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通过激光粉末床熔融实现铝与碳纤维增强塑料的连接:实验装置和激光加工对微观结构及力学性能的影响

Joining of Aluminum and CFRP via Laser Powder Bed Fusion: Influence of Experimental Set-Up and Laser Processing on Microstructure and Mechanical Properties.

作者信息

Nester Sara, Meinhard Dieter, Schanz Jochen, Rettenberger Markus, Taha Iman, Riegel Harald, Knoblauch Volker

机构信息

Materials Research Institute, Aalen University of Applied Sciences, Beethovenstraße 1, D-73430 Aalen, Germany.

Laser Application Center, Aalen University of Applied Sciences, Beethovenstraße 1, D-73430 Aalen, Germany.

出版信息

Polymers (Basel). 2023 Sep 21;15(18):3839. doi: 10.3390/polym15183839.

Abstract

Additive-manufacturing-based joining methods enable tailored or even functionalized joints and allow for hybridization at small scales. The current study explored an innovative joining method for aluminum cast alloys (AlSi12) with thermoset carbon-fiber-reinforced polymers (CFRPs) via laser powder bed fusion (LPBF). The direct build-up of AlSi12 on a CFRP substrate proved to be challenging due to the dissimilar thermal properties of the considered materials, which led to substrate damage and low joint adhesion. These effects could be overcome by introducing an AlSi12 foil as an interlayer between the two joining partners, acting as a thermal barrier and further improving the AlSi12 melt wettability of the substrate. Within LPBF, the energy input in the form of volumetric laser energy density influenced both the porosity of the fused layers and the formation of thermally induced stresses due to the high cooling rates and different thermal expansion properties of the materials. While the AlSi12 volume density increased with a higher laser energy input, simultaneously increasing thermal stresses caused the debonding and deformation of the AlSi12 foil. However, within a narrow processing window of laser parameters, the samples achieved remarkably high shear strengths of τ > 20 MPa, comparable to those of conventional joining methods.

摘要

基于增材制造的连接方法能够实现定制化甚至功能化的接头,并允许在小尺度上进行混合。当前的研究探索了一种通过激光粉末床熔融(LPBF)将铝铸造合金(AlSi12)与热固性碳纤维增强聚合物(CFRP)连接的创新方法。由于所考虑材料的热性能不同,在CFRP基板上直接堆积AlSi12被证明具有挑战性,这导致基板损坏和接头附着力低。通过引入AlSi12箔作为两个连接部件之间的中间层,可以克服这些影响,该中间层起到热障的作用,并进一步提高基板对AlSi12熔体的润湿性。在LPBF过程中,以体积激光能量密度形式存在的能量输入,由于材料的高冷却速率和不同的热膨胀性能,影响了熔合层的孔隙率和热致应力的形成。虽然随着激光能量输入的增加,AlSi12的体积密度增加,但同时增加的热应力导致AlSi12箔脱粘和变形。然而,在狭窄的激光参数加工窗口内,样品实现了高达τ>20 MPa的显著高剪切强度,与传统连接方法相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef58/10534400/401f655d9b92/polymers-15-03839-g001.jpg

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