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When filler content increase from 2%to30%0%, at 150 μm, the flexural modulus of date palm wood flour/LDPE composite increased from 0.6 to 1.08 GPa.
When filler content increased from 2%to30%0%, at 150 μm, the tensile modulus of date palm wood flour composite increased from 0.83 to 1.28 GPa.
Figures 14b, 15b, 16b and 17b show the artificial neural network predictions of the tensile modulus of date palm wood fibre/LDPE composite for grain sizes of 150, 212, 250 and 300 μm.
Figures 14a, 15a, 16a and 17a show the effect of filler content on the tensile modulus of date palm wood flour/LDPE composite at 150-, 212-, 250- and 300-μm particle sizes and initial LDPE of 0.4 GPa.
Figures 22b, 23b, 24b and 25b show the artificial neural network predictions of the flexural modulus of date palm wood fibre/LDPE composite for grain sizes of 150, 212, 250 and 300 μm.
Figures 22a, 23a, 24a and 25a show the effect of filler content on the flexural modulus of date palm wood flour/LDPE composite at 150-, 212-, 250- and 300-μm particle sizes and initial LDPE of 0.25 GPa.
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The mechanical properties of the material, namely the ultimate tensile strength, elongation, tensile modulus, flexural strength, flexural modulus and hardness, were experimentally determined for various percentage weight compositions of date palm wood fibre ranging from 0%to30%0% and for various particle sizes, namely 150, 212, 250 and 300 μm.
Bulk modulus is also termed the modulus of incompressibility.
Young modulus of steel.
E modulus of elasticity.
Modulus of rigidity.
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