Danielak Anna, Islam Aminul, Cappelletto Nicolò, Garza Agudelo Diana Maria, Pedersen David Bue
Department of Civil and Mechanical Engineering, Technical University of Denmark, Kgs. Lyngby, Denmark.
Braitec Srl, Vittorio Veneto, Italy.
3D Print Addit Manuf. 2024 Aug 20;11(4):1545-1554. doi: 10.1089/3dp.2023.0076. eCollection 2024 Aug.
Hydrophobic surfaces require finely tuned process chains due to the scale, complexity, and patterning methods. For this purpose, vat photopolymerization (VPP) additive manufacturing is a promising method for surface generation; however, together with the fabrication process, the design phase needs to be optimized to achieve the desired surface property. This work presents the influence of the design features of hydrophobic surfaces through multiple studies on simple pillar structures, intrinsic single-unit geometries, and surface deposition on complex substrates. The results showed that depending on the dimensions of single pillar dimensions, wetting properties can extend between the contact angles (CA) of 83°-115.11°. The hydrophobicity was further increased by applying a re-entrant structure, reaching the CA of 115.24°. The surface deposition on the complex substrates significantly increased water droplet adhesion, preventing it from rolling off, which can be beneficial for manifold device protection from the hazardous influence of the environment. In addition, the influence of the surface on the acoustic properties was examined, which showed that the pattern application in the real-life device does not have a detrimental effect on the intrinsic functionality. This study showed that the design phase should be an essential part of the VPP process chain as it significantly influences the wetting properties of the surfaces.
由于尺寸、复杂性和图案化方法的原因,疏水表面需要精细调整的工艺链。为此,光固化 3D 打印(VPP)增材制造是一种很有前景的表面生成方法;然而,与制造过程一起,设计阶段也需要进行优化,以实现所需的表面性能。这项工作通过对简单柱状结构、固有单单元几何形状以及复杂基板上的表面沉积进行多项研究,展示了疏水表面设计特征的影响。结果表明,根据单个柱状结构的尺寸,润湿性可以在 83°-115.11°的接触角(CA)之间变化。通过应用凹腔结构,疏水性进一步提高,接触角达到 115.24°。在复杂基板上的表面沉积显著增加了水滴附着力,防止其滚落,这对于多种设备免受环境有害影响的保护可能是有益的。此外,还研究了表面对声学性能的影响,结果表明在实际设备中应用图案对其固有功能没有不利影响。这项研究表明,设计阶段应该是 VPP 工艺链的重要组成部分,因为它会显著影响表面的润湿性。