人工关节的金属驱动自动抗摩擦功能
Qiaoyuan Deng1,2, Qingguo Feng1, Peipei Jing1
1Institute of Biomedical Engineering, Key Laboratory of Advanced Technologies of Materials, Ministry of Education, College of Medicine, Southwest Jiaotong University, Chengdu, Sichuan, 610031, China.
概括
研究人员开发了一种新型的化 (TiNX -Cu) 涂层,用于人工关节. 这种"自动抗摩擦"涂层显著减少摩擦和磨损,可能延长年轻患者的关节假肢的寿命.
科学领域:
- 生物材料工程 生物材料工程
- 部落学 (tribology) 是一个学科.
- 表面科学是一门学科.
背景情况:
- 人工关节假肢的使用寿命有限,为10-15年.
- 提高金属大腿骨头的摩擦系数和耐磨性对于延长假肢寿命至关重要,特别是在年轻患者中.
研究的目的:
- 开发和评估一种具有自抗摩擦性能的 Cu-doped化 (TiNX -Cu) 薄膜.
- 通过减少摩擦和提高耐磨性来提高人工关节的寿命.
主要方法:
- 磁铁喷射被用来将TiNX -Cu薄膜沉积在CoCrMo合金上.
- 在含有蛋白质的滑介质中研究了Al2 O3 /TiNX -Cutribopair的tribological性能.
主要成果:
- 在TiNX -Cu膜中的Cu与蛋白质结合,形成一个稳定的表面层.
- 在tribopair之间的切割应力将吸附的蛋白质分解成碳化合物碎片.
- 铜催化和剪切应力协同地将碎片转化为类似石墨的碳 tribofilms,减少摩擦并提高耐磨性.
结论:
- 开发的TiNX -Cu薄膜通过产生抗摩擦 tribofilms,表现出"自抗摩擦"的特性.
- 这项技术有望延长假肢设备的寿命,包括人工关节.
相关概念视频
Structural Joints: Synovial Joints
3.7K
Synovial joints are the most common type of joint in the body. A key structural characteristic for a synovial joint is the presence of a joint cavity. This fluid-filled space is where the articulating surfaces of the bones contact each other. Also, unlike fibrous or cartilaginous joints, the articulating bone surfaces at a synovial joint are not directly connected to each other with fibrous connective tissue or cartilage. This gives the bones of a synovial joint the ability to move smoothly...
3.7K
Journal Bearings
712
Journal bearings are mechanical components that support and provide lateral stability to rotating shafts and axles. They are crucial in reducing friction, wear, and vibration in machinery such as engines, turbines, and pumps. The principle behind journal bearings is forming a thin lubricant film between the bearing surface and the rotating shaft, which minimizes direct contact and reduces frictional forces.
To better understand the concept of journal bearings, consider a rope winch with dry or...
To better understand the concept of journal bearings, consider a rope winch with dry or...
712
Pivot Bearings
1.4K
In mechanical systems, bearings are crucial in facilitating relative motion between two components while minimizing friction and wear. They help distribute various loads (radial, axial or a combination of both loads) across machinery parts, ensuring smooth and efficient operation.
A pivot bearing is a specialized type of bearing designed to support axial loads on a rotating shaft. The bearing surface, or the pivot, is positioned at the end of a shaft to support the axial thrust. The pivot may...
A pivot bearing is a specialized type of bearing designed to support axial loads on a rotating shaft. The bearing surface, or the pivot, is positioned at the end of a shaft to support the axial thrust. The pivot may...
1.4K
Functional Classification of Joints
4.2K
Functional Classification of Joints
The functional classification of joints is determined by the amount of mobility between the adjacent bones. Joints are functionally classified as a synarthrosis or immobile joint, an amphiarthrosis or slightly moveable joint, or as a diarthrosis, a freely moveable joint. Fibrous and cartilaginous joints can be functionally classified as either synarthroses or amphiarthroses, whereas all synovial joints are classified as diarthroses.
Synarthrosis
An...
The functional classification of joints is determined by the amount of mobility between the adjacent bones. Joints are functionally classified as a synarthrosis or immobile joint, an amphiarthrosis or slightly moveable joint, or as a diarthrosis, a freely moveable joint. Fibrous and cartilaginous joints can be functionally classified as either synarthroses or amphiarthroses, whereas all synovial joints are classified as diarthroses.
Synarthrosis
An...
4.2K
Design Example: Deciding Thickness of Lubricating Fluid in a Shaft
133
Effective lubrication between a rotating shaft and its bearing housing is essential in rotating machinery to minimize friction, wear, and energy loss. With carefully controlled thickness and viscosity, the lubricant layer prevents metal-to-metal contact, ensuring smooth operation.
To calculate the required thickness of the lubricant layer, the tangential velocity at the shaft's surface must first be determined. This velocity is calculated by converting the rotational speed to angular...
To calculate the required thickness of the lubricant layer, the tangential velocity at the shaft's surface must first be determined. This velocity is calculated by converting the rotational speed to angular...
133


