首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >INDUCING RESIDUAL STRESS IN BONE USING ABRASIVE AIR-JET SURFACETREATMENT
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INDUCING RESIDUAL STRESS IN BONE USING ABRASIVE AIR-JET SURFACETREATMENT

机译:用磨料射流表面处理诱导骨残余应力

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Based on past research, the growth and repair of bone is a function of physical activity (i.e. stresses) and bone chemistry. As such, the rate of recovery of an individual that has undergone total joint arthroplasty could be influenced by the introduction of changes in bone chemistry and "apparent" stress state in the bone that results from the surgical procedures and/or treatments. This preliminary study explored the opportunity for introducing residual stresses in hard tissues using an air-jet surface treatment. Cortical bone was obtained from bovine femurs and treated with an abrasive jet process. The radius of curvature of the bone specimens was estimated before and after treatment and used in estimating the magnitude of surface residual stress. An SEM analysis was also performed to examine structural changes in the bone caused by the surface treatment. Results showed that it is possible to impart residual stress within bone using an air-jet surface treatment. The magnitude of surface residual stress was 16 ± 0.8 MPa. Residual stresses appeared to result from a combination of near-surface deformation and embedded particles.
机译:根据过去的研究,骨骼的生长和修复是身体活动(即压力)和骨骼化学的函数。这样,经历了全关节置换术的个体的恢复速率可能受到由于外科手术和/或治疗导致的骨化学变化和骨骼中“表观”应力状态的引入的影响。这项初步研究探索了使用喷气表面处理在硬组织中引入残余应力的机会。从牛股骨获得皮质骨,并用磨料喷射法处理。在治疗之前和之后估计骨样品的曲率半径,并将其用于估计表面残余应力的大小。还进行了SEM分析,以检查由表面处理引起的骨骼结构变化。结果表明,使用喷气表面处理可以在骨内施加残余应力。表面残余应力的大小为16±0.8MPa。残余应力似乎是由于近表面变形和嵌入颗粒的结合而产生的。

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