陈柏

Professor  

Education Level:浙江大学

Degree:Doctoral Degree in Engineering

School/Department:College of Mechanical and Electrical Engineering

Discipline:Mechatronic Engineering. Aeronautical and Astronautical Manufacturing Engineering

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Paper Publications

Strength prediction of 3-D four directional C/C composites by high temperature and oxidation environment

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Affiliation of Author(s):能源与动力学院

Journal:Hangkong Dongli Xuebao

Abstract:Based on progressive damage method, a kind of high temperature strength prediction model of 3-D four directional C/C composites was established on microscopic scale. The section shape of fiber bundle after extrusion, periodicity of unit cell, and fiber bundles debonding were taken into account in the model. The 3-D Hashin failure criterion considering temperature was introduced to determine the elements failure. And then the tensile strength prediction of 3-D four directional C/C composites at room temperature and 700℃ under oxidation protection was achieved. In order to introduce the model in high temperature oxidation environment, the mechanical property degradation model of fiber bundles was established in consideration of oxidation rate. The mechanical properties equivalence of fiber bundles and unidirectional plates was proposed. The tensile strength of 3-D four directional C/C composites without oxidation protection was predicted. Trimming process influence on the strength of 3-D four directional composites was investigated, and the strength prediction model of trimming 3-D four directional composites considering trimming width was established. The tensile strength of trimming 3-D four directional C/C composites with and without oxidation protection 18mm width was predicted. Results show that the prediction errors are 5.51%, 7.20% and 7.13% for non-trimming specimens at room temperature, 700℃ with anti-oxidation coating and 700℃ without anti-oxidation coating. The stress-strain curve of tensile process for prediction is quite in accord with experiment. The prediction errors are 0.88% and 4.53% for trimming specimens at room temperature, 700℃ with anti-oxidation coating. Several kinds of examples show that the prediction model is reasonable and reliable. © 2019, Editorial Department of Journal of Aerospace Power. All right reserved.

ISSN No.:1000-8055

Translation or Not:no

Date of Publication:2019-04-01

Co-author:Chen, Bo,wwd,cht,zhj,XuYing

Correspondence Author:Chen, Bo,cb

Pre One:Experiment on Fatigue of Unidirectional Carbon/Carbon Composites at Elevated Temperature

Next One:Type synthesis of coordinated multi-robot system based on parallel thought

Profile

 陈柏,博士,南京航空航天大学机电学院教授,博士生导师,机械电子工程系系主任。20007月本科毕业于浙江大学机械系。20055月在浙江大学机械系获博士学位,2007年晋升为副教授,2010.9-2011.7任南京航空航天大学装备工程部部长助理,2012年晋升为教授。陈柏教授主要从事医疗机器人、绳驱动机器人、康复机器人等方面的研究及应用工作。至今,主持3项国家自然科学基金项目、1项江苏省自然科学基金项目、1项江苏省产学研联合创新项目、4项江苏省科技厅重大成果转化项目、1863项目。陈柏教授是<IEEE Transactions on Industrial Electronics><IEEE/ ASME Transactions on Mechatronics>、《Journal of Bionic Engineering》、《机器人》、《机械工程学报》等杂志的审稿专家;同时也是科技部国家高科技计划项目、国家自然科学基金,江苏省、浙江省、广东省、山东省科技发展计划项目通信评审专家,机械工程学会、仪器仪表学会高级会员、国际仿生工程学会、航空学会会员。到目前为止,先后发表学术论文80余篇、SCI检索40余篇;获得授权发明专利17项;论著被引200余次,其中SCI他引100余次。