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Journal ArticleDOI

Selective Laser Melting of Prealloyed High Alloy Steel Powder Beds

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TLDR
In this paper, the results of a recent comprehensive investigation of selective laser melting of prealloyed gas and water atomised M2 and H13 tool steel powders were presented.
Abstract
This paper presents the results of a recent comprehensive investigation of selective laser melting (slm) of prealloyed gas and water atomised M2 and H13 tool steel powders. The objective of the study was to establish the parameters that control the densification of single and multiple layers with the aim of producing high density parts without the need for infiltration. Powders were processed using continuous wave (CW) CO2 and Nd:YAG lasers. Relationships between alloy composition, powder particle size and shape, flowability, microstructure (phases present, their size, morphology and distribution), track morphology, post scanned density, surface finish and scan conditions (Laser power, spot size and scan speed) are discussed for single track, single layer and multi-layer (up to 25 layers) constructions. Processing with a Nd:YAG laser with powders placed on substrates rather than on a loose powder bed gave more stable builds than with the CO2 laser. Using the Nd:YAG laser densities up to ~90% relative were possible with H13 powder compared with a maximum of ~70% for M2 in multi-layer builds. Maximum density achieved with CW CO2 processing was only ~60%, irrespective of powder composition. The paper compares the processibility of these materials with stainless steel powders processed to higher densities (up to 99% relative) under similar conditions. The results of the work show that a crucial factor for high density processing is melt pool wettability and this is controlled largely by carbon content; low carbon contents producing better wettability, flatter tracks and higher densities. The significance of this observation for the processing high alloy steels by slm will be discussed.

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Citations
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Journal ArticleDOI

Laser additive manufacturing of metallic components: materials, processes and mechanisms

TL;DR: Additive manufacturing implies layer by layer shaping and consolidation of powder feedstock to arbitrary configurations, normally using a computer controlled laser as discussed by the authors, which is based on a novel materials incremental manufacturing philosophy.
Journal ArticleDOI

Microstructure and mechanical properties of Al-12Si produced by selective laser melting: Effect of heat treatment

TL;DR: In this article, the effect of annealing on microstructure and related tensile properties is examined and the results demonstrate that the mechanical behavior of the Al-12Si SLM samples can be tuned within a wide range of strength and ductility through proper annesaling treatment.
Journal ArticleDOI

Steels in additive manufacturing: A review of their microstructure and properties

TL;DR: In this paper, an overview of the different kinds of steels in use in fusion-based AM processes and present their microstructures, their mechanical and corrosion properties, their heat treatments and their intended applications.
Journal ArticleDOI

Additive manufacturing of steels: a review of achievements and challenges

TL;DR: A comprehensive review of the performance of AM steels as a function of these unique micro-structural features is presented in this paper, highlighting that a wide range of steels can be processed by AM.
Dissertation

The development of design rules for selective laser melting

Daniel Thomas
TL;DR: In this article, the capabilities of some cellular-type structures as fundamental elements for creating new internal material configurations for injection molding tools are investigated and four different designs of cellular structures that are suitable for application in injection moulding tools and for rapid manufacturing have been investigated.
References
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Journal ArticleDOI

Rapid manufacturing and rapid tooling with layer manufacturing (lm) technologies, state of the art and future perspectives

TL;DR: In this article, a systematic material dependent classification of layer manufacturing and process oriented metal part manufacturing techniques are proposed, mainly for metallic parts, polymer parts and tooling, and the generic and the major specific process characteristics and materials are described.
Journal ArticleDOI

Absorptance of powder materials suitable for laser sintering

TL;DR: In this paper, the normal spectral absorptance of a number of metal, ceramic and polymer powders susceptible to be utilised for selective laser sintering (SLS) technique was experimentally determined.
Journal ArticleDOI

Density analysis of direct metal laser re-melted 316L stainless steel cubic primitives

TL;DR: In this article, the effects of Q-Switch pulsing frequency, scanning speed and scan spacing on sample density were investigated for cubic primitives made by Direct Metal Laser Re-Melting, a process variant of SLS.
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