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Article

Comparison of Stiffness Measurements of Wooden Rods Using Acoustic Guided Wave and Static Bending Test Techniques

1
Colleges of Sciences, Massey University, Auckland 6330, New Zealand
2
Department of Mechanical Engineering, National University of Singapore, Singapore 117575, Singapore
3
School of Engineering, New Zealand Skills and Education College, Auckland 1010, New Zealand
4
Department of Mechanical Engineering, Auckland University of Technology, Auckland 1010, New Zealand
5
Department of Electrical & Electronic Engineering, Auckland University of Technology, Auckland 1010, New Zealand
*
Author to whom correspondence should be addressed.
Sensors 2025, 25(16), 4930; https://doi.org/10.3390/s25164930 (registering DOI)
Submission received: 6 July 2025 / Revised: 31 July 2025 / Accepted: 7 August 2025 / Published: 9 August 2025
(This article belongs to the Section Sensor Networks)

Abstract

Traditionally, mechanical bending tests are used to measure the stiffness of lumber, which is generally represented by the static modulus of elasticity (MoE). However, it is desirable to measure the stiffness of wood before it is processed into lumber. Acoustic nondestructive testing techniques are therefore the main techniques used by the wood industry to estimate the dynamic MoE of wood. The acoustic resonance technique is employed for measuring the MoE in felled logs and lumber. In contrast, the acoustic time-of-flight (ToF) technique is traditionally used for MoE measurements on standing trees and seedlings. However, the ToF technique overestimates stiffness compared to both resonance and static bending tests (considered the gold standard). In this work, a guided wave technique is used to measure the stiffness of wooden rods. This work is the first to compare the MoE values obtained using static bending tests (gold standard) with those obtained using acoustic resonance, ToF, and guided wave methods. Measurements were performed on 16 mm diameter radiata pine wooden rods. For comparison, measurements were also performed on acetal, aluminium, and steel rods of similar dimensions. The findings show that stiffness measurements obtained using the proposed guided wave method are more accurate than those obtained using the traditional ToF method and closely match those of the resonance method across all materials. The measurements from the ToF method were overestimated compared to resonance, guided wave, and static bending methods. The findings show the potential for the guided wave method to be used as an alternative method to provide more accurate stiffness measurements in juvenile trees/seedlings compared with the traditional ToF technique.
Keywords: radiata pine; rod velocity; rod; ToF; guided waves; MoE radiata pine; rod velocity; rod; ToF; guided waves; MoE

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MDPI and ACS Style

Bakar, A.H.A.; Legg, M.; Arif, K.M.; Konings, D.; Alam, F. Comparison of Stiffness Measurements of Wooden Rods Using Acoustic Guided Wave and Static Bending Test Techniques. Sensors 2025, 25, 4930. https://doi.org/10.3390/s25164930

AMA Style

Bakar AHA, Legg M, Arif KM, Konings D, Alam F. Comparison of Stiffness Measurements of Wooden Rods Using Acoustic Guided Wave and Static Bending Test Techniques. Sensors. 2025; 25(16):4930. https://doi.org/10.3390/s25164930

Chicago/Turabian Style

Bakar, Adli Hasan Abu, Mathew Legg, Khalid Mahmood Arif, Daniel Konings, and Fakhrul Alam. 2025. "Comparison of Stiffness Measurements of Wooden Rods Using Acoustic Guided Wave and Static Bending Test Techniques" Sensors 25, no. 16: 4930. https://doi.org/10.3390/s25164930

APA Style

Bakar, A. H. A., Legg, M., Arif, K. M., Konings, D., & Alam, F. (2025). Comparison of Stiffness Measurements of Wooden Rods Using Acoustic Guided Wave and Static Bending Test Techniques. Sensors, 25(16), 4930. https://doi.org/10.3390/s25164930

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