• 제목/요약/키워드: Nano-wear

검색결과 234건 처리시간 0.03초

Mechanical Characteristics of Nano-Structured Tool Steel by Ultrasonic Cold Forging Technology

  • Suh, Chang-Min;Song, Gil-Ho;Suh, Min-Soo;Pyoun, Young-Shik;Kim, Min-Ho
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2006년 창립20주년기념 정기학술대회 및 국제워크샵
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    • pp.35-40
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    • 2006
  • Ultrasonic cold forging technology (UCFT) utilizing ultrasonic vibration energy is a method to induce severe plastic deformation to a material surface, therefore the structure of the material surface becomes a nano-crystal structure from the surface to a certain depth. It improves the mechanical properties; hardness, compressive residual stress, wear and fatigue characteristics. Applying UCFT to a rolling process in the steel industry is introduced in this study. First, the UCFT specimens of a tool steel (SKD-61/equivalent H13) are prepared and tested to verify the effects of the UCFT in a variety of mechanical properties, the UCFT is applied to the trimming knives in a cold rolling process. It has been determined that UCFT improves the mechanical properties effectively and becomes a practical method to improve productivity and reliability by about two times compared with the conventionally treated tooling in the trimming process in a cold rolling line.

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SUS 304과 SUS 630 소재의 UNSM(초음파나노 표면개질) 처리전후 Dry, Grease윤활, Oil윤활 상태하에서 마찰특성 및 Dry 상태하에서 마모특성 (Friction characteristics of SUS 304 and SUS 630 stainless steel in Dry, Grease-, and Oillubricated conditions and wear property in dry condition before and after Ultrasonic Nano-crystal Surface Modification)

  • 김준형;편영식;박정현;최갑수;아마노브아외즈한
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2010년도 춘계학술대회 논문집
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    • pp.521-522
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    • 2010
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자기부상방식 AMD를 이용한 모바일 하버용 횡동요 저감 데모 장비의 개발 (Development of Anti-Rolling Demo System for Mobile Harbor Using Maglev Type AMD)

  • 박철훈;함상용;김병인;이성휘;박희창;조한욱;문석준;정태영
    • 한국정밀공학회지
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    • 제28권1호
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    • pp.40-47
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    • 2011
  • Mobile harbor which is a novel concept of ocean transportation to bring the containers from the cargo ship waiting on the ocean away is being focused now. To provide the mobile harbor with the stable loading/unloading condition, it is necessary to develop the oscillation mitigation technologies such as anti-rolling system. Anti-rolling system using AMD(Active Mass Driving) has merits that it can handle the disturbances more actively and mitigate the rolling oscillation faster than other type anti-rolling system. However, rack-and-pinion type AMD has problems such as big friction noise from gears and motor, wear and tear, and continuous maintenance. In this paper, novel anti-rolling system using Maglev type AMD for mobile harbor is suggested in order to resolve the problems caused by the friction. This novel anti-rolling system doesn't make any friction because it supports the moving mass by using magnetic levitation force and moves it by using propulsion force from the linear motor. The demo system of the novel anti-rolling system using maglev type AMD has been developed in order to investigate its feasibility. This paper presents the procedures and results of development of this demo system.

다양한 조건에 따른 주철 소재의 마찰/마모 특성에 관한 연구 (Investigation of Friction and Wear Characteristics of Cast Iron Material Under Various Conditions)

  • 주지훈;김창래;나르게스 네마티;오정택;김대은
    • 대한기계학회논문집A
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    • 제39권8호
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    • pp.765-772
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    • 2015
  • 주철은 산업현장에서 중장비나 철도차량 등과 같은 다양한 기계장치의 주재료로 널리 사용된다. 이러한 기계장치의 운전 성능은 접촉 특성에 따라 크게 좌우되며 이를 개선시키기 위한 연구들이 진행되고 있다. 본 연구에서는 모래와 알루미나 입자가 주철의 마찰/마모 특성에 미치는 영향에 대해 다양한 조건에서의 미끄럼 실험을 통해 규명하였다. 입자의 크기 및 시편 온도 등을 변수로 하여 스틸 볼이 pin 으로 장착된 pin-on-reciprocator 방식의 트라이보테스터를 사용하여 실험을 진행하였다. 주사전자현미경(Scanning Electron Microscope), confocal microscope 와 3d profiler 를 이용해서 주철 시편과 스틸 볼의 마모 표면을 관찰하고 마모량을 정량적으로 측정하여 마모 특성을 파악하였다. 실험 결과 주철의 마찰/마모 특성은 입자 주입에 의해 크게 달라짐을 알 수 있었다. 또한, 주철 시편에 가해준 온도에 따라 마찰/마모 특성이 크게 달라지는 것을 확인하였다. 이 연구의 결과는 산업에서 주철 재료의 트라이볼로지 특성을 이해하는데 도움이 될 것이다.

소결온도 및 SiO2 첨가량에 따른 탄화규소의 마모 특성 (Wear Characteristics of SiC by Sintered Temperature and SiO2 Contents)

  • 박성호;박원조;윤한기
    • 대한기계학회논문집A
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    • 제32권11호
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    • pp.1003-1009
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    • 2008
  • In this study, liquid phase sintered SiC (LPS-SiC) materials were made by hot pressing method. The particle size of nano-SiC powder was 30nm. Alumina ($Al_2O_3$), yttria ($Y_2O_3$) and silica ($SiO_2$) were used for sintering additives. To investigate effects of $SiO_2$, ratios of $SiO_2$ contents were changed by five kinds. Materials have been sintered for 1 hour at $1760^{\circ}C$, $1780^{\circ}C$ and $1800^{\circ}C$ under the pressure of 20MPa. The system of sintering additives which affects a property of sintering as well as the influence depending on compositions of sintering additives were investigated by measurement of density, mechanical properties such as flexural strength, vickers hardness and sliding wear resistance were investigated to make sure of the optimum condition which is about matrix of $SiC_f$/SiC composites. The abrasion test condition apply to load of 20N at 100RPM for 20min. Sintered density, flexural strength of fabricated LPS-SiC increased with increasing the sintering temperature. And in case of LPS-SiC with low $SiO_2$, sliding wear resistance has very excellent. Monolithic SiC $1800^{\circ}C$ sintering temperatures and 3wt% have excellent wear resistance.

α-티타늄 평판표면에서 강체 구형팁의 스크래치로 인한 내부 결정구조 특성 변화에 대한 연구 (A Study on Crystalline Structural Variations of the Rigid Spherical-Tip scratch on the Surface of α-Titanium substrates via Molecular Dynamics Simulations)

  • 정예리;김진호;이태일
    • Tribology and Lubricants
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    • 제39권5호
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    • pp.167-172
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    • 2023
  • Titanium alloys are widely recognized among engineering materials owing to their impressive mechanical properties, including high strength-to-weight ratios, fracture toughness, resistance to fatigue, and corrosion resistance. Consequently, applications involving titanium alloys are more susceptible to damage from unforeseen events, such as scratches. Nevertheless, the impact of microscopic damage remains an area that requires further investigation. This study delves into the microscopic wear behavior of α-titanium crystal structures when subjected to linear scratch-induced damage conditions, utilizing molecular dynamics simulations as the primary methodology. The configuration of crystal lattice structures plays a crucial role in influencing material properties such as slip, which pertains to the movement of dislocations within the crystal structure. The molecular dynamics technique surpasses the constraints of observing microscopic phenomena over brief intervals, such as sub-nano- or pico-second intervals. First, we demonstrate the localized transformation of lattice structures at the end of initialization, indentation, and wear processes. In addition, we obtain the exerted force on a rigid sphere during scratching under linear movement. Furthermore, we investigate the effect of the relaxation period between indentation and scratch deformation. Finally, we conduct a comparison study of nanoindentation between crystal and amorphous Ti substrates. Thus, this study reveals the underlying physics of the microscopic transformation of the α-titanium crystal structure under wear-like accidental events.

지르코니아 광페룰 사출성형용 WC 코아 핀의 Diamond Like Carbon 코팅 (Diamond Like Carbon Coating on WC Core Pin for Injection Molding of Zirconia Optical Ferrule)

  • 박현우;정세훈;김현영;이광민
    • 한국재료학회지
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    • 제20권11호
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    • pp.570-574
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    • 2010
  • A diamond-like carbon (DLC) film deposited on a WC disk was investigated to improve disk wear resistance for injection molding of zirconia optical ferrule. The deposition of DLC films was performed using the filtered vacuum arc ion plating (FV-AIP) system with a graphite target. The coating processing was controlled with different deposition times and the other conditions for coating, such as input power, working pressure, substrate temperature, gas flow, and bias voltage, were fixed. The coating layers of DLC were characterized using FE-SEM, AFM, and Raman spectrometry; the mechanical properties were investigated with a scratch tester and a nano-indenter. The friction coefficient of the DLC coated on the WC was obtained using a pin-on-disk, according to the ASTM G163-99. The thickness of DLC films coated for 20 min. and 60 min. was about 750 nm and 300 nm, respectively. The surface roughness of DLC films coated for 60 min. was 5.9 nm. The Raman spectrum revealed that the G peak of DLC film was composed of $sp^3$ amorphous carbon bonds. The critical load (Lc) of DLC film obtained with the scratch tester was 14.6 N. The hardness and elastic modulus of DLC measured with the nano-indenter were 36.9 GPa and 585.5 GPa, respectively. The friction coefficient of DLC coated on WC decreased from 0.2 to 0.01. The wear property of DLC coated on WC was enhanced by a factor of 20.

Research on the Solution and Properties of Ni-P/n-$Al_2O_3$ Electroless Composite Plating

  • Huang, Yan-bin;Liu, Fei-fei;Zhang, Qi-yong;Ba, Guo-zhao;Liang, Zhi-jie
    • Corrosion Science and Technology
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    • 제6권5호
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    • pp.257-260
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    • 2007
  • In order to further improve the corrosion resistance and wear resistance of the Ni-P coatings of electroless plating, electroless Ni-P/n-$Al_2O_3$ composite deposits were prepared by adding some nano $Al_2O_3$ Particles in Ni-P plating bath. The bath composition and proproties were studied in this paper. The orthogonal test was applied in order to get the new composite solution, taking the initial stable potential as evaluation standard and considering the elements correlation at the same time. The processing parameters have been optimized by single factor experiment in which the depositing speed was chosen as the evaluation standard. The results showed that the process is stable and the composite Ni-P/n-$Al_2O_3$ deposits werebright and smooth, whose hardness and corrosion resistance are much better than simple Ni-P coatings. Furthermore the surface appearance and structure of the composite Ni-P/n-$Al_2O_3$ coating were investigated by SEM and XRD method. It was proved that the coating surface is typical cystiform cells and its structure is amorphous. All test results ofcomposite coating showed that all various physical coating properties had been improved by adding nano-particles. The hardness of optimal coating is more than 600HV and increases to 1000HV after heat-treating, and its hardness is 20~50% higher than Ni-P coating. The rust points appeared in 200 hour by immersing the coating into the 10%HCl solution and the corrosive speed is $3{\times}10^{-3}mg/(cm^2{\cdot}h)$which was obtained after 300 hour. In the same condition Ni-P coating is $5.6{\times}10^{-3}mg/(cm^2{\cdot}h)$. The salt spray resistance of the layers can exceed 600h with the thickness $20{\mu}m$.

YOLOv5를 이용한 임베디드 마스크 인식 시스템 (Embedded Mask Recognition System using YOLOv5)

  • 유가원;최은성;강영진;전영준;정석찬
    • 한국빅데이터학회지
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    • 제7권1호
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    • pp.63-73
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    • 2022
  • 2020년부터 현재까지 COVID-19가 지속되고 있으며, 사회적으로도 많은 변화가 생겼다. 마스크를 착용하는 것은 필수가 되었고, 마스크 미착용 시, 공공시설이나 식당 등을 이용할 수 없게 되었다. 이로 인해 대부분의 공공시설 출입구에서는 마스크 인식 시스템을 구비하여 마스크 착용 여부를 확인하고 있다. 그러나 목도리로 입을 가린 사람이나 마스크를 제대로 착용하지 않은 사람 등에 대한 판별 여부가 불분명하다. 본 연구에서는 YOLOv5를 이용한 임베디드 마스크 인식 시스템을 제안하였다. 기존 마스크 인식 시스템과는 달리 마스크 착용 여부뿐만 아니라 목도리를 입으로 가린 사람, 손으로 입을 가린 사람 등 다양한 예외 상황에서도 마스크 착용 여부를 구별해낼 수 있었으며, Nvida Jetson Nano Board에 탑재하였을 때 우수한 성능을 보였다.