Doluk Elżbieta, Rudawska Anna, Legutko Stanisław
Department of Production Computerisation and Robotisation, Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland.
Faculty of Mechanical Engineering, Poznan University of Technology, Pl. Marii Skłodowskiej-Curie 5, 60-965 Poznań, Poland.
Materials (Basel). 2025 Jan 6;18(1):206. doi: 10.3390/ma18010206.
A multilayer structure is a type of construction consisting of outer layers and a core, which is mainly characterized by high strength and specific stiffness, as well as the ability to dampen vibration and sound. This structure combines the high strength of traditional materials (mainly metals) and composites. Currently, sandwich structures in any configurations (types of core) are one of the main directions of technology development and research. This paper evaluates the surface quality of II- and III-layer sandwich structures that are a combination of aluminum alloy and CFRP (Carbon Fiber-Reinforced Polymer) after the machining. The effect of depth of cut (a) on the surface roughness of the II- and III-layer sandwich structures after the milling process was investigated. The surface homogeneity was also investigated. It was expressed by the I and I surface homogeneity indices formed from the Ra and Rz surface roughness parameters measured separately for each layer of the materials forming the sandwich structure. It was noted that the lowest surface roughness (Ra = 0.03 µm and Rz = 0.20 µm) was obtained after the milling of the II-layer sandwich structure using a = 0.5 mm, while the highest was obtained for the III-layer structure and a = 1.0 mm (Ra = 1.73 µm) and a = 0.5 mm (Rz = 10.98 µm). The most homogeneous surfaces were observed after machining of the II-layer structure and using the depth of cut a = 2.0 mm (I = 0.28 and I = 0.06), while the least homogeneous surfaces were obtained after milling of the III-layer structure and the depths of cut a = 0.5 mm (I = 0.64) and a = 2.0 mm (I = 0.78). The obtained results may be relevant to surface engineering and combining hybrid sandwich structures with other materials.
多层结构是一种由外层和芯层组成的结构类型,其主要特点是具有高强度、特定刚度以及减振和隔音能力。这种结构结合了传统材料(主要是金属)和复合材料的高强度。目前,任何构型(芯层类型)的夹层结构都是技术发展和研究的主要方向之一。本文评估了铝合金和碳纤维增强聚合物(CFRP)组合而成的二层和三层夹层结构加工后的表面质量。研究了切削深度(a)对铣削加工后二层和三层夹层结构表面粗糙度的影响。还研究了表面均匀性。它由分别针对构成夹层结构的每层材料测量的Ra和Rz表面粗糙度参数形成的I和I表面均匀性指数表示。结果表明,使用a = 0.5 mm铣削二层夹层结构后获得了最低的表面粗糙度(Ra = 0.03 µm,Rz = 0.20 µm),而对于三层结构,当a = 1.0 mm(Ra = 1.73 µm)和a = 0.5 mm(Rz = 10.98 µm)时获得了最高的表面粗糙度。在加工二层结构并使用切削深度a = 2.0 mm(I = 0.28,I = 0.06)后观察到最均匀的表面,而在铣削三层结构且切削深度a = 0.5 mm(I = 0.64)和a = 2.0 mm(I = 0.78)后获得了最不均匀的表面。所得结果可能与表面工程以及将混合夹层结构与其他材料结合有关。