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Studies on the Effect of Accelerated Ageing on Structural, Physico-Mechanical and Ballistic Properties of Hybrid Silicone-Ceramics Composites

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Oct 21, 2024

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Luo T, Chao Z, Du S, Jiang L, Chen S, Zhang R, Han H, Han B, Wang Z, Chen, G, Mei Y. A Novel Multi-Scale Ceramic-Based Array (SiCb+B4Cp)/7075Al as Promising Materials for Armor Structure. Materials 2023; 16, 5796. LuoT ChaoZ DuS JiangL ChenS ZhangR HanH HanB WangZ ChenG MeiY A Novel Multi-Scale Ceramic-Based Array (SiCb+B4Cp)/7075Al as Promising Materials for Armor Structure Materials 2023 16 5796 Search in Google Scholar

Yang R, Li K, Yin L, Ren K, Cheng Y, Li T, Fu J, Zhao T, Chen Z, Yang J. Study on the Penetration Power of ZrO2 Toughened Al2O3 Ceramic Composite Projectile into Ceramic Composite Armor. Materials 2022; 15, 2909. YangR LiK YinL RenK ChengY LiT FuJ ZhaoT ChenZ YangJ Study on the Penetration Power of ZrO2 Toughened Al2O3 Ceramic Composite Projectile into Ceramic Composite Armor Materials 2022 15 2909 Search in Google Scholar

Fejdyś M, Kośla K, Kucharska-Jastrząbek A, Łandwijt M. Influence of ceramic properties on the ballistic performance of the hybrid ceramic–multi-layered UHMWPE composite armour. J. Aust. Ceram. Soc. 2021; 57, 149–161. FejdyśM KoślaK Kucharska-JastrząbekA ŁandwijtM Influence of ceramic properties on the ballistic performance of the hybrid ceramic–multi-layered UHMWPE composite armour J. Aust. Ceram. Soc. 2021 57 149 161 Search in Google Scholar

Chen Z, Xu Y, Li M, Li B, Song W, Xiao L, Cheng Y, Jia S. Investigation on Residual Strength and Failure Mechanism of the Ceramic/UHMWPE Armors after Ballistic Tests. Materials 2022; 15, 901. ChenZ XuY LiM LiB SongW XiaoL ChengY JiaS Investigation on Residual Strength and Failure Mechanism of the Ceramic/UHMWPE Armors after Ballistic Tests Materials 2022 15 901 Search in Google Scholar

Cegła M. Special ceramics in multilayer ballistic protection systems. Issues Armament Technol. 2018; 147, 63–74. CegłaM Special ceramics in multilayer ballistic protection systems Issues Armament Technol. 2018 147 63 74 Search in Google Scholar

Grujicic M, Pandurangan B, Zecevic U, Koudela K L, Cheeseman B A. Ballistic Performance of Alumina/S-2 glass reinforced polymer-matrix composite hybrid lightweight armor against armor piercing (AP) and non-AP projectiles. Multidiscip. Model. Mater. Struct. 2007; 3, 287–312. GrujicicM PanduranganB ZecevicU KoudelaK L CheesemanB A Ballistic Performance of Alumina/S-2 glass reinforced polymer-matrix composite hybrid lightweight armor against armor piercing (AP) and non-AP projectiles Multidiscip. Model. Mater. Struct. 2007 3 287 312 Search in Google Scholar

Hogan J D, Farbaniec L, Mallick D, Domnich V, Kuwelkar K, Sano T, McCauley J W, Ramesh K T. Fragmentation of an advanced ceramic under ballistic impact: Mechanisms and microstructure. Int. J. Impact Eng. 2017; 102, 47–54. HoganJ D FarbaniecL MallickD DomnichV KuwelkarK SanoT McCauleyJ W RameshK T Fragmentation of an advanced ceramic under ballistic impact: Mechanisms and microstructure Int. J. Impact Eng. 2017 102 47 54 Search in Google Scholar

Magier M. Methods of estimating the armor penetration depth by kinetic projectiles. Issues Armament Technol. 2007; 101, 103–115. MagierM Methods of estimating the armor penetration depth by kinetic projectiles Issues Armament Technol. 2007 101 103 115 Search in Google Scholar

Ding L, Gu X, Shen P, Kong X. Ballistic Limit of UHMWPE Composite Armor under Impact of Ogive-Nose Projectile. Polymers 2022; 14, 4866. DingL GuX ShenP KongX Ballistic Limit of UHMWPE Composite Armor under Impact of Ogive-Nose Projectile Polymers 2022 14 4866 Search in Google Scholar

Nair A N, Sundharesan S, Al Tubi M A A. Kevlar-based Composite Material and its Applications in Body Armour: A Short Literature Review. IOP Conf. Ser.: Mater. Sci. Eng. 2020; 987, 012003. NairA N SundharesanS Al TubiM A A Kevlar-based Composite Material and its Applications in Body Armour: A Short Literature Review IOP Conf. Ser.: Mater. Sci. Eng. 2020 987 012003 Search in Google Scholar

Kang T J, Kim C. Energy-Absorption Mechanisms in Kevlar Multiaxial Warp-Knit Fabric Composites Under Impact Loading. Compos. Sci. Technol. 2000; 60, 773–784. KangT J KimC Energy-Absorption Mechanisms in Kevlar Multiaxial Warp-Knit Fabric Composites Under Impact Loading Compos. Sci. Technol. 2000 60 773 784 Search in Google Scholar

Min S, Chen X, Chai Y, Lowe T. Effect of Reinforcement Continuity on the Ballistic Performance of Composites Reinforced with Multiply Plain Weave Fabric. Compos. B Eng. 2016; 90, 30–36. MinS ChenX ChaiY LoweT Effect of Reinforcement Continuity on the Ballistic Performance of Composites Reinforced with Multiply Plain Weave Fabric Compos. B Eng. 2016 90 30 36 Search in Google Scholar

Nurazzi N M, Asyraf M RM, Khalina A, Abdullah N, Aisyah H.A, Rafiqah S A, Sabaruddin F A, Kamarudin S H, Norrrahim M N F, Ilyas R A, Sapuan S M. A Review on Natural Fiber Reinforced Polymer Composite for Bullet Proof and Ballistic Applications. Polymers 2021; 13, 646. NurazziN M AsyrafM RM KhalinaA AbdullahN AisyahH.A RafiqahS A SabaruddinF A KamarudinS H NorrrahimM N F IlyasR A SapuanS M A Review on Natural Fiber Reinforced Polymer Composite for Bullet Proof and Ballistic Applications Polymers 2021 13 646 Search in Google Scholar

Varma T V, Sarkat S. Designing polymer metamaterial for protective armor: a coarse-grained formulation. Meccanica. 2020; 56, 383–392. VarmaT V SarkatS Designing polymer metamaterial for protective armor: a coarse-grained formulation Meccanica. 2020 56 383 392 Search in Google Scholar

Si P, Liu Y, Yan J, Bai F, Huang F. Ballistic Performance of Polyurea-Reinforced Ceramic/Metal Armor Subjected to Projectile Impact. Materials 2022; 15, 3918. SiP LiuY YanJ BaiF HuangF Ballistic Performance of Polyurea-Reinforced Ceramic/Metal Armor Subjected to Projectile Impact Materials 2022 15 3918 Search in Google Scholar

Colombo P, Zordan F, Medvedovski E. Ceramic–polymer composites for ballistic protection. Adv. Appl. Ceram. 2006; 105, 78–83. ColomboP ZordanF MedvedovskiE Ceramic–polymer composites for ballistic protection Adv. Appl. Ceram. 2006 105 78 83 Search in Google Scholar

Wiśniewski A B, Pacek D B, Żochowski P, Wierzbicki Ł, Kozłowska J, Zielińska D, Olszewska, K, Grabowska G, Błaszczyk J, Pawłowska A, Wałęza J. Elastic armour, Patent no. PL224825 (B1), 2017. WiśniewskiA B PacekD B ŻochowskiP WierzbickiŁ KozłowskaJ ZielińskaD OlszewskaK GrabowskaG BłaszczykJ PawłowskaA WałęzaJ Elastic armour Patent no. PL224825 (B1), 2017 Search in Google Scholar

Kośla K, Kubiak P, Fejdyś M, Olszewska K, Łandwijt M, Chmal-Fudali E. Preparation and Impact Resistance Properties of Hybrid Silicone-Ceramics Composites. Appl. Sci. 2020; 10, 9098. KoślaK KubiakP FejdyśM OlszewskaK ŁandwijtM Chmal-FudaliE Preparation and Impact Resistance Properties of Hybrid Silicone-Ceramics Composites Appl. Sci. 2020 10 9098 Search in Google Scholar

Tang M, Huang G, Zhang H, Liu Y, Chang H, Song H, Xu D, Wang Z. Dependences of Rheological and Compression Mechanical Properties on Cellular Structures for Impact-Protective Materials. ACS Omega 2017, 2, 2214−2223. TangM HuangG ZhangH LiuY ChangH SongH XuD WangZ Dependences of Rheological and Compression Mechanical Properties on Cellular Structures for Impact-Protective Materials ACS Omega 2017 2 2214 2223 Search in Google Scholar

Poron® XRDTM Extreme Impact protection – Physical Properties. https://www.algeos.com.au/pdfs/PORONXRDDataSheet.pdf [accessed on: 14.12.2023] Poron® XRDTM Extreme Impact protection – Physical Properties https://www.algeos.com.au/pdfs/PORONXRDDataSheet.pdf [accessed on: 14.12.2023] Search in Google Scholar

Venkatraman P D, Tyler D J, A critical review of impact resistant materials used in sportswear clothing. International conference in Advances in Textiles, Machinery, Nonwovens and Technical Textiles, ATNT, Coimbatore, India, 2011. VenkatramanP D TylerD J A critical review of impact resistant materials used in sportswear clothing International conference in Advances in Textiles, Machinery, Nonwovens and Technical Textiles, ATNT Coimbatore, India 2011 Search in Google Scholar

Bhagavathula K B, Azar A, Ouellet S, Satapathy S, Dennison C R, Hogan J D. High Rate Compressive Behaviour of a Dilatant Polymeric Foam. J. Dyn. Behav. Mater. 2018; 4, 573–585. BhagavathulaK B AzarA OuelletS SatapathyS DennisonC R HoganJ D High Rate Compressive Behaviour of a Dilatant Polymeric Foam J. Dyn. Behav. Mater. 2018 4 573 585 Search in Google Scholar

Zuckerman S L, Reynolds B B, Yengo-Kahn A M, Kuhn A W, Chadwell J T, Goodale S E, Lafferty C E, Langford K T, McKeithan L J, Kirby P, Solomon G S. A football helmet prototype that reduces linear and rotational acceleration with the addition of an outer shell. J Neurosurg. 2019; 130, 1634–1641. ZuckermanS L ReynoldsB B Yengo-KahnA M KuhnA W ChadwellJ T GoodaleS E LaffertyC E LangfordK T McKeithanL J KirbyP SolomonG S A football helmet prototype that reduces linear and rotational acceleration with the addition of an outer shell J Neurosurg. 2019 130 1634 1641 Search in Google Scholar

Cushioning and impact absorbing foam. https://www.trelleborg.com/applied-technologies/products-and-solutions/advanced-energy-control-materials/confor-cushioning-and-impact-absorbing [accessed on: 15.12.2023] Cushioning and impact absorbing foam https://www.trelleborg.com/applied-technologies/products-and-solutions/advanced-energy-control-materials/confor-cushioning-and-impact-absorbing [accessed on: 15.12.2023] Search in Google Scholar

Tsinas Z, Orski S V, Bentley V RC, Gonzalez Lopez L, Al-Sheikhly M, Forster A L. Effects of Thermal Aging on Molar Mass of Ultra-High Molar Mass Polyethylene Fibers. Polymers 2022; 14, 1324. TsinasZ OrskiS V BentleyV RC Gonzalez LopezL Al-SheikhlyM ForsterA L Effects of Thermal Aging on Molar Mass of Ultra-High Molar Mass Polyethylene Fibers Polymers 2022 14 1324 Search in Google Scholar

Yang X, Jia N. Hygrothermal effect on high-velocity impact resistance of woven composites. Def. Technol. 2022; 18, 823–833. YangX JiaN Hygrothermal effect on high-velocity impact resistance of woven composites Def. Technol. 2022 18 823 833 Search in Google Scholar

Liu Y, Wu Y. Influence of hydrothermal aging on the mechanical performance of foam core sandwich panels subjected to low-velocity impact. Sci. Eng. Compos. Mater. 2022; 29, 9–22. LiuY WuY Influence of hydrothermal aging on the mechanical performance of foam core sandwich panels subjected to low-velocity impact Sci. Eng. Compos. Mater. 2022 29 9 22 Search in Google Scholar

Kośla K, Łandwijt M, Miklas M, Fejdyś M. Influence of the Accelerated Aging Process on the Fragment-Resistant Properties of Para-Aramid Body Armor. Materials 2022; 15, 6492. KoślaK ŁandwijtM MiklasM FejdyśM Influence of the Accelerated Aging Process on the Fragment-Resistant Properties of Para-Aramid Body Armor Materials 2022 15 6492 Search in Google Scholar

Engelbrecht-Wiggans A, Burni F, Guigues E, Jiang S, Huynh T Q, Tsinas Z, Jacobs D, Forster A L. Effects of temperature and humidity on high-strength p-aramid fibers used in body armor. Text. Res. J. 2020; 90, 2428–2440. Engelbrecht-WiggansA BurniF GuiguesE JiangS HuynhT Q TsinasZ JacobsD ForsterA L Effects of temperature and humidity on high-strength p-aramid fibers used in body armor Text. Res. J. 2020 90 2428 2440 Search in Google Scholar

Engelbrecht-Wiggans A, Tsinas Z, Krishnamurthy A, Forster A L. Effect of Aging on Unidirectional Composite Laminate Polyethylene for Body Armor. Polymers 2023; 15, 1347. Engelbrecht-WiggansA TsinasZ KrishnamurthyA ForsterA L Effect of Aging on Unidirectional Composite Laminate Polyethylene for Body Armor Polymers 2023 15 1347 Search in Google Scholar

Fejdyś M, Kucharska-Jastrząbek A, Kośla K. Effect of Accelerated Ageing on the Ballistic Resistance of Hybrid Composite Armour with Advanced Ceramics and UHMWPE Fibers. Fibres Text. East. Eur. 2020; 28, 71–80. FejdyśM Kucharska-JastrząbekA KoślaK Effect of Accelerated Ageing on the Ballistic Resistance of Hybrid Composite Armour with Advanced Ceramics and UHMWPE Fibers Fibres Text. East. Eur. 2020 28 71 80 Search in Google Scholar

Madej-Kiełbik L, Kośla K, Zielińska D, Chmal-Fudali E, Maciejewska M. Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in Protectors. Polymers 2019; 11, 1263. Madej-KiełbikL KoślaK ZielińskaD Chmal-FudaliE MaciejewskaM Effect of Accelerated Ageing on the Mechanical and Structural Properties of the Material System Used in Protectors Polymers 2019 11 1263 Search in Google Scholar

Fejdyś M, Cichecka M, Łandwijt M, Struszczyk M.H. Prediction of the Durability of Composite Soft Ballistic Inserts. Fibres Text. East. Eur. 2014; 22, 81–89. FejdyśM CicheckaM ŁandwijtM StruszczykM.H. Prediction of the Durability of Composite Soft Ballistic Inserts Fibres Text. East. Eur. 2014 22 81 89 Search in Google Scholar

Brounstein Z, Zhao J, Geller D, Gupta N, Labouriau A. Long-Term Thermal Aging of Modified Sylgard 184 Formulations. Polymers 2021; 13, 3125. BrounsteinZ ZhaoJ GellerD GuptaN LabouriauA Long-Term Thermal Aging of Modified Sylgard 184 Formulations Polymers 2021 13 3125 Search in Google Scholar

Orn A. Degradation Studies on polydimethylsiloxane, Master thesis, Laboratory of organic chemistry, Faculty of Science and Engineering, Abo Akademi Univerity, Finland, 2019. OrnA Degradation Studies on polydimethylsiloxane Master thesis, Laboratory of organic chemistry, Faculty of Science and Engineering, Abo Akademi Univerity Finland 2019 Search in Google Scholar

Dobrowolska E P. “Selection of the type and the proportion of chain extenders macromolecules polycarbonate-urethane from isophorone isocyanate” Master Thesis, Faculty of Materials Science and Engineering, Warsaw University of Technology, Warsaw, 2013. DobrowolskaE P “Selection of the type and the proportion of chain extenders macromolecules polycarbonate-urethane from isophorone isocyanate” Master Thesis, Faculty of Materials Science and Engineering, Warsaw University of Technology Warsaw 2013 Search in Google Scholar

Liu S H, Shen M Y, Kuan CF, Kuan H C, Ke C Y, Chiang C L. Improving Thermal Stability of Polyurethane through the Addition of Hyperbranched Polysiloxane. Polymers 2019; 11, 697. LiuS H ShenM Y KuanCF KuanH C KeC Y ChiangC L Improving Thermal Stability of Polyurethane through the Addition of Hyperbranched Polysiloxane Polymers 2019 11 697 Search in Google Scholar

Mikulčić H, Jin Q, Stančin H, Wang X, Li S, Tan H, Duić N. Thermogravimetric Analysis Investigation of Polyurethane Plastic Thermal Properties Under Different Atmospheric Conditions. J. Sustain. Dev. Energy Water Environ. Syst. 2019; 7, 355–367. MikulčićH JinQ StančinH WangX LiS TanH DuićN Thermogravimetric Analysis Investigation of Polyurethane Plastic Thermal Properties Under Different Atmospheric Conditions J. Sustain. Dev. Energy Water Environ. Syst. 2019 7 355 367 Search in Google Scholar

Petrie E M. Epoxy Adhesive Formulations, McGraw - Hill Professional, USA, 2006. PetrieE M Epoxy Adhesive Formulations McGraw - Hill Professional USA 2006 Search in Google Scholar

Szabelski J. Research on the influence of heat treatment of butt adhesive joints on their static strength. PhD Thesis, Faculty of Mechanical Engineering, Lublin University of Technology, Poland, 2014. SzabelskiJ Research on the influence of heat treatment of butt adhesive joints on their static strength PhD Thesis, Faculty of Mechanical Engineering, Lublin University of Technology Poland 2014 Search in Google Scholar

Rośkowicz M. The adhesive joint - the chosen problems of static service life. Problemy Eksplotacji, 2006; 3, 91–105. RośkowiczM The adhesive joint - the chosen problems of static service life Problemy Eksplotacji 2006 3 91 105 Search in Google Scholar