Academic literature on the topic 'Bulletproof jacket'

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Journal articles on the topic "Bulletproof jacket"

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Zochowski, Pawel, Marcin Bajkowski, Roman Grygoruk, et al. "Ballistic Impact Resistance of Bulletproof Vest Inserts Containing Printed Titanium Structures." Metals 11, no. 2 (2021): 225. http://dx.doi.org/10.3390/met11020225.

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Finite element modeling of ballistic impact of inserts containing titanium structures were presented in the article. The inserts containing an additional layer made using additive manufacturing technology were analyzed. The layer was created from repetitive elements made without connections (adjacent cells were inseparable). Four variants of printed titanium structures were placed between layers of Twaron CT 750 aramid fabric to create ballistic inserts. In order to assess the ballistic resistance of the inserts, numerical simulations of ballistic impact phenomenon were carried out using LS-Dy
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Fadly, Muhammad Syaiful, Anindito Purnowidodo, and Putu Hadi Setyarini. "Karakteristik Fiber Metal Laminate Akibat Beban Impak Balistik Dari Peluru Kaliber 9 mm Full Metal Jacket (FMJ)." Jurnal Rekayasa Mesin 12, no. 1 (2021): 103. http://dx.doi.org/10.21776/ub.jrm.2021.012.01.12.

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<p class="Abstract"><span lang="EN-GB">Estimated damage levels from ballistics impact zone provide valuable information to make bulletproof materials more effective. Therefore, this study aims to determine the impact of ballistics including hole shape, hole depth, macro, and microstructure on fiber metal laminate. The characteristics of ballistics impact for each configuration target is obtained from experiment and comparison based on simulations with finite element method. Test experiments used short-barreled fire guns at a distance of 5 meters with a normal attack angle based on
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Pacek, Dawid, and Adam Wiśniewski. "NUMERICAL ANALYSIS OF BULLET IMPACT ONTO ARAMID LAYERS PLACED ON SUBSTRATA SIMULATING HUMAN BODY." PROBLEMY TECHNIKI UZBROJENIA, no. 3 (December 6, 2016): 61–79. http://dx.doi.org/10.5604/01.3001.0010.0535.

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Essential aspects of numerical analysis for bullet hitting elastic layers of aramid fabric placed on a plastic substratum imitating the human body are presented in the paper. A review of results for bullet-proof vests tested on various substrata is included in the paper with justification of their use. It is explained why the ballistic plasticine is used as a substructure imitating the human body in most standards binding in the world for testing individual protections. Methods for modelling the fabrics with results of own numerical analyses are presented. As mutual reaction of yarns creating
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Bakhsh, Ahmed A. "Gamma-Ray Modified Polymer/Clay Composites: Synthesis, Characterization, and Formulation Optimization Using Multivariate Calculus and Graph Theory." Energies 14, no. 9 (2021): 2724. http://dx.doi.org/10.3390/en14092724.

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To enhance the oxidation strength and crosslinking yield of ultrahigh molecular weight polyethylene (UHMWPE), its composites were prepared by mixing 1%, 2%, and 3% (by wt.) of magnesium silicate hydrous (sepiolite) during this study. These composites were irradiated with 25 kGy and 50 kGy of irradiation doses in the open air. Subsequent to irradiation, the composites were characterized for updates in structure, oxidation strength, and degree of crosslinking while estimating the values of oxidation index (OI), crosslink density (Gx), and percent crystallinity (Xc), respectively. The reaction of
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Kalkani, Tushal, Nikunh Rachch, and Prashant Ujeniya. "Comparative Analysis of Coir and Rattan Fiber Composites for Bulletproof Jacket Vest Application." SSRN Electronic Journal, 2019. http://dx.doi.org/10.2139/ssrn.3446555.

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Dissertations / Theses on the topic "Bulletproof jacket"

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Prat, Nicolas. "Prédiction des lésions pulmonaires lors d’un impact balistique non pénétrant." Thesis, Lyon 1, 2011. http://www.theses.fr/2011LYO10262.

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Les impacts non transfixiants sur les gilets pare-balles sont responsables de lésions non pénétrantes potentiellement létales, regroupées sous le terme d’effets arrière (Behind Armor Blunt Trauma : BABT). De telles lésions fermées se retrouvent également lors d’impacts thoraciques de projectiles d’Armes à Létalité Réduite cinétiques (ALRc). Afin d’améliorer le pouvoir protecteur des protections balistiques et de mieux maitriser le pouvoir vulnérant des ALRc, il est nécessaire de définir un critère lésionnel permettant de prédire l’importance des lésions en cas de traumatisme thoracique fermé d
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