• 제목/요약/키워드: forming force

검색결과 479건 처리시간 0.027초

기능적인 가족의 커뮤니케이션에 관한 이론적 접근 (A Study on the Communication of the Functional Family)

  • 조윤경
    • 가정과삶의질연구
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    • 제2권1호
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    • pp.131-150
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    • 1984
  • The purpose of this study is to explore the family as an interaction system, concentrating on the mutual influences between communication and family development; (1) how Communication patterns affect family relationships, and (2) how relationships among family members affect communication. In order to do this Galvin, Brommel used the following frame work; family is a system in which communication regulates cohesion and adaptability by a flow of message patterns through a defined network of evolving interdependent relationships. A family system consists of members, the relationships among them, the family attributes, the members attributes and an environment in which family functions. Within the framework of common cultural communication patterns, each family has the capacity to develop its own communication code based on the experiences of individual members and the collective family experience. Most of us develop our communication skills within the family context learning both the general cultural language and the specific familial communication code. Communication may be viewed as a symbolic, transactional process as the process of creating and sharing meanings. To say that communication is a process implies a continuous interaction of an indefinite large numbers of variables with a concomitant,. continuous change in the values taken by these variables. Finally the process implies change, Family functions include the primary functions of cohesion and adaptability, and supporting functions of family images, themes, boundaries, and biosocial issues. The primary functions reveal concepts integrated family interaction and supporting function, along with those of cohesion and adaptability, give shape to family life. the characteristics of developed relationships of richness, uniqueness efficiency, substitutability, pacing , openness spontaneity, and evaluation are reflected in the verbal and nonverbal behaviors with which family members negotiated a set of common meanings and develop thier own unique message system. The message system is the major element of communication process and influences both the form and the content of thier relationship and in create and share meanings. Family systems need to provide order and predictability for thier members, specifically focusing on communication rules and the networks by which messages are transmitted. Most rules emerge as a result of multiful interactions. There are basic rules and rules about rules, or metarules. Perceiving the rules of family system is very difficult because often family members don't think about the basic rules, much less the metarules. Breaking the rule may result in the creation of a new set because the system may recalibrate itself to accept more variety of behavior. Families develop communication networks to deal with the general issue. Family adaptability may be seen through the degree of flexibility in forming and reforming networks and networks become a vital part of the decision- making process and relate to the power dynamics operating within the family. Networks also play an integral part in maintaining the roles and rules operating with the family system. Thus networks and rules have mutual influence. The family -of -origin issues influence all aspects of family communication and account for many of the communication patterns, rules and networks and the role of the family -of-origin influences as a primary force for communication on behavior of newly forming systems. Each family system develops its own communication meanings. There is not one right way to communicate within a family but may be indefinitly large change of family life and communication behavior. Study on functional family communication helps to gain a better understanding of dynamics of family communication and ability of a new insight into the family.

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피니싱 처리 이후 알카자이트 수복재의 표면거칠기와 미생물 부착 (Surface Roughness and Microbial Adhesion After Finishing of Alkasite Restorative Material)

  • 박초아;박호원;이주현;서현우;이시영
    • 대한소아치과학회지
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    • 제47권2호
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    • pp.188-195
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    • 2020
  • 이 연구는 새롭게 개발된 알카자이트 재료인 Cention N에 finishing처리를 한뒤에 표면 거칠기와 박테리아 부착에 대하여 조사하고자 함이다. 레진강화형 글래스아이오노머와 컴포짓트 레진, 알카자이트 재료를 원통형의 디스크 형태로 제작하였다(n = 48). 이 후 대조군과 3가지 카바이드버, 미세다이아몬드 버, 화이트스톤버의 피니싱 버에 따른 4가지 하위군으로 분류하였다. 표면 거칠기는 atomic force microscope으로 조사하였으며 표면관찰은 scanning electron microscope을 이용하여 진행하였다. 우식원성 미생물인 streptococcus mutans의 시편 부착을 위하여 CDC biofilm reactor를 사용하여 바이오필름을 배양한후 집락형성단위를 측정하였다. 레진과 Cention N의 아무처리 하지 않은 컨트롤 군의 표면 거칠기는 통계적으로 유의하게 피니싱 처리된 시편들보다 거칠었다. 하지만 표면 거칠기와 미생물 부착사이의 상관관계는 매우 약했다(PCC = 0.13). RMGI와 Cention N은 레진시편에 비해 미생물 부착이 적게 일어났다. Cention N은 피니싱만으로도 임상적으로 허용되는 수준인 0.2 ㎛ 이하의 거칠기를 보였으며 이온 방출 성질로 미생물 부착이 레진과 비교시 적은 것을 확인할수 있었다.

울산군 강동면 제 3기 정자분지(亭子盆地)의 지질구조와 분지발달 (Geological Structures and Evolution of the Tertiary Chŏngja Basin, Southeastern Margin of the Korean Peninsula)

  • 손문;김인수
    • 자원환경지질
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    • 제27권1호
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    • pp.65-80
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    • 1994
  • The Tertiary $Ch{\check{o}}ngja$ basin is located in the southeastern coastal area of the Korean Peninsula. It is a lozenge shaped fault-bounded basin with circa $5{\times}5km$ areal extent, isolated from other Tertiary basins by the Cretaceous Ulsan Formation in-between. The northwestern boundary of the basin is a domino/listric type normal fault trending $N30^{\circ}E$, whereas its southwestern boundary is a dextral strike-slip fault (trending $N20^{\circ}W$) with a lateral offset of more than 1 km. The basin is bounded by the East Sea on the eastern margin. Basin-fills consist of extrusive volcanic rock (Tangsa Andesites) of Early Miocene (16~22 Ma in radiometric age), unconsolidated fluviatile conglomerate (Kangdong Formation) and shallow brackish-water sandstone ($Sinhy{\check{o}}n$ Formation). The latter yields abundant Vicarya-Anadara molluscan fossils of early Middle Miocene age. The Tertiary strata become younger toward the northwestern boundary-fault of the basin, showing a zonal distribution pattern parallel to the fault: the younger sedimentary formations occupy a narrow zone of 2 km width along the northwestern boundary-fault, whereas the older Tangsa Andesites underlie them unconformably in the eastern and southeastern portions of the basin. The strata in the basin, including the Tangsa Andesites, are tilted (about $20^{\circ}$) toward the northwestern boundary-fault Sedimentary strata thicken toward the boundary-fault, forming a wedge shaped half-graben structure. A number of small-scale syndepositional normal growth faults and graben structures are observed in the sedimentary strata. These extensional structures have the same trend as the normal northwestern boundary-fault which we interpret as a pull-apart detachment fault. These characteristics imply persistent extension during the basin evolution, caused by a NW-SE directed tensional force. The $Ch{\check{o}}ngja$ basin is, thus, a kind of syndepositional tectonic basin evolved in a strike-slip (pull-apart) regime. The latter was caused by a dextral simple shear associated with the NNW-SSE opening of the East Sea. In view of the fact that the normal growth faults do not cut through the uppermost portion of the youngest $Sinhy{\check{o}}n$ Formation, it is inferred that the tensional force came to be inactive in the early Middle Miocene. This is coincident in timing with the termination of the East Sea opening (15 Ma).

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표면처리에 의한 유기발광소자(OLED)용 Ag 전극의 Nano-size 효과 연구 (Nano-size Study of Surface-modified Ag Anode for OLEDs)

  • 김주영;김수인;이규영;김형근;전재혁;정윤종;김무찬;이종림;이창우
    • 한국진공학회지
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    • 제21권1호
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    • pp.12-16
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    • 2012
  • Top-Emitting OLED (Organic Light-Emitting Diode) 디스플레이에서는 반사율이 가장 높은 Ag (silver) 박막이 쓰이고 있지만, 소자에서 요구되는 일함수(work function)가 상대적으로 낮기 때문에 전극과 유기물간에 에너지 장벽이 발생하여 발광효율을 낮추는 요인이 되고 있다. 본 논문에서는 Ag 전극의 일함수를 높이기 위한 연구를 진행하였으며, 박막 형태의 Ag 전극에 대하여 nanotribology 접근법으로 연구를 실행하였다. Ag는 rf magnetron sputter를 이용해 glass 위에 증착한 후 furnace에서 $300^{\circ}C$, 30분간 대기 중에서 열처리하였고, 또 다른 시료는 표면에 산소 상압플라즈마로 처리 시간(30, 60, 90, 120s)을 각기 다르게 하여 시료를 제조하였다. Ag 전극을 nanoindentation을 통해 국부 영역에 대한 물리적 특성의 변화를 측정하였고, Kelvin probe force microscopy을 이용해 시료 표면의 포텐셜을 측정했다. 그 결과 열처리한 시료의 포텐셜값은 가장 크게 증가하였지만 균일도가 낮아졌다. 120s 플라즈마 처리한 시료는 불완전한 산화막의 생성으로 인해 탄성계수 및 경도값과 박막의 Weibull modulus를 극히 낮게 만들었지만, 60s, 90s 플라즈마 처리는 시료의 균일도를 높이고 또한 포텐셜을 증가시켜 T-OLED 성능 개선에 좋은 영향을 미치게 될 것이다.

금강 풀룸의 구조와 분포에 대한 수치모델 연구 (Numerical Model Study for Structure and Distribution of the Keum River Plume)

  • 신은주;이상호;최현용
    • 한국해양학회지:바다
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    • 제7권3호
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    • pp.157-170
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    • 2002
  • 연속적으로 방출되는 금강 담수에 의해 형성되는 풀룸(plume)의 구조와 분포를 시험하기 위해 전향력과 조석의 유무에 따른 3차원 수치모델 실험을 하였다. 조석없이 전향력이 포함된 경우 모델풀룸은 발달단계에서 남수로 북쪽에 시계방향 순환을 형성한다. 풀룸 확장이 진행되면 순환중심이 남서쪽으로 이동하며 남수로 입구에서부터 남서쪽으로 저염수의 유출 축 방향이 편향된다 이러한 결과는 외해의 강한 염분전선 때문에 하구입구 전방에서 누적되는 저염수에 의해 유지되는 해면경사에 의한 순압적 지형류 균형으로 설명된다. M$_2$분조를 포함하는 경우에는 모델풀룸이 북서쪽으로 멀리 확장하여 큰 혀모양의 염분분포를 이룬다. 외해역 풀룸의 조석주기 평균된 표층흐름은 주로 지형류 균형을 이룬다. 이러한 풀룸분포의 변화는 하구입구 외측에서 저염수를 북쪽으로 공급하는 조류이동에 의한 저염수 이류와 풀룸을 따라 평균해면을 높이고 북쪽 천해연안역 표층염분을 증가시키는 활발한 조류혼합에 의한 것으로 설명된다. 관측된 금강 풀룸의 주된 형태(Lee et at., 1999;최 등, 1999)는 하구 입구역에서부터 풀룸 축이 북서쪽으로 편향되고 북쪽으로 풀룸 두께가 깊어지는데 이러한 특징은 조석이 포함된 모델에서 잘 재현되었다.

Sintering Mixtures in the Stage of Establishing Chemical Equilibrium

  • Savitskii, A.P.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 1999년도 춘계학술대회 및 발표대회 강연 및 발표논문 초록집
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    • pp.5-5
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    • 1999
  • The Principal deficiency of the existing notion about the sintering-mixtures consists in the fact that almost no attention is focused on the Phenomenon of alloy formation during sintering, its connection with dimensional changes of powder bodies, and no correct ideas on the driving force for the sintering process in the stage of establishing chemical equilibrium in a system are available as well. Another disadvantage of the classical sintering theory is an erroneous conception on the dissolution mechanism of solid in liquid. The two-particle model widely used in the literature to describe the sintering phenomenon in solid state disregards the nature of the neighbouring surrounding particles, the presence of pores between them, and the rise of so called arch effect. In this presentation, new basic scientific principles of the driving forces for the sintering process of a two-component powder body, of a diffusion mechanism of the interaction between solid and liquid phases, of stresses and deformation arising in the diffusion zone have been developed. The major driving force for sintering the mixture from components capable of forming solid solutions and intermetallic compounds is attributed to the alloy formation rather than the reduction of the free surface area until the chemical equilibrium is achieved in a system. The lecture considers a multiparticle model of the mixed powder-body and the nature of its volume changes during solid-state and liquid-phase sintering. It explains the discovered S-and V-type concentration dependencies of the change in the compact volume during solid-state sintering. It is supposed in the literature that the dissolution of solid in liquid is realised due to the removal of atoms from the surface of the solid phase into the melt and then their diffusicn transfer from the solid-liquid interface into the bulk of liquid. It has been shown in our experimental studies that the mechanism of the interaction between two components, one of them being liquid, consist in diffusion of the solvent atoms from the liquid into the solid phase until the concentration of solid solutions or an intermetallic compound in the surface layer enables them to pass into the liquid by means of melting. The lecture discusses peculimities of liquid phase formation in systems with intermediate compounds and the role of the liquid phase in bringing about the exothermic effect. At the frist stage of liquid phase sintering the diffusion of atoms from the melt into the solid causes the powder body to grow. At the second stage the diminution of particles in size as a result of their dissolution in the liquid draws their centres closer to each other and makes the compact to shrink Analytical equations were derived to describe quantitatively the porosity and volume changes of compacts as a result of alloy formation during liquid phase sinteIing. Selection criteria for an additive, its concentration and the temperature regime of sintering to control the density the structure of sintered alloys are given.

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주사형(走査型) 전자현미경(電子顯微鏡)의 응용분야(應用分野) (Applications of the Scanning Electron Microscope)

  • 김용락
    • Applied Microscopy
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    • 제2권1호
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    • pp.39-46
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    • 1972
  • There are many kinds of microscopes suitable for general studies; optical microscopes(OM), conventional transmission electron microscopes (TEM), and scanning electron microscopes(SEM). The optical microscopes and the conventional transmission electron microscopes are very familiar. The images of these microscopes are directly formed on an image plane with one or more image forming lenses. On the other hand, the image of the scanning electron microscope is formed on a fluorescent screen of a cathode ray tube using a scanning system similar to television technique. In this paper, the features and some applications of the scanning electron microscope will be discussed briefly. The recently available scanning electron microscope, combining a resolution of about $200{\AA}$ with great depth of field, is favorable when compared to the replica technique. It avoids the problem of specimen damage and the introduction of artifacts. In addition, it permits the examination of many samples that can not be replicated, and provides a broader range of information. The scanning electron microscope has found application in diverse fields of study including biology, chemistry, materials science, semiconductor technology, and many others. In scanning electron microscopy, the secondary electron method. the backscattererd electron method, and the electromotive force method are most widely used, and the transmitted electron method will become more useful. Change-over of magnification can be easily done by controlling the scanning width of the electron probe. It is possible. to continuously vary the magnification over the range from 100 times to 1.00,000 times without readjustment of focusing. Conclusion: With the development of a scanning. electron microscope, it is now possible to observe almost all-information produced through interactions between substances and electrons in the form of image. When the probe is properly focused on the specimen, changing magnification of specimen orientation does not require any change in focus. This is quite different from the conventional transmission electron microscope. It is worthwhile to note that the typical probe currents of $10^{-10}$ to $10^{-12}\;{\AA}$ are for below the $10^{-5}$ to $10^{-7}\;{\AA}$ of a conventional. transmission microscope. This reduces specimen contamination and specimen damage due to heatings. Outstanding features of the scanning electron microscope include the 'stereoscopic observation of a bulky or fiber specimen in high resolution' and 'observation of potential distribution and electromotive force in semiconductor devices'.

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가압식 돌기네일의 전단저항 효과 (Shear Resisting Effects of Protruded Nails by Pressure Grouting)

  • 홍철화;이상덕
    • 한국지반환경공학회 논문집
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    • 제18권7호
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    • pp.13-20
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    • 2017
  • 쏘일 네일링은 원지반의 전단강도와 네일의 인발 전단 저항력을 이용한 지반 보강 공법이다. 쏘일 네일링 공법은 주로 절취사면, 흙막이 구조물 및 옹벽 보강 등에 사용된다. 흙막이 구조물과 옹벽의 경우 네일의 인발저항만을 고려하여 설계하여도 무방하나, 비탈면의 경우 인발은 물론 전단 및 휨 저항까지 고려하여 설계하여야 한다. 하지만 인발저항만 고려한 보수적인 설계가 이루어지고 있으며, 대부분이 네일의 재료, 형상, 시공방법 등의 개선을 통한 인발저항 증대에 관한 연구이다. 실제 쏘일네일로 보강된 지반은 활동면을 중심으로 전단 휨 변형이 발생하게 된다. 상대적으로 강도가 취약한 그라우트는 파괴되고 보강재와 분리되어 지반은 마찰저항력이 급감하면서 붕괴된다. 따라서 네일과 그라우트체의 분리를 억제하면서 전단저항력을 증가시킬 수 있는 공법개발이 필요한 실정이다. 본 연구에서는 이형철근 외측에 패커를 설치한 후 가압식 그라우팅을 통해 돌기를 형성함으로써 전단저항력을 증대시킬 수 있는 새로운 쏘일 네일링 공법에 대하여 실험적 연구를 수행하였다.

자성에 의해 분리 가능한 메조포러스 카본의 소프트 주형 합성 (Soft-template Synthesis of Magnetically Separable Mesoporous Carbon)

  • 박성수;하창식
    • 접착 및 계면
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    • 제18권2호
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    • pp.75-81
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    • 2017
  • 본 연구에서는 잘 배열된 나노세공 구조와 자성체 나노입자를 포함하는 메조포러스 카본(Carbonized Ni-FDU-15)을 합성하였다. Carbonized Ni-FDU-15는 구조형성 주형으로 트리블럭 공중합체(F127)를 이용하고, 카본 세공벽 형성 물질로 resol 전구체를 사용하며 질산 니켈(nickel(II) nitrate)을 금속이온 원으로 사용하여 증발유도 자기조립(Evaporation-Induced Self-Assembly, EISA)과 직접 탄화과정을 거쳐서 합성되었다. 메조포러스 카본은 잘 배열된 이차원적 육방체 구조(2D-hexagonal structure)를 가진다. 한편, 세공벽 내 자성체 나노입자는 니켈(Ni) 금속과 니켈 산화물(NiO)이 생성되었다. 나노입자의 크기는 약 37 nm이었다. 그리고 Carbonized Ni-FDU-15의 표면적, 세공크기, 세공부피는 각각 $558m^2g^{-1}$, $22.5{\AA}$ 그리고 $0.5cm^3g^{-1}$이었다. Carbonized Ni-FDU-15는 외부에서 자력을 가하였을 때 자력이 가해지는 방향으로 이동함을 확인하였다. 이러한 자성체 담지 메조포러스 카본 물질은 흡착/분리, 자기 저장 매체, 자성 유체(ferrofluid), 자기 공명 영상(MRI) 및 약물 타겟팅 등의 광범위한 응용 분야에 높은 응용성을 가질 것으로 기대된다.

$Fe_3C$ 미립자의 제조와 자기적 특성 (Synthesis and magnetic properties of $Fe_3C$ fine particles)

  • 서일권;이승원;권혁무
    • 한국재료학회지
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    • 제3권6호
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    • pp.652-660
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    • 1993
  • 침상의 괴타이트 합성조건을 구하고 Co/가스에 의한 침탄법으로 $Fe_{3}$C 단상을 얻을 조건을 구하여 그 자기적 특성을 조사한 결과 침상의 괴타이트는 공기 유입량을 1500ml/min, 반응온도 $50^{\circ}C$의 조건하에서 교반속도 500rpm, pH 12.0 이상에서 이상적인 분말을 합성할 수 있었으며 교반속도가 증가할수록 미세하고 입도 분포도 좁고 균일하였다. 탄화반응은 유리탄소를 방지하기 위하여 CO가스와 $N_{2}$가스를 1:2로 혼입하였으며 $550^{\circ}C$, 60min. 이상의 반응조건하에서 $Fe_{3}C$단상의 포화자화값은 탄화반응 온도에 관계없이 100/emu/g으로 일정하였으며 보자력은 780 에서 400Oe까지, 각형비는 0.35에서 0.13까지 탄화잔응 온도가 증가할수록 감소하였다.

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