首页> 外文会议>International Conference on Material in Engineering Practice >A comparison of Mechanical Properties of Lumbar Bilateral Implants Manufactured by Additive and Conventional Technologies
【24h】

A comparison of Mechanical Properties of Lumbar Bilateral Implants Manufactured by Additive and Conventional Technologies

机译:添加剂和常规技术制造的腰双侧植入物力学性能的比较

获取原文

摘要

Spinal implants are mechanical equipments that facilitate fusion, correct deformities, and stabilize and strengthen the spine. To make an implant efficient, it has to endure without any failure, especially mechanical damage, stand all the static and dynamic loads incurred in spine during everyday activities, and maintain the necessary position of motive segments during the bone adhesionfl]. Human spine is exposed to the highest load in the lumbar section [2]; therefore, lumbar bilateral implants require higher attention in terms of mechanical parameters verification. The main objective of this paper was to compare mechanical properties of lumbar bilateral systems using the spinal implants manufactured by the conventional method and the Direct Metal Laser Sintering method (DMLS). Detection of mechanical properties enables the assessment of possible replacement of commercial manufacture with the DMLS manufacture. On the basis of the ASTM F1717 standards providing the essentials for the comparison of mechanical properties of spinal systems, twenty mechanical compression tests were carried out. Mechanical tests were carried out using 20 spinal bars with the diameter of 11 mm and the fastening length of 260 mm, manufactured by the DMLS technology while using the EOSINT M280 equipment (EOS, Germany), and 20 identical spinal bars manufactured by the conventional technology. Results obtained in mechanical compression tests indicate that both manufacture methods are comparable and there are no significant differences between them, as for the strength characteristics. Other trials will be focused on static tensile tests and cyclical tests of lumbar bilateral systems.
机译:脊柱植入物是促进融合,正确畸形和稳定和加强脊柱的机械设备。为了进行植入效率,它必须忍受没有任何故障,尤其是机械损坏,在日常活动期间站立在脊柱中产生的所有静态和动态载荷,并在骨粘合剂期间保持动力片段的必要位置。人脊柱暴露于腰部的最高载荷[2];因此,腰部双侧植入物在机械参数验证方面需要更高的关注。本文的主要目的是使用常规方法和直接金属激光烧结方法(DMLS)制造的脊柱植入物进行腰双侧系统的力学性能。检测机械性能使得能够评估与DMLS制造的可能更换商业制造。在ASTM F1717标准的基础上,为脊髓系统的机械性能进行了必需品,进行了20个机械压缩试验。使用直径为11毫米的20个脊柱和260mm的紧固长度进行机械测试,在使用ESINT M280设备(EOS,德国)和由传统技术制造的20个相同的脊柱的同时制造。机械压缩试验中获得的结果表明,两种制造方法都是可比性的,并且它们之间没有显着差异,即强度特性。其他试验将重点关注腰部双侧系统的静态拉伸试验和周期性试验。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号