Mechanical Behavior of Selective Laser Melting (SLM) Parts with Varying Thicknesses in a Saline Environment under Different Exposure Times

Author:

Akhtar Maaz1ORCID,Samiuddin Muhammad2ORCID,Muzamil Muhammad3ORCID,Siddiqui Muhammad Ali2ORCID,Khan Rashid1ORCID,Alsaleh Naser A.1ORCID,Siddiqui Ali Khursheed1,Djuansjah Joy1,Majeed Arfan4

Affiliation:

1. Mechanical and Industrial Engineering Department, College of Engineering, Imam Mohammad Ibn Saud Islamic University, Riyadh 11432, Saudi Arabia

2. Metallurgical Engineering Department, NED University of Engineering & Technology, Karachi 75270, Sindh, Pakistan

3. Mechanical Engineering Department, NED University of Engineering & Technology, Karachi 75270, Sindh, Pakistan

4. School of Mechanical Engineering, Northwestern Polytechnical University, Xi’an 710072, China

Abstract

A promising method for additive manufacturing that makes it possible to produce intricate and personalized parts is selective laser melting (SLM). However, the mechanical properties of as-corroded SLM parts are still areas of concern. This research investigates the mechanical behavior of SLM parts that are exposed to a saline environment containing a 3.5% NaCl solution for varying lengths of time. The exposure times chosen for this study were 10 days, 20 days, and 30 days. The results reveal that the tensile strength of the parts is significantly affected by the duration of exposure. Additionally, the study also examined the influence of porosity on the corrosion behavior of the parts. The analysis included studying the mass loss of the parts over time, and a regression analysis was conducted to analyze the relationship between exposure time and mass loss. In addition, the utilization of scanning electron microscopy (SEM) and X-ray photo spectroscopy (XPS) techniques yielded valuable insights into the fundamental mechanisms accountable for the observed corrosion and mechanical behavior. It was found that the presence of corrosion products (i.e., oxide layer) and pitting contributed to the degradation of the SLM parts in the saline environment. This research emphasizes the importance of considering part thickness in the design of SLM components for corrosive environments and provides insights for enhancing their performance and durability.

Funder

Deanship of Scientific Research at Imam Mohammad Ibn Saud Islamic University

Publisher

MDPI AG

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