Waterproof and Wear-Resistant Surface Treatment on Printed Parts of Polyamide 12 (PA12) by Selective Laser Sintering Using a Large Pulsed Electron Beam

被引:0
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作者
Jinsik Kim
Doo-Man Chun
Hyung Wook Park
Jisoo Kim
机构
[1] University of Ulsan,Graduate School of Industrial Technology
[2] UNIST Central Research Facilities,School of Mechanical Engineering
[3] Ulsan National Institute of Science and Technology (UNIST),School of Mechanical and Nuclear Engineering
[4] UNIST-gil 50,Department of Precision Mechanical Engineering
[5] University of Ulsan,Department of Advanced Science and Technology Convergence
[6] Ulsan National Institute of Science and Technology (UNIST),undefined
[7] UNIST-gil 50,undefined
[8] Kyungpook National University (KNU),undefined
[9] Kyungpook National University (KNU),undefined
关键词
Selective laser sintering; Waterproof; Large pulsed electron beam; Posttreatment; Eco-friendly manufacturing;
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学科分类号
摘要
Porosity is an unavoidable problem of products in powder bed fusion-based additive manufacturing. This hinders underwater applications of printed products due to water absorption by capillary force. This study reports the surface treatment of polyamide 12 (PA12) manufactured by selective laser sintering using large pulsed electron beam (LPEB) irradiations as an ecofriendly postprocessing technique. With the optimal conditions of LPEB, the surface roughness and porosity were reduced after the melting and resolidification of unmelted particles and pores without generating any dusts and using any chemicals. The surface roughness reduction increased static contact angle (CA) on the surface. From a chemical wettability investigation, the reduction of hydrophilicity after the LPEB irradiation was obtained and attributed to the elimination of hydrophilic functional groups on the surface. Due to the harmonic effects of roughness and hydrophilicity reduction, the CA on LPEB-treated surfaces was achieved around 95°. The pore-closing effect of LPEB irradiation and hydrophobic transition of PA12 protected the surface from water absorption, eliminating the capillary effect. The waterproof performance on the surface was demonstrated by releasing droplets on the surface and immersing them in ink-dispersed distilled water. The result showed potential applications of rapidly sintered PA12 in underwater.
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页码:71 / 83
页数:12
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