3 resultados para adverse effect

em Digital Commons at Florida International University


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Since the introduction of fiber reinforced polymers (FRP) for the repair and retrofit of concrete structures in the 1980’s, considerable research has been devoted to the feasibility of their application and predictive modeling of their performance. However, the effects of flaws present in the constitutive components and the practices in substrate preparation and treatment have not yet been thoroughly studied. This research aims at investigating the effect of surface preparation and treatment for the pre-cured FRP systems and the groove size tolerance for near surface mounted (NSM) FRP systems; and to set thresholds for guaranteed system performance. This study was conducted as part of the National Cooperative Highway Research Program (NCHRP) Project 10-59B to develop construction specifications and process control manual for repair and retrofit of concrete structures using bonded FRP systems. The research included both analytical and experimental components. The experimental program for the pre-cured FRP systems consisted of a total of twenty-four (24) reinforced concrete (RC) T-beams with various surface preparation parameters and surface flaws, including roughness, flatness, voids and cracks (cuts). For the NSM FRP systems, a total of twelve (12) additional RC T-beams were tested with different grooves sizes for FRP bars and strips. The analytical program included developing an elaborate nonlinear finite element model using the general purpose software ANSYS. The bond interface between FRP and concrete was modeled by a series of nonlinear springs. The model was validated against test data from the present study as well as those available from the literature. The model was subsequently used to extend the experimental range of parameters for surface flatness in pre-cured FRP systems and for groove size study in the NSM FRP systems. Test results, confirmed by further analyses, indicated that contrary to the general belief in the industry, the impact of surface roughness on the global performance of pre-cured FRP systems was negligible. The study also verified that threshold limits set for wet lay-up FRP systems can be extended to pre-cured systems. The study showed that larger surface voids and cracks (cuts) can adversely impact both the strength and ductility of pre-cured FRP systems. On the other hand, frequency (or spacing) of surface cracks (cuts) may only affect system ductility rather than its strength. Finally, within the range studied, groove size tolerance of ±1/8 in. does not appear to have an adverse effect on the performance of NSM FRP systems.

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Partially comparative pricing involves a featured store providing price comparisons in reference to a competitor for some products (comparatively priced products) while omitting such comparisons and providing only its price for other products (non-comparatively priced products). Barone, Manning and Miniard (2004) found that while partially comparative pricing enhanced consumers' price perceptions of comparatively priced products at the featured retailer, it had the opposite effect for non-comparatively priced products (i.e., an inferiority effect). To the contrary, it is argued that a price comparison for one brand in a product category may enhance consumers' price perceptions of the remaining, non-comparatively priced brands within the same product category (i.e., a superiority effect). This research seeks to (a) examine the robustness of partially comparative pricing's effect in an across-product category context compared to a within-product category context and (b) extend the understanding of partially comparative pricing's within-product category effect on non-comparatively priced brands by examining potential moderators of this effect: brand diversity, brand typicality, and the relative expensiveness of the brand receiving the price comparison. The findings of four studies provide evidence to support the presence of a superiority effect in a within-product category context and suggests that the adverse effect of partially comparative pricing in an across-product category context may not be as robust as previously thought. Although the superiority effect was unaffected by brand diversity (i.e., whether the brands emanated from different manufacturers or from a single manufacturer), it was found to be moderated by the typicality of the brand receiving the price comparison as well as the comparison brand's relative expensiveness. Research participants formed more favorable relative price beliefs about the non-comparatively priced brand when the comparatively priced brand was perceived as a more typical member of the product category. Similarly, participants formed more favorable beliefs about the non-comparatively priced brand when the comparison price was assigned to the most expensive brand in the product category rather than the least expensive brand.

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Since the introduction of fiber reinforced polymers (FRP) for the repair and retrofit of concrete structures in the 1980’s, considerable research has been devoted to the feasibility of their application and predictive modeling of their performance. However, the effects of flaws present in the constitutive components and the practices in substrate preparation and treatment have not yet been thoroughly studied. This research aims at investigating the effect of surface preparation and treatment for the pre-cured FRP systems and the groove size tolerance for near surface mounted (NSM) FRP systems; and to set thresholds for guaranteed system performance. The research included both analytical and experimental components. The experimental program for the pre-cured FRP systems consisted of a total of twenty-four (24) reinforced concrete (RC) T-beams with various surface preparation parameters and surface flaws, including roughness, flatness, voids and cracks (cuts). For the NSM FRP systems, a total of twelve (12) additional RC T-beams were tested with different grooves sizes for FRP bars and strips. The analytical program included developing an elaborate nonlinear finite element model using the general purpose software ANSYS. The model was subsequently used to extend the experimental range of parameters for surface flatness in pre-cured FRP systems, and for groove size study in the NSM FRP systems. Test results, confirmed by further analyses, indicated that contrary to the general belief in the industry, the impact of surface roughness on the global performance of pre-cured FRP systems was negligible. The study also verified that threshold limits set for wet lay-up FRP systems can be extended to pre-cured systems. The study showed that larger surface voids and cracks (cuts) can adversely impact both the strength and ductility of pre-cured FRP systems. On the other hand, frequency (or spacing) of surface cracks (cuts) may only affect system ductility rather than its strength. Finally, within the range studied, groove size tolerance of +1/8 in. does not appear to have an adverse effect on the performance of NSM FRP systems.