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Linear Burning Rate and Erosivity Properties of Nitrocellulose Propellant Formulations Plasticized by Glycidyl Azide Polymer and Nitroglycerine Comtois E, Favis BD, Dubois C Propellants Explosives Pyrotechnics, 46(3), 494, 2021 |
2 |
Linear Burning Rate and Erosivity Properties of Nitrocellulose Propellant Formulations Plasticized by Glycidyl Azide Polymer and Nitroglycerine Comtois E, Favis BD, Dubois C Propellants Explosives Pyrotechnics, 46(3), 494, 2021 |
3 |
Synthesis and Characterization of Energetic Thermoplastic Elastomers based on Carboxylated GAP Copolymers Lim MK, Jang YR, Kweon JO, Seol YH, Rhee HJ, Noh ST Applied Chemistry for Engineering, 31(3), 284, 2020 |
4 |
Phase transitions and mechanical properties of nitrocellulose plasticized by glycidyl azide polymer and nitroglycerine Comtois E, Favis BD, Dubois C Polymer Engineering and Science, 60(9), 2301, 2020 |
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Experimental and Simulation Study on Glass Transition Temperatures of GAP with Ionic-Liquid-Based Energetic Plasticizers Jafari N, Arab B, Zekri N, Fareghi-Alamdari R Propellants Explosives Pyrotechnics, 45(4), 615, 2020 |
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에너지화 열가소성 탄성체에 사용될 수 있는 알콕시 계열과 알킬 아민 계열 GAP Copolymer의 합성 및 분석 임민경, 장유림, 김한철, 이학준, 노시태 Applied Chemistry for Engineering, 30(1), 81, 2019 |
7 |
GAP 및 GAP-co-BO Copolymer계 에너지 함유 열가소성 폴리우레탄의 합성 및 특성 설양호, 권정옥, 김용진, 진용현, 노시태 Applied Chemistry for Engineering, 30(6), 673, 2019 |
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Reactive Plasticizers Covalently Linked to Glycidyl Azide Polymer via Catalyst-Free Huisgen Azide-Alkyne Cycloaddition Fareghi-Alamdari R, Jafari N, Shahidzadeh M, Zekri N Propellants Explosives Pyrotechnics, 43(9), 893, 2018 |
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Glycidyl Azide-Butadiene Block Copolymers: Synthesis from the Homopolymers and a Chain Extender Filippi S, Mori L, Cappello M, Polacco G Propellants Explosives Pyrotechnics, 42(7), 826, 2017 |
10 |
Isocyanate-Free Curing of Glycidyl Azide Polymer with Bis-propargylhydroquinone Sonawane S, Anniyappan M, Athar J, Singh A, Talawar MB, Sinha RK, Banerjee S, Sikder AK Propellants Explosives Pyrotechnics, 42(4), 386, 2017 |