Investigation on Preparation of Glass-ceramics with Iron Tailings

The glass-ceramics were prepared by sintering method from an iron tailings in Shangluo area. The optimum process parameters of melting base glass were optimized. The effects of the crystallization temperature on the compressive strength, density and thermal expansivity of glass-ceramics were investi...

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Main Authors: Ning Nan, Xiaowei Cui, Qiangqiang Sun, Wei Zhao, Zhiyu Wang, Feng Li, Ben He
Format: Article
Language:zho
Published: Institute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological Sciences 2022-06-01
Series:Kuangchan zonghe liyong
Subjects:
Online Access:http://www.kczhly.com/en/article/doi/10.3969/j.issn.1000-6532.2022.03.009
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author Ning Nan
Xiaowei Cui
Qiangqiang Sun
Wei Zhao
Zhiyu Wang
Feng Li
Ben He
author_facet Ning Nan
Xiaowei Cui
Qiangqiang Sun
Wei Zhao
Zhiyu Wang
Feng Li
Ben He
author_sort Ning Nan
collection DOAJ
description The glass-ceramics were prepared by sintering method from an iron tailings in Shangluo area. The optimum process parameters of melting base glass were optimized. The effects of the crystallization temperature on the compressive strength, density and thermal expansivity of glass-ceramics were investigated. The results show that optimal performance of the base glass melted can be obtained at the melting temperature of 1400℃ and melting time of 2 h. Moreover the best properties of the glass-ceramics such as compressive strength of 158.32 MPa, density of 2.74 g/cm3, thermal expansivity of 6.8×10-6K-1 could be obtained at the crystallization temperature of 900℃ and holding time of 2 h.
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spelling doaj.art-85681fad468a484c9129adcc476f72a92022-12-22T03:49:21ZzhoInstitute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological SciencesKuangchan zonghe liyong1000-65322022-06-01433475010.3969/j.issn.1000-6532.2022.03.0092022-03nanningInvestigation on Preparation of Glass-ceramics with Iron TailingsNing Nan0Xiaowei Cui1Qiangqiang Sun2Wei Zhao3Zhiyu Wang4Feng Li5Ben He6Shangluo University, Shangluo, Shaanxi, ChinaShangluo University, Shangluo, Shaanxi, ChinaShangluo University, Shangluo, Shaanxi, ChinaShangluo University, Shangluo, Shaanxi, ChinaShangluo University, Shangluo, Shaanxi, ChinaShangluo University, Shangluo, Shaanxi, ChinaShangluo University, Shangluo, Shaanxi, ChinaThe glass-ceramics were prepared by sintering method from an iron tailings in Shangluo area. The optimum process parameters of melting base glass were optimized. The effects of the crystallization temperature on the compressive strength, density and thermal expansivity of glass-ceramics were investigated. The results show that optimal performance of the base glass melted can be obtained at the melting temperature of 1400℃ and melting time of 2 h. Moreover the best properties of the glass-ceramics such as compressive strength of 158.32 MPa, density of 2.74 g/cm3, thermal expansivity of 6.8×10-6K-1 could be obtained at the crystallization temperature of 900℃ and holding time of 2 h.http://www.kczhly.com/en/article/doi/10.3969/j.issn.1000-6532.2022.03.009iron tailingsglass-ceramicscompressive strengthcoefficient of thermal expansion
spellingShingle Ning Nan
Xiaowei Cui
Qiangqiang Sun
Wei Zhao
Zhiyu Wang
Feng Li
Ben He
Investigation on Preparation of Glass-ceramics with Iron Tailings
Kuangchan zonghe liyong
iron tailings
glass-ceramics
compressive strength
coefficient of thermal expansion
title Investigation on Preparation of Glass-ceramics with Iron Tailings
title_full Investigation on Preparation of Glass-ceramics with Iron Tailings
title_fullStr Investigation on Preparation of Glass-ceramics with Iron Tailings
title_full_unstemmed Investigation on Preparation of Glass-ceramics with Iron Tailings
title_short Investigation on Preparation of Glass-ceramics with Iron Tailings
title_sort investigation on preparation of glass ceramics with iron tailings
topic iron tailings
glass-ceramics
compressive strength
coefficient of thermal expansion
url http://www.kczhly.com/en/article/doi/10.3969/j.issn.1000-6532.2022.03.009
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AT weizhao investigationonpreparationofglassceramicswithirontailings
AT zhiyuwang investigationonpreparationofglassceramicswithirontailings
AT fengli investigationonpreparationofglassceramicswithirontailings
AT benhe investigationonpreparationofglassceramicswithirontailings