Influence of circumferential annular grooving design of impeller on suspended fluid force of axial flow blood pump

Int J Artif Organs. 2022 Apr;45(4):360-370. doi: 10.1177/03913988211064912. Epub 2022 Jan 10.

Abstract

Aiming at insufficient suspension force on the impeller when the hydraulic suspension axial flow blood pump is start at low speed, the impeller suspension stability is poor, and can't quickly enter the suspended working state. By establishing the mathematical model of the suspension force on the impeller, then the influence of the circumferential groove depth of the impeller on the suspension force is analyzed, and the annular groove depth on the impeller blade in the direction of fluid inlet and outlet was determined as (0.26, 0.02 mm). When the blood pump starts, there is an eccentricity between the impeller and the pump tube, the relationship between the suspension force and the speed of the impeller under different eccentricities is analyzed. Combined with the prototype experiment, the circumferential annular grooving design of the impeller can make the blood pump rotate at about 3500 rpm into the suspension state, when the impeller is at 8000 rpm, the impeller can basically achieve stable suspension at the eccentricity of 0.1 mm in the gravity direction, indicating that the reasonable circumferential annular grooving design of the impeller can effectively improve the suspension hydraulic force of the impeller and improve the stability of the hydraulic suspension axial flow blood pump.

Keywords: Axial flow blood pump; circumferential groove; depth; impeller; suspension.

MeSH terms

  • Amniotic Band Syndrome*
  • Equipment Design
  • Heart-Assist Devices*
  • Humans
  • Hydrodynamics
  • Infant, Newborn
  • Models, Theoretical