
Inhomogeneity and fatigue properties of ultra-wide 7B50-T7751 aluminum alloy thick plate
Yue LEI, Min HAO, Gaohong CHEN, Linna YI, Jinxin ZANG
Journal of Materials Engineering ›› 2023, Vol. 51 ›› Issue (11) : 103-110.
Abbreviation (ISO4): Journal of Materials Engineering
Editor in chief: Xiangbao CHEN
Inhomogeneity and fatigue properties of ultra-wide 7B50-T7751 aluminum alloy thick plate
The microstructure and performance homogeneity of 80 mm thick ultra-wide 7B50-T7751 plate with different widths and thicknesses were studied by means of mechanical testing machine and scanning electron microscope,and the fatigue properties were compared and discussed with 7050-T7451 plate. The results show that the ultra-wide 7B50-T7751 plate has excellent mechanical properties. In L and LT directions, the tensile yield strength of 1/2 thickness reaches up to 568 MPa and 545 MPa,and the tensile strength reaches up to 612 MPa and 591 MPa,the compressive yield strength reaches up to 575 MPa and 587 MPa,the fracture toughness in L-T direction and T-L direction reaches 30.16 MPa·m1/2 and 26.47 MPa·m1/2,respectively. The ultra-wide thick plate exhibits certain anisotropy at different width positions,the performance homogeneity in LT direction tends to be better than in L direction. Performance at different width positions with 1/4 thickness shows little difference,while the performance at the edge of 1/2 thickness is better than that of the center. No obvious texture exhibits at 1/4 thickness,however,the main textures at the center of 1/2 thickness are S texture and Brass texture, and the main textures at the edge are R texture,S texture and Brass texture. When the stress ratio is 0.06,the T-L anti-fatigue crack growth rate performance of ultra-wide 7B50-T7751 thick plate is better than 7050-T7451 plate with the same thickness. The fatigue limit of LT smooth sample (K t=1) is about 7.6% inferior than that of 7050-T7451 plate, while the fatigue limit of notch sample (K t=3) is about 3.7% higher.
7B50-T7751 / ultra-wide thick plate / inhomogeneity / microstructure / fatigue property
1 |
史春玲,张建勋. 低温加热对铝合金7150-T77状态性能和组织的影响[J]. 材料工程,2007(11):33-36.
|
2 |
臧金鑫,邢清源,陈军洲,等. 800 MPa级超高强度铝合金的时效析出行为[J]. 材料工程,2021,49(4):71-77.
|
3 |
陈高红,李国爱,陈军洲,等. 轧制组织特征对7B50-T7751铝合金厚板断裂韧性的影响[J]. 轻合金加工技术,2018,46(6):29-33.
|
4 |
齐建波,龚志华,康康,等. 轧制工艺对7150高强铝合金板材织构演变的影响[J]. 上海金属,2019,41(5):59-65.
|
5 |
丛福官,赵刚,田妮,等. 7150-T7751铝合金厚板性能的不均匀性[J]. 材料研究学报,2013,27(2):144-148.
|
6 |
|
7 |
侯陇刚,赵凤,庄林忠,等. 基于厚向组织性能考量的7B50铝合金中厚板回归再时效热处理[J]. 工程科学学报,2017,39(3):432-442.
|
8 |
沈茹娟,肖代红. 时效热处理对7B50超强铝合金组织与性能的影响[J]. 粉末冶金材料科学与工程,2016,21(1):78-84.
|
9 |
李吉臣,冯迪,夏卫生,等. 非等温时效对7B50铝合金组织及性能的影响[J]. 金属学报,2020,56(9):1255-1264.
|
10 |
|
11 |
|
12 |
朱耀. AA7055铝合金在不同温度及应变率下力学性能的实验研究[D]. 哈尔滨:哈尔滨工业大学,2010.
|
13 |
王国军. 铝及铝合金板带材织构[J]. 轻合金加工技术,2004,32(6):28-33.
|
14 |
|
15 |
丛福官. 7B50厚板组织、性能及各向性研究[D].沈阳:东北大学,2018.
|
16 |
邹林池,程佳乐,王文龙,等. 不同时效态7050铝合金时效成形中析出相对应力松弛行为的影响[J]. 稀有金属材料与工程, 2021,50(11):4095-4102.
|
17 |
|
18 |
张研,邓运来,范世通,等. 回归时间对7150铝合金力学性能与组织的影响[J]. 材料工程,2018,46(12):131-136.
|
19 |
马思怡,张伟健,苏睿明,等. 7xxx系铝合金回归再时效的研究现状[J]. 有色金属科学与工程,2022,13(2):38-50.
|
20 |
何维维,陈军洲,戴圣龙,等. 过时效对7050铝合金不同温度力学性能及断裂行为的影响[J]. 航空材料学报,2021, 41(3):111-119.
|
/
〈 |
|
〉 |