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Article
Publication date: 9 February 2024

Martin Novák, Berenika Hausnerova, Vladimir Pata and Daniel Sanetrnik

This study aims to enhance merging of additive manufacturing (AM) techniques with powder injection molding (PIM). In this way, the prototypes could be 3D-printed and mass…

Abstract

Purpose

This study aims to enhance merging of additive manufacturing (AM) techniques with powder injection molding (PIM). In this way, the prototypes could be 3D-printed and mass production implemented using PIM. Thus, the surface properties and mechanical performance of parts produced using powder/polymer binder feedstocks [material extrusion (MEX) and PIM] were investigated and compared with powder manufacturing based on direct metal laser sintering (DMLS).

Design/methodology/approach

PIM parts were manufactured from 17-4PH stainless steel PIM-quality powder and powder intended for powder bed fusion compounded with a recently developed environmentally benign binder. Rheological data obtained at the relevant temperatures were used to set up the process parameters of injection molding. The tensile and yield strengths as well as the strain at break were determined for PIM sintered parts and compared to those produced using MEX and DMLS. Surface properties were evaluated through a 3D scanner and analyzed with advanced statistical tools.

Findings

Advanced statistical analyses of the surface properties showed the proximity between the surfaces created via PIM and MEX. The tensile and yield strengths, as well as the strain at break, suggested that DMLS provides sintered samples with the highest strength and ductility; however, PIM parts made from environmentally benign feedstock may successfully compete with this manufacturing route.

Originality/value

This study addresses the issues connected to the merging of two environmentally efficient processing routes. The literature survey included has shown that there is so far no study comparing AM and PIM techniques systematically on the fixed part shape and dimensions using advanced statistical tools to derive the proximity of the investigated processing routes.

Content available
Article
Publication date: 1 April 2005

133

Abstract

Details

Anti-Corrosion Methods and Materials, vol. 52 no. 2
Type: Research Article
ISSN: 0003-5599

Keywords

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19

Abstract

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Pigment & Resin Technology, vol. 34 no. 2
Type: Research Article
ISSN: 0369-9420

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Article
Publication date: 1 April 2000

35

Abstract

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Pigment & Resin Technology, vol. 29 no. 2
Type: Research Article
ISSN: 0369-9420

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Article
Publication date: 1 December 2005

31

Abstract

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Pigment & Resin Technology, vol. 34 no. 6
Type: Research Article
ISSN: 0369-9420

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Content available

Abstract

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Pigment & Resin Technology, vol. 34 no. 3
Type: Research Article
ISSN: 0369-9420

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Content available
89

Abstract

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Pigment & Resin Technology, vol. 34 no. 5
Type: Research Article
ISSN: 0369-9420

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Article
Publication date: 1 January 2006

23

Abstract

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Pigment & Resin Technology, vol. 35 no. 1
Type: Research Article
ISSN: 0369-9420

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Content available
Article
Publication date: 24 April 2007

90

Abstract

Details

Assembly Automation, vol. 27 no. 2
Type: Research Article
ISSN: 0144-5154

Content available
Article
Publication date: 1 December 1999

104

Abstract

Details

Microelectronics International, vol. 16 no. 3
Type: Research Article
ISSN: 1356-5362

Keywords

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