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Improvement of strength of B/Al composite by thermal-mechanical cycling
引用本文:覃耀春,何世禹,杨德庄.Improvement of strength of B/Al composite by thermal-mechanical cycling[J].中国有色金属学会会刊,2004,14(5):907-911.
作者姓名:覃耀春  何世禹  杨德庄
作者单位:SchoolofMaterialsScienceandEngineering,HarbinInstituteofTechnology,Harbin150001,China
基金项目:国家重点基础研究发展计划(973计划)
摘    要:The mechanical properties of B/Al composite were measured at room temperature in the as-fabricated condition and after thermal-mechanical cycling(TMC). The effects of TMC on microstructure and tensile fracture behavior of B/Al composite were studied using transmission electron microscope(TEM) and scanning electron microscope(SEM). The fibers/matrix interfaces are degraded during TMC, the extent of which is enhanced with increasing the cycles, causing a measurable decrease of stage I modulus of the B/Al composite. The TMC induces the dislocation generation in the aluminum matrix and the dislocation density increases with the cycles. The synergistic effect of the matrix strengthening and the interracial degradation during TMC is found to play an important role in controlling the changes of tensile strengths and fracture behavior of the composite. The ultimate tensile strength of the composite increases with the cycles increasing. The interfaces in the B/Al composite change from the stronglybonded states toward the appropriately-bonded ones with increasing the cycles. TMC will provide an approach of improving the strength of B/Al composites.

关 键 词:B/Al合成物  微观结构  机械性能  TMC  温度

Improvement of strength of B/Al composite by thermal-mechanical cycling
QIN Yao-chun,HE Shi-yu,YANG De-zhuang.Improvement of strength of B/Al composite by thermal-mechanical cycling[J].Transactions of Nonferrous Metals Society of China,2004,14(5):907-911.
Authors:QIN Yao-chun  HE Shi-yu  YANG De-zhuang
Abstract:The mechanical properties of B/Al composite were measured at room temperature in the as-fabricated condition and after thermal-mechanical cycling(TMC). The effects of TMC on microstructure and tensile fracture behavior of B/Al composite were studied using transmission electron microscope(TEM) and scanning electron microscope(SEM). The fibers/matrix interfaces are degraded during TMC, the extent of which is enhanced with in creasing the cycles, causing a measurable decrease of stage Ⅰ modulus of the B/Al composite. The TMC induces the dislocation generation in the aluminum matrix and the dislocation density increases with the cycles. The synergistic effect of the matrix strengthening and the interfacial degradation during TMC is found to play an important role in controlling the changes of tensile strengths and fracture behavior of the composite. The ultimate tensile strength of the composite increases with the cycles increasing. The interfaces in the B/Al composite change from the strongly bonded states toward the appropriately-bonded ones with increasing the cycles. TMC will provide an approach of im proving the strength of B/Al composites.
Keywords:B/Al composite  thermal-mechanical cycling  microstructure  mechanical properties
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