• 제목/요약/키워드: ARCH type model

검색결과 84건 처리시간 0.028초

Narrow Gap 맞대기 TIG 용접에서 생산성 향상을 위한 연구 (A Study on Productivity Improvement in Narrow Gap TIG Welding)

  • 전재호;김성률;조상명
    • Journal of Welding and Joining
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    • 제34권1호
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    • pp.68-74
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    • 2016
  • Adoption of narrow gap welding shall be increased for the butt joint of thick plate, because the deformation and welding cost is reduced by decrease of cross-sectional area. However, sometimes narrow gap causes defects such as lack of fusion since it has small groove angle and narrow groove width. Therefore, GMAW, GTAW and SAW process shall be adopted to narrow gap welding with small bead hight and low deposition rate. In this study, Super-TIG welding using C-type strip was applied to semi-narrow gap butt joint in order to increase the welding productivity. High deposition rate 10kg/hr was obtained by high current 600A without undercut, humping bead and other welding defects. Measuring the mean and standard deviation of the melting depth to evaluate the developed processes, the fusion line type was determined by measuring the difference between maximum and minium melting depth. Furthermore, a model on arch fusion line and linear fusion line was suggested in order to prevent LF on groove wall in narrow gap butt welding.

Seismic response of single-arch large-span fabricated subway station structure

  • He, Huafei;Li, Zhaoping
    • Earthquakes and Structures
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    • 제23권1호
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    • pp.101-113
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    • 2022
  • A new type of fabricated subway station construction technology can effectively solve these problems. For a new type of metro structure form, it is necessary to clarify its mechanical properties, especially the seismic performance. A soil-structure elastoplastic finite element model is established to perform three-dimensional nonlinear dynamic time-history analysis based on the first fabricated station structure-Yuanjiadian station of Changchun Metro Line 2, China. Firstly, the nonlinear seismic response characteristics of the fabricated and cast-in-place subway stations under different seismic wave excitations are compared and analyzed. Then, a comprehensive analysis of several important parameters that may affect the seismic response of fabricated subway stations is given. The results show that the maximum plastic strain, the interlayer deformation, and the internal force of fabricated station structures are smaller than that of cast-in-place structure, which indicates that the fabricated station structure has good deformation coordination capability and mechanical properties. The seismic responses of fabricated stations were mainly affected by the soil-structure stiffness ratio, the soil inertia effect, and earthquake load conditions rarely mentioned in cast-in-place stations. The critical parameters have little effect on the interlayer deformation but significantly affect the joints' opening distance and contact stress, which can be used as the evaluation index of the seismic performance of fabricated station structures. The presented results can better understand the seismic responses and guide the seismic design of the fabricated station.

터널 정거장 형상에 따른 군말뚝 하부 굴착 시 지반거동 연구 (Investigation of soil behaviour due to excavation below the grouped pile according to shape of tunnel station)

  • 공석민;오동욱;이종현;이용주
    • 한국터널지하공간학회 논문집
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    • 제20권1호
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    • pp.83-97
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    • 2018
  • 터널은 도로, 철도, 지하철과 같은 교통의 통로이자 수로, 전력구, 비축기지와 같은 특수목적을 위해 널리 활용되고 있으며, 터널의 사용 목적, 주변 지반조건 및 경제성에 따라 다양한 터널 형상으로 시공되고 있다. 이에 대해 기존 터널과 주변지반 및 구조물에 관한 연구는 꾸준하게 발표되었으나 단일 형상에 대해 터널굴착 시 주변 지반과 구조물의 거동을 분석한 연구들이 대다수이다. 터널의 붕괴사고는 지상 구조물의 붕괴사고 보다 막대한 인적, 물적 손실을 가져오기 때문에 터널 굴착 및 주변지반의 거동을 관측하고 분석하는 작업은 매우 중요하며, 단일 형상이 아닌 다양한 터널 형상에 대한 연구가 필요할 것으로 판단된다. 따라서, 본 연구는 trapdoor장치를 이용한 실내 모형시험을 통해 군말뚝 하부에 터널 정거장 굴착 시 주변지반의 거동을 측정하였다. 이때 터널 정거장 형상의 단면을 arch와 box 형태로 제작하였으며, 각 터널 정거장 형상 별 0.1B, 0.25B, 0.4B로 터널과 군말뚝 간 이격거리를 다르게 하여 다양한 조건에서의 지반거동을 분석하였다. 또한, 근거리 사진계측 및 이미지프로세싱 기법을 통해 지반의 거동을 관측하였으며, 유한요소 수치해석을 통해 실내 모형시험, 근거리 사진계측의 결과와 비교 분석하였다.

Finite element model updating effect on the structural behavior of long span concrete highway bridges

  • Altunisik, A.C.;Bayraktar, A.
    • Computers and Concrete
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    • 제14권6호
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    • pp.745-765
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    • 2014
  • In this paper, it is aimed to determine the finite element model updating effects on the structural behavior of long span concrete highway bridges. Birecik Highway Bridge located on the 81stkm of Sanliurfa-Gaziantep state highway over Firat River in Turkey is selected as a case study. The bridge consist of fourteen spans, each of span has a nearly 26m. The total bridge length is 380m and width of bridge is 10m. Firstly, the analytical dynamic characteristics such as natural frequencies and mode shapes are attained from finite element analyses using SAP2000 program. After, experimental dynamic characteristics are specified from field investigations using Operational Modal Analysis method. Enhanced Frequency Domain Decomposition method in the frequency domain is used to extract the dynamic characteristics such as natural frequencies, mode shapes and damping ratios. Analytically and experimentally identified dynamic characteristics are compared with each other and finite element model of the bridge is updated to reduce the differences by changing of some uncertain parameters such as section properties, damages, boundary conditions and material properties. At the end of the study, structural performance of the highway bridge is determined under dead load, live load, and dynamic loads before and after model updating to specify the updating effect. Displacements, internal forces and stresses are used as comparison parameters. From the study, it is seen that the ambient vibration measurements are enough to identify the most significant modes of long span highway bridges. Maximum differences between the natural frequencies are reduced averagely from %46.7 to %2.39 by model updating. A good harmony is found between mode shapes after finite element model updating. It is demonstrated that finite element model updating has an important effect on the structural performance of the arch type long span highway bridge. Maximum displacements, shear forces, bending moments and compressive stresses are reduced %28.6, %21.0, %19.22, and %33.3-20.0, respectively.

Multi-point displacement monitoring of bridges using a vision-based approach

  • Ye, X.W.;Yi, Ting-Hua;Dong, C.Z.;Liu, T.;Bai, H.
    • Wind and Structures
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    • 제20권2호
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    • pp.315-326
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    • 2015
  • To overcome the drawbacks of the traditional contact-type sensor for structural displacement measurement, the vision-based technology with the aid of the digital image processing algorithm has received increasing concerns from the community of structural health monitoring (SHM). The advanced vision-based system has been widely used to measure the structural displacement of civil engineering structures due to its overwhelming merits of non-contact, long-distance, and high-resolution. However, seldom currently-available vision-based systems are capable of realizing the synchronous structural displacement measurement for multiple points on the investigated structure. In this paper, the method for vision-based multi-point structural displacement measurement is presented. A series of moving loading experiments on a scale arch bridge model are carried out to validate the accuracy and reliability of the vision-based system for multi-point structural displacement measurement. The structural displacements of five points on the bridge deck are measured by the vision-based system and compared with those obtained by the linear variable differential transformer (LVDT). The comparative study demonstrates that the vision-based system is deemed to be an effective and reliable means for multi-point structural displacement measurement.

TBM disc cutter ring type adaptability and rock-breaking efficiency: Numerical modeling and case study

  • Xiaokang Shao;Yusheng Jiang;Zongyuan Zhu;Zhiyong Yang;Zhenyong Wang;Jinguo Cheng;Quanwei Liu
    • Geomechanics and Engineering
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    • 제34권1호
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    • pp.103-113
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    • 2023
  • This study focused on understanding the relationship between the design of a tunnel boring machine disc cutter ring and its rock-breaking efficiency, as well as the applicable conditions of different cutter ring types. The discrete element method was used to establish a numerical model of the rock-breaking process using disc cutters with different ring types to reveal the development of rock damage cracks and variation in cutter penetration load. The calculation results indicate that a sharp-edged (V-shaped) disc cutter penetrates a rock mass to a given depth with the lowest load, resulting in more intermediate cracks and few lateral cracks, which leads to difficulty in crack combination. Furthermore, the poor wear resistance of a conventional V-shaped cutter can lead to an exponential increase in the penetration load after cutter ring wear. In contrast, constant-cross-section (CCS) disc cutters have the highest quantity of crack extensions after penetrating rock, but also require the highest penetration loads. An arch-edged (U-shaped) disc cutter is more moderate than the aforementioned types with sufficient intermediate and lateral crack propagation after cutting into rock under a suitable penetration load. Additionally, we found that the cutter ring wedge angle and edge width heavily influence cutter rock-breaking efficiency and that a disc cutter with a 16 to 22 mm edge width and 20° to 30° wedge angle exhibits high performance. Compared to V-shaped and U-shaped cutters, the CCS cutter is more suitable for soft or medium-strength rocks, where the penetration load is relatively small. Additionally, two typical case studies were selected to verify that replacing a CCS cutter with a U-shaped or optimized V-shaped disc cutter can increase cutting efficiency when encountering hard rocks.

현대 패션쇼에 나타난 퍼포먼스적 요소 - 1990년 이후 파리, 런던 컬렉션을 중심으로 - (Performance as a factor in the Contemporary Fashion Show - focus on the Paris and London collections Since the 1990s -)

  • 장안화;박민여
    • 복식
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    • 제51권4호
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    • pp.71-80
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    • 2001
  • Since the beginning of the 90's, Fashion shows appear to be a type of performance form of art combining with other areas to visually entertain the viewers. This can be explained by the modern tendency to escape from society which requires formality and complicated lifestyles. Fashion shows take place in a scene Influenced by the idea of post-modernism which redefines the definition of space. A church, old factory, unoccupied ground, subway stations, or even place like a waste disposal are used as a setting. The stage set is no longer the T shape run way and the procinium arch has disappeared. The gap between audience and stage has diminished and theatrical element is added to the fashion performance by using viewers living and working environments as setting of the show. The human relation with machine based on the cutting edge technology such as the stage automation, robots and mist making sprinkler system introduces new elements with spontaneity and detailed planning in the stage performance. Music also plays an Important role in attracting viewers. The sound track covers house music to techno music. Instead of music being abstract, folks orchestral music, choirs, piano. even live concert performed by pop artist provide the liveliness of the fashion show. And the catwalk itself is a performance. Model needs to be well trained as the capable talent who can handle sensitive gestures, facial expressions, dancing and choreography. The improvisatorial interaction between audience and model lead to audience participation. Models now range from pop star, ordinary people, handicapped people, to elderly and so on. John Galliano introduced the theatrical factors for the fashion show and Alexander Mcqueen approached the fashion show as the visual art of communication. Hussein Chalayan utilized high technology skewing futurism as if in a magic show. Today the Fashion show tends to be a total performance which includes audience participation, impromptu, and that break the limitation that fashion shows previously had. This will lead the fashion industry in opening new horizon of its own.

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상악 구치에서의 구개측 굴곡파절 발현 비율 연구 (A study of incidence of palatal side abfractions in maxillary posterior teeth)

  • 송주헌;허유리;이경제
    • 구강회복응용과학지
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    • 제35권4호
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    • pp.206-213
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    • 2019
  • 목적: 굴곡파절의 대부분 연구들이 협측에 한정되어있다. 본 연구에서는 상악 구치부에서 구개측 굴곡파절의 빈도 조사를 통해 굴곡파절의 원인을 분석해보고자 한다. 연구 재료 및 방법: 총 3193개의 상악 구치를 대상으로 조사를 진행하였다. 구내 관찰과 모형 관찰, 그리고 모형 스캔을 통해 제작된 가상 모형을 관찰하는 방법으로 조사를 진행하였다. 그 결과를 치아, 연령, 성별, 악궁에 따라 분류하였다. 통계적 유의성의 평가를 위해 Chi-square test를 시행하였다(α = 0.05). 결과:상악 소구치(6.8%)보다 대구치(10.8%)에서 구개측 굴곡파절이 높은 빈도로 관찰되었고, 그중 제1대구치(39.1%)에서 가장 높은 빈도로 관찰되었다. 연령이 증가할수록 구개측 굴곡파절이 높은 빈도로 관찰되었으며 이는 통계적으로 유의성이 있었다(P < 0.05). 구개측 굴곡파절의 빈도는 성별에 따른 차이에서는 통계적으로 유의성이 없었으며(P > 0.05), 악궁에 따른 차이에서는 좌측에서 더 높은 빈도로 나타났고 통계적으로 유의성이 있었다(P < 0.05). 결론: 상악 구치에서 구개측 굴곡파절은 상악 제1대구치에서 높은 빈도로 관찰되었고, 연령의 증가에 따라 증가하는 양상을 보였다. 이와 같은 결과는 굴곡파절의 가장 주된 원인이 교합력임을 의미한다.

GPS기반 Hand Held Type 거리 측정기 (Hand Held the distance measurement of platform on GPS)

  • 박지훈;김영길
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2003년도 추계종합학술대회
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    • pp.864-867
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    • 2003
  • 범지구 측위 시스템(GPS : Global Positioning System)은 미국 국방성에서 개발한 인공위성에 의한 측위 시스템으로 주로 군사용으로만 사용되던 GPS가 민간에게 개방된 것은 87년경이다. 이 시스템은 항공기와 선박의 항법, 미사일 유도 등 군사, 항법이 주목적이었으나, 그 이용 가능성은 무궁하여 측지 및 측량, 시가지 자동차 항법, GIS의 자료 구축 수단으로서 옹용 폭이 확대되고 있다. 최근 들어 국내에서도 GPS(Global Positioning System)를 이용한 임베디드 시스템 개발에 박차를 가하고 있으며, 연구 또한 활발하게 진행되고 있으며, 그 대표적인 적용 사례로는 Car Navigation과 96년 한강의 서강 대교 윌슨 아치 구간의 설치 시공에 DGPS(Differential GPS)를 이용하여 cm 정확도의 정밀 위치 유도를 한 것은 성공적인 사례로 평가된다. 또한 각급 지자단체, 정부 각 부처 기관에서의 사업수행에 GPS를 이용한 사례가 점진적으로 보고 되고 있으며, 그 예로 BIS(Bus Information System) 가 널리 확산되고 있는 현실이다. 또한 국립지리원의 전자지도(NGIS)의 DB를 바탕으로 GPS를 이용하여 추후에 물류 관리제 시스템의 연구가 활발해 질 것으로 전망된다. 본 논문에서는 GPS의 시스템을 이용하여 차량용이나, 토지 공사의 위치 측정에 사용하는 부피가 큰 임베디드 시스템이 아닌 도보나 등산객, 마라톤 선수들이 사용할 수 있는, 휴대하기 용이한 Hand Held의 Proto Type을 구현해 보았다.

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유리단 국소의치에서 Suprabulge Clasp와 Infrabulge Clasp가 지대치 동요에 미치는 영향에 관한 연구 (Effect of Suprabulge Clasp and Infrabulge Clasp on the Mobility of Abutment Teeth for Distal Extension Removable Partial Dentures)

  • 임순호
    • 대한치과보철학회지
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    • 제19권1호
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    • pp.39-45
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    • 1981
  • Distal-extension removable partial dentures have long been implicated in the increase in mobility and the destruction of the supporting structures of the primary abutment teeth. Various clasping systems have traditionally been used to retain distal extension removable partial dentures, and other designs have been proposed to minimize torquing forces on the abutment teeth. Most recent studies investigating the effects of removable partial dentures on abutment teeth have been performed in it laboratory setting. Results obtained from in vitro research have given dentists insight into removable partial denture design, but laboratory test model cannot be constructed that simulates actual functional or parafunctiona1 movements and forces. The purpose of this study was to clinically evaluate the degree of tooth mobility produced by two clasping systems (suprabulge type and infrabulge type) used for distal extension removable partial dentures. Akers clasp and R.P.I. system were selected for the evaluation, and four patients required a distal extension removable partial denture on the mandibular arch were selected for participation in the study. Two partial dentures were constructed in the same condition expect the design of clasp. All abutments in the study were mandibular first or second premolars. Measurements of mobility were made with a research tool designed by $M\"{u}hlemann$. This instrument, periodontometer, measures tooth mobility in the mouth by means of a dial gauge accurated to 0.01mm when the tooth is stressed with a force meter. Lingual and buccal deflection of abutment tooth was measured using buccal and lingual pressure. The amount of force applied was 500gm. Tooth mobility tests were made at four key stages; 1. Before insertion of the first removable partial denture, baseline mobility was establsihed. 2. After wearing of the first prosthesis, measurement was made at weekly intervals for 4 weeks. 3. The removable partial denture was then taken from the patient, and tooth mobility was measured again at weekly intervals until the patient's established baseline mobility had returned. 4. The second prosthesis of different clasp design was worn for a month and evaluated in the same manner as the first. The sequence of placement of clasping system was alternated between patients. The following results were obtained from this study; 1. The mobility of abutment tooth increased during the initial stage of wear and returned to baseline mobility after removal of removable partial dentures. 2. The mobility of abutment tooth showed no difference between Akers clasp and I-bar clasp during the 4-week test period. 3. All teeth tested showed greater mobility toward the buccal than the lingual direction.

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