• 제목/요약/키워드: Hardness of mating material

검색결과 6건 처리시간 0.019초

경질탄소 필름과 대면물질 경도변화에 대한 트라이볼로지 특성 (Tribology Characteristics of DLC Film Based on Hardness of Mating Materials)

  • 나병철;전중장호
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2003년도 학술대회지
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    • pp.50-55
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    • 2003
  • Tribological testing of DLC films was conducted using a rotating type ball on a disk friction tester in a dry chamber. This study made use of four kinds of mating balls that were made with stainless steel but subjected to diverse annealing conditions in order to achieve different levels of hardness. In all load conditions using martensite mating balls, the test results demonstrated that the friction coefficient was lower when the mating materials were harder. The high friction coefficient found in soft martensite balls appeared to be caused by the larger contact areas. The wear track on the mating balls indicated that a certain amount of material transfer occurs from the DLC film to the mating ball during the high friction process. Raman Spectra analysis showed that the transferred materials were a kind of graphite and that the contact surface of the DLC film seemed to undergo a phase transition from carbon to graphite during the high friction process.

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Tribological Characteristics of Diamond-like Carbon Films Based on Hardness of Mating Materials

  • Na, Byung-Chul;Tanaka, Akihiro
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2002년도 proceedings of the second asia international conference on tribology
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    • pp.147-148
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    • 2002
  • This study made use of four kinds of mating balls that were made with stainless steel but subjected to different annealing conditions in order to achieve different levels of hardness. In all load conditions, testing results demonstrated that the harder the mating materials, the lower the friction coefficient was. Conversely, the high friction coefficient found in soft martensite balls appeared to be caused by the larger contact area between the DLC film and the ball. Raman Spectra analysis showed that the transferred materials were a kind of graphite and that the contact surface of the DLC film seemed to undergo a phase transition from carbon to graphite during the high friction process.

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상대 재료의 경도를 고려한 DLC필름의 트라이볼로지 특성 (A Study on Tribological Characteristics of DLC Films Considering Hardness of Mating Materials)

  • 나병철;아키히로 타나카
    • 대한기계학회논문집A
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    • 제26권2호
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    • pp.260-266
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    • 2002
  • DLC films were deposited on Si wafer by RF plasma assisted CVD using CH4 gas. Tribological tests were conducted using rotating type ball on disk friction tester in dry air. Four kinds of mating balls were used. The mating balls were made with stainless steel but apply different annealing conditions to achieve different hardness conditions. Testing results in all load conditions showed that the harder the mating materials, the lower the friction coefficient among the three kind of martensite mating balls. In case of austenite balls, the friction coefficients were lower than fully annealed martensite ball. The high friction coefficient in soft martensite balls seems to be caused by the larger contact area between DLC film and ball. The wear tracks of DLC films and mating balls could have proven that effect. Measuring the wear track of both DLC films and mating balls have similar tendency comparing to the results of friction coefficients. Wear rate of austenite balls were also smaller than that of fully annealed martensite ball. The results of effect of applying load showed, the friction coefficients were become decrease when the applying loads exceed critical load conditions. The wear track of mating balls showed that some material transfer occurs from DLC film to mating ball during the high friction process. Raman spectra analysis showed that transferred material was a kind of graphite and contact surface of DLC film seems to undergo phase transition from carbon to graphite during the high friction process.

Effect of Hardness of Mating Materials on DLC Tribological Characteristics

  • Na, Byung-Chul;Akihiro Tanaka
    • KSTLE International Journal
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    • 제3권1호
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    • pp.38-42
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    • 2002
  • Diamond-like Carbon(DLC) films were deposited on Si wafers by an RF-plasma-assisted CVD using CH$_4$gas. Tribological tests were conducted with the use of a rotating type ball on a disk friction tester with dry air. This study made use of four kinds of mating balls that were made with stainless steel but subjected to different annealing conditions in order to achieve different levels of hardness. In all load conditions, testing results demonstrated that the harder the mating materials, the lower the friction coefficient was. The friction coefficients were fecund to be lower with austenite mating balls than with fully annealed martensite balls. Conversely, the high friction coefficient found in soft martensite balls appeared to be caused by the larger contact area between the DLC film and the ball. The wear tracks on DLC films and mating balls could prove that effect. Measuring the wear track of both DLC films and mating balls revealed a similar tendency compared to the results of friction coefficients. The wear rate of austenite balls was also less than that of fully annealed martensite balls. Friction eoefficients decrease when applied leads exceed critical amount. The wear track on mating balls showed that a certain amount of material transfer occurs from the DLC film to the mating ball during a high friction process. Raman Spectra analysis Showed that the transferred materials were a kind of graphite and that the contact surface of the DLC film seemed to undergo a phase transition from carbon to graphite during the high friction process.

Arc melting으로 제조한 금속간화합물 Ni3Al, NiAl 및 TiAl의 미끄럼 마모특성 해석 (Analysis of Sliding Wear Properties for Arc-melted Intermetallic Compounds of Ni3Al, NiAl and TiAl)

  • 이한영;김태준;조용재
    • 대한금속재료학회지
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    • 제47권5호
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    • pp.267-273
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    • 2009
  • Three types of structural intermetallic compounds, $Ni_3Al$, NiAl and TiAl, having each single phase structure without pores were produced by arc-melting process. Their sliding wear properties were investigated against a hardened tool steel. It was shown that the wear of the intermetallic compounds was hardly occurred against the hardened tool steel. TiAl compound showed the best wear resistance among them. In this case, wear was preferentially occurred on the surface of the hardened tool steel of the mating material which has higher hardness. It could be found that the wear mode on intermetallics without pores by arc-melting process was different from that on its porous layer coated on steel by combustion synthesis.

신품종 느타리버섯 '화성5호'의 특성 (Characteristics of a new cultivar 'Hwaseong 5ho' in Pleurotus ostreatus)

  • 이정우;한용식;정종천
    • 한국버섯학회지
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    • 제11권4호
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    • pp.244-248
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    • 2013
  • 한국버섯원균영농조합에서 품종보호등록된 화성1호와 다포자임의교배법으로 육성 선발되었던 PSC109를 교잡하여 봄-가을 균상재배에 적합한 화성5호를 육성하였다. 버섯의 대가 백색이고 곧으며 과습이나 갈변에 강한 특성을 가진다. 대조품종 수한1호와 비교하여 대는 길면서 약간 가늘고 갓색은 덜 진한 편이다. 버섯의 대조직은 단단하면서 탄력성이 있고, 씹음성과 깨짐성이 높다. URP-primer를 이용한 RAPD실험으로 두 모균주와 동일하지 않으면서 일부 밴드를 갖는 것을 알 수 있었다. 화성5호는 자체 시험재배에서 대조품종 수한1호보다 발이는 3-4일 늦으나 16.6% 높은 수량성을 보였고, 농가실증재배에서 서로 다른 재배조건에서 다소 수량의 차이는 있었으나 안정적인 재배가 이루어졌다. '화성5호'의 주요 재배특성으로 첫째, 수한1호와 비교하여 대가 길고, 갓은 얕은 깔때기형이다. 둘째, 균사배양 온도는 배지온도를 $20-26^{\circ}C$정도로 수한1호보다는 낮게 관리하여 주는 것이 좋다. 셋째, 버섯발생 온도는 $13-18^{\circ}C$, 자실체의 적정 생육온도는 $14-18^{\circ}C$으로 봄부터 가을철까지의 기간에 재배하기에 좋은 품종이다. 넷째, 균사배양중 $27^{\circ}C$ 이상으로 배지온도가 높아지면 배지 표층이 단단해지면서 발이가 늦어지거나 버섯 발생이 적게 될 수도 있다. 다섯째, 대가 길고 곧으며 대의 표면이 백색이며 단단하면서 탄력이 있다. 여섯째, 버섯 생육시기에 관수를 하며 관리해 주는 것이 좋으며, 수한1호보다 환기요구량이 조금 높다.