• 제목/요약/키워드: Creep Fracture

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Mg-Zn-Mn-(Ca)합금의 크리이프 소성변형 및 파단거동에 관한 연구 (A Study on the Plastic Deformation and Fracture Behavior of Mg-Zn-Mn-(Ca) Alloys)

  • 강대민;박수찬;강경일
    • 동력기계공학회지
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    • 제10권3호
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    • pp.45-50
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    • 2006
  • In this paper, creep tests of Mg-Zn-Mn and Mg-Zn-Mn-Ca alloy casted by mold under the temperature range of 473.00-573.00K, and the stress range of 23.42-87.00Mpa were done with the equipment of automatic controlled temperature and computer for data acquisition. The activation energies were obtained by relationship between creep rate and temperature, and the stress exponents were obtained by relationship between creep rate and stress. From the experiment results, the activation energies of Mg-Zn-Mn and Mg-Zn-Mn-Ca alloy were 149.87kJ/mol, 147.97kJ/mol, respectively, and the stress exponents of those alloy were 5.13, 5.59, respectively, under the temperature of 473.00-493.00K and the stress range of 62.43-78.00Mpa. And the activation energies of those alloy were 134.41kJ/mol, 129.22kJ/mol, respectively, and the stress exponent of those alloy were 3.48, 3.77, respectively, under the temperature of 553-573Mpa and the stress range of 23.42-39.00Mpa. Also the lifes of Mg-Zn-Mn-Ca alloy were higher than those of Mg-Zn-Mn alloy, and the results of SEM showed fracture surfaces under low temperature had smaller dimples than those under high temperature.

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가전제품용 경첩의 신뢰성 추정 (Reliability Estimation of Door Hinge for Home Appliances)

  • 문지섭;김진우;이재국;이희진;신재철;김명수
    • 한국신뢰성학회:학술대회논문집
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    • 한국신뢰성학회 2004년도 정기학술대회
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    • pp.303-311
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    • 2004
  • This paper presents the reliability estimation of door hinge for home appliances, which consists of bushing and shaft. The predominant failure mechanism of bushing made of polyoxymethylene(POM) is brittle fracture due to decrease of strength caused by voids existing, and that of shaft made of acrylonitrile-butadiene-styrene(ABS) is creep due to plastic deformation caused by excessive temperature and lowering of glass transition temperature by absorbed moisture. Since the brittle fracture of bushing is overstress failure mechanism, the load-strength interference model is used to estimate the failure rate of it along with failure analysis. By the way, the creep of shaft is wearout failure mechanism, and an accelerated life test is then planned and implemented to estimate its lifetime. Through the technical review about failure mechanism, temperature and humidity are selected as accelerating variables. Assuming Weibull lifetime distribution and Eyring model, the life-stress relationship and acceleration factor, B$_{10}$ life and its lower bound with 90% confidence at worst case use condition are estimated by analyzing the accelerated life test data.a.

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분무성형공정에 의한 세라믹미립자 강화형 금속간화합물 복합재료의 고온파괴거동 (High Temperature Fracture Mechanisms in Monolithic and Particulate Reinforced Intermetallic Matrix Composite Processed by Spray Atomization and Co-Deposition)

  • 정강;김두환;김호경
    • 대한기계학회논문집
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    • 제18권7호
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    • pp.1713-1721
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    • 1994
  • Intermetallic-matrix composites(IMCs) have the potential of combing matrix properties of oxidation resistance and high temperature stability with reinforcement properties of high specific strength and modulus. One of the major limiting factors for successful applications of these composite at high temperatures is the formation of interfacial reactions between matrix and ceramic reinforcement during composite process and during service. The purpose of the present investigation is to develop a better understanding of the nature of creep fracture mechanisms in a $Ni_{3}Al$ composite reinforced with both $TiB_{2}$ and SiC particulates. Emphasis is placed in the roles of the products of the reactions in determining the creep lifetime of the composite. In the present study, creep rupture specimens were tested under constant ranging from 180 to 350 MPa in vacuum at $760^{\cric}C$. The experimental data reveal that the stress exponent for power law creep for the composite is 3.5, a value close to that for unreinforced $Ni_{3}Al$. The microstructural observations reveal that most of the cavities lie on the grain boundaries of the $Ni_{3}Al$ matrix as opposed to the large $TiB_{2}/Ni_{3}Al$ interfaces, suggesting that cavities nucleate at fine carbides that lie in the $Ni_{3}Al$ grain boundaries as a result of the decomposition of the $SiC_{p}$. This observation accounts for the longer rupture times for the monolicthic $Ni_{3}Al$ as compared to those for the $Ni_{3}Al/SiC_{p}/TiB_{2} IMC$. Finally, it is suggested that creep deformation in matrix appears to dominate the rupture process for monolithic $Ni_{3}Al$, whereas growth and coalescence of cavities appears to dominate the rupture process for the composite.

Sn-3.5Ag-Bi 솔더의 크리프 특성 (Creep Properties of Sn-3.5Ag-xBi Solders)

  • 신승우;유진
    • 마이크로전자및패키징학회지
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    • 제8권4호
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    • pp.25-33
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    • 2001
  • Bi(0, 2.5, 4.8, 7.5, 10 wt%)가 첨가된 Sn-3.5Ag-xBi 합금을 주조 및 압연을 거쳐 준비하였다. 그 후, dog-bone형상의 시편의 안정한 미세 조직을 위해 열처리를 거친 후, 일정하중에 크리프 실험을 수행하였다. 2.5%Bi 첨가 합금의 경우, 크리프 저항성이 가장 우수하였으며, Bi가 더 첨가됨에 따라 크리프 저항성은 감소하였다. 합금의 응력 지수는 전형전인 전위 크리프에 의한 4를 나타내었으며, 10%Bi 시편의 경우, 입계 미끄러짐에 의한 2를 나타내었다. 0%Bi 합금의 경우, 연성 파괴 양상을 보인 반면, Bi 첨가 합금의 경우, 약간의 단면적 감소를 보이는 취성 파괴 양상을 보여주었다. 파단 시편의 미세 조직 관찰 결과, 응력축에 수직한 방향으로 기공이 관찰되었으며, 상당량의 입계 미끄러짐이 관찰되었다.

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고온하 304 스테인리스강의 크리프-피로상호작용하의 미소표면균열에 관한 파괴거동 (Micro-Surface-Cracks Behavior of 304 Stainless Steel Under Creep-Fatigue Interaction at Elevated Temperature)

  • 서창민;이상돈;조일현
    • 한국해양공학회지
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    • 제2권2호
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    • pp.104-111
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    • 1988
  • This paper deals with the micro-surface-cracks behavior on the unnotched smooth specimens of Type 304 stainless steel at $593^{\circ}C$ in air under creep and creep-fatigue conditions that have 10 mim and 1 min load holding times respectively. The behaviors of the micro-surface-cracks have been visualized by means of surface replica method and optical micro-photography. The quantitative characteristics of initiation, growth and coalescence of micro-surface-cracks have been investigated by observing and measuring the crack growth behaviors. some of the important results are as follows: Main crack initiates at grain boundary in the early stage(10 to 20%)of its life time and grows through coalescence and finally leads to fracture. The distribution of micro-surface-crack length, 2a, can be plotted against the composite Weibull distribution. The growth rate of the main crack can be plotted against the stress intensity factor, crack tip opering displacement and J integral.

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크리프-피로상호작용하의 파단수명에 관한 연구 (Study on Fracture Life Under Mutual Interaction of Creep and Fatigue)

  • 조용이;김희송
    • 한국정밀공학회지
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    • 제10권3호
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    • pp.97-106
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    • 1993
  • This is the study on fracture life under the interaction of creep and fatigue. It is difficult to explain the interaction of the creep and fatigue with indication of frequency but the dependency of the time should be considered. The formulation of material varieties causing by interaction of creep and fatigue is required in the accumulative damage method. The strain range partition method requires some of modification corresponding to the changes in temperature and load. All of other method also comprehended with above mentioned problems. Generally, in this field, the variety of stress-strain and suitable parameter is required and connective study between the macro and micro results seems to be insufficient. The linear damage rule is acquiring the support generally but it requires modification in the hgigh temperature instruments. The variety of stress effecting on crack and variety of stress on the metallurgical side are considered to be problems in the future days.

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SP-Creep 시험에 의한 고온 크리프 특성 평가 기술 개발(I) - 보일러 과열기 튜브 - (Development of Evaluation Technique of High Temperature Creep Characteristics by Small Punch-Creep Test Method (I) - Boiler Superheater Tube -)

  • 백승세;나성훈;나의균;유효선
    • 대한기계학회논문집A
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    • 제25권12호
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    • pp.1995-2001
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    • 2001
  • In this study, a small punch creep(SP-Creep) test using miniaturized specimen(10${\times}$10${\times}$0.5mm) is described to develop the new creep test method for high temperature structural materials. The SP-Creep test is applied to 2.25Cr-lMo(STBA24) steel which is widely used as boiler tube material. The test temperatures applied for the creep deformation of miniaturized specimens are between 550∼600$^{\circ}C$. The SP-Creep curves depend definitely on applied load and creep temperature, and show the three stages of creep behavior like in conventional uniaxial tensile creep curves. The load exponent of miniaturized specimen decreases with increasing test temperature, and its behavior is similar to stress exponent behavior of uniaxial creep test. The creep activation energy obtained from the relationship between SP-Creep rate and test temperature decreases as the applied load increases. A predicting equation or SP-Creep rate for 2.25Cr-lMo steel is suggested. and a good agreement between experimental and calculated data has been found.

급냉응고된 Al-9.45wt%Fe-4.45wt%Cr합금의 고온 크?거동 (Elevated Temperature Creep Behavior of Rapidly Solidified Al-9.45wt%Fe-4.45wt%Cr Alloy)

  • 임종국;김경환;김택수
    • 한국안전학회지
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    • 제14권1호
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    • pp.208-215
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    • 1999
  • 급냉응고 강화된 Al-9.45wt%Fe-4.45wt%Cr 합금의 크 거동을 40~115Mpa 응력범위와, 300~$441^{\circ}C$(0.53~0.66Tm) 온도 범위에서 조사하였다. 이 계열의 합금은 비행기 및 자동차의 구조용재료 혹은 엔진용 부품에 많이 사용되고 있으며, 재료의 사용이 주로 고온에서 이루어지므로 안전성을 확보하기 위해서는 크 실험이 특히 중요하다. 이 합금의 크 실험 결과 응력지수와 크 활성화에너지가 높았으며 실험 응력과 온도에 크게 좌우되었다. 크 응력이 조대화에 강하게 영향미치는 것으로 보이기 때문에 모든 크 시편의 분산입자의 조대화율은 등온 소둔시편 보다도 더 빠르게 나타났다. 분산상과 연결된 전위는 고응력, 저온의 크 시편에서 더욱 자주 관찰되었다. Power law creep에서의 크 변형 속도는 문턱응력과 전위분리기구를 포함하는 Sherby와 Rosler/Arzt식으로 예견되는 것과 일치함을 발견하였다. 이 합금에서 분산상은 void생성원으로 작용하였으며 소위 입계파괴인 입자내의 연성파괴의 원인이 되었다. 생성된 void는 성장하여 Al기지내의 분산상과 분리되고, 슬립에 의해 결정립계에 집적되어 결국 입계파괴가 일어났다. 그러므로 이들 분산상이 $Al_{13}Fe_4$, $Al_{13}Cr_2$ and $Al_2O_3$의 형성에 의해 파괴 기구의 중요한 역할을 함이 입증되었다.nd $Al_2O_3$의 형성에 의해 파괴 기구의 중요한 역할을 함이 입증되었다.

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일반 크리프 거동을 고려한 균열 구조물 C*-적분 예측 (Estimation of C*-Integral for Defective Components with General Creep-Deformation Behaviors)

  • 김영진;김진수;김윤재
    • 대한기계학회논문집A
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    • 제26권5호
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    • pp.795-802
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    • 2002
  • For assessing significance of a defect in a component operating at high (creeping) temperatures, accurate estimation of fracture mechanics parameter, $C^{*}$-integral, is essential. Although the J estimation equation in the GE/EPRl handbook can be used to estimate the $C^{*}$-integral when the creep -deformation behavior can be characterized by the power law creep, such power law creep behavior is a very poor approximation for typical creep behaviors of most materials. Accordingly there can be a significant error in the $C^{*}$-integral. To overcome problems associated with GE/EPRl approach, the reference stress approach has been proposed, but the results can be sometimes unduly conservative. In this paper, a new method to estimate the $C^{*}$-integral for deflective components is proposed. This method improves the accuracy of the reference stress approach significantly. The proposed calculations are then validated against elastic -creep finite element (FE) analyses for four different cracked geometries following various creep -deformation constitutive laws. Comparison of the FE $C^{*}$-integral values with those calculated from the proposed method shows good agreements.greements.