Javascript must be enabled to continue!
Estimating Young Modulus of Elasticity of Terminalia catappa: A Machine Learning Approach
View through CrossRef
The purpose of this research was to evaluate the potential of Magnetic Resonance Spectroscopy (MRS) in estimating Young’s modulus of elasticity of wood species. To do so, Terminalia catappa, a wood species of common occurrence was chosen and its mechanical properties such as bending strength, compression parallel to the grain, and shear parallel to the grain properties were determined using testing methods for small and clear specimens of wood with the British (BS 373, 1957) and American Society of Testing Materials’ specifications (ASTM D143, 1983s. The results showed that at 18% moisture content the wood has a density of 520 kg/m3 with a mean modulus of rupture of 86.04 Mpa, compressive strength parallel to the grain of 42.02 Mpa, modulus of elasticity of 10,500 Mpa, and shear strength parallel to the grain of 16.42 N/mm2. This dataset was used on machine learning approaches such as decision tree and random forest. The estimated value of Young’s modulus using the machine learning models varies between 1000 to 13000 MPa. The obtained results indicated that the use of Magnetic Resonance Spectroscopy (MRS) is an efficient tool for predicting Wood-Young’s modulus. This research paves the way for further investigations on the application of MRS and machine learning for predicting a wider range of wood properties. By employing machine learning techniques such as decision trees and random forests, researchers can develop robust models for estimating Young's modulus in other wood species. This approach allows for leveraging large datasets that encompass various influencing factors, ultimately leading to more accurate predictions compared to traditional methods.
Title: Estimating Young Modulus of Elasticity of Terminalia catappa: A Machine Learning Approach
Description:
The purpose of this research was to evaluate the potential of Magnetic Resonance Spectroscopy (MRS) in estimating Young’s modulus of elasticity of wood species.
To do so, Terminalia catappa, a wood species of common occurrence was chosen and its mechanical properties such as bending strength, compression parallel to the grain, and shear parallel to the grain properties were determined using testing methods for small and clear specimens of wood with the British (BS 373, 1957) and American Society of Testing Materials’ specifications (ASTM D143, 1983s.
The results showed that at 18% moisture content the wood has a density of 520 kg/m3 with a mean modulus of rupture of 86.
04 Mpa, compressive strength parallel to the grain of 42.
02 Mpa, modulus of elasticity of 10,500 Mpa, and shear strength parallel to the grain of 16.
42 N/mm2.
This dataset was used on machine learning approaches such as decision tree and random forest.
The estimated value of Young’s modulus using the machine learning models varies between 1000 to 13000 MPa.
The obtained results indicated that the use of Magnetic Resonance Spectroscopy (MRS) is an efficient tool for predicting Wood-Young’s modulus.
This research paves the way for further investigations on the application of MRS and machine learning for predicting a wider range of wood properties.
By employing machine learning techniques such as decision trees and random forests, researchers can develop robust models for estimating Young's modulus in other wood species.
This approach allows for leveraging large datasets that encompass various influencing factors, ultimately leading to more accurate predictions compared to traditional methods.
Related Results
Possible amelioration of oxidative stress damage via cyclo-oxygenase pathway by aqueous extract of Terminalia catappa leaves in alloxan induced diabetic rats
Possible amelioration of oxidative stress damage via cyclo-oxygenase pathway by aqueous extract of Terminalia catappa leaves in alloxan induced diabetic rats
Cellular damage due to oxidative stress had been implicated in the pathogenesis of many diseases including diabetes mellitus. This study was to investigate possible amelioration of...
Aphrodisiac, androgenic and libido enhancing activities of Terminalia catappa leaf extracts in Delta-9 tetra hydro carnnabinol induced erectile dysfunction in male Wistar rats
Aphrodisiac, androgenic and libido enhancing activities of Terminalia catappa leaf extracts in Delta-9 tetra hydro carnnabinol induced erectile dysfunction in male Wistar rats
Introduction: Erectile dysfunction is the repeated inability to sustain erection firm enough for sexual intercourse while an aphrodisiac is an agent (food/drug) that arouses sexual...
Chemical Composition and Antidiabetic Activity of the Leaves of Terminalia catappa Linn. Grown in Dutsin-Ma
Chemical Composition and Antidiabetic Activity of the Leaves of Terminalia catappa Linn. Grown in Dutsin-Ma
The main objective of this study is the investigation of the antidiabetic properties of the leaf of Terminalia catappa, a medicinal plant useful for the treatment of various diseas...
Terminalia catappa flour extract mitigated monosodium glutamate intoxicated rats’ kidney biofunction and histology
Terminalia catappa flour extract mitigated monosodium glutamate intoxicated rats’ kidney biofunction and histology
Objective: This study investigated the Terminalia Catappa flour mitigated monosodium glutamate intoxicated rats’ kidney biofunction and histology. Materials and Methods: Twenty-fou...
THÀNH PHẦN HÓA HỌC VỎ CÂY BÀNG (HỌ TRÂM BẦU)
THÀNH PHẦN HÓA HỌC VỎ CÂY BÀNG (HỌ TRÂM BẦU)
Cây Bàng tên khoa học là Terminalia catappa L. thuộc họ Trâm bầu (Combretaceae). Cây Bàng là loài cây thân gỗ sống chủ yếu ở vùng nhiệt đới. Cây Bàng đã được biết đến là cây thuốc ...
Secondary Metabolites from Terminalia Catappa and Evaluation of its Bioactivities
Secondary Metabolites from Terminalia Catappa and Evaluation of its Bioactivities
Bangladesh is a land of medicinal plants. Terminalia catappa is an important medicinal plant of Bangladesh which is used for various pharmacological and biological activities like ...
Pemanfaatan Pektin Kulit Pisang Kepok Untuk Pembuatan Edible Film Dengan Penambahan CMC dan Plasticizer Sorbitol
Pemanfaatan Pektin Kulit Pisang Kepok Untuk Pembuatan Edible Film Dengan Penambahan CMC dan Plasticizer Sorbitol
Abstrak: Penelitian ini bertujuan untuk mengkaji karakteristik edible film berbahan dasar pektin kulit pisang kepok terhadap pengaruh variasi konsentrasi sorbitol. Prosedur penelit...
Estimating the elastic modulus of concrete made with artificially
manufactured lightweight aggregates
Estimating the elastic modulus of concrete made with artificially
manufactured lightweight aggregates
Discusses the results of a study of the moduli of elasticity of
concretes made with artificially manufactured lightweight aggregates
subjected to uniaxial compression and uniaxial ...

