• 제목/요약/키워드: New friction materials

검색결과 117건 처리시간 0.026초

스프링형과 마찰형 기계식 임플란트 토크 렌치의 정확도에 관한 연구 (Accuracy of spring-style and friction-style mechanical implant torque wrench)

  • 차동희;오상천
    • 대한치과보철학회지
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    • 제54권1호
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    • pp.8-13
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    • 2016
  • 목적: 본 연구의 목적은 두 가지(스프링형, 마찰형) 종류의 기계식 임플란트 토크 렌치를 2000회의 반복 사용과 100회의 멸균과정 후 그들의 정확도를 평가하는 것이다. 재료 및 방법: 각기 다른 5개 제조사의 스프링형, 마찰형 기계식 임플란트 토크 렌치가 각 15개씩, 총 30개 사용되었다. 디지털 토크 측정기(MGT-12, Mark-10 Corp, USA)를 이용하여 토크값을 실험 전 최초 측정 후 각 토크 렌치를 같은 조건(목표 토크 값까지 20회씩 반복 사용 후 멸균봉투에 포장하여 고압증기 멸균 시행)으로 100회 반복 시행하였다. 그 후 다시 토크값을 측정하여 비교하였다. 수집된 자료는 SPSS 통계분석 프로그램을 이용하여 분석하였고 오차율을 계산하였다. Mann-Whitney-U test를 이용하여 실험군 사이의 유의성을 분석하였다(P<.05). 결과: 스프링형 토크 렌치는 실험 전후로 토크값의 유의할만한 차이를 보이지 않았다(P>.05). 반면에 마찰형 토크 렌치는 실험 전후로 토크값의 유의할만한 차이를 나타내었으며(P<.05), 10% 이상의 오차율이 모두 마찰형 토크 렌치에서 나타났다. 결론: 본 연구의 제한된 실험 조건하에서 스프링형 토크 렌치가 마찰형 토크 렌치보다 사용횟수와 멸균과정을 고려했을 때 더욱 신뢰성이 높은 정확도를 보였다.

임도비탈면의 복원을 위한 식생기반재 돌망태의 안정성 분석 (Using Gabion Systems with Vegetation Base Materials on Stability Analysis for the Forest Road Cut-slope Rehabilitation Techniques)

  • 박재현;정용호;최형태
    • 한국환경복원기술학회지
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    • 제12권2호
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    • pp.106-113
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    • 2009
  • In this study, stability of the new gabion system with vegetation base materials was analysed. New gabion system with vegetation base materials is a new approach which has been developed to achieve lope stabilization and revegetation of forest road cut-slope by making the best use of advantages of gabion systems with vegetation base materials. Results from stability analysis are as follows. For the soil density, the angle of internal friction and unit weight of the rock fill was assumed to be $1.90g/cm^3$, $30^{\circ}$ and $2.30t/m^3$, respectively, the slope stability analysis showed that the new gabion system couldn't require any poles to fix it up, and could keep stable during both rainy and dry seasons. As the results of checks against overturning and sliding, the retaining wall with. the new gabion system could produce suitable factors of safety for overturning and sliding. Vegetation established on the surface of the new gabion systems indirectly can help to increase slope stability by prevention of surface erosion. Consequently, the new gabion system with vegetation base materials could achieve the desired effect on slope stabilization as much as existing gab ion system could do, and could promote rapid establishment of vegetation on cut-slopes.

Cf/C-Cu- New Sliding Electrical Contact Materials

  • Ran, Liping;Yi, Maozhong;Peng, Ke;Yang, Lin;Ge, Yicheng
    • Carbon letters
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    • 제10권2호
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    • pp.94-96
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    • 2009
  • [ $C_f/C-Cu$ ]composites were fabricated by infiltrating molten Cu into different $C_f/C$ preforms prepared by chemical vapor infiltration, resin impregnation and carbonization. The microstructure and properties of the composites were investigated. The results show that Cu in the composites filled the pores and showed network-like distribution. Compared with homemade J204 brush material and certain grade pantograph slider from abroad, the composites have higher flexural strength and better electrical conductivity. The friction and wear properties of the composites are better than that of J204, and closed to that of the abroad material.

마이크로관 내 압력강하 특성 및 상관식에 관한 연구 (Pressure Drop in Microtubes and Correlation Development)

  • 황윤욱;김주혁;김민수
    • 설비공학논문집
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    • 제18권1호
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    • pp.38-46
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    • 2006
  • The characteristics about the pressure drop in microtubes have been investigated. The test tubes are the circular, seamless, stainless steel tubes with an inner diameter of 0.244, 0.430, and 0.792 mm, respectively. R-l34a was used as a test fluid. Early flow transition which has been reported in some previous studies is not found in single-phase flow pressure drop tests. The conventional theory between friction factor and Reynolds number predicted the experimental friction factors within an absolute average deviation of $8.9\%$. The two-phase flow pressure drop increases for higher quality and mass flux, and for reduced inner diameter. The existing correlations fail to predict the experimental data. A new correlation to predict the two-phase flow pressure drop is developed in the form of the Lockhart-Martinelli correlation. The effects of the tube diameter and the surface tension were considered, and the correlation predicted the experimental data within an average absolute deviation of $8.1\%$.

내마모성이 향상된 기능성 표면구조를 갖는 인공관절에 관한 기초적인 연구 (A Basic Study on Functional Friction Surface of Artificial Joints)

  • 김동욱
    • 대한의용생체공학회:의공학회지
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    • 제22권6호
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    • pp.519-526
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    • 2001
  • At present. about 0.3 million and more THRs (Total Hip Replacement) in a rear are being done worldwide. The increase in mechanical failure with the increase in THR, required more revisions. Revisions compensate mainly the wear of the artificial joint frictional surface and the loosening of the cup and stem. According to recent researches, loosening is mainly due to wear debris UHMWPE (Ultra High Molecular Weight Polyethylene) from frictional surfaces . To overcome the wear problems associated with artificial joint materials , new surface structures with regular Patterns were designed and fabricated The lubrication Properties were examined to evaluate the wear of the frictional surfaces. The surface structure manifested a Pattern of "dents" with a 0.2-1.0 mm of diameter and 0.6-2.0 mm of Pitch. From the friction test of the SUS316L vs UHMWPE using the frictional tester, we found that the lubrication Performance was improved due to of drastically reduced amount of abrasion. There were optimum sizes for the diameter and the pitch of the Pattern. The results demonstrated that the lubrication properties could be improved by Patterning of the frictional surfaces. The surface Patterning was effective in preventing wear of the frictional surfaces, and the life of an artificial joint could be extended with such Patterning.

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접촉 조건에 따른 C/C-SiC-Cu복합재와 Al/SiC복합재의 마모 특성에 관한 연구 (Tribological Characteristics of C/C-SiC-Cu Composite and Al/SiC Composite Materials under Various Contact Conditions)

  • 김병국;신동갑;김창래;구병춘;김대은
    • 대한기계학회논문집A
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    • 제41권1호
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    • pp.21-30
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    • 2017
  • 디스크 브레이크의 온도는 제동 시 변할 수 있으며 이러한 표면 온도의 변화는 마찰/마모 특성에 영향을 줄 수 있다. 따라서 효율이 우수한 브레이크 개발을 위해서는 브레이크 소재의 마찰/마모 특성에 대한 이해가 필요하다. 본 연구에서는 디스크 브레이크 시스템에 사용되는 C/C-SiC-Cu복합재와 Al/SiC복합재에 대하여 표면 온도와 접촉압력에 따른 마찰/마모 특성을 비교하였다. 이를 위해 온도 및 하중조절이 가능한 pin-on-reciprocating방식의 마찰실험기를 사용하였다. 실험결과, 마찰은 온도와 거리에 따라 현저하게 변하였다. 또한 마모로 인하여 생성된 입자가 접촉 압력에 의해 표면에 뭉쳐져 transfer layer가 형성되었고, 표면 거칠기가 증가하였다. 이러한 연구 결과는 다양한 조건에서 작동하는 브레이크 시스템 개발을 위한 기초자료로 활용될 수 있을 것이다.

潤滑添加劑로서의 N-Iodopyridinium Dichlorodate의 화학반응성 (Chemical Reactivity of N-Iodopyridinium Dichlorodate as a Lubricant Additive)

  • 문탁진;권오승
    • 대한화학회지
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    • 제19권1호
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    • pp.43-49
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    • 1975
  • 소량의 요오드 화합물이 윤활류에 함유될 때 금속표면사이의 마찰을 감소시키고 내마모성을 향상시키는데 이는 금속표면에 박층상구조의 이요오드화물이 형성되기 때문이라고 한다. 그러나 금속표면에서의 화학반응성, 마모와 극압실험 및 hot wire method에 의한 결과에 의하면 윤활기구는 이 요오드화물의 박층상 구조가 아니고 다른 기구에 의한 것임을 알았다. 유기 요오드화합물중에서 특히 N-iodopyridinium dichlorodate는 double charge transfer complex로써 다른 methyl iodide계의 화합물 보다 금속표면 사이의 마찰을 더욱 감소시키고 윤활기구는 interhalogen의 화학반응에 의한 것임을 알았다.

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고온 환경에서 합금의 마모 및 마찰 특성에 관한 연구 (A Study on Wear Properties of Alloys in High Temperature Condition)

  • 최승윤;;김대은
    • Tribology and Lubricants
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    • 제35권1호
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    • pp.24-29
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    • 2019
  • In this work we investigated the friction and wear characteristics of a magnesium alloy, which has been receiving much attention as a light metal in industrial applications such as automobiles and aerospace. Magnesium is one of the lightest structural material that has high specific strength, lightweight, low density and good formability. However, current issue of using magnesium alloy is that magnesium has weakness against temperature. As the temperature increases, magnesium undergoes poor creep resistance and ease of softening, and therefore, its mechanical strength decreases sharply. To solve this issue, a new type of magnesium alloy that retains high strength at high temperature has been proposed. The tribological behavior of this alloy was investigated using a tribotester with reciprocating motion and heating plate. A stainless steel ball was used as a counter surface. Results showed that extrusion process has similar wear behavior to the commonly used casting process but retains good mechanical strength and durability. The presence of an alloying element enhanced the wear properties especially in high temperature. This study is expected to be utilized as fundamental data for the replacement of high density materials currently used in mechanical industries to a much lighter and durable heat-resistant materials.

Interfacial Material Engineering for Enhancing Triboelectric Nanogenerators

  • Nguyen, Dinh Cong;Choi, Dukhyun
    • 센서학회지
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    • 제31권4호
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    • pp.218-227
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    • 2022
  • Triboelectric nanogenerators (TENGs), a new green energy, that have various potential applications, such as energy harvesters and self-powered sensors. The output performance of TENGs has been improving rapidly, and their output power significantly increased since they were first reported owing to improved triboelectrification materials and interfacial material engineering. Because the operation of a TENG is based on contact electrification in which electric charges are exchanged at the interface between two materials, its output can be increased by increasing the contact area and charge density. Material surface modification with microstructures or nanostructures has increased the output performance of TENGs significantly because not only does the sharp micro/nano morphology increases the contact area during friction, but it also increases the charge density. Chemical treatment in which ions or functional groups are added has also been used to improve the performance of TENGS by modifying the work functions, charge densities, and dielectric constants of the triboelectric materials. In addition, ultrahigh output power from TENGs without using new materials or treatments has been obtained in many studies in which special structures were designed to control the current release or to collect the charge current directly. In this review, we discuss physical and chemical treatments, bulk modifications, and interfacial engineering for enhancing TENG performance by improving contact electrification and electrostatic induction.

Performance-based Design of 300 m Vertical City "ABENO HARUKAS"

  • Hirakawa, Kiyoaki;Saburi, Kazuhiro;Kushima, Souichirou;Kojima, Kazutaka
    • 국제초고층학회논문집
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    • 제3권1호
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    • pp.35-48
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    • 2014
  • In designing a 300 meter high skyscraper expected to be the tallest building in Japan, an earthquake-ridden country, we launched on the full-scale performance based design to ensure redundancy and establish new specifications using below new techniques. The following new techniques are applied because the existing techniques/materials are not enough to meet the established design criteria for the large-scale, irregularly-shaped building, and earth-conscious material saving and construction streamlining for reconstructing a station building are also required: ${\bullet}$ High strength materials: Concrete filled steel tube ("CFT") columns made of high-strength concrete and steels; ${\bullet}$ New joint system: Combination of outer diaphragm and aluminium spray jointing; ${\bullet}$ Various dampers including corrugated steel-plate walls, rotational friction dampers, oil dampers, and inverted-pendulum adaptive tuned mass damper (ATMD): Installed as appropriate; and ${\bullet}$ Foundation system: Piled raft foundation, soil cement earth-retaining wall construction, and beer bottle shaped high-strength CFT piles.