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A large angle wedge type of anchorage using transverse enhanced CFRP tendons is designed and tested for beam string structure.
These studies were divided into four different comparison groups according to the type of anchorage reinforcement used in each group during space closure (Table 2).
The related design formulation is still in its initial stage, which limits the practical use of this type of anchorage system for FRP strengthening.
Based on the failure mode analysis of laboratory tests and numerical results, some details were suggested to improve the large angle wedge type of anchorage for applying to large diameter CFRP tendon.
The present work intends to contribute to the knowledge of two commercially available systems that differ on the type of anchorage: (i) the Mechanical Anchorage (MA), and (ii) the Gradient Anchorage (GA).
The effect of type of anchorage system (MA and GA), prestrain level (0 and 0.4%), width (50 mm and 80 mm) and thickness (1.2 mm and 1.4 mm) of the CFRP laminate, and the surface preparation (grinded and sandblasted) on the flexural response were the main studied parameters.
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In the experimental program, different types of anchorage methods were tested in a double shear push-out test setup.
Therefore, this set of data should be applied with caution, and further study is required with the series of questionnaire including several types of anchorage in both arches.
As mentioned above, the paper of Musilli et al. [2] presents cases treated with both types of anchorage and will be described again in the next paragraph.
While the current version of ACI 440.2R (2008) suggests that FRP performance can be improved with transverse wrapping anchorage, specific design guidelines for other types of anchorage systems are not included.
Topics to be discussed include classification, types and properties (e.g., biocompatibility, osseointegration, types of anchorage, screw head, and thread design), clinical applications, site and placement method selection, clinical procedures for implant insertion, and loading and removal processes.
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