• 제목/요약/키워드: Stress shielding

검색결과 82건 처리시간 0.03초

액상 실리콘과 금속화합물을 융합한 저선량 방사선 차폐 소재 개발을 위한 사전연구 (Preliminary Study for Development of Low Dose Radiation Shielding Material Using Liquid Silicon and Metalic Compound)

  • 장서구;한수철;강성진;임성욱;이성수
    • 대한방사선기술학회지:방사선기술과학
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    • 제40권3호
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    • pp.461-468
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    • 2017
  • 본 연구는 진단용 X선 에너지 영역에서 고순도의 납 0.5mm 와 실리콘(Si)과 이산화티탄($TiO_2$)을 이용한 X선 융합차폐체의 선량을 측정하고 차폐율을 비교 측정하였다. 실험을 위하여 실리콘(Si)과 이산화티탄($TiO_2$)을 혼합하여 1 mm 두께의 패드형 차폐체를 제작하고, 차폐체의 두께를 1mm 씩 증가시키며 X선을 조사하여 0 mR이 될 때까지 선량을 측정하였다. KS A 4025의 권고에 따라 X선 조사조건은 각각 60 kVp 20 mAs, 100 kVp 20 mAs로 하였으며, 두 개의 관전압 조건에서 차폐체가 없을 경우의 조사선량을 기준으로 차폐체가 있을 경우의 선량과 비교하여 차폐율을 구하였다. 두께 0.5 mm 납판 차폐체의 차폐율은 60 kVp에서 95.92%, 100 kVp에서 85.26%로 측정되었고, 실리콘(Si)과 이산화티탄($TiO_2$)패드 차폐체를 적용하였을 경우 60 kVp, 20 mAs 조건에서 두께가 11 mm 이상일 때 10회 조사 평균선량은 1.77 mR, 차폐율은 납판 0.5 mm 차폐체와 등가의 차폐율을 나타내었으며, 13 mm에서 측정선량이 0 mR이 되었다. 100 kVp, 20 mAs 조건에서는 17 mm 두께에서 납 0.5 mm 차폐체와 등가 이상의 차폐율이 관찰 되었고 23 mm 두께에서 100% 의 차폐율을 관찰할 수 있었다. 본 연구 결과를 통해 실리콘-이산화티탄 화합물은 실리콘의 물성이 그대로 존재하면서 금속화합물과 융합할 수 있다는 결과를 얻었으며, 이후 방사선 흡수가 더 뛰어난 금속화합물등과 혼합할 경우 납의 위해성을 포함하지 않으며, 재료와 가공성에서 경제적이며, 실리콘의 강점을 살려 탄성과 유연성이 뛰어난 저선량용 방사선 차폐재의 제작 가능성을 확인해 볼 수 있었다.

전자파 차폐 임부복 개발을 위한 고령 산모의 임부복 착용 실태조사 (Actual Wearing State of Aged Pregnant Women for the Development of Electromagnetic Waves Shielding Maternity Wear)

  • 김영임;이정란
    • 한국의류산업학회지
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    • 제21권5호
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    • pp.618-626
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    • 2019
  • This study conducted basic studies to develop electromagnetic wave shielding maternity wear. We investigated electromagnetic wave shielding fabrics and products as well as surveyed actual wearing states for pregnant women aged 35 to 44 and women who gave birth within the past one year. Available electromagnetic wave blocking products for pregnant women were blankets, aprons, maternity belts, and underwear. These only cover the abdomen and it was hard to find out electromagnetic waves shielding maternity wear, which can enhance functionality and complement the body shapes of pregnant women. The aged mother responded pregnancy delay was mostly attributable to late marriage, career, financial difficulty and health problems. Major health threats to babies were high stress levels during pregnancy, followed by electromagnetic waves from electronic devices. They prioritized physical activity, design, functionality and safety when wearing maternity wear. When purchasing maternity wear, they emphasized design, price, materials and size. The most preferred clothing was one-piece dress; consequently, only 11.1% of them were satisfied with the quality of maternity wear with complaints mostly about design and price. A total of 63% of respondents tried to protect themselves from electromagnetic waves. Most aged mothers showed a positive intention on purchasing electromagnetic waves blocking maternity wear for babies with concerns dealing with safety of materials, prices, ease of laundry, and body complementing design.

고주파 EMI 차폐 필름을 위한 트라이모달 실버 페이스트의 개발과 유연성, 내구성 및 차폐 특성에 대한 평가 (Development and Evaluation of Trimodal Silver Paste for High-Frequency EMI Shielding Films with a Focus on Flexibility, Durability, and Shielding Characteristics)

  • 남현진;김선우;김유빈;박세훈;구모세;남수용
    • 마이크로전자및패키징학회지
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    • 제31권3호
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    • pp.42-49
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    • 2024
  • 전자기파 차폐 소재의 시장에서는 고주파 대역에서의 뛰어난 차폐 성능과 함께 유연성과 내구성이 중요한 요구사항으로 부각되고 있다. 특히 전자기파 간섭 문제를 해결하기 위해 고성능 EMI 필름의 필요성이 커지고 있으며, 이는 스마트 전자기기, 자동차 전장 시스템, 통신 장비 등 다양한 산업 분야에서 더욱 중요해지고 있다. 본 연구에서는 트라이모달 실버 페이스트를 개발하고 EMI 필름으로 제작하여 그 성능을 평가하였다. 개발된 실버 페이스트는 변성 에폭시 바인더를 사용하여 스크린 인쇄 공정에 적합한 물성을 갖추었으며, 5G 영역의 고주파 대역(26.5 GHz ~ 40 GHz)에서 차폐 성능이 평균 -99 dB로 우수함을 확인하였다. 특히 33.6 GHz에서 -90.3 dB의 차폐 효과를 보였다. 유연성 및 내구성 테스트 결과, 곡률반경 1 mm에서도 필름의 유연성을 유지하며 벤딩 사이클 시험에서 outer 벤딩의 경우 초기 저항이 0.51 Ω에서 10,000 사이클 후 0.64 Ω로 약 25.5% 증가하였고, inner 벤딩에서는 약 3.6% 감소하여 압축 응력에 대한 저항 감소를 확인하였다.

Short Humeral Stems in Shoulder Arthroplasty

  • Oh, Hwang Kyun;Lim, Tae Kang
    • Clinics in Shoulder and Elbow
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    • 제21권2호
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    • pp.105-110
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    • 2018
  • Since the introduction of shoulder arthroplasty by Neer in 1974, the design of not only the glenoid component but also the humeral component used in shoulder arthroplasty has continually evolved. Changes to the design of the humeral component include a gradually disappearing proximal fin; diversified surface finishes (such as smooth, grit-blasted, and porous coating); a more contoured stem from the originally straight and cylindrical shape; and the use of press-fit uncemented fixation as opposed to cemented fixation. Despite the evolution of the humeral component for shoulder arthroplasty, however, stem-related complications are not uncommon. Examples of stem-related complications include intraoperative humeral fractures, stem loosening, periprosthetic fractures, and stress shielding. These become much more common in revision arthroplasty, where patients are associated with further complications such as surgical difficulty in extracting the humeral component, proximal metaphyseal bone loss due to stress shielding, intraoperative humeral shaft fractures, and incomplete cement removal. Physicians have made many attempts to reduce these complications by shortening the stem of the humeral component. In this review, we will discuss some of the limitations of long-stem humeral components, the feasibility of replacing them with short-stem humeral components, and the clinical outcomes associated with short-stemmed humeral components in shoulder arthroplasty.

Thermomechanical Properties of Thermal-Stress Relief Type of Functionally Gradient Materials

  • Watanabe, Ryuzo
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 1993년도 추계학술강연 및 발표대회강연 및 발표논문 초록집
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    • pp.2-2
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    • 1993
  • The present status of the thennomechanica1 evaluation of functionally gradient materials(FGMs) for space plane application was reviewed, in which research activities and the cooperation of the national project team organized to study FGM science were demonstrated. The project team was divided into three working groups; de singing, processing and evaluation, each of which had their own tasks in the project cooperation. The testings details of the various thennomechanical tests for the FGM samples fabricated by the processing groups were described, along with their corresponding heating conditions of the real environments in the space plane application. For small-sized samples, laser beam heating test and burner heating test were well applied to study the heat shielding and heat resisting properties. Arc-heated wind tunnel test and high temperature!high velocity gas flow test were used for large-sized panel assemblies having cooling structures. The criteria for the evaluation of the heat shielding and heat resisting properties of the FGMs, as well as a crack activation mechanism in their differential temperature heating, were proposed on the basis of the observation in the burner heating test.

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금속 생체재료를 위한 Sn 함량에 따른 Zr-7Cu 합금설계 (Zr-7Cu Alloy Design According to Sn Content for Bio-Metallic Materials)

  • 김민석;김정석
    • 한국재료학회지
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    • 제31권12호
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    • pp.690-696
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    • 2021
  • The purpose of this study is to develop a zirconium-based alloy with low modulus and magnetic susceptibility to prevent the stress-shielding effect and the generation of artifacts. Zr-7Cu-xSn (x = 1, 5, 10, 15 mass%) alloys are prepared by an arc melting process. Microstructure characterization is performed by microscopy and X-ray diffraction. Mechanical properties are evaluated using micro Vickers hardness and compression test. The magnetic susceptibility is evaluated using a SQUID-VSM. The average magnetic susceptibility value of the Zr-7Cu-xSn alloy is 1.176 × 10-8 cm3g-1. Corrosion tests of zirconium-based alloys are conducted through polarization test. The average Icorr value of the Zr-7Cu-xSn alloy is 0.1912 ㎂/cm2. The elastic modulus value of 14 ~ 18 GPa of the zirconium-based alloy is very similar to the elastic modulus value of 15 ~ 30 GPa of the human bone. Consequently, the Sn added zirconium alloy, Zr-7Cu-xSn, is very interesting and attractive as a biomaterial that reduces the stress-shielding effect caused by differences of elastic modulus between human bone and metallic implants. In addition, this material has the potential to be used in metallic dental implants to effectively eliminate artifacts in MRI images due to low magnetic susceptibility.

생체의료용 임플란트 소재를 위한 Zr-7Si-xSn 합금설계 (Design of Zr-7Si-xSn Alloys for Biomedical Implant Materials)

  • 김민석;김정석
    • 열처리공학회지
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    • 제35권1호
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    • pp.8-19
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    • 2022
  • The metallic implant materials are widely used in biomedical industries due to their specific mechanical strenth, corrosion registance, and superior biocompatability. These metallic materials, however, suffer from the stress-shielding effect and the generation of artifacts in the magnetic resonance imaging exam. In the present study, we develope a Zr-based alloys for the biomedical implant materials with low elastic modulus and low magnetic susceptibility. The Zr-7Si-xSn alloys were fabricated by an arc melting process. The elastic modulus was 24~31 GPa of the zirconium-based alloy. The average magnetic susceptibility value of the Zr-7Si-xSn alloy was 1.25 × 10-8cm3g-1. The average Icorr value of the Zr-7Si-xSn alloy was 0.2 ㎂/cm2. The Sn added zirconium alloy, Zr-7Si-xSn, is very interested and attractive as a biomaterial that reduces the stress-shielding effect caused by the difference of elastic modulus between human bone and metallic implant.

INTERACTION BETWEEN THREE MOVING GRIFFITH CRACKS AT THE INTERFACE OF TWO DISSIMILAR ELASTIC MEDIA

  • Das, S.;Patra, B.;Debnath, L.
    • Journal of applied mathematics & informatics
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    • 제8권1호
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    • pp.59-69
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    • 2001
  • The paper deals with the interaction between three Griffith cracks propagating under antiplane shear stress at the interface of two dissimilar infinite elastic half-spaces. The Fourier transform technique is used to reduce the elastodynamic problem to the solution of a set of integral equations which has been solved by using the finite Hilbert transform technique and Cooke’s result. The analytical expressions for the stress intensity factors at the crack tips are obtained. Numerical values of the interaction efect have been computed for and results show that interaction effects are either shielding or amplification depending on the location of each crack with respect to other and crack tip spacing. AMS Mathematics Subject Classification : 73M25.

3차원 유한 요소법을 이용한 골절판의 응력 해석 (Numerical Stress Analysis of bone plate System using 3-dimensional finite element method)

  • 김현수;권영수
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1991년도 춘계학술대회
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    • pp.74-78
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    • 1991
  • Conventional compression bone fracture plates sometimes cause osteoporosis under the plate due to their high rigidity which in turn transfer physiological load mostly through the plates and screws. In order to prevent the osteopenia we have designed a system which have a viscoelastic washer between plate and screw head. The washer is made of a biocompatible ploymer (untra high molecular weight polyethylene, UHMWPE). Three-dimensional finite element meshes of the human femur with the conventional and new concept bone plate ere generated and the comparative stress analyses are performed with static half-stance loading condition. The results of analyses showed that could reduce the stress shielding effect compared with the conventional plate.

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저응력하의 철/크롬 올버레이합금의 긁힘마모기구 (Low streee Abrasive Wer mechanism of the Iron/Chromium Hardfacing Alloy)

  • 백응률
    • Journal of Welding and Joining
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    • 제16권2호
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    • pp.73-83
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    • 1998
  • This study investigated the relationships between the microstructure and the wear resistance of hardfaced iron/chromium alloys to examine the low stress abrasive wear mechanism. The effects of volume fraction of reinforcing phases(chromium carbide and eutectic phase) were studied. The alloys were deposited once or twice on a mild steel plate using a self-shielding flux cored arc welding process. The low stress abrasion resistance of he alloys against dry sands was measured by the Dry Sand/Ruber Wheel Abrasion Tester (RWAT). The wear resistance of hypoeutectic alloys, below 0.36 volume fraction of chromium-carbide phase (VFC), behaved as Equal Pressure Mode (EPM) for the inverse rule of mixture whereas the wear resistance of hypereutectic alloys, above 0.36 VFC, represented Equal Wear Mode (EWM) for the linear rule of mixture.

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