WAEC offline past questions - with all answers and explanations in one app - Download for free
WAEC May/June 2024 - Practice for Objective & Theory - From 1988 till date, download app now - 99995

Comparative Assessment of the Strengths of Solid and Glued Laminated Timber

Type Project Topics (pdf)
Faculty Engineering, Environment & Technology
Course Building
Price ₦3,000
Buy Now
Key Features:
No of Chapters: 5
No of Pages: 65
WAEC May/June 2024 - Practice for Objective & Theory - From 1988 till date, download app now - 99995
Post-UTME Past Questions - Original materials are available here - Download PDF for your school of choice + 1 year SMS alerts
WAEC offline past questions - with all answers and explanations in one app - Download for free
Abstract:
Timber is a construction material with an unparalleled environmental credential. Howbeit, limitations of span and crossectional dimension, strength reducing defects, and anisotropy limits its engineering application. Mechanical methods of jointing to address the earlier challenge have introduced serious wood fiber failure and increased the embodied energy in timber as a green material. However, developed societies have established in literature the possibility of overcoming these limitations to utilize timber beyond the traditional application in Nigeria being glueable for developing engineered wood products like glued laminated timber (glulam) using their timber species. Conversely, while little or no interest is shown in timber as a structural material in Nigeria, many of the few types of research in timber have focused on solid timber elements leaving its limitations unattended. Consequently, its structural capabilities are yet unappreciated.

Nevertheless, the fact remains that reconstituting natural timber as glulam is an effective way of optimizing this green material for limitless structural use. Whether these qualities are achievable with local timber is the main thrust of this research. The research, therefore, conducted laboratory experiments on selected timber species namely; Ire (Funtumia africana), Awun (Alstonia congensis), and Oriro (Antiaristoxicaria) being readily available and widely used species with no information on Oriro and Ire in NCP 2 of 1973. The aim was to assess their strength properties as glulam elements with the view to improving their structural capacity.

It also set out to determine their glue ability, the effects of temperature variation on compressive strength parallel to grain for glulam short columns by subjecting specimens of equal dimension for the three species to different temperatures of 0 0C, 40 0C, 50 0C, 70 0C, 100 0C and room temperature for 4 hours in an electric oven prior to testing; to compare the mechanical properties of solid and glulam elements. In furtherance, specimens were prepared and tested for; static bending strength, compression parallel and perpendicular to the grain, density, and moisture content in line with ASTM D193, EN 408(2003), and EN13183-1(2002).

The research established that the species are; structurally glueable, that due to temperature increase compressive strength is lost in glulam columns from control temperature (30 0C and 27.90C) to 100 was 41% 14.4% and 21.6% in Ire, Awun and Oriro. Results showed that glulam elements developed 55%, 95%, and 143% of clear solid wood bending strength and that bending strength of 65.22N/mm2; 36.44N/mm2, 26.15N/mm2; 25N/mm2 and 14N/mm2; 20N/mm2 in solid and glulam in the species are structurally significant.The study has therefore demonstrated that the timber species studied can be engineered to load-bearing glued-laminated structural elements using polyvinyl acetate glue without severe loss of strength below and above room temperature.
Introduction:
1.1 Background of the Study
The versatility of timber finds wide application in the construction industry spanning from simple framing in housing projects to large-scale public facilities. However, because sawn wood has restrictions to spans and cross-sectional dimensions due to the size of the tree as well as strength-reducing features which occur at growth, its value as a structural material for extensive structural applications is limited. Engineered wood products such as glue-laminated timber (glulam) were therefore developed to improve the use of natural timber beyond its natural limitations.

Structural glued laminated timber is an engineered structural timber glued up from suitably selected and prepared pieces of stress graded lumber either in a straight or curved form with the grain of all pieces essentially parallel to the longitudinal axis of the member (APA, 1996; Manja et al., 2010). According to the American plywood association (APA, 2013), glulam has remained the most resource-efficient approach to wood building products when it comes to optimizing products from a carefully managed timber resource. Glued laminated wood can be built out of defective wood without losing its strength properties as reported by Regina et al.,(2010).

The application of glue-laminated timber as a construction material would therefore make many species of timber previously regarded as non-merchantable useful for structural purposes. Clearly, this has the potential to revamp the forestry industry making it a massive employer of labor. Glulam can also be manufactured from small diameter fast-growing trees, thereby bridging the supply deficit from slow-growing trees(Evalinaet al.,2010). According to the American Institute of timber construction.
Buy Now
 
Post-UTME Past Questions - Original materials are available here - Download PDF for your school of choice + 1 year SMS alerts
WAEC May/June 2024 - Practice for Objective & Theory - From 1988 till date, download app now - 99995
WAEC Past Questions, Objective & Theory, Study 100% offline, Download app now - 24709
WAEC offline past questions - with all answers and explanations in one app - Download for free