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Interlaminar Shear Properties of Z-Pinned Carbon Fiber Reinforced Aluminum Matrix Composites by Short-Beam Shear Test

机译:Z钉碳纤维增强铝基复合材料的层间剪切性能的短光束剪切试验

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摘要

This paper presents the effect of through-thickness reinforcement by steel z-pins on the interlaminar shear properties and strengthening mechanisms of carbon fiber reinforced aluminum matrix composites (Cf/Al) with a short beam shear test method. Microstructural analysis reveals that z-pins cause minor microstructural damage including to fiber waviness and aluminum-rich regions, and interface reaction causes a strong interface between the stainless steel pin and the aluminum matrix. Z-pinned Cf/Al composites show reduced apparent interlaminar shear strength due to a change in the failure mode compared to unpinned specimens. The changed failure mode could result from decreased flexural strength due to microstructural damage as well as increased actual interlaminar shear strength. Fracture work is improved significantly with a z-pin diameter. The strong interface allows the deformation resistance of the steel pin to contribute to the crack bridging forces, which greatly enhances the interlaminar shear properties.
机译:本文采用短梁剪切试验方法,通过钢制的Z销加固厚度对碳纤维增强铝基复合材料(Cf / Al)的层间剪切性能和增强机理进行了研究。微观结构分析表明,z形销会造成轻微的微观结构破坏,包括纤维波纹度和富铝区域,并且界面反应会导致不锈钢销和铝基质之间形成牢固的界面。 Z钉扎的Cf / Al复合材料与未钉扎的试样相比,由于破坏模式的变化,显示出明显的层间剪切强度降低。改变的破坏模式可能是由于微结构破坏引起的抗弯强度降低以及实际层间抗剪强度提高所致。 Z形销直径可显着改善断裂功。牢固的界面使钢钉的抗变形能力有助于裂纹桥接力,从而大大增强层间剪切性能。

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