A stress-dependent sliding wear model for bileaflet mechanical heart valves

Q2 Materials Science Biotribology Pub Date : 2023-09-26 DOI:10.1016/j.biotri.2023.100258
T.H. Reif , R.B. More , A.D. Haubold
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Abstract

Pyrolytic carbon (PyC) is a common material used in mechanical heart valves. This investigation studies the effects of surface finish on the the sliding wear between two PyC surfaces. The primary application being, the prediction of wear at articulating surfaces within bileaflet mechanical heart valves. An experimental apparatus is designed which allows a cylinder to rotate on a flat plate at a constant frequency and load. The cylinder is harder (greater modulus of elasticity) than the flat surface. Two surface finishes of a single (hard) cylinder and two flat surfaces of different hardnesses (single surface finish) are investigated, for a total of four cases. These four cases are studied at four sliding distances. The exerimental data is used to develop theoretical load and stress-dependent models for sliding abrasive wear. For the boron alloyed PyC material used in this investigation, the load-dependent wear model is most applicable for unpolished cylinders and the stress-dependent model is most applicable for polished cylinders. These two models are used to make theoretical predictions of pivot wear in a bileaflet mechanical valve of the same material. The predictions from the stress-dependent wear model was found to be quite accurate with actual wear measurements. The methods developed in this paper are generalized and applied to other valve designs and materials.

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双片式机械心脏瓣膜的应力相关滑动磨损模型
热解碳(PyC)是一种常用于机械心脏瓣膜的材料。本研究研究了表面光洁度对两个PyC表面之间滑动磨损的影响。主要应用是预测双瓣机械心脏瓣膜内关节表面的磨损。设计了一种实验装置,使圆柱体在平板上以恒定的频率和载荷旋转。圆柱体比平面更硬(弹性模量更大)。研究了一个(硬)圆柱体的两个表面光洁度和两个不同硬度的平面(单面光洁度),共有四种情况。这四种情况在四个滑动距离下进行了研究。实验数据用于建立滑动磨料磨损的理论载荷和应力相关模型。对于本研究中使用的硼合金PyC材料,负载相关磨损模型最适用于未抛光的圆柱体,应力相关模型最适合于抛光的圆柱体。这两个模型用于对相同材料的双层机械阀的枢轴磨损进行理论预测。应力相关磨损模型的预测与实际磨损测量结果相当准确。本文提出的方法得到了推广,并应用于其他阀门设计和材料。
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来源期刊
Biotribology
Biotribology Materials Science-Surfaces, Coatings and Films
CiteScore
4.20
自引率
0.00%
发文量
17
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