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>UNE CEN ISO/ASTM TR 52952:2023 - Additive Manufacturing of metals - Feedstock materials - Correlating of rotating drum measurement with powder spreadability in PBF-LB machines (ISO/ASTM TR 52952:2023) (Endorsed by Asociación Española de Normalización in August of 2023.)
sklademVydáno: 2023-08-01
UNE CEN ISO/ASTM TR 52952:2023 - Additive Manufacturing of metals - Feedstock materials - Correlating of rotating drum measurement with powder spreadability in PBF-LB machines (ISO/ASTM TR 52952:2023) (Endorsed by Asociación Española de Normalización in August of 2023.)

UNE CEN ISO/ASTM TR 52952:2023

Additive Manufacturing of metals - Feedstock materials - Correlating of rotating drum measurement with powder spreadability in PBF-LB machines (ISO/ASTM TR 52952:2023) (Endorsed by Asociación Española de Normalización in August of 2023.)

Fabricación aditiva de metales. Materias primas. Correlación de la medición del tambor giratorio con la capacidad de esparcimiento del polvo en máquinas PBF-LB (ISO/ASTM TR 52952:2023) (Ratificada por la Asociación Española de Normalización en agosto de 2023.)

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Označení normy:UNE CEN ISO/ASTM TR 52952:2023
Počet stran:25
Vydáno:2023-08-01
Status:Norma
DESCRIPTION

UNE CEN ISO/ASTM TR 52952:2023

This document provides an example of the relation between the characterization of certain macroscopic properties of metallic powders and their spreadability in an PBF-LB/M AM machines. This relation is based on a new technique combining measurements inside an PBF-LB/M machine and image processing developed to quantify the homogeneity of the powder bed layers during spreading. In this document, the flowability of five metal powders are investigated with an automated rotating drum method, whose dynamic cohesive index measurement is shown to establish a correlation with the spreadability of the powder during the layer deposition operation. Furthemore, the particule size distribution (PSD) and morphology of each powder is characterized before testing by static image analysis method (according to ISO 13322-1). The general principle of the method is described in Figure 1.

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