Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Design with Ultra Strong Polyethylene Fibers"
written by Roelof Marissen,
published by Materials Sciences and Applications, Vol.2 No.5, 2011
has been cited by the following article(s):
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[3] Multi-parametric investigation on the properties of powder-coated UHMWPE/LDPE towpreg manufactured through wet-electrostatic technique
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[9] A representative volume element model for ultra-high-molecular-weight-polyethylene composites
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[10] On the Impact Response of UHMWPE Woven Fabrics: Experiments and Simulations
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[11] Post-metallocene catalysts for the synthesis of ultrahigh molecular weight polyethylene: Recent advances
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[12] State-of-the-Art Review of Capabilities and Limitations of Polymer and Glass Fibers Used for Fiber-Reinforced Concrete
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[13] High-Performance Fibres–A Review of Properties and IR-Spectra Visokozmogljiva vlakna–pregled lastnosti in IR-spektrov
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[14] 弹道防护用先进复合材料弹道响应的研究进展
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[15] Research progress on ballistic response of advanced composite for ballistic protection
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[16] State-of-the-Art Review of Capabilities and Limitations of Polymer and Glass Fibers Used for Fiber-Reinforced Concrete. Materials 2021, 14, 409
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[17] High-Performance Fibres-A Review of Properties and IR-Spectra.
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[18] Contrôle commande d'un robot ultra léger gonflable à actionneurs pneumatiques textiles
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[19] Control of an ultra-lightweight inflatable arm driven by fabric pneumatic actuators
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[20] Control of an ultra lightweight inflatable robot with fabric pneumatic actuators
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[21] بررسی تجربی تأثیر آسیب های داخلی بر روی مقاومت بالستیکی مواد مرکب لایه ای‎
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[22] Interfibrillar behavior in ultra-high molecular weight polyethylene (UHMWPE) single fibers subjected to tension
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[23] Molecular models for creep in oriented polyethylene fibers
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[24] Experimental Investigation of Transverse Loading Behavior of Ultra-High Molecular Weight Polyethylene Yarns
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[25] Influence of Dynamic Multiaxial Transverse Loading on Ultrahigh Molecular Weight Polyethylene Single Fiber Failure
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[26] Electrical and Mechanical Properties of the High-Permittivity Ultra-High-Molecular-Weight Polyethylene-Based Composite Modified by Carbon Nanotubes
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[27] Influence of ultrasonic treatment on mechanical and electro-physical characteristics of UHMWPE/MWCNT composites
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[28] Ultrahigh molecular weight polyethylene: Catalysis, structure, properties, processing and applications
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[30] Experimental Investigation of the Effect of Internal Damage on Ballistic Resistance of Layered Composites
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[31] Электрофизические и механические свойства композита с повышенной диэлектрической проницаемостью на основе сверхвысокомолекулярного …
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[33] Ultra-High-Molecular-Weight Polyethylene Rods as an Effective Design Solution for the Suspensions of a Cruiser-Class Solar Vehicle
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[34] Nonequilibrium Melt State of Ultra-High-Molecular-Weight Polyethylene: A Theoretical Approach on the Equilibrium Process
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[35] Employing Magnets to Improve the Force Exertion Capabilities of Adaptive Robot Hands in Precision Grasps
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[37] Flaw‐Insensitive Hydrogels under Static and Cyclic Loads
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[38] Formation and evolution of shish‐kebab structure during hot stretching in gel‐spun ultra‐high molecular weight polyethylene fibers with high concentration gel solution
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[39] A perspective on high-performance CNT fibres for structural composites
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[40] High strain rate compressive response of ultra-high molecular weight polyethylene fibre composites
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[41] Adhesion and interfacial characterization of biomimetically texturized lithium disilicate
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[42] Fracture behaviour of p-Aramid and ultra high molecular weight polyethylene based hybrid composite
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[43] Fatigue of hydrogels
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[44] Procesiranje i karakterizacija hibridnih kompozita na bazi polietilena visoke molarne mase
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[45] ULTRA-HIGH MOLECULAR WEIGHT POLYETHYLENE (UHMWPE) AS AN ADVANCED COMPO-NENT IN POLYMERIC COMPOSITE MATERIALS
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[46] Desenvolvimento e Caracterização de Compósitos Balísticos Laminados
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[47] Study on Preparation of Ultrahigh Molecular Weight Polyethylene Fibers
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[48] Mehanička svojstva hibridnog kompozita UHMWPE/EVA ojačanog vlaknima dobijenim elektropredenjem
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[49] 1.5 High Performance Polyethylene Fibers
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[50] Improved quasi-static twin-fiber transverse compression of several high-performance fibers
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[51] Drawing behavior and mechanical properties of ultra-high molecular weight polyethylene blends with a linear polyethylene wax
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[52] Extrusion Processing of Ultra-High Molecular Weight Polyethylene
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[53] Tailored bimodal ultra‐high molecular weight polyethylene particles
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[54] Design and performance of clothes for special purpose
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[55] Understanding the Thickness Effect on the Tensile Strength Property of Dyneema® HB26 Laminates
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[56] Ultra-thin large-aperture vacuum windows for millimeter wavelengths receivers
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[57] A Compact Ratchet Clutch Mechanism for Fine Tendon Termination and Adjustment
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[58] The evolution of crystalline structures during gel spinning of ultra-high molecular weight polyethylene fibers
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[59] Atomistic-scale simulations of mechanical behavior of suspended single-walled carbon nanotube bundles under nanoprojectile impact
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[60] Molecular origins of anisotropic shock propagation in crystalline and amorphous polyethylene
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[61] Mechanical properties of UHMWPE/EVA hybrid composite reinforced with fibers obtained by electrospinning
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[62] Aquaculture and Fisheries
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[63] Nanoscale interfibrillar adhesion in UHMWPE fibers
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[64] Effects of fabric folding and thickness on the impact behaviour of multi-ply UHMWPE woven fabrics
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[65] Structural evolution from shish-kebab to fibrillar crystals during hot-stretching process of gel spinning ultra-high molecular weight polyethylene fibers obtained from low …
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[66] The structure and mechanical property of silane-grafted-polyethylene/SiO2 nanocomposite fiber rope
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[67] Structural evolution from shish-kebab to fibrillar crystals during hot-stretching process of gel spinning ultra-high molecular weight polyethylene fibers obtained from low …
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[68] Influence of the particle size of the MgCl2 support on the performance of Ziegler catalysts in the polymerization of ethylene to ultra‐high molecular weight …
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[69] Analysis of composite materials based on polyethylene fibres for protective clothes
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[70] The structure and mechanical property of silane-grafted-polyethylene/SiO 2 nanocomposite fiber rope
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[71] Influence of the particle size of the MgCl2 support on the performance of Ziegler catalysts in the polymerization of ethylene to ultra-high molecular weight polyethylene and the resulting polymer properties
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[72] Wear performance of bulk oriented nanocomposites UHMWPE/FMWCNT and metal-polymer composite sliding bearings
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[73] Strength and strengthening of materials for rope applications
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[74] Processing and characterization of UHMWPE composite fibres with alumina particles in poly (ethylene-vinyl acetate) matrix
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[75] The effect of chitin nanocrystal on the structural transition of shish-kebab to fibrillar crystals of ultra-high molecular weight polyethylene/chitin nanocrystal fibers during …
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[76] Fabrication of oriented UHMWPE films using low solvent concentration
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[77] Structure and properties of gel-spun ultra-high molecular weight polyethylene fibers with high gel solution concentration
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[78] Dynamic behaviour of a flexible membrane tsunami Barrier with Dyneema
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[79] High-performance ballistic fibers: ultra-high molecular weight polyethylene (UHMWPE)
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[80] The Effect of Processing Conditions on the Performance of UHMWPE-Fibre Reinforced Polymer Matrix Composites
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[81] Comparative analysis of the tribological characteristics of canine joint cartilage and UHMWPE-based biomimetic materials
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[82] Effect of Gel Solution Concentration on the Structure and Properties of Gel-Spun Ultrahigh Molecular Weight Polyethylene Fibers
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[83] The Effect of Fiber Meso/Nanostructure on the Transverse Compression Response of Ballistic Fibers
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[84] Weibull Statistics Strength Investigation of Synthetic Link Chains Made from Ultra-Strong Polyethylene Fibers
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[85] Effects of extreme transverse deformation on the strength of UHMWPE single filaments for ballistic applications
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[86] Recent advances in modeling and experiments of Kevlar ballistic fibrils, fibers, yarns and flexible woven textile fabrics–a review
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[88] Durability of high-performance ballistic composites
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[89] Harnessing Airborne Wind Energy: Prospects and Challenges
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[90] Improvement of compression performance of fiber reinforced polymer
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[91] Polyolefin filmereinforced composites for personal protection
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[92] An in situ small-angle X-ray scattering study of the structural effects of temperature and draw ratio of the hot-drawing process on ultra-high molecular weight polyethylene fibers
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[95] Polyolefin film–reinforced composites for personal protection
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[97] A Single Fiber Peel Test to Measure Fibrillar Interactions in Ultra High Molecular Weight Polyethylene Fibers
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[98] Study on ballistic performance of hybrid soft body armour
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[99] Structural hierarchy and surface morphology of highly drawn ultra high molecular weight polyethylene fibers studied by atomic force microscopy and wide angle X-ray …
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[100] Hydrolysed polar terrain ice aerobot mission platform
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[101] Experimental investigation of the mechanical properties of dry microbraids and microbraid reinforced polymer composites
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[102] Investigation on Steam-based System for Creepforming Dyneema Hemisphere Preform
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[104] Theory of the deformation of aligned polyethylene
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[105] Ultra-high-molecular-weight polyethylene fiber reinforced dental composites: Effect of fiber surface treatment on mechanical properties of the composites
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[106] The effectiveness of combined gripping method in tensile testing of UHMWPE single yarn
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[107] Chain Ends and the Ultimate Strength of Polyethylene Fibers
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[108] Reinforcement of bulk ultrahigh molecular weight polyethylene by fluorinated carbon nanotubes insertion followed by hot pressing and orientation stretching
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[111] Dynamic behaviour of a flexible membrane tsunami Barrier with Dyneema®
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[112] Mechanical and Thermal Characterizations of Crystalline Polymer Micro/Nanofibers
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[114] Structural Mechanics Models for Molecules and Macromolecules
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[115] Thermal Response of UHMWPE Materials in a Flash Flame Test Environment
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[116] INVESTIGATION OF COMPRESSIVE FAILURE IN ULTRA-HIGH MOLECULAR WEIGHT POLYETHYLENE (DYNEEMA®) FIBRE COMPOSITES
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[120] Mechanical enhancement of UHMWPE fibers by coating with carbon nanoparticles
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[122] Transverse compression of high-performance ballistic fibers
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[123] Fractographic observations on Dyneema? composites under ballistic impact
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