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Artykuły w czasopismach na temat "High-molecular-weight polyethylene (рE) yarn"

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Галавська, Людмила, Julia Kharchenko, Марія Федорівна Кравчук та Larisa Tretiakova. "СТІЙКІСТЬ ДО ПРОКОЛУ ТА ПРОДАВЛЮВАННЯ КУЛЬКОЮ ТРИКОТАЖНИХ МАТЕРІАЛІВ ДЛЯ ВИГОТОВЛЕННЯ ЗАХИСНИХ РУКАВИЧОК". Індустрія моди 2 (16 травня 2025): 43–53. https://doi.org/10.5281/zenodo.15438197.

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Мета. Дослідити опір проколу стрижнем та продавлюванню кулькою трикотажних матеріалів з пряжі з мета-арамідних (МА) волокон, пара-арамідних (рА) та високомолекулярних поліетиленових (рЕ) ниток, вироблених на двофонтурномуплосков’язальному обладнанні 8 класу типу рукавичковий автомат ПА-8.
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Shah, Karan, and Subramani Sockalingam. "Experimental Investigation of Transverse Loading Behavior of Ultra-High Molecular Weight Polyethylene Yarns." Fibers 8, no. 10 (2020): 66. http://dx.doi.org/10.3390/fib8100066.

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Ultra-high molecular weight polyethylene (UHMWPE) Dyneema® SK-76 fibers are widely used in personnel protection systems. Transverse ballistic impact onto these fibers results in complex multiaxial deformation modes such as axial tension, axial compression, transverse compression, and transverse shear. Previous experimental studies on single fibers have shown a degradation of tensile failure strain due to the presence of such multi-axial deformation modes. In this work, we study the presence and effects of such multi-axial stress-states on Dyneema® SK-76 yarns via transverse loading experiments
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Sheng, Chunfu, Guifang He, Zhongxian Hu, et al. "Yarn on yarn abrasion failure mechanism of ultrahigh molecular weight polyethylene fiber." Journal of Engineered Fibers and Fabrics 16 (January 2021): 155892502110527. http://dx.doi.org/10.1177/15589250211052766.

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Yarns of fiber assemblies such as ropes would abrade with each other during repeated stretching or bending. The yarn on yarn abrasion failure is a main reason for the final assembly failure as the result of the relative movement to each other. To explore the influencing factors and failure mechanism, this work, taking the Ultra High Molecular Weight Polyethylene Fiber (UHMWPE) as the research object, discussed the influences of abrading frequency and the yarn tension on its abrasion life. Based on the observation and analysis of the rising temperatures from abrasion, the abrasion fragments, an
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Guo, Weinan, Hao Chang, Jiahuan Ni, et al. "Low-velocity impact performance of ultra-high molecular weight polyethylene/aramid-polyester core-spun yarn hybrid composites." Journal of Industrial Textiles 53 (January 2023): 152808372311540. http://dx.doi.org/10.1177/15280837231154020.

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The impact resistant composite has excellent energy absorption efficiency, but the structure and material selection of the composite have great influence on its energy absorption. In order to explore the effect of structure on the energy absorption of Ultra-high molecular weight polyethylene (UHMWPE) composites and the application potential of new aramid core-spun yarn and new polyester core-spun yarn in impact resistant composites. The UHMWPE composites with different fiber orientations and stacking sequences structure, as well as the new hybrid composites containing aramid core-spun yarn and
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Wang, Hongxu, Paul J. Hazell, Krishna Shankar, et al. "Tensile properties of ultra-high-molecular-weight polyethylene single yarns at different strain rates." Journal of Composite Materials 54, no. 11 (2019): 1453–66. http://dx.doi.org/10.1177/0021998319883416.

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This paper presents the details of experimental work on characterising the tensile properties of UHMWPE (Spectra® 1000) single yarns at different strain rates from 3.3 × 10−5 to 400/s. According to the measured stress–strain curves, there was a transition from ductile to brittle behaviour as the strain rate increased from 3.3 × 10−5 to 0.33/s; the tensile properties were highly sensitive to strain rate in this range. Specifically, the tensile strength and Young’s modulus increased distinctly with increasing strain rate while the failure strain and toughness decreased. However, these tensile pr
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Li, Mengru, Peng Wang, François Boussu, and Damien Soulat. "Effect of Fabric Architecture on Tensile Behaviour of the High-Molecular-Weight Polyethylene 3-Dimensional Interlock Composite Reinforcements." Polymers 12, no. 5 (2020): 1045. http://dx.doi.org/10.3390/polym12051045.

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As promising fibrous reinforcements in the thick composites manufacturing, 3-dimensional warp interlock fabrics (3DWIFs) are recognised more and more in the industry for their outstanding mechanical properties compared to the 2D laminates. The present work shows the influence of the fabric’s architecture on the tensile behaviour of 3DWIFs. Five kinds of 3D fabrics with different interlock structures have been designed according to the main category of binding warp yarn evolution. These five 3DWIFs, containing both binding and stuffer warp yarns and produced with the same warp and weft densitie
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Chabba, S., M. van Es, E. J. van Klinken, et al. "Accelerated aging study of ultra high molecular weight polyethylene yarn and unidirectional composites for ballistic applications." Journal of Materials Science 42, no. 8 (2007): 2891–93. http://dx.doi.org/10.1007/s10853-007-1617-7.

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Gong, Ting, Iurie Curosu, Frank Liebold, et al. "Tensile Behavior of High-Strength, Strain-Hardening Cement-Based Composites (HS-SHCC) Reinforced with Continuous Textile Made of Ultra-High-Molecular-Weight Polyethylene." Materials 13, no. 24 (2020): 5628. http://dx.doi.org/10.3390/ma13245628.

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The paper at hand presents an investigation of the tensile behavior of high-strength, strain-hardening cement-based composites (HS-SHCC), reinforced with a single layer of continuous, two-dimensional textile made of ultra-high molecular weight polyethylene (UHMWPE). Uniaxial tension tests were performed on the bare UHMWPE textiles, on plain HS-SHCC, and on the hybrid fiber-reinforced composites. The bond properties between the textile yarns and the surrounding composite were investigated in single-yarn pullout experiments. In order to assess the influence of bond strength between the yarn and
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Dai, Hongmei, Chao Jia, Zexu Hu, et al. "Enhanced Electrothermal Properties of Core–Sheath Lignin-Derived Carbon Nanotube Yarns with UHMWPE Insulation." Polymers 17, no. 4 (2025): 537. https://doi.org/10.3390/polym17040537.

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A critical challenge in wearable electrothermal textiles is achieving effective insulation while maintaining sheath flexibility, which is essential for enhancing the mechanical properties and durability of conductive materials under everyday conditions, such as washing, stretching, and twisting. In this work, we employ a coaxial tubular braiding technique to coat a high-conductivity carbon nanotube (CNT) yarn with a high-strength insulation layer made of ultra-high-molecular-weight polyethylene (UHMWPE) multifilaments, resulting in a core–sheath-structure CNT yarn with excellent electrothermal
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Xiao, Shenglei, Charles Lanceron, Peng Wang, Damien Soulat, and Hang Gao. "Mechanical and thermal behaviors of ultra-high molecular weight polyethylene triaxial braids: the influence of structural parameters." Textile Research Journal 89, no. 16 (2018): 3362–73. http://dx.doi.org/10.1177/0040517518811944.

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Recently, triaxial braids made from ultra-high molecular weight polyethylene (UHMWPE) have been recognized as one of the most popular composite reinforcements in the aerospace and defense fields. To further explore the mechanical characteristics of this material, a detailed experimental study on tensile behavior is reported in this paper. The triaxial braids show a “double-peak” phenomenon in tensile strength and deformation, caused by axial yarns and the in-plane shearing of bias yarns. The evolution of the braiding angle, measured during these tensile tests, is discussed according to the bra
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Streszczenia konferencji na temat "High-molecular-weight polyethylene (рE) yarn"

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Del Vecchio, C., H. Yan, D. Rieth, et al. "Advances Towards Replacing Top Chain with Fiber Rope for Offshore Moorings: A DeepStar Study." In Offshore Technology Conference. OTC, 2024. http://dx.doi.org/10.4043/35339-ms.

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Abstract Previous studies suggest that chain failures may contribute to about half of the mooring failures sustained by permanent mooring systems [Ma et al. 2013. OTC-24025]. DeepStar commissioned a study to generate data to prevent failures in fiber ropes if they were to replace top chain. The effect of fairlead sheaves was not considered in the present study. For fiber ropes brought close to water surface, or even above water, the key degradation processes identified as possible causes of failure were marine growth, and the effects of temperature and Ultra-Violet (UV) radiation. Samples of c
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