Bending strength and fracture surface topography of natural fiber-reinforced shell for investment casting process

In order to improve the properties of silica sol shell for investment casting process, various contents of cattail fibers were added into the slurry to prepare a fiber-reinforced shell in the present study. The bending strength of fiber-reinforced shell was investigated and the fracture surfaces of...

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Main Authors: Kai Lu, Xiang-dong Liu, Zhao-xin Du
Format: Article
Language:English
Published: Foundry Journal Agency 2016-05-01
Series:China Foundry
Subjects:
Online Access:http://ff.foundryworld.com/uploadfile/2016060853021189.pdf
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spelling doaj-57587fe86e58486e8f192a8ba86a564f2020-11-24T23:18:52ZengFoundry Journal AgencyChina Foundry1672-64211672-64212016-05-0113320521010.1007/s41230-016-5100-4Bending strength and fracture surface topography of natural fiber-reinforced shell for investment casting processKai Lu0Xiang-dong Liu1Zhao-xin Du2School of Materials Science and Engineering, Inner Mongolia University of Technology, Hohhot 010051, ChinaSchool of Materials Science and Engineering, Inner Mongolia University of Technology, Hohhot 010051, ChinaSchool of Materials Science and Engineering, Inner Mongolia University of Technology, Hohhot 010051, ChinaIn order to improve the properties of silica sol shell for investment casting process, various contents of cattail fibers were added into the slurry to prepare a fiber-reinforced shell in the present study. The bending strength of fiber-reinforced shell was investigated and the fracture surfaces of shell specimens were observed using SEM. It is found that the bending strength increases with the increase of fiber content, and the bending strength of a green shell with 1.0 wt.% fiber addition increases by 44% compared to the fiber-free shell. The failure of specimens of the fiber-reinforced green shell results from fiber rupture and debonding between the interface of fibers and adhesive under the bending load. The micro-crack propagation in the matrix is inhibited by the micro-holes for ablation of fibers in specimens of the fiber-reinforced shell during the stage of being fired. As a result, the bending strength of specimens of the fired shell had no significant drop. Particularly, the bending strength of specimens of the fired shell reinforced with 0.6wt.% fiber reached the maximum value of 4.6 MPa.http://ff.foundryworld.com/uploadfile/2016060853021189.pdffiber-reinforced shell; investment casting; bending strength; fracture surface topography
collection DOAJ
language English
format Article
sources DOAJ
author Kai Lu
Xiang-dong Liu
Zhao-xin Du
spellingShingle Kai Lu
Xiang-dong Liu
Zhao-xin Du
Bending strength and fracture surface topography of natural fiber-reinforced shell for investment casting process
China Foundry
fiber-reinforced shell; investment casting; bending strength; fracture surface topography
author_facet Kai Lu
Xiang-dong Liu
Zhao-xin Du
author_sort Kai Lu
title Bending strength and fracture surface topography of natural fiber-reinforced shell for investment casting process
title_short Bending strength and fracture surface topography of natural fiber-reinforced shell for investment casting process
title_full Bending strength and fracture surface topography of natural fiber-reinforced shell for investment casting process
title_fullStr Bending strength and fracture surface topography of natural fiber-reinforced shell for investment casting process
title_full_unstemmed Bending strength and fracture surface topography of natural fiber-reinforced shell for investment casting process
title_sort bending strength and fracture surface topography of natural fiber-reinforced shell for investment casting process
publisher Foundry Journal Agency
series China Foundry
issn 1672-6421
1672-6421
publishDate 2016-05-01
description In order to improve the properties of silica sol shell for investment casting process, various contents of cattail fibers were added into the slurry to prepare a fiber-reinforced shell in the present study. The bending strength of fiber-reinforced shell was investigated and the fracture surfaces of shell specimens were observed using SEM. It is found that the bending strength increases with the increase of fiber content, and the bending strength of a green shell with 1.0 wt.% fiber addition increases by 44% compared to the fiber-free shell. The failure of specimens of the fiber-reinforced green shell results from fiber rupture and debonding between the interface of fibers and adhesive under the bending load. The micro-crack propagation in the matrix is inhibited by the micro-holes for ablation of fibers in specimens of the fiber-reinforced shell during the stage of being fired. As a result, the bending strength of specimens of the fired shell had no significant drop. Particularly, the bending strength of specimens of the fired shell reinforced with 0.6wt.% fiber reached the maximum value of 4.6 MPa.
topic fiber-reinforced shell; investment casting; bending strength; fracture surface topography
url http://ff.foundryworld.com/uploadfile/2016060853021189.pdf
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AT zhaoxindu bendingstrengthandfracturesurfacetopographyofnaturalfiberreinforcedshellforinvestmentcastingprocess
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