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- An accurate service life prediction model is needed for building joint sealants in order to greatly reduce the time to market of a new product and reduce the risk of introducing a poorly performing product into the marketplace. A stepping stone to the success of this effort is the precise control of environmental variables in a laboratory accelerated test apparatus in order to produce reliable weathering data that can be used to generate a predictive model. This contribution reports a systematic study, using a novel laboratory test apparatus, investigating the individual and synergistic...AuthorsDonald L. Hunston, Kar Tean Tan, James J. Filliben, Adam L. Pintar, Gregory Schueneman, Christopher C. WhiteKeywordsSourceJournal of ASTM International, Volume 9, Number 5; 2012Year2012
Microcellular poly(hydroxybutyrate-co-hydroxyvalerate)-hyperbranched polymer-nanoclay nanocomposites
The effects of incorporating hyperbranched polymers (HBPs) and different nanoclays [Cloisite® 30B and halloysite nanotubes (HNT)] on the mechanical, morphological, and thermal properties of solid and microcellular poly(hydroxybutyrate-co-hydroxyvalerate) (PHBV) were investigated. According to the X-ray diffraction (XRD) and transmission electron microscopy (TEM) analyses, Cloisite 30B exhibited a combination of exfoliation and heterogeneous intercalation structure for both solid and microcellular PHBV-12% HBP-2% Cloisite 30B nanocomposites. TEM images indicated that HNTs were uniformly...AuthorsAlireza Javadi, Yottha Srithep, Srikanth Pilla, Craig M. Clemons, Shaoqin Gong, Lih-Sheng TurngKeywordsSourcePOLYMER ENGINEERING AND SCIENCE, 51. pp. 1815-1826Year2012- Lignin-based fibers were produced by electrospinning aqueous dispersions of lignin, poly(vinyl alcohol) (PVA), and cellulose nanocrystals (CNCs). Defect-free nanofibers with up to 90 wt % lignin and 15% CNCs were achieved. The properties of the aqueous dispersions, including viscosity, electrical conductivity, and surface tension, were examined and correlated to the electrospinnability and resulting morphology of the composite fibers. A ternary lignin-PVA-water phase diagram was constructed as a tool to rationalize the effect of mixing ratios on the dispersion electrospinability and...AuthorsMariko Ago, Kunihiko Okajima, Joseph Jakes, Park Sunkyu, Orlando J. RojasKeywordsSourceBiomacromolecules 2012, 13, 918-926; 2012Year2012
- Flexible electronics have a large number of potential applications including malleable displays and wearable computers. The current research into high-speed, flexible electronic substrates employs the use of plastics for the flexible substrate, but these plastics typically have drawbacks, such as high thermal expansion coefficients. Transparent films made from cellulose nanofibers have low thermal expansion and thus the potential to serve as substrates for flexible electronics. Here we present the results of using a cellulose nanofiber composite substrate for flexible electronics. While...AuthorsRonald C. Sabo, Jung-Hun Seo, Zhenqiang MaSource2012 TAPPI International Conference on Nanotechnology for Renewable MaterialsYear2012
- It is generally accepted that there should be an upward repetitive member allowable property adjustment. ASTM D245 (2011c) and ASTM D1990 (2011b) specify a 1.15 factor for allowable bending stress. This factor is also listed in ASTM D6555 (2011a, Table 1). In this technical note, sources of confusion regarding appropriate repetitive member factors are identified. This confusion casts some doubt on the validity of the 1.15 value.AuthorsSteve P. Verrill, David E. KretschmannKeywordsSourceJ. Struct. Eng. 2012.138:130-133Year2012
- Most wood species used in commercial and residential construction have little natural biological durability and will suffer from biodeterioration when exposed to moisture. Historically, this problem has been overcome by treating wood for outdoor use with toxic wood preservatives. As societal acceptance of chemical use changes, there is continual pressure to develop and market new types of durable wood products. In the last few years, several new types of wood preservatives have become available, and other new formulations are expected to appear on the near horizon. There is also increasing...AuthorsRebecca E. Ibach, Stan LebowKeywordsSourceMcGraw-Hill Yearbook of Science & Technology; pp.317-319; 2012Year2012
- Cellulose nanofibril/phenol formaldehyde (CNF/PF) composite films with high work of fracture were prepared by filtering a mixture of 2,2,6,6tetramethylpiperidine-1-oxyl (TEMPO) oxidized wood nanofibers and water-soluble phenol formaldehyde with resin contents ranging from 5 to 20 wt%, followed by hot pressing. The composites were characterized by tensile testing, dynamic mechanical analysis, scanning electron microscopy, atomic force microscopy, thermo-gravimetric analysis, and moisture/water absorption. Neat CNF films had tensile stress and Young's modulus of 232 MPa and 4.79 GPa,...AuthorsYan Qing, Ronald C. Sabo, Yiqiang Wu, Zhiyong CaiKeywordsSourceBioResources Volume 7, number 3, 3064-3075; 2012Year2012
- North America has a vast system of hardwood and softwood forests, and the wood harvested from this resource is widely used in many applications. These include lumber and other building materials, furniture, crating, containers, pallets and other consumer goods. This wide array of wood products generates not only a large amount of industrial wood by-product during the manufacturing process, but it also productes a large amount of wood waste when these products are disposed at teh end of their useful lives.AuthorsDavid B. McKeever, Robert H. FalkSourceBioCycle, p. 30-32; August 2012Year2012
- Land-use change, primarily from conventional agricultural expansion and deforestation, contributes to approximately 17% of global greenhouse-gas emissions1. The fate of cleared wood and subsequent carbon storage as wood products, however, has not been consistently estimated, and is largely ignored or oversimplified by most models estimating greenhouse-gas emissions from global land-use conversion2,3. Here, we estimate the fate of cleared wood and timing of atmospheric carbon emissions for 169 countries.We show that 30 years after forest clearance the percentage of carbon stored in wood...AuthorsJ. Mason Earles, Sonia Yeh, Kenneth E. SkogKeywordsSourceNature Climate Change 2, 1 (2012)Year2012
- Greenhouse gases (GHGs) trap infrared radiation emitting from the Earth’s surface to generate the “greenhouse effect” thus keeping the planet warm. Many natural activities including rotting vegetation emit GHGs such as carbon dioxide to produce this natural affect. However, in the last 200 years or so, human activity has increased the atmospheric concentrations of GHGs mostly from burning fossil fuels resulting in climate change (i.e. additional warming).AuthorsRichard BergmanSourceUniversity of Wisconsin PH.D Dissertation, 2012 278pYear2012