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刘东艳

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供职机构:中国科学院金属研究所更多>>
发文基金:钢铁联合研究基金国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:一般工业技术金属学及工艺更多>>

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Glass forming ability of Fe_(60)Co_xZr_(10) Mo_5 W_2B_(23-x)(x=1,3,5,7,9) bulk metallic glasses
2005年
The bulk Fe60 CoxZr10 Mo5W2B23-x (x=1, 3, 5, 7, 9) amorphous rods with diameters of 1.5 mm were successfully prepared by copper mold casting method with the low purity raw materials. The amorphous and crystalline states, and thermal parameters, such as the glass transition temperature (Tg), the initial crystallization temperature (Tx), the supercooled liquid region (ΔTx=Tx-Tg), the reduced glass transition temperature Trg (Tg/Tm, Tm: the onset temperature of melting of the alloy, and Tg/Tl, Tl: the finished temperature of melting of the alloy) were investigated by X-ray diffractometry (XRD) and differential scanning calorimetry (DSC) analysis. Glass forming ability of Fe60 CoxZr10 Mo5W2B23-x (x=1,3,5,7,9) bulk metallic glasses has been studied. According to the results, the alloy (x=7) with the highest Trg (Tg/Tl=0.607, Tg/Tl=0.590) value, has the strongest glass forming ability among these alloys because its composition is near eutectic composition. The wide supercooled liquid region over 72 K indicates the high thermal stability for this alloy system. This bulk metallic glass exhibits quite high strength (Hv 1020). The success of production of the Fe-based bulk metallic glass with industrial materials is of great significance for the future progress of basic research and practical application.
刘东艳胡壮麒
关键词:非晶形成能力
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