2019
DOI: 10.1007/s42452-019-0615-0
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The effect of packing phase and mold temperature on the directional warpage of spherical lenses using the injection molding process

Abstract: This study investigated the directional warpage on bi-convex and bi-concave spherical lenses by experimentally monitoring the changes in the pressure and temperature of mold cavity and comparing them with the simulation results. Warpage was investigated in the direction of the introduction of molten materials into the cavity of the mold, and when it was perpendicular to the direction of the fluid wave front. Packing conditions, including packing time and packing pressure, and mold temperatures are among the im… Show more

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Cited by 5 publications
(2 citation statements)
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“…In 2019, Barghikar et al [5] experimentally monitored the variation of pressure and temperature inside the injection mold and compared them with simulation results to investigate their effect on lens warpage deformation. This study shows that the variation of pressure and temperature inside the cavity is one of the important factors affecting the warpage of the lens and its geometric quality, which can have an effect on the warpage of the spherical lens, and the amount of warpage of the lens is smaller when the slope of the pressure curve inside the mold cavity is lower.…”
Section: Literature Reviewmentioning
confidence: 99%
“…In 2019, Barghikar et al [5] experimentally monitored the variation of pressure and temperature inside the injection mold and compared them with simulation results to investigate their effect on lens warpage deformation. This study shows that the variation of pressure and temperature inside the cavity is one of the important factors affecting the warpage of the lens and its geometric quality, which can have an effect on the warpage of the spherical lens, and the amount of warpage of the lens is smaller when the slope of the pressure curve inside the mold cavity is lower.…”
Section: Literature Reviewmentioning
confidence: 99%
“…In the process of injection molding, plastics are often affected by high temperature and high pressure and flow molding under a high shear rate. Different molding conditions have different influences on the shrinkage process, crystallization process, and fiber orientation distribution of materials, and affect the molding quality of injection parts [13][14]. Based on this, the injection molding processability of the new glass fiber-modified starch/PLA composite material is explored by orthogonal experiments through Moldex 3D, and the multi-objective optimization of injection molding process parameters is carried out.…”
Section: Multi-objective Optimization Of the Injection Molding Processmentioning
confidence: 99%