The Experts below are selected from a list of 135 Experts worldwide ranked by ideXlab platform
Yingjie Zhu - One of the best experts on this subject based on the ideXlab platform.
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a new kind of fireproof flexible inorganic nanocomposite paper and its application to the protection layer in flame Retardant Fiber optic cables
Chemistry: A European Journal, 2017Co-Authors: Liying Dong, Yingjie ZhuAbstract:An innovative method for making a new kind of highly flexible, fireproof, inorganic, nanocomposite paper made from glass Fibers (GFs) coated with network-structured hydroxyapatite ultralong nanowires (NS-HANWs) is reported. The NS-HANW/GF paper is fireproof, high-temperature resistant, highly flexible, highly exquisite, and smooth, which is comparable to high-quality advanced coated paper. The most incredible characteristic of the NS-HANW/GF paper is its incombustibility. The as-prepared NS-HANW/GF paper, with the addition of optimized inorganic additives, has high mechanical properties (tensile strength ≈16 MPa) and the tensile strength is nearly 15 times that of GF paper. In addition, the NS-HANW/GF paper exhibits a high biocompatibility, owing to the coating effect of NS-HANWs on GFs. Thermal analysis indicates that the NS-HANW/GF paper has high thermal stability at high temperatures up to 1000 °C. Competitive to conventional insulation materials, the NS-HANW/GF paper exhibits a low thermal conductivity and excellent heat insulation performance. Experiments show that the NS-HANW/GF paper is promising for application in the protection layer of fire-Retardant Fiber-optic cable. The NS-HANW/GF paper can also be used as printing, copying, or writing paper; nonflammable China paper; fire-Retardant wallpaper; specialty fireproof paper; and so on.
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A New Kind of Fireproof, Flexible, Inorganic, Nanocomposite Paper and Its Application to the Protection Layer in Flame‐Retardant Fiber‐Optic Cables
Chemistry: A European Journal, 2017Co-Authors: Liying Dong, Yingjie ZhuAbstract:An innovative method for making a new kind of highly flexible, fireproof, inorganic, nanocomposite paper made from glass Fibers (GFs) coated with network-structured hydroxyapatite ultralong nanowires (NS-HANWs) is reported. The NS-HANW/GF paper is fireproof, high-temperature resistant, highly flexible, highly exquisite, and smooth, which is comparable to high-quality advanced coated paper. The most incredible characteristic of the NS-HANW/GF paper is its incombustibility. The as-prepared NS-HANW/GF paper, with the addition of optimized inorganic additives, has high mechanical properties (tensile strength ≈16 MPa) and the tensile strength is nearly 15 times that of GF paper. In addition, the NS-HANW/GF paper exhibits a high biocompatibility, owing to the coating effect of NS-HANWs on GFs. Thermal analysis indicates that the NS-HANW/GF paper has high thermal stability at high temperatures up to 1000 °C. Competitive to conventional insulation materials, the NS-HANW/GF paper exhibits a low thermal conductivity and excellent heat insulation performance. Experiments show that the NS-HANW/GF paper is promising for application in the protection layer of fire-Retardant Fiber-optic cable. The NS-HANW/GF paper can also be used as printing, copying, or writing paper; nonflammable China paper; fire-Retardant wallpaper; specialty fireproof paper; and so on.
Liying Dong - One of the best experts on this subject based on the ideXlab platform.
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a new kind of fireproof flexible inorganic nanocomposite paper and its application to the protection layer in flame Retardant Fiber optic cables
Chemistry: A European Journal, 2017Co-Authors: Liying Dong, Yingjie ZhuAbstract:An innovative method for making a new kind of highly flexible, fireproof, inorganic, nanocomposite paper made from glass Fibers (GFs) coated with network-structured hydroxyapatite ultralong nanowires (NS-HANWs) is reported. The NS-HANW/GF paper is fireproof, high-temperature resistant, highly flexible, highly exquisite, and smooth, which is comparable to high-quality advanced coated paper. The most incredible characteristic of the NS-HANW/GF paper is its incombustibility. The as-prepared NS-HANW/GF paper, with the addition of optimized inorganic additives, has high mechanical properties (tensile strength ≈16 MPa) and the tensile strength is nearly 15 times that of GF paper. In addition, the NS-HANW/GF paper exhibits a high biocompatibility, owing to the coating effect of NS-HANWs on GFs. Thermal analysis indicates that the NS-HANW/GF paper has high thermal stability at high temperatures up to 1000 °C. Competitive to conventional insulation materials, the NS-HANW/GF paper exhibits a low thermal conductivity and excellent heat insulation performance. Experiments show that the NS-HANW/GF paper is promising for application in the protection layer of fire-Retardant Fiber-optic cable. The NS-HANW/GF paper can also be used as printing, copying, or writing paper; nonflammable China paper; fire-Retardant wallpaper; specialty fireproof paper; and so on.
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A New Kind of Fireproof, Flexible, Inorganic, Nanocomposite Paper and Its Application to the Protection Layer in Flame‐Retardant Fiber‐Optic Cables
Chemistry: A European Journal, 2017Co-Authors: Liying Dong, Yingjie ZhuAbstract:An innovative method for making a new kind of highly flexible, fireproof, inorganic, nanocomposite paper made from glass Fibers (GFs) coated with network-structured hydroxyapatite ultralong nanowires (NS-HANWs) is reported. The NS-HANW/GF paper is fireproof, high-temperature resistant, highly flexible, highly exquisite, and smooth, which is comparable to high-quality advanced coated paper. The most incredible characteristic of the NS-HANW/GF paper is its incombustibility. The as-prepared NS-HANW/GF paper, with the addition of optimized inorganic additives, has high mechanical properties (tensile strength ≈16 MPa) and the tensile strength is nearly 15 times that of GF paper. In addition, the NS-HANW/GF paper exhibits a high biocompatibility, owing to the coating effect of NS-HANWs on GFs. Thermal analysis indicates that the NS-HANW/GF paper has high thermal stability at high temperatures up to 1000 °C. Competitive to conventional insulation materials, the NS-HANW/GF paper exhibits a low thermal conductivity and excellent heat insulation performance. Experiments show that the NS-HANW/GF paper is promising for application in the protection layer of fire-Retardant Fiber-optic cable. The NS-HANW/GF paper can also be used as printing, copying, or writing paper; nonflammable China paper; fire-Retardant wallpaper; specialty fireproof paper; and so on.
Debes Bhattacharyya - One of the best experts on this subject based on the ideXlab platform.
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Keratinous Fiber Based Intumescent Flame Retardant with Controllable Functional Compound Loading
ACS Sustainable Chemistry & Engineering, 2018Co-Authors: Daeseung Jung, Debes BhattacharyyaAbstract:An intumescent flame Retardant working with various combinations of acid source, blowing agent, and char former promises high performance and low toxicity. However, the research for more potent functional constituents and their best combination is still extremely important. Here we report on a novel way to use keratinous Fibers as the host material for creating an effective flame Retardant. A simple solution-based treatment to implant amine phosphate and phosphoric acid in the Fiber through sequential monomer infiltration is found to be significantly effective for applying flame retardancy and reducing the flammability of polymeric materials. After the flame-Retardant Fiber modification, polypropylene (PP) shows significantly improved flame retardancy to achieve V-0 grade and >70% reduced peak heat release rate in vertical burning and cone-calorimeter tests, respectively. We expect this strategy of converting the low-grade keratinous Fiber to valuable flame-Retardant material to become a novel and attract...
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Keratinous Fiber Based Intumescent Flame Retardant with Controllable Functional Compound Loading
2018Co-Authors: Daeseung Jung, Debes BhattacharyyaAbstract:An intumescent flame Retardant working with various combinations of acid source, blowing agent, and char former promises high performance and low toxicity. However, the research for more potent functional constituents and their best combination is still extremely important. Here we report on a novel way to use keratinous Fibers as the host material for creating an effective flame Retardant. A simple solution-based treatment to implant amine phosphate and phosphoric acid in the Fiber through sequential monomer infiltration is found to be significantly effective for applying flame retardancy and reducing the flammability of polymeric materials. After the flame-Retardant Fiber modification, polypropylene (PP) shows significantly improved flame retardancy to achieve V-0 grade and >70% reduced peak heat release rate in vertical burning and cone-calorimeter tests, respectively. We expect this strategy of converting the low-grade keratinous Fiber to valuable flame-Retardant material to become a novel and attractive solution for achieving fire safety, value addition, and ecofriendly recycling goals at the same time
Daeseung Jung - One of the best experts on this subject based on the ideXlab platform.
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Keratinous Fiber Based Intumescent Flame Retardant with Controllable Functional Compound Loading
ACS Sustainable Chemistry & Engineering, 2018Co-Authors: Daeseung Jung, Debes BhattacharyyaAbstract:An intumescent flame Retardant working with various combinations of acid source, blowing agent, and char former promises high performance and low toxicity. However, the research for more potent functional constituents and their best combination is still extremely important. Here we report on a novel way to use keratinous Fibers as the host material for creating an effective flame Retardant. A simple solution-based treatment to implant amine phosphate and phosphoric acid in the Fiber through sequential monomer infiltration is found to be significantly effective for applying flame retardancy and reducing the flammability of polymeric materials. After the flame-Retardant Fiber modification, polypropylene (PP) shows significantly improved flame retardancy to achieve V-0 grade and >70% reduced peak heat release rate in vertical burning and cone-calorimeter tests, respectively. We expect this strategy of converting the low-grade keratinous Fiber to valuable flame-Retardant material to become a novel and attract...
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Keratinous Fiber Based Intumescent Flame Retardant with Controllable Functional Compound Loading
2018Co-Authors: Daeseung Jung, Debes BhattacharyyaAbstract:An intumescent flame Retardant working with various combinations of acid source, blowing agent, and char former promises high performance and low toxicity. However, the research for more potent functional constituents and their best combination is still extremely important. Here we report on a novel way to use keratinous Fibers as the host material for creating an effective flame Retardant. A simple solution-based treatment to implant amine phosphate and phosphoric acid in the Fiber through sequential monomer infiltration is found to be significantly effective for applying flame retardancy and reducing the flammability of polymeric materials. After the flame-Retardant Fiber modification, polypropylene (PP) shows significantly improved flame retardancy to achieve V-0 grade and >70% reduced peak heat release rate in vertical burning and cone-calorimeter tests, respectively. We expect this strategy of converting the low-grade keratinous Fiber to valuable flame-Retardant material to become a novel and attractive solution for achieving fire safety, value addition, and ecofriendly recycling goals at the same time
Cheng Ping-hui - One of the best experts on this subject based on the ideXlab platform.
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Discussion on the Flame Retardant Fiber Optic Cables of Engineering Application
Optical Fiber & Electric Cable and Their Applications, 2010Co-Authors: Cheng Ping-huiAbstract:As a new type of Fiber optic cable in communications engineering,flame Retardant Fiber optic cable has low smoke generation and smaller diameter,so meets the development trend of indoor Fiber optic cable and is widely applied in engineering.Based on the different application environments two types of flame Retardant Fiber optic cable are introduced,and the installation ways and racking ways in engineering construction are discussed emphatically.