3D Printing of Customized Biomedical Scaffolds and Implants

Powder-bed 3D printing (3DP) is a versatile additive manufacturing technique that uses ink binder deposition to bind loose powder particles together. This paper evaluates the work using powder-bed 3DP technology as a low-cost manufacturing system to print non-proprietary materials for biomedical sca...

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Main Authors: Wiria, Florencia Edith, Chandrasekaran, Margam, Zhang, Su Xia, Maleksaeedi, Saeed, He, Zeming, Tay, Bee Yen
Other Authors: Proceedings of the 1st International Conference on Progress in Additive Manufacturing (Pro-AM 2014)
Format: Conference or Workshop Item
Language:English
Published: 2016
Subjects:
Online Access:https://hdl.handle.net/10356/84263
http://hdl.handle.net/10220/41687
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-842632020-09-24T20:11:05Z 3D Printing of Customized Biomedical Scaffolds and Implants Wiria, Florencia Edith Chandrasekaran, Margam Zhang, Su Xia Maleksaeedi, Saeed He, Zeming Tay, Bee Yen Proceedings of the 1st International Conference on Progress in Additive Manufacturing (Pro-AM 2014) A*STAR SIMTech Singapore Centre for 3D Printing 3D inkjet printing Tissue engineering scaffold Powder-bed 3D printing (3DP) is a versatile additive manufacturing technique that uses ink binder deposition to bind loose powder particles together. This paper evaluates the work using powder-bed 3DP technology as a low-cost manufacturing system to print non-proprietary materials for biomedical scaffold and implant applications. The work presents development of suitable binder-powder feedstock coupled with the suitable printing and post-processing methodologies for respective biomaterial. Published version 2016-12-06T04:29:14Z 2019-12-06T15:41:35Z 2016-12-06T04:29:14Z 2019-12-06T15:41:35Z 2014 Conference Paper Wiria, F. E., Tay, B. Y., Chandrasekaran, M., Zhang, S. X., Maleksaeedi, S., & He, Z. (2014). 3D Printing of Customized Biomedical Scaffolds and Implants. Proceedings of the 1st International Conference on Progress in Additive Manufacturing (Pro-AM 2014), 411-416. https://hdl.handle.net/10356/84263 http://hdl.handle.net/10220/41687 10.3850/978-981-09-0446-3_069 en © 2014 by Research Publishing Services. 6 p. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic 3D inkjet printing
Tissue engineering scaffold
spellingShingle 3D inkjet printing
Tissue engineering scaffold
Wiria, Florencia Edith
Chandrasekaran, Margam
Zhang, Su Xia
Maleksaeedi, Saeed
He, Zeming
Tay, Bee Yen
3D Printing of Customized Biomedical Scaffolds and Implants
description Powder-bed 3D printing (3DP) is a versatile additive manufacturing technique that uses ink binder deposition to bind loose powder particles together. This paper evaluates the work using powder-bed 3DP technology as a low-cost manufacturing system to print non-proprietary materials for biomedical scaffold and implant applications. The work presents development of suitable binder-powder feedstock coupled with the suitable printing and post-processing methodologies for respective biomaterial.
author2 Proceedings of the 1st International Conference on Progress in Additive Manufacturing (Pro-AM 2014)
author_facet Proceedings of the 1st International Conference on Progress in Additive Manufacturing (Pro-AM 2014)
Wiria, Florencia Edith
Chandrasekaran, Margam
Zhang, Su Xia
Maleksaeedi, Saeed
He, Zeming
Tay, Bee Yen
format Conference or Workshop Item
author Wiria, Florencia Edith
Chandrasekaran, Margam
Zhang, Su Xia
Maleksaeedi, Saeed
He, Zeming
Tay, Bee Yen
author_sort Wiria, Florencia Edith
title 3D Printing of Customized Biomedical Scaffolds and Implants
title_short 3D Printing of Customized Biomedical Scaffolds and Implants
title_full 3D Printing of Customized Biomedical Scaffolds and Implants
title_fullStr 3D Printing of Customized Biomedical Scaffolds and Implants
title_full_unstemmed 3D Printing of Customized Biomedical Scaffolds and Implants
title_sort 3d printing of customized biomedical scaffolds and implants
publishDate 2016
url https://hdl.handle.net/10356/84263
http://hdl.handle.net/10220/41687
_version_ 1681056637861756928