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镍颗粒增强铝-聚四氟乙烯复合材料的热行为、力学性能及反应特性研究

Investigation on the Thermal Behavior, Mechanical Properties and Reaction Characteristics of Al-PTFE Composites Enhanced by Ni Particle.

作者信息

Wu Jiaxiang, Wang Huaixi, Fang Xiang, Li Yuchun, Mao Yiming, Yang Li, Yin Qin, Wu Shuangzhang, Yao Miao, Song Jiaxing

机构信息

College of Field Engineering, PLA Army Engineering University, Nanjing 210001, China.

31104 Troop of PLA, Nanjing 210001, China.

出版信息

Materials (Basel). 2018 Sep 16;11(9):1741. doi: 10.3390/ma11091741.

Abstract

Al-PTFE (aluminum-polytetrafluoroethene) is regarded as one of the most promising reactive materials (RMs). In this work, Ni (Nickel) was added to Al-PTFE composites for the purpose of improving the energy density and damage effect. To investigate the thermal behavior, mechanical properties and reaction characteristics of the Al-Ni-PTFE composites, an Al-PTFE mixture and an Al-Ni mixture were prepared by ultrasonic mixing. Six types of Al-Ni-PTFE specimens with different component mass ratios were prepared by molding sintering. Simultaneous thermal analysis experiments were carried out to characterize the thermal behavior of the Al-PTFE mixture and the Al-Ni mixture. Quasi-static compression tests were performed to analyze the mechanical properties and reaction characteristics of the Al-Ni-PTFE specimens. The results indicate that the reaction onset temperature of Al-Ni (582.7 °C) was similar to that of Al-PTFE (587.6 °C) and that the reaction heat of Al-Ni (991.9 J/g) was 12.5 times higher than that of Al-PTFE (79.6 J/g). With the increase of Ni content, the material changed from ductile to brittle and the strain hardening modulus and compressive strength rose first and then subsequently decreased, reaching a maximum of 51.35 MPa and 111.41 MPa respectively when the volume fraction of Ni was 10%. An exothermic reaction occurred for the specimens with a Ni volume fraction no more than 10% under quasi-static compression, accompanied by the formation of Ni-Al intermetallic compounds. In the Al-Ni-PTFE system, the reaction between Al and PTFE preceded the reaction between Al and Ni and the feasibility of increasing the energy density and damage effect of the Al-Ni-PTFE reactive material by means of Ni-Al reaction was proved.

摘要

铝-聚四氟乙烯(Al-PTFE)被视为最具潜力的反应性材料(RM)之一。在本研究中,向Al-PTFE复合材料中添加镍(Ni)以提高能量密度和破坏效果。为研究Al-Ni-PTFE复合材料的热行为、力学性能和反应特性,通过超声混合制备了Al-PTFE混合物和Al-Ni混合物。通过模压烧结制备了六种不同组分质量比的Al-Ni-PTFE试样。进行同步热分析实验以表征Al-PTFE混合物和Al-Ni混合物的热行为。进行准静态压缩试验以分析Al-Ni-PTFE试样的力学性能和反应特性。结果表明,Al-Ni的反应起始温度(582.7℃)与Al-PTFE的反应起始温度(587.6℃)相近,且Al-Ni的反应热(991.9 J/g)是Al-PTFE反应热(79.6 J/g)的12.5倍。随着Ni含量的增加,材料由韧性变为脆性,应变硬化模量和抗压强度先升高后降低,当Ni的体积分数为10%时分别达到最大值51.35 MPa和111.41 MPa。在准静态压缩下,Ni体积分数不超过10%的试样发生放热反应,同时形成Ni-Al金属间化合物。在Al-Ni-PTFE体系中,Al与PTFE之间的反应先于Al与Ni之间的反应,证明了通过Ni-Al反应提高Al-Ni-PTFE反应性材料能量密度和破坏效果的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24d3/6164586/aeef062e9f21/materials-11-01741-g001.jpg

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