• Title/Summary/Keyword: maximum traction

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Finite Element Analysis of Stress Distribution in using Face Mask according to Traction Point (훼이스 마스크의 견인위치에 따른 응력분포에 관한 유한요소법적 연구)

  • Oh, Kyo-chang;Cha, Kyung-Suk;Chung, Dong-hwa
    • Journal of Dental Rehabilitation and Applied Science
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    • v.25 no.2
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    • pp.171-181
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    • 2009
  • The objective of this study was to analyse stress distribution of maxillary complex by use of face mask. The construction of the three-dimensional FEM model was based on the computed tomography(CT) scans of 13.5 years-old male subject. The CT image were digitized and converted to the finite element model by using the mimics program, with PATRAN. An anteriorly directed force of 500g was applied at the first premolar 45 degrees downwards to the FH plane and at the first molar 20 degrees downwards to the FH plane. When 45 degrees force was applied at maxillary first premolar, there were observed expansion at molar part and constriction at premolar part. The largest displacement was 0.00011mm in the x-axis. In the y-axis, anterior displacement observed generally 0.00030mm at maximum. In the z-axis, maxillary complex was displaced 0.00036 mm forward and downward. When 20 degrees force was applied at maxilla first molar, there were observed expansion at lateral nasal wall and constriction at molar part. The largest displacement was 0.001mm in the X-axis. In the Y-axis, anterior displacement observed generally 0.004mm at maximum. In the Z-axis, ANS was displaced upward and pterygoid complex was displaced downward. The largest displacement was 0.002mm.

The effect of cervical stabilized exercise and joint mobilization on maximum muscle strength and static muscle endurance of cervical region (경추안정화운동과 경추관절가동술이 경부의 최대근력과 정적근지구력에 미치는 영향)

  • Gong, Won-Tae;Cheun, Hyeung-Jae;Lee, Kyeong-Mok
    • Journal of the Korean Data and Information Science Society
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    • v.21 no.1
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    • pp.33-42
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    • 2010
  • The purpose of this study was to identify cervical stabilized exercise and joint mobilization, the difference between them, and the maximum muscle strength and static muscle endurance of each group after the enforcement to general people. Cervical joint mobilization group refers to interarticular exercise (traction, pressure, glide) using with Kaltenborn technique. 3 classes were divided into 20 people each, cervical joint mobilization and stabilized exercise, and the comparison groups were randomized for the study. Both cervical stabilized exercise and joint mobilization increased maximum muscle strength and static muscle endurance. Patients should be able improve muscle stabilization and deep cervical muscle by using joint mobilization when the patient is unable to exercise on their own.

A new geomechanical approach to investigate the role of in-situ stresses and pore pressure on hydraulic fracture pressure profile in vertical and horizontal oil wells

  • Saberhosseini, Seyed Erfan;Keshavarzi, Reza;Ahangari, Kaveh
    • Geomechanics and Engineering
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    • v.7 no.3
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    • pp.233-246
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    • 2014
  • Estimation of fracture initiation pressure is one of the most difficult technical challenges in hydraulic fracturing treatment of vertical or horizontal oil wells. In this study, the influence of in-situ stresses and pore pressure values on fracture initiation pressure and its profile in vertical and horizontal oil wells in a normal stress regime have been investigated. Cohesive elements with traction-separation law (XFEM-based cohesive law) are used for simulating the fracturing process in a fluid-solid coupling finite element model. The maximum nominal stress criterion is selected for initiation of damage in the cohesive elements. The stress intensity factors are verified for both XFEM-based cohesive law and analytical solution to show the validation of the cohesive law in fracture modeling where the compared results are in a very good agreement with less than 1% error. The results showed that, generally by increasing the difference between the maximum and minimum horizontal stress, the fracture pressure and its profile has been strongly changed in the vertical wells. Also, it's been clearly observed that in a horizontal well drilled in the direction of minimum horizontal stress, the values of fracture pressure have been significantly affected by the difference between overburden pressure and maximum horizontal stress. Additionally, increasing pore pressure from under-pressure regime to over-pressure state has made a considerable fall on fracture pressure in both vertical and horizontal oil wells.

INFLUENCE OF MINIPLATE SHAPES AS SKELETAL ANCHORAGE FOR APPLICATION OF ORTHOPEDIC FORCE: A THREE-DIMENSIONAL FINITE ELEMENT ANALYSIS (악정형력 적용을 위한 골내 고정원으로서 미니플레이트 형상의 영향: 3차원 유한요소법적 연구)

  • Lee, Nam-Ki;Baek, Seung-Hak;Choi, Dong-Soon;Park, Young-Wook;Kim, Ji-Hyuck;Cha, Bong-Kuen
    • Maxillofacial Plastic and Reconstructive Surgery
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    • v.30 no.4
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    • pp.345-352
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    • 2008
  • Purpose: This study was performed to evaluate the stress distribution in the bone and the displacement distribution of the miniscrew under orthopedic force with two different types of miniplate design as skeletal anchorage for orthopedic treatment. Materials and methods: Finite element models were made for 6-hole miniplate (0.8mm in thickness), which were designed in two different shapes-one is curvilinear shaped (C plate, Jeil Medical Co., Korea) and another, Y shaped (Y plate), fixed with 3 pieces of miniscrew 2mm-diameter and 6mm-long respectively. A traction force of 4 N was applied in $0^{\circ}$, $30^{\circ}$ and $60^{\circ}$ to imaginary axis connecting two unfixed distalmost holes of the miniplate. Results: The maximum von Mises stress in the bone was much greater in the cortical portion rather than in the cancellous portion. C plate showed greater maximum von Mises stress in the cortical bone than Y plate. The maximum displacement of the miniscrew was greater in C plate than Y plate. The more increased the angle of the applied orthopedic force, the greater maximum von Mises stress in the bone and maximum displacement of the miniscrew. It was observed that in C plate, the von Mises stress in the bone and displacement of the miniscrew were distributed around the distalmost screw-fixed area. Conclusions: The results suggest that Y plate should have the advantage over C plate and in the placement of the miniplate, its imaginary axis should be placed as parallel as possible to the direction of orthopedic force to obtain its primary stability.

A Study on the Auto-MTPT Algorithm to Make the Speed-based Current-map of IPMSM for Traction of Inwheel (인휠 구동용 IPMSM의 속도 기반 전류맵 작성을 위한 Auto-MTPT 알고리즘)

  • Park, Gui-Yeol;Park, Jung-Woo;Hwang, Yo-Han;Shin, Duck-Woong;Moon, Chae-Joo
    • The Transactions of the Korean Institute of Power Electronics
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    • v.21 no.5
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    • pp.411-417
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    • 2016
  • Theoretical IPMSM control technique is complicated, and reliability is low because of the changing parameters. Further, in case of general look-up table designing method which obtains torque characteristics (according to current and speed) or torque characteristics (according to magnetic flux through the entire control region), obtaining a precise result can be difficult and has the disadvantage taking too much time to establish a current look-up table. In this paper, the new auto maximum torque point tracking (MTPT) algorithm that automatically finds the optimum stator d - q axis electric current reference through the entire speed region is devised; consequently, it could establish a 3D look-up table with torque characteristics according to current and speed. In case of using the devised auto MTPT algorithm, the result value detailed was obtained in comparison with the generalized look-up design technique, and checked to reduce the current look-up table establishment time.

A Study on Cooling Performance of In-wheel Motor for Green Car (그린카용 인휠 모터의 냉각 성능에 관한 연구)

  • Jung, Jung-Hun;Kim, Sung-Chul;Hong, Jung-Pyo
    • Transactions of the Korean Society of Automotive Engineers
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    • v.20 no.1
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    • pp.61-67
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    • 2012
  • The in-wheel motor used in green car was designed and constructed for an electric direct-drive traction system. It is difficult to connect cooling water piping because the in-wheel motor is located within the wheel structure. In the air cooling structure for the in-wheel motor, a outer surface on the housing is provided with cooling grooves to increase the heat transfer area. In this study, we carried out the analysis on the fluid flow and thermal characteristics of the in-wheel motor under the effects of motor speed and heat generation. In order to check the problem of heat release, the analysis has been performed using conjugate heat transfer (conduction and convection). As a result, flow fields and temperature distribution inside the in-wheel motor were obtained for base speed condition (1250 rpm) and maximum speed condition (5000 rpm). Also, the thermo-flow characteristics analysis of in-wheel motor for vehicles was performed in consideration of ram air effect. Therefore, we checked the feasibility of the air cooling for the housing geometry having cooling grooves and investigated the cooling performance enhancement.

Shape Design of IPMSM for HEV Traction Motor to Reduce Usage of Permanent Magnet and to Ensure Maximum Output Power (영구자석 사용량 저감과 최대출력 확보를 위한 HEV 구동용 IPMSM의 형상설계)

  • Jung, Jae-Woo;Lee, Tae-Guen;Lee, Jung-Jong;Lee, Geun-Ho;Hong, Jung-Pyo;Kim, Ki-Nam
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.607_608
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    • 2009
  • 일반적으로 매입형 영구자석 동기전동기는 영구자석의 사용량이 많을수록 돌극비를 향상 시킬 수 있으므로 발생토크 중 릴럭턴스 토크의 비중을 키울 수 있다. 이는 토크 발생 시 입력전류를 저감시켜 동손이 감소하고 효율을 향상시키는 효과를 기대할 수 있다. 하지만 최근에 희토류계 영규자석의 가격 상승으로 인하여 영구자석 형 전동기 개발에 있어 제약이 따르는 상황이며 가격 경쟁력을 위하여 영구자석의 사용량을 저감시키는 노력을 기울이고 있다. 본 논문에서는 HEV 구동용 매입형 영구자석 동기전동기를 대상으로 영구자석 사용량 저감 설계에 대하여 다루고자 한다. 영구자석 사용량 저감은 영구자석의 두께를 변경시켜서 검토하였으며 실험을 통한 영구자석의 감자특성을 검토하여 최적의 두께를 결정하였다. 영구자석 두께 저감에 따라 감소한 최대출력 확보를 위하여 회전자의 형상설계를 기계적 구조해석과 병행하여 수행하였다. 최종으로 설계된 모델의 특성은 Prototype과 비교하여 성능만족 여부 및 영구자석 사용량 변화를 확인하였다.

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Dynamic Analysis of Monorail System with Magnetic Caterpillar (자석식 무한궤도를 가진 모노레일의 동역학 해석)

  • Won, Jong-Sung;Tak, Tae-Oh
    • Transactions of the Korean Society of Automotive Engineers
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    • v.20 no.2
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    • pp.47-55
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    • 2012
  • This work deals with dynamic analysis of a monorail system with magnetic caterpillar where magnets are embedded inside each articulated element of the caterpillar, augmenting traction force of main rubber wheels to climb up slope up to 15 degree grade. Considerations are first given to determine stiffness of the primary and secondary suspension springs in order for the natural frequencies of car body and bogie associated with vertical, pitch, roll and yaw motion to be within generally accepted range of 1-2 Hz. Equations for calculating magnetic force needed to climb up given slope are derived, and a magnetic caterpillar system for 1/6 scale monorail is designed based on the derivation. To assess the hill climbing ability and cornering stability, and make sure smooth operation of the side and vertical guiding wheels which is critical for safety, a multibody model that takes into account of every component level design characteristics of car, bogie, and caterpillar is set up. Through hill climbing simulation and comparison with measurement of the limit slope, the validity of the analysis and design of the magnetic caterpillar system are demonstrated. Also by studying the curving behavior, maximum curving speed without rollover, functioning of lateral motion constraint system, the effects of geometry of guiding rails are studied.

Study on the Preparation of Alumina Powders used os a Rubber Filler with a Microwave Extraction System (마이크로파에 의한 고무용 충전제로서의 Alumina Powder의 제조에 관한 연구)

  • Park, Chan-Young;Hwang, Eun-Hee;Han, Seong-Kee
    • Elastomers and Composites
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    • v.33 no.3
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    • pp.201-209
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    • 1998
  • Alumina powders used as a filler in rubber compounding was extracted from kaolin in $H_2SO_4$ solution employing conventional thermal and microwave energy resources. Maximum degrees of alumina extraction from kaolin were 72.8% at $80^{\circ}C$, 1M $H_2SO_4$, and 180min in the conventional thermal extraction process and were 99.0% at $90^{\circ}C$, 1M $H_2SO_4$,, and 60min in the microwave extraction one, respectively. The samples synthesized in both processes were analyzed by means of TG/DTA, XRD, SEM, Atomic Emission Spectroscopy, and BET method. Studies are presently under way to unravel the basic interaction mechanisms between microwave and alumina power for high rates of alumina extraction from kaolin in the microwave ex-traction process.

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A Study of Tire Road Friction Estimation for Controlling Rear Wheel Driving Force of 4WD Vehicle (4WD 차량의 후륜 구동력 제어를 위한 구동시 노면마찰계수 추정에 관한 연구)

  • Park, Jae-Young;Shim, Woojin;Heo, Seung-Jin
    • Transactions of the Korean Society of Automotive Engineers
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    • v.24 no.5
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    • pp.512-519
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    • 2016
  • In this study, the tire road friction estimation(TRFE) algorithm for controlling the rear wheel driving force of a 4WD vehicle during acceleration is developed using a standard sensor in an ordinary 4WD passenger car and a speed sensor. The algorithm is constructed for the wheel shaft torque, longitudinal tire force, vertical tire force and maximum tire road friction estimation. The estimation results of shaft torque and tire force were validated using a torque sensor and wheel force transducer. In the algorithm, the current road friction is defined as the proportion calculated between longitudinal and vertical tire force. Slip slop methods using current road friction and slip ratio are applied to estimate the road friction coefficient. Based on this study's results, the traction performance, fuel consumption and drive shaft strength performance of a 4WD vehicle are improved by applying the tire road friction estimation algorithm.