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Three Dimensional Shape Optimum Design of Implant for Dentistry by Multilevel Response

Implant and Mandible Model , Load and Boundary Condition. What is Implant. Three Dimensional Shape Optimum Design of Implant for Dentistry by Multilevel Response.  나사산의 높이  나사골의 깊이  나사산의 폭  나사골의 폭  나사의 피치.  나사산의 높이  나사의 피치.  임플란트 몸통부 : 직선  임플란트 하단부 : Spline

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Three Dimensional Shape Optimum Design of Implant for Dentistry by Multilevel Response

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  1. Implant and Mandible Model , Load and Boundary Condition What is Implant Three Dimensional Shape Optimum Design ofImplant for Dentistry by Multilevel Response  나사산의 높이  나사골의 깊이  나사산의 폭  나사골의 폭  나사의 피치  나사산의 높이  나사의 피치  임플란트 몸통부 : 직선  임플란트 하단부 : Spline 임플란트 길이 : 최대 13mm 임플란트 상단 : 최대 2.5mm • Shapes of Commercial Implant Mesh Study (a)BRANEMARK (b) ANKYLOS (c)BIOHORIZONS (d)ITI (e)ASTRA • General Optimization Problem • Classical Optimization Method : • Gradient Based Optimization Problem (SQP, SLP, etc) • Large number of design variables : Inefficient, Local Minimum • ->> Cost Increase Conclusion Multilevel Optimization • von-Mises St. at Cort. Bone = 380MPa • von-Mises St. at Canc. Bone = 20MPa • - Typical Characteristics of Implant

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