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Mechanical Properties of Butyl Rubber Composites with Microspheres Under Cyclic Loading
The development of lightweight composites to reduce noise and vibration is a pressing challenge. One way to reduce the weight of the composite is to add hollow microspheres to it. This article tests butyl rubber composites with hollow glass or aluminosilicate microspheres under cyclic loading. The results showed that addition of microspheres not only reduces the weight of the composite, but also improves its damping properties. It was found that aluminosilicate microspheres behave like a conventional filler, while the action of glass microspheres is more similar to that of a plasticizer. This work could potentially contribute to understanding the properties of microparticle-filled elastomers and contribute to the development of methods for predicting the properties of composites.
Mechanical Properties of Butyl Rubber Composites with Microspheres Under Cyclic Loading
The development of lightweight composites to reduce noise and vibration is a pressing challenge. One way to reduce the weight of the composite is to add hollow microspheres to it. This article tests butyl rubber composites with hollow glass or aluminosilicate microspheres under cyclic loading. The results showed that addition of microspheres not only reduces the weight of the composite, but also improves its damping properties. It was found that aluminosilicate microspheres behave like a conventional filler, while the action of glass microspheres is more similar to that of a plasticizer. This work could potentially contribute to understanding the properties of microparticle-filled elastomers and contribute to the development of methods for predicting the properties of composites.
Mechanical Properties of Butyl Rubber Composites with Microspheres Under Cyclic Loading
Lecture Notes in Civil Engineering
Akimov, Pavel (editor) / Vatin, Nikolai (editor) / Yurkin, Yuriy (author) / Benavent‐Climent, Amadeo (author) / Kovtonyuk, Pavel (author) / Varankina, Darya (author) / Voloskova, Irina (author)
2021-11-09
14 pages
Article/Chapter (Book)
Electronic Resource
English
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