• 제목/요약/키워드: depth of indentation

검색결과 127건 처리시간 0.031초

Surface modification and induced ultra high surface hardness by nitrogen ion implantation of low alloy steel

  • Olofinjana, A.O.;Bell, J.M.;Chen, Z.
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2002년도 proceedings of the second asia international conference on tribology
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    • pp.157-158
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    • 2002
  • A surface hardenable low alloy carbon steel was implanted with medium energy (20 - 50KeV) $N_2^+$ ions to produced a modified hardened surface. The implantation conditions were varied and are given in several doses. The surface hardness of treated and untreated steels were measured using depth sensing ultra micro indentation system (UMIS). It is shown that the hardness of nitrogen ion implanted steels varied from 20 to 50GPa depending on the implantation conditions and the doses of implantation. The structure of the modified surfaces was examined by X-ray photoelectron spectroscopy (XPS). It was found that the high hardness on the implanted surfaces was as a result of formation of non-equilibrium nitrides. High-resolution XPS studies indicated that the nitride formers were essentially C and Si from the alloy steel. The result suggests that the ion implantation provided the conditions for a preferential formation of C and Si nitrides. The combination of evidences from nano-indentation and XPS, provided a strong evidence for the existence of $sp^3$ type of bonding in a suspected $(C,Si)_xN_y$ stoichiometry. The formation of ultra hard surface from relatively cheap low alloy steel has significant implication for wear resistance implanted low alloy steels.

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표면 에너지가 물 윤활 현상에 미치는 영향에 대한 분자시뮬레이션 연구 (Molecular Simulation of Influence of Surface Energy on Water Lubrication)

  • 김현준
    • Tribology and Lubricants
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    • 제39권6호
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    • pp.273-277
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    • 2023
  • This paper presents a molecular dynamics simulation-based numerical investigation of the influence of surface energy on water lubrication. Models composed of a crystalline substrate, half cylindrical tip, and cluster of water molecules are prepared for a tribological-characteristic evaluation. To determine the effect of surface energy on lubrication, the surface energy between the substrate and water molecules as well as that between the tip and water molecules are controlled by changing the interatomic potential parameters. Simulations are conducted to investigate the indentation and sliding processes. Three different normal forces are applied to the system by controlling the indentation depth to examine the influence of normal force on the lubrication of the system. The simulation results reveal that the solid surface's surface energy and normal force significantly affect the behavior of the water molecules and lubrication characteristics. The lubrication characteristics of the water molecules deteriorate with the increasing magnitude of the normal force. At a low surface energy, the water molecules are readily squeezed out of the interface under a load, thus increasing the frictional force. Contrarily, a moderate surface energy prevents expulsion of the water molecules due to squeezing, resulting in a low frictional force. At a high surface energy, although squeezing of the water molecules is restricted, similar to the case of moderate surface energy, dragging occurs at the soil surface-water molecule interface, and the frictional force increases.

Effect of Resistance Spot Welding Parameters on AA1100 Aluminum Alloy and SGACD Zinc coated Lap Joint Properties

  • Chantasri, Sakchai;Poonnayom, Pramote;Kaewwichit, Jesada;Roybang, Waraporn;Kimapong, Kittipong
    • International Journal of Advanced Culture Technology
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    • 제3권1호
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    • pp.153-160
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    • 2015
  • This article is aimed to study the effects of resistance spot welding (RSW) on the lap joint properties between AA1100 aluminum alloy and SGACD zinc coated steel and its properties. The summarized experimental results are as follows. The summarized experimental results are as follows. The optimum welding parameters that produced maximum tensile shear strength of 2200 N was a welding current of 95 kA, a holding time of 10 cycles, and a welding pressure of 0.10 MPa. Increasing of welding current, increased the tensile shear strength of the joint and also increased the amount of aluminum dispersion at the joint interface. The lap joint of steel over the aluminum (Type I) showed the higher joint tensile shear strength than a lap joint of aluminum over the steel (Type II). The indentation depth and the ratio of the indentation depth to the plate thickness decreased when the welding current was increased in the type I lap joint and also decreased when the welding current was decreased in the type II lap joint. The interface structure showed the formation of the brittle $FeAl_3$ intermetallic compound that deteriorated the joint strength.

Investigation on Mechanical Property and Adhesion of Oxide Films Formed on Ni and Ni-Co Alloy in Room and High Temperature Environments

  • Oka, Yoshinori I.;Watanabe, Hisanobu
    • Corrosion Science and Technology
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    • 제7권3호
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    • pp.145-151
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    • 2008
  • Material degradation such as high temperature oxidation of metallic material is a severe problem in energy generation systems or manufacturing industries. The metallic materials are oxidized to form oxide films in high temperature environments. The oxide films act as diffusion barriers of oxygen and metal ions and thereafter decrease oxidation rates of metals. The metal oxidation is, however, accelerated by mechanical fracture and spalling of the oxide films caused by thermal stresses by repetition of temperature change, vibration and by the impact of solid particles. It is therefore very important to investigate mechanical properties and adhesion of oxide films in high temperature environments, as well as the properties in a room temperature environment. The oxidation tests were conducted for Ni and Ni-Co alloy under high temperature corrosive environments. The hardness distributions against the indentation depth from the top surface were examined at room temperature. Dynamic indentation tests were performed on Ni oxide films formed on Ni surfaces at room and high temperature to observe fractures or cracks generated around impact craters. As a result, it was found that the mechanical property as hardness of the oxide films were different between Ni and Ni-Co alloy, and between room and high temperatures, and that the adhesion of Ni oxide films was relatively stronger than that of Co oxide films.

한의복진법의 정량화를 위한 탐색적 임상연구 - 한의 복진기기 개발을 위한 예비 연구 - (An Exploratory Study on the Possibility of Quantitative Measurement during Abdominal Examinations - A Preliminary Study on the Development of a Diagnostic Device for Abdominal Examinations)

  • 이재홍;김상진;고석재;박재우
    • 대한한방내과학회지
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    • 제37권6호
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    • pp.940-948
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    • 2016
  • Objectives: This exploratory trial evaluated the possibility of quantitatively measuring several aspects during the "abdominal examination" of traditional Korean medicine. The main results of this study will be used to develop a new diagnostic device for abdominal examinations. Methods: Fifteen healthy volunteers were recruited for this study. Three certified Korean medical doctors assessed the existence of pressure pain, the elasticity of the abdominal muscle, and the tonus at CV12 as gold standards. Then, 2 well-trained investigators measured the pressure pain threshold (PPT), the indentation depth of a bar, and repelling force by pressing CV12. Each investigator measured the above 3 variables 2 times at 1 min intervals using a modified digital algometer. Reliability and validity tests of the 3 variables were performed. Results: There were statistically significant coefficients of intraclass correlation on the 3 variables both between and within the investigators (P<0.001). Also, PPT and repelling force showed statistically significant high sensitivity and specificity in a ROC curve. However, the indentation depth of the bar presented relatively low sensitivity. Conclusions: This new diagnostic method using a modified digital algometer could be a useful tool for quantitative measurement in "abdominal examinations". However, future rigorous clinical studies with a large population will be needed for the verification of its usefulness.

기계적 가공과 무전해 선택적 증착기술을 이용한 나노/마이크로 금속패턴 제작에 관한 연구 (A Study on Nano/micro Pattern Fabrication of Metals by Using Mechanical Machining and Selective Deposition Technique)

  • 조상현;윤성원;강충길
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 춘계학술대회 논문집
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    • pp.1507-1510
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    • 2005
  • This study was carried out as a part of the research on the development of a maskless and electroless process for fabricating metal micro/nanostructures by using a nanoindenter and an electroless deposition technique. $2-\mu{m}-deep$ indentation tests on Ni and Cu samples were performed. The elastic recovery of the Ni and Cu was 9.30% and 9.53% of the maximum penetration depth, respectively. The hardness and the elastic modulus were 1.56 GPa and 120 GPa for Ni and 1.49 GPa and 100 GPa for Cu. The effect of single-point diamond machining conditions such as the Berkovich tip orientation (0, 45, and $90^{\circ}$) and the normal load (0.1, 0.3, 0.5, 1, 3, and 5 mN), on both the deformation behavior and the morphology of cutting traces (such as width and depth) was investigated by constant-load scratch tests. The tip orientation had a significant influence on the coefficient of friction, which varied from 0.52-0.66 for Ni and from 0.46-0.61 for Cu. The crisscross-pattern sample showed that the tip orientation strongly affects the surface quality of the machined area during scratching. A selective deposition of Cu at the pit-like defect on a p-type Si(111) surface was also investigated. Preferential deposition of the Cu occurred at the surface defect sites of silicon wafers, indicating that those defect sites act as active sites for the deposition reaction. The shape of the Cu-deposited area was almost the same as that of the residual stress field.

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나노압입시험에서의 접촉형상 보정을 통한 유연소자 박막의 탄성특성 평가 (Elastic Properties Evaluation of Thin Films on Flexible Substrates with Consideration of Contact Morphology in Nanoindentation)

  • 김원준;황경석;김주영;김영천
    • 마이크로전자및패키징학회지
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    • 제27권3호
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    • pp.83-88
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    • 2020
  • 최근 스마트폰 산업의 발전으로 인하여 실사용 환경에서 유연소자의 기계적 거동에 대한 연구가 많이 이루어지고 있다. 유연소자 박막은 두께가 나노 단위이고, 기존의 시험법으로 측정하기 어려워 주로 나노압입시험을 이용하여 경도, 탄성계수 등의 특성을 구하고 있다. 그러나 현재 널리 쓰이고 있는 분석법(Oliver-Pharr Method)은 기판의 영향이 이론적으로 고려되지 않아 단순히 적용하기에는 무리가 있다. 따라서 본 연구에서는 기판 영향을 고려한 타 연구자들의 모델에 대한 적용성을 확인하고, 압입자와 시편 표면에서 발생하는 소성쌓임 현상(pile-up)에 대해 압입깊이의 보정을 실시하였다. 유연소자 박막의 탄성계수를 평가하고 검증하기 위하여 폴리이미드 및 실리콘 웨이퍼 기판 위에 금속, 비정질 박막을 증착하여 실제 실험을 수행하여 비교하였다.

Selective Laser Melting 방식으로 적층제조된 Inconel 718 합금의 조사 경화 특성 (Irradiation Hardening Property of Inconel 718 Alloy produced by Selective Laser Melting)

  • 서주원;임상엽;진형하;천영범;강석훈;한흥남
    • 한국분말재료학회지
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    • 제30권5호
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    • pp.431-435
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    • 2023
  • An irradiation hardening of Inconel 718 produced by selective laser melting (SLM) was studied based on the microstructural observation and mechanical behavior. Ion irradiation for emulating neutron irradiation has been proposed owing to advantages such as low radiation emission and short experimental periods. To prevent softening caused by the dissolution of γ' and γ" precipitates due to irradiation, only solution annealing (SA) was performed. SLM SA Inconel 718 specimen was ion irradiated to demonstrate the difference in microstructure and mechanical properties between the irradiated and non-irradiated specimens. After exposing specimens to Fe3+ ions irradiation up to 100 dpa (displacement per atom) at an ambient temperature, the hardness of irradiated specimens was measured by nano-indentation as a function of depth. The depth distribution profile of Fe3+ and dpa were calculated by the Monte Carlo SRIM (Stopping and Range of Ions in Matter)-2013 code under the assumption of the displacement threshold energy of 40 eV. A transmission electron microscope was utilized to observe the formation of irradiation defects such as dislocation loops. This study reveals that the Frank partial dislocation loops induce irradiation hardening of SLM SA Inconel 718 specimens.

기계적 가공과 무전해 선택적 증착기술을 이용한 나노/마이크로 금속패턴 제작에 관한 연구 (A Study on Nano/Micro Pattern Fabrication of Metals by Using Mechanical Machining and Selective Deposition Technique)

  • 조상현;윤성원;강충길
    • 한국정밀공학회지
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    • 제23권8호
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    • pp.171-177
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    • 2006
  • This study was performed as a part of the research on the development of a maskless and electroless process for fabricating metal micro/nanostructures by using a nanoindenter and an electroless deposition technique. $2-{\mu}m$-deep indentation tests on Ni and Cu samples were performed. The elastic recovery of the Ni and Cu was 9.30% and 9.53% of the maximum penetration depth, respectively. The hardness and the elastic modulus were 1.56 GPa and 120 GPa for Ni and 1.51 GPa and 104 GPa for Cu. The effect of single-point diamond machining conditions such as the Berkovich tip orientation (0, 45, and $90^{\circ}$ ) and the normal load (0.1, 0.3, 0.5, 1, 3, and 5 mN), on both the deformation behavior and the morphology of cutting traces (such as width and depth) was investigated by constant-load scratch tests. The tip orientation had a significant influence on the coefficient of friction, which varied from 0.52-0.66 for Ni and from 0.46- 0.61 for Cu. The crisscross-pattern sample showed that the tip orientation strongly affects the surface quality of the machined are a during scratching. A selective deposition of Cu at the pit-like defect on a p-type Si(111) surface was also investigated. Preferential deposition of the Cu occurred at the surface defect sites of silicon wafers, indicating that those defect sites act as active sites for the deposition reaction. The shape of the Cu-deposited area was almost the same as that of the residual stress field.

압입자 첨단마모에 따른 나노압입곡선의 변화 및 이의 보정기법 (Variation of Nanoindentation Curve due to Wear of Indenter Apex and Its Correction Method)

  • 이윤희;김용일;박종서;김광호
    • 비파괴검사학회지
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    • 제33권2호
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    • pp.129-137
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    • 2013
  • 나노압입시험기의 힘교정과 압입자에 대한 3차원 형상 관찰 및 분석이 본 연구에서 진행되었다. 표준분동으로 교정한 마이크로밸런스로 나노압입시험기에서 발생시킨 하중을 측정하여 측정치와 발생치의 비로 압입하중을 교정하였고, 나노압입시험의 시작점인 초기 접촉 하중도 확인할 수 있었다. 삼각뿔 압입자를 원자현미경으로 관찰하여 분석한 결과 비교적 사용이력이 없는 압입자 A와 마모된 압입자 B의 첨단곡률반경은 각각 $19.71{\pm}3.03$ nm와 $1043.94{\pm}50.91$ nm로 결정되었다. 완벽한 삼각뿔 압입자 형상과 중첩하여 압입자 A와 B의 첨단무딘깊이(bluntness depth)를 1.22 nm와 64.56 nm로 결정하였고, 용해실리카 기준시편에 수행한 나노압입시험 결과를 살펴본 결과 두 압입자의 압입하중-변위곡선들이 무딘깊이 차이만큼 수평축으로 서로 어긋나 있음을 확인할 수 있었다. 수평 이동을 통해 보정된 압입곡선의 분석을 통해 개별 압입자 면적함수에 대한 고려없이 1.11 % 이내에서 동일한 용해실리카의 나노경도를 결정할 수 있었다.