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Maximum bonding strength about 10.5 MPa is obtained at optimal power electrode position.
The EBD and SVD coatings recorded maximum bonding strength with the underlying substrates, on the coatings annealed at 1000 and 1200 °C, respectively.
The mechanical roughening shows a slight positive effect on the adhesion, but the maximum bonding strength achieved in this case is 1 MPa in the sputtering process.
In addition, maximum bonding strength belongs to LDPE treated by radiation grafting of AAm, so that no failure is observed in the pull-off test.
The adhesion strength tests showed that the coating added with magnesium hydroxide (Mg(OH 2) exhibited maximum bonding strength to the metal surface due to its effective interface adhesion.
The maximum bonding strength and impact resistance obtained in the laminar coatings reached 40 MPa and 21.2 J, respectively, which are respectively a ∼54% and a 10-fold increase over the monolithic coating.
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Moreover, maximum bond strength, fracture energy and bond stiffness are determined to assess the bond strength between these two materials.
Particular emphasis is given to the characteristic bond behaviour of rubberised concrete in terms of maximum bond strength and splitting strength as well bond stiffness and slip parameters.
The maximum bond strength ratio corresponds to a splice length over rebar diameter ratio of 20 35 when the maximum elastic stress is developed in enamel-coated rebar.
The results of this study show improvements in the maximum bond strength behaviour of different SSRs in simulated marine environments, in comparison with B500SD, in terms of several variables: Bond index, curing time, w/c ratio, and corrosion.
Maximum bond strength was gained in the presence of 0.125 wt% of MnO2 (2.8 N/mm) while lower peel strength was achieved when identical percentages of other additives were added.
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