Bio-inspirations from Abalone Nacre: Microstructural Characterization and Mechanical Evaluation of ZrO2/PI Multilayer Coatings Synthesized by a Hybrid Sputtering and Pulsed Laser Deposition Technique

碩士 === 國立清華大學 === 材料科學工程學系 === 102 === Abalone nacre is a natural ceramic-based composite consists of 95 wt% stacked CaCO3 tiles and 5 wt% organic layers organized into a unique multilayer structure, which leads to exceptional fracture toughness. The major toughening mechanism is the crack deflectio...

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Main Authors: Yang, Hsi-Ming, 楊錫明
Other Authors: Chen, Po-Yu
Format: Others
Language:en_US
Published: 2014
Online Access:http://ndltd.ncl.edu.tw/handle/dkauae
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spelling ndltd-TW-102NTHU51592112019-05-15T21:42:04Z http://ndltd.ncl.edu.tw/handle/dkauae Bio-inspirations from Abalone Nacre: Microstructural Characterization and Mechanical Evaluation of ZrO2/PI Multilayer Coatings Synthesized by a Hybrid Sputtering and Pulsed Laser Deposition Technique 鮑魚珍珠層之仿生啟發: 以濺鍍與脈衝雷射蒸鍍複合技術合成氧化鋯/聚醯亞胺多層膜之微結構分析與機械性質研究 Yang, Hsi-Ming 楊錫明 碩士 國立清華大學 材料科學工程學系 102 Abalone nacre is a natural ceramic-based composite consists of 95 wt% stacked CaCO3 tiles and 5 wt% organic layers organized into a unique multilayer structure, which leads to exceptional fracture toughness. The major toughening mechanism is the crack deflection at the organic/inorganic interfaces so that the crack cannot propagate through the shell directly. Furthermore, interfacial roughness and interconnected mineral bridges between tiles can further prevent plastic deformation. Inspired from abalone nacre, multilayer films of zirconia and polyimide layers are synthesized by the hybrid PVD system combining sputtering and pulsed laser deposition. Zirconia is an intrinsically tough ceramic material. By introducing the polyimide interlayer, the fracture toughness of multilayer films can be significantly enhanced, six times higher than that of zirconia monolayer. The thickness ratio of zirconia and polyimide is kept 10:1, and the period thickness is altered to investigate effect the interfaces on the mechanical properties. Results show that multilayer structure can enhance the fracture toughness of thin film: fracture toughness increases with increasing number of interlayers yet the hardness decreases. SEM observation verifies that the major toughening mechanism of bio-inspired multilayer films is crack deflection at organic/inorganic interfaces, which prevent crack from direct propagation. The interfacial roughness can also enhance mechanical properties in certain situations and the mechanisms are discussed. Chen, Po-Yu 陳柏宇 2014 學位論文 ; thesis 117 en_US
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language en_US
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sources NDLTD
description 碩士 === 國立清華大學 === 材料科學工程學系 === 102 === Abalone nacre is a natural ceramic-based composite consists of 95 wt% stacked CaCO3 tiles and 5 wt% organic layers organized into a unique multilayer structure, which leads to exceptional fracture toughness. The major toughening mechanism is the crack deflection at the organic/inorganic interfaces so that the crack cannot propagate through the shell directly. Furthermore, interfacial roughness and interconnected mineral bridges between tiles can further prevent plastic deformation. Inspired from abalone nacre, multilayer films of zirconia and polyimide layers are synthesized by the hybrid PVD system combining sputtering and pulsed laser deposition. Zirconia is an intrinsically tough ceramic material. By introducing the polyimide interlayer, the fracture toughness of multilayer films can be significantly enhanced, six times higher than that of zirconia monolayer. The thickness ratio of zirconia and polyimide is kept 10:1, and the period thickness is altered to investigate effect the interfaces on the mechanical properties. Results show that multilayer structure can enhance the fracture toughness of thin film: fracture toughness increases with increasing number of interlayers yet the hardness decreases. SEM observation verifies that the major toughening mechanism of bio-inspired multilayer films is crack deflection at organic/inorganic interfaces, which prevent crack from direct propagation. The interfacial roughness can also enhance mechanical properties in certain situations and the mechanisms are discussed.
author2 Chen, Po-Yu
author_facet Chen, Po-Yu
Yang, Hsi-Ming
楊錫明
author Yang, Hsi-Ming
楊錫明
spellingShingle Yang, Hsi-Ming
楊錫明
Bio-inspirations from Abalone Nacre: Microstructural Characterization and Mechanical Evaluation of ZrO2/PI Multilayer Coatings Synthesized by a Hybrid Sputtering and Pulsed Laser Deposition Technique
author_sort Yang, Hsi-Ming
title Bio-inspirations from Abalone Nacre: Microstructural Characterization and Mechanical Evaluation of ZrO2/PI Multilayer Coatings Synthesized by a Hybrid Sputtering and Pulsed Laser Deposition Technique
title_short Bio-inspirations from Abalone Nacre: Microstructural Characterization and Mechanical Evaluation of ZrO2/PI Multilayer Coatings Synthesized by a Hybrid Sputtering and Pulsed Laser Deposition Technique
title_full Bio-inspirations from Abalone Nacre: Microstructural Characterization and Mechanical Evaluation of ZrO2/PI Multilayer Coatings Synthesized by a Hybrid Sputtering and Pulsed Laser Deposition Technique
title_fullStr Bio-inspirations from Abalone Nacre: Microstructural Characterization and Mechanical Evaluation of ZrO2/PI Multilayer Coatings Synthesized by a Hybrid Sputtering and Pulsed Laser Deposition Technique
title_full_unstemmed Bio-inspirations from Abalone Nacre: Microstructural Characterization and Mechanical Evaluation of ZrO2/PI Multilayer Coatings Synthesized by a Hybrid Sputtering and Pulsed Laser Deposition Technique
title_sort bio-inspirations from abalone nacre: microstructural characterization and mechanical evaluation of zro2/pi multilayer coatings synthesized by a hybrid sputtering and pulsed laser deposition technique
publishDate 2014
url http://ndltd.ncl.edu.tw/handle/dkauae
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