Stress Redistributions due to the Shape of Sliding Core and Applied Load Core in the Artificial Intervertebral Disc

인공추간판 슬라이딩 코어의 형상과 하중모드에 따른 응력 재분포

  • 강봉수 (유앤아이(주) 고려대연구소) ;
  • 김철웅 (고려대 기계공학과/유앤아이(주) 고려대연구소)
  • Published : 2006.05.01

Abstract

The goal of total disc replacement is to restore pain-free mobility to a diseased functional spinal unit, by replacing the degenerated disc with a mobile bearing prosthesis. SB Charite III is named commercial product as the Artificial Intervertebral Disc (AID). SB Charite III consists of sliding core and endplate made by Ultra-high Molecular Weight Polyethylene (UHMWPE) and cobalt chrome alloy, respectively. To evaluate the effect of von-Mises stress in AID, and three-dimensional finite element model of AID analysis was preformed for four different loading types of sliding core. Consequently, endplate was compared with a compressive preload at 400N and flexion moment at $3{\sim}9Nm4. Therefore, this research has obtained result that von-Mises stress of sliding core in AID disc by radius curvature.

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