• Title/Summary/Keyword: 고온인장

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The Effects of Zr Addigion and Isothermal Aging on the Elevated Temperature Tensile Properties of the Mechanically alloyed AI-Ti Alloys (기계적합금화한 AI-Ti합금의 고온인장특성에 미치는 Zr의 첨가와 등온열처리의 영향)

  • Kim, Yong-Deok;Won, Hyeong-Min;Kim, Seon-Jin
    • Korean Journal of Materials Research
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    • v.6 no.11
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    • pp.1136-1145
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    • 1996
  • Ai-8wt.5(Ti+Zr)합금을 기계적합금화와 열간압출로 제조하여 Ti에 대한 Zr 첨가비와 등온열처리가 고온인장강도 및 변형거동에 미치는 영향에 대하여 조사하였다. Ti에 대한 Zr 첨가량의 비가 증가함에 따라 열간압출 시편의 상온 및 고온강도가 증가하였고, 40$0^{\circ}C$ 및 51$0^{\circ}C$에서 등온열처리에 따른 강도의 감소도 작게 나타났다. 이는 Zr 첨가량이 증가함에 따라 AI 기지와 AI3Ti에 비해 작은 격자간불일치도를 갖는 AI3(Ti+Zr)금속간화합물이 생성되고 고온열처리에 따른 조대화가 억제되었기 때문으로 판단되었다. 합금의 연성은 Zr 첨가량과 등온열처리에 관계없이 10% 이하로 낮게 나타났으며 인장 시험 온도가 고온일수록 취성파괴인 입계파괴가 지배적으로 일어났다. AI-Ti-Zr 합금의 변형에 필요한 활성화에너지는 순수한 AI 기지의 자기확산에 필요한 활성화에너지 142KJ/mol에 비해 573-783K 온도범위에서 1.5-1.8배 높은 값을 보였으며, Ti에 대한 Zr의 첨가량의 비가 증가할수록 보다 높은 값을 나타내었다.

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Characteristics of Mechanical Properties at Elevated Temperatures and Residual Stresses in Welded joint of SM570-TMC Steel (SM570-TMC 강의 고온 시 기계적 성질 및 용접접합부의 잔류응력 특징)

  • Lee, Chin Hyunng;Chang, Kyong Ho;Park, Hyun Chan;Lee, Jin Hee
    • Journal of Korean Society of Steel Construction
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    • v.18 no.3
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    • pp.395-403
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    • 2006
  • Recently constructed bridges often have long spans and simple structure details considering not only the function but other important factors such as aesthetics, maintenance, construction duration and life cycle cost. Therefore, bridges require high-performance steels like extra-thick plate steels and thermo-mechanical control process (TMCP) steels. TMCP stels are now gaining wide attention due to their weldability improved strength and toughness. Recently, SM570-TMC steel, which is a high-strength TMCP steel with a tensile strength of 600 MPa, has been developed and applied to steel structures. However, using this steel in building steel structures requires the elucidation of not only material characteristics but also the mechanical characteristic of welded joints. In this study, high-temperature tensile properties of SM570-TMC steel were investigated through the elevated temperature welded joints of SM570-TMC steel were studied through the three-dimensional thermal elasticplastic analyses on the basis of mechanical properties at high temperatures obtained from the experiment.

Mechanical Behavior Evaluation and Structural Analysis of 316 Stainless Steel at High Temperature (316 스테인리스강의 고온 물성 연구 및 구조 평가)

  • Rhim, Sung-Han;Lee, Kwang-Ju;Kim, Jin-Bae;Yang, In-Young
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2008.11a
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    • pp.181-184
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    • 2008
  • Austenitic stainless steel is used as high temperature components such as gas turbine blade and disk because of its good thermal resistance. In the present investigation, tensile and low cycle fatigue behavior of 316 stainless steel was studied at wide temperature range $20^{\circ}C{\sim}750^{\circ}C$. In the tensile tests, it was shown that elastic modulus, yield strength, ultimate tensile strength decreases when temperature increased. The effect on fatigue failure of the parameters such as plastic strain amplitude and plastic strain energy density was also investigated. With the experimental results, a structural analysis of turbine blades of 316 stainless steel were carried out.

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Analysis of Notched Bar Tensile Tests for Inconel 617 at Room and Elevated Temperatures (Inconel 617 노치시편의 상온 및 고온 인장실험 해석)

  • Oh, Chang-Sik;Ma, Young-Wha;Yoon, Kee-Bong;Kim, Yun-Jae
    • Proceedings of the KSME Conference
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    • 2007.05a
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    • pp.1818-1823
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    • 2007
  • In this paper, notched bar tensile tests of Inconel 617 were performed at room ($20^{\circ}C$) and elevated ($800^{\circ}C$) temperature. Finite element analyses are also performed. It is found that, at the room temperature, smooth bar tensile test results could be used to simulate notched bar tensile tests. However, at the elevated temperature, notched bar tensile test results can not be simulated from smooth bar tensile test results. Metallurgical examination reveals that strength weakening results from many cavities over the specimens for smooth bar test at the elevated temperature. "True" tensile properties at the elevated temperature is found using FE simulations. It also suggests that cautious should be taken to determine tensile properties of Inconel 617 at elevated temperatures using smooth bar tests.

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Tensile Test Evaluation of Polypropylene Sheets Following as Strain Rate and Temperature Variation (폴리프로필렌의 변형속도 및 온도변화에 따른 판재 인장시험 평가)

  • Kim, Kee Joo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.8
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    • pp.32-36
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    • 2018
  • A tensile test evaluation of a polypropylene plate was carried out using an Instron tester with a capacity of 500 kgf. To evaluate the strain rate sensitivity of the polypropylene plate with a thickness of 0.8 mm, a tensile test was performed at room temperature through strain rate variations from $5{\times}10^{-4}/sec$ to $5{\times}10^{-2}/sec$. From these, the changes in strength due to the strain rate change and temperature change were compared. As a result of the experiment, the strength increased with increasing initial strain rate. Polypropylene was found to be a material with a positive strain rate sensitivity. In addition, the high temperature tensile properties of the polypropylene plate were evaluated using high temperature tensile tests at 80, 120, and $160^{\circ}C$. The strength decreased with increasing temperature. In particular at $160^{\circ}C$, the tensile strength decreased to zero. The increase in yield strength and the tensile strength at room temperature, $80^{\circ}C$ and $120^{\circ}C$ were similar. At $160^{\circ}C$, however, there was almost no increase in strength because the stress approached zero. In the high temperature tensile test, the tensile strength increased more than the increase in yield strength with increasing strain rate.

Inconel 617의 결정립 미세화에 의한 내부산화거동이 크렉 전파에 미치는 영향

  • Im, Jeong-Hun;Jo, Tae-Seon;Kim, Dae-Gyeong;Kim, Yeong-Do
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2010.05a
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    • pp.50.2-50.2
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    • 2010
  • 니켈기 초내열합금 Inconel 617은 수소생산용 초고온 가스 냉각로의 열 교환기와 고온 가스관 등의 고온 배관용 후보재료로써, Cr, Mo, 와 W등의 첨가물이 함유된 고용 강화된 합금으로, 우수한 고온 강도, 크립 저항성, 내부식성 및 내산화성을 가지고 있는 것으로 알려져 있다. 본 연구에서는 결정립 미세화가 고온열화에 의해 입계를 따라 형성되는 internal oxide에 미치는 영향에 대해 평가하였고, 이러한 internal oxide가 인장응력 하에서 크렉 형성 및 전파에 미치는 영향을 평가하기 위하여 3-point bending test를 수행하였다. 미세한 결정립을 가지는 Inconel 617은 냉간압연 후 재결정을 통해 확보하였으며, as-received(AR)과 grain-refined(GR) Inconel 617은 $950^{\circ}C$에서 2000시간 동안 He분위기 하에서 열화시험을 수행하였다. AR과 GR에 형성된 internal oxide은 깊이와 분포 등의 뚜렷한 차이를 보였으며, 이러한 차이로 인해 인장응력 하에서 크렉 전파의 큰 차이를 나타내었다.

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High Temperature Tensile Stress Behavior of Hydrogen Vessel Composite Materials for Hydrogen Fuel Cell Bus (수소버스용 내압용기 복합재의 열적환경에 따른 기계적 물성 연구)

  • Hyunseok, Yang;Woo-Chul, Jung;Kwang Bok, Shin;Man-Sik, Kong
    • Composites Research
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    • v.35 no.6
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    • pp.425-430
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    • 2022
  • In this study, the mechanical properties of the pressure vessel composite exposed to the thermal environment were evaluated to establish the standard for high temperature static pressure test of the pressure vessel for hydrogen bus. As the tensile strength of the composite material approaches the glass transition temperature of the epoxy resin, the strength decreases due to the deterioration of the epoxy resin. In addition, it was confirmed that the tensile strength increased again due to the post-curing of the epoxy resin during long-term exposure. Therefore, the accelerated stress rupture test conditions of the pressure vessel for the hydrogen bus should be set based on the epoxy resin properties of the carbon fiber composite material.

Evaluation of Applicability of Circuit-analog Radar Absorbing Structures for High Temperature in 350℃ and Hot-wet Environment (고온용 Circuit-analog 전파흡수구조의 350℃ 및 열 수분 환경에서의 적용성 평가)

  • Min-Su Jang;Ho-Beom Kim;Heon-Suk Hong
    • Composites Research
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    • v.36 no.5
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    • pp.335-341
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    • 2023
  • We proposed a high-temperature circuit-analog radar absorbing structures (CA-RAS), and evaluated radar absorption performance and tensile properties in 350℃ and a hot-wet environment. The CA-RAS was implemented with a glass/cyanate ester composites and a square resistive pattern layer, and reflection loss was measured by 350℃ and after exposure of hot-wet condition using free space measurement. And the tensile strength at 350℃ and after exposure of hot-wet condition was measured according to the ASTM D638. The proposed CA-RAS showed a 4 GHz of -dB bandwidth and -20 dB of a peak value at 350℃. In addition, there was no deterioration in absorption performance after exposure to a hot-wet condition. The tensile strength value of more than 95% compared to the strength of the glass/cyanate ester composite was confirmed at 350℃ and after exposure of hot-wet condition. Through this, the applicability of CA-RAS proposed in this study was confirmed as a load bearing structure for stealth weapon exposed to high temperature and hot-wet environment.

Effects of Ce Addition and Isothermal Aging on the Elevated Temperature Tensile Properties of Mechanically Alloyed Al-Ti Alloys (기계적합금화한 Al-Ti 합금의 고온 인장 특성에 미치는 Ce의 첨가와 등온열처리의영향)

  • Kim, Jun-Gi;O, Yeong-Min;Kim, Yong-Deok;Kim, Byeong-Cheol;Kim, Seon-Jin
    • Korean Journal of Materials Research
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    • v.7 no.5
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    • pp.444-450
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    • 1997
  • 기계적합금화 한 AI-Ti합금의 상온 및 고온 인장강도는 25at.% Ti을 Ce으로 치환함에 따라 증가하였다. 그러나 25at.% 이상의 Ce첨가는 합금의 인장강도를 감소시켰다. 이는 Ce이 적은 고용도 효과에 의해 금속간화합물의 초대화를 억제하여 합금의 강도를 증가시키지만 다량 첨가시에는 Ti에 비해 무거운 원자량으로 인해 분산상의 부피분율을 감소시켜 합금의 강도가 오히려 저하시킨 것으로 생각된다. Ce의 첨가는 40$0^{\circ}C$와 51$0^{\circ}C$에서 합금의 열저안정성을 향상시키는 것으로 나타났다. 300-51$0^{\circ}C$ 온도범위에서 측정된 AI-8wt.%(Ti+Ce)합금의 변형에 필요한 활성화에너지는 AI의 자기확산에 필요한 에너지 (142kJ/mode)의 1.3-1.9배로 나타났다. 이로부터 AI-Ti-Ce 합금의 고온 변형은 Orowan기구에 의한 것을 생각된다.

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Characteristics of Thermal Degradation for Carbon Fiber/Epoxy Composite using Strand Specimen (스트랜드 인장시편을 적용한 탄소섬유/에폭시 복합재의 열화특성 연구)

  • Oh, Jin-Oh;Kil, Hyung-Bae;Yoon, Sung-Ho
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2012.05a
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    • pp.408-410
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    • 2012
  • In this study, High temperature properties of carbon fiber reinforced composites is performed using strand specimens and resin specimens. As for the tensile test at the different temperature, the tensile modulus of resin specimens decreases slightly until the temperature reaches the glass transition temperature. but the tensile modulus of strand specimens maintains tensile modulus at the room temperature. The tensile strength of resin and strand specimens decreases rapidly until the temperature reaches the glass transition temperature.

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