• 제목/요약/키워드: Shot Peening

검색결과 186건 처리시간 0.176초

압축잔류응력이 스프링강의 고온환경 피로크랙 진전거동에 미치는 영향 (An Effect of Compressive Residual Stress on a High Temperature Fatigue Crack Propagation Behavior of The Shot-peened Spring Steel)

  • 박경동;정찬기
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2002년도 춘계학술대회 논문집
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    • pp.117-124
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    • 2002
  • The lightness of components required in automobile and machinery industry is requiring high strength of components. In particular, manufacturing process and new materials development for solving the fatigue fracture problem attendant upon high strength of suspension of automobile are actively advanced. In this paper, the effect of compressive residual stress of spring steel(JISG SUP-9) by shot-peening on fatigue crack growth characteristics in high temperatures($100^{\circ}C,\;150^{\circ}C,\;180^{\circ}C$) was investigated with considering fracture mechanics. So, we can obtain followings. (1) Compressive residual stress is decreased in high temperature, that is, with increasing temperature. (2) The effect of compressive residual stress on fatigue crack growth behavior in high temperature is increased below ${\Delta}K=17{\sim}19MPa\sqrt{m}$. The fatigue crack growth rate is increased with increasing temperature. The fatigue life is decreased with increasing temperature. (3) The dependence of temperature and compressive residual stress on the parameters C and m in Paris' law formed the formulas such as equations (3),(4),(5),(6),(7),(8),(9),(10). (4) It was investigated by SEM that the constraint of compress residual stress for plastic zone of fatigue crack tip was decreased in high temperature as compared with room temperature.

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쇼트피닝 가공한 스프링강의 고온 피로 파괴 특성에 관한 연구 (Characteristics of High Temperature Fatigue Fracture in Spring Steels after Shot Peening)

  • 박경동;신영진
    • 한국안전학회지
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    • 제21권4호
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    • pp.1-6
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    • 2006
  • The lightness of components that was required in automobile and machinery industry requires high strength of components. In particular, manufacturing process and new materials development for solving the fatigue facture problem attendant upon high strength of suspension of automobile are actively advanced. In this paper, the effect of compressive residual stress of spring steel(JISG SUP-9)by shot-peening on fatigue crack growth characteristics in high temperature($100^{\circ}C,\;150^{\circ}C,\;180^{\circ}C$)was investigated with considering fracture mechanics. So, we can obtaint the followings. (1) Compressive residual stress is decreased with increasing the test temperature. (2) The effect of compressive residual stress on fatigue crack growth behavior in high temperature is increased below ${\Delta}K=17{\sim}19MPa{\sqrt{m}}$. (3) It was investigated by SEM that the constraint of compress residual stress for plastic zone of fatigue crack tip was decreased in high temperature as compared with room temperature.

잔류응력의 표면파손과 마멸에 대한 영향 (The Effect of Residual Stresses on Surface Failure and Wear)

  • 이영제;김진욱
    • 대한기계학회논문집A
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    • 제26권4호
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    • pp.677-682
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    • 2002
  • Break-in is an intentional treatment to enhance the performance life of machinery parts and to maintain static friction behavior. Most studies on break-in have concerned only about surface conditions such as roughness or film formation. But the exact mechanism of break-in has not been found yet. Friction, scuffing behavior and wear of AISI 1045 were studied in relation to break-in and residual stress. The cylinder-on-disk type tribometer was used with the line-contact geometry. Scuffing tests were carried out using a constant load of 730N. In the break-in procedure the step load was applied from 100N to 200N. In this experiment, it was found that the break-in helps compressive residual stress to be formed well enough to enhance the scuffing life during the scuffing test. Specimens that had high compressive residual stress induced by shot-peening show better wear resistance than those were not shot-peened. Results of scuffing test, break-in procedure and wear amount in relation to residual stress have been discussed.

차량용 중공 스테빌라이저바의 내측 쇼트피닝 효과 (Effect of Inner Shot Peening Process for Tubular Stabilizer Bars)

  • 서유원;서진원;이원기;김진영
    • 대한기계학회논문집A
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    • 제41권11호
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    • pp.1119-1124
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    • 2017
  • 차량 하부에 장착된 스테빌라이저바는 차량이 곡선 구간을 선회할 때 차량의 자체를 유지해 줌으로서 차량 주행을 보다 편안하게 해 준다. 스테빌라이저바는 중실과 중공 타입 2가지가 있으며, 차량의 경량화를 위해 중공 형태의 스테빌라이저바의 적용이 늘고 있다. 차량의 경량화를 위한 중공 스테빌라이저바는 중실에 비해 무게가 34% 이상 경량화가 가능하지만 경량화 비율이 높아질수록 제품의 내구 수명은 급격하게 감소하는 경향을 나타낸다. 이러한 내구 수명 감소에 대한 대책으로서 소재의 고강도 및 고경도 소재를 적용하거나 쇼트피닝 공법을 개선 하는 등의 노력을 통해 내구 수명을 보장할 수 있다.

자동차용 Leaf 스프링 재질의 마찰 및 마멸 특성 (The Characteristics of Friction and Wear for Automative Leaf Spring Materials)

  • 오세두;안종찬;박순철;정원욱;배동호;이영제
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2003년도 학술대회지
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    • pp.118-126
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    • 2003
  • In the present study, the residual stresses can have a significant on the life of structural engineering components. Residual stresses are created by the surface treatment such as shot peening or deep rolling. The objective of this experimental investigation is to study the influence of friction and wear characteristics due to residual stress under dry sliding condition. Friction and wear data were obtained with a specially designed tribometer. Test specimens were made of SUP9(leaf spring material) after they were created residual stress by shot peening treatment. Residual stress profiles were measured at surface by means of the X-ray diffraction. Sliding tests were carried out different contact pressure and same sliding velocity 0.035m/s(50rpm). Leaf spring assembly test used to strain gauge sticked on leaf spring specimen in order to measure interleaf friction of leaf spring. Therefore, we were obtained hysteresis curve. As the residual stresses of surfaces increased, coefficient of friction and wear volume are decreased, but the residual stresses of surfaces are high, and consequently wear volume do not decreased. Coefficient of friction obtained from leaf spring assembly test is lower than that obtained from sliding test. From the results, structural engineering components reduce coefficient of friction and resistant wear in order to have residual stresses themselves.

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엔진 마운트 브라켓용 다이캐스팅 Al-Si-Cu 합금의 미세조직과 기계적 특성 (Microstructural and Mechanical Characteristics of Al-Si-Cu Die Casting Alloy for Engine Mount Bracket)

  • 천인범;홍승표;김정석
    • 열처리공학회지
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    • 제27권6호
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    • pp.281-287
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    • 2014
  • Microstructural and mechanical characteristics of Al-6Si-2Cu alloy for engine mount bracket prepared by gravity casting (as-cast) and die-casting (as-diecast) process have been investigated. For the microstructural characterization, the inductively coupled plasma mass spectrometry (ICP-MS), optical microscope (OM), scanning electron microscope (SEM) and electron probe microanalysis (EPMA) analyses are conducted. For the intermetallic phases, the X-ray diffraction (XRD) and energy dispersive spectroscopy (EDS) are also conducted with quantitative and qualitative analysis. Micro Vickers hardness and static tensile test are achieved in order to measure mechanical properties of alloys. Secondary dendrite arm spacing (SDAS) of as-cast and as-diecast show 37um and 18um, respectively. A large amount of coarsen eutectic Si, $Al_2Cu$ intermetallic phase and Fe-rich phases are identified in the Al-6Si-2Cu alloy. Mechanical properties of gravity casting alloy are much higher than those of die-casting alloy. Especially, yield strength and elongation of gravity casting alloy show 2 times higher than die-casting alloy. After shot peening, shot peening refined the surface grains and Si particles of the alloys by plastic deformation. The surface hardness value shows that shot peening alloy has higher value than unpeening alloy.

소성숏이 포함된 3차원 다중충돌 대칭-셀 해석모델을 이용한 면적평균 피닝잔류응력해 (Area-Averaged Solution of Peening Residual Stress Using a 3D Multi-impact Symmetry-cell FE Model with Plastic Shots)

  • 김태형;이형일
    • 대한기계학회논문집A
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    • 제33권4호
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    • pp.310-320
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    • 2009
  • 피닝잔류응력은 통상 XRD 실험법으로 측정되며, 다양한 X-선 조사면적들에서 면적평균해를 준다. 해석연구들 대부분 단일절점 해석해를 소개할 뿐 면적평균해를 전혀 고려하지 않고 있다. 따라서 XRD 실험해와 큰 차를 갖는 것은 자명하다. 이에 본 연구에서는 3차원 다중충돌 대칭-셀 모델을 활용해, 면적평균 피닝잔류응력해를 얻었다. 대칭-셀은 통합인자와 소성숏을 포함하며, 숏피닝 현상 들이 충분히 반영된다. 대칭-셀 A-D 네 충돌위치 에서 4-절점평균해를 얻었으며, 대칭-셀의 각 단면 ($0.4mm{\times}0.4mm$)에 포함된 전체절점에서 면적평균 해를 얻었다. 그리고 해석해들을 XRD 실험해와 비교했다. 소성숏 면적평균해가 4-절점평균해보다 XRD 실험해로의 근접성이 뛰어났다. 또한 양축 등가응력으로의 완벽한 수렴성을 보였다. 이로써 면적평균해에 기초한 유한요소 알멘선도를 구해, 유한요소 아크하이트, 유한요소 피닝커버리지 및 투사속도들간의 관계식들을 유도하였다. 유한요소 알멘선도는 김태형과 이형일이 정리한 실험적 알멘선도의 추이를 따랐으며, 그 유효성이 한층 향상됐다. 유도식들을 활용하여, 주요 피닝소재들 AISI4340, AISI4140, SPS8에서 유한요소 면적평균 해들을 얻고 XRD 실험해들과 비교했다. 피닝소재 모두에서 표면 및 최대압축잔류응력, 변형깊이가 실험해와 잘 일치하여, 피닝부품들의 잔류응력해 예측에 유한요소 알멘선도가 매우 유용함을 확인 했다. 이상과 같이 본 연구의 면적평균해가 실제 XRD 잔류응력 측정해를 매우 잘 따른다는 점에 주목되며, 궁극적으로 실재하는 숏피닝 잔류응력 평가를 위한 체계적인 해석방법임을 확인했다.

A three-dimensional finite element analysis of two/multiple shots impacting on a metallic component

  • Hong, T.;Ooi, J.Y.;Shaw, B.A.
    • Structural Engineering and Mechanics
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    • 제29권6호
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    • pp.709-729
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    • 2008
  • This paper describes a three-dimensional dynamic finite element analysis of two/multiple shots impacting on a metallic component. The model is validated against a published numerical study. An extensive parametric study is conducted to investigate the effect of shot impacting with overlap on the resulting residual stress profile within the component, including time interval between shot impacts, separation distance between the impacting points, and impacting velocity of successive shots. Several meaningful conclusions can be drawn regarding the effect of shot impacting with overlap.

이중 쇼트 피닝에 의한 SCM822H 강의 무해화 균열 크기 평가 (Evaluation of Harmless Crack Size of SCM822H Steel by Double Shot Peening)

  • 최진우;윤서현;권영국;이금화;남기우
    • 한국산업융합학회 논문집
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    • 제26권6_2호
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    • pp.1011-1017
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    • 2023
  • In this study, the harmless crack size (ahml) by double shot peening (DSP) using shot balls with different diameters was evaluated on carburized, quenched-tempered SCM822H steel. The minimum crack size (aNDI) detectable by non-destructive inspection was also evaluated. The relationship between the crack size (a25,50) that reduces the fatigue limit by 25% and 50% and ahml was evaluated. The residual stress of DSP was greater in SP(0.6+0.08) than SP(0.8+0.08) and appeared deeper in the depth direction. In addition, the hardness below the surface appeared larger. The fatigue limit of DSP increased 2.07 times and 1.95 times compared to non-SP. All ahml of the DSP specimen was determined at the depth (a). The compressive residual stress distribution affects ahml, and the ahml of SP(0.6+0.08), which has a large compressive residual stress and a high fatigue limit, appeared large. ahml of SP(0.6+0.08) introduced deeper than the residual stress of SP(0.8+0.08) is larger in the range of As=1.0-0.3. Since the residual stress in the thickness direction has a greater effect on ahml than the residual stress at the surface, it is necessary to introduce it more deeply. The relation of ahml, a25,50, and aNDI were evaluated in the point for safety and reliability.