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作 者:俞方华[1] 郑万辉[1] 王承宝 孙继光[1] 赵卓雍
机构地区:[1]中国科学院上海原子核研究所,上海合金厂,北京有色金属研究总院
出 处:《辐射研究与辐射工艺学报》1995年第4期204-208,共5页Journal of Radiation Research and Radiation Processing
基 金:国家自然科学基金
摘 要:用HVEM在1MeV和550℃下原位研究了Si和Ti对316不锈钢辐照肿胀的影响.含1%Si的316钢在辐照剂量≤11dpa时和含0.1%Ti的一样,能强烈抑制辐照肿胀。但在>11dpa后,含1%Si的316钢肿胀率远大于未含添加剂的对比钢样品,含0.5%Ti能完全抑制辐照空洞产生,但诱导了Ti析出物,1%Si和0.1%Ti的联合作用,也能完全抑制辐照空洞产生,但同样有少量Ti析出物。The effect of minor additive St or Ti, as well as both Si and Ti on behavior of radiation swelling for 316 stainless steel alloy(316 SS), irradiated at 550℃, using high voltage electron microscope(HVEM) with 1MeV electron beam was studied, and the swelling morphology was observed in situ under HVEM.Silicon(1 wt% ), as well as Ti(0 .1 wt% ) can inhibit radiation swelling when the dose is not more than 11dpa. The 316 SS bearing 1 wt% St additive has even larger swelling rate than that of the alloy without any additive, when dose is more than 13 dpa. 0.5 wt% Ti additive can even completely prevent it from swelling under the dose up to 33 dpa, but there are some small Ti compound particles segregated on radiation area. Experimental results show that the synergistic effect of both Si and Ti can completely prevent 316 alloys from swelling under radiation dose up to 33 dpa, but there are also a little Ti compound particles segregated on the circle of central area, but the number and size of the particles increase slightly with the dose.
分 类 号:TL341[核科学技术—核技术及应用] TG142.71[一般工业技术—材料科学与工程]
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