• 제목/요약/키워드: high toughness

검색결과 823건 처리시간 0.029초

필라멘트 와인딩된 카본/에폭시 복합재의 층간파괴인성에 미치는 온도 영향 (Effect of Temperature on Interlaminar Fracture Toughness of Filament-Wound Carbon/Epoxy Composites)

  • 임재문;신광복;황태경
    • 대한기계학회논문집A
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    • 제39권5호
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    • pp.491-497
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    • 2015
  • 본 논문은 필라멘트 와인딩 공법으로 제작된 구배 단면을 갖는 돔 분리형 복합재 압력용기 접착체결부의 온도영향에 따른 층간파괴인성 평가를 위해 모드 I, II 그리고 혼합모드의 시험적 평가를 수행하였다. 모드 I과 혼합모드 층간파괴인성은 DCB 시편을 사용하였으며, 모드 II 층간파괴인성은 ENF 시편을 사용하여 평가하였다. 와인딩 각도는 $[{\pm}10^{\circ}]_6$, $[{\pm}27^{\circ}]_6$ 그리고 ($[{\pm}10^{\circ}]_3/FM73/[{\pm}10^{\circ}]_3$)이며 곡면 단면을 고려하였다. 시험 평가에 적용된 온도 환경은 환경 챔버와 전기로를 이용하여 $-30^{\circ}C$에서 $60^{\circ}C$로 조성하였다. 층간파괴인성에 온도가 미치는 영향을 평가한 결과, 층간파괴인성은 저온에서 높게 나타났으며, 온도가 증가함에 따라 감소하는 경향을 확인하였다. 시편 종류별 결과에서는, 돔부와 헬리컬부가 접착체결된 $[{\pm}10^{\circ}]_3/FM73/[{\pm}10^{\circ}]_3$ 와인딩 시편이 가장 높은 층간파괴인성을 가짐을 확인하였다.

Polyamide 6 입자 및 CTBN 첨가 기술에 따른 에폭시/탄소섬유 복합재의 강인화 효과 및 기계적 특성 (Effect of Mechanical and Toughening Characteristics of Epoxy/Carbon Fiber Composite by Polyamide 6 Particles, CTBN Addition Technology)

  • 배성열;이교문;;석지훈;최재완;손우혁;김윤해
    • Composites Research
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    • 제36권5호
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    • pp.355-360
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    • 2023
  • 에폭시계 탄소섬유복합재는 고유의 높은 취성특성으로 인해 산업 응용에 적합성에 한계로 인성 특성을 향상시키기 위한 광범위한 연구가 진행되고 있다. 본 연구는 최소 함량을 활용하는 데 중점을 두고 PA6입자(pPA6)와 CTBN에 의한 인성 메커니즘을 평가하는 데 초점을 맞춰 Mode I 파단 인성 및 인장강도 분석을 통해 다양한 농도의 p-PA6와 CTBN 첨가제, 즉 0.5, 1, 2.5 및 5 phr의 영향을 평가하였다. p-PA6는 1 phr의 비교적 낮은 비율에서 인성이 강화되었으며, 인장강도를 유지하면서 동시에 향상된 인성에 기여하는 지속적인 파단 거동으로 나타났다. 또한, p-PA6의 입자 응집에 영향에 의해 전체적인 인성 메커니즘에 영향을 미치는 것을 확인하였다. CTBN 첨가는 2.5 phr 이상의 높은 농도에서 인성의 증가하나, 인장강도의 감소를 동반하고 취성을 나타내는 기존의 복합재와 유사한 파단 거동을 관찰하였으며, p-PA6, CTBN 두 첨가 기술은 특정 농도 조건에서 인장강도를 미세하게 향상시키는 것으로 확인하였다. 해당 결과를 통해 p-PA6, CTBN 강화 기술 적용에 최적화된 조건이 확립하였다.

Effect of steel fiber volume fraction and aspect ratio type on the mechanical properties of SIFCON-based HPFRCC

  • Kim, Seugnwon;Jung, Haekook;Kim, Yongjae;Park, Cheolwoo
    • Structural Engineering and Mechanics
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    • 제65권2호
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    • pp.163-171
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    • 2018
  • Plain concrete is a brittle material with a very low tensile strength compared to compressive strength and critical tensile strain. This study analyzed the dynamic characteristics of high-performance fiber-reinforced cementitious composites based on slurry-infiltrated fiber concrete (SIFCON-based HPFRCC), which maximizes the steel-fiber volume fraction and uses high-strength mortar to increase resistance to loads, such as explosion and impact, with a very short acting time. For major experimental variables, three levels of fiber aspect ratio and five levels of fiber volume fraction between 6.0% and 8.0% were considered, and the flexural strength and toughness characteristics were analyzed according to these variables. Furthermore, three levels of the aspect ratio of used steel fibers were considered. The highest flexural strength of 65.0 MPa was shown at the fiber aspect ratio of 80 and the fiber volume fraction of 7.0%, and the flexural strength and toughness increased proportionally to the fiber volume fraction. The test results according to fiber aspect ratio and fiber volume fraction revealed that after the initial crack, the load of the SIFCON-based HPFRCC continuously increased because of the high fiber volume fraction. In addition, sufficient residual strength was achieved after the maximum strength; this achievement will bring about positive effects on the brittle fracture of structures when an unexpected load, such as explosion or impact, is applied.

열간단조 금형강의 열충격과 열피로 특성연구 (Analysis of Thermal Shock and Thermal Fatigue in Tool Steels for Hot Forging)

  • 김정운;문영훈;류재화;박형호
    • 소성∙가공
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    • 제11권1호
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    • pp.61-68
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    • 2002
  • The thermal shock and thermal fatigue test has been carried out to analyze the thermal characteristics of tool steels for hot forging and the effects of mechanical properties on this study have been investigated. The resistance to thermal shock is first of all a matter of good toughness and ductility. Therefore, a proper hot-work tool steel should be characterized by high fracture strength and high temperature toughness. Based on these results, some critical temperature($T_{fracture}$) at which fracture occur can be measured to characterize the thermal resistance of the materials. During thermal fatigue tests, the thermal fatigue cracks occur because of the repetitive heating and cooling of the die surface and the thermal fatigue damage was evaluated by analyzing different number of cycles to failure. The results showed that the resistance to thermal shock and thermal fatigue were found to be favoured by high hot tensile strength and high hot hardness, and thermal resistance of SKD61 was superior to that of ESC, SKT4 and this was caused by higher mechanical properties of SKD61.

다기공 연삭숫돌의 단속비에 의한 표면특성 분석에 관한 연구 (A Study on the Analysis of Surface Characteristics According to intermittent Ratio of Discontinuous Grinding Wheel with Multi-Porous Grooves)

  • 김정두;강윤희
    • 한국정밀공학회지
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    • 제14권6호
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    • pp.44-51
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    • 1997
  • Crinding of stainless steel, aluminium alloy, copper alloy, and titanium alloy are difficult to obtain high quality finish, because they have the mechanical properties such as low hardness, high toughness. The low hardness and the high toughness result in the loading of wheel and the poor surface finish. In order to perform the grinding operations for these sorts of materials easily, the discontinuous grinding wheel wiht multi-porous grooves has been newly developed. The multi-porous grooves inthe discontinuous grinding wheel were formed during grinding wheel manufacturing process. In this paper, discontinuous grinding wheels having intermittent ratio 0.66, 0.81 and number of grooves 18,32 have been manufactured and grinding surface characteristics of these grinding wheels for SUS304 have been analyzed. Discontinuous grinding temperature according to intermittent ratiohas been also estimated by simulation. The discontinuous grinding wheels increase the grinding performance considerably. It is desirable to use the discontinuous grinding wheel in grinding the materials with high efficiency and accuracy.

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