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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Fabrication of Plano-Concave Plastic Lens by Novel Injection Molding Using Carbide-Bonded Graphene-Coated Silica Molds
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Fabrication of Plano-Concave Plastic Lens by Novel Injection Molding Using Carbide-Bonded Graphene-Coated Silica Molds

机译:用碳化物粘结的石墨烯 - 涂层二氧化硅模具通过新型注射成型制造平面凹塑性透镜

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Injection molding of plastic optical lenses prevails over many other techniques in both efficiency and cost; however, polymer shrinkage during cooling, high level of uneven residual stresses, and refractive index variations have limited its potential use for high precision lens fabrication. In this research, we adopted a newly developed strong graphene network to both plano and convex fused silica mold surfaces and proposed a novel injection molding with graphene-coated fused silica molds. This advanced injection molding process was implemented in the molding of polymer-based plano-concave lenses resulting in reduced polymer shrinkage. In addition, internal residual stresses and refractive index variations were also analyzed and discussed in detail. Meanwhile, as a comparison of conventional injection mold material, aluminum mold inserts with the same shape and size were also diamond machined and then employed to mold the same plano-concave lenses. Finally, a simulation model using MOLDEX3D was utilized to interpret stress distributions of both graphene and aluminum molds and then validated by experiments. The comparison between graphene-coated mold and aluminum mold reveals that the novel injection molding with carbide-bonded graphene-coated fused silica mold inserts is capable of molding highquality optical lenses with much less shrinkage and residual stresses with a more uniform refractive index distribution.
机译:塑料光学透镜的注射成型在效率和成本上占多种其他技术;然而,冷却期间的聚合物收缩,高水平的不均匀残余应力,并且折射率变化限制了其对高精度透镜制造的潜在用途。在这项研究中,我们采用了一种新开发的强石墨烯网,并提出了具有石墨烯涂覆的二氧化硅模具的新型注射成型。该高级注塑方法在基于聚合物的平面凹透镜的模塑中实现,导致聚合物收缩还原。此外,还分析并详细讨论了内部残余应力和折射率变化。同时,作为传统注塑材料的比较,具有相同形状和尺寸的铝模具也是金刚石加工,然后采用相同的平面凹透镜。最后,利用了使用Modex3D的模拟模型来解释石墨烯和铝模具的应力分布,然后通过实验验证。石墨烯涂层模具和铝模的比较显示,具有碳化物粘结的石墨烯涂覆的熔融二氧化硅模具插入件的新型注射成型能够模制高度光学透镜,其具有更小的收缩和残余应力,具有更均匀的折射率分布。

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