Large self-heating by trapped-flux reduction in Sn-Pb solders

Yoshikazu Mizuguchi, Takumi Murakami, Md. Riad Kasem, H. Arima
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Abstract

Magnetic flux trapping in field-cooled (FC) Sn-Pb solders has been recently studied because of the observation of nonvolatile magneto-thermal switching [H. Arima et al., Commun. Mater. 5, 34 (2024)] and anomalous magnetic field-temperature (H-T) phase diagrams [T. Murakami et al., AIP Adv. 13, 125008 (2023)]. In this paper, we investigate the origin of the anomalously low specific heat (C) in Sn10-Pb90 and Sn45-Pb55 solders after FC at H = 1500 Oe. We show that the FC solders exhibit self-heating possibly caused by the flux flow during the reduction of trapped fluxes when heating the sample during the C measurements. The T dependence of T rise clearly exhibits unexpectedly large values when the low-C states are observed. In addition, the cause of the transition-like behavior in C-T of FC solders are explained by local heating during H control and flux-jump phenomena.
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通过减少锡铅焊料中的陷流实现大自热
由于观察到非挥发性磁热开关 [H. Arima 等人,Commun. Mater. 5, 34 (2024)]和反常磁场-温度 (H-T) 相图 [T. Murakami 等人,AIP Adv. 13, 125008 (2023)],最近对场冷却 (FC) 锡铅焊料中的磁通量捕集进行了研究。在本文中,我们研究了在 H = 1500 Oe 下进行 FC 后 Sn10-Pb90 和 Sn45-Pb55 焊料中异常低比热 (C) 的原因。我们发现 FC 焊料会出现自热现象,这可能是由于在测量 C 时加热样品,在减少残留助焊剂的过程中助焊剂流动造成的。当观察到低 C 状态时,T 升的 T 依赖性明显表现出出乎意料的大值。此外,FC 焊料的 C-T 过渡行为的原因可以用 H 控制期间的局部加热和助焊剂跳跃现象来解释。
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