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- Glued laminated timber Tudor arches have been in wide use in the United States since the 1930s, but detailed knowledge related to seismic design in modern U.S. building codes is lacking. FEMA P-695 (P-695) is a methodology to determine seismic performance factors for a seismic force resisting system. A limited P-695 study for glued laminated timber arch structures highlighted the lack of lateral load testing; therefore, critical modelling information was not available and assumptions based on available research were used. In this study, full-scale lateral load testing of the glued laminated...AuthorsDouglas R. Rammer, Philip LineKeywordsSourceWorld Conference on Timber Engineering, WCTE 2016, August 22-25.Year2016
- Here we demonstrate potentially low cost and green productions of high thermally stable and carboxylated cellulose nanocrystals (CNCs) and nanofibrils (CNF) from bleached eucalyptus pulp (BEP) and unbleached mixed hardwood kraft pulp (UMHP) fibers using highly recyclable dicarboxylic solid acids. Typical operating conditions were acid concentrations of 50 - 70 wt% at 100 °C for 60 min and 120 °C (no boiling at atmospheric pressure) for 120 min, for BEP and UMHP, respectively. The resultant CNCs have a higher thermal degradation temperature than their corresponding feed fibers and carboxylic...AuthorsHuiyang Bian, Liheng Chen, Ruibin Wang, Junyong ZhuKeywordsSourceJournal of Visualized Experiments(119):1-7.Year2016
- Cross-laminated timber (CLT) is a relatively new type of massive timber system that has shown to possess excellent mechanical properties and structural behavior in building construction. When post-tensioned with high-strength tendons, CLT panels perform well under cyclic loadings because of two key characteristics: their rocking behavior and self-centering capacity. Although post-tensioned rocking CLT panels can carry heavy gravity loads, resist lateral loads, and self-center after a seismic event, they are heavy and form a pinched hysteresis, thereby limiting energy dissipation. Conversely...AuthorsT. Ho, T. Dao, S. Aaleti, J. van de Lindt, Douglas R. RammerKeywordsSourceJournal of Structural Engineering, © ASCE, ISSN 0733-9445Year2016
- As a hardwood tree develops, surface defects such as wounds and branch stubs are overgrown or encapsulated into the tree. Evidence of such a defect remains present on the tree for decades, or for the life of the tree, in the form of bumps and changes in bark pattern. During this process, the appearance of the defect on the tree changes. The defect becomes flatter, the bark texture changes, and its dimensions change. This progressive change in appearance is predictable, permitting the size and location of the internal defect to be reliably estimated. Thus, the shape and size of the external...AuthorsEd ThomasKeywordsSourceUSDA Forest Service, Forest Products Laboratory, FPL-RP-687. 2016. 16 p.Year2016
- To evaluate the ability of a wood tornado safe room to resist wind pressures produced by a tornado, two safe room com-ponents were tested for wind pressure strength. A tornado safe room ceiling panel and door were static-pressure-tested according to ASTM E 330 using a vacuum test system. Re-sults indicate that the panels had load capacities from 2.4 to 3.5 times that required by the wind pressure calculations of ASCE 7. The panels sustained no damage at these elevated load levels.AuthorsRobert H. Falk, Deepak ShresthaSourceResearch Paper FPL-RP-688. U.S. Department of Agriculture, Forest Service, Forest Products Laboratory. 6 p.Year2016
- African mahogany (Khaya spp.) has attracted the interest of the timber market in Brazil because of the quality of the wood and the similarity to the highly demanded, Brazilian mahogany (S. macrophylla King). The goal of this study was to examine natural resistance of plantation-grown African mahogany (Khaya spp.) to decay fungi and termite feeding, in order to better evaluate the potential use of this material as a suitable replacement for Brazilian mahogany wood. Heartwood and sapwood of two African mahogany species, Khaya ivorensis and Khaya senegalensis, were evaluated for resistance to...AuthorsTâmara Suely Filgueira Amorim França, Frederico José Nistal França, Rachel A. Arango, Bessie Woodward, Marina Donária Chaves ArantesSourceInternational Biodeterioration & Biodegradation. 107 (2016): 88-91.Year2016
- This paper presents selected results of connector testing and wall testing which were part of a Forest Products Lab-funded project undertaken at Colorado State University in an effort to determine seismic performance factors for cross laminated timber (CLT) shear walls in the United States. Archetype development, which is required as part of the process, is also discussed. Connector tests were performed on generic angle brackets which were tested under shear and uplift and performed as expected with consistent nail withdrawal observed. Quasi-static cyclic tests were conducted on CLT shear...AuthorsM. Omar Amini, John W. van de Lindt, Douglas R. Rammer, Shiling Pei, Philip Line, Marjan PopovskiSourceWCTE 2016, World conference on Timber Engineering, August 22-25, 2016, Vienna, Austria.Year2016
- Here we used dilute oxalic acid to pretreat a kraft bleached Eucalyptus pulp (BEP) fibers to facilitate mechanical fibrillation in producing cellulose nanofibrils using disk milling with substantial mechanical energy savings. We successfully applied a reaction kinetics based combined hydrolysis factor (CHFx) as a severity factor to quantitatively control xylan dissolution and BEP fibril deploymerization. More importantly, we were able to accurately predict the degree of polymerization (DP) of disk-milled fibrils using CHFx and milling time or milling energy consumption. Experimentally...AuthorsYanlin Qin, Xueqing Qiu, Junyong ZhuKeywordsSourceScientific Reports, Vol. 6:1-12Year2016
- Cellulose nanomaterials have a number of interesting and unique properties that make them well-suited for use in electronics applications such as energy harvesting devices, actuators and sensors. Cellulose nanofibrils and nanocrystals have good mechanical properties, high transparency, and low coefficient of thermal expansion, among other properties that facilitate both active and inactive roles in electronics and related devices. For example, these nanomaterials have been demonstrated to operate as substrates for flexible electronics and displays, to improve the efficiency of photovoltaics...AuthorsRonald C. Sabo, Aleksey Yermakov, Chiu Tai Law, Rani ElhajjarKeywordsSourceJ. Renew. Mater., 4(5): 297-312.Year2016
- Performance requirements for packaging films may include barrier properties, transparency, flexibility, and tensile strength. Conventional packaging materials such as plastic films and laminates, are typically made from petroleum-based polymers. Currently, there is a drive to develop sustainable packaging materials. These alternative materials must be able to be manufactured economically and on a commercial scale, exhibit barrier properties and transparency, and provide adequate mechanical performance. As a biobased, renewable material, cellulose nanomaterials (CNs) are ideally suited to...AuthorsNicole M. StarkKeywordsSourceJ. Renew. Mater. 4(5): 313-326Year2016