• Title/Summary/Keyword: 취성 재료

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특집 : 극한환경재료기술 - 초고온 세라믹 복합 재료 개발현황

  • Lee, Se-Hun;Kim, Hae-Du
    • 기계와재료
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    • v.21 no.4
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    • pp.30-37
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    • 2010
  • 최근 산업의 고도화에 따른 부품 소재의 고성능화에 따라 기존의 고온 세라믹의 한계를 극복하기 위한 노력으로 초고온 세라믹 재료에 대한 활발한 연구가 진행되고 있다. 초고온 세라믹은 대부분 붕화물이나 탄화물인 비산화물 세라믹으로 3000도 이상의 녹는점을 갖으며 2000도 부근에서는 사용을 목표로 하고 있다. 이 재료는 다른 세라믹들과 마찬가지로 취성파괴 거동을 나타내며, 이를 보완하기 위한 섬유강화 복합재료화도 활발히 진행되고 있다. 본고에서는 고온용 세라믹 장섬유와 세라믹 복합재료, 그리고 초고온 세라믹의 개발 현황과 산업화 전망을 정리하였다. 또한 초고온 세라믹의 발전 방향을 전망하였으며, 재료연구소에서 수행중인 초고온 세라믹의 연구 활동에 대해 간략히 언급하였다.

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An Experimental Study on the Dynamic Increase Factor and Strain Rate Dependency of the Tensile Strength of Rock Materials (암석재료 인장강도의 동적 증가계수 및 변형률 속도 의존성에 대한 실험적 연구)

  • Oh, Se-Wook;Choi, Byung-Hee;Min, Gyeong-Jo;Jung, Yong-Bok;Cho, Sang-Ho
    • Explosives and Blasting
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    • v.39 no.1
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    • pp.10-21
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    • 2021
  • Brittle materials such as rocks and concretes exhibit large strain-rate dependency under dynamic loading conditions. This means that the mechanical properties of such materials can significantly be varied according to load velocity. Thus, the strain-rate dependency is recognized as one of the most important considerations in solving problems of blast engineering or rock dynamics. Unfortunately, however, studies for characterizing the dynamic properties of domestic rocks and other brittle materials are still insufficient in the country. In this study, dynamic tensile tests were conducted using the Hopkinson pressure bar apparatus to characterize the dynamic properties of Geochang granite and high-strength concrete specimens. The dynamic Brazilian disc test, which is suggested by ISRM, and the spalling method were applied. In general, the latter is believed to have some advantages in experiments under high-strain rate deformation. It was found from the tests that there were no significant difference between the dynamic tensile strengths obtained from the two different test methods for the two materials given. However, this was not the expected result before the tests. Actually, authors expected that there be some differences between them. Hence, it is thought that further investigations are needed to clarify this results.

Study of Optimal Machining Conditions of Ultrasonic Machining By Taguchi's Method (다구찌 방법을 이용한 초음파 가공의 최적가공조건에 관한 연구)

  • Liu, Jun Wei;Jin, Jian;Ko, Tae Jo;Baek, Dae Kyun
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.37 no.2
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    • pp.213-218
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    • 2013
  • Ultrasonic machining (USM) is a new method used in metal cutting. This process does not involve heating or any electrochemical effects, causes low surface damage, has small residual stress, and does not rely on the conductivity of the workpiece. These characteristics are suitable for the machining of brittle materials such as glass or ceramics. However, the use of USM for brittle materials generates cracks on the workpiece. Therefore, in this study, Taguchi's method was used to optimize the processing conditions of micro holes drilled in glass and ceramics. This method was used to successfully reduce the number of cracks at the entrance and the exit of the micro holes.

A study on the analysis of the failure probability based on the concept of loss probability (결손확률모델에 의한 파손확률 해석에 관한 연구)

  • 신효철
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.15 no.6
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    • pp.2037-2047
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    • 1991
  • Strength is not simply a single given value but rather is a statistical one with certain distribution functions. This is because it is affected by many unknown factors such as size, shape, stress distribution, and combined stresses. In this study, a model of loss probability is proposed in view of the fact that one of the fundamental configuration of nature is hexagonal, for example, the shapes of lattice unit, grain, and so on. The model sues the concept of loss of certain element in place of Jayatilaka-Trustrum's length and angle of cracks. Using this model, the loss probability due to each loss of certain elements is obtained. Then, the maximum principal stress is calculated by the finite element method at the centroid of the elements under the tensile load for the 4,095 models of analysis. Finally, the failure probability of the brittle materials is obtained by multiplying the loss probability by the ratio of the maximum principal stress to theoretical tensile strength. Comparison of the result of the Jayatilaka-Trustrum's model and the proposed model shows that the failure probabilities by the two methods are in good agreement. Further, it is shown that the parametric relationship of semi-crack lengths for various degrees of birittleness can be determined. Therefore, the analysis of the failure probability suing the proposed model is shown to be promising as a new method for the study of the failure probability of birttle materials.

수소공급용 배관재료 고찰

  • Kim, U-Sik
    • Journal of the KSME
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    • v.51 no.11
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    • pp.37-41
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    • 2011
  • 수소 고급을 위해서는 수소 수송 인프라 구축이 효과적인 방안이 될 수 있다. 산업원료와는 달리 에너지원으로서 수소를 사용할 때에는 불특정 범위의 일반 소비자들에게 공급되어야 하며, 생산, 저장, 이용시스템과 함께 공급시스템이 구축되어야 한다. 이 글에서는 수소시스템과 수소수송배관 특징, 수소취성 기본개념 및 수소수송 배관재료 요구조건 등을 알아보도록 한다.

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The Estimation of Activation Energy for Prism Plane SliP {1120} <1100> Dislocation Velocity in Sapphire Single Crystals using Brittle-to-ductile Transition Model (취성-연성 전이 model을 이용한 사파이어 단결정의 prism plane slip {1120} <1100> 전위속도에 대한 활성화에너지 계산)

  • Yun, Seog-Young;Lee, Jong-Young
    • Korean Journal of Materials Research
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    • v.11 no.6
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    • pp.508-511
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    • 2001
  • Experimental studies of the brittle-ductile transition (BDT) for pre-cracked sapphire single crystals were carried out. The BDT temperature in sapphire single crystals were $1000\pm$$25^{\circ}C$ and 1100$\pm$$25^{\circ}C$ at constant strain rate 3.3$\times$$10^{-5}$/sec and 3.3$\times$$10^{-6}$/sec, respectively. With aid of the BDT model, the activation energy for prism plane slip {1120} <1100> dislocation velocity was in the range of 4.6$\pm$2.3eV This activation energy for dislocation velocity with BDT model was compatible with the result of the dislocation velocity (3.8eV) using the etch-pit techniques.

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Effect of Load Velocity on Seismic Performance of Steel Beam-column Connection (하중속도가 강구조 보-기둥 접합부 내진성능에 미치는 영향)

  • Lee, Ki-Won;Oh, Sang-Hoon
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.26 no.6
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    • pp.182-192
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    • 2022
  • Brittle feature is one of the fracture behaviors of structure s and has a great influence on the seismic performance of structure materials. The load velocity acts as one of the main causes of brittle fracture, and in particular, in situations such as earthquakes, a high load velocity acts on buildings. However, most of the seismic performance evaluation of the domestic and external steel connections is conducted through static experiments. Therefore, there is a possibility that brittle fracture due to factors such as degradation of material toughness and reduction of maximum deformation rate due to high load velocity during an earthquake was not sufficiently considered in the existing seismic performance evaluation. This study conducts a static test at a low load velocity according to the existing experimental method and a dynamic test at a high load velocity using a shaking table, respectively. It compares and analyzes the fracture shape and structural performance according to the results of each experiment, and finally analyzes the effect of the load velocity size on the seismic performance of the connection.