• Title/Summary/Keyword: Impact fatigue

Search Result 411, Processing Time 0.023 seconds

A Study of Fatigue Crack Growth Behaviour for Ferrite-Bainite Dual Phase Steel (Ferrite-Bainite dual phase 강의 피로균열진전 특성 평가)

  • Kim, Deok-Geun;Cho, Dong-Pil;Oh, Dong-Jin;Kim, Myung-Hyun
    • Journal of Welding and Joining
    • /
    • v.34 no.1
    • /
    • pp.41-46
    • /
    • 2016
  • With the recent increase in size of ships and offshore structures, there are more demand for thicker plates. As the thickness increases, it is known that fatigue life of the structures decrease. To improve the fatigue life, post weld treatments techniques, such as toe grinding, TIG dressing and hammer peening, are typically employed. However, these techniques require additional construction time and production cost. Therefore, it is of crucial interest steels with longer fatigue crack growth life compared to conventional steels. This study investigates fatigue crack growth rate (FCGR) behaviours of conventional EH36 steel and Ferrite-Bainite dual phase EH36 steel (F-B steel). F-B steel is known to have improved fatigue performance associated with the existence of two different phases. Ferrite-Bainite dual phase microstructures are obtained by special thermo mechanical control process (TMCP). FCGR behaviours are investigated by a series of constant stress-controlled FCGR tests. Considering all test conditions (ambient, low temperature, high stress ratio), it is shown that FCGR of F-B steel is slower than that of conventional EH36 steel. From the tensile tests and impact tests, F-B steel exhibits higher values of strength and impact energy leading to slower FCGR.

Fracture Mechanical Study on the Charpy V-notch and Fatigue Crack Propagation 8ehavior of Rail Steels (레일강의 샬피거동 및 피로균열 성장거동에 관한 파괴역학적 고찰)

  • Kim, Sung Hoon
    • KSCE Journal of Civil and Environmental Engineering Research
    • /
    • v.14 no.6
    • /
    • pp.1319-1327
    • /
    • 1994
  • Since fatigue cracks in rail can be the source of fractures and subsequent derailments, quantitative evaluation of the fatigue behavior and fracture properities due to the analysis results of laboratory test are drawn on the basis for predicting fatigue life and making a decision of safe inspection interval. Charpy V-notch and fracture toughness behavior were evaluated from the results of Charpy impact test. Fatigue test was performed by using CT type specimen under constant amplitude loading, and finally the effects of the following parameters; crack orientation, temperature, and stress ratio, on the fatigue crack growth behavior were studied.

  • PDF

A Study on the Low Temperature Mechanical Characteristics of SM490A for the Railroad Vehicle Structure (철도차량 구조물용 연강(SM490A)의 기계적 내한 특성 연구)

  • Kang, K.W.;Goo, B.C.;You, W.H.;Kim, J.H.
    • Journal of the Korean Society for Railway
    • /
    • v.9 no.6 s.37
    • /
    • pp.695-700
    • /
    • 2006
  • This study investigates the effects of the material properties and the fatigue behavior in the SM490A material specimens due to the low-temperature atmosphere. In the fatigue behavior, the low-temperature affects the fatigue life. As the temperature get low, the fatigue limit increase, also As the yield strength and the tensile strength increase, the impact absorbed energy decrease. The difference of fatigue lift represents to normal distribution and it is larger between the room temperature and the low temperature, but in the result of the cumulative density function, the effect of temperature is not too large on it.

Fatigue and Damage Tolerance Evaluation of Composite Helicopter Rotor Blades (복합재 헬리콥터 로터 블레이드의 피로 및 손상허용 평가 방안)

  • Kee, Young-Jung;Paek, Seung Kil
    • Journal of Aerospace System Engineering
    • /
    • v.8 no.3
    • /
    • pp.41-46
    • /
    • 2014
  • Fatigue evaluations for the rotor blades of commercial or military rotorcraft have been carried out using the safe life concept since 1950s. Particularly, in the case of a rotor blade made of a composite material, a highly reliable fatigue life could be predicted by evaluation the cumulative damage using combination of fatigue life curve and load spectrum. However, there is a limit in adequately evaluating the strength reducing phenomena caused by damages or defects generated during the manufacturing process or impact damage induced by operational usages, using only the safe life concept. In this study, the fatigue evaluation process based on the damage tolerance concept is described and illustrated by means of successful application to substantiate the retirement time of composite rotor blades.

Remaining Life Estimation of a Level Luffing Crane Component by Computer Simulation (컴퓨터 시뮬레이션을 통한 수평 인입 크레인 구성 재료의 잔존수명 예측)

  • Kim, Sangyeol;Kim, Seongsoo;Choi, Heekyu
    • Korean Journal of Metals and Materials
    • /
    • v.48 no.6
    • /
    • pp.489-497
    • /
    • 2010
  • The remaining life estimation of the level luffing crane component, which has operated for about 20 years is examined carefully, especially on the crane structures. To analyse the crane sructures, the basic load and load combination needed to be considered. We modeled various parts of the level luffing crane to analyse fatigue. Fatigue analysis results showed that the level luffing crane is in the fatigue life so that the crane is in the safe state in fatigue cumulative damage. Analysis results show that the remaining life of a jib upper beam would be about 10 years therefore, the level luffing crane should be stable for fatigue for that period.

Life Fatigue Prediction of an Accumulator Composed of Bladder and Housing (블래더와 하우징으로 구성된 축압기의 수명피로예측)

  • Kim, Daeyu;Lee, Geonhee;Hur, Jangwook
    • Journal of the Korean Society of Manufacturing Process Engineers
    • /
    • v.17 no.5
    • /
    • pp.58-63
    • /
    • 2018
  • Recently in weapon systems development, the importance of reliability has been emphasized due to the increase in complexity and the rapid development of key components and components. Accordingly, the importance of lifespan testing is increased. However, lifespan testing to verify the reliability of a system is costly and takes a lot of time. Therefore in this paper, it was demonstrated that the most critical item of a bladder type accumulator is the bladder. Fatigue life is sensitive to temperature and pressure, with temperature having more impact. The fatigue life of the bladder was estimated to be 18,140 hr through fatigue analysis, which satisfies the required life expectancy of 10,000 hr.

Trajectory of Fatigue, Quality of Life and Physical Symptoms in Cancer Patients Receiving Radiotherapy (방사선 치료를 받는 암환자의 피로, 삶의 질 및 신체 증상의 변화 양상)

  • 양영희
    • Journal of Korean Academy of Nursing
    • /
    • v.33 no.5
    • /
    • pp.562-569
    • /
    • 2003
  • Purpose: The purpose of this longitudinal prospective study was to assess changes in fatigue and quality of life for a 6-week course of radiotherapy. Method: A descriptive and longitudinal design was used to this study. Twenty-three subjects receiving radiotherapy from a radiotherapy clinic of a general hospital completed the questionnaires. Fatigue was measured using Lee's scale(1999) and quality of life using Yang's scale(2002) weekly for 6 weeks. Result: Fatigue significantly increased(F=6.043, p=.000), and quality of life significantly decreased (F=3.938, p=.003) and physical symptoms also significantly increased(F=2.432, p=.039) during a 6-week radiotherapy. Multiple regression analysis revealed that fatigue at the first week and physical symptoms at the 6th week were the significant affecting variables(60.1% of the variance) on fatigue. And 63.2% of the variance in quality of life was explained by quality of life and fatigue at the first week and body weight change for 6 weeks radiotherapy. Conclusion: Based on these results, the fatigue and quality of life at the beginning time of radiotherapy have a lasting impact throughout the course of treatment. It suggests that nurses provide patients with information about the occurrence of fatigue during radiotherapy and the practical methods of intervening physical symptoms.

Effects of Pain, Sleep Disturbance, and Fatigue on the Quality of Life in Patients with Pancreatic Cancer Undergoing Chemotherapy (항암화학요법을 받는 췌장암 환자의 통증, 수면장애, 피로가 삶의 질에 미치는 영향)

  • Kim, Gyung-Duck;Jang, Hyun-Jin
    • Asian Oncology Nursing
    • /
    • v.12 no.2
    • /
    • pp.117-124
    • /
    • 2012
  • Purpose: The purpose of this study was to assess pain, sleep disturbance, fatigue, and the quality of life and to identify the impact of pain, sleep disturbance and fatigue on the quality of life in patients with pancreatic cancer undergoing chemotherapy. Methods: Data were collected from June to July, 2010. Participants were recruited from Y university hospital in Seoul. Research instruments included numeric rating scale for pain, Functional Assessment Chronic Illness Therapy-Functional Well-Being (FACIT-FWB): General Factor 5 (GF5) for sleep disturbance, Functional Assessment of Cancer Therapy-General (FACT-G) for quality of life, and FACT-Fatigue for fatigue. Results: The quality of life for cancer patients had a significant relationship with pain, sleep disturbance, and fatigue. The significant factors influencing quality of life were pain, sleep disturbance, and fatigue that explained 52.6% of the variance. Conclusion: Patients with pancreatic cancer undergoing chemotherapy experienced pain, fatigue, and sleep disturbance which led to a negative effect on quality of life. The results suggest that intervention program to improve quality of life could reduce pain, fatigue, and sleep disturbance of pancreatic cancer patients undergoing chemotherapy.

Effect of Ni and Mo Addition on Fatique Property in 12Cr Steel (12Cr강의 피로특성에 미치는 Ni+Mo 첨가의 영향)

  • Lee, Jin-Kyung;Bae, Dong-Su
    • Journal of the Korean Society of Industry Convergence
    • /
    • v.24 no.4_2
    • /
    • pp.435-441
    • /
    • 2021
  • This research was performed to study the effect of the Ni + Mo addition on the fatigue properties in 12Cr steel. After heat treatment of 12Cr steel and 12Cr-Ni-Mo steel, tensile tests, impact tests, hardness tests, and rotary bending fatigue tests were performed, respectively. The fatigue fracture surface was observed and analyzed using SEM and EDS. The fatigue limit of 12Cr steel was 554 MPa, which was 49 MPa higher than 505 MPa of 12Cr-Ni-Mo steel. Striations, which are the shape of the typical fatigue fracture surface, were observed at the fracture surface near the starting point of fatigue fracture in the 12Cr steel and 12Cr-Ni-Mo steel. However, unlike the case of 12Cr steel, 12Cr-Ni-Mo steel also had a mixed fracture surface with the fatigue and the ductile fracture surface. When brittle non-metallic inclusions exist near the starting point of fatigue failure, the crack propagation was further promoted and the fatigue life was drastically reduced.

Effect of local joint flexibility on the fatigue lfe assessment of jacket-type offshore platform

  • Behrouz Asgarian;Parviz Kuzehgar;Pooya Rezadoost
    • Ocean Systems Engineering
    • /
    • v.14 no.1
    • /
    • pp.1-16
    • /
    • 2024
  • This paper investigates the impact of local joint flexibility (LJF) on the fatigue life of jacket-type offshore platforms. Four sample platforms with varying geometric properties are modeled and analyzed using the Opensees software. The analysis considers the LJF of tubular joints through the equivalent element and flexible link approaches, and the results are compared to rigid modeling. Initially, modal analysis is conducted to examine the influence of LJF on the frequency content of the structure. Subsequently, fatigue analysis is performed to evaluate the fatigue life of the joints. The comparison of fatigue life reveals that incorporating LJF leads to reduced fatigue damage and a significant increase in the longevity of the joints in the studied platforms. Moreover, as the platform height increases, the effect of LJF on fatigue damage becomes more pronounced. In conclusion, considering LJF in fatigue analysis provides more accurate results compared to conventional methods. Therefore, it is essential to incorporate the effects of LJF in the analysis and design of offshore jacket platforms to ensure their structural integrity and longevity.