• 제목/요약/키워드: perpendicular adhesion

검색결과 9건 처리시간 0.018초

A Proposal of a New Model of Wheel and Tractor Dynamics that Includes Lift Resistance

  • Sakai, Jun;Choe, Jung-Seob;Kishimoto, Tadashi;Yoon, Yeo-Doo
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1993년도 Proceedings of International Conference for Agricultural Machinery and Process Engineering
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    • pp.1176-1185
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    • 1993
  • The purpose of this study is to propose a new dynamic model of wheels and agricultural tractors through verification of the existence of " lift resistance " and "perpendicular adhesion" which also can be called " contra-retractive adhesion". The existence of these forces was proved through experiments including the development of a sensor which can measure the forces acting on a wheel accurately. Consequently " perpendicular adhesion ratio" which is defined as the ratio of the perpendicular adhesion to the distributed load was observed to be in the range of 0.05 to 0.3. This means the influence of the " lift resistance " is comparable to that of motion resistance in wheel dynamics. The perpendicular adhesion ratio was observed to decrease logarithmically with the increase of ground contact pressure, and to increase linearly with increase of the travel speed of the wheel . Some examples to express the new dynamic model compared to the conventional dynamics are explained.

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Estimation of Interfacial Adhesion through the Micromechanical Analysis of Failure Mechanisms in DLC Film

  • Jeong, Jeung-Hyun;Park, Hae-Seok;Ahn, Jeong-Hoon;Dongil Kwon
    • The Korean Journal of Ceramics
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    • 제3권2호
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    • pp.73-81
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    • 1997
  • In this paper, it is intended to present more reproducible and quantitative method for adhesion assemssement. In scratch test, micromechanical analysis on the stress state beneath the indenter was carried out considering the additional blister field. The interface adhesion was quantified as work of adhesion through Griffith energy approach on the basis of the analyzed stress state. The work of adhesion for DLC film/WC-Co substrate calculated through the proposed analysis shows the identical value regardless of distinctly different critical loads measured with the change of film thickness and scratching speed. On the other hand, uniaxial loading was imposed on DCL film/Al substrate, developing the transverse film cracks perpendicular to loading direction. Since this film cracking behavior depends on the relative magnitude of adhesion strength to film fracture strength, the quantification of adhesion strength was given a trial through the micromechanical analysis of adhesion-dependence of film cracking patterns. The interface shear strength can be quantified from the measurement of strain $\varepsilon$s and crack spacing $\lambda$ at the cessation of film cracking.

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Separation of Human Breast Cancer and Epithelial Cells by Adhesion Difference in a Microfluidic Channel

  • Kwon, Keon-Woo;Choi, Sung-Sik;Kim, Byung-Kyu;Lee, Se-Na;Lee, Sang-Ho;Park, Min-Cheol;Kim, Pil-Nam;Park, Suk-Ho;Kim, Young-Ho;Park, Jun-Gyul;Suh, Kahp-Y.
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제7권3호
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    • pp.140-150
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    • 2007
  • A simple, label-free microfluidic cell purification method is presented for separation of cancer cells by exploiting difference in cell adhesion. To maximize the adhesion difference, three types of polymeric nanostructures (50nm pillars, 50nm perpendicular and 50nm parallel lines with respect to the direction of flow) were fabricated using UV-assisted capillary moulding and included inside a polydimethylsiloxane (PDMS) microfluidic channel bonded onto glass substrate. The adhesion force of human breast epithelial cells (MCF10A) and human breast carcinoma (MCF7) was measured independently by injecting each cell line into the microfluidic device followed by culture for a period of time (e.g., one, two, and three hours). Then, the cells bound to the floor of a microfluidic channel were detached by increasing the flow rate of medium in a stepwise fashion. It was found that the adhesion force of MCF10A was always higher than that of MCF cells regardless of culture time and surface nanotopography at all flow rates, resulting in a label-free detection and separation of cancer cells. For the cell types used in our study, the optimum separation was found for 2 hours culture on 50nm parallel line pattern followed by flow-induced detachment at a flow rate of $300{\mu}l/min$.

상승저항력을 고려한 로터리경운작업을 위한 승용트랙터의 설계 (Tractor Design for Rotary Tillage Considering Lift Resistance)

  • 사카이 준;윤여두;최중섭;정창주
    • Journal of Biosystems Engineering
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    • 제18권4호
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    • pp.344-350
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    • 1993
  • The purpose of this study is to develop design equations to calculate optimum specifications and dimensions such as weight, engine horsepower, etc. of the tractor necessary to perform stable rotary tillage. The main results of this study are as follows. 1. A wheel-lug ought to receive a special resistance in downward direction which resists the lug's upward motion on wet sticky soil surface. The authors introduce a new academic name of the "lift resistance(上昇抵抗力, 상승저항력)" for such a force which resists retraction of a wheel lug from the soil in the upward trochoidal motion. This force is composed of the frictional force acting on the trailing and the leading lug side, and the "perpendicular adhesion(鉛直付着力, 연직부착력)" acting on the lug face and the undertread face on adhesive soil. 2. The "lift resistance ratio(上昇抵抗力係數, 상승저항력계수)" and the "perpendicular adhesion ratio(鉛直付着力係數, 연직부착력계수)" were defined, which are something similar to the definition of the motion resistance ratio, the traction coefficient, etc. 3. The design equation of the optimum weight of a rotary tiller mounted on the tractor derived by calaulating the forces acting on the rotary blades. 4. The design equations to calculate optimum specifications and dimensions such as weight, engine horsepower, etc. of the tractor necessary to perform stable rotary tillage were derived. It becomes clear that the optimum weight of a rotary tiller and a tractor can be estimated in planning design by means of putting about 21 design factors of the target into the equation. These equations are useful for planning design to estimate the optimum dimensions and specifications of a rotary tiller as well as a tractor by the use of known and/or unknown design parameters.

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Interaction and mechanical effect of materials interface of contact zone composite samples: Uniaxial compression experimental and numerical studies

  • Wang, Weiqi;Ye, Yicheng;Wang, Qihu;Luo, Binyu;Wang, Jie;Liu, Yang
    • Geomechanics and Engineering
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    • 제21권6호
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    • pp.571-582
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    • 2020
  • Aiming at the mechanical and structural characteristics of the contact zone composite rock, the uniaxial compression tests and numerical studies were carried out. The interaction forms and formation mechanisms at the contact interfaces of different materials were analyzed to reveal the effect of interaction on the mechanical behavior of composite samples. The research demonstrated that there are three types of interactions between the two materials at the contact interface: constraint parallel to the interface, squeezing perpendicular to the interface, and shear stress on the interface. The interaction is mainly affected by the differences in Poisson's ratio and elastic modulus of the two materials, stronger interface adhesion, and larger interface inclination. The interaction weakens the strength and stiffness of the composite sample, and the magnitude of weakening is positively correlated with the degree of difference in the mechanical properties of the materials. The tensile-shear stress derived from the interaction results in the axial tensile fracture perpendicular to the interface and the interfacial shear facture. Tensile cracks in stronger material will propagation into the weaker material through the bonded interface. The larger inclination angle of the interface enhances the effect of composite tensile/shear failure on the overall sample.

Adhesive bonding using thick polymer film of SU-8 photoresist for wafer level package

  • Na, Kyoung-Hwan;Kim, Ill-Hwan;Lee, Eun-Sung;Kim, Hyeon-Cheol;Chun, Kuk-Jin
    • 센서학회지
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    • 제16권5호
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    • pp.325-330
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    • 2007
  • For the application to optic devices, wafer level package including spacer with particular thickness according to optical design could be required. In these cases, the uniformity of spacer thickness is important for bonding strength and optical performance. Packaging process has to be performed at low temperature in order to prevent damage to devices fabricated before packaging. And if photosensitive material is used as spacer layer, size and shape of pattern and thickness of spacer can be easily controlled. This paper presents polymer bonding using thick, uniform and patterned spacing layer of SU-8 2100 photoresist for wafer level package. SU-8, negative photoresist, can be coated uniformly by spin coater and it is cured at $95^{\circ}C$ and bonded well near the temperature. It can be bonded to silicon well, patterned with high aspect ratio and easy to form thick layer due to its high viscosity. It is also mechanically strong, chemically resistive and thermally stable. But adhesion of SU-8 to glass is poor, and in the case of forming thick layer, SU-8 layer leans from the perpendicular due to imbalance to gravity. To solve leaning problem, the wafer rotating system was introduced. Imbalance to gravity of thick layer was cancelled out through rotating wafer during curing time. And depositing additional layer of gold onto glass could improve adhesion strength of SU-8 to glass. Conclusively, we established the coating condition for forming patterned SU-8 layer with $400{\mu}m$ of thickness and 3.25 % of uniformity through single coating. Also we improved tensile strength from hundreds kPa to maximum 9.43 MPa through depositing gold layer onto glass substrate.

미소 인장시험을 통한 다이아몬드상 카본 박막의 안정성 및 접합력 평가 (Stability and Adhesion of Diamond-like Carbon Film under Micro-tensile Test Condition)

  • 최헌웅;이광렬;;오규환
    • 한국진공학회지
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    • 제13권4호
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    • pp.175-181
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    • 2004
  • 미소인장시험을 통해 304 스테인리스 스틸 판재 위에 증착된 DLC 박막의 안정성을 평가하였다. 모재의 소성 변형과 함께 코팅 층의 손상이 발생하기 시작하는데, 작은 규모의 모재 변형 시에는 인장축의 수직방향으로 박막의 균열이 발생하지만, 모재의 슬립변형이 발생하기 시작하면 인장 축과 $45^{\circ}C$의 각도를 갖는 슬립 면을 따라 필름의 박리가 발생하였다. DLC박막의 박리면적으로부터 필름의 접착력을 평가할 수 있었으며, 필름의 합성 전에 실시하는 Ar 플라즈마 스퍼터링 세척시간이 길수록 그리고 세척시 기판에 인가되는 전압이 높을수록 필름의 접착력은 향상되었다. 이러한 변화는 스테인리스 스틸 모재와 Si 접합 층간의 계면특성이 향상되면, 필름의 전체 접착력을 증진시킬 수 있음을 보여주고 있다.

리기다소나무 판재(板材)의 접착조건(接着條件)이 집성재(集成材)의 접착성능(接着性能)에 미치는 영향(影響) (Effects of Adhesion Conditions on Bonding Strength of Pitch Pine Woods for Glued-Laminated Wood)

  • 박상범;공영토;조재명
    • Journal of the Korean Wood Science and Technology
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    • 제16권4호
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    • pp.48-53
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    • 1988
  • 본(本) 연구(硏究)는 리기다소나무판재(板材)를 이용(利用)하여 집성재(集成材)를 제조(製造)할 경우(境遇), 압체시간(壓締時間) 및 접착제도포량(接着劑塗布量), 목재(木材)의 함수율(含水率), Butt-joint의 틈새간격(間隔) 및 접착제(接着劑)의 종류(種類) 등(等)이 접착강도(接着强度)에 미치는 영향(影響)을 알아보기 위해 수행(遂行)되었다. 1. 리기다소나무집성재(集成材)의 제조(製造)에 수성(水性)비닐우레탄접착제(接着劑)를 사용(使用)한 결과(結果), 접착제도포량(接着劑塗布量) 200g/$m^2$, 압체압력(壓締壓力) 10kg/$cm^2$에서 12시간(時間) 압체(壓締)하면 기준강도(基準强度)(50kg/$cm^2$)이상(以上)에 달(達)하였다. 2. 판재(板材)의 함수율(含水率)의 접착력(接着力)을 크게 감소(減少)시켰으나, 고함수시(高含水時) 접착(接着)한 후(後) 기건(氣乾)하여 접착력(接着力)을 측정(測定)한 결과(結果), 100kg/$cm^2$)이상(以上)의 블록전단강도(剪斷强度)를 나타내었다. 3. 판재(板材)의 Butt joint 부분(部分)의 틈새간격(間隔)이 0.5mm이하(以下)인 경우(境遇), 강도(强度)값은 영향(影響)하지 않았고, 하중방향(荷重方向)이 접착력(接着力)과 수치(垂値)일 때가 수평(水平)일 때보다 강도성태(强度性能)이 양호(良好)하였다. 4. 시험(試驗)에 사용(使用)된 5종(種)의 접착제(接着劑) 중(中) 수성(水性)비닐우레탄수지접착제(樹脂接着劑)가 상태(常態) 및 내수접착력면(耐水接着力面)에서 가장 양호(良好)하였다.

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Er:YAG 레이저로 삭제된 상아질에 대한 컴포지트 레진의 미세인장결합강도에 관한 연구 (Micro-tensile Bond Strength of Composite Resin Bonded to Er:YAG Laser-prepared Dentin)

  • 민숙진;안용우;고명연;박준상
    • Journal of Oral Medicine and Pain
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    • 제31권3호
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    • pp.211-221
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    • 2006
  • 목적 전통적 고속 회전식 절삭기구 또는 Er:YAG 레이저로 삭제된 상아질에, 두가지 다른 접착 시스템을 적용한 후, 축조한 컴포지트 레진의 미세인장결합강도를 비교하고, 다양한 Er:YAG 레이저 에너지가 미세인장결합강도에 미치는 영향을 평가한다. 재료 및 방법 40개의 제3대구치를 사용하여, 평평한 상아질면을 만든 후 8개의 군으로 나누어, 4가지 절삭방법 (고속 회전식 절삭기구, 2 W, 3 W, 4 W 출력의 Er:YAG 레이저) 중 한 가지로 삭제하고, 2가지 접착 시스템 (Scotchbond Multipurpose Plus, Clearfil SE bond) 중 한 가지로 처리하여 컴포지트 레진을 축조하였다. 24시간의 저장 후, 각 시편을 결합면에 수직으로 자르고, 미세인장결합강도를 측정하였다. 각 군의 미세인장결합강도는 평균$\pm$표준 편차로 표현하였고, 통계분석을 위해 two-way ANOVA, one-way ANOVA, student-Newman-Keuls' multiple comparison test, 그리고 t-test가 사용되었다. 결과 및 결론 1. 접착시스템과 관계없이, 절삭방법에 따른 미세인장결합강도의 유의한 차이가 있었고, 높은 순서대로 나열하면 다음과 같다: 3 W, 2 W, Bur, 4 W (p<0.001). 2. 절삭방법과 관계없이, Scotchbond Multipurpose Plus로 처리한 군이 Clearfil SE bond로 처리한 군보다 유의하게 높은 미세인장결합강도를 나타냈다 (p<0.001). 3. Scotchbond Multipurpose Plus로 처리한 군 중에서, 3 W 레이저 절삭군이 가장 높은 미세인장결합강도를 나타냈고, 다음이 Bur, 2 W, 4 W 절삭군 순이었다 (p<0.001). 4. Clearfil SE bond로 처리한 군 중에서 3 W 레이저 절삭군이 가장 높은 미세인장결합강도를 나타냈고, 다음이 2 W, 4 W, Bur 절삭군 순이었다 (p<0.001). 5. 두 가지 접착 시스템 모두에서, 레이저로 절삭한 군의 미세인장결합강도의 차이가 있었고, 높은 순서대로 나열하면 3 W, 2 W, 4 W 순이었다 (p<0.001). :상아질에 접착된 컴포지트 레진의 미세인장결합강도는 절삭방법과 접착시스템의 상호작용에 의해 유의한 영향을 받았다. 임상에서 레진 수복시, 2 W-3 W 범위내로 Er:YAG laser를 사용한다면 전통적 핸드피스 못지않게 수복물의 우수한 결합강도를 얻을 수 있다. 특히 시술시간의 단축, 과도한 산부식에 따른 부작용의 예방을 위해 Clearfil SE bond를 포함한 self etching system을 사용하고자 한다면 bur보다 Er:YAG laser를 이용한 삭제방법이 더 유용한 결합력을 제공할 것이다.