• 제목/요약/키워드: surface relaxation

검색결과 315건 처리시간 0.022초

결정립크기와 집합조직제어를 통한 마그네슘 합금의 기계적 성질 개선 (Improvement of Mechanical Properties of Mg alloys through Control of Grain Size and Texture)

  • 김우진;이종범;김우영;정하국;박종덕
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2006년도 춘계학술대회 논문집
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    • pp.57-58
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    • 2006
  • The effects of lowering ECAP temperature during ECAP process and Post-ECAP annealing on microstructure, texture and mechanical properties of the AZ31 alloys have been investigated in the present study. The as-extruded materials were ECAP processed to 2 passes at 553K prior to subsequent pressing up to 6 passes at 523K or 493K. When this method of lowering ECAP temperature during ECAP was used, the rods could be successfully deformed up to 6 passes without any surface cracking. Grain refinement during ECAP process at 553K might have helped the material to endure further straining at lower deformation temperatures probably by increasing the strain accommodation effect by grain boundary sliding, causing stress relaxation. Texture modification during ECAP has a great influence on the strength of Mg alloys because HCP metals have limited number of slip systems. As slip is most prone to take place on basal planes in Mg at room temperature, the rotation of high fraction of basal planes to the directions favorable for slip as in ECAP decreases the yield stress appreciably. The strength of AZ31 Mg alloys increases with decrease of grain size if the texture is constant though ECAP deformation history is different. A standard positive strength dependence on the grain size for Mg alloys with the similar texture (Fig. 1) supports that the softening of ECAPed Mg alloys (a negative slope) typically observed despite the significant grain refinement is due to the texture modification where the rotation of basal planes occurs towards the orientation for easier slip. It could be predicted that if the original fiber texture is restored after ECAP treatment yielding marked grain refinement, yield stress as high as 500 MPa will be obtained at the grain size of ${\sim}1{\mu}m$. Differential speed rolling (DSR) with a high speed ratio between the upper and lower rolls was applied to alter the microstructure and texture of the AZ31 sheets. Significant grain refinement took place during the rolling owing to introduction of large shear deformation. Grain size as small as $1.4{\mu}m$ could be obtained at 423K after DSR. There was a good correlation between the (0002) pole intensity and tensile elongation. This result indicates that tensile ductility improvement in the asymmetrically rolled AZ31 Mg alloys is closely related to the weakening of basal texture during DSR. Further basal texture weakening occurred during annealing after DSR. According to Hall-Petch relation shown in Fig. 1, the strength of the asymmetrically rolled AZ31 is lower than that of the symmetrically rolled one when compared at the same grain size. This result was attributed to weakening of fiber texture during DSR. The DSRed AZ31, however, shows higher strength than the ECAPed AZ31 where texture has been completely replaced by a new texture associated with high Schmid factors.

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유리질 중합체의 균열 Healing에 관한 연구 (제1보) -이론 모델링- (A study on Crack Healing of Various Glassy Polymers (part I) -theoretical modeling-)

  • 이억섭
    • 한국정밀공학회지
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    • 제3권1호
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    • pp.40-49
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    • 1986
  • Crack, craze and void are common defects which may be found in the bulk of polymeric materials such as either themoplastics or thermosets. The healing phenomena, autohesion, of these defects are known to be a intrinsic material property of various polymeric materials. However, only a few experimental and theoretical investigations on crack, void and craze healing phenomena for various polymeric materials have been reported up to date [1, 2, 3]. This may be partly due to the complications of healing processes and lacking of appropriate theoretical developments. Recently, some investigators have been urged to study the healing phenomena of various polymenic materials since the significance of the use of polymer based alloys or composites has been raised in terms of specific strength and energy saving. In the earlier published reports [1, 2, 3, 4], the crack and void healing velocity, healing toughness and some other healing mechanical and physical properties were measured experimentally and compared with predicted values by utilizing a simple model such as the reptation model under some resonable assumptions. It seems, however, that the general acceptance of the proposed modeling analyses is yet open question. The crack healing processes seem to be complicate and highly dependent on the state of virgin material in terms of mechanical and physical properties. Furthermore, it is also strongly dependent on the histories of crack, craze and void development including fracture suface morphology, the shape of void and the degree of disentanglement of fibril in the craze. The rate of crack healing may be a function of environmental factors such as healing temperature, time and pressure which gives different contact configurations between two separated surfaces. It seems to be reasonable to assume that the crack healing processes may be divided in several distinguished steps like stress relaxation with molecular chain arrangement, surface contact (wetting), inter- diffusion process and com;oete healing (to obtain the original strength). In this context, it is likely that we no longer have to accept the limitation of cumulative damage theories and fatigue life if it is probable to remove the defects such as crack, craze and void and to restore the original strength of polymers or polymer based compowites by suitable choice of healing histories and methods. In this paper, we wish to present a very simple and intuitive theoretical model for the prediction of healed fracture toughness of cracked or defective polymeric components. The central idea of this investigation, thus, may be the modeling of behavior of chain molecules under healing conditions including the effects of chain scission on the healing processes. The validity of this proposed model will be studied by making comparisons between theoretically predicted values and experimentally determined results in near future and will be reported elsewhere.

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대기오염에 의한 폐장조직 손상 -연구방향의 설정을 위한 논의- (Human Lung Insults due Air Pollutant -A Review for Priority Setting in the Research-)

  • 김건열;백도명
    • 환경위생공학
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    • 제7권2호
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    • pp.95-110
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    • 1992
  • Much progress has been made in understanding the subcellular events of the human lung injuries after acute exposure to environmental air pollutants. Host of those events represent oxidative damages mediated by reactive oxygen species such as superoxide, hydrogen peroxide, and the hydroxy, free radical. Recently, nitric oxide (NO) was found to be endogenously produced by endothelial cells and cells of the reticulo-endothelial system as endothelialderived relaxation factor (EDRF) which is a vasoactive and neurotransmitter substance. Together with superoxide, NO can form another strong oxidant, peroxonitrite. The relative importance of exogenous sources of $N0/N0_2$ and endogenous production of NO by the EDRF producing enzymes in the oxidative stresses to the heman lung has to be elucidated. The exact events leading to chronic irreversible damage are still yet to be known. From chronic exposure to oxidant gases, progressive epithelial and interstitial damages develop. Type I epithelial cells become thicker and cover a smaller average alveolar surface area while thee II cells proliferate instead. Under acute damages, the extent of loss of the alveolar epithelial cell lining, especially type II cells appears to be a good predictor of the ensuing irreversible damage to alveolar compartment. Interstitial matrix undergo remodeling during chronic exposure with increased collagen fibers and interstitial fibroblasts. However, Inany of these changes can be reversed after cessation of exposure. Among chronic lung injuries, genetic damages and repair responses received particular attention in view of the known increased lung cancer risks from exposure to several air pollutants. Heavy metals from foundry emission, automobile traffics, and total suspended particulate, especially polycystic aromatic hydrocarbons have been positively linked with the development of lung cancer. Asbestos in another air pollutant with known risk of lung cancer and mesothelioma, but asbestos fibers are nonauthentic in most bioassays. Studies using the electron spin resonance spin trapping method show that the presence of iron in asbestos accelerates the production of the hydroxy, radical in vitro. Interactions of these reactive oxygen species with particular cellular components and disruption of cell defense mechanisms still await further studies to elucidate the carcinogenic potential of asbestos fibers of different size and chemical composition. The distribution of inhaled pollutants and the magnitude of their eventual effects on the respiratory tract are determined by pollutant-independent physical factors such as anatomy of the respiratory tract and level and pattern of breathing, as well as by pollutant-specific phyco-chemical factors such as the reactivity, solubility, and diffusivity of the foreign gas in mucus, blood and tissue. Many of these individual factors determining dose can be quantified in vitro. However, mathematical models based on these factors should be validated for its integrity by using data from intact human lungs.

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고강도 강관을 적용한 SP-록볼트 개발 및 현장 적용을 위한 연구 (A study on the development and field application of SP-Rockbolt with high-strength steel pipe)

  • 신현강;정혁상;안동욱
    • 한국터널지하공간학회 논문집
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    • 제19권4호
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    • pp.651-668
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    • 2017
  • 터널 굴착에 따른 초기 안정성 확보를 위해 1차 지보재인 숏크리트와 록볼트를 가장 적절한 시기에 터널 굴착면 주면으로 타설하여야 한다. 이러한 지보재의 역할은 장 단기적인 터널 안정성에 매우 중요한 역할을 하기 때문이다. 여기서 록볼트는 터널 굴착시 응력이완에 따라 발생되는 외압을 축력으로 받아들여 터널 굴착면의 숏크리트에 전달하여 전체적인 안정성을 도모하는 중요한 지보재이다. 현재까지 록볼트의 재료는 현장 수급이 유리한 이형강봉을 많이 이용하였으나 최근들어 불확실한 품질의 중국산 자재의 시장진입과 록볼트 주면 모르타르 충전시 흘러내림에 의한 밀실한 충전불량, 용수에 의한 부식 등 다양한 문제점이 나타나고 있다. 특히, 현재의 설계기준상 이형강봉에 대한 기계적 성질의 기준은 있으나 그 외 섬유보강 플라스틱(FRP) 등이 사용될 수 있으나 명확한 기준은 제시되지 않고 있다. 그래서 새로운 소재로 개발되더라도 실제 현장 적용에 있어서는 해결해야 할 부분이 많다. 따라서, 본 연구에서는 상기의 기존 록볼트가 지니고 있는 여러 문제점을 해결, 개선하고자 Autobeam 재료를 이용한 고강도 강관 록볼트(Samrt Pipe-록볼트, 이하 SP-록볼트)를 개발한 내용을 다루고 있다. 개발된 록볼트의 성능평가를 위해 현장시험을 수행하고, 기존 모르타르 충전을 개선할 수 있는 충전재를 개발하여 록볼트의 성능을 더욱 향상하고자 하였다. 또한, 실무현장의 적용성 확보를 위해 설계 및 시공기준에 대한 연구를 수행하였다.

Wiener Filtering 기법을 적용한 홈헬스케어용 심전도 신호 모니터링 시스템 구현 (Implementation of the ECG Monitoring System for Home Health Care Using Wiener Filtering Method)

  • 정도운;김세진
    • 융합신호처리학회논문지
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    • 제9권2호
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    • pp.104-111
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    • 2008
  • 심전도(electrocardiogram, ECG)는 심장의 수축과 이완에 따라 체표면에서 측정 가능한 생체전기신호이며, 환자의 심장 상태와 일반적인 건강 정보를 제공하므로 건강모니터링을 위한 중요한 지표로서 인식된다. 심전도신호에는 전원잡음, 근잡음 등과 같은 고주파잡음과 동잡음과 같은 저주파 잡음이 포함되는 경우가 많다. 하지만 심전도로부터 잡음을 제거하는 것은 쉽지 않으며, 필터링 결과는 심전도신호의 외곡을 초래할 수도 있다. 본 연구에서는 일상생활 중 건강모니터링용으로 사용하기 위해 동잡음에 강인한 소형의 저전력 심전도측정 시스템을 구현하였다. 심전도 모니터링 시스템은 심전도 증폭기, 마이크로프로세서, 블루투스모듈, 모니터링 프로그램등으로 구성하였다. 심전도증폭기는 저전력 계측용 증폭기를 이용하여 설계 및 구현하였으며, 증폭기로부터 데이터를 수집하여 신호처리하고 무선전송하기 위해 마이크로프로세서를 사용하였다. 그리고 마이크로프로세서로부터 PC로 데이터를 전송하기 위해 블루투스 모듈을 사용하였다. 구현된 시스템의 성능 평가를 위하여 적응필터 성능평가 시뮬레이션을 수행하였으며, 실제 동잡음 환경에서 신호측정 및 잡음제거 실험을 수행하여 잡음제거 특성을 평가하였다.

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내소산(內消散)의 정상 및 위 유문부 확장 흰 쥐의 위 운동성에 대한 효능 (Effect of Naeso-san on Gastric Motility between Normal Intact and Antral Dilatated Rats)

  • 김진석;윤상협
    • 대한한방내과학회지
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    • 제29권1호
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    • pp.117-129
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    • 2008
  • Background & Objective : Naeso-san(NSS) has been used for the treatment of functional dyspepsia, regarded as a gastric dysmotility disease. A main cause of gastric dysmotility is antral dilatation or antroduodenal uncoordination. Therefore, we investigated the effect of NSS on gastric motility and its mechanism of action, as well as the morphologic changes in antral dilatated rats. Methods : Antral dilatated rats were induced by wrapping a nonabsorbable rubber ring(D:6mm, W:4mm, T:1mm) around the 1st portion of the duodenum for 8 weeks. Then morphologic changes were investigated and compared with normal intact rats before and after 8 weeks. Gastric emptying was measured by administration of normal saline(NS) or NSS in normal intact and antral dilatated rats. In another series of experiments to evaluate the mechanism of NSS under delayed conditions, normal intact rats were treated with atropine sulfate(1mg/kg, s.c.), quinpirole HCl(0.3mg/kg, i.p.), $NAME(N^{G}-nitro-L-arginine$ methyl ester, 75mg/kg, s.c.) and cisplatin(10mg/kg, i.p.), respectively. The myoelectrical activity of the gastric smooth muscle was recorded in normal intact and antral dilatated rats. The contractile waves were measured for 30 minutes before and after administration of each solution(NS, NSS). Results : Body weight gain of antral dilatated rats was significantly lower than that of the controls. Futhermore, we found the thickness of the mucosal and muscular layers and surface area of the stomach increased significantly compared with controls. NSS 278㎎/㎏ improved gastric emptying more than normal saline or NSS 93mg/kg in normal intact(p=0.026) and antral dilatated rats(p=0.03). NSS enhanced gastric emptying significantly in the NAME treated group(p=0.002). NSS 278mg/kg increased the significant postprandial dominant power than that of NS in normal intact rats, whereas there was no statistical significance in antral dilatated rats. Conclusions : NSS stimulates gastric motility through the cholinergic pathway. We expect that pathologic model with antral dilatation can be used as an exprimental tool which is similar to dyspepsia and NSS would be effective especially in dysmotility-like functional dyspepsia with antral dilatation or impaired reservoir functions such as gastric adaptive relaxation.

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접착제의 구조물성과 접착특성 (Structure/Property of Adhesives and Adhesion Performance)

  • Hiroshi Mizumachi
    • 펄프종이기술
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    • 제29권1호
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    • pp.73-83
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    • 1997
  • Most of the materials used in various industrial fields and also in our daily life are multi-component materials or composite materials, and it is well known that there are many cases where adhesion between the constituents within the bonded systems plays an important role. There are various types of performance evaluation tests for the bonded materials, among which tests for evaluating the bond performance under various conditions may be regarded as the most interesting ones for those engaged in work related to adhesion. I have studied on the mechanism of adhesion form the rheological standpoint with my colleagues, including some students from Korea, and I am very happy to be able to have a talk on some of our research works. In Japan, the so-called "adhesives" are usually classified into two categories;adhesives and pressure sensitive adhesives (PSA). Adhesives are the materials which solidify after bonding and are after used as the structural adhesives because the adhesive strength is comparatively strong. On the other hand, the pressure sensitive adhesives never solidify and are used as PSA tapes, labels or decals. About the adhesives, we have examined the dependence of adhesive strength(shear, tensile, peel) upon both temperature and rate of deformation, and found out some empirical rules which are applicable to most of the adhesive systems. We have also developed a simplified theory of adhesion, which is deseribed in terms of mechanical equivalent mode1 and a few failure criteria. Although some of the common rules can be accounted for according to this theory, it must be pointed out that a fracture mechanical approach ms inevitable especially in the region where the meehanical relaxation time of the adhesive is extremely large [W. W. Lim and H. Mizumachi]. About the pressure sensitive adhesives, we have studied on the PSA performance (peel, tack, holding power) as a function of both the viscoelastic properties and surface chemical properties of the materials, and found out some rules, and again we have developed a theory which deseribes the mechanism. And in addition, we have studied on the miscibility between linear polymers and oligomers, because PSA is generally manufactured by blending gums and tackifier resins. Many phase diagrams have been found and some of them have been analyzed on thermodynamic basis, and it became evident that the miscibility is a very important factor in PSA [H. J. Kin and H. Mizumachi]. In this presentation, I want to emphasize the fact that the adhesion performance is closely related to the structure/property of the adhesives.adhesives.

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$(Sr_{1-x}{\cdot}Ca_x)_mTiO_3$ 입계층 세라믹의 유전특성에 관한 연구 (Study on the Dielectric Properties of $(Sr_{1-x}{\cdot}Ca_x)_mTiO_3$ Grain Boundary Layer Ceramics))

  • 김진사;최운식;신철기;김성렬;이준웅
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1994년도 추계학술대회 논문집 학회본부
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    • pp.215-218
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    • 1994
  • $(Sr_{l-x}{\cdot}Ca_x)_mTiO_3+0.006Nb_2O_5$($0.05{\leq}x{\leq}0.2$, 0.996$N_2$)에서 소결시킨 후 CuO를 시편의 양면에 도포하여 $1100^{\circ}C$에서 2시간동안 열처리함으로써 제작하였다. 결정립의 크기는 Ca의 치환량이 증가함에 따라 촉진되었으나, 20[mol%] 이상 치환시 더 이상 고용되지 못하고 입성장을 억제시켰다. Ca의 치환량이 $10{\sim}15[mol%]$, m=1인 시편에 있어서 우수한 유전특성을 나타내었다. 즉, 비유전율, 유전손실($tan{\delta}[%]$)과 온도변화에 따른 정전용량의 변화율이 각각 >25,000, <0.3[%], <${\pm}10[%]$을 나타내었다. 본 연구에 사용된 모든 시편은 온도의 함수로서 주파수 증가에 따라 유전완화 현상을 나타내었으며, 분산주파수는 $10^6[Hz]$ 이상이었다.

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고칼륨과 저온이 흰쥐 대동맥의 내피세포의존성이 완능에 미치는 영향 (Effect of Hvperkalemia and Hypothermia on Endothelium-dependent Relaxation of the Rat Aorta)

  • 이응배;전상훈
    • Journal of Chest Surgery
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    • 제29권12호
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    • pp.1299-1305
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    • 1996
  • 고칼륨과 저온이 혈관내피세포의 acetylcholine(Ach)에 의한 혈관이완에 미치는 영향을 알아보기 위하여 흰쥐의 흉부 대동맥을 이용하여 Ach과 sodium nitroprusside(SNP)에 대한 이완 반응을 측정하였다. 실험은 다섯 군으로 나누어서 실시하였으며 각 군을 10례로 하였다. 1군은 대조군으로 어떤 조작도 가하지 않고 organ bath에서 등랑성 긴장도를 측정하였고, 2군(내피세포 제거군)은 내피세포를 물리적으로 제거후 1군과 같은 방법으로 긴장도를 측정하였고, 37$^{\circ}C$ 57에 45분간 처리후 혈관의 등장성 긴장도를 측정하였다. 대조군, 457,4mST및 3757군에서의 Ach에 대한 혈관의 이완은 유의한 차이가 없었으며,내피세포 제거군에서는 Ach에 대한 혈관의 이완이 대조군에 비해 현저하게 감소되었으며, SUP에 대한 혈관의 이완은 모든 군에서 유의한 차이가 없었다. 이에 저자들은 다음과 같은 결론을 내릴 수 있었다. 고농도의 칼륨과 저온자체는 흰쥐의 흉부대동맥 내피세포의 Ach에 대한 이완능을 저해하지 않는다.

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Molecular Theory of Plastic Deformation (Ⅲ)$^*$

  • Kim, Jae-Hyun;Ree, Tai-Kyue;Kim, Chang-Hong
    • Bulletin of the Korean Chemical Society
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    • 제2권3호
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    • pp.96-104
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    • 1981
  • (1) The flow data of f (stress) and ${\dot{s}$ (strain rate) for Fe and Ti alloys were plotted in the form of f vs. -ln ${\dot{s}$ by using the literature values. (2) The plot showed two distinct patterns A and B; Pattern A is a straight line with a negative slope, and Pattern B is a curve of concave upward. (3) According to Kim and Ree's generalized theory of plastic deformation, pattern A & B belong to Case 1 and 2, respectively; in Case 1, only one kind of flow units acts in the deformation, and in Case 2, two kinds flow units act, and stress is expressed by $f={X_1f_1}+{X_2f_2}$where $f_1\;and\;f_2$ are the stresses acting on the flow units of kind 1 and 2, respectively, and $X_1,\;X_2$ are the fractions of the surface area occupied by the two kinds of flow units; $f_j=(1/{\alpha}_j) sinh^{-1}\;{\beta}_j{{\dot{s}}\;(j=1\;or\;2)$, where $1/{\alpha}_j\;and\;{\beta}_j$ are proportional to the shear modulus and relaxation time, respectively. (4) We found that grain-boundary flow units only act in the deformation of Fe and Ti alloys whereas dislocation flow units do not show any appreciable contribution. (5) The deformations of Fe and Ti alloys belong generally to pattern A (Case 1) and B (Case 2), respectively. (6) By applying the equations, f=$(1/{\alpha}_{g1}) sinh^-1({\beta}_{g1}{\dot{s}}$) and $f=(X_{g1}/{\alpha}_{g1})sinh^{-1}({\beta}_{g1}{\dot{s}})+ (X_{g2}/{\alpha}_{g2})\;shih^{-1}({\beta}_{g2}{\dot{s}})$ to the flow data of Fe and Ti alloys, the parametric values of $x_{gj}/{\alpha}_{gj}\;and\;{\beta}_{gs}(j=1\;or\;2)$ were determined, here the subscript g signifies a grain-boundary flow unit. (7) From the values of ($({\beta}_gj)^{-1}$) at different temperatures, the activation enthalpy ${\Delta}H_{gj}^{\neq}$ of deformation due to flow unit gj was determined, ($({\beta}_gj)^{-1}$) being proportional to , the jumping frequency (the rate constant) of flow unit gj. The ${\Delta}H_{gj}\;^{\neq}$ agreed very well with ${\Delta}H_{gj}\;^{\neq}$ (self-diff) of the element j whose diffusion in the sample is a critical step for the deformation as proposed by Kim-Ree's theory (Refer to Tables 3 and 4). (8) The fact, ${\Delta}H_{gj}\;^{\neq}={\Delta}H_{j}\;^{\neq}$ (self-diff), justifies the Kim-Ree theory and their method for determining activation enthalpies for deformation. (9) A linear relation between ${\beta}^{-1}$ and carbon content [C] in hot-rolled steel was observed, i.e., In ${\beta}^{-1}$ = -50.2 [C] - 40.3. This equation explains very well the experimental facts observed with regard to the deformation of hot-rolled steel..