Minimisation corrosive attack in the conus-interface of modular endoprothesis by means of definite surface modification via warm deep rolling
Minimisation corrosive attack in the conus-interface of modular endoprothesis by means of definite surface modification via warm deep rolling
批准号:
382919963
负责人:
Dr.-Ing. Jens Gibmeier
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2017
资助国家:
德国
项目状态:
已结题
起止时间:
2016-12-31 至 2021-12-31
中文摘要
模组化内假体各部件之间的界面建立了机械工程自锁莫尔斯-锥接头,该接头在生理应用过程中承受着巨大的载荷。作为材料,主要采用具有生物惰性特性的生物相容性金属植入材料Ti6Al4V。加载过程中,钛(基)构件之间发生微动,可能导致微动腐蚀过程(应力腐蚀、微动腐蚀或机械诱导缝隙腐蚀)和早期失效。在项目范围内,将进行温深轧制,这意味着除了工艺诱发的加工硬化外,还将获得确定的表面形貌。此外,锥体的表面区域将通过局部感应热处理软化,这直接发生在深轧过程之前。随后,在部件连接过程中,软化和结构化的锥体表面会发生塑性变形(关节的自调节)。因此,实现了防止腐蚀性接头流体渗透的局部密封。此外,还会诱发局部加工硬化和稳定的残余压应力。通过深滚处理,以离子释放形式的腐蚀过程、体积磨损和模块界面表面材料侵蚀将会减少。此外,与纯机械表面处理相比,连续的局部热处理和机械处理进一步提高了耐腐蚀性。项目范围内的目标和任务是选择(a)锥体的形状和机械表面处理的参数,(b)局部感应热处理,使微动疲劳和微动腐蚀达到最佳效果。随后,在项目过程中获得的发现使种植体制造商能够遇到尚未解决的微动腐蚀磨损问题。最后,历史上建立的锥体界面可以调整到现代种植系统的应用需求。最后,该项目旨在减少材料和设计导致的植入失败,以减少患者和医疗保健系统的生理和心理压力。
英文摘要
For interfaces between single components of modular endoprotheses the mechanical engineering self-locking morse-taper joint is well established, which is subjected to enormous loadings during physiological application. As material the biocompatible metallic implant material Ti6Al4V with bio inert properties is mainly applied. During the loading micro-movements between the titanium (base) components occur, which might lead to fretting corrosion processes (stress corrosion, fretting corrosion or mechanically induced crevice corrosion) and early failure. Within the scope of the project a warm deep rolling will be carried out by which means beside the process induced work hardening a definite surface topography will be achieved. Additionally, the very surface region of the cone will be softened through a local induction heat treatment, which directly occurs right in advance to the deep rolling process. Subsequently, the softened and structured cone surface can deform plastically during joining of the components (self-accommodation of the joint). As a consequence a local sealing of the joint gap against the penetration of corrosive joint fluid is achieved. Furthermore, local work hardening and stabile compressive residual stresses will be induced. Through the deep rolling treatment corrosion processes in form of ion release, volumetric wear and superficial materials attack at modular interfaces will be reduced. In addition the consecutive local thermal and mechanical treatment further increases the corrosion resistance in contrast to a pure mechanical surface treatment. Objective and task within the scope of the project is to choose (a) the shape of the cone in combination with the parameters for the mechanical surface treatment and (b) the local induction heat treatment such that an optimum result is achieved with regard to fretting fatigue and fretting corrosion. Subsequently, the findings gained in the course of the project allow the implant manufacturer to encounter the still unsolved problem of fretting corrosive wear. Finally, the historically established cone interface can be adjusted to the application needs of modern implant systems. In the end the project aims at the minimization of material and design caused implant failures against the background of reducing the physical and psychological pressure of patients and of the health care system.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Neutron residual stress analysis for multiphase materials with depth gradients of the strain free / independent lattice parameter D0
-
批准号:282874578
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:2016
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
Hot crack assessment during welding using novel LTT weld filler materials
-
批准号:254003098
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:2014
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
Thermal spraying of thick film systems - process optimization by means of residual stress and residual stress stability
-
批准号:230530734
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:2013
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
Cracking resistance enhancement of high strength welded joints through the application of modern weld filler materials with low transformation temperatures (LTT)
-
批准号:188906270
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:2011
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
Experimental Analysis of multiaxial residual stress states induced by laser surface hardening
-
批准号:206828805
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:2011
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
In-situ Untersuchungen während des Schweißens mit LTT-Zusatzwerkstoffen
-
批准号:71503100
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:2008
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
Residual stresses in welded joints of work hardening steels with high manganese content
-
批准号:441694070
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:--
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
Influence of residual stresses on the crack propagation behavior in microstructurally graded samples manufactured by laser based additive manufacturing
-
批准号:505457585
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:--
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
Reduction of the fracture risk of modular taper interfaces in orthopedic implants by enhancing their resistance towards fatigue and fretting-corrosion by the application of targeted surface modifications
-
批准号:525058197
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:--
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
Assessment of local residual stress distributions at the local repair of components by means of cold gas spraying
-
批准号:452606919
-
项目类别:Research Grants
-
资助金额:$0.0万
-
财政年份:--
-
负责人:Dr.-Ing. Jens Gibmeier
-
依托单位:
海外基金