三维打印对长丝 ABS 聚合物试样弹性特性的影响

IF 0.9 4区 物理与天体物理 Q4 ACOUSTICS
A. B. Volodarskii, A. I. Kokshaiskii, N. I. Odina, A. I. Korobov, E. S. Mikhalev
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引用次数: 0

摘要

摘要--本文报告了三维打印对以 100%填充的细丝形式制造的 ABS 聚合物试样的线性和非线性弹性性能影响的一些实验研究结果。通过静态和 Thurston-Bragger 方法研究了初始 ABD 聚合物试样和三维打印 ABD 聚合物试样。确定了试样多次加载-卸载循环的线性和非线性杨氏模量以及二阶非线性声学参数。结果表明,所选的三维打印模式几乎不会改变 ABS 聚合物的强度特性,其塑性特性甚至略有改善。研究发现,机械加载对初始试样和 3D 打印试样的非线性参数有不同的影响。对于三维打印试样,非线性参数随着载荷的增加而减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of 3D-Printing on the Elastic Properties of Filament ABS Polymer Specimens

Effect of 3D-Printing on the Elastic Properties of Filament ABS Polymer Specimens

Effect of 3D-Printing on the Elastic Properties of Filament ABS Polymer Specimens

The paper reports some results of experimental study on the effect of 3D-printing on the linear and nonlinear elastic properties of ABS polymer specimens manufactured in the form of thin filaments with 100% filling. The initial and 3D-printed ABD polymer specimens were studied by the static and Thurston–Bragger methods. Linear and nonlinear Young’s moduli and second-order nonlinear acoustic parameters were determined for several loading–unloading cycles of a specimen. It has been shown that the selected 3D-printing mode does not almost change the strength characteristics of ABS polymer, and its plastic characteristics even become slightly better. It has been revealed that mechanical loading has different effects on the nonlinear parameter of the initial and 3D-printed specimens. For the 3D-printed specimen, the nonlinear parameter is observed to decrease with increasing load.

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来源期刊
Acoustical Physics
Acoustical Physics 物理-声学
CiteScore
1.60
自引率
50.00%
发文量
58
审稿时长
3.5 months
期刊介绍: Acoustical Physics is an international peer reviewed journal published with the participation of the Russian Academy of Sciences. It covers theoretical and experimental aspects of basic and applied acoustics: classical problems of linear acoustics and wave theory; nonlinear acoustics; physical acoustics; ocean acoustics and hydroacoustics; atmospheric and aeroacoustics; acoustics of structurally inhomogeneous solids; geological acoustics; acoustical ecology, noise and vibration; chamber acoustics, musical acoustics; acoustic signals processing, computer simulations; acoustics of living systems, biomedical acoustics; physical principles of engineering acoustics. The journal publishes critical reviews, original articles, short communications, and letters to the editor. It covers theoretical and experimental aspects of basic and applied acoustics. The journal welcomes manuscripts from all countries in the English or Russian language.
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