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Multi-axial Fatigue of 2024-T4 Aluminum Alloy 被引量:7
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作者 WANG Xiaogui GAO Zengliang +2 位作者 QIU Baoxiang WANG Limei JIANG Yanyao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2011年第2期195-201,共7页
Only the fatigue initiation is considered by the safe-life design approach,while fatigue crack propagation is paid more attention by the damage tolerance approach.The reasonable fatigue design method and durability as... Only the fatigue initiation is considered by the safe-life design approach,while fatigue crack propagation is paid more attention by the damage tolerance approach.The reasonable fatigue design method and durability assessment standard should give these two phases equivalent concerns.To develop a unified model of fatigue initiation and crack propagation,a great deal of baseline fatigue properties of a material should be obtained by fatigue experiments.However,there is lack of thorough and comprehensive experiment study on the fatigue properties of 2024-T4 aluminum alloy,which is widely used as load-bearing components in aircraft industry.In this paper,strain-controlled uniaxial,torsion,and combined axial-torsion fatigue experiments are conducted on 2024-T4 aluminum alloy in ambient air.Fully reversed uniaxial and pure torsion experiments employ solid cylindrical specimens.Fatigue experiments under the fully reversed shear loading with a static axial stress,proportional axial-torsion loading,and 90°out-of-phase axial-torsion nonproportional loading are conducted by using thin-walled tubular specimens.The experimental results show that the mean stress has a significant influence on the fatigue strength of the material.A tensile mean stress decreases the fatigue life dramatically,while a compressive mean stress increases the fatigue life.The strain-life fatigue results obtained from the fully reversed uniaxial fatigue experiments can be represented by one smooth curve of a three-parameter equation.However,two fitting curves are needed for characterizing the results of the fully reversed pure torsion fatigue tests because of the existence of an obvious kink.The baseline fatigue properties of 2024-T4 aluminum alloy obtained from the fatigue experiments have applications for the fatigue design and safe assessment of engineering components. 展开更多
关键词 2024-t4 aluminum alloy fatigue life loading path multiaxial fatigue SWT fatigue parameter
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硫酸浓度对2024铝合金表面陶瓷膜组织和性能的影响
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作者 王博文 阳建君 +4 位作者 范才河 倪雨朦 欧玲 孙斌 董世运 《包装学报》 2022年第3期20-28,共9页
将高强韧2024铝合金分别在质量浓度为100,200,300 g/L的硫酸溶液中进行60 min的表面陶瓷化处理后,在2024铝合金表面原位生成一层陶瓷膜层。对陶瓷膜层的显微组织、膜层厚度、显微硬度以及电化学性能等进行研究。研究结果表明:随着硫酸... 将高强韧2024铝合金分别在质量浓度为100,200,300 g/L的硫酸溶液中进行60 min的表面陶瓷化处理后,在2024铝合金表面原位生成一层陶瓷膜层。对陶瓷膜层的显微组织、膜层厚度、显微硬度以及电化学性能等进行研究。研究结果表明:随着硫酸质量浓度的增加,陶瓷膜层显微硬度先增加后减少,当硫酸质量浓度为200 g/L时,陶瓷膜层显微硬度最大,为273.7 HV;而陶瓷膜层厚度受硫酸浓度影响不大,均为60μm左右。随硫酸质量浓度的增加,陶瓷膜层表面粗糙度R_(a)先减小后增大,当硫酸质量浓度为200 g/L时,表面粗糙度为0.252μm,磨损体积为0.103 mm^(3),只有硫酸质量浓度为100 g/L时所制备陶瓷膜层磨损体积的1/5左右。物相分析得到2024铝合金表面陶瓷膜层主要是γ-Al_(2)O_(3)相。用200 g/L硫酸制备的Al_(2)O_(3)陶瓷膜的自腐蚀电位和极化电阻均达到最大,分别为-0.604 V和48152.9Ω。综合分析陶瓷膜的耐磨性能和耐腐蚀性能,在2024铝合金表面制备Al_(2)O_(3)陶瓷膜层,硫酸的最佳质量浓度为200 g/L。 展开更多
关键词 2024铝合金 硫酸浓度 Al_(2)O_(3)陶瓷膜 耐腐蚀性能
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