• 제목/요약/키워드: steel door

검색결과 60건 처리시간 0.024초

옆문강도 및 측면충돌 성능을 고려한 알루미늄 도어 임펙트빔 최적화 연구 (Optimization of the Aluminum Door Impact Beam Considering the Side Door Strength and the Side Impact Capability)

  • 양지혁
    • 한국산학기술학회논문지
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    • 제12권5호
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    • pp.2025-2030
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    • 2011
  • 최근에 많은 완성차 업계에서 차량 중량을 줄이기 위해 알루미늄 재질의 도어 임팩트빔을 사용하고 있으나, 이는 옆문강도 및 측면충돌 성능을 저하시킬 수 있다. 따라서 이 논문에서는 옆문강도 법규를 만족시키고 스틸 도어 빔 수준의 측면충돌 성능을 유지할 수 있는 알루미늄 빔의 최적화된 단면 형상과 설계수치를 제시하고자 한다.

LFT소재 특성을 고려한 Door Carrier Plate 변형 해석 (Warpage analysis of a Door Carrier Plate in the injection molding Considering the characteristics of LFT)

  • 유호영;박시환
    • 한국산학기술학회논문지
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    • 제14권8호
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    • pp.3625-3630
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    • 2013
  • 도어 모듈은 모듈화의 대표적인 예로 여러 부품들은 모듈형태로 완성하여 완성차 업체의 원가절감 및 조립시간 단축, 품질 향상 등에 큰 기여를 이루었다. 주요 부품중의 하나인 Door carrier plate는 주로 steel을 이용한 press 성형이 주였으나 최근에는 PP-LFT(유리 장섬유 강화PP)를 사용한 사출 공법을 적용함으로써 형상자유도를 높혀 모듈에 부착되는 많은 종류의 부품들을 통합할 수 있게 되었으며 중량 절감을 이룰 수 있게 되었다. 하지만 사출 성형시 제품의 형상 및 gate위치 설정의 한계성과, LFT의 특성에 의하여 변형이 비교적 심해 일반적으로 시사출 진행 후 보상 가공을 진행하여 조립성을 개선한다. 이러한 사후 수정 공정은 금형의 품질 저하 및 생산원가 상승의 주요인이다. 부분적으로 사출 CAE를 적용하여 warpage정도를 예측하나 그 신뢰성 확보에 어려움을 겪고 있다. 따라서 LFT를 사용하는 Door carrier plate에 대한 해석 신뢰성을 확보할 수 있는 기법으로 hyper-mesh에서 1차 mesh작업 후 moldlfow 자체 tool을 이용하여 mesh의 두께 구현성을 높혔으며, fiber orientation해석을 위하여 ARD-RSC model을 적용하였다.

Improvement of Condensation Performance in Corridor Type Apartment Door

  • Lee, Sungbok;Hwang, Hajin
    • Architectural research
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    • 제10권1호
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    • pp.33-39
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    • 2008
  • Condensation has mainly occurred in corridor type apartment door which is exposed to the outside air and is made of steel, which has high thermal conductivity. As a result, the total costs of repair have increased with the number of disputes with residents. In this study, therefore, we investigate materials and construction methods used in apartment door, perform a computer simulation to find out possible improvements, and then suggest the dew point to prevent the occurrence of condensation throughout simulation. The results indicate that the temperature that condensation does not occur is $15.4^{\circ}C$, and the optimum method of achieving this dew point is shown to be a door frame system including a large vertical slot to decrease the area of thermal conduction between the outer and inner portions of the door frame. Mock-up tests show that the surface temperature of the door frame was higher than the dew point, and the system can withstand severe cold conditions of $-20^{\circ}C$. In application test, the surface temperature of door frame with vertical slots is $5.9^{\circ}C$in average, which is higher than the existing door frame. Furthermore, in the temperature distribution of the surrounding door measured with infrared ray camera, the existing door shows the high temperature distribution indicating lack of insulation, but the improved door shows the low temperature distribution indicating higher insulation.

도어 모듈 플레이트의 동특성 분석에 관한 연구 (A Study on the Dynamic Characteristics of Door Module Plate)

  • 배철용;김완수;김찬중;이봉현;장운성;모유철
    • 한국소음진동공학회논문집
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    • 제17권9호
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    • pp.853-861
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    • 2007
  • Currently, automotive industries improve the vehicle performance and reduce the development period of vehicle using each module part for the high quality and performance of vehicles. However each component part doesn't generate the noise and vibration problems, sometime these problems are generated on the assembly status between vehicle chassis frame and each module part. On this study, in order to analysis the dynamic characteristics of a shield door module that is a typical module part of vehicles, the acquisition and evaluation process about the vibration and noise of shield door module is developed. Also the possibility to apply to shield door module of the developed process is verified by the comparison with the dynamic characteristics between plastic and steel module plate.

자동차 도어 경량화를 위한 판재형 사이드 임팩트 빔 개발 프로세스 (Development Process of Side Impact Beam for Automotive Light-Weighting Door using Sheet Type)

  • 이인철;이태규;장동환
    • 소성∙가공
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    • 제24권2호
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    • pp.130-137
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    • 2015
  • This paper presents the development process of automotive side door impact beam for passenger cars. Weight reduction while maintaining functional requirements is one of the major goals in the automotive industry. In this study, thin-walled side door beam using quenchable boron steel was designed to reduce the weight of conventional side door tubular one. In order to estimate design for the proposed side door beams, the static side impact protection tests(FMVSS 214) were conducted using the finite element method. Based on the simulation results, geometry modification of the side door beam has been performed via creating new reinforcing ribs. Furthermore, the manufactured frontal impact beam was mounted on the real side door of a passenger car, and then static impact protection test carried out. It is concluded that the presented test results can provide significant contribution to the stiffness of side door impact beams and light-weighting door research.

핫스탬핑에 의한 자동차 도어 임팩트빔의 개발 (Construction of Vehicle Door Impact Beam Using Hot Stamping Technology)

  • 이현우;황정복;김선웅;김원혁;유승조;임현우;염영진
    • 대한기계학회논문집A
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    • 제34권6호
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    • pp.797-803
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    • 2010
  • 자동차의 측면 충돌시 승객을 보호하고자 박판재를 이용하여 자동차의 도어 임팩트빔을 핫스탬핑공법을 이용하여 개발하였다. 핫스탬핑 기술은 차량의 차체 강성을 증가시킬 뿐만 아니라 차체 중량 및 부품 수 축소로 인한 공정의 감소도 가능하게 한다. 핫스탬핑 시편을 제작하고, 기계적 물성시험을 수행하여 물성 데이터를 확보하였다. 핫스탬핑 임팩트빔의 성형해석및 구조해석을 이용한 최적 설계를 수행하여 기존 파이프형태의 임팩트빔보다 강도는 102% 향상되고, 중량은 34% 감소된 핫스탬핑 임팩트빔을 개발하였다.

알루미늄 하니컴 샌드위치 판재를 적용한 철도차량 통로문의 경량화 (Light Weight by Application of Aluminum Honeycomb Sandwich Panels in End Door of Rolling Stock)

  • 정남용
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 1997년도 추계학술대회 논문집
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    • pp.284-291
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    • 1997
  • Many papers have been conducted on the applications of honeycomb sandwich maintenance, and to improve the high speed and light weight in rolling stocks, aircrafts and so on. The end door of rolling stock is generally made of rolled steel or stainless steel. Thus, the weight of these materials are heavier than of nonferrous metals and thermal deformation by welding or complexity of manufacturing process is occurred. Therefore, this paper is aimed to develop the light weight by application of end door which is made of aluminum honeycomb sandwich panels in rolling stocks and to propose the standards of design and evaluation for its adhesively bonded strength.

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내덴트성 향상을 위한 고강도 도어 외판 개발 (Development of Door Outer Panel using High Strength Steel Sheet for Improving Dent Resistance)

  • 김익수;김태정;정연일;윤치상;임종대
    • 소성∙가공
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    • 제16권4호
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    • pp.254-259
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    • 2007
  • Dent resistance is an important characteristic to avoid damage on automotive outer panels. From a practical point of view, dents can be caused in a number of ways. Considering doors as an example, denting can occur from stone impacts or from the careless opening of an adjacently parked vehicle door. Denting can occur where the door surface is smooth and may not have sufficient curvature to resist dent. These exterior body parts are designed to improve dent resistance using a combination of work hardening and bake hardening. In brief, dent is affected by the shape of the parts and the material properties such as yield strength, strain and thickness. In this work, forming of door outer panel is investigated by Taguchi method. Main parameters are yield strength, thickness, blank size, blank holding force and so on. For the given value of design parameters, forming analysis of the eighteen cases are carried out according to L18 orthogonal array. After comparing the performance by simple conversion of simulation results into dent resistance, the final suggestion of the forming parameters is verified for the optimal improvement of dent resistance.

차량용 도어 힌지의 경량화를 위한 재질별 수명 예측 (Analysis on Life Prediction for Different Materials in Vehicle Door Hinge Lightweight Design)

  • 유기현;김홍건
    • 한국생산제조학회지
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    • 제22권4호
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    • pp.693-699
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    • 2013
  • Environmental issues are attracting increasing interest worldwide, and accordingly, environmental regulations for vehicles are being made more stringent. As a result, the car industry is conducting studies focusing on fuel efficiency and lightweight vehicles. To manufacture lightweight vehicles, existing steel parts are replaced by composite materials and lightweight metals. In this study, the fatigue life of a new material for manufacturing lightweight car door hinges was predicted using a finite-element analysis program. The existing steel material was replaced by carbon-fiber-reinforced plastic (CFRP) and aluminum alloy 6061, and the test results were analyzed. The maximum stress decreased by approximately three times, whereas the fatigue life and safety factor increased. When only CFRP was used, its allowable stress, safety factor, and fatigue life were excellent, but the sagging of the product exceeded the allowable value, which posed a limitation in use. Therefore, it seems desirable to use an appropriate combination of steel, AA6061, and CFRP for this product.