Development of a composite bone plate for fixation of a fractured tibia

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초록

A finite element model has been used to show how a composite bone fixation device compares in performance with an equivalent stainless steel plate. It has previously been shown[2] that the reduced modulus of the composite plate provides a better environment for healing in the early weeks after fracture. The results of the new work demonstrate that the composite plate also gives a more even transfer of load via screws from the plate into the bone for a realistic friction coefficient of 0.4. A cohesive zone model of failure of the healing callus has been used to illustrate how the stiffer steel plate provides a better protection against overloads in the early phases of healing, at the expense of providing a less good environment for healing. Finally it is shown that the composite lay-up can be adjusted to provide an optimum environment for healing, depending on the applied axial and torque loading.

키워드

Cohesive zone; Fixation; Fracture; Friction; Tibia; Cohesive zone model; Cohesive zones; Composite bone plates; Finite element models; Friction coefficients; Stainless steel plate; Tibia; Transfer of load; Bone; Finite element method; Fracture; Friction; Nitrogen fixation; Steel sheet; Loading
제목
Development of a composite bone plate for fixation of a fractured tibia
저자
Sutcliffe, M.P.F.; Kim, H.J.; Chang, S.H.; Huang, Y.
발행일
2011
유형
Conference Paper
저널명
ICCM International Conferences on Composite Materials