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천길정,이정한,한동철,Cheon, G.J,Lee, J.H,Han, D.C 대한기계학회 1997 大韓機械學會論文集A Vol.21 No.5
Decision process for length dimension in the mechanical system design process has been studied with a washing machine transmission as a model. The results are, (i) the length dimensions of the non-shaft elements are independent of other elements, (ii) the length dimensions of the shaft elements are dependent on the dimensions of the non-shaft elements located inside and outside of that elements, (iii) the length dimensions of the inner shaft elements are dependent on those of the outer shaft elements located parallel, (iv) the length dimensions of the shaft elements located serial are independent of each other.
천길정 원광대학교 생산 및 자동화기술연구소 1994 생산.자동화기술연구소논문집 : 원광대 Vol.- No.1
An analysis of the dynamics in the closing phase of the occluder of a mechanical monoleaflet heart valve prosthesis is presented. The backflow velocity of the fluid was computed by applying the continuity. Bernoulli's and momentum equations in the unsteady state. By considering the fluid pressure and gravity as external forces acting on the occluder, the moment equlilibrium on the occluder was employed to analyze the motion of the occluder during closing and the impact force between the occluder and the guiding struts.
천길정 대한의용생체공학회 1991 의공학회지 Vol.12 No.3
In this paper, fluttering behavior of mechanical bileaflet heart valve prosthesis was analyzed taking into consideration of the impact between valve plate and stopper Vibration system of the valve was modeled as a rotating system, and equations are induced by moment equilibrium equations. Lift force, drag force, gravity and buoyancy were considered as external forces acting on the valve plate/ The 4th order Runge-Kutta method was used to solve the equations. Valve plate does not come to the static equilibrium position at a stretch, but come to that position after under damping vibration. Damping ratio increases as the cardiac optput increases, and the mean damping ratio is in the range of 0.16~40.25. Fluttering frequency does not have any specific value, but varies as a function of time. It is in the range of 10~40Hz. Valve opening appears to be affected by the orientation of the of the valve relative to gravitational forces.
천길정 대한기계학회 1992 대한기계학회논문집 Vol.16 No.11
본 연구에서는 밸브판의 거동을 2차의 회전계로 간주하고, 양력 및 항력(drag force)을 구하는데 있어 Reif등이 구한것과 동일한 방법을 이용하되 정지핀에 의해 그 최대 열림각이 제한을 받는 물리적 사실을 고려하고, 밸브를 통과하는 유량도 단위 입 력이 아닌 정현파(sine wave)로 간주하여 밸브판의 동적거동을 해석하였다. 해석대 상의 밸브 모델로는 Bjork-Shiley 27mm 1엽 밸브를 선정하였다. In this paper, fluttering behavior of mechanical monloleaflet heart valve prosthesis was analyzed taking into consideration of the impact between the valve occluder and the stopper. The motion of valve occluder was modeled as a rotating system, and equations were derived by employing the moment equilibrium conditions. Lift force, drag force, gravity and buoyancy were considered as external forces acting on the valve occluder. The 4th order Runge-Kutta method was used to solve the equations. The results demonstrated that the occluder reaches steady eguilibrium position only after damped vibration. The mean damping ratio is in the range of 0.197-0.301. Fluttering frequency does not have any specific value, but varies as a function of time. It is in the range of 11-84Hz. Valve opening appears to be affected by the orientation of the valve relative to gravitational forces.
천길정,한동철,Cheon, Gill-Jeong,Han, Dong-Chul 대한기계학회 1999 大韓機械學會論文集A Vol.23 No.7
Applying the conjugate contact condition, contact lines of a cylindrical worm gear has been calculated. The characteristics of tooth contact were analyzed and the pitting resistance were also assessed. It has been verified that: i) the length of contact is shortest on the 1st tooth of the front region, ii) the contact region is more narrow in the recess side than in the access side, iii) the contact region is more narrow in worm than in worm wheel. Hence, the pitting resistance is weakest in the recess side of the 1st contacting worm tooth.
인공심장용 전동기구동형 혈액 펌프의 설계 및 해석에 관한 연구
천길정,김희찬 대한의용생체공학회 1989 의공학회지 Vol.10 No.2
새로운 형태의 인공심장용 전동기구동형 혈액동기구동행 혈액 펌프플 개발하였다. 개발된 혈액 펌프는 소형, 고출력, 브러쉬 없는 직류 전동기를 에너지 변환 장치로 사용하였으며, 이 전동기 자체가 원호 형태의 궤적을 따라 좌우로 회전하도록 고안되었으며, 전동기를 포함한 '회전원통'의 웅직임이 좌우에 부착되어 있는 폴리우레탄으로 제작된 혈액 주머니를 번갈아 밀게 되어 혈액을 박출하게 된다. 본 연구에서 도입한 이동형 작동기 원리에 의해 다른 전동기 구동형 혈액 펌프가 안고 있는 두가지의 중요한 문제점인 펌프 크기의 증가와 자연 심장과의 해부학적인 구조상 접합의 문제점들을 개선할 수 있었다. 또한 펌프의 효율과 전동기에 의한 시스템의 온도 상승, 그러고 펌프 내에 유입되는 유체에 대한 이론적 해석을 실시하였으며, 일련의 모의 순환 실험을 통해 실험 결과를 비교하였다. 개발된 펌프 시스템은 이식형 완전 인공 심장으로 사용하기에 충분한 심박출량(9 L/m)과 전부하에 민감한 반응, 그리고 기계적인 안정도를 보여 주었다. A new motor-driven blood pump for artificial heart was developed. In this blood pump, a small size, high torque brushless DC motor was used as an energy converter and the motor rolls back and forth on a circular track. This movement of the "rolling-cyliner" causes blood ejection by alternately pushing left or right polyurethane blood sacs. This moving-actuator mechanism could be eliminate two potential problems of other motor-driven artificial hearts such as large size and poor anastomosis for the implantation. Theoretical analyses on the pump efficiency, the temperature rise, and the inflow mechanism were also performed. In a series of mock circulation tests, the theoretical analyses were compared to the measured hemodynamic and mechanical values. The pump system was shown to have sufficient cardiac output (upto 9 L/min), sensitivity to preload, and mechanical stability to be tested as an implantable total artificial heart.ial heart.