Thermal Stability and Heat Transfer of Polyurethanes for Joints Applications of Wooden Structures

Author:

Rutkowski Paweł1ORCID,Kwiecień Konrad2ORCID,Berezicka Anna1,Sułowska Justyna1ORCID,Kwiecień Arkadiusz3,Śliwa-Wieczorek Klaudia4ORCID,Azinovic Boris5ORCID,Schwarzkopf Matthew6ORCID,Pondelak Andreja5ORCID,Pečnik Jaka Gašper6ORCID,Szumera Magdalena1ORCID

Affiliation:

1. Department of Ceramics and Refractories, Faculty of Materials Science and Ceramics, AGH University of Krakow, al. A. Mickiewicza 30, 30-059 Krakow, Poland

2. Department of Biomaterials, Faculty of Materials Science and Ceramics, AGH University of Krakow, al. A. Mickiewicza 30, 30-059 Krakow, Poland

3. Chair of Structural Mechanics and Material Mechanics, Faculty of Civil Engineering, Cracow University of Technology, Warszawska 24 Street, 31-155 Krakow, Poland

4. Chair of Bridge, Metal and Wooden Structures, Faculty of Civil Engineering, Cracow University of Technology, Warszawska 24 Street, 31-155 Krakow, Poland

5. Slovenian National Building and Civil Engineering Institute, Dimičeva 12, 1000 Ljubljana, Slovenia

6. InnoRenew CoE, Livade 6a, 6310 Izola, Slovenia

Abstract

Wood characterized by desired mechanical properties and wood joining material is essential for creating wooden structures. The polymer adhesives are suitable for such applications due to the possibility of energy dissipation from stresses generated by wooden structures and the elimination of thermal bridging, which are common problems in metal joining materials. This research focuses on the thermophysical properties of the laboratory-prepared flexible and rigid polyurethanes to select an appropriate polymer adhesive. Our results showed that the highest thermal stability was in the case of the new PSTF-S adhesive, which reached 230 °C, but the lowest mass loss in the air environment was around 54% for the PS material. The mean thermal expansion coefficient for F&R PU adhesives was 124–164∙10−6 K−1. The thermal diffusivity of examined adhesives varied between 0.100 and 0.180 mm2s−1. The thermal conductivity, depending on the type of polyurethane, was in the 0.13–0.29 W∙m−1∙K−1 range. The relative decrease in thermal diffusivity after heating the adhesives to 150 °C was from 2% for materials with the lowest diffusivity to 23% for the PU with the highest value of heat transfer. It was found that such data can be used to simulate wooden construction joints in future research.

Funder

National Science Centre, Poland under the OPUS call in the Weave Program

Publisher

MDPI AG

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