Łach Michał, Gliścińska Eulalia, Przybek Agnieszka, Smoroń Krzysztof
Materials Engineering, Faculty of Material Engineering and Physics, Cracow University of Technology, Jana Pawła II 37, 31-864 Kraków, Poland.
Textile Institute, Faculty of Material Technologies and Textile Design, Lodz University of Technology, Zeromskiego 116, 90-924 Lodz, Poland.
Materials (Basel). 2024 Sep 19;17(18):4590. doi: 10.3390/ma17184590.
Diatomites are well-known mineral materials formed thousands of years ago from the skeletons of diatoms. They are found in many places around the world and have a wide range of applications. This article presents innovative research related to the possibility of using diatomite as a filler in composites to improve their sound absorption properties. The results of the study of the effect of diatomite processing (calcination) and its degree of fineness on the sound absorption coefficient of thermoplastic composites are presented. Three fractions of diatomite (0 ÷ 0.063 mm; 0.5 ÷ 3 mm; 2 ÷ 5 mm) and its variable mass proportion (0, 25, and 50 wt.%) were used. The composites were made with flax fibers as a reinforcement, polylactide as a matrix, and diatomite as an additional filler. This paper also presents the results of oxide chemical composition, diatomite mineral phase composition, morphology, and thermal conductivity coefficient of all diatomite fractions studied. In addition, the average particle size for diatomite powder was also determined. The most important of the studies was the determination of the acoustic properties of the aforementioned composites. As a result of the tests, it was found that the smallest fraction of diatomite particles and a variant without thermal treatment give the best effect in terms of sound absorption.
硅藻土是数千年前由硅藻的骨架形成的著名矿物材料。它们在世界各地的许多地方都有发现,并且有广泛的应用。本文介绍了有关使用硅藻土作为复合材料中的填料以改善其吸声性能可能性的创新性研究。给出了硅藻土加工(煅烧)及其细度对热塑性复合材料吸声系数影响的研究结果。使用了三种粒度的硅藻土(0÷0.063毫米;0.5÷3毫米;2÷5毫米)及其不同的质量比例(0、25和50重量%)。复合材料以亚麻纤维为增强材料、聚乳酸为基体、硅藻土为附加填料制成。本文还给出了所研究的所有硅藻土粒度的氧化物化学成分、硅藻土矿物相组成、形态以及热导率系数的结果。此外,还测定了硅藻土粉末的平均粒径。最重要的研究是上述复合材料声学性能的测定。测试结果表明,就吸声而言,最小粒度的硅藻土颗粒以及未经热处理的变体效果最佳。