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成型参数对富铝Al/PTFE/TiH活性材料准静态力学性能的影响

Influence of Molding Parameters on Quasi-Static Mechanical Properties of Al-Rich Al/PTFE/TiH Active Materials.

作者信息

Wang Yilei, Jiang Chunlan

机构信息

State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Materials (Basel). 2021 May 22;14(11):2750. doi: 10.3390/ma14112750.

Abstract

Preforming pressure and the pressure holding time are important parameters of the molding process, which directly affect the mechanical properties of materials. In order to obtain the best molding parameters of Al-rich Al/PTFE/TiH composites, based on the quasi-static compression test, the influence of molding parameters on the mechanical properties of Al-rich Al/PTFE/TiH composites was analyzed, and the microstructure characteristics of Al-rich Al/PTFE/TiH specimens were analyzed by SEM. An X-ray diffractometer was used to analyze the phase of the residue after quasi-static compression experiment. The results show that: (1) With the increase in molding parameters (preforming pressure and the pressure holding time), the compressive strength, failure strain and toughness of Al-rich Al/PTFE/TiH specimens first increase and then decrease. The best molding process parameters of Al-rich Al/PTFE/TiH materials are preforming pressure 240 MPa and the pressure holding time 100 s. (2) For unsintering specimens, when the preforming pressure is less than 150 MPa, the porosity of the specimen increases slowly at first and then decreases. When the preforming pressure is greater than 150 MPa, the porosity of the specimen increases first and then decreases. When the pressure holding time is no more than 100 s, the porosity of the specimen decreases gradually. When the pressure holding time is more than 100 s, the porosity of the specimen increases first and then decreases. For sintered specimens, when the preforming pressure is less than 100 MPa, the porosity of the specimen decreases gradually. When the preforming pressure is greater than 100 MPa, the porosity of the specimen first increases and then decreases. With the increase in the pressure holding time, the porosity first increases and then decreases. For each preforming pressure specimen, compared with that before sintering, the porosity after sintering either decreases or increases. For each the pressure holding time specimen, the porosity increases after sintering compared with that before sintering. The microstructure of PTFE crystal inside the specimen is mainly planar PTFE crystal. The size and number of planar PTFE crystals are significantly affected by the molding parameters, which further affects the mechanical properties of Al-rich Al/PTFE/TiH specimens. When the preforming pressure is less than 100 MPa, the planar PTFE crystals are small and few, which results in the worst mechanical properties of the specimens. When the preforming pressure is more than 100 MPa and does not contain 240 Mpa, the planar PTFE crystals are small and there are more of them, which results in better mechanical properties of the specimens. When the preforming pressure is 240 MPa, the planar PTFE crystals are large and numerous, which results in the best mechanical properties of the specimen. When the pressure holding time is 100 s, the planar PTFE crystals are large and there are more of them, which results in the best mechanical properties of the specimen. (3) The reactivity of Al-rich Al/PTFE/TiH specimens with TiH the content of 10% under quasi-static compression is not significantly affected by the molding parameters.

摘要

成型压力和保压时间是成型工艺的重要参数,直接影响材料的力学性能。为了获得富铝Al/PTFE/TiH复合材料的最佳成型参数,基于准静态压缩试验,分析了成型参数对富铝Al/PTFE/TiH复合材料力学性能的影响,并通过扫描电子显微镜分析了富铝Al/PTFE/TiH试样的微观结构特征。使用X射线衍射仪分析准静态压缩试验后残余物的相。结果表明:(1) 随着成型参数(成型压力和保压时间)的增加,富铝Al/PTFE/TiH试样的抗压强度、失效应变和韧性先增加后降低。富铝Al/PTFE/TiH材料的最佳成型工艺参数为成型压力240 MPa和保压时间100 s。(2) 对于未烧结试样,当成型压力小于150 MPa时,试样的孔隙率先缓慢增加后降低。当成型压力大于150 MPa时,试样的孔隙率先增加后降低。当保压时间不超过100 s时,试样的孔隙率逐渐降低。当保压时间超过100 s时,试样的孔隙率先增加后降低。对于烧结试样,当成型压力小于100 MPa时,试样的孔隙率逐渐降低。当成型压力大于100 MPa时,试样的孔隙率先增加后降低。随着保压时间的增加,孔隙率先增加后降低。对于每个成型压力试样,与烧结前相比,烧结后的孔隙率要么降低要么增加。对于每个保压时间试样,烧结后的孔隙率比烧结前增加。试样内部PTFE晶体的微观结构主要是平面PTFE晶体。平面PTFE晶体的尺寸和数量受成型参数的显著影响,进而影响富铝Al/PTFE/TiH试样的力学性能。当成型压力小于100 MPa时,平面PTFE晶体小且数量少,导致试样的力学性能最差。当成型压力大于100 MPa且不包含240 MPa时,平面PTFE晶体小且数量较多,导致试样的力学性能较好。当成型压力为240 MPa时,平面PTFE晶体大且数量众多,导致试样的力学性能最佳。当保压时间为100 s时,平面PTFE晶体大且数量较多,导致试样的力学性能最佳。(3) 准静态压缩下TiH含量为10%的富铝Al/PTFE/TiH试样的反应活性受成型参数的影响不显著。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea66/8196983/2da78cce2097/materials-14-02750-g001.jpg

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