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Vertically oriented structure and its fracture behavior of the Indonesia white-pearl oyster

  • Guowei Chen
  • , Hongyun Luo*
  • , Shunfei Luo
  • , Zhenying Lin
  • , Yue Ma
  • *Corresponding author for this work
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

Structural calcites, aragonites, and the bonding organic network decide the growth, structure and mechanical properties of the mollusk bivalvia shell. Here, it was found out that the calcite prisms together with the coated organics construct another kind of ‘brick and mortar’ structure similar to the aragonite tablets. The calcite layer can be divided into three sublayers and direct evidences show that the calcite prisms are produced by two methods: nucleation and growing in the first sublayer; or fusing from the aragonites, which is quite different from some previous reports. The crystallographic orientation, micro hardness and crack propagations were tested and observed by XRD, micro harness tester, SEM and TEM. Submicron twin crystals were observed in the immature aragonite tablets. The fracture processes and the micro deformation of the aragonite tablets are detected by acoustic emission (AE) in the tensile tests, which gave the interpretation of the dynamical fracture processes: plastic deformation and fracture of the organics, and friction of the minerals at the first two stages; wear and fracture of the minerals at the third stage. Calcites and aragonites are combined and working together, like two layers of vertical ‘brick and mortar's, ensuring the stable mechanical properties of the whole shell.

Original languageEnglish
Pages (from-to)211-223
Number of pages13
JournalJournal of the Mechanical Behavior of Biomedical Materials
Volume66
DOIs
StatePublished - 1 Feb 2017

Keywords

  • Acoustic emission
  • Aragonite tablet
  • Bivalvia shell
  • Calcite prism
  • Fracture process
  • Oriental growth

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