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Magnetic response of Cu (25 wt.%)-316 grade stainless steel processed by ball milling

机译:球磨处理的Cu(25 wt。%)-316级不锈钢的磁响应

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摘要

Powder blend comprising Cu (25 wt.%) and 316-stainless steel (75 wt.%) has been subjected to ball milling upto 70 h followed by isothermal annealing at the temperature range of 350-750 °C for 1 h to investigate the evolution of microstructure and magnetic properties. The ball milling of the powder blends after 10 h has resulted in partitioning of the austenite stabilizing elements such as Ni from 316-stainless steel to elemental Cu leading to the transformation of the Bravais lattice of the Fe-rich phase from fcc (γ) to bcc (α). During further ball milling of the powder mixture upto 20 h, the α-Fe has dissolved completely in Cu, leading to the formation of partial amorphous phase after 70 h of milling. The amorphous phase of the alloy has been found to stable after annealing at 350 °C and super paramagnetic in nature. Annealing of the alloy at higher temperatures has resulted in precipitation of nanocrystalline bcc-Fe in the Cu evolving ferromagnetic properties. Annealing at 750 °C has resulted in collapse of the hysteresis loop due to the diminished exchange interaction as the result of grain coarsening of the α-Fe and Cu.
机译:对包含Cu(25 wt。%)和316不锈钢(75 wt。%)的粉末混合物进行球磨长达70小时,然后在350-750°C的温度范围内进行等温退火1 h,以研究粉末的混合物。组织和磁性能的演变。 10小时后对粉末混合物的球磨导致奥氏体稳定元素(如Ni)从316不锈钢到元素Cu的分配,导致富铁相的Bravais晶格从fcc(γ)转变为fcc(γ)密件副本(α)。在粉末混合物进一步球磨直至20小时的过程中,α-Fe已完全溶解在Cu中,导致在研磨70 h后形成部分非晶相。已发现合金的非晶态相在350°C退火后稳定,并且具有超顺磁性。在较高温度下对合金进行退火已导致纳米晶bcc-Fe沉淀在形成铁磁性的Cu中。由于α-Fe和Cu晶粒粗化的交换相互作用减弱,在750°C的退火条件下导致了磁滞回线的塌陷。

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