首页 | 本学科首页   官方微博 | 高级检索  
     

固化条件对热塑增韧环氧树脂的固化动力学和相分离的影响EI
引用本文:贾泮江,唐辉,陈邦峰.固化条件对热塑增韧环氧树脂的固化动力学和相分离的影响EI[J].材料工程,2008(1):30-33.
作者姓名:贾泮江  唐辉  陈邦峰
作者单位:北京航空材料研究院,北京,100095
摘    要:采用砂型和金属型两种不同铸造方法对铸态、固溶态和时效态ZL210A合金性能及断口形貌的影响进行研究.结果表明:对ZL210A铸造合金而言,金属型铸造方法优于砂型铸造方法,其常规力学性能σb,σ0.2和δ5均高于砂型铸造,从断口形貌上看,试样断口形貌均呈现典型的穿晶断裂,且韧窝较深.其中,金属型固溶态试样的断口韧窝最为明显,呈现出较好的韧性.

关 键 词:铸造方法  ZL210A  砂型  金属型  力学性能  断口形貌  铸造方法  铸造铝合金  常规力学性能  断口形貌  影响  Aluminum  Alloy  Casting  Surfaces  Fracture  Mechanical  Properties  Methods  韧窝  穿晶断裂  试样  砂型铸造  铸造合金  结果  研究  合金性能  时效态
文章编号:1001-4381(2008)01-0030-04
收稿时间:2007-05-24
修稿时间:2007-08-28

Effect of Casting Methods on Mechanical Properties and Fracture Surfaces of ZL210A Casting Aluminum Alloy
JIA Pan-jiang,TANG Hui,CHEN Bang-feng.Effect of Casting Methods on Mechanical Properties and Fracture Surfaces of ZL210A Casting Aluminum Alloy[J].Journal of Materials Engineering,2008(1):30-33.
Authors:JIA Pan-jiang  TANG Hui  CHEN Bang-feng
Abstract:Thermoplastic toughened epoxy resins are widely used as matrices in modern prepreg systems.Different curing conditions play a great role in affecting the cure kinetics and phase behaviour of thermoplastic modified epoxies which further result in different mechanical properties of polymer matrix composites.Since the morphology of the cured thermoplastic/epoxy blends is directly related to the mechanical properties,it is essential to control processing conditions for obtaining desirable morphology.A polyethersulphone (PES) modified multifunctional epoxies,triglycidylaminophenol (TGAP) and tetraglycidyldiaminodiphenylmethane (TGDDM),was used for investigation.The cure kinetics and cured morphology of polymer blends heated at different heating rates and cured at different temperature were studied.It is shown that higher cure temperature and higher heating rate display similar effects in the epoxy conversion and the domain size of phase separated structure.
Keywords:casting method  ZL210A  sand mold  metal mold  mechanical property  fracture surface
本文献已被 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号