、OM、DSC、SEM、XRD及拉伸性能测试等手段对其组织和力学性能进行研究。结果表明:压力作用下凝固可以显著改善铸锭的表面质量,获得致密无缩松缺陷的铸锭,50 MPa下,铸锭中的柱状晶平均长度较重力铸造下的减小20%;合金铸态微观组织主要由初生α(Al)、T2相以及少量AlLiSi和Al6(CuFe)组成,施加压力不改变相的组成,但可使第二相尺寸更小,分布更均匀;合金硬度、抗拉强度以及伸长率均随压力增大而增大,但50 MPa以后压力对性能的影响不明显。50 MPa下T5热处理的合金抗拉强度为329 MPa,伸长率为6%,硬度为135HBS,较重力铸造合金分别提高了7.2%、107%和3%。
採用直接擠壓鑄造工藝製備一種密度為2.525 g/cm3的A1-2.47Li-1.49Cu閤金鑄錠,通過宏觀腐蝕、OM、DSC、SEM、XRD及拉伸性能測試等手段對其組織和力學性能進行研究。結果錶明:壓力作用下凝固可以顯著改善鑄錠的錶麵質量,穫得緻密無縮鬆缺陷的鑄錠,50 MPa下,鑄錠中的柱狀晶平均長度較重力鑄造下的減小20%;閤金鑄態微觀組織主要由初生α(Al)、T2相以及少量AlLiSi和Al6(CuFe)組成,施加壓力不改變相的組成,但可使第二相呎吋更小,分佈更均勻;閤金硬度、抗拉彊度以及伸長率均隨壓力增大而增大,但50 MPa以後壓力對性能的影響不明顯。50 MPa下T5熱處理的閤金抗拉彊度為329 MPa,伸長率為6%,硬度為135HBS,較重力鑄造閤金分彆提高瞭7.2%、107%和3%。
채용직접제압주조공예제비일충밀도위2.525 g/cm3적A1-2.47Li-1.49Cu합금주정,통과굉관부식、OM、DSC、SEM、XRD급랍신성능측시등수단대기조직화역학성능진행연구。결과표명:압력작용하응고가이현저개선주정적표면질량,획득치밀무축송결함적주정,50 MPa하,주정중적주상정평균장도교중력주조하적감소20%;합금주태미관조직주요유초생α(Al)、T2상이급소량AlLiSi화Al6(CuFe)조성,시가압력불개변상적조성,단가사제이상척촌경소,분포경균균;합금경도、항랍강도이급신장솔균수압력증대이증대,단50 MPa이후압력대성능적영향불명현。50 MPa하T5열처리적합금항랍강도위329 MPa,신장솔위6%,경도위135HBS,교중력주조합금분별제고료7.2%、107%화3%。
Al-2.47Li-1.49Cu alloy ingot with density of 2.525 g/cm3 was prepared by direct squeeze casting. The macro-and micro-structures and mechanical properties of the alloy were analyzed by macro corrosion, OM, DSC, SEM, XRD and tensile properties test. The results indicate that pressure can not only improve the surface quality and refine columnar areas, but also eliminate the porosity to obtain the dense ingot. The average length of columnar grains obtained at applied pressure of 50 MPa is 20% shorter than that of the gravity alloy cast. The microstructure of the as-cast alloys mainly consists of primaryα(Al), T2 and a small amount of AlLiSi and Al6(CuFe) phases. The applied pressure does not change the phase composition, but makes them smaller and more uniform. In addition, the microhardness, tensile strength and elongation of the alloy increase with increasing the pressure, but the applied pressure does not affect the mechanical properties obviously when the pressure exceeds 50 MPa. The T5 heat-treated alloy prepared under 50 MPa can reach a level of ultimate tensile strength of 329 MPa, elongation of 6%and microhardness of 135HBS, which are 7.2%, 107%and 3%, respectively higher than those of the gravity cast alloy.