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The structure and magnetic properties of bronze, stainless still and alloy layers formed by direct laser welding on nonmagnetic substrates

机译:在非磁性基材上直接激光焊接形成的青铜层,不锈钢釜和合金层的结构和磁性

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Investigations of crystal structure, microstructure and composition of laser welded coatings of bronze, IN625, PGSR-4 and stainless steel alloys on non-magnetic substrates have shown that from the raw alloy powders (wire) the additional crystalline phases are extracted with new compositions and sizes of units of microns, which randomly distributed in the coating volume. Due to formation of additional phases with increased electron concentration magnetic hysteresis loops have appeared at 4 K and 300 K for all welded coatings. Bronze and stainless steel coatings have demonstrated soft ferromagnetic properties with two type of magnetic domains with small magnetization that resulted in small value of saturation magnetization (60-146 emu/cm~3 at 300 K and 107-241 emu/cm~3 at 4 K) and low values of coercive force (40 - 90 Oe) at 300 K and (50-170 Oe) at 4 K. The formation of one type of ferromagnetic domains with middle Curie temperatures (230-270 K) in laser welded IN625 and PGSR-4 coatings has determined soft ferromagnetic nature of magnetism at low temperature and transition in paramagnetic conditions at 300 K due to main contribution only paramagnetic grains with different composition.
机译:对非磁性基材上的青铜,IN625,PGSR-4和不锈钢合金的激光焊接涂层的晶体结构,微观结构和成分的研究表明,从原料合金粉末(丝)中提取出新的晶相,并采用了新的成分。微米单位的尺寸,它随机分布在涂层体积中。由于形成了具有更高电子浓度的附加相,因此所有焊接涂层的磁滞回线都出现在4 K和300 K处。青铜和不锈钢涂层显示出软的铁磁特性,具有两种类型的磁畴,磁化强度小,导致饱和磁化强度值较小(300 K时为60-146 emu / cm〜3,4 K时为107-241 emu / cm〜3 K)和300 K时的低矫顽力(40-90 Oe)和4 K时的低矫顽力(50-170 Oe)。在激光焊接IN625中,居里温度为(230-270 K)的一种铁磁畴的形成PGSR-4涂层已经确定了低温下磁性的软铁磁性质,以及在300 K顺磁性条件下的转变,这归因于其主要贡献只是具有不同成分的顺磁性晶粒。

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