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Title: In Vitro Fracture of Human Cortical Bone: Local Fracture Criteria and Toughening Mechanisms

Journal Article · · In Vitro Fracture of Human Cortical Bone: Local Fracture Criteria and Toughening Mechanisms
OSTI ID:15016549

A micro-mechanistic understanding of bone fracture that encompasses how cracks interact with the underlying microstructure and defines their local failure mode is lacking, despite extensive research on the response of bone to a variety of factors like aging, loading, and/or disease. Micro-mechanical models for fracture incorporating such local failure criteria have been widely developed for metallic and ceramic materials systems; however, few such deliberations have been undertaken for the fracture of bone. In fact, although the fracture event in mineralized tissues such as bone is commonly believed to be locally strain controlled, until recently there has been little experimental evidence to support this widely held belief. In the present study, a series of in vitro experiments involving a double-notch bend test geometry are performed in order to shed further light on the nature of the local cracking events that precede catastrophic fracture in bone and to define their relationship to the microstructure. Specifically, crack-microstructure interactions are examined to determine the salient toughening mechanisms in human cortical bone and to characterize how these may affect the anisotropy in fracture properties. Based on preliminary micro-mechanical models of these processes, in particular crack deflection and uncracked ligament bridging, the relative importance of these toughening mechanisms is established.

Research Organization:
Lawrence Livermore National Lab. (LLNL), Livermore, CA (United States)
Sponsoring Organization:
US Department of Energy (US)
DOE Contract Number:
W-7405-ENG-48
OSTI ID:
15016549
Report Number(s):
UCRL-JRNL-206523; TRN: US200515%%103
Journal Information:
In Vitro Fracture of Human Cortical Bone: Local Fracture Criteria and Toughening Mechanisms, Vol. 38; Other Information: Journal publication date July 1, 2005; PDF-FILE: 44 ; SIZE: 2.8 MBYTES; PBD: 18 Aug 2004
Country of Publication:
United States
Language:
English

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