Nugroho Ananto, Sufiandi Sandi, Syahrial Anne Zulfia
Department of Metallurgical and Materials Engineering, Universitas Indonesia, Kampus Baru UI, Depok, West Java, 16424, Indonesia.
Research Center for Biomass and Bioproducts, National Research and Innovation Agency (BRIN), Jl. Raya Bogor Km. 46, Cibinong, 16911, Indonesia.
Heliyon. 2022 Aug 18;8(8):e10271. doi: 10.1016/j.heliyon.2022.e10271. eCollection 2022 Aug.
Densified wood technology improves the wood properties such as strength, surface hardness, dimensional stability, and durability. However, the utilization of laminated veneer as densified wood which is used as an armor material, and its ability to absorb ballistic energy has not been researched. The strengthening of the Teak Platinum veneer, which was densified with a hot press, used pre-treatment methods such as partial delignification and self-assembly of bacteria cellulose using This research used hybrid and non-hybrid panels. The hybrid panel used epoxy adhesive to combine the laminated aramid fabric and 2 types of densified veneer laminated. Two types of densified veneers consist of the densified veneer with and without stabilizing resin. A ballistic test was carried out on each sample at a distance of 5 m using 9 mm Luger ammunition according to NIJ 0108.01. The ballistic energy absorption was analyzed based on the difference between the initial velocity and the residual velocity of the projectile. The initial velocity and the residual velocity were measured by the chronograph. This result showed that the performance of the hybrid panels was lower than the non-hybrid panels at the same thickness. However, the hybrid panels using aramid and veneer ratio of 2:1 (by volume) and the configuring of fully aramid fabric on the inside was the best combination with a ballistic energy absorption of 78.64% at 354.70 J.
致密化木材技术可改善木材的性能,如强度、表面硬度、尺寸稳定性和耐久性。然而,将层压单板用作致密化木材作为装甲材料及其吸收弹道能量的能力尚未得到研究。用热压机致密化的柚木白金单板的强化采用了部分脱木素和利用细菌纤维素自组装等预处理方法。本研究使用了混合面板和非混合面板。混合面板使用环氧树脂粘合剂将层压芳纶织物和两种类型的致密化单板层压在一起。两种致密化单板包括含稳定树脂和不含稳定树脂的致密化单板。根据美国国家司法研究所(NIJ)0108.01标准,使用9毫米鲁格弹药在5米的距离对每个样品进行弹道测试。基于弹丸的初始速度和残余速度之间的差异分析弹道能量吸收。初始速度和残余速度由测速仪测量。结果表明,在相同厚度下,混合面板的性能低于非混合面板。然而,芳纶与单板体积比为2:1且内部配置全芳纶织物的混合面板是最佳组合,在354.70焦耳时弹道能量吸收为78.64%。