• Title/Summary/Keyword: 견인용 스프링

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Factors affecting force system of orthodontic loop spring (교정용 loop 스프링의 force system에 영향을 주는 요소)

  • Choy, Kwang-Chul;Kim, Kyung-Ho;Park, Young-Chel
    • The korean journal of orthodontics
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    • v.29 no.5 s.76
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    • pp.511-519
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    • 1999
  • The shape of orthodontic retraction spring was varied and force system of each case was obtained using numerical analysis and verified with spring tester. The factors for obtaining biomechanically efficient spring under anatomic limitation were suggested as follows. 1. M/F ratio increases and L/D rate decreases as loop height increases. 2. M/F ratio increases and L/D rate decreases as incorporating more wire above minimum bending moment area. 3. M/F ratio decreases and L/D rate decrease as incorporating more wire below minimum bending moment area. 4. M/F ratio can not be greater than spring height no matter how much wire is incorporated at the apex of the loop. 5. Additional moment is necessary to obtain enough M/F ratio for translation under anatomical limitation. 6. Additional moment should be incorporated at every pah of the spring because M/F ratio and L/D rate decreases as horizontal spring length increases. 7. Material, cross section, and shape of the spring influence L/D rate, whereas M/F ratio is influenced by the shape of the spring independent from material and cross section.

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Analysis of Hydraulic Control Characteristics of Powershift Transmission for Agricultural Tractors (농업용 트랙터의 파워시프트 변속시 유압 특성 해석)

  • 정병학;이호상;김경욱
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 2002.07a
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    • pp.66-71
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    • 2002
  • 파워시프트는 동력전달의 단속 없이 변속할 수 있는 변속 방식이다. 기어는 동기 물림식으로 되어 있으며, 유압 클러치를 통하여 주행 중에도 동력의 흐름을 제어할 수 있다. 주요 구성 요소는 동력 흐름을 제어할 수 있는 유압 클러치와 동력을 전달하는 기어 조합이며, 유압 클러치는 피스톤, 리턴 스프링, 디스크, 플레이트 등으로 구성되어 있다. 접속 시에는 유압 피스톤이 리턴 스프링을 압축하며 전진하여 플레이트와 디스크에 수직력을 가하고 이를 결합시켜 동력을 전달한다. 해제 시에는 리턴 스프링에 의하여 피스톤이 후퇴하고 동력이 차단된다. 이때 유압 제어 시스템은 최대 견인 부하에서도 변속을 원활하게 하기 위하여, 클러치 압력을 이용해 변속 중 작동 클러치의 토크를 정교하게 제어한다. (중략)

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A Study on Determination of Suspension Spring Coefficient of Electric UTV for Agricultural Use through Virtual Simulation (가상 시뮬레이션을 통한 농업용 전동 UTV의 서스펜션 스프링 계수 결정 연구)

  • Kim, Sang Cheol;Kim, Seong Hoon;Kim, Seung Wan
    • Smart Media Journal
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    • v.11 no.5
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    • pp.75-81
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    • 2022
  • In order to respond to carbon neutrality and climate change in agriculture, agricultural machinery, which has been developed centered on internal combustion engines, needs to be converted to an electric-based technology that does not emit greenhouse gases. In this study, simulations for electric UTV suspension design were performed to reduce vibration and shock of electric UTV for agricultural use and to improve driving stability and control performance of the vehicle. The simulation was performed by dividing the tolerance load of the vehicle body and the loaded load state. The range of motion of the suspension spring of UTV is within 30% of the range of motion under condition B under tolerance, the displacement of the UTV suspension with full load is reduced from 264mm to 121mm, and the damping speed is 260mm/s to 300mm/s that it can be seen that the range of motion is within 60%. Suspension design of electric UTV for multi-purpose agricultural work is a very important factor for maintaining agricultural work ability in towing work such as tillage as well as driving and terrain adaptation. The results of this study can be usefully used to determine the spring parameters with the appropriate damping range so that the electric UTV can be used for various agricultural tasks.