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The angle between feed line and injection flow direction was set using two different methods.
The laser-machining process was performed using various combinations of parameters such as feed rate (in three levels), angle between laser feed and injection flow direction (in three levels), and MWCNT content (in three levels).
The novelty of current work can be considered as investigating the effect of CNC and manual laser machining, feed angle with injection flow direction, and MWCNT content on electrical resistance of HDPE/MWCNT composite.
To this end, produced using plastic injection process, nano-composite samples were laser machined with various combinations of input parameters such as feed rate (35, 45, and 55 mm/min), feed angle with injection flow direction (0°, 45°, and 90°), and MWCNT content (0.5, 1, and 1.5 wt%).
In the present work, the effect of CNC and manual CO2 laser machining together with various combination of input parameters such as feed rate, feed angle with injection flow direction, and MWCNT content on resulted electrical conductivity of HDPE/MWCNT composite was investigated.
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With injection oriented upward, results indicate that areal PCE recovery was 57 60% at the 30° dip angle, which was similar to PCE recovery for injection in the downward flow direction.
On the contrary, in the PPS/SEBS polymer alloy having the conventional SEBS or SEBS, which was lightly modified by maleic anhydride, the diameter of dispersed elastomer particles was larger, and the particles were deformed into a rod-like shape, and oriented along to the direction of injection flow, particularly in high content of elastomer.
The spatial variation of the superstructure developed along and across the flow direction of injection-molded nylon 6 and its nanocomposites are presented using transmission polarized optical photomicrographs and micro-small-angle laser light scattering (SALS).
This indicates that unsteady-state water injection, including intermittent injection and pulsed injection, might promote the instability of fluid flow rate, flow direction, and pressure distribution in the model.
Thermal expansion measurements were made on samples taken from injection-molded Izod bars in the flow direction (FD), transverse direction (TD), and normal direction (ND).
Morphological studies revealed that the SWCNTs were preferentially aligned in the microchannels along the flow direction at the higher injection pressure.
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