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Acrylic Nanocomposite Resins For Use In Stereolithography And Structural Light Modulation Based Rapid Prototyping And Rapid Manufacturing Technologies

机译:用于基于光刻和结构光调制的丙烯酸纳米复合树脂的快速成型和快速制造技术

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A novel family of optically transparent acrylic nanocomposites containing up to 30 wt % silica nanoparticles with an average diameter of 20 nm was developed for application in structural light modulation (SLM) and stereolithography (SL) technologies. The uniform dispersion of nanoparticles affords a significantly improved toughness/stiffness-balance of the photopolymerized and postcured nanocomposites. It is possible to increase stiffness, as expressed by Young's modulus, from 1290 to 1700 MPa without encountering the embrittlement typical for many other conventional filled polymers. Fracture behaviour is examined by means of fracture mechanics investigation and SEM analyses of fracture surfaces. According to TEM analyses and measurement of optical transmittance remarkable uniform dispersion of silica nanoparticles was achieved. The silica nanoparticle concentrations up to 17 wt % give only marginally higher viscosities and do not affect transmittance, while slightly increasing the exposure times needed in photopolymerization. Moreover, the silica nanoparticles afford materials with reduced shrinkage and improved properties. The green effective ankle splay out (EASO) measured on H-shaped diagnostic specimens, is significantly reduced for the nanocomposite materials from 1.38 mm for the unfilled material to 0.82 mm for nanocomposites containing 30 wt % nanosilica. The building accuracy is increased significantly with increasing content of silica nanofillers.
机译:开发了新颖的光学透明的丙烯酸纳米复合材料家族,其包含高达30 wt%的平均直径为20 nm的二氧化硅纳米颗粒,用于结构光调制(SLM)和立体光刻(SL)技术。纳米颗粒的均匀分散提供了光聚合和后固化的纳米复合材料的韧性/刚度平衡的显着改善。以杨氏模量表示的刚度可以从1290 MPa增加到1700 MPa,而不会遇到许多其他常规填充聚合物所特有的脆性。通过断裂力学研究和断裂表面的SEM分析来检查断裂行为。根据TEM分析和光学透射率的测量,获得了二氧化硅纳米粒子的显着均匀分散。二氧化硅纳米颗粒的浓度最高为17重量%,仅略微增加粘度,并且不影响透射率,同时稍微增加了光聚合所需的曝光时间。此外,二氧化硅纳米颗粒提供了具有减少的收缩和改善的性能的材料。在H形诊断样本上测得的绿色有效脚踝张开量(EASO)对于纳米复合材料明显降低,从未填充材料的1.38毫米降低到包含30%纳米二氧化硅的纳米复合材料的0.82毫米。随着二氧化硅纳米填料含量的增加,建筑精度显着提高。

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