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Improvements in Brazed-Joint Properties of Silicon Nitride and Titanium Alloys Using Laser-Induced Microscale Rice Leaf Structures

Si(3)N(4) ceramics with a microscale rice leaf structure (MRLS) and titanium alloy were connected via brazing, and the influence of the surface microstructure on the ceramic connection was analyzed. MRLS fabrication is an efficient and high-degree-of-freedom method that can be used to change a mater...

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Autores principales: He, Jian-Guo, Dai, Shou-Jun, Zhao, Yang, Huang, Min, Liu, Yang, Yu, Jia-Qi, Tan, Yu, Fan, Lian-Wen, Ge, Wen-Qi, Ma, Yun-Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571898/
https://www.ncbi.nlm.nih.gov/pubmed/36234090
http://dx.doi.org/10.3390/ma15196750
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author He, Jian-Guo
Dai, Shou-Jun
Zhao, Yang
Huang, Min
Liu, Yang
Yu, Jia-Qi
Tan, Yu
Fan, Lian-Wen
Ge, Wen-Qi
Ma, Yun-Feng
author_facet He, Jian-Guo
Dai, Shou-Jun
Zhao, Yang
Huang, Min
Liu, Yang
Yu, Jia-Qi
Tan, Yu
Fan, Lian-Wen
Ge, Wen-Qi
Ma, Yun-Feng
author_sort He, Jian-Guo
collection PubMed
description Si(3)N(4) ceramics with a microscale rice leaf structure (MRLS) and titanium alloy were connected via brazing, and the influence of the surface microstructure on the ceramic connection was analyzed. MRLS fabrication is an efficient and high-degree-of-freedom method that can be used to change a material’s surface morphology and wettability. The MRLS was obtained at a laser power of 110 W, with line spacings of 100 and 50 μm. The laser-treated surface included nanoparticles and micro particles, exhibiting a coral-like structure after agglomeration. When the MRLS was used to braze the titanium alloy, no defects were observed at the brazing interface, and the formation was excellent. Throughout the brazed joint, the MRLS remained intact and formed a strong metallurgical bond with the brazing filler metal. A finite element analysis was performed to study the cross-sectional morphology after joint fracture; from the load-time curve, it was found that the MRLS on the surface not only helped improve the mechanical occlusion and brazing area at the interface, but also helped generate compressive stress on the Si(3)N(4) side. Crack propagation was hindered, thereby increasing the joint strength.
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spelling pubmed-95718982022-10-17 Improvements in Brazed-Joint Properties of Silicon Nitride and Titanium Alloys Using Laser-Induced Microscale Rice Leaf Structures He, Jian-Guo Dai, Shou-Jun Zhao, Yang Huang, Min Liu, Yang Yu, Jia-Qi Tan, Yu Fan, Lian-Wen Ge, Wen-Qi Ma, Yun-Feng Materials (Basel) Article Si(3)N(4) ceramics with a microscale rice leaf structure (MRLS) and titanium alloy were connected via brazing, and the influence of the surface microstructure on the ceramic connection was analyzed. MRLS fabrication is an efficient and high-degree-of-freedom method that can be used to change a material’s surface morphology and wettability. The MRLS was obtained at a laser power of 110 W, with line spacings of 100 and 50 μm. The laser-treated surface included nanoparticles and micro particles, exhibiting a coral-like structure after agglomeration. When the MRLS was used to braze the titanium alloy, no defects were observed at the brazing interface, and the formation was excellent. Throughout the brazed joint, the MRLS remained intact and formed a strong metallurgical bond with the brazing filler metal. A finite element analysis was performed to study the cross-sectional morphology after joint fracture; from the load-time curve, it was found that the MRLS on the surface not only helped improve the mechanical occlusion and brazing area at the interface, but also helped generate compressive stress on the Si(3)N(4) side. Crack propagation was hindered, thereby increasing the joint strength. MDPI 2022-09-29 /pmc/articles/PMC9571898/ /pubmed/36234090 http://dx.doi.org/10.3390/ma15196750 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
He, Jian-Guo
Dai, Shou-Jun
Zhao, Yang
Huang, Min
Liu, Yang
Yu, Jia-Qi
Tan, Yu
Fan, Lian-Wen
Ge, Wen-Qi
Ma, Yun-Feng
Improvements in Brazed-Joint Properties of Silicon Nitride and Titanium Alloys Using Laser-Induced Microscale Rice Leaf Structures
title Improvements in Brazed-Joint Properties of Silicon Nitride and Titanium Alloys Using Laser-Induced Microscale Rice Leaf Structures
title_full Improvements in Brazed-Joint Properties of Silicon Nitride and Titanium Alloys Using Laser-Induced Microscale Rice Leaf Structures
title_fullStr Improvements in Brazed-Joint Properties of Silicon Nitride and Titanium Alloys Using Laser-Induced Microscale Rice Leaf Structures
title_full_unstemmed Improvements in Brazed-Joint Properties of Silicon Nitride and Titanium Alloys Using Laser-Induced Microscale Rice Leaf Structures
title_short Improvements in Brazed-Joint Properties of Silicon Nitride and Titanium Alloys Using Laser-Induced Microscale Rice Leaf Structures
title_sort improvements in brazed-joint properties of silicon nitride and titanium alloys using laser-induced microscale rice leaf structures
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571898/
https://www.ncbi.nlm.nih.gov/pubmed/36234090
http://dx.doi.org/10.3390/ma15196750
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