• 제목/요약/키워드: physical and mechanical properties of film

검색결과 104건 처리시간 0.021초

A STUDY ON MECHANICAL PROPERTIES OF TiN, ZrN AND WC COATED FILM ON THE TITANIUM ALLOY SURFACE

  • Oh, Dong-Joon;Kim, Hee-Jung;Chung, Chae-Heon
    • 대한치과보철학회지
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    • 제44권6호
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    • pp.740-750
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    • 2006
  • Statement of problems. In an attempt to reduce screw loosening, dry lubricant coatings such as pure gold or tefron have been applied to the abutment screw. However, under repeated tightening and loosening procedures, low wear resistance and adhesion strength of coating material produced free particles on the surface of abutment screw and increased frictional resistance resulting in screw tightening problems. Purpose. The aim of this study was to compare friction coefficient, adhesion strength, vickers hardness and evaluate coating surface of titanium alloy specimens coated with TiN(titanium nitride), ZrN(zirconium nitride) and WC(tungsten carbide). Material and method. Titanium alloy(Ti-6Al-4V) discs of 12mm in diameter and 1mm in thickness divided into 4 groups. TiN, ZrN and WC was coated for the specimens of 3 groups respectively, and those of 1 group were not coated. Each group was made up of 4 specimens. In this study, sputtering method was used among the PVD(Physical Vapor Deposition) techniques available for TiN, ZrN and WC coatings. Friction coefficient, adhesion strength, vickers hardness and coating surface of 4 groups were measured. Results. 1. For all three coating conditions, friction coefficient was significantly decreased. Especially, ZrN coated surface showed the lowest value. $TiN(0.39{\pm}0.02)$, $ZrN(0.24{\pm}0.01)$, $WC(0.31{\pm}0.03)$. 2. TiN coating showed the highest adhesion strength, however ZrN coating had the lowest value. $TiN(25.3N{\pm}1.6)$, $ZrN(14.8N{\pm}0.6)$, $ WC(18.4N{\pm}0.7)$. 3. Vickers hardness of all three coatings was remarkably increased as compared with that of none coated specimen. TiN coating had the highest Vickers hardness, however WC coating showed the lowest value. $TiN(1865.2{\pm}33.8)$, $ZrN(1814.4{\pm}18.6)$, $WC(1008.5{\pm}35.9)$. 4. The ZrN or WC coated specimen showed a homogeneous and smooth surface, however the rough surface with defects was observed for TiN coating. Conclusions. When TiN, ZrN and WC coating applied to the abutment screw, frictional resistance would be reduced, as a result, the greater preload and prevention of the screw loosening could be expected.

폐목재파티클을 이용한 재생보드의 제조특성 (Manufacturing Characteristics of Boards Recycling Waste Wood Particle)

  • 김외정;서진석;한태형;박종영
    • 한국건설순환자원학회논문집
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    • 제2권1호
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    • pp.120-127
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    • 2006
  • 폐목질원료로서, 제재, 합판, PB, MDF와 폐침목 등의 해머밀에 의한 파쇄특성과 재생파티클 종류와 혼합비율에 따른 재생보드의 물성을 구명함으로써, 보드원료로서 재자원화 하는 방안을 모색해 보고자 하였다. 그 결과, 재생보드의 휨성질은 목질원료의 입자형태 및 입도분포에 크게 영향을 받으며, 파티클, 섬유와 같은 element가 압축고화된 상태의 판넬(PB, MDF)로부터 재생한 파티클은 물성저하를 초래하였다. 그러나, 재생파티클에 이미 도포 경화된 수지에 의해 재생보드의 치수안정성이 향상되는 효과가 있다. 따라서, 보드원료로서의 적합한 요건은 건전폐목재(제재, 합판)와 저급폐목재(PB, MDF)의 적정한 혼용에 있다고 할 수 있다. 본 연구에서는 건전폐목재 재생파티클과 재생 PB파티클의 혼용시험에서 제재파티클이 휨성질(MOR, MOE)과 박리강도에 기여하고, 합판파티클은 치수안정성에 더욱 기여하는 경향을 나타냈다. 또한 보드의 중층용 원료로 재생PB파티클의 혼합비율을 증가함에 따라서 보드의 휨성능이 감소되는 경향을 나타냈지만 혼합률 40%까지는 유의차가 없이 보드 15형(MOR : $153kgf/cm^2$, MOE : $27.5tonf/cm^2$) 수준의 성능이 구비되었다. 향후 생활폐목재(폐가구 등)와 같은 저급폐목재의 활용방안이 강구된다면 보드원료의 수급에 한층 기여할 수 있을 것이다.

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Dose Verification of Intensity Modulated Radiation Therapy with Beam Intensity Scanner System

  • Vahc, Young-Woo;Park, Kwangyl;Ohyun Kwon;Park, Kyung-Ran;Lee, Yong-Ha;Yi, Byung-Yong;Kim, Sookil
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2002년도 Proceedings
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    • pp.248-251
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    • 2002
  • The intensity modulated radiation therapy (IMRT) with a multileaf collimator (MLC) requires the conversion of a radiation fluence map into a leaf sequence file that controls the movement of the MLC during radiation treatment of patients. Patient dose verification is clinically one of the most important parts in the treatment delivery of the radiation therapy. The three dimensional (3D) reconstruction of dose distribution delivered to the target helps to verify patient dose and to determine the physical characteristics of beams used in IMRT. A new method is presented for the pretreatment dosimetric verification of two dimensional distributions of photon intensity by means of Beam Intensity Scanner System (BISS) as a radiation detector with a custom-made software for dose calculation of fluorescence signals from scintillator. The scintillator is used to produce fluorescence from the irradiation of 6MV photons on a Varian Clinac 21EX. The BISS reproduces 3D- relative dose distribution from the digitized fluoroscopic signals obtained by digital video camera-based scintillator(DVCS) device in the IMRT. For the intensity modulated beams (IMBs), the calculations of absorbed dose are performed in absolute beam fluence profiles which are used for calculation of the patient dose distribution. The 3D-dose profiles of the IMBs with the BISS were demonstrated by relative measurements of photon beams and shown good agreement with radiographic film. The mechanical and dosimetric properties of the collimating of dynamic and/or step MLC system alter the generated intensity. This is mostly due to leaf transmission, leaf penumbra and geometry of leaves. The variations of output according to the multileaf opening during the irradiation need to be accounted for as well. These phenomena result in a fluence distribution that can be substantially different from the initial and calculative intensity modulation and therefore, should be taken into account by the treatment planning for accurate dose calculations delivered to the target volume in IMRT.

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리기다소나무 단판적층재(單板積層材)의 제조조건(製造條件)에 따른 물리적성질(物理的性質) 및 도장성능(塗裝性能) (Suitable Conditions of Producing the LVL from Pitch Pine and its Paint Film Durability)

  • 박상범;공영토;조재명
    • Journal of the Korean Wood Science and Technology
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    • 제17권1호
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    • pp.3-11
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    • 1989
  • 리기다소나무 단판적층재(單板積層材)(LVL)의 가구용재(家具用材)로서의 적합성(適合成) 여부(與否)를 판단(判斷)하기 위한 기초자료(基礎資料)를 제공(提供)하고자 요소 멜라민수지(樹脂)와 페놀수지접착제(樹脂接着劑)를 사용(使用)하여 단판적층재(單板積層材)를 제조(製造), 그 물리적(物理的), 기계적(機械的) 성질(性質), 접착내구성(接着耐久性) 및 제조성능(製造性能)을 검토(檢討)한 결과(結果)는 다음과 같다. 1. 리기다소나무 LVL 제조(製造)를 위한 적정압체시간(適正壓締時間)은 단판(單板)두께 1mm당(當) 45초(秒) 이상이 요구(要求)되었다. 2. 휨강도(强度)는 소재(素材)에 비(比)해 낮았으나 압축강도(壓縮强度)는 비슷하였고 단판(單板)의 두께가 얇을수록 강도(强度)는 증가(增加)하는 경향(傾向)이였다. 3. 충격(衝擊)휨흡수(吸收)에너지는 두께 2.5cm의 경우(境遇) 섬유직각방향(纖維直角方向)(상(上))이 $0.03kg{\cdot}m/cm^2$, 섬유방향(纖維方向)이 $0.24kg{\cdot}m/cm^2$으로 $0.68kg{\cdot}m/cm^2$인 소재(素材)에 비(比)해 매우 낮았다. 4. 열압체시간(熱壓締時間)을 45초(秒)/mm 이상(以上)으로 하면 침지박리(浸漬剝離) 및 한열반복시험시(寒熱反復試驗時), 접착층(接着層)의 박리(剝離), 표면할열(表面割裂), 부풀음, 변색(變色) 등(等)이 발생(發生)하지 않았다. 5. 진공침수시험(眞空侵水試驗)은 결과(結果), 섬유방향(纖維方向)으로서 수축율(收縮率)은 약(約) 1.0%, 섬유직각방향(纖維直角方向)(횡방향(橫方向))은 약(約) 3%였으며, 1~4개(個) 정도(程度)의 표면할제(表面割裂)이 관찰(觀察)되었다. 6. 온냉건고시험(溫冷乾燥試驗)에 의한 리기다소나무 LVL의 도막할열(塗膜割裂)은 전혀 관찰(觀察)되지 않았다. 7. 리기다소나무 LVL을 내장용(內粧用)으로 사용(使用)할 경우(境遇), 부착용화장단판(付着用化粧單板)으로서는 단판자체(單板自體)의 할열(割裂)이 적은 단판(單板)을 사용(使用)하여야 하며 부착용화장단판(付着用化粧單板)과 LVL의 표면(表面)이 서로 직교(直交)되도록 접착(接着)해야 표면할열(表面割裂)의 발생(發生)이 적고 표면부착성(表面付着性)이 향상(向上)되었다. 결론적(結論的)으로 리기다소나무 LVL은 접착성(接着性)은 매우 양호(良好)하였으며 휨강도(强度), 압축강도(壓縮强度) 및 충격(衝擊)휨흡수(吸收)에너지 등(等)은 가구재료(家具材料)로써 적정수준(適正水準)이었으나 단판자체(單板自體)의 옹이 및 할열(割裂)로 인(因)해 가구재료(家具材料)로 사용(使用)할 경우(境遇), 품질(品質)이 좋은 단판(單板) 즉, 화장단판(化粧單板) 등(等)으로 표면(表面)해양 할 것으로 생각되었다.

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