ORIGINAL ARTICLE
Determination of the Strength Parameters of Pinewood Based on the Non-Destructive Sclerometric Test with a Wood Hammer
 
More details
Hide details
1
Lublin University of Technology, Lublin, Poland
 
 
Online publication date: 2020-04-18
 
 
Publication date: 2020-03-01
 
 
Civil and Environmental Engineering Reports 2020;30(1):43-52
 
KEYWORDS
ABSTRACT
To assess the technical condition of a structure and design it using existing elements, it is necessary to know its parameters. For existing facilities, it is often not possible to get a sample of material and examine it directly in the laboratory. For this reason, in situ nondestructive testing is very important. The main goal of the paper is to present the issues related to determining the strength parameters of a particular wood based on the non-destructive sclerometric test performed with a wood sclerometric hammer. The study also presents the results of the impact of pinewood density on its compressive strength.
 
REFERENCES (15)
1.
Gazda, L and Górski, M and Skiba, K 2015. Analiza możliwości adaptacji drewnianego obiektu rekreacyjnego w funkcjonalny obiekt mieszkalny z zachowaniem rozwiązań i technologii wernakularnych. Budownictwo i Architektura 14, 29-42.
 
2.
Kimbar, R 2011: Wady drewna. Osie: Robert Kimbar.
 
3.
Kłoda, P 2015. Konserwacja drewnianej architektury wernakularnej – wnioski i doświadczenia z przeprowadzonych prac. Budownictwo i Architektura 14, 67-77.
 
4.
Kotwica, J 2011. Konstrukcje drewniane w budownictwie tradycyjnym. Warszawa: Arkady.
 
5.
Krzysik, F 1975. Nauka o drewnie, Warszawa: PWN.
 
6.
PN-EN 14081-1:2016-03. Timber structures – Strength-sorted structural timber with a rectangular cross-section – Part 1: General Requirements.
 
7.
PN-EN 14081-2:2018-11. Timber structures. Strength graded structural timber with a rectangular cross-section. Machine grading; additional requirements for type testing.
 
8.
PN-EN 1912:2012. Structural Timber. Strength classes. Assignment of visual grades and species.
 
9.
PN-EN 338:2016-06. Structural timber. Strength classes.
 
10.
PN-EN-408. Timber structures. Structural timber and glued laminated timber. Determination of some physical and mechanical properties.
 
11.
Soriano, J, da Veiga, N and Martins, I 2015. Wood density estimation using the sclerometric method. European Journal of Wood and Wood Products 73 (6), 753–758.
 
12.
Stefańczyk, B and Grabowski, W 2010. Budownictwo ogólne. Praca zbiorowa. Wyd. 1 (dodr.), Warszawa: Arkady.
 
13.
Trochonowicz, M and Galas, M 2018. Influence of air humidity and temperature on thermal conductivity of wood-based materials, Budownictwo i Architektura, 17, 77-86.
 
14.
Uścinowicz, J 2015. Problemy konwersji drewnianej architektury sakralnej Łemków po 1947 r. Budownictwo i Architektura 14, 277-293.
 
15.
Witomski, P 2015. Konserwacja zachowawcza a trwałość budowli drewnianych. Budownictwo i Architektura 14, 157-164.
 
eISSN:2450-8594
ISSN:2080-5187
Journals System - logo
Scroll to top