Works matching Carbon fibers
Results: 5000
回收碳纤维对混凝土电热性能的影响.
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- Acta Materiae Compositae Sinica, 2024, v. 41, n. 12, p. 6661, doi. 10.13801/j.cnki.fhclxb.20240324.001
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Upcycling of Carbon Fiber/Thermoset Composites into High‐Performance Elastomers and Repurposed Carbon Fibers.
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- Angewandte Chemie, 2024, v. 136, n. 22, p. 1, doi. 10.1002/ange.202403972
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Factory site analysis of respirable fibers generated during the process of cutting and grinding of carbon fibers-reinforced plastics.
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- International Archives of Occupational & Environmental Health, 2022, v. 95, n. 7, p. 1557, doi. 10.1007/s00420-022-01840-0
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CATALYSTS FOR DEHYDRATION OF ISOPROPYL ALCOHOL BASED ON CHLORINATED CARBON FIBER.
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- Issues of Chemistry & Chemical Technology / Voprosy Khimii & Khimicheskoi Tekhnologii, 2022, v. 7, n. 3, p. 3, doi. 10.32434/0321-4095-2022-142-3-3-11
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Recovery of carbon fiber from carbon fiber reinforced plastics using alkali molten hydroxide.
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- Scientific Reports, 2025, v. 14, n. 1, p. 1, doi. 10.1038/s41598-024-84293-4
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Efficient recovery of carbon fibers from carbon fiber-reinforced polymers using direct discharge electrical pulses.
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- Scientific Reports, 2024, v. 14, n. 1, p. 1, doi. 10.1038/s41598-024-76955-0
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Studies on Recycling Silane Controllable Recovered Carbon Fiber from Waste CFRP.
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- Sustainability (2071-1050), 2022, v. 14, n. 2, p. 700, doi. 10.3390/su14020700
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基于电阻抗断层成像的碳纤维增强 复合材料定量化损伤研究.
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- Light Industry Machinery, 2024, v. 42, n. 5, p. 35, doi. 10.3969/j.issn.1005-2895.2024.05.005
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增材制造用碳纤维预浸料制备技术研究进展.
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- Acta Materiae Compositae Sinica, 2025, v. 42, n. 1, p. 1, doi. 10.13801/j.cnki.fhclxb.20240528.002
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碳纤维截面特性对碳纤维/环氧树脂 复合材料压缩强度的影响.
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- Acta Materiae Compositae Sinica, 2021, v. 38, n. 12, p. 4052, doi. 10.13801/j.cnki.fhclxb.20210203.001
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碳纤维增强聚醚醚酮复合材料的 形状记忆效应.
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- Acta Materiae Compositae Sinica, 2021, v. 38, n. 9, p. 2839, doi. 10.13801/j.cnki.fhclxb.20201229.001
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结构储电碳纤维复合材料研究进展.
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- Acta Materiae Compositae Sinica, 2021, v. 38, n. 1, p. 16, doi. 10.13801/j.cnki.fhclxb.20200921.006
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碳纤维及树脂基复合材料产业发展面临的机遇与挑战.
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- Acta Materiae Compositae Sinica, 2020, v. 37, n. 11, p. 2700, doi. 10.13801/j.cnki.fhclxb.20200824.005
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碳纤维增强树脂复合材料细观蠕变性能.
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- Acta Materiae Compositae Sinica, 2020, v. 37, n. 8, p. 1861, doi. 10.13801/j.cnki.fhclxb.20191118.001
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碳纤维-尼龙6混编织物复合材料的制备及性能.
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- Acta Materiae Compositae Sinica, 2019, v. 36, n. 11, p. 2487, doi. 10.13801/j.cnki.fhclxb.20190123.002
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高刚度环氧树脂与高模碳纤维的界面相容和 性能匹配.
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- Acta Materiae Compositae Sinica, 2019, v. 36, n. 9, p. 2076, doi. 10.13801/j.cnki.fhclxb.20181121.003
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碳纤维表面改性增强Fe<sub>3</sub>Al-Al<sub>2</sub>O<sub>3</sub> 复合材料的 制备及组织性能.
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- Acta Materiae Compositae Sinica, 2019, v. 36, n. 9, p. 2155, doi. 10.13801/j.cnki.fhclxb.20181213.002
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Modal Parameter Tracking in a Carbon Fiber-Reinforced Structure over Different Carbon Fiber Angles.
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- Journal of Marine Science & Engineering, 2021, v. 9, n. 11, p. 1214, doi. 10.3390/jmse9111214
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基于碳纤维的层合结构双极化电磁吸波及其弯曲性能设计.
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- Applied Mathematics & Mechanics (1000-0887), 2024, v. 45, n. 8, p. 1096, doi. 10.21656/1000-0887.450102
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改进的基于Mask R-CNN的碳纤维图像分割方法.
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- China Sciencepaper, 2021, v. 16, n. 11, p. 1189
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Physicomechanical Characteristics of Carbon Fiber Reinforced Polymer Composite Using X-Ray Diffraction, Atomic Force and Electron Microscopies.
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- International Journal of Automotive Technology, 2022, v. 23, n. 5, p. 1349, doi. 10.1007/s12239-022-0118-7
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Effect of Carbon Fiber Orientation when Cold Spraying Metallic Powders onto Carbon Fiber-Reinforced Polymers.
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- Journal of Thermal Spray Technology, 2024, v. 33, n. 2/3, p. 596, doi. 10.1007/s11666-024-01727-1
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Influence of Molding Methods on Defects in AFM Carbon Fiber Samples under Static Loading.
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- Russian Journal of Nondestructive Testing, 2024, v. 60, n. 6, p. 591, doi. 10.1134/S1061830924700670
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碳纤维磁浮车辆悬浮架疲劳强度 及无损检测技术研究.
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- Rolling Stock (1002-7602), 2023, v. 61, n. 3, p. 98, doi. 10.3969/j.issn.1002-7602.2023.03.017
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Assessment of biological effects and harm to Japanese medaka due to carbonized carbon fibers generated by a pyrolysis carbon fiber recycling process.
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- Journal of Material Cycles & Waste Management, 2021, v. 23, n. 3, p. 1071, doi. 10.1007/s10163-021-01191-x
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Microwave-Assisted Pyrolysis of Carbon Fiber-Reinforced Polymers and Optimization Using the Box–Behnken Response Surface Methodology Tool.
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- Materials (1996-1944), 2024, v. 17, n. 13, p. 3256, doi. 10.3390/ma17133256
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Recent Progress in Carbon Fiber Reinforced Polymers Recycling: A Review of Recycling Methods and Reuse of Carbon Fibers.
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- Materials (1996-1944), 2021, v. 14, n. 21, p. 6401, doi. 10.3390/ma14216401
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Microstructure of Milled Polyacrylonitrile-Based Carbon Fiber Analyzed by Micro-Raman Spectroscopy and TEM.
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- Materials (1996-1944), 2021, v. 14, n. 16, p. 4711, doi. 10.3390/ma14164711
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Effects of the Carbon Fiber-Carbon Microcoil Hybrid Formation on the Effectiveness of Electromagnetic Wave Shielding on Carbon Fibers-Based Fabrics.
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- Materials (1996-1944), 2018, v. 11, n. 12, p. 2344, doi. 10.3390/ma11122344
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Electromagnetic Shielding Effectiveness and Impact Test Performance of Carbon Fiber Reinforced Polymer Composites with Hematite and Goethite.
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- Macromolecular Materials & Engineering, 2024, v. 309, n. 2, p. 1, doi. 10.1002/mame.202300271
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Mechanical Recycling of Carbon Fiber-Reinforced Polymer in a Circular Economy.
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- Polymers (20734360), 2024, v. 16, n. 10, p. 1363, doi. 10.3390/polym16101363
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Recycling and Reutilization of Waste Carbon Fiber Reinforced Plastics: Current Status and Prospects.
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- Polymers (20734360), 2023, v. 15, n. 17, p. 3508, doi. 10.3390/polym15173508
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High-Efficiency Carbon Fiber Recovery Method and Characterization of Carbon FIBER-Reinforced Epoxy/4,4′-Diaminodiphenyl Sulfone Composites.
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- Polymers (20734360), 2022, v. 14, n. 23, p. 5304, doi. 10.3390/polym14235304
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Carbon Fiber/PLA Recycled Composite.
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- Polymers (20734360), 2022, v. 14, n. 11, p. 2194, doi. 10.3390/polym14112194
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Secondary Raw Materials from Residual Carbon Fiber-Reinforced Composites by An Upgraded Pyrolysis Process.
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- Polymers (20734360), 2021, v. 13, n. 19, p. 3408, doi. 10.3390/polym13193408
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Clinical evaluation of carbon fiber reinforced carbon endodontic post, glass fiber reinforced post with cast post and core: A one year comparative clinical study.
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- Journal of Conservative Dentistry, 2008, v. 11, n. 4, p. 162, doi. 10.4103/0972-0707.48841
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Influence of carbon fiber nickel electroplating on the electromagnetic interference shielding and mechanical properties of carbon fiber reinforced polyamide 6 composites.
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- Polymer Composites, 2023, v. 44, n. 12, p. 8838, doi. 10.1002/pc.27741
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Development of a method for recycling factory waste carbon fiber prepregs and increasing the added value of the collected material.
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- Polymer Composites, 2023, v. 44, n. 4, p. 2071, doi. 10.1002/pc.27244
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Influence of the electrochemical treatment level of carbon fibers on the compression after impact property of carbon fiber/epoxy composites.
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- Polymer Composites, 2023, v. 44, n. 2, p. 1213, doi. 10.1002/pc.27165
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Composite laminates made of unidirectional carbon fiber reinforced polymer interleaved with recycled carbon fiber and short virgin aramid fiber non‐woven mats for structural applications.
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- Polymer Composites, 2022, v. 43, n. 11, p. 8560, doi. 10.1002/pc.27024
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Multifunctional nickel‐coated carbon fiber veil for improving both fracture toughness and electrical performance of carbon fiber/epoxy composite laminates.
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- Polymer Composites, 2021, v. 42, n. 10, p. 5335, doi. 10.1002/pc.26227
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Mechanical performance of modified Polypropylene/Polyamide matrix reinforced with treated recycled carbon fibers for lightweight applications.
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- Journal of Polymer Research, 2022, v. 29, n. 4, p. 1, doi. 10.1007/s10965-022-02975-x
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Highly Efficient Recycling of Carbon Fiber Reinforced Composites by Pyrolysis with Superheated Steam and Their Properties.
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- Silicone Material, 2022, v. 36, n. 4, p. 551, doi. 10.14136/j.cnki.issn1673-2812.2022.04.002
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碳纤维丝束结构对碳纤维/酚醛 复合材料烧蚀性能的影响.
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- Journal of Materials Engineering / Cailiao Gongcheng, 2022, v. 50, n. 9, p. 113, doi. 10.11868/j.issn.1001-4381.2021.000701
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Carbon Fiber Recycling from Waste CFRPs via Microwave Pyrolysis: Gas Emissions Monitoring and Mechanical Properties of Recovered Carbon Fiber.
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- Fibers, 2024, v. 12, n. 12, p. 106, doi. 10.3390/fib12120106
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DETERMINATION OF THE TYPE OF ARCHED CARBON FIBER REINFORCED FASTENING OF THE PREPARATORY OPENING FOR THE CONDITIONS OF THE «DNIPROVSKA» MINE IN WEAKLY METAMORPHIZED ROCKS.
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- Technology Audit & Production Reserves, 2024, v. 3, n. 1(77), p. 18, doi. 10.15587/2706-5448.2024.306879
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Recent Developments in Carbon Fibers and Carbon Nanotube-Based Fibers: A Review.
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- Polymer Reviews, 2017, v. 57, n. 2, p. 339, doi. 10.1080/15583724.2016.1169546
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短切碳纤维对聚苯腈/碳纤维复合材料性能的影响.
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- China Plastics / Zhongguo Suliao, 2023, v. 37, n. 2, p. 31, doi. 10.19491/j.issn.1001-9278.2023.02.005
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Interfacial Bonding Enhancement Between Cryogenic Conditioned Carbon Fiber and Epoxy Resin Characterized by the Single-Fiber Fragmentation Method.
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- AATCC Review, 2021, v. 21, n. 4, p. 45, doi. 10.14504/ajr.8.4.1
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An Analysis of Tensile and Compressive Properties of Carbon Fiber High-Entropy Alloy Composite Laminates.
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- Mechanics of Composite Materials, 2024, v. 59, n. 6, p. 1147, doi. 10.1007/s11029-023-10162-2
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