7085-T651铝合金特厚板组织性能的不均匀性
采用拉伸实验、剥落腐蚀实验、显微组织、化学成分、扫描电镜以及透射电镜和差示扫描量热法分析等手段,研究7085-T651铝合金特厚板组织性能的不均匀性。结果表明:110 mm厚7085-T651特厚板不同厚度层显微组织、力学性能和剥落腐蚀性能存在明显的不均匀性;1/4厚度层抗拉强度最低,为540 MPa,抗剥落腐蚀性能最差,腐蚀等级为EB级;心层抗拉强度最高,为580 MPa;表层抗剥落腐蚀性能最好,腐蚀等级为EA级;1/4层再结晶分数最多,约为47.7%,尺寸较大,约为105μm,晶界及晶内均有平衡相析出,时效析出相尺寸较小,因而力学性能及抗剥落腐蚀性能均最差;中心层再结晶分数最少,约为14....
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Published in | 航空材料学报 Vol. 36; no. 6; pp. 15 - 22 |
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Main Author | |
Format | Journal Article |
Language | Chinese |
Published |
中南大学有色金属先进结构材料与制造协同创新中心,长沙410083%广西南南铝加工有限公司,南宁,530031%中南大学轻合金研究院,长沙410083
2016
中南大学轻合金研究院,长沙410083 中南大学有色金属先进结构材料与制造协同创新中心,长沙410083 广西南南铝加工有限公司,南宁530031 |
Subjects | |
Online Access | Get full text |
ISSN | 1005-5053 |
DOI | 10.11868/j.issn.1005-5053.2016.6.003 |
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Summary: | 采用拉伸实验、剥落腐蚀实验、显微组织、化学成分、扫描电镜以及透射电镜和差示扫描量热法分析等手段,研究7085-T651铝合金特厚板组织性能的不均匀性。结果表明:110 mm厚7085-T651特厚板不同厚度层显微组织、力学性能和剥落腐蚀性能存在明显的不均匀性;1/4厚度层抗拉强度最低,为540 MPa,抗剥落腐蚀性能最差,腐蚀等级为EB级;心层抗拉强度最高,为580 MPa;表层抗剥落腐蚀性能最好,腐蚀等级为EA级;1/4层再结晶分数最多,约为47.7%,尺寸较大,约为105μm,晶界及晶内均有平衡相析出,时效析出相尺寸较小,因而力学性能及抗剥落腐蚀性能均最差;中心层再结晶分数最少,约为14.8%,存在大量亚晶,残余的Al7Cu2Fe相最多,约为1.43%,晶界平衡相尺寸、时效析出相尺寸及PFZ宽度均较大,因而力学性能较好而抗剥落腐蚀性能较差。 |
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Bibliography: | LI Chengbo1,2,3 , HE Kezhun2 , SONG Fengxuan2 , LIU Shengdan1,3 , CAO Shengqiang2 , ZHANG Xinming1,2,3(1. Light Alloy Research Institute, Central South University, Changsha 410083 , China ; 2. Alnan Aluminum Inc. , Nanning 530031 , China; 3. Nonferrous Metal Oriented Advanced Structural Materials and Manufacturing Cooperative Innovation Center, Central South U-niversity, Changsha 410083 , China) Inhomogeneity of microstructure and properties of 7085-T651 aluminum alloy extra-thick plate were investigated by tensile properties, exfoliation corrosion, optical microscopy(OM), composition analysis, scanning electron microscopy(SEM),differential scanning calorimetry ( DSC) and transmission electron microscopy ( TEM) . The results show that the microstructure, tensile property and exfoliation corrosion in different layers of 7085-T651 aluminum alloy of 110 mm thick are inhomogeneous. For the 1/4 thickness layer, the tensile strength is the minimum, 540 MPa, and the resistance to exfoliation corrosion of this layer i |
ISSN: | 1005-5053 |
DOI: | 10.11868/j.issn.1005-5053.2016.6.003 |