4.3 Article

THE INFLUENCE OF MULTIPLE NESTED LAYER WAVINESS ON THE COMPRESSION STRENGTH OF DOUBLE NESTED WAVE FORMATIONS IN A CARBON FIBER COMPOSITE LAMINATE

期刊

MECHANICS OF COMPOSITE MATERIALS
卷 51, 期 6, 页码 751-760

出版社

SPRINGER
DOI: 10.1007/s11029-016-9546-7

关键词

composite laminates; layer waviness; compression strength

资金

  1. council for International Exchange of Scholars, USA
  2. Islamic Development Bank, Saudi Arabia
  3. NASA laboratory

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As advanced composite materials having superior physical and mechanical properties are being developed, the optimization of their processing techniques is eagerly sought. One of the most common defects arising during processing of structural composites is layer waviness. The layer waviness is more pronounced in thick-section flat and cylindrical laminates, which are extensively used in large wind turbine blades, submersibles, and space platforms. The layer waviness undulates the entire layer of a multidirectional laminate in the throughthe-thickness direction, leading to a gross deterioration of its compressive strength. This research investigates the influence of multiple layer waviness in a double nest formation on the compression strength of a composite laminate. Different wave fractions of wavy 0A degrees layers were fabricated in an IM/8551-7 carbon-epoxy composite laminate on a steel mold by using a single-step fabrication procedure. The test laminates were cured on a heated press according to the specific curing cycle of epoxy. Their static compression testing was performed using a NASA short block compression fixture on an MTS servohydraulic machine. The purpose of these tests was to determine the effects of multiple layer wave regions on the compression strength of the composite laminate. The experimental and analytical results obtained revealed that the reduction in the compression strength of composite laminate was constant after the fraction of the wavy 0A degrees layers exceeded 35%. This analysis indicated that the percentage of the 0A degrees wavy layer may be used to estimate the reduction in the compression strength of a double nested wave formation in a composite laminate.

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