Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Formability Characterization of Stitched Preform Toward Applying for Composite Structures

View through CrossRef
Abstract Characterization of the stitched textile preform is required for the prediction of textile preforms forming in the fabrication of composite structures for aerospace applications. The behavior of the preform in compression during resin injection into the preform is one of the critical issues in achieving a high-quality composite for space structures. This paper concentrates on the experimental and finite element analysis of compaction for textile preform. The investigation of mechanical properties of preforms during compression tests revealed that formability parameters of a preform can be altered by the stitching process. The load-deformation response, which is depicted in detail, had the greatest influence on the preform deformation. Compression of the stitched preform resulted in less tow undulation in the plane direction and more stitching thread undulation in the thickness direction, while the stitching thread stimulated the preform to endure more pressure. The results provided more detailed insights into the effects of compaction on other properties such as permeability and composite mechanical behavior, which is based on the internal geometry of 3D textile preforms.
Research Square Platform LLC
Title: Formability Characterization of Stitched Preform Toward Applying for Composite Structures
Description:
Abstract Characterization of the stitched textile preform is required for the prediction of textile preforms forming in the fabrication of composite structures for aerospace applications.
The behavior of the preform in compression during resin injection into the preform is one of the critical issues in achieving a high-quality composite for space structures.
This paper concentrates on the experimental and finite element analysis of compaction for textile preform.
The investigation of mechanical properties of preforms during compression tests revealed that formability parameters of a preform can be altered by the stitching process.
The load-deformation response, which is depicted in detail, had the greatest influence on the preform deformation.
Compression of the stitched preform resulted in less tow undulation in the plane direction and more stitching thread undulation in the thickness direction, while the stitching thread stimulated the preform to endure more pressure.
The results provided more detailed insights into the effects of compaction on other properties such as permeability and composite mechanical behavior, which is based on the internal geometry of 3D textile preforms.

Related Results

Test and analysis of stitched composite structures to assess damage containment capability
Test and analysis of stitched composite structures to assess damage containment capability
Integrally stitched composite technology shows promise in enhancing structural integrity of next-generation aircraft structures. The most recent generation of integrally stitched o...
TOWARD FULLY UNITIZED STITCHED INFUSED COMPOSITE AEROSPACE STRUCTURES
TOWARD FULLY UNITIZED STITCHED INFUSED COMPOSITE AEROSPACE STRUCTURES
Stitched resin infused composite structures offer a number of benefits over traditionally manufactured composite aerospace components. Among these benefits are reduced weight and r...
Experimental Study and Neural Network Model to Predict Formability of Magnesium Alloy AZ31B
Experimental Study and Neural Network Model to Predict Formability of Magnesium Alloy AZ31B
Magnesium alloy is an emerging smart metal used in various industries like automotive and aerospace industry, due to their lightweight and excellent strength-to-weight ratio. Forma...
Calculation and Design of Parameters for Four-step 3D Braided Preform with Complex Rectangular Cross Sections
Calculation and Design of Parameters for Four-step 3D Braided Preform with Complex Rectangular Cross Sections
The complex rectangular configuration refers to the geometrical shape jointed by two or more rectangles together. The calculation and design of parameters for 3D braided preform wi...
A Fast Simulation Model of Pantograph–Stitched-Catenary Interaction in Long-Distance Travel
A Fast Simulation Model of Pantograph–Stitched-Catenary Interaction in Long-Distance Travel
The increasing operation speed of high-speed trains allows the pantograph to continuously interact with the catenary over a long distance in a short time, and many new methods have...
Multiaxis 3D Woven Preform and Properties of Multiaxis 3D Woven and 3D Orthogonal Woven Carbon/Epoxy Composites
Multiaxis 3D Woven Preform and Properties of Multiaxis 3D Woven and 3D Orthogonal Woven Carbon/Epoxy Composites
In this study, multiaxis 3D woven preform was developed with five yarn sets: + bias, -bias, warp, filling, and z-yarns. The orientation of the yarns on the five axis have improved ...

Back to Top