• Title/Summary/Keyword: 기폭

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Comparative Study on the Characteristics of Ground Vibrations Produced from Borehole Blast Tests Using Electronic and Electric Detonators (전자뇌관과 전기뇌관을 사용한 시추공 발파시험에서의 지반진동 특성에 관한 비교 연구)

  • Choi, Hyung-Bin;Won, Yeon-Ho
    • Explosives and Blasting
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    • v.28 no.2
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    • pp.37-49
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    • 2010
  • Ground vibration caused by blasting in the urban area close to structures can give some indirect damage to human body and may lead to structural damage to buildings. At the stage of design or when complaints were filed by residents, the test blasting in borehole, which is most practical for expressing simple vibration wave form quantitatively, is usually chosen for assessing the degree of damage to structures. In this paper, some lessons gained from the application of electronic detonator triggering system in borehole test blasting are presented. The difference in delay time of detonator when borehole is blasted by electronic detonator and electric detonator are discussed. The peak particle velocities measured at the structure embedded in the similar rock layer to main line of tunnel at test site and measured at the road surface just above the tunnel having different overburden layers were analysed to draw their relationship. By comparing the results with those appearing in some published literatures, the usefulness of the borehole test blasting and the importance of delay time of detonator are addressed.

Case study on the Distributed Multi-stage Blasting using Stemming-Help Plastic Sheet and Programmable Sequential Blasting Machine (전색보호판과 다단발파기를 이용한 다단식분산발파의 현장 적용 사례)

  • Kim, Se-Won;Lim, Ick-Hwan;Kim, Jae-Sung
    • Explosives and Blasting
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    • v.31 no.2
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    • pp.14-24
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    • 2013
  • The most effective way of the rock removing works in the downtown area is to removing rocks by splitting the rock by blasting with small amount of explosives in the hole. However environmental factors not only limit the applications but also increase the forbidden area. As this is a distributed multi-stage blasting method and to reduce vibration by applying the optimized precisioncontrol-blasting method, it is applicable in all situations. The process is to fix the stemming-help plastic sheet to the hole entrance when stemming explosives and insert detonator and explosive primer with same delay time, two or three sets. This method is more efficient in the downtown area where claims and dispute from vibration are expected. This method is easily usable by designing blast pattern even in the area where delay time blasting is difficult after multi-stage explosive stemming due to short length of blast hole (1.2~3.0m) and there is no detonator wire shortage or dead-pressure.

A Study of Explosive Jet-cutting Technology by Linear Shape Charges (성형폭약에 의한 폭발절단기술에 관한 연구)

  • 이병일;박근순;공창식;김광태
    • Tunnel and Underground Space
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    • v.10 no.4
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    • pp.516-525
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    • 2000
  • Recently, the demand for pollution-free demolition work of old reinforced concrete and steel structure has rapidly increased as the redevelopment of urban area has been accelerated. This study deals with linear shape charges for explosive jet cutting on steel structure. We have tested material and shape of steel structure, characteristics of thickness and strength, shape of linear shape charges, type of shape charges, cumulative charges, type of liner, stand-off distance, detonation method. effect of sound and vibration by air blast in explosive jet cutting method. So, We developed linear shape charges in order to take advantage of optimum explosive jet cutting condition. Shape charges were made of PETN explosives. We obtained the experimental formula to decide the amount of explosive needed for thickness of steel structure plate. There are prospects for application of the explosion curving technology under the open space conditions for dismantling the steel structure and steel bridge, scrapped old boats, which are going out of service.

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Development of Linear Shaped Charges for Explosive Jet Cutting and Application Plan (폭발절단용 성형폭약의 국산화 개발 현황 및 활용화 방안)

  • 신용길;이병일;조영곤;이익주
    • Explosives and Blasting
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    • v.20 no.3
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    • pp.15-23
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    • 2002
  • 철골구조물은 일반 철근 콘크리트 구조와는 달리 단순히 천공을 하고 폭약을 장약하여 기폭시키는 방법으로는 해체 또는 절단이 어렵다. 국내의 경우 최근 철골 구조로 건축되는 강교와 건축물 등이 증가하는 추세이며, 내구연한이 다하거나 구조적 결함으로 인하여 해체 대상으로 지목되는 철골구조물에 대해서는 특수한 형태의 해체 기술을 필요로 한다. 1997년 이후 국내에 철골구조물의 발파해체를 위하여 성형폭약에 의한 폭발절단기술에 관한 연구가 소개된 이후로 폭발절단력에 미치는 성형폭약의 라이너(Liner), 폭약의 종류, 형상 및 이격거리(Stand-off distance) 등에 대한 연구가 활발히 이루어졌으며, 또한 국산화를 위한 기초적인 설계변수에 관한 연구 등이 보고 된 바 있다. 현재 성형폭약의 사용범위가 철골구조물의 절단해체 뿐만 아니라 긴급구조를 필요로 하는 특수한 용도나 군사폭약의 해체, 항공산업 등 그 적용범위가 확대되고 있는 실정이다. 그러나, 성형폭약의 성능 향상 및 품질 보증을 위한 체계적인 설계 변수의 검토 설정에 관한 연구와 산업f'의 적용을 위한 구체적인 결과는 보고 된 바 없는 실정이다. 그래서, 보다 체계적인 현장 적용 시험 등에 대한 연구가 효율적으로 진행될 경우 국내 고유 기술에 의한 철구조물의 절단 및 해체공법에 획기적인 변화를 가져올 수 있을 것으로 기대된다. 따라서, 본 연구에서는 국산화되어 현장에 적용되고 있는 성형폭약 HAKO 제품을 기준으로 이미 국내에 알려진 성형폭약과 비교 분석하였다. 또한 보다 효율적인 산업계의 적용을 위한 각종 시험 결과 및 국산화 현황과 향후 활용 방안 등에 대하여 소개하고자 한다.

A case study on the reduction of Blasting vibration using EDD in tunnel (터널에서 전자뇌관을 이용한 발파진동 저감 기술 사례)

  • Yoon, Ji-Sun;Lee, Jin-Moo;Cho, Young-Gon
    • Proceedings of the Korean Geotechical Society Conference
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    • 2004.03b
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    • pp.433-441
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    • 2004
  • 국내 발파 현장에서 사용되고 있는 폭약류에 강력한 폭굉력을 충분하게 발휘하기 위해서는 뇌관(Blasting cap, Detonator)의 역할이 중요하다. 그리고 이 뇌관의 정밀성에 따라 발파 효율의 차이가 있게된다. 초기의 도화선 및 공업뇌관에서 시작하여 현재 정밀성 면에서는 MS(Milli Second)뇌관의 경우 20ms또는 25ms의 정밀한 시차로 순차적으로 기폭함으로써 발파효과의 극대화와 소음 및 진동제어에 큰 효과를 이루었으나, 최근 개발된 진자뇌관의 경우 자체 IC회로를 내징하여 $1{\sim}2ms$의 초정밀시차(오차범위 $0.1{\sim}0.2ms$이내)의 구현이 가능해짐에 따라 이를 적절히 조합하여 설계함으로써 각종 제어발파, 파쇄도 향상, 암손상영역 저감 등의 효과에 대해 국외에서 연구가 진행되고 있는 것으로 알려지고 있다. 그러나 우리나라와 같이 도심지 발파 및 터널이나 노천 현장 근거리에 보안물건이 위치해 있어 진동제어가 절실히 필요한 상황에서 진동제어에 효과가 있는 것으로 알려진 전자뇌관에 대한 연구가 이루어지고 있지 않은 상황에서 본 연구는 앞으로 이루어질 전사뇌관에 대한 수많은 연구에 기초자료를 제공하고자 실시하였다. 본 연구에서는 이를 위해 국내에서 최초로 2003년 9월 23일 강원도 양구 지역읜 00터널에 전자뇌관을 이용한 시험발파를 실시하였고, 발파에 의한 진동 등을 조사하여 그 효율성을 검토하였다. 이를 위해 전자뇌관의 특성과 장점을 최대한 살리기 위하여 각공을 발파하는 방식, 즉 1지발에 1공을 발파하는 방식을 채택하고 비전기 뇌관과 전자뇌관으로 설계를 하여 각각의 발파효율을 비교하여 보았다. 그 결과 발파신동의 경우 비전기뇌관을 이용하여 1공씩을 1지발로 발파를 한 경우에는 18${\sim}$56%의 진동저감 효과가 있었고, 번 설계에 의해 진해오딘 발파에 비하여는 최대 70% 이상의 진동저감 효과가 있는 것으로 나타났다.

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A Feasibility Study on Novel FRAM Design Technique using Grounded-Plate PMOS-Gate Cell (Grounded-Plate PMOS 게이트 강유전체 메모리 셀을 이용한 새로운 FRAM 설계기술에 관한 연구)

  • Chung, Yeonbae
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.39 no.12
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    • pp.1033-1044
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    • 2002
  • In this Paper, a new FRAM design technique utilizing grounded-plate PMOS-gate (GPPG) ferroelectric cell is proposed. A GPPG cell consists of a PMOS access transistor and a ferroelectric data storage capacitor. Its plate is grounded. The proposed architecture employs three novel methods for cell operation: 1) $V_{DD}$ -precharged bitline, 2) negative-voltage wordline technique and 3) negative-pulse restore. Because this configuration doesn't need the plate control circuitry, it can greatly increase the memory cell efficiency. In addition, differently from other reported common-plate cells, this scheme can supply a sufficient voltage of $V_{DD}$ to the ferroelectric capacitor during detecting and storing the polarization on the cell. Thus, there is no restriction on low voltage operation. Furthermore, by employing a compact column-path circuitry which activates only needed 8-bit data, this architecture can minimize the current consumption of the memory array. A 4- Mb FRAM circuit has been designed with 0.3-um, triple-well/1-polycide/2-metal technology, and the possibility of the realization of GPPG cell architecture has been confirmed.

Dead Pressure and its measures of Emulsion Explosives at Small Sectional Tunnel (소단면 터널에서 에멀젼폭약의 사압현상과 대책)

  • Min, Hyung-Dong;Jeong, Min-Su;Jin, Yeon-Ho;Park, Yun-Suk
    • Explosives and Blasting
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    • v.26 no.2
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    • pp.29-37
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    • 2008
  • In general, the size of tunnel cross section in construction site is $50{\sim}200m^2$. But, electric cable tunnel, telecommunication cable tunnel, mine tunnel. Waterproof tunnel have small cross section less than $20m^2$. There are so many problem at small sectional tunnel: restriction of equipment, dead pressure by precompression, loss of efficiency, increase of work time. Especially, explosives remainder by precompression of previous detonation is serious problem. To find its measures of dead pressure (explosives remainder), the following series of progress have been conducted: (1) survey of previous study (2) investigate causes of dead pressure (3) set up of its measures (4) application and appraisal at tunnel site. The measures, change of cut pattern, hole space over 40cm, adjustment of delay time, are proved by experimental results.

Numerical Study on the Effectiveness of Guide Holes on the Fracture Plane Control in Smooth Blasting (SB발파에서 무장약 균열 유도공의 파단면 제어 유효성에 관한 수치해석적 연구)

  • Kim, Hyon-Soo;Kim, Seung-Kon;Song, Young-Su;Kim, Kwang-Yeom;Cho, Sang-Ho
    • Tunnel and Underground Space
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    • v.21 no.3
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    • pp.235-243
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    • 2011
  • In this study, a control blast method, which utilizes crack guide holes, is suggested to achieve smooth fracture plane and minimize blast damage zone (BDZ) in smooth blasting. In order to verify the effectiveness of crack guide holes on the fracture plane control in blasting, fracture process analyses which consider regular smooth blasting and guide hole smooth blasting had been conducted and the fracture planes resulting from the analyses had been compared. The analyses models considered the ignition of the blast holes using detonation cords and each guide hole placed between blast holes. From the results, the smooth blasting utilizing guide holes showed lower fracture plane roughness than regular smooth blasting method in the hole spacing range between 20 to 40cm.

A Case Study on Explosive Demolition of Gunsan Steam Power Station in Republic of Korea (군산화력발전소 발파해체 실용화 시험시공 사례)

  • Min, Hyung-Dong;Song, Young-Suk;Kim, Hyo-Jin;Seo, Young-Soo
    • Explosives and Blasting
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    • v.25 no.2
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    • pp.11-21
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    • 2007
  • The main structure of Gunsan steam power station was demolished by the toppling method using high explosives. Height of a main building is 58m and a total floor area is $292,000m^2$. It is Rahmen(rigid-frame) structure consisted of almost columns and beams and slabs exist only in one part of the building for the electricity generators equipments. To improve the efficiency of blasting work, it is separated into 4 sectors. Blasting floors were 1, 2, 3, & 4 stories from first sector to third sector, while 1, 2, 5, & 7 of fourth sector were blasted because it had not slabs. About 102.675 kg of the MegaMITE were used with 225 electric detonator and 638 non-electric detonators to check detonator connection and confidence of detonation. The blasting noise and vibration were monitored to evaluate the environment effect and the damage of the nearby structures.

A Survey on the Magnitude of the Sound, Ground Vibration and Properly Delayed Interval of a Plasma Rock-Splitting Machine driven by Electric Shocks (플라즈마 지발 전력충격파암기의 적정 지발시차 및 진동과 소음크기 고찰)

  • Won, Yeon-Ho;Kang, Choo-Won;Kim, Il-Jung
    • Explosives and Blasting
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    • v.27 no.1
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    • pp.7-20
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    • 2009
  • In this study, 5 steps of different delay intervals are applied to a plasma rock-breaking machine that is driven by electric shocks in order to improve the workability of the traditional single-shot type plasma rock-breaking operation. The sequential steps use the electrolyte volume per delay of 1, 2, 3, 4, 5 kg and it has been analyzed to measure the delay time and level of the ground vibration and noise according to exploding. The delay time of the rock-breaking machine by an electric shock of 5 steps has used about 40~50ms at the electrolyte connected from 1 to 3 holes, about 70~80ms at the electrolyte connected from 4 to 5 holes. It is identified that the extents of the ground vibration is low to 1 over 3~6 compared with that of the emulsion explosives.