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Oblique Cutting Based Mechanical Model for Insertion Torque of Dental Implant
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作者 Luli Li Song Zhang +2 位作者 Quhao Li Cuirong Bian Airong Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2022年第3期92-105,共14页
The insertion torque of a dental implant is an important indicator for the primary stability of dental implants.Thus,the preoperative prediction for the insertion torque is crucial to improve the success rate of impla... The insertion torque of a dental implant is an important indicator for the primary stability of dental implants.Thus,the preoperative prediction for the insertion torque is crucial to improve the success rate of implantation surgery.In this present research,an alternative method for prediction of implant torque was proposed.First,the mechanical model for the insertion torque was established based on an oblique cutting process.In the proposed mechanical model,three factors,including bone quality,implant geometry and surgical methods were considered in terms of bone-quality coefficients,chip load and insertion speeds,respectively.Then,the defined bone-quality coefficients for cancellous bone with the computed tomography(CT)value of 235–245,345–355 and 415–425 Hu were obtained by a series of insertion experiments of IS and ITI implants.Finally,the insertion experiments of DIO implants were carried out to verify the accuracy of developed model.The predicted insertion torques calculated by the mechanical model were compared with those acquired by insertion experiments,with good agreement,the relative error being less than 15%.This method allows the insertion torque for different implant types to be quickly established and enhances prediction accuracy by considering the effects of implants’geometries and surgical methods. 展开更多
关键词 Insertion torque Mechanical model Oblique cutting Dental implant
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滚珠丝杠预紧用环状磁致伸缩致动器的设计与特性研究(英文) 被引量:1
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作者 鞠晓君 林明星 +2 位作者 范文涛 卜庆强 吴筱坚 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1799-1812,共14页
为实现双螺母滚珠丝杠副预紧力的自动调整,提出一种磁致伸缩滚珠丝杠副预紧系统。以中空的超磁致伸缩材料(GMM)为核心,完成了新型环状超磁致伸缩致动器(CGMA)的结构设计;通过测试数据确定了CGMA的预压力;利用磁路分析法对穿入丝杠后致... 为实现双螺母滚珠丝杠副预紧力的自动调整,提出一种磁致伸缩滚珠丝杠副预紧系统。以中空的超磁致伸缩材料(GMM)为核心,完成了新型环状超磁致伸缩致动器(CGMA)的结构设计;通过测试数据确定了CGMA的预压力;利用磁路分析法对穿入丝杠后致动器内部磁场进行了分析计算;为抑制发热对磁致伸缩输出的影响,提出了直接冷却发热源的油冷散热方法。对自行研制的预紧用致动器输出的位移和力进行了实验研究,结果表明,偏置磁场可以消除CGMA的倍频效应,改善线性度;油冷散热可有效减小热变形影响,使CGMA磁致伸缩输出特性稳定;穿入滚珠丝杠后致动器的输出减小,但在工作区间内输出位移可达26μm、输出力超过6200 N,满足所选滚珠丝杠副预紧系统设计要求。新型CGMA的研制为双螺母滚珠丝杠副预紧力的自动调整提供一种新的方法。 展开更多
关键词 滚珠丝杠副预紧 环状超磁致伸缩致动器(CGMA) 结构设计 输出特性
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