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个人信息Personal Information
副教授 博士生导师
招生学科专业:
材料科学与工程 -- 【招收博士、硕士研究生】 -- 材料科学与技术学院
机械 -- 【招收硕士研究生】 -- 材料科学与技术学院
材料与化工 -- 【招收博士、硕士研究生】 -- 材料科学与技术学院
性别:男
毕业院校:伯明翰大学
学历:伯明翰大学
学位:工学博士学位
所在单位:材料科学与技术学院
办公地点:新材料楼 A503
联系方式:15295755361
电子邮箱:
Mechanical properties and deformation behavior under compressive loading of selective laser melting processed bio-inspired sandwich structures
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所属单位:材料科学与技术学院
发表刊物:MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING
关键字:Bio-inspired Sandwich structure Selective laser melting Deformation behavior Finite element analysis
摘要:Sandwich structures are widely used in aviation and aerospace applications because of their outstanding characteristics of light-weight, excellent energy absorption and continuous compression behaviors. Nature has provided us with extraordinary resources to meet the demanding for modern industry. In this study, inspired by the microstructures of the Norway spruce stem, four light-weight sandwich structures were designed and manufactured by selective laser melting (SLM). The structures had good formability using an optimized laser processing parameter setting. The uniaxial compression tests of SLM-processed bio-inspired sandwich structures were conducted to evaluate their specific compressive strength and energy absorption performance. Finite element analysis was employed to study stress distributions in structures during compression tests and analyze fracture mode combining with the observation of fracture surface morphology. The experimental and numerical results indicated that the gradient structure, with tube size gradually decreasing from top and bottom plate towards the center, exhibited the highest specific absorption energy, ultimate strength and specific strength, which was 5.73 J/g, 214.8 MPa and 98.99 MPa/(g/cm(3)), respectively. The FEA results revealed that the arrangement of tubes significantly affected the stress distribution and fracture locations of structures. The gradient structure, with the highest specific absorption energy and ultimate strength, had the most uniform stress distributions, contributing to its excellent compressive performance.
备注:卷: 762
ISSN号:0921-5093
是否译文:否
发表时间:2019-08-05