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Investigation of chromium effect on synthesis behavior of nickel aluminide during mechanical alloying process

机译:铬对机械合金化过程中铝化镍合成行为的影响

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摘要

The mechanical alloying process was used to synthesize the Ni_(50)Al_(50-x)Cr_x nanocrystalline intermetallic compound using the pure Ni and Al elemental powder. The mechanical alloying was carried out in the presence of various Cr contents as a micro-alloying element for various milling times. The synthesis behavior of final product was investigated by using XRD, SEM and EDS. Results confirmed that synthesis behavior of nickel aluminide intermetallic depends on the Cr content and milling time. The results revealed that for an inadequate milling time, the intermetallic phase is generated after opening the vial lid. The EDS results depict that the samples synthesized in the air atmosphere, i.e. after opening the vial lid, include a considerable value of oxygen. The X-ray map results reveal that, after opening the vial lid, the oxidation of milled aluminum particles will result in the generation of final product in the air atmosphere. According to XRD results, when the milling time is constant, increasing the Cr content leads to acceleration in the nickel aluminide formation in the air atmosphere.
机译:采用机械合金化工艺,使用纯镍和铝元素粉末合成了Ni_(50)Al_(50-x)Cr_x纳米晶金属间化合物。机械合金化是在各种Cr含量的情况下进行的,作为微合金化元素用于各种铣削时间。用XRD,SEM和EDS研究了最终产物的合成行为。结果证实铝金属间化合物的合成行为取决于Cr含量和研磨时间。结果表明,在不足的研磨时间下,打开小瓶盖后会生成金属间相。 EDS结果表明,在大气中,即打开小瓶盖后,合成的样品包括相当大的氧气。 X射线图结果表明,打开样品瓶盖后,研磨的铝颗粒的氧化将导致在空气中生成最终产品。根据XRD结果,当研磨时间恒定时,Cr含量的增加会导致空气中铝化镍形成的加速。

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