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- Before the topics of using a hand lens, preparing wood for observation, and understanding the characters used in wood identification can be tackled, a general introduction to the biology of wood must be undertaken. The woods in commercial trade in Central America come almost exclusively from trees, so the discussion of wood biology is restricted to trees here, though most of what is presented is also true of shrubs and lianas.AuthorsAlex C. WiedenhoeftKeywordswood identification, hand lens, Central America, Central American woods, commercial timber, pattern recognition, wood identification process, biology of wood, wood anatomy, wood structure, scientific names, loupe, macroscopic, sample preparation, surfacing, cutting, characters, vessels, rays, parenchyma, identification key, species description, similar woods, species summaries, wood collection, wood identification references, InsideWoodSourceIn: Identification of Central American Woods. 2011. Forest Products Society, Madison, WI. Publication #7215-11, ISBN 978-1-892529-58-9. pp. 11-20.Year2011
- A hand lens is a powerful tool for the identification of wood, but like all tools it must be used correctly to take full advantage of its powers. The hand lens has two main parts, a lens that magnifies the object of interest (generally we use 10X or 14X lenses in wood identification; a 14X lens is recommended for use with this manual) and a housing to hold and protect the lens (Figure 1). Unlike a microscope, which is able to focus at different distances depending on the specimen and the configuration of the various lenses, thus requiring much adjusting, a hand lens has a fixed focal...AuthorsAlex C. WiedenhoeftKeywordswood identification, hand lens, Central America, Central American woods, commercial timber, pattern recognition, wood identification process, biology of wood, wood anatomy, wood structure, scientific names, loupe, macroscopic, sample preparation, surfacing, cutting, characters, vessels, rays, parenchyma, identification key, species description, similar woods, species summaries, wood collection, wood identification references, InsideWoodSourceIn: Identification of Central American Woods. 2011. Forest Products Society, Madison, WI. Publication #7215-11, ISBN 978-1-892529-58-9. pp. 21-22.Year2011
- Wood identification is a combination of art and science. Although the bulk of this manual focuses on the scientific characteristics used to make accurate field identifications of wood, the contribution of the artistic component to the identification process should be neither overlooked nor understated. Though the accumulation of scientific knowledge and experience is necessary for wood identification, the mind processes this information in a way that melds scientific knowledge with a more artistic perception of the structures used to identify the wood. There is nothing specific that you...AuthorsAlex C. WiedenhoeftKeywordswood identification, hand lens, Central America, Central American woods, commercial timber, pattern recognition, wood identification process, biology of wood, wood anatomy, wood structure, scientific names, loupe, macroscopic, sample preparation, surfacing, cutting, characters, vessels, rays, parenchyma, identification key, species description, similar woods, species summaries, wood collection, wood identification references, Inside woodSourceIn: Identification of Central American Woods. 2011. Forest Products Society, Madison, WI. Publication #7215-11, ISBN 978-1-892529-58-9. pp. 7-9.Year2011
- The goal of this paper is to propose and demonstrate a multi level design optimization approach for the coordinated determination of a material constitutive model synchronously to the design of the experimental procedure needed to acquire the necessary data. The methodology achieves both online (real-time) and offline design of optimum experiments required for characterization of the material system under consideration, while it also achieves the constitutive characterization of the system. The approach is based on the availability of mechatronic systems that can expose specimens to...AuthorsJohn G. Michopoulos, Tomonari Furukawa, John C. Hermanson, Samuel G. LambrakosKeywordsSourceJournal of Algorithms & Computational Technology, Volume 5, Number 4, December 2011; pp. 623-644; 2011.Year2011
- Lignin is a natural polymer and one of the most abundant materials on earth. Despite this fact, lignin is often viewed as a by-product in chemical pulp processing and the use of lignin as a sustainable material is low. However, research and public awareness of sustainability have opened up new possibilities for using lignin as a material.AuthorsS. Olsson, E. Ostmark, Rebecca E. Ibach, Craig M. Clemons, K.B. Segerholm, F. EnglundKeywordsSourceIn: Proceedings of the 7th meeting of the NORDIC-BALTIC NETWORK IN WOOD MATERIAL SCIENCE & ENGINEERING (WSE) October 27-28, 2011, Oslo, Norway, 2011, pp. 173-178; 2011.Year2011
- Economic processing of lignocellulosic biomass requires handling the biomass at high solids concentration. This creates challenges because concentrated biomass behaves as a Bingham-like material with large yield stresses. Here we employ torque rheometry to measure the rheological properties of concentrated lignocellulosic biomass (corn stover). Yield stresses obtained using torque rheometry agree with those obtained using other rheometric methods, but torque rheometry can be used at much larger solids concentration (weight fractions of insoluble solids greater than 0.2). Yield stresses...AuthorsJ.R. Samaniuk, J. Wang, T.W. Root, C Tim Scott, D.J. KlingenbergKeywordsSourceKorea-Australia Rheology Journal Volume 23, Number 4, December 2011 pp. 237-245; 2011.Year2011
- Wood structural panel (WSP) sheathed shear walls and diaphragms are the primary lateralload-resisting elements in wood-frame construction. The historical performance of lightframe structures in North America has been very good due, in part, to model building codes that are designed to preserve life safety. These model building codes have spawned continual improvement and refinement of engineering solutions. There is also an inherent redundancy of wood-frame construction using WSP shear walls and diaphragms. As wood-frame construction is continuously evolving, designers in many parts of...AuthorsTom Skaggs, Borjen Yeh, Frank Lam, Minghao Li, Douglas R. Rammer, James WackerSourceCIB-W18/44-15-3; INTERNATIONAL COUNCIL FOR RESEARCH AND INNOVATION IN BUILDING AND CONSTRUCTION, WORKING COMMISSION W18 - TIMBER STRUCTURES, MEETING FORTY FOUR ALGHERO ITALY AUGUST 2011.Year2011
- Design of structural members made of wood-plastic composites (WPC) is not possible without accurate test data for tension and compression. The viscoelastic behavior of these materials means that these data are required for both the quasi-static stress-strain response, and the long-term creep response. Their relative incompressibility causes inherent difficulties in creating effective clamping devices that do not preload the specimens. In order to conduct repeats of both test modes at multiple stress levels for at least 90 days, uni-axial test apparatuses must be economical and mass...AuthorsScott E. Hamel, John C. Hermanson, Steven M. CramerKeywordsSourceJournal of Testing and Evaluation, Volume 39, Number 6, Paper IDJTE103715.Year2011
- In this study, stress-relaxation performance of HDPE-based injection-molded composites containing four types of natural fibers (i.e., wood flour, rice hulls, newsprint, and kenaf fiber) at 25 and 50 wt% contents, and the effect of prescribed strain levels were investigated. The results indicated that incorporating more filler causes lower relaxation values and rates, and stress retention and prescribed strain level were reversely correlated. Among the studied filler types, wood flour and kenaf fiber presented more similar behaviors, whereas newsprint resembled rice hulls performance....AuthorsRobert H. Falk, Colin Felton, Babak Mirzaei, Mehdi TajvidiSourceJournal of Reinforced Plastics and Composites Volume 30, Number 10, 875–881; 2011.Year2011
- The U.S. National Park Service acquired the National Historic Copper Mine at Kennecott, Alaska, in 1998. There was uncertainty about the condition of the timber-cribbing foundation supporting the concentration mill, the largest building in the mine complex. A comprehensive on-site evaluation of the timber cribbing foundation was performed in summer 2009. The inspection process included visual assessment, species confirmation, moisture content determination, stress wave scanning test, resistance micro-drillingcoredrilling, and decay testing. Extensive deterioration was found in the timber-cr...AuthorsJames Wacker, Xiping Wang, Douglas R. Rammer, Bessie WoodwardSourceIn: Proceedings of the 17th International Nondestructive Testing and Evaluation of Wood Symposium, Volume 2, Sept 14-16, 2011. University of West Hungary, Sopron, Hungary. pp. 513-521. (Edited by Ferenc Divos, Published by the University of West Hungary; ISBN 978-963-9883-83-3, volume 2).Year2011