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Bulk amorphous and nanocrystalline Al83Fe17 alloys prepared by consolidation of mechanically alloyed amorphous powder

机译:块状无定形和纳米晶体Al83Fe17通过固结机械合金无定形粉末制备的合金

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In the present work, bulk amorphous and nanocrystalline A183Fel7 alloys were obtained by consolidation of mechanically alloyed powders. Mechanical alloying of Al-17% Fe powder mixture yielded powder with an amorphous structure. Thermal behaviour of the milling product was examined using differential scanning calorimetry. This investigation revealed that the amorphous phase crystallised above 380 °C. The amorphous powder was compacted under a pressure of 7.7 Gpa in different conditions: at 380 °C for 600 s and at 1000 °C for 180 s. Structural investigations of the bulk material revealed that the amorphous structure was retained after consolidation process applied at 380 °C. Compaction under high pressure at 1000°C caused crystallisation of the amorphous phase and appearance of metastable nanocrystalline phases, different to those which crystallised during heating in the calorimeter under atmospheric pressure. The microhardness of the bulk amorphous sample is 760 HV0.2, whereas that of bulk nanocrystalline one is 630 HV0.2. The density of the bulk amorphous material is 3.505 g/cm~3 and is ~3% lower than that of the nanocrystalline one. The open porosity of both consolidated materials is 0.4%. The results obtained show that the quality of compaction preserving amorphous structure as well as of the one yielding nanocrystalline structure is satisfactory and the products' microhardness is relatively high. The results also indicate that application of high pressure affects crystallisation of amorphous alloy influencing the phase composition of the products of this process.
机译:在目前的工作,本体通过机械合金化的粉末的固结获得非晶和纳米晶A183Fel7合金。的Al-17%Fe粉混合物的机械合金化,得到粉末具有非晶结构。使用差示扫描量热法进行了检查研磨产品的热行为。此调查发现,非晶相结晶化以上380℃。无定形粉末7.7吉帕在不同条件下的压力下压实:在380℃下进行600秒,并在1000℃下进行180秒。散装材料的结构调查显示,无定形结构被保留之后施加在380℃下固结过程。下在1000℃下高压压实引起非晶质相和亚稳相的纳米晶的外观的结晶,以那些在大气压下的量热计在加热过程中结晶化不同。散的无定形样品的显微硬度为760 HV0.2,而该块体纳米晶之一是630 HV0.2。所述块状无定形材料的密度是3.505克/厘米〜3,是〜3%比纳米晶一个的降低。既固结材料的开孔率0.4%。获得的结果表明,压实的质量保持非晶结构以及一个产生纳米晶结构的令人满意,产品的硬度相对高。该结果还表明高压的该应用程序影响非晶态合金影响这一方法的产物的相组成的结晶。

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