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颗粒尺寸级配对GAP推进剂浆料的流变学影响

Rheological Impact of Particle Size Gradation on GAP Propellant Slurries.

作者信息

Wang Yi, Wang Yana, Song Xiaolan, An Chongwei, Li Fengsheng

机构信息

School of Materials Science and Engineering, North University of China, Taiyuan030051, China.

School of Environment and Safety Engineering, North University of China, Taiyuan030051, China.

出版信息

ACS Omega. 2022 Oct 20;7(43):38536-38542. doi: 10.1021/acsomega.2c03872. eCollection 2022 Nov 1.

Abstract

Over the years, widespread interest has been placed on rheological properties to reflect the processability of propellant slurries. Particle gradation technology plays an essential role in the improvement of the processability of propellant slurries. In this article, rheological properties of glycidyl azide polymer (GAP) propellant slurries were measured by dynamic rheological measurements with a rheometer. Submicron-sized ( = 0.221 μm) and micron-sized ( = 33.02 μm) CL-20 particles and ultrafine ( = 2.40 μm) and micron-sized ( = 341.69 μm) AP particles were utilized to investigate the influence of the addition of CL-20 and particle size gradation on rheological properties. The test results demonstrate that the LVE region remains almost invariable while the yield transition process is delayed when the relative content of submicron-sized CL-20 increases from 10 to 20%. The values of ', ″, and |η*| increase with increasing submicron-sized CL-20. Despite this, the value of |η*| can be effectively reduced to about the same value as the slurries with bimodal AP by the size gradation of CL-20. In addition, particle porosity appears to be a suitable parameter to predict trends concerning the rheological properties of the GAP propellant slurries.

摘要

多年来,人们广泛关注流变性能以反映推进剂浆料的加工性能。颗粒级配技术在改善推进剂浆料的加工性能方面起着至关重要的作用。在本文中,通过流变仪进行动态流变测量来测定缩水甘油叠氮聚合物(GAP)推进剂浆料的流变性能。利用亚微米级( = 0.221μm)和微米级( = 33.02μm)的CL - 20颗粒以及超细( = 2.40μm)和微米级( = 341.69μm)的AP颗粒,研究CL - 20的添加和粒径级配对流变性能的影响。测试结果表明,当亚微米级CL - 20的相对含量从10%增加到20%时,线性粘弹性区域几乎保持不变,而屈服转变过程延迟。随着亚微米级CL - 20含量的增加,'、″和|η*|的值增大。尽管如此,通过CL - 20的粒径级配,|η*|的值可有效降低至与具有双峰AP的浆料大致相同的值。此外,颗粒孔隙率似乎是预测GAP推进剂浆料流变性能趋势的合适参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8671/9631420/3f30b99af723/ao2c03872_0002.jpg

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