Effects of the temperature and strain rate on mechanical properties of plain-woven carbon fiber reinforced thermoplastic composites
WANG Kai
JIA Xiaohang
LUO Junjie
WANG Zhen
WANG Qinhuai
Abstract:[Objective]A study was conducted to investigate the effects of temperature and strain rate on the mechanical properties of woven carbon fiber-reinforced thermoplastic composites,and to clarify the action laws of the two factors on the tensile and shear properties as well as the failure modes of the material.[Methods]Taking the woven carbon fiber-reinforced polypropylene laminates prepared by the hot-press molding process as the research object,two types of tests were designed and carried out:one was the quasi-static test under different temperature conditions,and the other was the dynamic test under normal temperature environment.The mechanical property data of the material were obtained through systematic testing and analysis.[Results]It was found from the study that the tensile elastic modulus,tensile strength and shear modulus of the material showed a consistent variation trend:they decreased gradually with the increase of temperature and increased gradually with the increase of strain rate.However,the shear strength exhibited a special difference:the quasi-static shear strength was significantly higher than the dynamic shear strength.This phenomenon was closely related to the post-yield hardening behavior caused by fiber rotation.In addition,significant effects of temperature and strain rate on the failure modes of both tensile specimens and shear specimens were observed.
Keywords:TemperatureStrain rateWoven carbon fiberThermoplastic compositeMechanical property
Publication Date:2026-02-15
Online Publishing Date:2026-09-12(First online date of this platform, not the publication date of the document)
Pages:9( 126-134 )
