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首页> 外文期刊>Bulletin of the Lebedev Physics Institute >Structure and magnetic properties of layers formed by laser fusing of powders on nonmagnetic substrates
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Structure and magnetic properties of layers formed by laser fusing of powders on nonmagnetic substrates

机译:在非磁性基材上通过激光熔合粉末形成的层的结构和磁性

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摘要

Studies of the structure and magnetic properties of layers formed on nonmagnetic substrates by laser powder fusing (LPF) showed that crystalline phases are separated from initial powders of bronze, inconel (IN 625), and PGSR-4with the transformation of nonmagnetic materials to soft ferromagnets. The fused bronze powder layer exhibits soft ferromagnetic properties with two types of magnetic domains with the Curie temperatures of 80 and 300 K and a coercivity to 90 Oe at 300 K; in layers based on In625 and PGSR-4, only one type of magnetic domains with the Curie temperatures of 260-270 K is formed, which provides soft ferromagnetic properties at 4 De and the paramagnetic transition at 300 K.
机译:对通过激光粉末熔合(LPF)在非磁性衬底上形成的层的结构和磁性的研究表明,随着非磁性材料向软铁磁体的转变,结晶相与青铜,铬镍铁合金(IN 625)和PGSR-4的初始粉末分离。 。熔融青铜粉层具有软的铁磁特性,具有两种类型的磁畴,居里温度分别为80和300 K,在300 K下矫顽力为90 Oe。在基于In625和PGSR-4的层中,仅形成居里温度为260-270 K的一种类型的磁畴,该磁畴提供4 De时的软铁磁特性和300 K时的顺磁转变。

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