Mechanical and Rheological Properties of Bamboo Pulp Fiber Reinforced High Density Polyethylene Composites: Influence of Nano CaCO3 Treatment and Manufacturing Process with Different Pressure Ratings (open access)

Mechanical and Rheological Properties of Bamboo Pulp Fiber Reinforced High Density Polyethylene Composites: Influence of Nano CaCO3 Treatment and Manufacturing Process with Different Pressure Ratings

Article investigating the effect of the relative motion of nano CaCO3 reinforced bamboo pulp fiber (BPF)/HDPE composite components on the mechanical performance.
Date: August 17, 2021
Creator: Wang, Cuicui; Wei, Xin; Smith, Lee M.; Wang, Ge; Zhang, Shuangbao & Cheng, Haitao
System: The UNT Digital Library
Optimization of production parameters of particle gluing on internal bonding strength of particleboards using machine learning technology (open access)

Optimization of production parameters of particle gluing on internal bonding strength of particleboards using machine learning technology

This article presents a study using grey relation analysis (GRA) and support vector regression (SVR) algorithm to develop a prediction model to accurately predict internal bond strength (IB) of particleboard production (PB) through particle gluing processing parameters in a PB production line.
Date: April 9, 2022
Creator: Zhang, Beilong; Hua, Jun; Cai, Liping; Gao, Yunbao & Li, Yilin
System: The UNT Digital Library
Preparation of functional fiber hybrid enhanced high strength and multifunctional protein based adhesive (open access)

Preparation of functional fiber hybrid enhanced high strength and multifunctional protein based adhesive

Article discusses how protein based adhesive is limited by poor mechanical properties and water resistance. This simple and green preparation method provided a new strategy for the production of high-performance, multifunctional and economically effective SM based adhesive.
Date: October 31, 2022
Creator: Zhou, Ying; Zeng, Guodong; Zhang, Fudong; Tang, Zhijie; Luo, Jing; Li, Kuang et al.
System: The UNT Digital Library
Vibrations Evaluation of Functionally Graded Porous Beams in Thermal Surroundings by Generalized Differential Quadrature Method (open access)

Vibrations Evaluation of Functionally Graded Porous Beams in Thermal Surroundings by Generalized Differential Quadrature Method

Article is a study investigating how to obtain the natural frequency of functionally graded porous beams simply supported on an elastic substrate in thermal surroundings by the theory of third-order shear deformation. This article is part of the special issue titled Dynamic Analysis and Vibration Control of Mechanical Structures Coupled with Rotational Systems.
Date: December 31, 2021
Creator: Khakpour, Mahdi; Bazargan-Lari, Yousef; Zahedinejad, Parham & Kazemzadeh-Parsi, Mohammad-Javad
System: The UNT Digital Library