Effects of original layer thickness ratio on exothermic and mechanical properties of Ni/Al multilayered energetic structural composites

Ni/Al multilayered energetic structural composites with micron scale were prepared by electroless plating followed by hot press process. The effects of original layer thickness ratio on the microstructure, exothermic properties and mechanical properties of the fabricated composites were investigated...

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Main Authors: DING Qing-yun, LUO Xin-yi, TAO Jie, LIAO Sha
Format: Article
Language:zho
Published: Journal of Materials Engineering 2020-12-01
Series:Journal of Materials Engineering
Subjects:
Online Access:http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2019.000954
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spelling doaj-dc959cc787d14ddaadfbce1c067af71a2021-08-18T02:42:20ZzhoJournal of Materials EngineeringJournal of Materials Engineering1001-43811001-43812020-12-01481215616210.11868/j.issn.1001-4381.2019.00095420201220Effects of original layer thickness ratio on exothermic and mechanical properties of Ni/Al multilayered energetic structural compositesDING Qing-yun0LUO Xin-yi1TAO Jie2LIAO Sha3College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaCollege of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaCollege of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaCollege of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaNi/Al multilayered energetic structural composites with micron scale were prepared by electroless plating followed by hot press process. The effects of original layer thickness ratio on the microstructure, exothermic properties and mechanical properties of the fabricated composites were investigated, and then the fracture mechanism was analyzed. The results show that the interface bonding of Ni/Al multilayered energetic structural composites is perfect and the initial temperature of interface reaction increases with the increase of original layer thickness ratios. The 2/3 Ni/Al multilayered energetic structural composite not only has the highest reaction energy density of 1051.62 J/g, but also has good strength and plasticity. The tensile strength, elongation and bending strength reach 285.05 MPa, 8.87% and 309.09 MPa respectively. When the layer thickness ratio increases from 1/2 to 1/1, both the tensile strength and bending strength increase, the plasticity decreases. This is related to the composition and interfacial structure. Failure mode of Ni/Al multilayered energetic structural composite is delamination mixed with fracture, and the interface delamination gets more serious with the increase of the layer thickness ratio.http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2019.000954original layer thickness ratiohot pressingni/al multilayered energetic structural com-positeexothermic propertymechanical property
collection DOAJ
language zho
format Article
sources DOAJ
author DING Qing-yun
LUO Xin-yi
TAO Jie
LIAO Sha
spellingShingle DING Qing-yun
LUO Xin-yi
TAO Jie
LIAO Sha
Effects of original layer thickness ratio on exothermic and mechanical properties of Ni/Al multilayered energetic structural composites
Journal of Materials Engineering
original layer thickness ratio
hot pressing
ni/al multilayered energetic structural com-posite
exothermic property
mechanical property
author_facet DING Qing-yun
LUO Xin-yi
TAO Jie
LIAO Sha
author_sort DING Qing-yun
title Effects of original layer thickness ratio on exothermic and mechanical properties of Ni/Al multilayered energetic structural composites
title_short Effects of original layer thickness ratio on exothermic and mechanical properties of Ni/Al multilayered energetic structural composites
title_full Effects of original layer thickness ratio on exothermic and mechanical properties of Ni/Al multilayered energetic structural composites
title_fullStr Effects of original layer thickness ratio on exothermic and mechanical properties of Ni/Al multilayered energetic structural composites
title_full_unstemmed Effects of original layer thickness ratio on exothermic and mechanical properties of Ni/Al multilayered energetic structural composites
title_sort effects of original layer thickness ratio on exothermic and mechanical properties of ni/al multilayered energetic structural composites
publisher Journal of Materials Engineering
series Journal of Materials Engineering
issn 1001-4381
1001-4381
publishDate 2020-12-01
description Ni/Al multilayered energetic structural composites with micron scale were prepared by electroless plating followed by hot press process. The effects of original layer thickness ratio on the microstructure, exothermic properties and mechanical properties of the fabricated composites were investigated, and then the fracture mechanism was analyzed. The results show that the interface bonding of Ni/Al multilayered energetic structural composites is perfect and the initial temperature of interface reaction increases with the increase of original layer thickness ratios. The 2/3 Ni/Al multilayered energetic structural composite not only has the highest reaction energy density of 1051.62 J/g, but also has good strength and plasticity. The tensile strength, elongation and bending strength reach 285.05 MPa, 8.87% and 309.09 MPa respectively. When the layer thickness ratio increases from 1/2 to 1/1, both the tensile strength and bending strength increase, the plasticity decreases. This is related to the composition and interfacial structure. Failure mode of Ni/Al multilayered energetic structural composite is delamination mixed with fracture, and the interface delamination gets more serious with the increase of the layer thickness ratio.
topic original layer thickness ratio
hot pressing
ni/al multilayered energetic structural com-posite
exothermic property
mechanical property
url http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2019.000954
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AT luoxinyi effectsoforiginallayerthicknessratioonexothermicandmechanicalpropertiesofnialmultilayeredenergeticstructuralcomposites
AT taojie effectsoforiginallayerthicknessratioonexothermicandmechanicalpropertiesofnialmultilayeredenergeticstructuralcomposites
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