PDF

2026 Vaccari H13 Additive Manufacturing

William Haupt, Gustavo Andre Vaccari

2026enadditive manufacturingH13 steel3D printingmechanical propertiesmicrostructuremetal molds

Abstract

Language:

The fabrication of molds for injection molding of polymeric materials using 3D printing from tool steels is increasingly being considered due to its potential for higher productivity compared to conventional manufacturing processes. Understanding the mechanical and microstructural properties of these materials is essential for evaluating their application in tooling. This study investigates the mechanical and microstructural characteristics of H13 tool steel manufactured by the Atomic Diffusion Additive Manufacturing (ADAM) process, offering a novel approach to its additive manufacturing. H13 steel specimens were produced using a polymer binder mixed with metal powder and subsequently subjected to debinding and sintering. Hardness, tensile strength, surface roughness, optical microscopy, scanning electron microscopy (SEM), and energy dispersive spectroscopy (EDS) were employed to characterize the material. The results showed a relatively uniform microhardness distribution among the analyzed orientations, with an average value of approximately 442.0 HV0.01. The material exhibited an ultimate tensile strength of approximately 1376.0 MPa, together with limited ductility. The as-printed surface presented relatively high roughness, while fracture analysis indicated a mixed ductile-brittle fracture mode. Microstructural characterization revealed relatively coarse grains, dispersed carbides, and a relatively homogeneous distribution of microstructural features and pores. EDS analysis indicated the presence of oxygen-containing inclusions. Overall, the results demonstrate the potential of the ADAM process for producing H13 tool steel components with relatively uniform mechanical properties, while highlighting surface roughness and internal defects as areas requiring attention in subsequent processing and applications.

Download

Cite This Work

@article{bee5f3cb-382f-45b5-9d88-f81d7ce8fce7,
  title={2026 Vaccari H13 Additive Manufacturing},
  author={William Haupt and Gustavo Andre Vaccari},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - 2026 Vaccari H13 Additive Manufacturing
AU  - William Haupt
AU  - Gustavo Andre Vaccari
PY  - 2026
LA  - en
ER  -

Similar Items

AN INTRODUCTION TO THE METALLURGY OF STEEL AND ITS ALLOYS

Robert A. Francis

This document serves as a comprehensive introduction to the metallurgy of steel and its alloys, focusing on various aspects of iron and steel manufact

2017enPDF

Microstructure-Property Modelling and

Xiaomei Li

The ever growing demands for high strength aluminium alloys in the aerospace industry have greatly enhanced the development of alloy chemistry and the

2002EnglishPDF

Metals

Unknown

This chapter discusses critical mechanical properties of metals, emphasizing the concepts of stress and strain, introduced as measures of applied mech

2023enDOCX

Optimization of Integrated Steel Plant R

This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data

2025enPDF

Design for Recovery of Precious and Base

2026enPDF

Electrochemical techniques for a cleaner

Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle

2026enPDF