原子能科学技术
原子能科學技術
원자능과학기술
ATOMIC ENERGY SCIENCE AND TECHNOLOGY
2013年
9期
1496-1500
,共5页
黄玮%李磊%伍晓利%李晓燕%俞祥忠%傅依备
黃瑋%李磊%伍曉利%李曉燕%俞祥忠%傅依備
황위%리뢰%오효리%리효연%유상충%부의비
甲基乙烯基硅泡沫%辐射老化%湿热老化%热老化
甲基乙烯基硅泡沫%輻射老化%濕熱老化%熱老化
갑기을희기규포말%복사노화%습열노화%열노화
polymethyl-vinyl siloxane foam%radiation degradation%moist-heat degrada-tion%thermal degradation
为考察甲基乙烯基硅泡沫材料在不同条件下的辐射效应,开展了受压状态下材料经60 Co γ射线辐照后的热老化和湿热老化实验。采用扫描电镜、傅里叶转换红外光谱仪、固体核磁共振仪、万能材料试验机和蠕变松弛试验机等手段剖析了材料微观结构和宏观性能。结果表明,不同条件下老化后甲基乙烯基硅泡沫材料的泡孔有减小的趋势。29Si交叉极化的NMR分析发现材料中有机硅链段峰的强度随吸收剂量的增大而升高,13 C交叉极化的NM R分析表明γ射线辐照后材料的结构规整性有所降低。辐射后热老化样品的拉伸强度总比辐射后湿热老化样品的低,辐射老化和湿热老化的协同作用对材料的应力松弛率影响非常明显。
為攷察甲基乙烯基硅泡沫材料在不同條件下的輻射效應,開展瞭受壓狀態下材料經60 Co γ射線輻照後的熱老化和濕熱老化實驗。採用掃描電鏡、傅裏葉轉換紅外光譜儀、固體覈磁共振儀、萬能材料試驗機和蠕變鬆弛試驗機等手段剖析瞭材料微觀結構和宏觀性能。結果錶明,不同條件下老化後甲基乙烯基硅泡沫材料的泡孔有減小的趨勢。29Si交扠極化的NMR分析髮現材料中有機硅鏈段峰的彊度隨吸收劑量的增大而升高,13 C交扠極化的NM R分析錶明γ射線輻照後材料的結構規整性有所降低。輻射後熱老化樣品的拉伸彊度總比輻射後濕熱老化樣品的低,輻射老化和濕熱老化的協同作用對材料的應力鬆弛率影響非常明顯。
위고찰갑기을희기규포말재료재불동조건하적복사효응,개전료수압상태하재료경60 Co γ사선복조후적열노화화습열노화실험。채용소묘전경、부리협전환홍외광보의、고체핵자공진의、만능재료시험궤화연변송이시험궤등수단부석료재료미관결구화굉관성능。결과표명,불동조건하노화후갑기을희기규포말재료적포공유감소적추세。29Si교차겁화적NMR분석발현재료중유궤규련단봉적강도수흡수제량적증대이승고,13 C교차겁화적NM R분석표명γ사선복조후재료적결구규정성유소강저。복사후열노화양품적랍신강도총비복사후습열노화양품적저,복사노화화습열노화적협동작용대재료적응력송이솔영향비상명현。
T he radiation effect of different conditions on polymethyl-vinyl siloxane foam (PMVSF ) under the state of pressure was investigated . The samples were firstly irradiated by 60 Co γ-ray ,and then were degradated in the moist-heat environment and in the thermal oxidative environment , respectively . T he correlation of PM VSF ’ s microstructure and macroscopic properties were determined by scanning electron microscope ,Fourier transition infrared resonance ,solid nuclear magnetic resonance (S-NMR) , universal material tester and electron creep/relaxation tester , respectively . There is a dropping trend of the pores in irradiated samples .The result of 29 Si cross polarization SNMR shows that the peak intensity of organic silicon chain increases along with the increment of absorbed dose .The result of 13C cross polarization SNMR shows that the structure regularity of samples drops . It has been found that the tensile strength of irradiated samples after thermal degradation is lower than that of irradiated samples after moist-heat degradation .The synergy effect of radiation degradation and the moist-heat degradation is prominent to the samples’ stress relaxation ratio .