• 제목/요약/키워드: Strain relief

검색결과 43건 처리시간 0.02초

溶接이음부 形狀變化에 따른 後熱處理時의 力學的 特性에 關한 硏究 (A Study on the Mechanical Characteristics by the Change of Bevel Angle of Welding Joint During PWHT)

  • 방한서;강성원;김기성;김종명;노찬승
    • Journal of Welding and Joining
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    • 제15권2호
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    • pp.64-71
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    • 1997
  • In order to define the effects on shapes of welding joint, during Post Welding Heat Treatment (PWHT), we have carried out numerical analysis on the several test pieces by using computer program which was based on thermal-elasto-plastic-creep theories for the study. And then, welding residual stresses after PWHT were measured same test-pieces to compare with the results of numerical analysis. The main results obtained from this study is as follows: 1) The distribution modes of welding residual stresses are same on the all test pieces after and during PWHT by the both sides (measurement and numerical analysis). 2) The mechanical difference for change the thickness of plate and bevel angle are not appeared. 3) In a mechanical point of view (like material quality test, welding deformation etc.), manimum bevel angle (40$^{\circ}$.) is more suitable than maximum bevel angle (70$^{\circ}$).

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전열침 시술에 호전되지 않는 요통환자에 대한 봉독약침 치료 증례보고 2례 (The Two Cases Report of Bee Venom Injection on Patient with Low Back Pain Maintaining after Heating-Conduction Acupuncture Therapy)

  • 연창호;박현건;이운섭;김종연;정석희
    • 척추신경추나의학회지
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    • 제7권2호
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    • pp.75-81
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    • 2012
  • 장요인대 염좌 환자 2명에게 전열침 치료를 시행하여 통증 강도가 증가하였지만 봉독약침 치료를 시행한 후 통증 강도와 요추 가동범위 및 이학적 검진상에서 호전되었음을 보고한다. 이와 같이 봉독약침에 의해 호전 될 수 있는, 염증성 병변을 내재하였거나 진행 될 가능성이 있는 환자에 대한 사전의 감별 진단에 대한 연구 및 전열침 치료의 효과 및 부작용에 대한 체계적인 연구가 추후에 필요할 것으로 사료된다.

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극저온 열처리가 7075 알루미늄 합금의 잔류응력과 기계적 특성에 미치는 영향 (Effects of Cryogenic Treatment Cycles on Residual Stress and Mechanical Properties for 7075 Aluminum Alloy)

  • 김회봉;정은욱;고대훈;김병민;조영래
    • 한국재료학회지
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    • 제23권1호
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    • pp.18-23
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    • 2013
  • In this study, the effects of cryogenic treatment cycles on the residual stress and mechanical properties of 7075 aluminum alloy (Al7075) samples, in the form of a tube-shaped product with a diameter of 500 nm, were investigated. Samples were first subjected to solution treatment at $470^{\circ}C$, followed by cryogenic treatment and aging treatment. The residual stress and mechanical properties of the samples were systematically characterized. Residual stress was measured with a cutting method using strain gauges attached on the surface of the samples; in addition, tensile strength and Vickers hardness tests were performed. The detailed microstructure of the samples was investigated by transmission electron microscopy. Results showed that samples with 85 % relief in residual stress and 8% increase in tensile strength were achieved after undergoing three cycles of cryogenic treatments; this is in contrast to the samples processed by conventional solution treatment and natural aging (T4). The major reasons for the smaller residual stress and relatively high tensile strength for the samples fabricated by cryogenic treatment are the formation of very small-sized precipitates and the relaxation of residual stress during the low temperature process in uphill quenching. In addition, samples subjected to three cycles of cryogenic treatment demonstrated much lower residual stress than, and similar tensile strength compared to, those samples subjected to one cycle of cryogenic treatment or artificial aging treatment.

원형수직구의 흙막이 벽체에 작용하는 주동토압 (Active Earth Pressure Acting on the Cylindrical Retaining Wall of a Shaft)

  • 천병식;신영완
    • 한국지반환경공학회 논문집
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    • 제7권4호
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    • pp.15-24
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    • 2006
  • 원형 오픈 케이슨과 원형 수직구에 설치된 흙막이 벽에 작용하는 토압은, 벽체의 변위와 응력해방으로 인한 수평 및 연직 아칭효과로 인하여, 평면 변형조건에서의 옹벽에 작용하는 토압보다는 작은 토압이 발생한다. 원형벽체에 작용하는 토압분포를 조사하기 위해서, 건조한 모래지반에서 깊이에 따른 벽체변형이 균등한 조건의 모형실험을 실시하였다. 벽체 변위, 벽면 마찰, 벽체 형상비 등을 조절할 수 있는 모형 실험 장치가 개발되었고, 모형실험을 통하여 원통형 벽체에 작용하는 토압에 대한 다양한 인자의 영향이 분석되었다.

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Tensile response of steel/CFRP adhesive bonds for the rehabilitation of civil structures

  • Matta, F.;Karbhari, Vistasp M.;Vitaliani, Renato
    • Structural Engineering and Mechanics
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    • 제20권5호
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    • pp.589-608
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    • 2005
  • There is a growing need for the development and implementation of new methods for the rapid and cost-effective rehabilitation of deteriorating steel structural components to offset the drawbacks related to welding and/or bolting in the field. Carbon fiber reinforced polymer (CFRP) composites provide a potential alternative as externally bonded patches for strengthening and repair of metallic structural members for building and bridge systems. This paper describes results of an investigation of tensile and fatigue response of steel/CFRP joints simulating scenarios of strengthening and crack-patching. It is shown that appropriately designed schemes, even when fabricated with levels of inaccuracy as could be expected in the field, can provide significant strain relief and load transfer capability. A simplified elasto-plastic closed form solution for stress analysis is presented, and validated experimentally. It is shown that the bond development length remains constant in the linear range, whereas it increases as the adhesive is deformed plastically. Fatigue resistance is shown to be at least comparable with the requirements for welded cover plates without attendant decreases in stiffness and strength.

레이저 간섭법과 점 가열법을 이용한 용접부의 잔류응력 측정에 관한 연구 (A Study on Welding Residual Stress Measurement by Laser Inteferometry and Spot Heating Method)

  • 홍경민;이동환;강영준
    • 한국정밀공학회지
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    • 제25권3호
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    • pp.101-108
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    • 2008
  • Residual stress is one of the causes which make defects in engineering components and materials. Many methods have been developing to measure the residual stress. Though these methods provide the information of the residual stress, they also have disadvantage like a little damage, time consumption, etc. In this paper, we devised a new experimental technique to measure residual stress in materials with a combination of laser speckle pattern interferometry and spot heating. The speckle pattern interferometer measures in-plane deformation during the heat provides for much localized stress relief. 3-D shape is used for determining heat temperature and other parameters. The residual stresses are determined by the amount of strain that is measured subsequent to the heat and cool-down of the region being interrogated. A simple model is presented to provide a description of the method. In this paper, we could experimentally confirm that residual stress can be measured by using laser interferometry and spot heating method.

자동차 현가장치를 위한 에어스프링 보강코드의 최적 성능평가 (Optimum Evaluation of Reinforcement Cord of Air Spring for the Vehicle Suspension System)

  • 김병수;문병영
    • 한국정밀공학회지
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    • 제28권3호
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    • pp.357-362
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    • 2011
  • Air springs are prevalently used as suspension in train. However, air springs are seldom used in automobiles where they improve stability and comfort by enhancing the impact-relief, breaking, and cornering performance. Thus, this study proposed a new method to analyze air springs and obtained some reliable design parameter which can be utilized in vehicle suspension system in contrast to conventional method. Among air spring types of suspension, this study focused on sleeve type of air spring as an analysis model since it has potential for ameliorating the quality of automobiles, specifically in its stability and comfort improvement by decreasing the shock through rubber sleeve. As a methodology, this study used MARC, as a nonlinear finite element analysis program, in order to find out maximum stress and maximum strain depending on reinforcement cord's angle variation in sleeves. The properties were found through uniaxial tension and pure shear test, and they were developed using Ogden Foam which is an input program of MARC. As a result, the internal maximum stresses and deformation according to the changes of cord angle are obtained. Also, the results showed that the Young's modulus becomes smaller, then maximum stresses decrease. It is believed that these studies can be contributed in automobile suspension system.

The Electronic Laser Interferometry and Laser Heating Method for Residual Stress Determination

  • Kim, Koung-Suk;Kang, Young-June;Rho, Kyung-Wan;Ryu, Weon-Jae
    • Journal of Mechanical Science and Technology
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    • 제14권7호
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    • pp.715-721
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    • 2000
  • Residual stress is one of the causes which makes defects in engineering components and materials. These residual stresses can occur in many engineering structures and can sometimes lead to premature failures. There are commonly used methods by which residual stresses are currently measured. But these methods have a little damage and other problems; therefore, a new experimental technique has been devised to measure residual stress in materials with a combination of electronic laser interferometry, laser heating and finite element method. The electronic laser interferometer measures in-plane deformations while the laser heating and cooling provides for very localized stress relief. FEM is used for determining the heat temperature and other parameters. The residual stresses are determined by the amount of strain that is measured subsequent to the heat-up and cool-down of the region being interrogated. A simple model is presented to provide a description of the method. In this paper, the ambiguity problem for the fringe patterns has solved by a phase shifting method.

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L-벤딩에서 공정 설계변수가 스프링백에 미치는 영향의 평가를 위한 유한요소해석 및 검증 (Finite Element Analysis and Its Verification of Springback in L-bending to Evaluate the Effect of Process Design Parameters)

  • 조민진;김수진;전만수
    • 소성∙가공
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    • 제30권6호
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    • pp.275-283
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    • 2021
  • A parametric study was conducted on the effects of five fundamental design parameters on springback, including die clearance, step height, step width, punch radius, and taper relief in an L-bending process, controlled by the compression force. The experiment was also conducted to verify the usefulness of the parametric study procedure for process design, as well as the finite element predictions. The elastoplastic finite element method was utilized. The L-bending process of the york product, which is a key part of the breaker mechanism, was employed. The deformation of the material was assumed to be due to plane strain. Five samples of each design parameter were selected based on experiences in terms of process design. The finite element predictions were analyzed in detail to show a shortcut towards the process design improvement which can replace the traditional process design procedure relying on trial-and-errors. The improved process design was verified to meet all the requirements and the predictions and experiments were in good agreement.

판재 점진 성형 공정의 정밀도 향상을 위한 다이 구조 개선에 대한 연구 (A study on the die structure for the improvement of the geometric accuracy in the single point sheet incremental forming process)

  • 이원준;김민석;선민호;유제형;이창환
    • Design & Manufacturing
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    • 제16권2호
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    • pp.53-59
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    • 2022
  • Unlike other press forming processes, ISF (Incremental sheet forming) doesn't require a punch and die set. However, during the ISF processes unwanted bending deformation occurred around the target geometry. This paper is aimed to analyze the effect of the die structure, which is supported by bolts, on the geometric accuracy of the ISF processes. In this research, the ISF processes with Al5052 sheet of 0.5 mm, the tool diameter of 6 mm and the stepdown of 0.4 mm was employed. L-shaped, step-shaped, relief-shaped geometry were employed in experiments. Sectional view and the plastic strain were compared. From this research we find out that the bolt supported ISF processes increases the geometric accuracy of products very effectively.