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Extra resources for Advances in Adhesives, Adhesion Science, and Testing
This new method will be useful for automating measurement of wood failure in blockshear specimens with good precision and repeatability. KEYWORDS: laser, profilometcr, adhesion, block-shear, wood failure Introduction Quantifying percentage wood failure o f an adhesively bonded block-shear specimen is a challenging process. It requires a highly trained observer to make a visual estimate o f total wood failure on the shear cross-section with an estimate o f shallow and deep wood failure to the nearest 5 %, as specified in A S T M D 5266 .
A positive displacement corresponds to wood fragments on the surface that were removed from the opposite adherend. This flattening technique worked well for all specimens except number 5, which had significant cup and bow. 30 ADVANCES IN ADHESIVES, ADHESION SCIENCE, AND TESTING FIG. 6---Two-dimensional digital contour plot of Specimen 2. FIG. 7--Three-dimensional digital contour plot of Specimen 2. SCOTT ET AL ON WOOD FAILURE 31 FIG. 8--Typical single-scan profile for Specimen 4 before and after fiattening.
Equilibrating the RH takes a long time, but equilibrating the temperature only takes a short time. According to ASTM D 882 and the ASTM Practice for Conditioning Plastics and Electrical Insulation Materials for Testing, ASTM Designation D 618. the specimens should be conditioned to the environment for 40 or more hours prior to testing. The required moisture conditioning time depends on the specimen thickness and the diffusion coefficient of the material and the environment. 3-ram-thick FM 300K specimen exposed to the 50~ and 90 % RH hot/humid environment inside an environmental chamber.