Superconducting and Mechanical Properties of the Tl0.8Hg0.2Ba2Ca2Cu3O9−δ Superconductor Phase Substituted by Lanthanum and Samarium Fluorides

IF 1.9 Q3 PHYSICS, CONDENSED MATTER
Rola F. Khattar, Mohammed Anas, Ramadan Awad, Khulud Habanjar
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Abstract

This study investigated the impact of samarium and lanthanum fluorides (SmF3 and LaF3) on the physical and mechanical properties of Tl0.8Hg0.2Ba2Ca2−xRxCu3O9−δ−yFy superconducting phases (specifically the (Tl, Hg)-1223 phase), where R = Sm and La, with 0.00 ≤ x ≤ 0.10. The superconducting samples were synthesized using the solid-state reaction method. X-ray diffraction (XRD) verified the formation of the (Tl, Hg)-1223 phase without altering its tetragonal structure. Scanning electron micrographs (SEM) reveal the improvement of the grain size and inter-grain connectivity as Sm and La contents increased up to x=0.025. The electrical properties of (Tl, Hg)-1223 were studied using I-V and electrical resistivity measurements. Improved superconducting transition temperature (Tc) and transport critical current density (Jc) were observed up to x=0.025, beyond which they decreased substantially. Vickers microhardness (Hv) measurements were performed at room temperature to investigate their mechanical performance with various applied loads (0.49–9.80 N) and times (10–90 s). For both substitutions, the mechanical properties were enhanced up to an optimal value at x=0.025. All samples exhibited normal indentation size effect (ISE) behavior. The proportional sample resistance (PSR) model best explained Hv values among five theoretical models. Dislocation creep was the primary creep mechanism in the samples, according to indentation creep studies.
氟化镧和氟化钐取代Tl0.8Hg0.2Ba2Ca2Cu3O9−δ超导体相的超导性和力学性能
本研究研究了钐和氟化镧(SmF3和LaF3)对Tl0.8Hg0.2Ba2Ca2−xRxCu3O9−δ−yFy超导相(特别是(Tl, Hg)-1223相)物理力学性能的影响,其中R = Sm和La, 0.00≤x≤0.10。采用固相反应法制备了超导样品。x射线衍射(XRD)证实(Tl, Hg)-1223相的形成没有改变其四方结构。扫描电镜(SEM)显示,Sm和La含量增加到x=0.025时,晶粒尺寸和晶粒间连通性有所改善。采用I-V和电阻率法研究了(Tl, Hg)-1223的电学性质。在x=0.025范围内,超导转变温度(Tc)和输运临界电流密度(Jc)均有提高,超过该温度和输运临界电流密度则显著降低。在室温下进行维氏显微硬度(Hv)测量,以研究不同施加载荷(0.49-9.80 N)和时间(10-90 s)下的力学性能。对于两种替代材料,在x=0.025时,力学性能都提高到最佳值。所有样品均表现出正常的压痕尺寸效应(ISE)行为。在五个理论模型中,比例样品电阻(PSR)模型最能解释Hv值。根据压痕蠕变的研究,位错蠕变是试样中主要的蠕变机制。
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来源期刊
Condensed Matter
Condensed Matter PHYSICS, CONDENSED MATTER-
CiteScore
2.90
自引率
11.80%
发文量
58
审稿时长
10 weeks
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