• 제목/요약/키워드: Angular deformation

검색결과 212건 처리시간 0.031초

Theoretical analysis of rotary hyperelastic variable thickness disk made of functionally graded materials

  • Soleimani, Ahmad;Adeli, Mohsen Mahdavi;Zamani, Farshad;Gorgani, Hamid Haghshenas
    • Steel and Composite Structures
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    • 제45권1호
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    • pp.39-49
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    • 2022
  • This research investigates a rotary disk with variable cross-section and incompressible hyperelastic material with functionally graded properties in large hyperelastic deformations. For this purpose, a power relation has been used to express the changes in cross-section and properties of hyperelastic material. So that (m) represents the changes in cross-section and (n) represents the manner of changes in material properties. The constants used for hyperelastic material have been obtained from experimental data. The obtained equations have been solved for different m, n, and (angular velocity) values, and the values of radial stresses, tangential stresses, and elongation have been compared. The results show that m and n have a significant impact on disk behavior, so the expected behavior of the disk can be obtained by an optimal selection of these two parameters.

Cumulative Angular Distortion Curve of Multi-Pass Welding at Thick Plate of Offshore Structures

  • Ha, Yunsok;Choi, Jiwon
    • Journal of Advanced Research in Ocean Engineering
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    • 제1권2호
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    • pp.106-114
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    • 2015
  • In the fabrication of offshore oil and gas facilities, the significance of dimension control is growing continuously. But, it is difficult to determine the deformation of the structure during fabrication by simple lab tests due to the large size and the complicated shape. Strain-boundary method (a kind of shrinkage method) based on the shell element was proposed to predict the welding distortion of a structure effectively. Modeling of weld geometry in shell element is still a difficult task. In this paper, a concept of imaginary temperature pair is introduced to handle the effect of geometric factors such as groove shape, plate thickness and pass number, etc. Single pass imaginary temperature pair formula is derived from the relation between the groove area and the FE mesh size. By considering the contribution of each weld layer to the whole weldment, multi-pass imaginary temperature is also derived. Since the temperature difference represents the distortion increment, cumulative distortion curve can be drawn by integrating the temperature difference. This curve will be a useful solution when engineers meet some problems occurred in the shipyard. A typical example is shown about utilization of this curve. Several verifications are conducted to examine the validity of the proposed methodology. The applicability of the model is also demonstrated by applying it to the fabrication process of the heavy ship block. It is expected that the imaginary temperature model can effectively solve the modeling problem in shell element. It is also expected that the cumulative distortion curve derived from the imaginary temperature can offer useful qualitative information about angular distortion without FE analysis.

초정밀 이송테이블의 5 자유도 운동오차 측정 (Measurement of Five DOF Motion Errors in the Ultra Precision Feed Tables)

  • 오윤진;박천홍;황주호;이득우
    • 한국정밀공학회지
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    • 제22권11호
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    • pp.135-141
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    • 2005
  • Measurement of five DOF motion errors in a ultra precision feed table was attempted in this study. Yaw and pitch error were measured by using a laser interferometer and roll error was measured by using the reversal method. Linear motion errors in the vertical and horizontal directions were measured by using the sequential two point method. In this case, influence of angular motion errors was compensated by using the previously measured ones by the laser interferometer and the reversal method. The capacitive type sensors and an optical straight edge were used in the reversal method and the sequential two point method. Influence of thermal deformation on sensor jig was investgated and minimized by the periodic measurement according to the variation of room temperature. Deviation of gain between sensors was also compensated using the step response data. 5 DOF motion errors of a hydrostatic table driven by the linear motor werer tested using the measurement method. In the horizontal direction, measuring accuracies for the linear and angular motion were within ${\pm}0.02\;{\mu}m$ and ${\pm}0.04$ arcsec, respectively. In the vertical direction, they were within ${\pm}0.02{\mu}m$ and ${\pm}0.05$ arcsec. From these results, it was found that the introduced measurement method was very effective to measure 5 DOF motion errors of the ultra precision feed tables.

ECAP공법으로 제조된 무산소동의 미세조직 및 기계적 성질 이방성에 대한 고찰 (A Study on the Microstructure and Anisotropic Mechanical Properties of Oxygen-Free Copper Fabricated by Equal Channel Angular Pressing)

  • 이재근;홍영곤;김형섭;박성혁
    • 한국군사과학기술학회지
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    • 제22권4호
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    • pp.492-500
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    • 2019
  • Equal channel angular pressing(ECAP) is a severe plastic deformation technique capable of introducing large shear strain in bulk metal materials. However, if an ECAPed material has an inhomogeneous microstructure and anisotropic mechanical properties, this material is difficult to apply as structural components subjected to multi-axial stress during use. In this study, extruded oxygen-free copper(OFC) rods with a large diameter of 42 mm are extruded through ECAP by route Bc up to 12 passes. The variations in the microstructure, hardness, tensile properties, and microstructural and mechanical homogeneity of the ECAPed samples are systematically analyzed. High-strength OFC rods with a homogeneous and equiaxed-ultrafine grain structure are obtained by the repeated application of ECAP up to 8 and 12 passes. ECAPed samples with 4 and 8 passes exhibit much smaller differences in terms of the average grain sizes on the cross-sectional area and the tensile strengths along the axial and circumferential directions, as compared to the samples with 1 and 2 passes. Therefore, it is considered that the OFC materials, which are fabricated via the ECAP process with pass numbers of a multiple of 4, are suitable to be applied as high-strength structural parts used under multi-axial stress conditions.

Effect of Annealing on the Pitting Corrosion Resistance of Anodized Aluminum-Magnesium Alloy Processed by Equal Channel Angular Pressing

  • Son, In-Joon;Nakano, Hiroaki;Oue, Satoshi;Kobayashi, Shigeo;Fukushima, Hisaaki;Horita, Zenji
    • Corrosion Science and Technology
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    • 제6권6호
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    • pp.275-281
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    • 2007
  • The effect of annealing on the pitting corrosion resistance of anodized Al-Mg alloy (AA5052) processed by equal-channel angular pressing (ECAP) was investigated by electrochemical techniques in a solution containing 0.2 mol/L of $AlCl_3$ and also by surface analysis. The Al-Mg alloy was annealed at a fixed temperature between 473 and 573 K for 120 min in air after ECAP. Anodizing was conducted for 40 min at $100-400A/m^2$ at 293 K in a solution containing 1.53 mol/L of $H_2SO_4$ and 0.0185 mol/L of $Al_2(SO_4)_3$. The internal stress generated in anodic oxide films during anodization was measured with a strain gauge to clarify the effect of ECAP on the pitting corrosion resistance of anodized Al-Mg alloy. The time required to initiate the pitting corrosion of anodized Al-Mg alloy was shorter in samples subjected to ECAP, indicating that ECAP decreased the pitting corrosion resistance. However, the pitting corrosion resistance was greatly improved by annealing after ECAP. The time required to initiate pitting corrosion increased with increasing annealing temperature. The strain gauge attached to Al-Mg alloy revealed that the internal stress present in the anodic oxide films was compressive stress, and that the stress was larger with ECAP than without. The compressive internal stress gradually decreased with increasing annealing temperature. Scanning electron microscopy showed that cracks occurred in the anodic oxide film on Al-Mg alloy during initial corrosion and that the cracks were larger with ECAP than without. The ECAP process of severe plastic deformation produces large internal stresses in the Al-Mg alloy; the stresses remain in the anodic oxide films, increasingthe likelihood of cracks. It is assumed that the pitting corrosion is promoted by these cracks as a result of the higher internal stress resulting from ECAP. The improvement in the pitting corrosion resistance of anodized AlMg alloy as a result of annealing appears to be attributable to a decrease in the internal stresses in anodic oxide films

백운산향사(白雲山向斜) 서단부(西端部)의 구조계층(構造階層)과 습곡작용(褶曲作用)의 과정(過程) (Structural Layers and History of Folding in the Western Part of the Baegunsan Syncline, Samcheog Coalfield, South Korea)

  • 이재영;박봉순
    • 자원환경지질
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    • 제15권1호
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    • pp.41-47
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    • 1982
  • 삼척탄전서부지역(三陟炭田西部地域)의 양단부(兩端部)에 해당하는 본연구지역(本硏究地域)은 태백산통(太白山統)을 기저(基底)로 하여 "조선-평안계(朝鮮-平安系)"의 층서(層序)가 해방전(解放前)에 수립(樹立)되었고 정창희(鄭昌熙)에 의하여 "평안계(平安系)"는 대폭 수정(修正)되었다. 특히 이 지역의 지질구조(地質構造)는 층서확립(層序確立)과 함께 "백운산대향사(白雲山大向斜)"구조(構造)가 이미 오래전에 인지(認知)되었으나 동서성(東西性)의 대습곡구조(大褶曲構造)와 남북성(南北性)의 교차습곡구조(交叉褶曲構造)와의 생성시기(生成時期)의 선후관계(先後關係)에 대해서는 다른 견해(見解)가 대립(對立)되어 왔다. 이 지역(地域)을 대향사(大向斜)의 남익부(南翼部)인 녹전구(碌田區), 북익부(北翼部)인 문곡구(文曲區), 비부(鼻部)인 예미구(禮美區)로 나누어 구조요소(構造要素)를 관측해석(觀測解析)하였던 바, 세 지역의 층이면(層理面)에 대한 ${\pi}$도(圖)에서 얻은 대원(大圓)의 극(極)과 선구조(線構造)의 최대치(最大値)는 비교적 잘 일치하는데 남북성(南北性) 교차습곡(交叉褶曲)의 경향(傾向)과 같다. 이는 남북성교차습곡(南北性交叉褶曲)의 형성과정(形成過程)에서 제구조요소(諸構造要素)가 생성(生成)되었고 동서성대향사(東西性大向斜) 구조(構造)와는 무관(無關)하다는 것을 입증(立證)하므로 선남북성교차습곡후동서성대향사(先南北性交叉褶曲後東西性大向斜)의 습곡작용(褶曲作用)이 있었음을 뒷받침하고 있다. 다시 말하면 본역(本域)에 발달(發達)하는 소구조요소(小構造要素)는 대체로 교차습곡(交叉褶曲)에 수반(隨伴)된 것으로 후기(後期)의 백운산향사(白雲山向斜)에 의해서 담란(擔亂)되고 있다. 기반암층(基盤岩層)에는 동사습곡(同斜褶曲)이, 하부고생층(下部古生層) 중의 규암층중(硅岩層中)에는 심한 단열(斷裂)이, 니질암층(泥質岩層) 중에는 각상습곡(角狀褶曲)이, 탄산염암층(炭酸鹽岩層)중에는 조합벽개(組合劈開)가, 상부고생층(上部古生層)중에는 평행습곡(平行褶曲)이 우세하여 층서(層序)에 따른 변형양식(變形樣式)의 차이(差異)를 보이고 있어 구조계층(構造階層)이 성립(成立)한다.

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인장시험에 의한 낚시의 변형과 파단하중 (The Deformation and Breaking Load of the Fishing Hook by the Tensile Test)

  • 고관서;김용해
    • 한국수산과학회지
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    • 제14권4호
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    • pp.269-275
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    • 1981
  • 연근해 어업용 낚시 6가지형에 대하여 만능실험기로 인장속도를 290mm/min와 780mm/min로 하여 실험한 결과는 다음과 같다. 1) 낚시의 직경은 d, 미늘 기부에서 허리굽이까지의 거리를 w라 하면 낚시의 파단하중은 $B={\alpha}\;wd^2+\beta$ (단, B는 kg, w와 d는 mm)로 나타내며, 인장연도가 290mm/min 일 때의 $\alpha,\;\beta$는 둥근형 낚시 $SR_{p}-F_{1}B,\;SR_{p}-F_{1}S$$\alpha_{s}=0.5,\;\beta_{s}=1.6$, 모난형 낚시 $SA_{a}-F_{1}S,\;SA_{a}-F_{1}S_k,\;LA_{a}-F_{1}S_{k}$$\alpha_{s}=1.1,\;\beta_{s}=2.0$긴 낚시 $LA_{p}-F_{1}S$$\alpha_{s}=0.4,\;\beta_{s}=1.5$정도이다. 2) 인장속도가 780mm/min 일 때 윗식에서 $\alpha,\;\beta$는 둥근형 낚시는 $\alpha_{f}=0.4,\;\beta_{f}=1.4$모난형 낚시는 $\alpha_{f}=1.0$ 일본산은 $\beta_{f}=0.9$, 국산은 $\beta_{f}=-2.5$ 긴 낚시는 $\alpha_{=}0.6,\;\beta_{f}=0.4$ 정도이다. 3) 낚시의 파단변형률은 $40\sim60\%$ 정도이며, 인장속도가 빠를 때의 변형률은 느릴 때에의 $95\%$ 정도이나, 빠를 때의 파단하중은 느릴 때의 $80\%$ 정도이다. 4) 낚시가 파단되는 부위는 인장속도에 관계없이 거의 모두 허리굽이 부분이며 꼭지 기부에서 파단점까지의 거리는 낚시 길이와 거의 같다.

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단층슬립의 기하분석에 의한 양산단층의 거동 특성 (Behavioral Characteristics of the Yangsan Fault based on Geometric Analysis of Fault Slip)

  • 장천중;장태우
    • 지질공학
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    • 제19권3호
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    • pp.277-285
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    • 2009
  • 단층슬립의 기하분석에 의한 단층의 거동특성을 평가하고자 주단층의 주향변화, 단층 선단부의 발달 상태, 단층대의 폭의 주기적 변화, 단층암의 변형양상, 2차 소단층의 각관계를 근거로 양산단층의 주향을 따라 남쪽 양산에서 북쪽으로 포항시 신광면에 이르는 구간을 5개의 구역($A{\sim}E$)으로 구분하였다. 또한 가상의 단층비지를 대상으로 시행한 이전 여러 실험연구 결과들로부터 얻어진 단층작용의 운동 양상과 변형 조직과의 관계를 양산단층에 적용하고자 하였다. 단층의 미끄럼 거동을 이해하기 위하여 양산단층을 따라 단층의 자세와 단층슬립을 측정하였고, 주단층과 2차 소단층의 Riedel shear 각 관계를 분석하였다. 양산단층 각 구역에서 주단층과 2차 단열의 방향성 및 단층슬립을 이용하여 각 구역별 단층의 거동특성을 해석한 결과 A, D 및 E와 같은 직선구역들은 안정된 전단운동을 한 creeping 운동의 구역으로 평가되었고, 반대로 B와 같은 곡선구역은 stick-slip 운동을 한 locked 구역으로 평가되었다.

ECAP 성형가공한 Al 2024 초미세결정립 재료의 소성변형량에 따른 강도 변화 (Strength Change due to Plastic Deformation in Al 2024 Ultrafine Grained ECAP Metal)

  • 최정우;마영화;윤기봉
    • 대한기계학회논문집A
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    • 제29권10호
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    • pp.1407-1415
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    • 2005
  • Strength change of an over-aged A12024 material was studied after being subjected to stages of severe plastic deformation by ECAP (Equal Channel Angular Pressing). Various kinds of strength value were measured using the conventional tensile test, Rockwell and Vickers hardness and the SP (small punch) test Due to limitation of the specimen size, tension test in transverse direction could not be conducted. Hence, SP test was employed for assessing the strength in transverse direction. Based on TEM observation the measured strength characteristics were explained based on the relation between microstructure, dislocation and strength. As the number of ECAP pass increases, the strength of A12024 was also increased. However, considerable change of strength, which is generally predicted, was not observed in this study. For the strength in transverse direction even decrease of the strength was observed after 6 passes of ECAP. It was argued that this decrease was due to dynamic recovery of dislocation density during or after ECAP processes at $150^{\circ}C$. The strength assessment equation proposed by the authors in the previous paper was shown to be very accurate. This argument was supported by comparing the results of conventional tensile test with those of SP test. It was also pointed that the Rockwell har(3ness value seemed to be able to represent the strength in the transverse direction.

Microfabrics of omphacite and garnet in eclogite from the Lanterman Range, northern Victoria Land, Antarctica

  • Kim, Daeyeong;Kim, Taehwan;Lee, Jeongmin;Kim, Yoonsup;Kim, Hyeoncheol;Lee, Jong Ik
    • Geosciences Journal
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    • 제22권6호
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    • pp.939-953
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    • 2018
  • We examined the microfabrics of omphacite and garnet in foliated eclogite to determine the influence of the layered structure on seismic observations in subduction zone. The analyzed eclogite, from the Lanterman Range, northern Victoria Land, Antarctica, is characterized by layering in which the modal abundances of garnet and omphacite vary. For garnet, the low aspect ratios, similar angular distribution of long axes relative to the foliation in both layers, uniform grain size distribution, near-random crystallographic preferred orientations (CPOs), and misorientation angle distributions are indicative of passive behavior during deformation. In contrast, omphacite shows relatively high aspect ratios, a low angle between the long axes of crystals and the foliation, a wide grain-size distribution, and distinctive CPOs, suggesting dislocation creep as the main deformation mechanism. The results of fabric analyses are consistent with strain localization into omphacite or omphacite-rich layers rather than garnet or garnet-rich layers. The single-crystal seismic anisotropy of garnet is very weak ($AV_P=0.2%$, $AV_S=0.5-0.6%$), whereas that of omphacite is much stronger ($AV_P=3.7-5.9%$ and $AV_S=2.9-3.8%$). Seismic anisotropy of the omphacite-rich layers shows an increase of 329% for $AV_P$ and 146% for $AV_S$ relative to the garnet-rich layers. Our results demonstrate the importance of the layered structure in strain localization and in the development of the seismic anisotropies of subducting oceanic crust.