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采用85Zn-15Al电弧热金属喷涂法时表面处理条件对混凝土粘结强度和电磁脉冲屏蔽性能的影响

Effects of Surface Treatment Conditions on the Bonding Strength and Electromagnetic Pulse Shielding of Concrete Using the 85Zn-15Al Arc Thermal Metal Spraying Method.

作者信息

Jang Jongmin, Wi Kwangwoo, Lee Han-Seung, Singh Jitendra Kumar, Lee Han-Hee

机构信息

Department of Smart-City Engineering, Hanyang University, 1271 Sa 3-dong, Sangrok-gu, Ansan 15588, Republic of Korea.

Innovative Durable Building and Infrastructure Research Center, Hanyang University, 1271 Sa 3-dong, Sangrok-gu, Ansan 15588, Republic of Korea.

出版信息

Materials (Basel). 2023 Feb 6;16(4):1372. doi: 10.3390/ma16041372.

Abstract

The surface treatment of concrete enhances the bonding of its metal coatings. Therefore, in the present study, on the concrete surface, prior to the deposit of an 85Zn-15Al coating via an arc thermal spraying process, different surface treatments were considered for the effective electromagnetic pulse (EMP) shielding properties of the concrete. However, the direct coating on a concrete surface possesses lower bond adhesion, therefore it is of the utmost importance to treat the concrete surface prior to the deposition of the metal coating. Moreover, to obtain better bond adhesion and fill the defects of the coating, the concrete surface is treated by applying a surface hardener (SH), as well as a surface roughening agent (SRA) and a sealing agent (SA), respectively. The metal spraying efficiency, adhesion performance, and bonding strength under different concrete surface treatment conditions were evaluated. The EMP shielding effect was evaluated under the optimal surface treatment condition. The proposed method for EMP shielding exhibited over 60% of spraying efficiency on the treated surface and a bonding strength of up to 3.9 MPa for the SH-SRA-SA (combining surface roughening and pores/defects filling agents) specimen compared to the control one, i.e., 0.8 MPa. The EMP shielding values of the surface-treated concrete with surface hardener, surface roughening agent, and sealing agent, i.e., SH-SRA-SA specimens, exhibited 96.6 dB at 1000 MHz. This was about 12 times higher than without coated concrete.

摘要

混凝土的表面处理可增强其金属涂层的结合力。因此,在本研究中,为了使混凝土具有有效的电磁脉冲(EMP)屏蔽性能,在通过电弧热喷涂工艺沉积85Zn-15Al涂层之前,对混凝土表面进行了不同的表面处理。然而,直接在混凝土表面涂层的粘结附着力较低,因此在沉积金属涂层之前对混凝土表面进行处理至关重要。此外,为了获得更好的粘结附着力并填补涂层缺陷,分别对混凝土表面施加表面硬化剂(SH)、表面粗糙化剂(SRA)和密封剂(SA)进行处理。评估了不同混凝土表面处理条件下的金属喷涂效率、附着性能和粘结强度。在最佳表面处理条件下评估了EMP屏蔽效果。与对照样品(粘结强度为0.8MPa)相比,所提出的EMP屏蔽方法在处理过的表面上喷涂效率超过60%,对于SH-SRA-SA(结合表面粗糙化和孔隙/缺陷填充剂)样品,粘结强度高达3.9MPa。使用表面硬化剂、表面粗糙化剂和密封剂处理过的混凝土表面,即SH-SRA-SA样品,在1000MHz时的EMP屏蔽值为96.6dB。这比未涂层的混凝土高出约12倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/217b/9963723/d44a2fcccf39/materials-16-01372-g001.jpg

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