• 제목/요약/키워드: Wet traction

검색결과 16건 처리시간 0.021초

습윤 접지력 향상을 위한 안전화 겉창 개발 연구 (The Development of Outsole for Wet Traction Enhancement)

  • 김정수
    • 한국안전학회지
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    • 제28권3호
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    • pp.33-38
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    • 2013
  • Many occupational workers or professionals have to walk on the various floors for a long period of time. The objective of this study was to develop the safety shoes with increased traction through the material selection. In order to fulfill our objective, first, two kinds of filler were selected to compare the wear mechanism at outsole surface. The developed rubber materials were tested with two kinds of portable slip meters. The sample safety shoes with developed rubber materials were also tested with subject in the laboratory. During walking, the safety shoes were naturally abraded with counter surface. The coefficient of friction(COF) was gradually decreased with number of steps to 30,000, while the COF was abruptly increased from 30,000 to 40,000. The experimental results showed that COF tested with silica rubber was at least 10% higher than that with carbon black rubber in wet or detergent condition. It has been well recognized that filler properties play a important role in wet traction in the tire industry. However it has been unclear that filler properties would be decisive factor in safety shoes. Our study shows that silica exhibits a higher slip resistance than carbon black without reference to wear states in wet or detergent condition. So, this results will provide guides for outsole compounders to develop new products and improve product performance.

테르펜 개질 페놀 수지 구조에 따른 배합고무 물성 변화 (Change of Physical Property of Rubber Compound by Terpene Modified Phenolic Resin Structure)

  • 김건옥;김도형;송요순
    • 공업화학
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    • 제31권3호
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    • pp.310-316
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    • 2020
  • 테르펜 개질 페놀 수지는 타이어의 주행 안전성과 관련 있는 웨트 트랙션과 연비와 관련된 구름저항을 개선하기 위해 사용한다. 이 시험은 테르펜 개질 페놀 수지의 기본 구조가 각각 알파 피넨, 베타 피넨, 델타 리모넨으로 달리한 수지를 타이어 트레드 배합물에 첨가하여 알킬 페놀 수지의 배합물과 물성 차이를 비교하였다. 알킬 페놀 수지는 웨트 트랙션과 관련 있는 0 ℃에서 탄젠트 델타가 테르펜 개질 페놀 수지와 큰 차이가 없지만 구름저항과 관련 있는 80℃에서 탄젠트 델타가 높게 나타나 연비 개선 효과가 적었다. 테르펜 개질 페놀 수지 중 베타 피넨은 웨트 트랙션과 연비 개선 효과가 다른 수지에 비해 고르게 나타났으며, 델타 리모넨 수지는 웨트 트랙션 개선효과가 가장 좋았고, 인장강도 및 마모 성능은 알킬 페놀 수지가 비교적 높게 나왔다. 모든 테르펜 개질 수지는 구름저항에서 알킬 페놀수지보다 우수하여 연비 개선효과 좋다고 할 수 있으며, 블랭크에 비해 다른 특성도 나아지는 효과를 보였다. 이 시험에서 사용된 페놀 수지의 특성을 참고하여 타이어 컴파운드를 배합할 때 개질된 테르펜 페놀 수지를 선택하면 웨트 트랙션, 구름저항 등의 특성을 효과적으로 개선한 컴파운드를 만들 수 있다.

트랙터용 습지 보조 차륜의 설계(I)-케이지 휠의 설계 변수에 관한 연구 (Design of A Tire-Attachable Cage Wheel for Wetland Use (I)-Study on design parameters of a cage wheel-)

  • 오영근;류일훈;김경욱
    • Journal of Biosystems Engineering
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    • 제25권2호
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    • pp.79-88
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    • 2000
  • Effects on tractive performance of design parameters of cage wheel as a traction aid to driving tires of tractor in wet paddy field were investigated experimentally. an experimental cage wheel was designed so that the design parameters such as wheel diameter, wheel width, lug pitch and lug angle could be varied during traction test, The traction test was conducted in two different types of wet paddy field ; shallow and deep harpan fields . Experimental results showed that tractive performance is affected by both soil conditions and the design parameters. A considerable improvement on the tractive performance was obtained by using a cage wheel with 45$^{\circ}$ lug angle in shallow hardpan and smaller lug pitch in deep hardpan. The diameter of cage wheel was mostly influential to the tractive performance both in shallow and deep hardpans.

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트랙터용 습지 보조 차륜의 설계(II) -케이지 휠과 토양의 상호 작용- (Design of a Tire-Attachable Cage Wheel for Wetland Use (II) -Soil-cage wheel interaction-)

  • 오영근;김경욱;박금숙
    • Journal of Biosystems Engineering
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    • 제26권1호
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    • pp.1-10
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    • 2001
  • Interactions between cage wheel and soil under the wet paddy field condition were analyzed. The cage wheel as a traction aid to driving tires of tractor was attached to the outside of the tires. The driving torque transmitted only to the cage wheel was measured and its effect on the total driving torque by both the tires and cage wheel was analyzed. Mathematical models were developed to predict the soil thrusts y a single lug and by the cage wheel with many lugs, respectively. Experimental results showed that as the diameter of cage wheel increased, positive effects of the cage wheel on the traction also increased. About 33-40% of the total traction force was obtained by the cage wheel with a diameter 1,182mm and 49-55% with a diameter 1,222mm. The peak thrust of the single lug of cage wheel increased by 31% and 59%, respectively when the diameter of the cage wheel increased from 1,182mm to 1,222mm and 1,262mm. The thrust by the cage wheel was estimated by using the developed mathematical models and the results were proved that the models are reliable for the estimation of the traction by the cage wheels.

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LOAD CHARACTERISTICS OF ROTARY OPERATION BY TRACTOR IN WET PADDY FIELDS

  • Y. G. Wu;Kim, K. U.;Y. K. Jung
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2000년도 THE THIRD INTERNATIONAL CONFERENCE ON AGRICULTURAL MACHINERY ENGINEERING. V.II
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    • pp.101-108
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    • 2000
  • The torque loads were measured at the input shaft of the transmission and driving shaft of the tractor having a cage wheel attached to the driving tires as a traction aid during. a rotavating operation in wet paddy fields with deep hardpan. Their load spectra were also calculated. Effects of design parameters of the cage wheel on the load characteristics were analyzed. The torque load exerted on the input shaft decreased as diameter of the cage wheel increased and increased as the rotating speed of the rotavator increased. The torque load exerted on the driving shaft increased as the working speed of the tractor increased and decreased as the PTO speed increased. Both the torque loads with the cage wheel were greater than those without the cage wheel. The cage wheel was developed for this study.

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WHEEL SLIP CONTROL WITH MOVING SLIDING SURFACE FOR TRACTION CONTROL SYSTEM

  • Chun, K.;Sunwoo, M.
    • International Journal of Automotive Technology
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    • 제5권2호
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    • pp.123-133
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    • 2004
  • This paper describes a robust and fast wheel slip tracking control using a moving sliding surface technique. A traction control system (TCS) is the active safety system used to prevent the wheel slipping and thus improve acceleration performance, stability and steerability on slippery roads through the engine torque and/or brake torque control. This paper presents a wheel slip control for TCS through the engine torque control. The proposed controller can track a reference input wheel slip in a predetermined time. The design strategy investigated is based on a moving sliding surface that only contains the error between the reference input wheel slip and the actual wheel slip. The used moving sliding mode was originally designed to ensure that the states remain on a sliding surface, thereby achieving robustness and eliminating chattering. The improved robustness in driving is important due to changes, such as from dry road to wet road or vice versa which always happen in working conditions. Simulations are performed to demonstrate the effectiveness of the proposed moving sliding mode controller.

케이지 휠을 이용한 습답 로터리 작업의 부하 특성 (Load Characteristics of Rotary Operation Using a Cage Wheel in Wet Paddy Fields)

  • 오영근;김경욱;박금숙
    • Journal of Biosystems Engineering
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    • 제26권3호
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    • pp.229-236
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    • 2001
  • The torque loads acting on the input shaft of the transmission and final driving shaft of the tractor having a cage wheel attached to the driving tries as a traction aid were measured during the rotavating operations in a poorly drained paddy field. Using the measured load data load spectra were constructed. Effects of the design parameters of the cage wheel on the load characteristics were also analyzed. The torque load exerted on the input shaft decreased as the diameter of the cage wheel increased and increased as the rotavator speed increased. The torque load exerted on the final driving shaft increased as the working speed of the tractor increased and decreased as the rotavator speed increased. The torque load on the final driving shaft with the cage wheel were greater than those without the cage wheel.

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Investigation of Floor Surface Finishes for Optimal Slip Resistance Performance

  • Kim, In-Ju
    • Safety and Health at Work
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    • 제9권1호
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    • pp.17-24
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    • 2018
  • Background: Increasing the slip resistance of floor surfaces would be desirable, but there is a lack of evidence on whether traction properties are linearly correlated with the topographic features of the floor surfaces or what scales of surface roughness are required to effectively control the slipperiness of floors. Objective: This study expands on earlier findings on the effects of floor surface finishes against slip resistance performance and determines the operative ranges of floor surface roughness for optimal slip resistance controls under different risk levels of walking environments. Methods: Dynamic friction tests were conducted among three shoes and nine floor specimens under wet and oily environments and compared with a soapy environment. Results: The test results showed the significant effects of floor surface roughness on slip resistance performance against all the lubricated environments. Compared with the floor-type effect, the shoe-type effect on slip resistance performance was insignificant against the highly polluted environments. The study outcomes also indicated that the oily environment required rougher surface finishes than the wet and soapy ones in their lower boundary ranges of floor surface roughness. Conclusion: The results of this study with previous findings confirm that floor surface finishes require different levels of surface coarseness for different types of environmental conditions to effectively manage slippery walking environments. Collected data on operative ranges of floor surface roughness seem to be a valuable tool to develop practical design information and standards for floor surface finishes to efficiently prevent pedestrian fall incidents.

고성능 에너지 절약형 타이어 트레드 고무의 합성 제조 기술 (Advanced Synthetic Technology for High Performance Energy Tire Tread Rubber)

  • 이범재;임기원;지상철;정권영;김태중
    • Elastomers and Composites
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    • 제44권3호
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    • pp.232-243
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    • 2009
  • 근래 고성능 친환경 타이어의 개발요구에 의하여 경제성(낮은 회전 저항)과 안전성(wet traction) 및 내마모성면에서 균형있는 특성을 가지는 타이어 트레드 고무의 합성 제조 기술이 중요하게 대두된다. 이를 위하여 다양한 기능성 용액중합 SBR의 개발과 함께 고무/충전제 간의 상호작용 증진 기술이 학술적으로나 산업적으로 활용되고 있다. 본 고에서는 기존의 카본블랙 고무와 함께 최근 green tire로서 각광 받는 실리카 충전 고무에서 충전제와 상호반응이 가능한 화학적 변성 SBR과 커플링제를 이용한 고성능 타이어 트레드 고무의 합성 제조 기술에 대하여 최근 연구 방향과 함께 작용 메카니즘에 대하여 고찰하였다.

사토(砂土)에 있어서 모델 테스트에 의한 차륜(車輪)의 성능(性能) 예측(豫測)에 관한 연구(硏究) (Performance Prediction of Powered-Rigid Wheel by Model Tests)

  • 이규승;이용국;박승제
    • Journal of Biosystems Engineering
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    • 제13권4호
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    • pp.1-8
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    • 1988
  • A series of soil bin experiments was carried out on land to evaluate the soil physical properties whether they are pertinent to soil-wheel system and to investigate if true model theory u applicable to powered rigid wheel-soil system. Four different sized wheels having diameter of 45, 60, 75 and 90 em were wed for the experiment. The following conclusion was derived from the study. (1) True model theory can be sufficiently utilized to study the wheel traction and linkage on lands. (2) For both dry and wet sands, Cone Index(CI) and soil shear parameters (c, ${\phi}$) with bulk density (${\gamma}$) were found to be good measures of soil physical properties which are pertinent to predict the performance of the powered rigid wheel-soil system.

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