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扭转精度对扭杆弹簧强扭工艺的影响 被引量:3
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作者 王振峰 董明明 +1 位作者 赵凯 顾亮 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2016年第10期1446-1449,1454,共5页
为了研究扭杆弹簧扭转精度对其强扭过程的影响,利用弹塑性理论对扭杆弹簧强扭过程进行了理论探讨,获得扭杆弹簧在屈服与塑性强扭工况下的断面应力、扭矩及残余应力等变化的数学模型.应用ABAQUS有限元软件对不同型号、强扭工况的扭杆弹... 为了研究扭杆弹簧扭转精度对其强扭过程的影响,利用弹塑性理论对扭杆弹簧强扭过程进行了理论探讨,获得扭杆弹簧在屈服与塑性强扭工况下的断面应力、扭矩及残余应力等变化的数学模型.应用ABAQUS有限元软件对不同型号、强扭工况的扭杆弹簧进行数值模拟,分析了扭转精度对扭杆弹簧强扭效果的影响.结果表明,在强扭工艺允许范围内,扭转误差对扭杆弹簧强扭效果影响不超过5%.试验结果不仅验证了有限元模型的正确性,也得出扭杆弹簧强扭误差在不超过±1°工况下的强扭效果可近似等同的结论,此研究为扭杆弹簧强扭工艺的完善提供理论依据. 展开更多
关键词 杆弹簧 弹塑性 工艺 数值模拟 强扭试验
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Design and biomechanical study of a modified pedicle screw 被引量:1
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作者 刘洪 郑文杰 +2 位作者 李长青 刘国栋 周跃 《Chinese Journal of Traumatology》 CAS 2010年第4期222-228,共7页
Objective: In pedicle screw fixation, the heads of monoaxial screws need to be directed in the same straight line to accommodate the rod placement by backing out during operation, which decreases the insertional torq... Objective: In pedicle screw fixation, the heads of monoaxial screws need to be directed in the same straight line to accommodate the rod placement by backing out during operation, which decreases the insertional torque and internal fixation strength. While polyaxial screws facilitate the assembly of the connecting rod, but its ball-in-cup locking mechanism reduces the static compressive bending yield strength as compared with monoaxial screws. Our study aimed to assess the mechanical performance of a modified pedicle screw. Methods: In this study, the tail of the screw body of the modified pedicle screw was designed to be a cylindershaped structure that well matched the inner wall of the screw head and the screw head only rotated around the cyclinder. Monoaxial screws, modified screws and polyaxial screws were respectively assembled into 3 groups ofvertebrectomy models simulated by ultra high molecular weight polyethylene (UHMWPE) blocks. This model was developed according to a standard for destructive mechanical testing published by the American Society for Testing Materials (ASTM F1717-04). Each screw design had 6 subgroups, including 3 for static tension, load compression and torsion tests, and the rest for dynamic compression tests. In dynamic tests, the cyclic loads were 25%, 50%, and 75% of the compressive bending ultimate loads respectively. Yield load, yield ultimate load, yield stiffness, torsional stiffness, cycles to failure and modes of failure for the 3 types of screws were recorded. The results of modified screws were compared with those ofmonoaxial and polyaxial screws. Results: In static tests, results of bending stiffness, yield load, yield torque and torsional stiffness indicated no significant differences between the modified and monoaxial screws (P〉0.05), but both differed significantly from those ofpolyaxial screws (P〈0.05). In dynamic compression tests, both modified and monoaxial screws showed failures that occurred at the insertion point of screw body into the UHMWPE block, while the polyaxial screw group showed screw body swung up and down the screw head because of loosening of the ball-in-cup mechanism. Conclusions: The modified screw is well-designed and biomechanically improved. And it can provide sufficient stability for segment fixation as monoaxial screws. 展开更多
关键词 Bone screws BIOMECHANICS SPINE Internal fixators
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