• Title/Summary/Keyword: Plastic part

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Round robin analysis to investigate sensitivity of analysis results to finite element elastic-plastic analysis variables for nuclear safety class 1 components under severe seismic load

  • Kim, Jun-Young;Lee, Jong Min;Park, Jun Geun;Kim, Jong-Sung;Cho, Min Ki;Ahn, Sang Won;Koo, Gyeong-Hoi;Lee, Bong Hee;Huh, Nam-Su;Kim, Yun-Jae;Kim, Jong-In;Nam, Il-Kwun
    • Nuclear Engineering and Technology
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    • v.54 no.1
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    • pp.343-356
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    • 2022
  • As a part of round robin analysis to develop a finite element elastic-plastic seismic analysis procedure for nuclear safety class 1 components, a series of parametric analyses was carried out on the simulated pressurizer surge line system model to investigate sensitivity of the analysis results to finite element analysis variables. The analysis on the surge line system model considered dynamic effect due to the seismic load corresponding to PGA 0.6 g and elastic-plastic material behavior based on the Chaboche combined hardening model. From the parametric analysis results, it was found that strains such as accumulated equivalent plastic strain and equivalent plastic strain are more sensitive to the analysis variables than von Mises effect stress. The parametric analysis results also identified that finite element density and ovalization option in the elbow elements have more significant effect on the analysis results than the other variables.

Primary cutaneous CD4+ small/medium T-cell lymphoma: a case report

  • Kim, Jeenam;Jeong, Minkyoung;Jun, Dongkeun;Lee, Myungchul;Shin, Donghyeok;Kim, Wookyoun;Choi, Hyungo
    • Archives of Craniofacial Surgery
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    • v.22 no.4
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    • pp.199-203
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    • 2021
  • Primary cutaneous CD4+ small/medium T-cell lymphoproliferative disorder is a rare disease characterized by a single mass on the face or upper part of the trunk. It usually presents an asymptomatic and favorable progression, and its histopathologic findings include small and medium-sized lymphoid cells. The authors report a case of primary cutaneous CD4+ small/medium T-cell lymphoproliferative disorder on the forehead. A 51-year-old man presented with a protruding mass on his forehead that the patient had noted 1 month previously. Surgical excision and a permanent biopsy were performed under local anesthesia. Based on the biopsy results, the mass was diagnosed as a primary cutaneous CD4+ small/medium T-cell lymphoproliferative disorder. There was no evidence of recurrence at a 15-month follow-up visit.

Nasal Osteotomies Revisited in Asians: Surface Aesthetics, Anatomical and Technical Considerations

  • Jae-Yong Jeong;Taek-Kyun Kim;Inhoe Ku;Bakhtiyor Najmiddinov
    • Archives of Plastic Surgery
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    • v.51 no.1
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    • pp.2-13
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    • 2024
  • Background Although osteotomy is commonly performed in rhinoplasty, it is difficult for less experienced surgeon to understand mechanism of the procedure. The primary goal of this study is to improve understanding of nasal osteotomy in Asians by considering the surface aesthetics and anatomy of the nose as well as their relationships with the surgical procedure. Methods Surface aesthetics, anatomic considerations, kinetics of medial and lateral osteotomy, fracture levels of osteotomy were discussed in detail by reviewing the previous publications and 18 years of our experience. Moreover, the technical details of osteotomy were explained and personal tips for performing successful osteotomy were described. Results Dorsal and lateral aesthetic lines, dorsal and basal widths are main characteristics related to the surface aesthetics of nose to perform the osteotomy. In addition, these features are different in Asian population due to the anatomic difference with Caucasians, which makes the procedure difficult and requires more attention to perform osteotomy. Conclusion Because osteotomy is one of the most traumatic and invasive part of the rhinoplasty, it is crucial for the rhinoplasty surgeon to understand the relationship between surface aesthetics and osteotomy techniques to produce consistent and reproducible results.

A Study of the Plastic Deformation in Axisymmetric Combined Extrusion (축대칭 복합압출공정의 소성변형 연구)

  • 한철호
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.18 no.8
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    • pp.2005-2015
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    • 1994
  • An analytical method based on the upper bound approach for the cup-bar axisymmetric combined extrusion is presented to determine the deformation zones as well as extrusion load and deformed geometry in the early stage. A new kiematically admissible velocity field is derived by the appropriate transformation of the original velocity field and applying the flow function approach. The derived velocity field is directly related to the boundary function for the plastically deforming zones and the parameter controlling the flow direction to the forward part or backward part. Experiments are carred out with the annealed aluminum 2024 at room temperature for the various area reductions. The workhardening effect is considered in the formulation as a function of the height ratio between the deformed billet and the orighinal billet to calculate the extrusion pressures. The theoretical predictions for the extrusion loads and deformed configuration are in good agreement with the experimental results.

Replantation of a Distal Lower Leg in an Elderly Patient After Retrieval of the Limb from Seawater Immersion (바다에서 건진 절단된 하지 원위부의 재접합)

  • Woo, Sang Hyun;Oh, Kyoung Sok
    • Archives of Reconstructive Microsurgery
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    • v.9 no.2
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    • pp.186-189
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    • 2000
  • A case of distal lower leg replantation, in an elderly patient, was successfully performed after retrieval of the amputated limb from 3 hours of immersion in seawater. Due to the patient's age, bony union was delayed and functional nerve recovery was unsatisfactory. After massive saline irrigation of the amputated part, employing a catheter through the main artery, as well as, prophylactic antibiotics to prevent infection by Aeromonas, there were no postoperative complications. Despite the issue of age, immersion of an amputated part into seawater is not a contraindication of replantation.

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Prediction of the Residual Stress for a Steel Plate after Roller Leveling - Part I : Development of the Model (롤러 레벨링 공정시 후판의 잔류응력 예측 - Part I : 모델 개발)

  • Ye, H.S.;Hwang, S.M.
    • Transactions of Materials Processing
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    • v.22 no.1
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    • pp.5-10
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    • 2013
  • Steel plates are widely used in many manufacturing areas such as ship and bridge construction industries and are fabricated by different forming processes. Steel plates can have various shape defects, such as curl or camber. Roller leveling reduces the magnitude of the residual stress by using small amounts of reverse bending via an appropriate arrangement of the rolls and the associated plastic deformation in the steel plate. In this study a model for the residual stress after roller leveling is developed. In order to simplify the formulation, a plane-strain condition is assumed and the stress in the thickness direction is assumed to be negligible. The camber deformation in a real sized plate are measured and compared with the prediction values from the model to validate the accuracy of the model.

Plastic Flow Prediction of Automobile Door-Handle Using Injection Molding Simulation Programs (플라스틱 유동해석 프로그램을 이용한 자동차 도어 핸들의 유동예측)

  • 한성렬;강철민;유호종;정영득
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.10a
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    • pp.295-298
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    • 2004
  • Automobile door-handle is assembled with three parts that are base, skin and cover. Over-molding processing makes assembly of the base and skin. The skin part that was made by PVC polymer has various thickness. Plastic injection molding simulation of part including significant changed thickness as skin is an inaccuracy comparing with real injection molding. To solve this problem, two commercial flow prediction software that are Moldflow MPI and MAPS 3D were used in this study. Simulations were conducted for three types mesh. Taguchi method was applied for simulation experiments. It will be need to compare with simulation results and real over-molding behavior in the near future.

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Forging Process Design for Dimensional Accuracy of an Irregular Shape Product (치수 정밀도 향상을 위한 비대칭 정밀제품의 단조공정 설계)

  • 이선홍;최창혁;김성태;김용조
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.10a
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    • pp.1097-1100
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    • 2004
  • A rear axle spider in an irregular shape, which is used as a part in the braking system of a vehicle like a big truck and a trailer, is subjected to a large torque and hence requires both strength and endurance over the brake heat. This part should be therefore manufactured in dimensional accuracy. The practical manufacturing process of this irregular product requires the heat treatment process after hot forging and then the cold coining process for the dimensional accuracy. At the present study, the warm coning without the heat treatment process was proposed to employ the residual heat due to the hot forging process. And also the trimming and piercing process was designed using the rigid-plastic finite element method. The mechanical properties were discussed and also commented upon.

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3D Finite Element-based Study on Skin-pass Rolling - Part I : Finite Element Analysis (3차원 유한요소법에 기초한 조질 압연 공정 해석 - Part I : 유한요소해석)

  • Yoon, S.J.;Hwang, S.M.
    • Transactions of Materials Processing
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    • v.25 no.2
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    • pp.130-135
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    • 2016
  • Rolled products often have residual stresses or strip waves that are beyond the customer’s tolerance. To resolve this problem, skin-pass rolling is widely used during post-processing of such products. Because a short contact length compared to the strip width is a characteristic of skin-pass rolling, several numerical analyses have been previously conducted based on a two-dimensional approach. In the current study, a series of simulations was conducted using numerical analysis of three-dimensional elastic-plastic finite element method.

3D Finite Element-based Study on Skin-pass Rolling - Part II : Development of the Model (3차원 유한요소법에 기초한 조질 압연 공정 해석 - Part II : 모델 개발)

  • Yoon, S.J.;Hwang, S.M.
    • Transactions of Materials Processing
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    • v.25 no.2
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    • pp.136-140
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    • 2016
  • Although the finite element method is a good tool to analyze skin-pass rolling, it is hard to be applied in the field because of its long calculation time. In the current study, simple numerical models were developed for the prediction of roll force and residual stress profiles along the strip width. These models are based on finite element analysis and a coupled solution of Sims’ equation and Hitchcock’s formula. The results indicate that plastic strains can be represented as in simple equations of the deformed roll profile and the initial thickness of the strip.