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Effect of different beam distances in laser soldering process: a numerical and experimental study

Muhammad Zaim Hanif Nazarudin (School of Mechanical Engineering, Universiti Sains Malaysia – Kampus Kejuruteraan, Nibong Tebal, Malaysia)
Mohamad Aizat Abas (School of Mechanical Engineering, Universiti Sains Malaysia – Kampus Kejuruteraan Seri Ampangan, Seberang Perai Selatan, Malaysia)
Wan Maryam Wan Ahmad Kamil (School of Physics, Universiti Sains Malaysia, Minden, Malaysia)
Faiz Farhan Ahmad Nadzri (School of Mechanical Engineering, Universiti Sains Malaysia – Kampus Kejuruteraan, Nibong Tebal, Malaysia)
Saifulmajdy A. Zahiri (School of Mechanical Engineering, Universiti Sains Malaysia – Kampus Kejuruteraan, Nibong Tebal, Malaysia)
Mohamad Fikri Mohd Sharif (Western Digital, Batu Kawan, Malaysia)
Fakhrozi Che Ani (Western Digital®, SanDisk Storage Malaysia Sdn.Bhd, Batu Kawan, Malaysia)
Mohd Hafiz Zawawi (Universiti Tenaga Nasional College of Engineering, Kajang, Malaysia)

Soldering & Surface Mount Technology

ISSN: 0954-0911

Article publication date: 22 August 2024

17

Abstract

Purpose

This paper aims to investigate the effect of different beam distance by understanding laser beam influence on solder joint quality. The utilisation numerical-based simulations and experimental validation will help to minimise the formation of micro void in PTH that can lead to cracks and defects on passive devices.

Design/methodology/approach

The research uses a combination approach of numerical-based simulation using Finite Volume Method (FVM) and experimental validation to explore the impact of different laser beam distances on solder joint quality in PTH assemblies. The study visualises solder flow and identifies the optimal beam distance for placing a soldering workpiece and a suitable tolerance distance for inserting the solder wire.

Findings

The simulation results show the formation of micro void that occurs in PTH region with low volume fraction and unbalance heat concentration profile observed. The experimental results indicate that the focus point of the laser beam at a 99.0 mm distance yields the smallest beam size. Simulation visualisation demonstrates that the laser beam’s converging area at +4.6 mm from the focus point which provides optimal tolerance distances for placing the solder wire. The high-power laser diode exhibits maximum tolerance distance at 103.6 mm from the focus point where suitable beam distance for positioning of the soldering workpiece with 50% laser power. The simulation results align with the IPC-A-610 standard, ensuring optimal filling height, fillet shape with a 90° contact angle and defect-free.

Practical implications

This research provides implications for the industry by demonstrating the capability of the simulation approach to produce high-quality solder joints. The parameters, such as beam distance and power levels, offer practical guidelines for improving laser soldering processes in the manufacturing industry.

Originality/value

This study contributes to the field by combining high-power laser diode technology with numerical-based simulations to optimise the beam distance parameters for minimising micro void formation in the PTH region.

Keywords

Acknowledgements

Funding data: This work was partly supported by the following grants: Fundamental Research Grant Scheme (FRGS) (Grant No. 203/PMEKANIK/6071428), BJIM Matching and USM-WD CiA Lab Grant (No. 311/PMEKANIK/4402055), Research University (RU) (Grant No. 8014071) and Postgraduate Research Attachment (PGRA).

Citation

Nazarudin, M.Z.H., Abas, M.A., Wan Ahmad Kamil, W.M., Ahmad Nadzri, F.F., A. Zahiri, S., Mohd Sharif, M.F., Che Ani, F. and Zawawi, M.H. (2024), "Effect of different beam distances in laser soldering process: a numerical and experimental study", Soldering & Surface Mount Technology, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1108/SSMT-11-2023-0065

Publisher

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Emerald Publishing Limited

Copyright © 2024, Emerald Publishing Limited

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