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Principles of polymer engineering

TLDR
In this article, the elastic properties of polymeric solids and their properties of rubber are discussed. But they focus on the structure of the molecule rather than the properties of the solids.
Abstract
Introduction. 1: Structure of the molecule. 2: Structure of polymeric solids. 3: The elastic properties of rubber. 4: Viscoelasticity. 5: Yield and fracture. 6: Reinforced polymers. 7: Forming. 8: Design. Further reading, Answers, Index

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Polifenilen Sülfid (PPS) Lifleri

TL;DR: Yuksek performansli lifer arasinda onemli liflerinden biri olan polifenilen sulfid (PPS) lifleri, kimyasallara dayanimi ve termal kararligi ile yUKsek performsli lif pazarininonemli linden biridir.
Dissertation

Improved material performance in floorball sticks Implementation of the Finite Element Method for helicallyfiber-oriented laminae in cylindrical hollow composites

TL;DR: In this article, an implementation of the Finite Element Method (FEM) is used to simulate the impact resistance of floorball stick shafts in play, and the FEM implementation can be used for other variations of the material structure such as volume fractions of fiber and matrix, lamina stacking sequence and ply angles, as well as different load cases.
Journal Article

Creep Behavior in Fiber-Reinforced Epoxy (DGEBA) Composites

TL;DR: The creep and flextural test were measured in this paper for one and two layers of Eglass fiber with volume fraction rate of (10, 20, 30, and 40%) in orientation of (0-90 o ) immersed in epoxy (DGEBA) resin with total thickness of 4mm.
Journal ArticleDOI

Effect of Temperature and Nickel Concentration on the Electrical and Dielectric Properties of Polyethylene-Nickel Composites

TL;DR: In this article, the effect of temperature range of 298 K to 348 K and volume filler content on electrical properties of polyethylene PE filled with nickel Ni powders has been investigated.
Journal ArticleDOI

Bending strength of lignocellulosic materials in softening condition

TL;DR: In this paper, the softening behavior and viscoelastic properties of wood, rattan, and bamboo as lignocellulosic materials were investigated, and the results indicated that rattan was more easily bent, followed by bamboo and then wood.
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