• 제목/요약/키워드: Plastic collapse

검색결과 301건 처리시간 0.026초

점성감쇠기가 설치된 모멘트골조의 연쇄붕괴 저항성능 (Progressive Collapse Resisting Capacity of Moment Frames with Viscous Dampers)

  • 김진구;이승준;최현훈
    • 한국전산구조공학회논문집
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    • 제23권5호
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    • pp.517-524
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    • 2010
  • 본 논문에서는 비선형 동적해석방법을 이용하여 점성감쇠기가 설치된 철골조 건물의 연쇄붕괴 저항성능을 평가하였다. 감쇠기가 설치된 2경간 보-기둥 부분골조를 이용하여 주기 및 항복강도의 변화에 따른 감쇠력의 효과를 검토하였다. 해석 결과에 따르면 감쇠비가 증가할수록 기둥이 제거된 지점의 수직변위가 감소하는 것으로 나타났으며, 탄성시스템 뿐만 아니라 비탄성시스템에서도 효과가 있는 것으로 나타났다. 감쇠기가 설치된 15층 3경간 철골 모멘트골조의 비탄성해석을 통하여 감쇠기의 효과를 검증한 결과, 기둥이 제거될 경우 처짐이 작게 발생하는 6m 경간 모델보다 처짐이 크게 발생하는 9m경간 모델의 경우에 감쇠기의 효과가 더욱 크게 나타났다.

간이물리모델을 이용한 원통형 압력용기의 내파해석 (Implosion Analysis of Circular Cylinder using Simplified Model)

  • 노인식;조상래;김용욱;한순흥;조윤식
    • 대한조선학회논문집
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    • 제57권1호
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    • pp.8-14
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    • 2020
  • The implosion phenomena of pressure vessels operating in deep water under extremely high external pressure have been well known. The drastic energy release to ambient field in the form of pressure pulse is accompanied with catastrophic collapse of shell structure. Such a proximity shock wave could be a serious threat to the structural integrity of adjacent submerged body and several suspected accidents have been reported. In this study, basic research for the occurrence and development of shock wave due to implosion was carried out. The mechanism of pressure pulse generation and energy dissipation were investigated, and a simplified kinematic model to approximate the collapse modes of circular tubes which can be generated by external pressure and implosion was examined. Using the simplified kinematic model, the process of energy dissipation was formulated, and the magnitude of released pressure shock wave was estimated quantitatively. To investigate the validity of developed kinematic model and shock wave estimation process, the results from a nonlinear FE analysis code and collapse test carried out using pressure chamber were compared with the results from the developed kinematic model.

Long-term stability after multidisciplinary treatment involving maxillary distraction osteogenesis, and sagittal split ramus osteotomy for unilateral cleft lip and palate with severe occlusal collapse and gingival recession: A case report

  • Kokai, Satoshi;Fukuyama, Eiji;Omura, Susumu;Kimizuka, Sachiko;Yonemitsu, Ikuo;Fujita, Koichi;Ono, Takashi
    • 대한치과교정학회지
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    • 제49권1호
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    • pp.59-69
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    • 2019
  • In this report, we describe a case involving a 34-year-old woman who showed good treatment outcomes with long-term stability after multidisciplinary treatment for unilateral cleft lip and palate (CLP), maxillary hypoplasia, severe maxillary arch constriction, severe occlusal collapse, and gingival recession. A comprehensive treatment approach was developed with maximum consideration of strong scar constriction and gingival recession; it included minimum maxillary arch expansion, maxillary advancement by distraction osteogenesis using an internal distraction device, and mandibular setback using sagittal split ramus osteotomy. Her post-treatment records demonstrated a balanced facial profile and occlusion with improved facial symmetry. The patient's profile was dramatically improved, with reduced upper lip retrusion and lower lip protrusion as a result of the maxillary advancement and mandibular setback, respectively. Although gingival recession showed a slight increase, tooth mobility was within the normal physiological range. No tooth hyperesthesia was observed after treatment. There was negligible osseous relapse, and the occlusion remained stable after 5 years of post-treatment retention. Our findings suggest that such multidisciplinary approaches for the treatment of CLP with gingival recession and occlusal collapse help in improving occlusion and facial esthetics without the need for prostheses such as dental implants or bridges; in addition, the results show long-term post-treatment stability.

장스팬 비닐하우스의 폭설에 의한 붕괴방지법 연구 (Collapse Prevention Method of Long-span Plastic Greenhouse for Heavy Snow)

  • 김보경;이수헌;김진욱;신경재
    • 한국강구조학회 논문집
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    • 제22권1호
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    • pp.67-74
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    • 2010
  • 최근 기상이변에 따라 폭설로 인한 비닐하우스의 붕괴가 빈번해져서 농가의 피해가 증가하고 있다. 하지만 이에 대한 대책연구는 미약하여 매년 농가의 피해는 되풀이 되고 있다. 그리하여 본 연구에서는 고강도 변단면 부재를 이용한 모듈을 적용하여 근본적인 구조체의 붕괴를 방지하고, 인장타이재를 이용한 추가적인 보강을 통하여 비닐하우스의 붕괴를 방지하고자 한다. 비닐하우스 프레임의 경우 처짐설계보다는 강도설계에 의해 단면이 지배되므로 모멘트가 최대가 되는 부분에 고강도의 변단면 부재를 적용한다. 현재 설치된 비닐하우스의 형태는 아치의 형태를 하고 있으나, 구조적으로는 곡선부(보)와 직선부(기둥)가 불연속의 형상을 하고 있어 연직하중에 대해 아치거동보다는 프레임거동을 하는 취약한 구조시스템이다. 직선부재(기둥) 상단에 폭설 시에만 임시적으로 인장타이재를 추가함으로써 모멘트로 저항하던 프레임 구조체를 축력에 저항하는 타이아치형 구조체로의 단기적인 변화를 유도하여 구조체의 내력을 증가시키고자 한다. 고강도 변단면 부재를 이용하면 조합강도비가 10~30% 정도 감소하였으며, 인장타이재를 이용하여 추가보강하면 조합강도비가 절반 이하로 감소하였다.

단면형상이 다른 Al/CFRP 혼성박육부재의 축압궤특성 (Axial Collapse Characteristics of Aluminum/Carbon Fiber Reinforced Plastic Composite Thin-Walled Members with Different Section Shapes)

  • 황우채;이길성;차천석;김지훈;나승우;양인영
    • 대한기계학회논문집A
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    • 제38권9호
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    • pp.959-965
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    • 2014
  • 본 연구에서는 Al/CFRP 혼성 구조부재가 승용차용 사이드부재에 사용될 것을 상정하여 Al/CFRP 혼성 구조부재의 단면형상의 변화, 최외각층의 변화가 압궤 특성에 어떠한 영향을 미치는가를 실험적으로 고찰하여 수송기계의 경량화를 위한 사이드부재로 사용될 수 있는 설계 데이터를 얻고자 하였다. 실험결과 다음과 같은 결론을 얻었다. 최외층각이 $0^{\circ}$로 적층된 원형 Al/CFRP 혼성 충격 흡수부재가 사각 Al/CFRP 혼성 충격 흡수부재 보다 52,9%, 모자형 Al/CFRP 혼성 충격 흡수부재 보다 49.93% 높게 나타났으며, 최외층각이 $90^{\circ}$로 적층된 경우 원형 Al/CFRP 혼성 충격 흡수부재 사각 Al/CFRP 혼성 충격 흡수부재 보다 50.49%, 모자형 Al/CFRP 혼성 충격 흡수부재 보다 49.2% 높게 나타났다.

인장타이를 이용한 비닐하우스의 보강효과에 관한 실험적 연구 (Experimental Study on Strengthening Effect of Plastic Greenhouse using Tension-tie)

  • 장유진;이수헌;채승훈;신경재
    • 한국강구조학회 논문집
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    • 제22권2호
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    • pp.151-160
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    • 2010
  • 최근 기상이변으로 인한 겨울철 폭설로 농가 시설물 중의 하나인 비닐하우스의 붕괴사고가 빈번히 발생하여 농가의 피해가 증가되고 있다. 하지만 이에 대한 정부의 대책이 미약하여 매년 붕괴사고가 일어난다. 프레임 붕괴의 주된 이유는 폭설시 저항할 수 있는 휨내력이 부족하기 때문이다. 본 연구에서는 현재 이용되는 비닐하우스에 인장타이로 보강한 실험연구를 수행하였다. 비닐하우스의 스팬은 6.5m이고, 단면은 두 가지 종류(${\phi}25.4{\times}1.5$, ${\phi}31.8{\times}1.5$)를 사용하였다. 비닐하우스의 곡선 보와 직선 기둥 연결부에 임시적인 인장타이로 스틸와이어와 로프를 이용하여 보강하였다. 프리텐션을 인장타이에 적용시켰고, 적설하중을 등가의 수직하중으로 파괴할 때까지 적용하였다. 무보강과 로프 보강을 비교한 결과 로프 보강의 붕괴하중이 10∼45% 증가하였고 무보강과 스틸와이어 보강을 비교한 결과 스틸와이어 보강의 붕괴하중이 58~73% 증가하였다. 강도와 관련해서는 비교적으로 스틸와이어가 효과적이나, 연결부 및 프리텐션 적용이 로프보다 복잡하고 어려우므로 로프가 더 효율적인 것으로 판단된다.

Structural response of composite concrete filled plastic tubes in compression

  • Oyawa, Walter O.;Gathimba, Naftary K.;Mang'uriu, Geoffrey N.
    • Steel and Composite Structures
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    • 제21권3호
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    • pp.589-604
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    • 2016
  • Kenya has recently experienced worrying collapse of buildings during construction largely attributable to the poor quality of in-situ concrete and poor workmanship. The situation in the country is further compounded by rapid deterioration of infrastructure, hence necessitating the development of alternative structural systems such as concrete filled unplasticized poly vinyl chloride (UPVC) tubes as columns. The work herein adds on to the very limited and scanty work on use of UPVC tubes in construction. This study presents the findings of experimental and analytical work which investigated the structural response of composite concrete filled UPVC tubes under compressive load regime. UPVC pipes are cheaper than steel tubes and can be used as formwork during construction and thereafter as an integral part of column. Key variables in this study included the strength of infill concrete, the length to diameter ratio (L/D) of the plastic tube, as well as the diameter to thickness ratio (D/2t) of the plastic tube. Plastic tubes having varying diameters and heights were used to confine concrete of different strengths. Results obtained in the study clearly demonstrate the effectiveness of UPVC tubes as a confining medium for infill concrete, attributable to enhanced composite interaction between the UPVC tube and infill concrete medium. It was determined that compressive strength of the composite column specimens increased with increased concrete strength while the same decreased with increased column height, albeit by a small margin since all the columns considered were short columns. Most importantly, the experimental confined concrete strength increased significantly when compared to unconfined concrete strength; the strength increased between 1.18 to 3.65 times the unconfined strength. It was noted that lower strength infill concrete had the highest confined strength possibly due to enhanced composite interaction with the confining UPVC tube. The study further proposes an analytical model for the determination of confined strength of concrete.

초음파의 매질 투과성을 이용한 시추공 케이싱 배면의 암상 및 절리구조 조사 연구 (Use of Ultrasonic beam transmissivity for investigating the structural features in plastic pipe cased borehole)

  • 김중열;김유성
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 봄 학술발표회 논문집
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    • pp.751-758
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    • 2002
  • Boreholes that are drilled in soft or unconsolidated materials such as gravels and coals are prone to collapse. To maintain the hole, some kinds of casing pipes are needed. If thereby a plastic pipe e.g. PVC is used for the casing, Televiewer tool is still capable of detecting structural features such as fractures in the borehole wall behind the pipe, whereas other borehole-imaging logging devices such as BIPS (Borehole Image Processing System) and FMS(Formation Micro Scanner) won't provide any information about that. Televiewer's primary component is a piezoelectric transducer centered in the hole. It acts as both a transmitter and receiver, and sends an ultrasonic beam. That is reflected, in the same manner as the seismic wave propagation, from the both sides(inner and outer surfaces) of the casing pipe, transmits through the pipe and then reflected from the borehole wall. With an appropriate choice of time-windowing, it is possible to capture the returning signals from both the borehole wall and the outer side of casing pipe as well. A suite of laboratory tests were performed on various physical models composed of plastic pipes with different diameters. Although the amplitudes of returning signals were reduced to about half the usual value due to the transmission loss, the dynamic range of Televiewer tool was sufficient to observe the structural features behind the casing pipe. Besides, several representative case studies at various research areas in our country are presented. The results demonstrate the usefulness of the transmissivity of Televiewer acoustic km, which will assist in further structural interpretation.

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One-stage reconstruction of full-thickness alar defects with a folded nasolabial island flap

  • Lee, Da Woon;Ryu, Hyeong Rae;Choi, Hwan Jun;Kim, Jun Hyuk
    • 대한두개안면성형외과학회지
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    • 제22권6호
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    • pp.296-302
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    • 2021
  • Background: The reconstruction of large full-thickness alar defects requires complex surgical procedures that are usually performed in two stages, with concomitant disadvantages in terms of patient trauma, surgical risk, and cost. This study presents a functional folded nasolabial island flap (FNIF) that can be used to repair large-sized full-thickness alar defects in a straightforward manner. Methods: This retrospective study included seven patients who received a FNIF for a full-thickness alar defect between January 2007 and December 2020. The FNIF is different from the conventional nasolabial flap in that it is folded and twisted to achieve nostril reconstruction with a satisfactory three-dimensional mucosal lining in a single stage. The cosmetic and functional results of FNIF were evaluated by both patients and physicians. Results: The age ranged from 51 to 82 years (mean, 65.6 years). The causes of the defects were squamous cell carcinoma, basal cell carcinoma, and trigeminal trophic syndrome. The nostril lining did not collapse, there was no hypertrophic scarring, and air movement through the nostrils on the flap side was normal. Overall, FNIF produced excellent aesthetic and functional outcomes, with minimal patient discomfort. There were no postoperative complications. Conclusion: Compared with existing reconstruction methods for large full-thickness alar defects, FNIF can easily achieve aesthetic and functional success in a single-stage procedure. It provides satisfactory results for both the patient and the surgeon.

건축구조기준을 활용한 농가지도형 G형 비닐하우스의 풍하중 안전성 평가 (Evaluation of Wind load Safety for Single G-type Greenhouse Using Korean Design Standard)

  • 이우근;신경재
    • 한국농공학회논문집
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    • 제66권1호
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    • pp.39-48
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    • 2024
  • Plastic greenhouses are simple structures consisting of lightweight materials such as steel pipes and polyvinyl chloride. However, serious damage occurs due to heavy winds and typhoon every year. To prevent a collapse of structural members, the Ministry of Agriculture and Rural Development has distributed plans and specifications for disaster-resistant standards. Despite these efforts, more than 50% of greenhouses still do not satisfy the disaster-resistant standards. Among the greenhouses that do not meet these standards, 85% are single-span greenhouses proposed 20 years ago. Consequently, there is a need to evaluate the safety of wind loads for the single-span greenhouse. Unfortunately, there are no design specifications for the greenhouses under wind loads. Therefore, a Korean design standard (KDS) has been utilized. KDS is defined with reference to wind speeds occurring once every 500 years, raising concerns about potential overdesign when considering the durability of plastic greenhouses. To address this, the modified wind load, considering the durability of the plastic greenhouse, was calculated, and a safety evaluation was conducted for sigle G-type plastic greenhouse. It was observed that the moment acting on the windward surface was substantial, and there was a risk of the foundation being pulled out if the basic wind speed exceeded 32 m/s. In terms of the combination strength ratio, it was less than 1.0 only on the leeward side when the basic wind speed was 24 m/s and 26 m/s. However, in all other cases, it exceeded 1.0, indicating an unsafe condition and highlighting the necessity for reinforcement.