Skip Nav Destination
Close Modal
By
Christos Softas
Search Results for
selective laser sintering
Update search
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
NARROW
Format
Topics
Book Series
Date
Availability
1-20 of 300
Search Results for selective laser sintering
Follow your search
Access your saved searches in your account
Would you like to receive an alert when new items match your search?
1
Sort by
Book Chapter
Selective Laser Sintering of Hydroxyapatite-Based Materials for Tissue Engineering
Available to PurchaseSeries: ASM Handbook
Volume: 23A
Publisher: ASM International
Published: 12 September 2022
DOI: 10.31399/asm.hb.v23A.a0006886
EISBN: 978-1-62708-392-8
... Abstract Hydroxyapatite (HA) is one of the most popular materials in tissue scaffold engineering due to its similarity to the nature of human bone; it accounts for more than half of the total weight of the latter. Selective laser sintering (SLS) is an additive manufacturing method that is used...
Abstract
Hydroxyapatite (HA) is one of the most popular materials in tissue scaffold engineering due to its similarity to the nature of human bone; it accounts for more than half of the total weight of the latter. Selective laser sintering (SLS) is an additive manufacturing method that is used in producing tissue engineering parts from HA feedstocks. This article provides a brief overview of the process itself, along with a detailed review of HA-based tissue engineering applications using SLS. Discussion on the various polymer composites is presented. A detailed overview of selected publications on HA-based SLS studies is listed, which provides insight regarding technical aspects of processing HA powder feedstocks.
Image
Selective thermal points within the selective laser sintering process relat...
Available to PurchasePublished: 12 September 2022
Fig. 11 Selective thermal points within the selective laser sintering process relative to differential scanning calorimetry curve
More
Image
Published: 31 October 2011
Image
Published: 01 January 2005
Image
All-ceramic dental restorations fabricated using selective laser sintering/...
Available to PurchasePublished: 15 June 2020
Fig. 14 All-ceramic dental restorations fabricated using selective laser sintering/cold isostatic processing (SLS/CIP) technology: (a) Digital tooth models and (b) ceramic products. Source: Ref 122
More
Image
Schematic drawing of the selective laser sintering additive manufacturing p...
Available to PurchasePublished: 15 May 2022
Image
Surgical instruments 3D printed using the selective laser sintering method....
Available to Purchase
in Developments and Trends in Additively Manufactured Medical Devices
> Additive Manufacturing in Biomedical Applications
Published: 12 September 2022
Fig. 3 Surgical instruments 3D printed using the selective laser sintering method. Source: Ref 18
More
Image
Published: 12 September 2022
Image
Schematic representation of the selective laser sintering process. Source: ...
Available to Purchase
in Selective Laser Sintering of Hydroxyapatite-Based Materials for Tissue Engineering
> Additive Manufacturing in Biomedical Applications
Published: 12 September 2022
Image
Schematic overview of the selective laser sintering process in a single lay...
Available to Purchase
in Selective Laser Sintering of Hydroxyapatite-Based Materials for Tissue Engineering
> Additive Manufacturing in Biomedical Applications
Published: 12 September 2022
Fig. 2 Schematic overview of the selective laser sintering process in a single layer. Source: Ref 11
More
Image
Published: 12 September 2022
Image
Powder-bed fusion process parameters. SLS, selective laser sintering; SLM, ...
Available to PurchasePublished: 12 September 2022
Fig. 4 Powder-bed fusion process parameters. SLS, selective laser sintering; SLM, selective laser melting. Adapted from Ref 56
More
Image
in Additively Manufactured Dentures, Crowns, and Bridges
> Additive Manufacturing in Biomedical Applications
Published: 12 September 2022
Image
Published: 12 September 2022
Image
Published: 12 September 2022
Image
Optical images of powder bed during selective laser sintering curl testing ...
Available to PurchasePublished: 12 September 2022
Fig. 13 Optical images of powder bed during selective laser sintering curl testing with energy melt ratio at (a) 60% and (b) 100% of target. Images were captured through the observation window of an EOS P110 printing system.
More
Image
Selective laser sintering (SLS) rapid prototyping system. Courtesy of DTM C...
Available to PurchasePublished: 01 January 2001
Image
Schematic comparison of powder-bed sintering processes. (a) Selective laser...
Available to PurchasePublished: 12 September 2022
Fig. 5 Schematic comparison of powder-bed sintering processes. (a) Selective laser sintering. (b) High-speed sintering. (c) Multijet fusion technology
More
Image
Published: 30 September 2015
Image
Images of selective laser sintered (SLS) porcelain objects: (a) Object on a...
Available to PurchasePublished: 15 June 2020
Fig. 13 Images of selective laser sintered (SLS) porcelain objects: (a) Object on a porcelain plateau and (b) objects separated from the porcelain plateau. Source: Ref 123
More
1