• 제목/요약/키워드: Fracture Surface Shape

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고주파유도로를 이용한 초급속열처리 구상흑연주철의 피로파괴특성 (Fatigue Fracture Behavior in Super-Rapid induction Quenched Spheroidal Graphite Cast Iron)

  • 지정근;김진학;김민건
    • 산업기술연구
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    • 제19권
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    • pp.25-29
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    • 1999
  • Rotary bending fatigue tests were carried out to investigate the fatigue behavior of high performance ductile cast iron experienced super rapid induction heat treatment. The effect of super rapid induction treatment on fatigue limit was experimentally examined with the special focus on the variation surface microstructure and the fatigue crack initiation and propagation through fractography. Main results obtained are as follows. By super rapid induction treatment in FCD500, the martensite structure obtained through conventional quenching heat treatment was confirmed on the specimen surface. The fatigue crack initiation in the hardened surface layer was restricted by the martensite structure and compressive residual stress. Thus, it could be interpreted that the initiation stress would be increased by the improvement of surface structure. The fatigue crack propagation in the hardened layer was retarded by the presence of the globular shape martensite around the graphite nodule and compressive residual stress. The crack propagation path has shown zigzag pattern in the hardened surface layer.

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초급속열처리 구상흑연주철 FCD500의 피로파괴특성 (Fatigue Fracture Behavior of Spheroidal Graphite Cast Iron FCD500 by Super-Rapid induction Quenching)

  • 지정근;김민건;김진학;김정두
    • 대한기계학회논문집A
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    • 제26권4호
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    • pp.596-601
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    • 2002
  • Rotary bending fatigue tests were carried out to investigate the fatigue characteristics of high performance ductile cast iron experienced super rapid induction treatment. The influence of super rapid induction treatment on fatigue limit was experimentally examined with the special focus on the variation of surface microstructure and the fatigue crack initiation and propagation through fractography. Main results obtained are as follows. By super rapid induction treatment in FCD500, the martensite structure obtained through conventional heat treatment was confirmed on the specimen surface. The fatigue crack initiation in the hardened surface layer was restricted by the martensite structure and compressive residual stress. Thus, it could be interpreted that the initiation stress would be increased by improved structure in the surface. The fatigue crack propagation in the hardened layer was retarded by the presence of the globular shape martensite around the graphite nodule and compressive residual stress and the crack propagation behavior has zigzag pattern in the hardened surface layer.

마찰면의 압력 분포를 고려한 제동디스크의 열응력 해석 (Thermal Stress Analysis for a Brake Disk considering Pressure Distribution at a Frictional Surface)

  • 이영민;박재실;석창성;이찬우;김재훈
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 추계학술대회 논문집
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    • pp.842-846
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    • 2005
  • A brake disk and a pad are important parts that affect the braking stability of a railway vehicle. Especially, because a brake disk stops the vehicle using conversion of the kinetic energy to frictional energy, thermal fatigue cracks are generated by the cyclic thermal load, as frictional heat, on a frictional surface and these cracks cause the fracture of a brake disk. Therefore, many researches for the thermal stress must be performed to improve the efficiency of brake disk and ensure the braking stability. In this study, we performed the thermal stress analysis for a ventilated brake disk with 3-D analysis model. For that, we simplified the shape of a ventilated hole to minimize problems that could be occurred in analysis process. Thermal stress analysis was performed in case that pressure distributions on a frictional surface is constant and is not. To determine pressure distributions of irregular case, pressure distribution analysis for a frictional surface was carried out. Finally using the results that were obtained through pressure distribution analysis, we carried out thermal stress analysis of each case and investigated the results of thermal stress analysis.

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직접 에너지 적층을 통한 STS316L 소재의 보수 공정에서 그루브 형상이 기계적 특성에 미치는 효과 (Effect of Groove Shapes on Mechanical Properties of STS316L Repaired by Direct Energy Deposition)

  • 오욱진;손용;손종윤;신광용;심도식
    • 소성∙가공
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    • 제29권2호
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    • pp.103-112
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    • 2020
  • This study explores the effects of different pre-machining conditions on the deposition characteristics and mechanical properties of austenitic stainless steel samples repaired using direct energy deposition (DED). In the DED repair process, defects such as pores and cracks can occur at the interface between the substrate and deposited material. In this study, we varied the shape of the pre-machined zone for repair in order to prevent cracks from occurring at the slope surface. After repairs by the DED process, macro-scale cracks were observed in samples that had been pre-machined with elliptic and trapezoidal grooves. In addition, it was not possible to completely prevent micro-crack generation on the sloped interfaces, even in the capsule-type grooved sample. From observation of the fracture surfaces, it was found that the cracks around the inclined interface were due to a lack of fusion between the substrate and the powder material, which led to low tensile properties. The specimen with the capsule-type groove provided the highest tensile strength and elongation (respective of 46% and 571% compared to the trapezoidal grooved specimen). However, the tensile properties were degraded compared to the non-repaired specimen (as-hot rolled material). The fracture characteristics of the repaired specimens were determined by the cracks at the sloped interfaces. These cracks grew and coalesced with each other to form macro-cracks, they then coalesced with other cracks and propagated to the substrate, causing final fracture.

전도성 섬유가 함유된 시멘트 모르타르의 미세구조 및 전기적 특성 연구 (Study on Microstructure and Electrical Properties of Cement Mortar Containing Conductive Fibers)

  • 박종건;서동주;임두열;이유재;허광희
    • 한국구조물진단유지관리공학회 논문집
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    • 제26권3호
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    • pp.72-83
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    • 2022
  • 본 논문에서는 전도성 재료인 탄소섬유(carbon fiber, CF)와 강섬유(steel fiber, SF)를 함유한 시멘트 모르타르의 미세구조 및 전기적 특성, 압축강도에 미치는 영향을 연구하였다. 전도성 섬유보강 시멘트 모르타르(fiber-reinforced cement mortar, FRCM)의 비저항은 4-probe 방법을 이용하여 측정하였고, 압축강도는 압축시험을 기반으로 측정하였다. 이들의 성능은 플레인 모르타르(plain mortar, PM)와 비교, 검토하였다. 게다가 전도성 FRCM 파단면의 표면형상과 구성성분은 주사전자현미경(scanning electron microscope, SEM)과 에너지 분산형 X-ray 분광분석기(energy disperse X-ray spectrometer, EDS)를 이용하여 분석하였다. 그 결과 모든 시편에서 양생재령이 경과됨에 따라 비저항이 점차 증가하는 반면, 섬유혼입률이 증가할수록 비저항은 상당히 감소하였다. 강섬유를 1.25%까지 추가하여도 시멘트 모르타르의 비저항에는 크게 영향을 미치지 않았다. 대조적으로, 탄소섬유는 낮은 함량(즉, 0.1~0.3%)에서도 비저항이 다소 감소하였고, 그 이후에는 현저히 저하되었다. 본 실험에 사용된 CF가 함유된 전도성 CFRCM의 침투 임계점은 0.4%이었고, 압축강도 성능을 유지하면서 전도성 효과를 극대화하는 최적의 탄소섬유 혼입량이라고 판단된다. 전도성 FRCM의 표면형상 및 구성성분 분석을 위해 SEM/EDS를 통해 파단면을 관찰하였다. 이러한 결과는 시멘트 모르타르 내에서 보강섬유의 미세구조 메커니즘을 확립하는 데 매우 유용할 것으로 사료된다.

응축형 복합레진의 파괴거동에 관한 연구 (FRACTURE BEHAVIOR OF CONDENSABLE COMPOSITE RESINS)

  • 김소영;최호영;최경규;박상진
    • Restorative Dentistry and Endodontics
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    • 제25권3호
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    • pp.446-458
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    • 2000
  • In this study, compressive strengths of three condensable composite resins(ALERT, SureFil, Solitaire), conventional hybrid composite resin(Z-100) and amalgam(HI-Aristaloy 21) according to the 6 types of cavity design(cylinder, trapezoidal, butt-joint, round bevel, long bevel and short bevel) were measured and appearance of fracture surfaces were observed with SEM, thus evaluated clinical applications of condensable composite resins according to the cavity designs. The results were as follows; 1. Compressive strengths according to experimental materials were the highest in SureFil, and Z-100, ALERT, Solitaire, HI-Aristaloy 21 in order. 2. SureFil showed the highest compressive strength(p<0.05). compressive strengths of ALERT and Solitaire were lower than that of Z-100, hybrid composite(p<0.05). 3. Compressive strengths according to specimen design were the highest in trapezoidal shape(p<0.05) and no significant difference was detected between other specimen designs. 4. The appearance of condensable composite resin under SEM was of a diverse configuration according to component of resin matrix, shapes of filler and surface treatments between resin and filler.

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치과용 세라믹의 파단면분석(fractography)에 대한 문헌고찰 (Literature review on fractography of dental ceramics)

  • 송민규;차민상;고경호;허윤혁;박찬진;조리라
    • 구강회복응용과학지
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    • 제38권3호
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    • pp.138-149
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    • 2022
  • 치과용 세라믹의 파절실험 후 파절이 발생한 원인을 분석하면 세라믹의 임상적용 가능성을 높일 수 있다. 파절원인을 파악하기 위한 파단면분석은 주사전자현미경 등 영상기술의 발달로 점차 널리 적용되고 있는데 이를 정확히 해석하기 위해서는 실험조건 설정이 중요하다. 파절시편이 오염되지 않도록 보관하고 세척하며, 관찰을 위해 금속 전처리가 필요하다. 파절은 양상에 따라 주로 금속에서 관찰되는 보조개모양 파절, 열개, 분리파손 및 세라믹에서 관찰되는 피로파절과 조가비 모양 파절이 있다. 세라믹의 주된 파절원인인 피로파절을 실험실에서 재현하기 위해 느린 균열성장을 관찰할 수 있는 동적 하중이 필수적이며 하중조건과 하중횟수 등을 적절히 설정해야 한다. 세라믹의 파단면에서 나타나는 대표적인 특징은 해클이며 다양한 해클의 형태를 잘 관찰하여 세라믹 파절의 원인과 과정을 분석할 수 있도록 하는 것이 필요하다. 파단면분석은 치과용 세라믹의 파절을 심층적으로 파악할 수 있는 유용한 방법이므로 정확한 실험과정을 따르고 결과해석에 유의해야 한다.

Effects of organic silicone additive material on physical and mechanical properties of mudstone

  • Chai, Zhaoyun;Kang, Tianhe;Chen, Weiyi
    • Geomechanics and Engineering
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    • 제6권2호
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    • pp.139-151
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    • 2014
  • Mudstone is a very common rock that, when in contact with water, can exhibit considerable volume change and breakdown. This behavior of mudstone is frequently encountered in geotechnical engineering and has a considerable influence on infrastructure stability. This is particularly important in the present work, which focuses on mitigating the harmful properties of mudstone. The samples studied are of Permian Age mudstone from Shandong Province, China. Modification tests using organic silicone additive material were carried out. The mechanisms of physical properties modification of mudstone were comparatively studied using corresponding test methods, and the modification mechanism of organic silicone additive material acting on mudstone was analyzed. The following conclusions were drawn. The surface texture and characters of mudstone changed dramatically, surface character turns from hydrophilic to hydrophobic after organic silicone additive material modification. The changes in the surface character indicate a reduction in the water sensitivity of mudstone. After modification, the shape of porosity and fracture of mudstone changed unremarkable, and the total and free expansion ratios decreased obviously, whereas the strength increased markedly.

축방향 변위가 작용하는 가스 파이프라인 용접부에 존재하는 원주방향 외부표면균열의 변형률 기반 J-적분 및 CTOD 계산 (Estimations of Strain-Based J-integral and CTOD for Circumferential Outer Surface Crack in the Weld of Gas Pipeline Under Axial Displacement)

  • 김경민;박지수;문지희;장윤영;박승현;허남수
    • 한국압력기기공학회 논문집
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    • 제16권1호
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    • pp.100-109
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    • 2020
  • Pipelines subjected to ground movement would be easily exposed to large-scale deformation. Since such deformations may cause the pipeline failure, it is important to ensure the safety of pipelines in various operation conditions. However, crack in weld metal have been considered as one of the main causes that can deteriorate the structural integrity of the pipeline. For this reason, the structural integrity of the pipe containing the crack in the weld should be obtained. In order to assess cracked pipe, J-integral and crack-tip opening displacement(CTOD) have been applied widely as the elastic-plastic fracture mechanics parameters representing crack driving force. In this study, engineering solutions to calculate the J-integral and CTOD of pipes with a circumferential outer surface crack in the weld are proposed. For this purpose, 3-dimensional elastic-plastic finite element(FE) analyses have been performed considering the effect of overmatch and width of weld. The shape of the weld was simplified to I-groove, and axial displacement was employed as for loading condition. Based on FE results, the effects of crack size, material properties and width of weldment on J-integral and CTOD were investigated. Additionally, the J-integral and CTOD for I-groove were compared with those for V-groove to examine the effects of the weld shape, and a proportionality coefficient of J-integral and CTOD was calculated from the results of this paper.

Y-TZP zirconia의 기계적 표면처리가 파절저항과 접착계면 실패에 미치는 영향 (Effect of mechanical surface treatment on the fracture resistance and interfacial bonding failure of Y-TZP zirconia)

  • 이양진
    • 구강회복응용과학지
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    • 제30권2호
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    • pp.102-111
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    • 2014
  • 목적: 본 연구의 목적은 air-blasting particle size를 달리하고 분사 압력과 시간을 통상보다 크게 증가시켜 표면에 큰 손상을 유발한 군을 상대적으로 작은 손상을 유발한 군과 비교하여 파절 저항과 접착 강도 차이를 보이는지 평가하는 데 있다. 연구 재료 및 방법: 지르코니아($LAVA^{TM}$) 디스크 표면에 각각 $30{\mu}m$- particle size (Cojet) 2.8 bar 15초, $110{\mu}m$- (Rocatec) 2.8 bar 15초, $110{\mu}m$- (Rocatec) 3.8 bar 30초로 조건을 달리하여 표면처리 후 각각 이축 굽힘하중 강도 실험과 접착 파절 하중 실험을 실행하였다. 접착은 상아질 유사 베이스에 $200{\mu}m$ 두께의 레진시멘트로 시행하여 인장력을 극대화하였으며 음향방출(AE) 센서로 실패하중을 검출하였다. 결과: 이축 굽힘하중 강도, 접착 파절하중은 세 군간 서로 유의성 있는 차이를 보이지 않았다(P > 0.05). 접착 시편의 균열은 대부분 radial crack이었다. 결론: 정하중 평가의 한계 내에서, air-blasting particle size와 압력에 의한 표면 손상은 크지 않았으며, 접착 파절하중 평가는 표면 손상과 접착 강도를 동시에 평가할 수 있는 방법이라 여겨진다.