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Dense carbon film coated 316L via in-situ synthesized CaC2 in FLiNaK molten salts and its high performance of anti-corrosion property

机译:致密碳膜涂覆316L,通过原位合成CaC 2在氟水溶盐中的抗腐蚀性能高

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摘要

Dense carbon film coated on 316L stainless steel was achieved by electrochemical deposition in molten fluoride salt (LiF-NaF-KF 46.5-11.5-42.0 mol%, FLiNaK, m.p. 727K) using C-2(2-) as the C source. The C-2(2-) source was in-situ synthesized in the high temperature eutectic salt by adding mixed Ca/C powders. Results of cyclic voltammetry confirmed the formation of CaC2 and the obtained C coated 316L samples demonstrate satisfactory electrochemical deposition via synthesized C-2(2-). SEM images show that a dense and tunable thickness of C film can be fabricated in this FLiNaK-Ca/C-CaC2 system in the range of 2.0-6.0 mu m by optimizing the deposition conditions such as concentrations of Ca/C, deposition potentials, temperatures and times. Characterizations of the as-prepared C film by Raman spectroscopy imply that deposited films are predominantly composed of low degree crystallization structures. The anti-corrosion behavior of this coated material was verified by potentiodynamic polarization. Compared to bare 316L material, corrosion rate suppression by a factor of more than 16 was determined for a 4.0 mu m C coated 316L sample in 0.1 M HCl+0.5M NaCl solution, indicating the coating provides extremely high anti-corrosion performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在316L不锈钢上涂覆的致密碳膜通过熔融氟盐(LiF-Naf-Kf 46.5-11.5-42.0mol%,Flinak,M.P.77k)作为C源来实现在熔融氟盐(LiF-Naf-kF 46.5-11.5-42.0mol%,Flinak,M.P.77K)中实现。 C-2(2-)源通过加入混合Ca / C粉末在高温共晶盐中合成原位。循环伏安法证实CaC 2的形成和所得C涂覆的316L样品通过合成的C-2(2-)表现出令人满意的电化学沉积。 SEM图像表明,通过优化Ca / C浓度,沉积电位等浓度,可以在该絮凝剂-CA / C-C-CAC2系统中制造致密和可调谐厚度的C膜的致密和可调谐厚度在2.0-6.0μm的范围内。温度和时间。通过拉曼光谱的制备C膜的特征意味着沉积的薄膜主要由低度结晶结构组成。通过电量极化验证该涂覆材料的抗腐蚀行为。与裸316L材料相比,对于0.1M HCl + 0.5M NaCl溶液中的4.0μmC涂覆的316L样品,测定腐蚀速率抑制超过16的倍数,表示涂层提供极高的防腐蚀性。 (c)2019 Elsevier Ltd.保留所有权利。

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