4.6 Article

The Plastic Behavior in the Large Deflection Response of Fiber Metal Laminate Sandwich Beams under Transverse Loading

期刊

MATERIALS
卷 15, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/ma15020439

关键词

sandwich beam; fiber metal laminate; metal foam; plastic behavior; large deflection

资金

  1. National Natural Science Foundation of China [11872291, 11902246]
  2. State Key Laboratory of Structural Analysis for Industrial Equipment [GZ20102]
  3. Innovative Scientific Program of CNNC

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This study investigates the plastic behavior in the large deflection response of slender sandwich beams with fiber metal laminate (FML) face sheets and a metal foam core under transverse loading. It is found that the metal volume fraction and the strength ratio of metal to composite layer are important factors influencing the plastic behavior, while the core strength and punch size have little impact.
The plastic behavior in the large deflection response of slender sandwich beams with fiber metal laminate (FML) face sheets and a metal foam core under transverse loading is studied. According to a modified rigid-perfectly plastic material approximation, an analytical model is developed, and simple formulae are obtained for the large deflection response of fully clamped FML sandwich beams, considering the interaction of bending and stretching. Finite element (FE) calculations are conducted, and analytical predictions capture numerical results reasonably in the plastic stage of large deflection. The influences of metal volume fraction, strength ratio of metal to composite layer, core strength, and punch size on the plastic behavior in the large deflection response of FML sandwich beams are discussed. It is suggested that, if the structural behavior of fiber-metal laminate sandwich beams is plasticity dominated, it is similar to that of metal sandwich beams. Moreover, both metal volume fraction and the strength ratio of metal to composite layer are found to be important for the plastic behavior in the large deflection response of fiber metal laminate sandwich beams, while core strength and punch size might have little influence on it.

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