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A Non-Destructive Timber Testing Approach for Developing Countries
Details
Wood is a biological material whose properties vary with species, age and growing conditions. Wood strength properties also vary even within a single tree owing to the orthotropic nature of wood. Thus sustainable utilization of wood particularly as a structural material requires prior knowledge of its strength properties. It is not a surprising that in a number of least developed countries such as Uganda, wood selection and utilization is based on the subjective visual grading mechanisms as determined by the visible defects. In addition, the weak quality control systems, loose national timber standards and weak regulatory frameworks prevalent in most developing countries imply that end-users ideally get varying nominal grades. Therefore, this book opens by presenting a review of timber strength characterization approaches and later on focuses on a non-destructive mechanism for predicting timber flexural properties using deflection as a non destructive predictive parameter. The book concludes that the NDE approach can be used to predict the flexural strength quality of structural timber with 95% level of confidence.
Autorentext
The Author, BSc. Agric. Eng., MSc. Forestry (Mak), is currently employed as an Assistant Lecturer at Makerere University in the Department of Agricultural and Bios-Systems Engineering. Over the last 10 years, Zziwa has supervised over 15 undergraduate students. Zziwa is currently pursuing his PhD degree.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783659813412
- Genre Mechanical Engineering
- Sprache Englisch
- Anzahl Seiten 76
- Herausgeber LAP LAMBERT Academic Publishing
- Größe H220mm x B150mm x T5mm
- Jahr 2016
- EAN 9783659813412
- Format Kartonierter Einband
- ISBN 3659813419
- Veröffentlichung 15.01.2016
- Titel A Non-Destructive Timber Testing Approach for Developing Countries
- Autor Ahamada Zziwa
- Untertitel A step towards sustainable and rational timber utilization in the construction sector
- Gewicht 131g