Your English writing platform
Discover LudwigSuggestions(5)
Exact(6)
Compared to pristine chitosan film, the tensile strength of GO-chitosan film is improved by 2.5 folds and Young's modulus increases by nearly 4.6 folds.
The compressive strength decreases by 64%, the elastic modulus increases by 153%, and the poisson ratio decreases by 8%.
In particular, the compressive modulus increases by about 140% for a bio-based polyhydroxyl content of 50 wt% together with an increase in foam density.
For the composites containing 1.0 wt% MWNTs, the Young modulus increases by ca. 27.4%, while the elongation at break only decreases by ca. 5.4% as compared with pure PA1010 prepared under the same experimental conditions.
Relative to PP, modulus increases by 22% and 12% and tensile strength by 19% and 14% for 99/1 wt% PP/p-NS and 99/1 wt% PP/m-NS, respectively.
In both simulation and experiment, the tangent modulus increases by a factor of ≈20 once 150% strain is reached, leading to severe stiffening.
Similar(54)
The compressive modulus increased by increasing I-CEL2 amount up to 7.6±0.5 MPa for I-CEL2/G 70/30.
Mechanical properties such as modulus increased by as much as 54%.
After complete PFA fixation, cell surface fluctuation decreased to 71% of live cell, while the Young's modulus increased by fivefold compared to that of live cells.
Compared with the pure polymer, Young's modulus increased by ca. 50%, while yield stress increased by ca. 35%.
For BOZ composites containing 0.05 wt% GO-HE, the flexural strength increased by 14.4%, and the flexural modulus increased by 10.0% compared to that of neat BOZ.
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com