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一种新型螺旋槽轴承在液力悬浮式离心旋转血泵中的设计。

A novel design of spiral groove bearing in a hydrodynamically levitated centrifugal rotary blood pump.

机构信息

State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University, Zheda Road 38, Hangzhou, China.

出版信息

Artif Organs. 2012 Aug;36(8):739-46. doi: 10.1111/j.1525-1594.2012.01467.x. Epub 2012 Jul 2.

DOI:10.1111/j.1525-1594.2012.01467.x
PMID:22747897
Abstract

Good washout is very important in spiral groove bearing (SGB) designs when applied to blood pumps due to the micrometer scales of lubrication films and groove depths. To improve washout, flow rate or leakage through SGBs should be as large as possible. However, this special goal violates conventional SGB designs in which no leakage is desired as the leakage would decrease load-carrying capacity significantly. So, a design concept is formed fulfilling the two goals of high load-carrying capacity and large flow rate: let groove width decrease along flow path and the mating surface of the rotor rotate with a direction facilitating the flow through the grooves. Under this concept, a novel SGB is designed, contrary to conventional ones, with groove width decreasing with increasing spiral radius. This SGB is mounted on the motionless upper plate of our designed centrifugal blood pump, with the mating surface of rotor rotating with a direction facilitating the outward flow. To assess SGB designs, a characteristic plane is originally presented relating to pressure-normalized load-carrying capacity and flow rate. Comparisons between various kinds of SGB designs are made, and computational fluid dynamics (CFD) results are plotted in this characteristic plane from which load/flow performances can be directly read out. CFD and comparison results show that the new designs have superior load/flow characteristics. However, the impact of SGB designs upon hemolysis/thrombus formation is still to be verified according to the concept presented.

摘要

在应用于血泵的螺旋槽轴承 (SGB) 设计中,由于润滑膜和槽深的微米级尺度,良好的冲洗非常重要。为了改善冲洗效果,SGB 的流量或泄漏率应尽可能大。然而,这个特殊的目标违反了传统的 SGB 设计,因为不希望发生泄漏,因为泄漏会显著降低承载能力。因此,形成了一种设计理念,既能满足高承载能力和大流量的两个目标:让槽宽沿流动路径减小,并且转子的配合表面以有利于通过槽的流动的方向旋转。根据这一理念,设计了一种与传统设计相反的新型 SGB,其槽宽随螺旋半径的增加而减小。该 SGB 安装在我们设计的离心式血泵的静止上板上,转子的配合表面以有利于向外流动的方向旋转。为了评估 SGB 设计,最初提出了一个与压力归一化承载能力和流量有关的特征平面。对各种 SGB 设计进行了比较,并在该特征平面上绘制了计算流体动力学 (CFD) 结果,从中可以直接读取承载/流量性能。CFD 和比较结果表明,新设计具有优越的承载/流量特性。然而,根据提出的概念,SGB 设计对溶血/血栓形成的影响仍有待验证。

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