• Title/Summary/Keyword: 폭발성 재료

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A Study on Impact Resistance Properties with Composition Materials and Installation Conditions of Protective Panel (방호 패널의 구성 재료 및 설치 조건에 따른 내충격 특성에 관한 연구)

  • Seok, Won-Kyun;Kim, Young-Sun;Lee, Yae-Chan;Nam, Jeong-Soo;Kim, Gyu-Yong
    • Journal of the Korea Institute of Building Construction
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    • v.23 no.6
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    • pp.715-726
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    • 2023
  • This study suggested that protective panels should be installed as sacrificial members as a safety design method for structures with potential explosions such as hydrogen charging stations to minimize direct damage to the structure and have resilience. To this end, the focus of the experiment is on quantitatively evaluating the impact of the structure when the protection panel is installed closely or spaced apart from the structure in a high-speed collision situation of the projectile. The experimental design used steel plates instead of concrete structural members mainly used in the past for excellent reproducibility, and the impact of structural members was compared and analyzed through deformation differences on the back of the steel plate. In addition, the impact of changes in the physical properties of the elastic body used as a separation material for the protective member and the difference in shock wave transmission time according to the protective member and the elastic body on the structural member was investigated.

Study on the Improving Thermal and Mechanical Properties of Eco-friendly Materials used for Training Ammunition (연습용 탄약 친환경 재료의 내열성 및 기계적 특성 향상에 관한 연구)

  • Kim, Myung-Hyun;Shon, Byoung-Chul;Lee, Young-Tae
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.5
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    • pp.557-562
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    • 2018
  • Unlike live ammunition which has killing power due to the use of high explosives, training ammunition has only the limited explosive effect needed for training purposes, so the risk of accidents is lowered. Because training ammunition is used in large quantities during military drills, the problem of environmental pollution occurs. As most of the waste is left out in the training field, using bio-degradable polymers such as Polylactic Acid (PLA) can provide a solution to these environmental issues. However, bio-degradable polymers such as PLA usually have poor thermal and mechanical properties compared with other general purpose polymers, so they need to be improved before they can be used for military purposes. In this study, Talc is added to the PLA used for the parts of Training Grenades to improve some of their properties and the changes of their thermal and mechanical properties were verified. In the case of the 1 wt.% ~ 5 wt.% PLA/Talc blends, the thermal properties were improved in proportion to the content of Talc, but the best mechanical properties were observed for the 1 wt.% and 3 wt.% PLA/Talc blends.

耐 마모 코우팅 생산을 위한 CVD와 PVD 기술

  • O, Seung-Tak
    • Journal of the Korean institute of surface engineering
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    • v.20 no.1
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    • pp.15-24
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    • 1987
  • 超硬合金과 高速度鋼에 TiC, TiN 그리고 $Al_2O_3$의 耐 마모 코우팅시에 사용되는 CVD와 PVD 기술을 M E Sjostrand와 A G Thelin 등이 본 논문에서 논의하였다. 또한 CVD와 PVD 의 특별한 장점과 응용영역에 대하여도 토의하였다. 수년동안 CVD 기술은 금속질화물, 금속탄화물 그리고 금속산화물 등의 耐 마모 코우팅을 생산하는데 성공적으로 사용되어 왔다. Munster와 Ruppert에서는 1950년대 초기에 TiC와 TiN의 CVD 공정을 연구했는데 이런 코우팅 재료의 높은 화학적 안정성과 더불어 高硬鋼라는 독특한 성질로 인해 그 주요 영역이 명백해졌다. 1968년에 처음으로 CVD법에 의한 보호막 코우팅의 대규모 응용이 이루어졌는데 그것은 超硬合金 절삭공구의 코우팅이었다. (그림1 참고) 이것은 硬금속산업에 있어서 가장 중요한 발전단계였다. TiC, TiN 그리고 $Al_2O_3$로 코우팅된 공구의 생산은 1970년대에 빠른 성장을 보였으며 오늘날 사용되는 절삭날의 50% 이상을 점유하고 있다. (그림2 참고) TiC와 TiN은 현재 이용되고 있는 모든 耐 마모 코우팅 중에서 독보적인 위치를 차지하고 있다. 그 이유는 생산과정이 비교적 단순하기 때문이다. 지난 5년동안 절삭공구와 總形바이트의 코우팅에 대한 PVD기술의 응용이 폭발적으로 증가했다. 증착기술인 이들 CVD와 PVD 각각은 자체의 독특한 장점이 있으므로 그 응용영역은 증착조건, 즉 기지금속의 접착성과 증착온도 그리고 증착속도등에 따라 매우 다를 것이다. PVD 공정으로 인해 고속도 공구강이 급속도로 발전되었고 더우기 PVD공정은 500$^{\circ}C$ 이하의 증착온도에서 brazed carbide 공구의 코우팅을 가능하게 하였다. 따라서 두 증착기술은 서로 상반적이라기 보다는 상호보완적인 것이라고 생각하는 편이 더 좋다.TEMPLA에 비해 CLB의 수가 15.58% 감소되었다. 높은 활성을 나타내었다. 정제된 효소의 최적온도는 40$^{\circ}C$이었으며 20~50$^{\circ}C$에서 비슷한 활성을 나타내었고, 30$^{\circ}C$에서는 60분동안 효소활성이 거의 상실되지 않았다. 정제된 효소는 ethanol과 chloroform 처리에는 안정하였으나 12mM AT 와 0.1mM $NaN_3$ 및 1mM KCN에 의해 90% 이상의 활성이 억제되었다.이에 근거하여 서울시 학생들($7{\sim}18$세)의 만성신부전증 유병률은 1백만명당 5.7명으로 추정되었다. 결론 : 서울시내 학생들 중 11세, 14세, 17세 3개 군에서 한 번 검사로 확인된 무증상 단백뇨의 유병률은 0.28%(약 2.8명/1,000명)이었고 이들중 약 5%만이 3차검사에서 신질환이 의심되었으며 이에 따른 신질환 유병률은 1만명당 1.4명이었다. $7{\sim}18$세 연령층에서 무증상으로 발생하는 사구체 신질환 중에는 IgA 신병증의 유병률이 가장 높아 1만명당 0.64명으로 추정되었고 만성신부전증의 유병률은 1백만명당 5.7명으로 추정되었다. 집단뇨 검사를 통해 확인되는 신질환은 대부분 사구체 질환이기 때문에 집단뇨검사의 의의는 좀더 연구가 필요할 것으로 생각되었다. 오히려 증상을 동반하는 경우보다 빈도가 증가한다는 사실은 집단뇨 검사에서 소변의 이상소견이 발견되어 신장 조직검사를 실시할 경우 혈청 $C_3$치의 감소 여부에 관계없이 MPGN도 진단적 고려 대상이 되어야 한다고 생각한다.신장 조직검사를 시행한 결과 진행성 경과를 취할 수 있는 막 증식성 사구체 신염과 매우 희귀한 증례인 신유전분증 등으로 진단됨으로써 지속성 단백뇨의 경우 정확 진단적 접근이 필수적임을 알 수 있다. 기립성

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Analysis of Thermal Shock Behavior of Cladding with SiCf/SiC Composite Protective Films (SiCf/SiC 복합체 보호막 금속피복관의 열충격 거동 분석)

  • Lee, Dong-Hee;Kim, Weon-Ju;Park, Ji-Yeon;Kim, Dae-Jong;Lee, Hyeon-Geon;Park, Kwang-Heon
    • Composites Research
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    • v.29 no.1
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    • pp.40-44
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    • 2016
  • Nuclear fuel cladding used in a nuclear power plant must possess superior oxidation resistance in the coolant atmosphere of high temperature/high pressure. However, as was the case for the critical LOCA (loss-of-coolant accident) accident that took place in the Fukushima disaster, there is a risk of hydrogen explosion when the nuclear fuel cladding and steam reacts dramatically to cause a rapid high-temperature oxidation accompanied by generation of a huge amount of hydrogen. Hence, an active search is ongoing for an alternative material to be used for manufacturing of nuclear fuel cladding. Studies are currently aimed at improving the safety of this cladding. In particular, ceramic-based nuclear fuel cladding, such as SiC, is receiving much attention due to the excellent radiation resistance, high strength, chemical durability against oxidation and corrosion, and excellent thermal conduction of ceramics. In the present study, cladding with $SiC_f/SiC$ protective films was fabricated using a process that forms a matrix phase by polymer impregnation of polycarbosilane (PCS) after filament-winding the SiC fiber onto an existing Zry-4 cladding tube. It is analyzed the oxidation and microstructure of the metal cladding with $SiC_f/SiC$ composite protective films using a drop tube furnace for thermal shock test.

Crash Safety Evaluation of LNG Fuel Containers for Vehicles using ANSYS Explicit Dynamics (ANSYS Explicit Dynamics 해석을 활용한 차량용 LNG 용기의 충돌안전성 평가)

  • Nam, SuHyun;Kim, JiYu;Kim, EuiSoo
    • Journal of the Korean Institute of Gas
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    • v.26 no.4
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    • pp.58-63
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    • 2022
  • With the emergence of environmental problems caused by fine dust worldwide, LNG, which is cheaper and less pollution than diesel, is attracting attention as the next generation energy of automobiles and is expanding its supply. However, it is difficult to operate smoothly due to the lack of infrastructure for LNG charging stations in Korea and the limited size of containers that can be installed according to regulations. In Korea, research and development on the contents of containers for the smooth operation of natural gas vehicles are underway, but there is a problem that the container directly receives the impact of the vehicle collision and explodes, causing a major disaster. Therefore, in this study, the safety of the container was verified by deriving the strain and stress values through ANSYS Explicit Dynamics analysis. As a result, a maximum stress of 565.37MPa occurred in the container, and it is expected that plastic deformation will occur as it exceeds the yield stress of STS304 used as a material for the container, which is beyond 505MPa. When an impact caused by a collision between a vehicle and a container is applied, it is considered necessary to design a support or reinforcement because the container may be damaged or defective.

Failure Pressure Prediction of Composite T-Joint for Hydrodynamic Ram Test (수압램 시험을 위한 복합재 T-Joint의 파손 압력 예측)

  • Kim, Dong-Geon;Go, Eun-Su;Kim, In-Gul;Woo, Kyung-Sik;Kim, Jong-Heon
    • Composites Research
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    • v.29 no.2
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    • pp.53-59
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    • 2016
  • Aircraft wing structure is used as a fuel tank containing the fluid. Fuel tank and joint parts are consists of composite structure. Hydrodynamic Ram(HRAM) effect occurs when the high speed object pass through the aircraft wing or explosion and the high pressure are generated in the fuel tank by HRAM effect. High pressure can cause failure of the fuel tank and the joint parts as well as the aircraft wing structure. To ensure the aircraft survivability design, we shall examine the behavior of the joint parts in HRAM effect. In this study, static tensile tests were conducted on four kind of the composite T-Joints. The failure behavior of the composite T-joint was examined by strain gauges and high speed camera. We examine the validity of the Finite Element Modeling by comparing the results of FEA and static tensile tests. The failure stresses and failure pressure of the composite T-Joint were calculated by FEA.