• 제목/요약/키워드: 2D Joints

검색결과 293건 처리시간 0.024초

Effect of Induction Heat Bending Process on the Properties of ASME SA106 Gr. C Carbon Steel Pipes

  • Kim, Ki Tae;Kim, Young Sik;Chang, Hyun Young;Oh, Young Jin;Sung, Gi Ho
    • Corrosion Science and Technology
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    • 제14권2호
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    • pp.47-53
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    • 2015
  • Recently, the bending process is greatly applied to fabricate the pipe line. Bending process can reduce welding joints and then decrease the number of inspection. Thus, the maintenance cost will be reduced. Induction heat bending process is composed of bending deformation by repeated local heat and cooling. By this thermal process, corrosion properties and microstructure can be affected. This work focused on the effect of induction heating bending process on the properties of ASME SA106 Gr. C low carbon steel pipes. Microstructure analysis, hardness measurements, and immersion corrosion test were performed for base metal and bended area including extrados, intrados, crown up, and down parts. Microstructure was analyzed using an optical microscope and SEM. Hardness was measured using a Rockwell B scale. Induction heat bending process has influenced upon the size and distribution of ferrite and pearlite phases which were transformed into finer structure than those of base metal. Even though the fine microstructure, every bent area showed a little lower hardness than that of base metal. It is considered that softening by the bending process may be arisen. Except of I2, intrados area, the others showed a similar corrosion rate to that of base metal. But even relatively high rate of intrados area was very low and acceptable. Therefore, it is judged that induction heat bending process didn't affect boric acid corrosion behaviour of carbon steel.

사이클 페달링 시 안장높이에 따른 하지관절 각도와 근육활성화의 상관관계 (Relationship between Lower -Limb Joint Angle and Muscle Activity due to Saddle Height during Cycle Pedaling)

  • 서정우;최진승;강동원;배재혁;탁계래
    • 한국운동역학회지
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    • 제22권3호
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    • pp.357-363
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    • 2012
  • The purpose of this study was to investigate the effects of different saddle heights on lower-limb joint angle and muscle activity. Six elite cyclists(age: $32.2{\pm}5.2years$, height: $171.0{\pm}3.5cm$, weight: $79.7{\pm}5.6kg$, cycle career: $13{\pm}6.2years$) participated in three min. submaximal(90 rpm) pedaling tests with the same load and cadence based on saddle heights where subject's saddle height was determined by his knee flexion angle when the pedal crank was at the 6 o'clock position. Joint angles(hip, knee, ankle joints) and the activity of lower limb muscles(biceps femoris(BF), vastus lateralis(VL), tibialis anterior(TA) and gastrocnemius medial(GM)) were compared by measuring 3D motion and electromyography(EMG) data. Results showed that there were significant differences in minimum hip & knee joint angle and range of motion of hip and knee joint between saddle heights. Onset timing and integrated EMG of only BF among 4 muscles were significantly different between saddle heights. Especially there was a negative relationship between minimum hip joint angle and onset timing of BF in most subject, which means that onset timing of BF became fast as the degree of bending of the hip joint became larger by saddle height. Optimal pedaling will be possible through increased amount of muscle activation due to the appropriate burst onset timing by proper pedaling posture with adjusted saddle height.

The effect of radial cracks on tunnel stability

  • Zhou, Lei;Zhu, Zheming;Liu, Bang;Fan, Yong
    • Geomechanics and Engineering
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    • 제15권2호
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    • pp.721-728
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    • 2018
  • The surrounding rock mass contains cracks and joints which are distributed randomly around tunnels, and in the process of tunnel blasting excavation, radial cracks could also be induced in the surrounding rock mass. In order to clearly understand the impact of radial cracks on tunnel stability, tunnel model tests and finite element numerical analysis were implemented in this paper. Two kinds of materials: cement mortar and sandstone, were used to make tunnel models, which were loaded vertically and confined horizontally. The tunnel failure pattern was simulated by using RFPA2D code, and the Tresca stresses and the stress intensity factors were calculated by using ABAQUS code, which were applied to the analysis of tunnel model test results. The numerical results generally agree with the model test results, and the mode II stress intensity factors calculated by ABAQUS code can well explain the model test results. It can be seen that for tunnels with a radial crack emanating from three points on tunnel edge, i.e., the middle point between tunnel spandrel and its top with a dip angle $45^{\circ}$, the tunnel foot with a dip angle $127^{\circ}$, and the tunnel spandrel with $135^{\circ}$ with tunnel wall, the tunnel model strength is about a half of the regular tunnel model strength, and the corresponding tunnel stability decreases largely.

악관절에 대한 자기 공명 영상의 연구 (A STUDY ON MAGNETIC RESONANCE IMAGING OF THE TEMPOROMANDIBULAR JOINT)

  • 김형식;김재덕
    • 치과방사선
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    • 제20권2호
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    • pp.187-198
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    • 1990
  • Examinations of the temporomandibular joints were performed on a 1.5 Tesla magnetic resonance (MR) system. An MR surface receiver coil 3 inch in diameter was placed on plastic frame, the patient's head being placed in the frame so that the coil was pressed against the temporal region. In taking advantage of the magnetic resonance imaging that has been studied briskly till now, author obtained the images of parasagittal and paracoronal planes about the temporomandibular joint by using MPGR (Multi-Planar Gradient Recalled), GRASS (Gradient Recalled Acquisition in the Steady State), and CSMEMP (Contiguous Slice Multiple Echo, Multi-Planar), that differ from the Spin Echo pulse sequence which the previous authors used. Five subjects with no symptoms of temporomandibular joint pain and dysfunction were studied. The plane images obtained by these methods were compared with those by Spin Echo pulse sequence. The results were as follows: 1. The optimal repetition times (TR) and echo times (TE) for T.M.J. image were; a. 400 msec and 18 msec in PMGR pulse sequence. b. 40 msec and 12 msec in GRASS pulse sequence. c. 700 msec and 30 msec in CSMEMP pulse sequence. d. 500 msec and 20 msec in Spin Echo pulse sequence. 2. When the MPGR pulse sequence was using, T2-weighted image was obtained in very short time. On the image of the paracoronal plane by GRASS pulse sequence, meniscus showed the moderate signal intensity, and the meniscus and its anteromedial, posterolateral attachments were observed definitely with gray color. 4. The signal intensity of Spin Echo pulse sequence was equal to that of CSMEMP pulse sequence, but the image by CSMEMP pulse sequence showed relatively lower level in its resolution.

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Cu-Sn 삽입금속을 이용한 DP강의 아크 브레이징 접합부의 미세조직과 인장특성 (Microstructure and Tensile Strength Property of Arc Brazed DP steel using Cu-Sn Insert Metal)

  • 조욱제;조영호;윤중길;강정윤
    • Journal of Welding and Joining
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    • 제31권1호
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    • pp.58-64
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    • 2013
  • The following results were obtained, microstructures and tensile properties in arc brazed joints of DP(dual phase) steel using Cu-5.3wt%Sn insert metal was investigated as function of brazing current. 1) The Fusion Zone was composed of ${\alpha}Fe+{\gamma}Cu$ and Cu23Sn2. The reason for the formation of these solid solutions. Despite, Fe & Cu were impossible to solid solution at room temperature. It's melting & reaction to something of insert metal & Base Metal (DP Steel) by Arc. Brazing Process has faster cooling rate then Cast Process, Supersaturated solid solution at room temperature. 2) The increase Hardness of Fusion Zone was directly proportional to the rise of welding current. Because, ${\alpha}Fe+{\gamma}Cu$ phase (higher hardness than the Cu23Sn2.(104.1Hv < 271.9Hv)) Volume fraction was Growth, due to increasing the amount of base metal melting by High current. 3) The results of tensile shear test by Brazing, All specimens happen to fracture in Fusion Zone. On the other hand, when Brazing Current increasing tend to rise tensile load. but it was very small, about 26-30% of the base metal. 4) The result of fracture analysis, The crack initiate at Triple Point for meet to Upper B.M/Under B.M/Fusion Zone. This Crack propagated to Fusion zone. So ruptured by tensile strength. The Reason to in the fusion zone fracture, Fusion zone by Brazing of hardness (strength) was very lower then the base metal (DP steel). In addition the Fusion Zone's thickness in triple point was thin than the base metal's thickness in triple point.

경기도 광주시 일대의 지질구조와 변형사 (Geological Structure and Deformation History in the Gwangju area, Gyeonggi-do, Korea)

  • 이희권;김만광
    • 암석학회지
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    • 제14권2호
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    • pp.108-115
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    • 2005
  • 경기육괴 중앙부의 광주시 일대에 분포하는 선캠브리아기의 경기편마암 복합체는 흑운모호상 편마암 및 석영장석질 편마암으로 구성되어 있다 지질구조 분석결과 연구지역은 적어도 다섯 번의 변형작용을 받은 것으로 밝혀졌다. 첫 번째 변성작용(M1) 및 변형작용(Dl)중에 퇴적암(층리; S0)이 변성되어 흑운모호상 편마암으로 되었으며, 성분엽리(S1)가 발달되었다. 심성암이 관입 후 두 번째 변성작용(M2) 및 변형작용(D2)이 일어났으며, 이때 심성암이 엽리(S2)가 발달된 석영장석질 편마암으로 변하였다. 세 번째 변형작용(D3) 중에 수십 cm 규모의 밀착습곡 및 등사습곡(F3)이 발달하였으며, 축면방향으로 성분엽리(S3)가 발달하였다. 변위작용에 의해 뿌리 없는 습곡(F3)이 S3 엽리와 평행하게 발달되어 있다. 네 번째 변형작용(D4) 중에 남북방향의 압축력에 의해 약 100m의 축면분리를 가지는 F4 습곡이 동서 방향으로 발달하였다. 다섯 번째 변형작용 중에 동서 방향의 압축력에 의해 축면분리가 약 3km 규모의 남북 방향의 F5 습곡이 발달하였다. F5 습곡의 중심부에서는 F4 습곡에 F5 습곡작용이 중첩되어 F5 습곡의 습곡축면과 평행한 남북방향으로 F4 습곡이 발달되어 있으며 날개 사잇각 및 축면분리가 작아졌다. 반면에 F5 습곡의 서쪽 날개 지역에서는 북동방향으로, 동쪽 날개 지역에서는 북서방향으로 F4 습곡이 회전되었다. 연구지역에 발달되어 있는 엽리의 궤적은 주로 F4 습곡 및 F5 습곡에 의해 지배되어 있다. F4 습곡작용 동안에 취성변형작용에 의해 절리 및 단층이 발달하였으며 F5 습곡의 양쪽 날개부에는 부채꼴 절리가 우세하게 발달하고, 힌지대에는 be-절리가 우세하게 발달하였다 그 이후에 북서 방향의 주향이동 단층이 지질도 규모로 발달하였다. 제4기 동안에 발생한 산사태가 일부 절리 및 엽리의 방향을 반시계방향으로 약 $15^{\circ}$ 회전시켰다.

스마트 반강접 (PR) 콘크리트 충전 강재 합성 (CFT) 접합 구조물에 대한 해석모델의 개발 (Development of A Component and Advanced Model for The Smart PR-CFT Connection Structure)

  • 선우현;허종완
    • 복합신소재구조학회 논문집
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    • 제2권4호
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    • pp.1-10
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    • 2011
  • 본 연구는 각 연결부에 대한 수치 해석을 통하여 강재-콘크리트 합성 프레임 구조물의 성능을 조사하였다. 본 연구의 혁신적인 측면은 강재 보와 CFT 기둥의 연결부 사용과 저탄소강과 형상 기억 합금 구성요소의 조합을 활용하는데 있다. 이러한 새로운 연결부의 목적은 지진 후 건물의 손상과 잔류 흐름을 줄이기 위해 고탄성 형상기억합금 인장부에서 발생하는 교정 작용과 저탄소강의 우수한 에너지 분산 능력을 활용하는 것이다. 연결부의 핀, 전체적인 고정 또는 부분 구속으로 모델링을 할 수 없기 때문에 이러한 구조물들의 해석과 설계는 복잡하여 PR-CFT 연결부의 전체적인 거동을 알기 위한 수치해석을 위해 정교한 3차원 솔리드 요소로 구성된 유한해석 모델을 개발하였다. 이러한 유한요소 해석으로 얻은 결과를 바탕으로 스프링 요소를 이용하여 간단한 연결부 모델링을 공식화 시켰다. 반복 하중을 가하여 전체 프레임 구조물의 거동을 확인하였고 3D 유한요소 해석을 통하여 단순 거동을 비교하였다.

강구조물(鋼構造物) 맞대기 용접연결부(鎔接連結部)의 피로파괴거동(疲勞破壞擧動)에 관한 연구(硏究) (A Study on the Fatigue Fracture Behavior in Butt Welded Joints of Steel Structures)

  • 박제선;정영화;김정태
    • 대한토목학회논문집
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    • 제6권3호
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    • pp.53-62
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    • 1986
  • 소재시험편(素材試驗片)과 맞대기 용접시험편(鎔接試驗片)을 대상(對象)으로 피로시험(疲勞試驗)을 행(行)하여 작용최대응력(作用最大應力)-피로수명(疲勞壽命)(S-N)선도(線圖), 소성변형율(塑性變形率)-하중반복회수(荷重反復回數)(${\varepsilon}_p$-N)선도(線圖), 초기균열발생시(初期龜裂發生時)의 소성변형율(塑性變形率)-피로수명(疲勞壽命)(${\varepsilon}_p-N_c$)선도(線圖) 및 균열성장율(龜裂成長率)-응력확대계수변동범위(應力擴大係數變動範圍)(da/dN-${\Delta}K$)선도(線圖)를 그려서 강구조물(鋼構造物) 용접부(鎔接部)에서의 여러가지 피로거동(疲勞擧動)을 검토(檢討)하였다. 본(本) 연구(硏究)에서 얻어진 결과(結果)를 요약(要約)하면 다음과 같다. 하중반복회수(荷重反復回數) $2{\times}10^6$ cycle에서의 피로강도(疲勞强度)는 용접부(鎔接部)가 소재부(素材部)의 약(約) 60%였으며 강복응력(降伏應力)에 대한 피로강도(疲勞强度)의 비(比)는 소재부(素材部)와 용접부(鎔接部)가 각각(各各) 0.72, 0.65로 나타났다. 용접시험편(鎔接試驗片)의 S-N 선도(線圖)는 피로강도(疲勞强度)의 감소(減少)가 완만(緩慢)한 구간(區間)과 피로강도(疲勞强度)의 감소(減少)가 큰 구간(區間)으로 분류(分類)되어 작용최대응력(作用最大應力)이 작을 수록 피로강도(疲勞强度)의 감소(減少)가 커지는 현상(現象)을 보였다. 두 구간(區間)으로 구분(區分)되지 않은 S-N 선도(線圖)에 의한 피로강도(疲勞强度)에 비(比)해 $2{\times}10^6$ cycle에서의 피로강도(疲勞强度)가 약(約) 83%에 해당(該當)하였다. 이는 낮은 응력(應力)에서 용접부(鎔接部) 내부결함(內部缺陷)의 영향(影響)이 크게 작용(作用)하는 때문이 아닌가 생각된다. 용접시험편(鎔接試驗片)의 경우(境遇) 소재시험편(素材試驗片)에 비(比)해, 또 작용최대응력(作用最大應力)이 클수록 초기균열발생(初期龜裂發生)이 빠르고 균열발생직전(龜裂發生直前)의 소성변형율(塑性變形率)의 증가(增加)가 급격(急激)한 것을 알 수 있었다. 소재시험편(素材試驗片)에서 ${\varepsilon}_p-N_c$ 관계식(關係式)의 상수(常數) ${\alpha}$값이 0.42 로 Manson, Coffin의 연구결과(硏究結果)와 거의 일치(一致)하였고 용접시험편(鎔接試驗片)에서는 이 값이 0.28 로 이들의 연구결과(硏究結果)와 큰 차이(差異)를 나타내었는데, 이는 피로(疲勞)에 의한 용접부(鎔接部) 소성변형(塑性變形)의 급격(急激)한 변화(變化)와 내부결함(內部缺陷)의 영향(影響)이 작용(作用)했기 때문이 아닌가 생각된다. 이와 같은 결과(結果)로 볼 때 기존(旣存)의 강구조물(鋼構造物) 및 향후(向後) 신설(新設)될 강구조물(鋼構造物) 용접부(鎔接部)의 품질(品質) 및 피로(疲勞)에 대한 안전성(安全性)에 적절(適切)한 대책(對策)이 요망(要望)되며, 이 분야(分野)에 관한 더 많은 연구(硏究)가 행(行)해져야 되리라고 사료(思料)된다.

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전방십자인대 손상으로 인한 슬관절 불안정성에 따른 경골 골단 해면골 미세구조 변화 : 내방과 외방에서의 해면골 미세구조 패턴 변화 (Alteration of Trabecular Bone Microarchitecure at Tibial Epiphysis due to Knee Joint Instability by Anterior Cruciate Ligament Rupture: Difference between Medial and Lateral Part)

  • 이주형;전경진;김한성;임도형
    • 대한의용생체공학회:의공학회지
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    • 제33권2호
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    • pp.78-88
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    • 2012
  • Knee joint instability by anterior cruciate ligament(ACL) rupture is allowing the abnormal loading condition at the tibial epiphysis locally, resulting in producing locally different bone bruise. The study examined difference between local alteration patterns of trabecular bone microarchitecture at medial and lateral parts of the tibial epiphysis by ACL rupture. Fourteen SD rats were divided into Control(CON; n = 7) and Anterior Cruciate Ligament Transection(ACLT; n = 7) groups. The tibial joints were then scanned by in vivo ${\mu}$-CT at 0, 4, and 8 weeks post-surgery. The results showed that alteration pattern on trabecular bone microarchitecture at medial part was significantly higher than that at lateral part of the tibial epiphysis in ACLT group from 0 to 8 weeks(P < 0.05). Tb.Th and Tb.Sp distributions were well corresponded with differences between aforementioned trabecular bone microarchitectural alteration pattens at medial and lateral parts of the tibial epiphysis in ACLT group from 0 to 8 weeks(P < 0.05). These findings suggest that the alteration patterns of trabecular bone microarchitecture should be locally and periodically considered, particularly with respect to the prediction of bone fracture risk by ACL rupture. Improved understanding of the alteration patterns at medial and lateral trabecular bone microarchitectures at the tibial epiphysis may assist in developing more targeted treatment interventions for knee joint instability secondary to ACL rupture.

만성 관절 통증 여성 노인환자에 있어 관절염 태극권의 효과에 대한 pilot study (The Effects of Tai Chi for Arthritis on Chronic Arthritic Pain of Senior Female : A Pilot Study)

  • 황의형;김정환;장인수;양창섭;강준원
    • 한방재활의학과학회지
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    • 제20권1호
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    • pp.79-90
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    • 2010
  • Objectives : Tai Chi for arthritis was developed in 1997 by Paul Lam, M.D. of family medicine in Australia. It is an exercise treatment program and a good approaching method for arthritis. However its application is limited to arthritis of knee joint only. Even there have been no clinical study in korean traditional medical society. The aim of this study is to investigate effect of the Tai Chi for arthritis on chronic pain of body. Methods : We designed this trial as objectives were (1) senior female over 60 years, (2) suffering for osteoarthritis and chronic body pain, (3) have no physical or mental dysfunctions (4) able to walk and exercise alone. Objectives mactched these criteria had been trained the Tai Chi for arthritis 2 hours a day for 21 weeks. Before and after training, pain of 8 joints (neck, shoulder, elbow, wrist, waist, hip, knee, ankle) were estimated with the VAS(Visual Analog Scale). Results : Training the Tai Chi for arthritis relieved multiple joint pain(especially neck, lower back, shoulder, wrist and knee) and these were statistically significant. Conclusions : This study is a pilot study to investigate effect of the Tai Chi for arthritis on chronic pain of whole body. Absence of control group, and other scale to test joint function except VAS were limitations of this study. It is the first clinical approach about Tai Chi in korean medicine field, also the first study of Tai Chi for pain of the whole body.