Performance of digital patternless freeze-casting sand mould

Digital patternless freeze-casting technology is a new approach for obtaining frozen sand moulds using digital milling technology. The change law of tensile strength and air permeability of frozen sand moulds (100-mesh and 200-mesh silica sand, and zircon sand moulds) under different freezing temper...

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Main Authors: Zhong-de Shan, Hao-qin Yang, Feng Liu
Format: Article
Language:English
Published: Foundry Journal Agency 2020-07-01
Series:China Foundry
Subjects:
Online Access:https://link.springer.com/article/10.1007/s41230-020-9163-x
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spelling doaj-93ff1dac7ccc4f17b3b447a53ab4a9b72020-11-25T03:41:11ZengFoundry Journal AgencyChina Foundry1672-64211672-64212020-07-0117430831310.1007/s41230-020-9163-xPerformance of digital patternless freeze-casting sand mouldZhong-de Shan0Hao-qin Yang1Feng Liu2State Key Laboratory of Advanced Forming Technology and Equipment, China Academy of Machinery Science and Technology Group Co., Ltd., Beijing 100044, ChinaState Key Laboratory of Advanced Forming Technology and Equipment, China Academy of Machinery Science and Technology Group Co., Ltd., Beijing 100044, ChinaState Key Laboratory of Advanced Forming Technology and Equipment, China Academy of Machinery Science and Technology Group Co., Ltd., Beijing 100044, ChinaDigital patternless freeze-casting technology is a new approach for obtaining frozen sand moulds using digital milling technology. The change law of tensile strength and air permeability of frozen sand moulds (100-mesh and 200-mesh silica sand, and zircon sand moulds) under different freezing temperatures and water contents was studied. Results show that with the decrease of freezing temperature and the increase of water contents, the tensile strength and air permeability of the sand moulds are gradually improved. Meanwhile, computed tomography technology was used to characterize the shape and size of the water film between the sand particles mixed with 4wt.% water. The results show that in silica sand moulds, the form of water film is lumpy, and 200-mesh silica sand moulds have more water films and higher proportion of small-sized water films than 100-mesh silica sand moulds, while in zircon sand moulds, the form of water film is membranous. At the same freezing temperature and water content, the tensile strength of zircon sand mould is the highest, and 100-mesh silica sand mould is the lowest. A comparative solidification experiment of A356 aluminum alloy was carried out in frozen sand mould and resin sand mould. The results show that the primary α-Al phase appears in the form of equiaxed and eutectic silicon phase is needle-like in freezing sand mould casting, but the primary α-Al phase grows in the form of dendrites, and the eutectic silicon phase is coarse needle-like in the resin sand mould casting. The difference of microstructure is caused by the different cooling rate. The cooling rate of A356 aluminum alloy in frozen sand mould is higher than that in resin sand mould.https://link.springer.com/article/10.1007/s41230-020-9163-xpatternless moulding; freeze casting; frozen sand mould; green casting
collection DOAJ
language English
format Article
sources DOAJ
author Zhong-de Shan
Hao-qin Yang
Feng Liu
spellingShingle Zhong-de Shan
Hao-qin Yang
Feng Liu
Performance of digital patternless freeze-casting sand mould
China Foundry
patternless moulding; freeze casting; frozen sand mould; green casting
author_facet Zhong-de Shan
Hao-qin Yang
Feng Liu
author_sort Zhong-de Shan
title Performance of digital patternless freeze-casting sand mould
title_short Performance of digital patternless freeze-casting sand mould
title_full Performance of digital patternless freeze-casting sand mould
title_fullStr Performance of digital patternless freeze-casting sand mould
title_full_unstemmed Performance of digital patternless freeze-casting sand mould
title_sort performance of digital patternless freeze-casting sand mould
publisher Foundry Journal Agency
series China Foundry
issn 1672-6421
1672-6421
publishDate 2020-07-01
description Digital patternless freeze-casting technology is a new approach for obtaining frozen sand moulds using digital milling technology. The change law of tensile strength and air permeability of frozen sand moulds (100-mesh and 200-mesh silica sand, and zircon sand moulds) under different freezing temperatures and water contents was studied. Results show that with the decrease of freezing temperature and the increase of water contents, the tensile strength and air permeability of the sand moulds are gradually improved. Meanwhile, computed tomography technology was used to characterize the shape and size of the water film between the sand particles mixed with 4wt.% water. The results show that in silica sand moulds, the form of water film is lumpy, and 200-mesh silica sand moulds have more water films and higher proportion of small-sized water films than 100-mesh silica sand moulds, while in zircon sand moulds, the form of water film is membranous. At the same freezing temperature and water content, the tensile strength of zircon sand mould is the highest, and 100-mesh silica sand mould is the lowest. A comparative solidification experiment of A356 aluminum alloy was carried out in frozen sand mould and resin sand mould. The results show that the primary α-Al phase appears in the form of equiaxed and eutectic silicon phase is needle-like in freezing sand mould casting, but the primary α-Al phase grows in the form of dendrites, and the eutectic silicon phase is coarse needle-like in the resin sand mould casting. The difference of microstructure is caused by the different cooling rate. The cooling rate of A356 aluminum alloy in frozen sand mould is higher than that in resin sand mould.
topic patternless moulding; freeze casting; frozen sand mould; green casting
url https://link.springer.com/article/10.1007/s41230-020-9163-x
work_keys_str_mv AT zhongdeshan performanceofdigitalpatternlessfreezecastingsandmould
AT haoqinyang performanceofdigitalpatternlessfreezecastingsandmould
AT fengliu performanceofdigitalpatternlessfreezecastingsandmould
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