2011PolimeryOpen access

Effect of POSS on morphology, thermal and mechanical properties of polyamide 6

R. Jeziórska, B. Świerz-Motysia, Agnieszka Szadkowska, Bogdan Marciniec, Hieronim Maciejewski, Michał Dutkiewicz, Irena Leszczyńska

Open full text 27 citations

Abstract

Polyamide nanocomposites with different octakis(dimethylsiloxy, 3-glycidoxypropyl)octasilsesquioxanes (POSS) contents (0.5, 2, 4 wt. %) were obtained during melt blending. SEM results showed that POSS are uniformly dispersed in polyamide 6 matrix (Fig. 1). FT-IR and DSC analysis indicated that the addition of POSS promotes modifications of the polyamide crystal structure, which consist of the progressive development of a crystals and significant increase in the glass transition temperature, crystallization temperature and the crystallization rate of the polyamide 6 (Figs. 2 and 3, Tab. 1). Tensile tests, performed on dried samples, revealed that strength and elongation at break were appreciably modified by the presence of POSS (Fig. 4, Tab. 2). Compared with the neat polyamide 6, the impact strength of PA 6/POSS composites is enhanced (Tab. 2). Dynamic mechanical thermal analysis (DMTA) demonstrated that both the storage modulus (G') and relaxation temperatures (Ta, Tb and Tg), especially glass transition temperature (Ta) of the PA6/POSS composites significantly increased (Fig. 5, Tab. 3).

About this research paper

What this paper is about

Polyamide nanocomposites with different octakis(dimethylsiloxy, 3-glycidoxypropyl)octasilsesquioxanes (POSS) contents (0.5, 2, 4 wt. %) were obtained during melt blending. SEM results showed that POSS are uniformly dispersed in polyamide 6 matrix (Fig. 1). FT-IR and DSC analysis indicated that the addition of POSS promotes modifications of the polyamide crystal structure, which consist of the progressive development of a crystals and significant increase in the glass transition temperature, crystallization temperature and the crystallization rate of the polyamide 6 (Figs. 2 and 3, Tab. 1). Tensile tests, performed on dried samples, revealed that strength and elongation at break were appreciably modified by the presence of POSS (Fig. 4, Tab. 2). Compared with the neat polyamide 6, the impact strength of PA 6/POSS composites is enhanced (Tab. 2). Dynamic mechanical thermal analysis (DMTA) demonstrated that both the storage modulus (G') and relaxation temperatures (Ta, Tb and Tg), especially glass transition temperature (Ta) of the PA6/POSS composites significantly increased (Fig. 5, Tab. 3).

Why it matters

OpenAlex reports 27 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Polyamide nanocomposites with different octakis(dimethylsiloxy, 3-glycidoxypropyl)octasilsesquioxanes (POSS) contents (0.5, 2, 4 wt. %) were obtained during melt blending. SEM results showed that POSS are uniformly dispersed in polyamide 6 matrix (Fig. 1). FT-IR and DSC analysis indicated that the addition of POSS promotes modifications of the polyamide crystal structure, which consist of the progressive development of a crystals and significant increase in the glass transition temperature, crystallization temperature and the crystallization rate of the polyamide 6 (Figs. 2 and 3, Tab. 1). Tensile tests, performed on dried samples, revealed that strength and elongation at break were appreciably modified by the presence of POSS (Fig. 4, Tab. 2). Compared with the neat polyamide 6, the impact strength of PA 6/POSS composites is enhanced (Tab. 2). Dynamic mechanical thermal analysis (DMTA) demonstrated that both the storage modulus (G') and relaxation temperatures (Ta, Tb and Tg), especially glass transition temperature (Ta) of the PA6/POSS composites significantly increased (Fig. 5, Tab. 3).

Key concepts: Polyamide, Materials science, Dynamic mechanical analysis, Glass transition, Crystallization, Ultimate tensile strength, Composite material, Elongation

Related papers

Back to paper searchBrowse research topicsOriginal source
Effect of POSS on morphology, thermal and mechanical properties of polyamide 6 — Research Paper | ScholarLens