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首页> 外文期刊>AIP Advances >Improvement of magnetic hysteresis loss, corrosion resistance and compressive strength through spark plasma sintering magnetocaloric LaFe11.65Si1.35/Cu core-shell powders
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Improvement of magnetic hysteresis loss, corrosion resistance and compressive strength through spark plasma sintering magnetocaloric LaFe11.65Si1.35/Cu core-shell powders

机译:通过火花等离子体烧结磁热LaFe11.65Si1.35 / Cu核壳粉末改善磁滞损耗,耐蚀性和抗压强度

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LaFe11.65Si1.35/Cu core-shell powders were achieved by self-designed magnetron sputtering system, which presents a better solidification during spark plasma sintering in comparison to the naked LaFe11.65Si1.35 powders. Much higher compressive strength, lower corrosion current density and magnetic hysteresis losses are achieved for the sintered sample of LaFe11.65Si1.35/Cu core-shell powders without significant decrease of the magnetic entropy change. The compressive strength, corrosion current density and maximum magnetic hysteresis losses are 105.6 MPa/16.8 MPa, 1.08 × 10?3A/cm2/3.03 × 10?3 A/cm2 and 1.33 J/kg/2.71 J/kg, respectively for the sintered samples of core-shell structuredaked powders. The technique of fabricating the core-shell structured powders demonstrated here is also applicable for other types of functional powders.
机译:LaFe11.65Si1.35 / Cu核壳粉末是通过自行设计的磁控溅射系统获得的,与裸露的LaFe11.65Si1.35粉末相比,它在火花等离子体烧结过程中表现出更好的凝固性。 LaFe11.65Si1.35 / Cu核壳粉末的烧结样品具有更高的抗压强度,更低的腐蚀电流密度和磁滞损耗,而磁熵变却没有明显降低。烧结后的抗压强度,腐蚀电流密度和最大磁滞损耗分别为105.6 MPa / 16.8 MPa,1.08×10?3A / cm2 / 3.03×10?3 A / cm2和1.33 J / kg / 2.71 J / kg核壳结构/裸粉的样品。此处说明的制造核-壳结构粉末的技术也适用于其他类型的功能性粉末。

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