• 제목/요약/키워드: Thermal structural durability

검색결과 65건 처리시간 0.023초

자전거 디스크 브레이크 구멍 형상 변화에 따른 구조적 내구성 해석 (Structural Durability Analysis due to Hole Configuration Variation of Bike Disc Brake)

  • 한문식;조재웅
    • 한국자동차공학회논문집
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    • 제22권5호
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    • pp.44-49
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    • 2014
  • As expansion and contraction of bike disk brake are happened continuously by temperature at repeated urgent braking. In this study, 3 kinds of model are designed according to configurations of holes and thermal durabilities on bike disk brake are investigated by comparing 3 models through temperature and thermal analyses. Maximum thermal stress happened at the disk contacted with pad and the connection part fixing disk rotor. Instead of initial state, the temperature is uniformly distributed at transient state. As the area of hole at disk rotor face becomes wider, thermal stress becomes lower at the initial state. On the other hand, in case the number of holes increases, thermal stress becomes lower at the elapsed time of 100 seconds. The thermal durability of bike disk brake can be improved by applying this study result with configurations of holes.

고온.고압용 3-way 볼밸브의 특성해석 (A Characteristic Analysis of High Pressure and High Temperature 3-way Ball Valve)

  • 이준호
    • 한국기계가공학회지
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    • 제11권4호
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    • pp.180-184
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    • 2012
  • 3-way ball valves have been mostly used for high temperature/high pressure valves using in petrochemical carriers and oil tankers, which requires high quality products with confidentiality and durability. As a larger disaster may be generated by leakage of oil or gas from valves, thus the present research applied a numerical analysis method with thermal-structural coupled field analysis and the performance test. The Max stress by parts was confirmed through thermal-structural coupled field analysis and develop the 3-way ball valve design, which is safe on operating condition. And its performance was verified by carrying out pressure test, leakage test and durability test for the manufactured 3-way ball valves with satisfying it's regulations.

드럼 브레이크에서의 열응력에 의한 내구성을 통한 융합적 분석 (Convergent Analysis through Durability by Thermal Stress at Drum Brake)

  • 오범석;조재웅
    • 한국융합학회논문지
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    • 제11권5호
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    • pp.139-144
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    • 2020
  • 본 연구에서는 드럼자체와 브레이크에 대한 시뮬레이션 해석을 하였으며 열해석 결과와 구조 해석을 통한 내구성을 고찰하여 그 해석 결과를 얻었다. 브레이크 실린더로 인하여 힘을 받는 라이닝,라이닝의 확장으로 인하여 힘을 받는 드럼 내부, 축의 회전으로 인하여 힘을 받는 드럼에 대한 열응력 및 구조 해석을 통하여 어느 부분에 등가응력과 변형량이 큰지를 확인하였다. 본 연구 결과를 종합하여 브레이크 디스크설계에 응용한다면 열변형 방지 및 그 내구성을 증대시키는데 활용성이 클 것으로 사료된다. 본 연구 결과는 실제적으로 드럼 브레이크에서의 열응력에 견딜 수 있는 내구성 있는 설계에 유용하게 적용할 수 있다. 계절별 기차선로 이음새에서의 내구성 해석을 적용함으로서 본 연구 결과가 미적인 설계에 응용되는 융합 연구에 유리하다고 보여진다.

선체 구조용 강재에 대한 Al과 Zn 아크용사코팅 층의 캐비테이션 손상 특성 (Cavitation Damage Characteristics of Al and Zn Arc Thermal Spray Coating Layers for Hull Structural Steel)

  • 박일초;김성종
    • 한국표면공학회지
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    • 제49권1호
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    • pp.32-39
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    • 2016
  • In this study, Al and Zn arc thermal spray coatings were carried out onto the substrate of SS400 steel to improve corrosion resistance and durability of hull structural steel for ship in marine environment. Therefore cavitation-erosion test was conducted to evaluate the durability of painted and thermal spray coated specimens. And then the damaged surface morphology and weight loss were obtained to compare with each other, respectively. As a result, the painted specimen was the poorest cavitation resistance characteristics because surface damage behavior appeared to be exfoliated in bulk shape during the cavitation experiment. And Zn thermal spray coating layer presented the significant surface damage depth due to relatively low surface hardness and local cavitation damage tendency. On the other hand, as a result of the weight loss analysis, the painting layer presented the poorest cavitation resistance and the Al thermal spray coating layer relatively showed the best results after cavitation experiment.

EGR Valve의 구조 안전성 해석에 관한 연구 (Study on Structural Safety Analysis of EGR Valve)

  • 한문식;조재웅
    • 한국생산제조학회지
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    • 제20권5호
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    • pp.528-534
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    • 2011
  • This study analyzes thermal stress and durability fatigue on the modelling of EGR valve. In case of 10% opening at its inlet, the minimum temperature gets cool as 3 times as inlet temperature. The maximum equivalent stress becomes lowest as the value of $2.6274{\times}109$ Pa and fatigue life becomes highest as 23.657 Cycle. But the minimum temperature gets cool as 2.2 times as inlet temperature in case of 50% opening at its inlet. The equivalent stress becomes higher and fatigue life becomes lower than in case of 10% opening. In case of 100% opening at its inlet, the minimum temperature gets cool as 0.2 times as inlet temperature. The equivalent stress becomes lower and fatigue life becomes higher than in case of 50% opening. Maximum equivalent stress and total deformation are shown at the closing of EGR valve by the pressure of inflow gas. The structural analysis result of this study can be effectively utilized with the design of EGR valve by investigating prevention and durability against its damage.

Thermal Durability of Al2TiO5-Mullite Composites and Its Correlation with Microstructure

  • Kim, Hyung-Chul;Lee, Dong-Jin;Kweon, Oh-Seong;Kim, Ik-Jin
    • 한국세라믹학회지
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    • 제42권8호
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    • pp.532-536
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    • 2005
  • Thermal shock resistance of structural ceramics is a property that is difficult to quantity, and as such is usually expressed in terms of a number of empirical resistance parameters. These are dependant on the conditions imposed, but one method that can be used is the examination of density, Young's modulus and thermal expansion retention after quenching. For high temperature applications, long-annealing thermal durability, cycle thermal stability and residual mechanical properties are very important if these materials are to be used between $1000^{\circ}C$ and $1300^{\circ}C$. In this study, an excellent thermal shock-resistant material based on $Al_2TiO_5-mullite$ composites of various compositions was fabricated by sintering reaction from the individual oxides and adjusting the composition of $Al_2O_3TiO_2/SiO_2$ ratios. The characterization of the damage induced by thermal shock was done by measuring the evolution of the Young's modulus using ultrasonic analysis, density and thermal expansion coefficients.

Evaluation of thermal stability of quasi-isotropic composite/polymeric cylindrical structures under extreme climatic conditions

  • Gadalla, Mohamed;El Kadi, Hany
    • Structural Engineering and Mechanics
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    • 제32권3호
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    • pp.429-445
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    • 2009
  • Thermal stability of quasi-isotropic composite and polymeric structures is considered one of the most important criteria in predicting life span of building structures. The outdoor applications of these structures have raised some legitimate concerns about their durability including moisture resistance and thermal stability. Exposure of such quasi-isotropic composite/polymeric structures to various and severe climatic conditions such as heat flux and frigid climate would change the material behavior and thermal viability and may lead to the degradation of material properties and building durability. This paper presents an analytical model for the generalized problem. This model accommodates the non-linearity and the non-homogeneity of the internal heat generated within the structure and the changes, modification to the material constants, and the structural size. The paper also investigates the effect of the incorporation of the temperature and/or material constant sensitive internal heat generation with four encountered climatic conditions on thermal stability of infinite cylindrical quasi-isotropic composite/polymeric structures. This can eventually result in the failure of such structures. Detailed critical analyses for four case studies which consider the population of the internal heat generation, cylindrical size, material constants, and four different climatic conditions are carried out. For each case of the proposed boundary conditions, the critical thermal stability parameter is determined. The results of this paper indicate that the thermal stability parameter is critically dependent on the cylinder size, material constants/selection, the convective heat transfer coefficient, subjected heat flux and other constants accrued from the structure environment.

경주용 자동차 브레이크 디스크 형상에서의 열 응력 및 구조 해석에 관한 융합 연구 (A Convergent Investigation on Structural Analysis with Thermal Stress at the Shape of Brake Disk for Racing Car)

  • 오범석;조재웅
    • 한국융합학회논문지
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    • 제11권6호
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    • pp.209-213
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    • 2020
  • 본 연구에서는 경주용 자동차에서 기존에 사용 중인 형상을 가진 모델 A와 경량화를 한 모델 B를 설계하고 열 변형과 열응력을 동반한 구조해석을 하였다. Model A가 Model B에 비하여 최고온도가 낮음을 보인다. 다른 냉각 조건이 주어지지 않고 디스크의 형상에 따른 냉각성능은 Model A가 더 뛰어남을 알 수 있다. Model A가 Model B에 비하여 거의 2배 이상으로 그 열응력이 낮아져 내구성면에서도 우수함을 알 수 있었다. 응력이 가장 크게 나타나는 부분은 형상에 관계없이 허브와 접합되는 구멍으로 나타났다. 본 연구에서의 해석결과는 실제 자동차 브레이크 디스크의 형상을 설계하는데 있어서 유용하다고 보인다. 본 연구에서 얻은 해석 결과는 실제적으로 경주용 자동차 브레이크 디스크의 강도를 파악하는 데에 적용될 수 있다. 경주용 자동차 브레이크 디스크의 해석 결과를 이용함으로서, 본 연구가 미적인 설계 및 해석이 적용된 융합 연구라고 보여진다.

계절별 기차선로 이음새에서의 내구성 해석을 통한 융합적 고찰 (Convergent Investigation through Durability Analysis at the Seam of Railroad Track by Season)

  • 오범석;조재웅
    • 한국융합학회논문지
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    • 제11권4호
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    • pp.189-193
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    • 2020
  • 본 연구에서는 운행하는 기차의 바퀴와 선로 사이에서의 마찰접촉에 의한 열팽창에 따른 선로 간의 이음새의 떨어진 간격에 따라서 그 선로에 대한 구조해석을 하였다. 이음새의 간격이 넓은 조건, 즉 겨울철 조건(모델 B)이 이음새의 간격이 좁은 조건인 여름철 조건(모델 A)보다 똑같은 힘을 주었을 때 등가 응력과 전변형량이 더 발생한다는 것을 알 수 있다. 본 연구 결과를 기차선로 설계에 응용한다면 피로 파손 방지 및 그 내구성을 증대시키는데 활용성이 클 것으로 사료된다. 계절별 기차선로 이음새에서의 내구성 해석을 적용함으로서 본 연구 결과가 미적인 설계에 응용되는 융합 연구에 유리하다고 보여진다.