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It is similar to the previous study revealing that the highest tensile strength has been gained from 20 30% banana pseudostem (Djojowasito et al. 2007); also, the other paper exhibited the highest tensile value of the sample at 15 wt% composition of fiber than 5 and 10 wt% (MdRadzi et al. 2015).
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Previous researches have shown that 60% water hyacinth, 20% straw, and 20% banana pseudostem composition gained the highest tensile strength value than other treatments (Djojowasito et al. 2007; Indriyati et al. 2016).
The highest tensile strength values were observed in sheep of the native genotype Santa Inês.
However, the mean relationship proposed by CEB-FIP model generally provided higher tensile strength value.
The films exhibited differences in their mechanical properties; higher tensile strength values were obtained for the yerba mate films than for the propolis samples.
It has been shown that higher energy delivery by laser radiation or increase in powder bed temperatures increase part density, reduce anisotropy, and yield higher tensile strength values, Young's modulus and elongation at break.
CoBlast HA coatings, with an average thickness of approx. 2.5 μm, were found to have higher tensile adhesion values (33.6 and 35.7 MPa), when compared with the 5 MPa obtained for the approx. 26.9 μm thick APS coatings using a modified tensile adhesion test.
The statistics of the mechanical strength were described well by the cumulative Weibull probability density function that resulted in characteristic strength of 6.2 GPa and a Weibull modulus of 4.5, while the highest tensile strength and Young's modulus values were 7.3 GPa and 318 GPa, respectively.
Tendons are remarkably strong, having one of the highest tensile strengths found among soft tissues.
High tensile strength (MPa) values were observed for both the cross-linked scaffolds (SACCH 8.94; SACC 2.96) than for the native polymers (chitosan 0.37; type I collagen 0.13).
A high tensile shear failure load value of 3850 N and low interface hardness value of HV 81 was observed for joints made under optimum conditions, and validation experiments confirmed the high predictability of the developed model with error less than 2%.
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