The Structure and Performance of Short Glass Fiber/High-Density Polyethylene/Polypropylene Composite Pipes Extruded Using a Shearing–Drawing Compound Stress Field

Glass fiber reinforced polyolefin composite materials have many advantages regarding their performance and have been widely used in many fields. However, there are few reports on the simultaneously bidirectional self-enhancement of glass fiber reinforced polyethylene/polypropylene composite pipe. To...

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Main Authors: Yi Yuan, Changdong Liu, Meina Huang
Format: Article
Language:English
Published: MDPI AG 2019-04-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/12/8/1323
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spelling doaj-787755be720840e1b4bab62a1d49a4d42020-11-24T21:52:16ZengMDPI AGMaterials1996-19442019-04-01128132310.3390/ma12081323ma12081323The Structure and Performance of Short Glass Fiber/High-Density Polyethylene/Polypropylene Composite Pipes Extruded Using a Shearing–Drawing Compound Stress FieldYi Yuan0Changdong Liu1Meina Huang2Chongqing Key Laboratory of Manufacturing Equipment Mechanism Design and Control, Chongqing 400067, ChinaDongfeng Sokon Motor Co., Ltd., Chongqing 405321, ChinaChongqing Key Laboratory of Manufacturing Equipment Mechanism Design and Control, Chongqing 400067, ChinaGlass fiber reinforced polyolefin composite materials have many advantages regarding their performance and have been widely used in many fields. However, there are few reports on the simultaneously bidirectional self-enhancement of glass fiber reinforced polyethylene/polypropylene composite pipe. To self-reinforce the pipe’s circular and axial properties simultaneously, short glass fiber reinforced high-density polyethylene/polypropylene (SGF/HDPE/PP) pipes were extruded using a shearing–drawing two-dimensional compound stress field pipe-extrusion device. The effects of the rotating speed of the rotating shear sleeve on the orientation, heat behavior, microstructure, and tensile strength of the pipe were investigated in this paper. The microstructure was observed using scanning electron microscopy (SEM), and the crystal diffraction was analyzed using a polycrystalline X-ray diffractometer (WAXD), the heat behavior was measured using a differential scanning calorimeter (DSC), and the tensile strength was tested using a universal electronic tensile testing machine. The results showed that the shear induction effect induced by the shear rotating promoted the formation of the oriented structure of the crystal plate and SGFs along the circular and axial directions of the pipe simultaneously. Furthermore, it increased the crystallinity of the system, and self-improved the pipe’s circular and axial tensile strength at the same time.https://www.mdpi.com/1996-1944/12/8/1323shearing–drawing compound stress fieldshear rotating speedshear inducementtwo-dimensional self-reinforcement pipe-extrusionshort glass fiber/high-density polyethylene/polypropylene composite pipe
collection DOAJ
language English
format Article
sources DOAJ
author Yi Yuan
Changdong Liu
Meina Huang
spellingShingle Yi Yuan
Changdong Liu
Meina Huang
The Structure and Performance of Short Glass Fiber/High-Density Polyethylene/Polypropylene Composite Pipes Extruded Using a Shearing–Drawing Compound Stress Field
Materials
shearing–drawing compound stress field
shear rotating speed
shear inducement
two-dimensional self-reinforcement pipe-extrusion
short glass fiber/high-density polyethylene/polypropylene composite pipe
author_facet Yi Yuan
Changdong Liu
Meina Huang
author_sort Yi Yuan
title The Structure and Performance of Short Glass Fiber/High-Density Polyethylene/Polypropylene Composite Pipes Extruded Using a Shearing–Drawing Compound Stress Field
title_short The Structure and Performance of Short Glass Fiber/High-Density Polyethylene/Polypropylene Composite Pipes Extruded Using a Shearing–Drawing Compound Stress Field
title_full The Structure and Performance of Short Glass Fiber/High-Density Polyethylene/Polypropylene Composite Pipes Extruded Using a Shearing–Drawing Compound Stress Field
title_fullStr The Structure and Performance of Short Glass Fiber/High-Density Polyethylene/Polypropylene Composite Pipes Extruded Using a Shearing–Drawing Compound Stress Field
title_full_unstemmed The Structure and Performance of Short Glass Fiber/High-Density Polyethylene/Polypropylene Composite Pipes Extruded Using a Shearing–Drawing Compound Stress Field
title_sort structure and performance of short glass fiber/high-density polyethylene/polypropylene composite pipes extruded using a shearing–drawing compound stress field
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2019-04-01
description Glass fiber reinforced polyolefin composite materials have many advantages regarding their performance and have been widely used in many fields. However, there are few reports on the simultaneously bidirectional self-enhancement of glass fiber reinforced polyethylene/polypropylene composite pipe. To self-reinforce the pipe’s circular and axial properties simultaneously, short glass fiber reinforced high-density polyethylene/polypropylene (SGF/HDPE/PP) pipes were extruded using a shearing–drawing two-dimensional compound stress field pipe-extrusion device. The effects of the rotating speed of the rotating shear sleeve on the orientation, heat behavior, microstructure, and tensile strength of the pipe were investigated in this paper. The microstructure was observed using scanning electron microscopy (SEM), and the crystal diffraction was analyzed using a polycrystalline X-ray diffractometer (WAXD), the heat behavior was measured using a differential scanning calorimeter (DSC), and the tensile strength was tested using a universal electronic tensile testing machine. The results showed that the shear induction effect induced by the shear rotating promoted the formation of the oriented structure of the crystal plate and SGFs along the circular and axial directions of the pipe simultaneously. Furthermore, it increased the crystallinity of the system, and self-improved the pipe’s circular and axial tensile strength at the same time.
topic shearing–drawing compound stress field
shear rotating speed
shear inducement
two-dimensional self-reinforcement pipe-extrusion
short glass fiber/high-density polyethylene/polypropylene composite pipe
url https://www.mdpi.com/1996-1944/12/8/1323
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