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Peculiarities of the low magnetostrictive amorphous ribbons crystallization under laser heating

机译:激光加热下低磁致伸缩非晶丝带结晶的特性

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The crystallization of the low magnetostrictive amorphous metallic alloy CO{sub}68Fe{sub}4Cr{sub}4Si{sub}13B{sub}11 obtained by melt-spinning after bulk annealing (BA) and surface laser heating (LH) has been investigated by X-ray powderdiffraction method. As shown, both at volume and laser heating the first phase to crystallize was cobalt. Increase in BA temperature led to the formation and decomposition of a great number of metastable phases. Stable phases Co and (Co,Si){sub}2Bappeared as final products of crystallization. The number of simultaneously coexisting crystalline phases was smaller after LH. The final products of crystallization under LH in the most permissible regimes (those not leading to the sample decay) were the phases Co, (Co,Si){sub}3B and (Co,Si){sub}2B (under pulse LH) and Co, (Co,Si)B and (Co,Si){sub}2B (under continuous CO{sub}2 LH). A "sandwich" structure was observed in the cross section of the ribbon after some regimes of LH. The ribbon was crystallineat the side of the treated surface and amorphous at the side of the opposite surface. X-ray analysis revealed that the high rates of laser heating and cooling lead to a change in crystallization reaction: from the primary crystallization observed at BA to the eutectic crystallization at LH.
机译:通过熔融退火(Ba)和表面激光加热(LH)通过熔化纺丝获得的低磁致伸缩非晶金属合金Co {Sub} 68Fe {Sub} 4Si {Sub} 4Si} 11的结晶。由X射线PoinkDiffraction方法研究。如图所示,在体积和激光加热时,第一相结晶是钴。 BA温度的增加导致了大量亚稳态阶段的形成和分解。稳定的相和(Co,Si){sub} 2被作为结晶的最终产物。在LH后同时共存结晶相的数量较小。在最允许的制度(不导致样品衰减的那些)下的最终产品是CO,(CO,Si){Sub} 3B和(Co,Si){Sub} 2B(脉冲LH)的相结合和CO,(CO,SI)B和(CO,SI){SUB} 2B(在连续CO {SUB} 2 LH下)。在一些制度的LH后,在带的横截面中观察到“夹心”结构。色带在处理表面的一侧结晶,在相对表面的侧面的侧面。 X射线分析显示,激光加热和冷却的高速率导致结晶反应的变化:从BA观察到的初级结晶在LH的共晶结晶。

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