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Mechanical behavior of carbon-reinforced thermoplastic sandwich composites with several core types during three-point bending tests

机译:三点弯曲试验中多种核心类型碳加固热塑性夹心复合材料的力学行为

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摘要

The originality of this paper is the study of the bending behavior of several carbon-fiber-reinforced thermoplastic sandwich composites under three-point bending tests using a mechanical-acoustic experimental coupling approach. The skins were fabricated from thermoplastic Polyphenylsulfone "PPSU" resin reinforced by 2 x 2 twill desized carbon fabrics. Different core materials (Nomex, Aluminum and Polyetherimide PEI) with different topologies (honeycomb, straight tubular and inclined tubular at 15 degrees) and two densities (48 and 64 kg/m(3)) are used for the manufacturing of the different sandwich panels. During the bending tests, a laser device measured the deflection, two acoustic emission transducers evaluated the acoustic activity and a video microscope monitored the damage evolution in-situ and in real-time. Thereby, the mechanical-acoustic coupling allowed relevant monitoring of the different strain and damage mechanisms generated within the different sandwich configurations. According to this study, the aluminum core sandwich structure presents the highest stiffness. However, the thermoplastic PEI core sandwich structures show the highest ductility and absorbed energy.
机译:本文的原创性是使用机械声学实验耦合方法研究三分弯曲试验下几种碳纤维增强热塑性夹芯复合材料的弯曲行为。用2×2斜纹化的碳织物增强的热塑性聚苯砜“PPSU”树脂制成皮肤。具有不同拓扑(蜂窝状,直管和15度的蜂窝状和倾斜管)的不同芯材料(Nomex,铝和聚醚酰亚胺pei)和两个密度(48和64kg / m(3))用于制造不同的夹心板。在弯曲测试期间,激光装置测量偏转,两个声发射换能器评估了声学活动,视频显微镜在原位和实时监测了损伤演进。因此,机械声耦合允许对不同夹心配置中产生的不同应变和损坏机制的相关监测。根据该研究,铝芯夹层结构呈现最高的刚度。然而,热塑性PEI芯夹层结构显示出最高的延展性和吸收能量。

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