• Title/Summary/Keyword: Fracture reduction

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Orientation Prediction of Lamella Structure of High Carbon steel in Wire Drawing (신선가공시 고탄소강 선재 층상구조의 정렬 예측)

  • Kim Hyun Soo;Bae Chul Min;Lee Chung Yeol;Kim Byung Min
    • Journal of the Korean Society for Precision Engineering
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    • v.22 no.10 s.175
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    • pp.49-55
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    • 2005
  • The objective of this study was presented with a prediction on the alignment of cementite in pearlite lamella structure of high carbon steel by means of finite-element method(FEM) simulation. Pearlite strcuture was characterized by its nano-sized microstructure feature of alternation ferrite and cementite. FEM simulations were performed based on a suitable FE model describing the boundary conditions and the material behavior. With the alignment of lamella structure in high carbon pearlite steel wire, material plastic behavior was taken into account on plastic deformation and alignment of cementite. The effects of many important parameters(reduction in area, semi-die angle, initial angle of cementite ) on wire drawing process were predicted by DEFORM-2D. As the results, the possibility of wire fracture could be considerably reduced and the productivity of final product could be more increased than before.

Properties of SiC Powders Prepared by SHS Method and Its Sintered Bodies (SHS법으로 제조한 SiC분말 및 소결체의 특성)

  • 김흥원
    • Journal of Powder Materials
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    • v.1 no.2
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    • pp.135-144
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    • 1994
  • Silicon carbide powder was prepared from mixtures of Sangdong silica sand and carbon black by SHS (Self propagating High temperature Synthesis) method which utilizes magnesiothermic reduction of silica. In the powder preparation process, the reacted powder was leached by chloric acid to remove the magnesium oxide and was subsequently roasted to remove free carbon. The impurities were mostly eliminated by hot acid treatment. The resultant SiC powder showed the mean particle size of 0.22 ${\mu}{\textrm}{m}$ and the specific surface area of $66.55 m^2/g$. The SiC powder was mixed with 1 wt% of boron and of carbon to increase densification rate. The mixed powder was pressed and sintered pressurelessly at $2100^{\circ}C$ for 30 min in argon gas. The sintered body showed the hardness of $2550 kg{\cdot}f/mm^2$ and the fracture toughness, KIC of $3.47 MN/m^{3/2}$.

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Vascular Remodeling with a Microvascular Anastomotic Coupler System: A Case Report

  • Hong, Changbae;Yeo, Hyeonjung;Son, Daegu
    • Archives of Reconstructive Microsurgery
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    • v.24 no.1
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    • pp.20-23
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    • 2015
  • Despite increased utilization of microvascular anastomotic coupler (MAC) devices, the consequences have yet to be fully explored in terms of vascular regeneration. Removal of an exposed venous coupler is described herein, documenting normal circulatory flow through the remodeled site of application. A 25-year-old man who underwent open reduction and rigid fixation elsewhere for traumatic calcaneal fracture ultimately presented with a necrotic postoperative wound. The debrided defect was treated by free thigh perforator flap, incorporating a MAC device. Three months later, the flap remained viable, but the MAC itself was exposed. Structural integrity of the vessel and blood flow were sustained as the device was carefully removed, confirming true vascular remodeling in this example of MAC usage.

Influence of B Content on Properties of Ni-B Electrodeposit (전기도금법에 의해 생성된 Ni-B 합금도금층의 물성에 미치는 B 함량의 영향)

  • 이규환;장도일;권식철
    • Journal of the Korean institute of surface engineering
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    • v.37 no.4
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    • pp.208-214
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    • 2004
  • The influence of the boron content on the various properties of Ni-B alloy films produced by electrodeposition was investigated. The considerable reduction in grain size was observed with increasing boron content. The internal stress was tensile and increased linearly with increasing boron content. Hardness increased up to $750H_{v}$ at 2 at% boron and then kept the value to 11 at% boron for as-plated Ni-B coatings. The hardness of Ni-B films increased up to $1,250H_{v}$ due to the intermetallic$ Ni_3$B precipitation by the heat treatment, and maximum hardness of each coating increases with boron content. Wear resistance decreased with increasing the boron content because of high friction coefficient and brittle fracture of film which has higher content of boron.

Effect of Cu content on Microstructure and Mechanical Properties of Al2O3/Cu Nanocomposites (Cu 첨가량이 Al2O3/Cu 나노복합재료의 미세조직과 기계적 성질에 미치는 영향)

  • Oh Sung-Tag;Yoon Se-Joong
    • Journal of Powder Materials
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    • v.13 no.1 s.54
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    • pp.33-38
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    • 2006
  • The effect of Cu content on microstructure and mechanical properties of nano-sized Cu dispersed $Al_2O_3(Al_2O_3/Cu)$ nanocomposites was investigated. The nanocomposites with Cu content of 2.5 to 10 vol% were prepared by reduction and hot-pressing of $Al_2O_3/CuO$ powder mixtures. The nanocomposites with Cu content of 2.5 and 5vol% exhibited the maximum fracture strength of 820MPa and enhanced toughness compared with monolithic $Al_2O_3$. The strengthening was mainly attributed to the refinement of $Al_2O_3$ matrix grains. The toughening mechanism was discussed by the observed microstructural feature based on crack bridging.

A Study on the Long-term Deformation of Steel Fiber Reinforced Concrete Utilizing By-Products of Industry (산업부산물을 사용한 강섬유보강 콘크리트의 장기변형 특성에 관한 연구(I))

  • 박승범;김의성;윤의식;홍석주
    • Proceedings of the Korea Concrete Institute Conference
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    • 1997.04a
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    • pp.308-314
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    • 1997
  • Shrinkage and creep are the fundamental properties of concrete. These long term deformations can be seen as bothersome(increased deflection) or can be seen as reduction of compressive stress of prestressed concrete. Steel fibers advance the mechanical properties of concrete:tensile strength, ductility, flexural strength, fracture toughness, and post-cracking resistance, etc...Silica fume is pozzolanic material which combines with hydrated lime to generate silicate materials which increase the compressive strength and reduce somewhat the creep of concrete. This paper is the result of the long-term deformation by silica fume and steel fibers with varying percentages.

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Thermal Shock Resistance of $80Al_2O_3-20Al$ Composites: Experiments and Finite Element Analysis ($80Al_2O_3-20Al$ 복합재료의 내열충격성: 실험과 유한요소 해석)

  • 김일수;신병철
    • Journal of the Korean Ceramic Society
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    • v.37 no.3
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    • pp.201-204
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    • 2000
  • Thermal shock resistance of 80Al2O3-20Al composite and monolithic alumina ceramics was compared. Fracture strength was measured by using a 4-pont bending test after quenching. Thermal stresses of the ceramics and ceramic-metal composites were calculated using a finite element analysis. The bending strength of the Al2O3 ceramics decreased catastropically after quenching from 20$0^{\circ}C$ to $0^{\circ}C$. The bending strength of the composite also decreased after quenching from 200~2$25^{\circ}C$, but the strength reduction was much smaller than for Al2O3. The maximum thermal stress occured in the monolithic alumina ceramics when exposed to a temperature difference of 20$0^{\circ}C$ was 0.758 GPa. The same amount of stress occured in the Al2O3-Al composite when the temperature difference of 205$^{\circ}C$ used.

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Mechanical Properties of $\beta$-Sialon Prepared from Wando Pyrophyllite (완도납석으로부터 제조된$\beta$-Sialon의 기계적 성질)

  • 이홍림;장병국
    • Journal of the Korean Ceramic Society
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    • v.23 no.4
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    • pp.17-22
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    • 1986
  • $\beta$-Sialon powders were prepared by the reduction-nitridation reaction from the mixture of Wando-pyrophyllite and graphite at 135$0^{\circ}C$ in $N_2-H_2$ atmosphere. The $\beta$-Sialon powders were sintered at 175$0^{\circ}C$ by the pressureless sintering for 90min and the hot-pressing for 60 min respectively. All the sintered bodies showed their relative densities higher than 94% The values of M.O.R fracture toughness(KIC) and hardness showed 32.9kpsi 2.9MN/$m^{1.5}$ , 12.1GN/$m^2$ for the pressure-less sitnered bodies and 48.6kpsi, 4.6 MN/4m^{1.5}$ 15.3GN/$m^2$ for the hot-pressed bodies respectively.

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Synthesis of Powder of the System Si-Al-O-N from Alkoxides II. Properties of Powders and Sintered Ceramics of Si3N4 and $\beta$-Sialon Prepared from Alkoxides (알콕사이드로부터 Si-Al-O-N계 분말합성 II. 알콕사이드로부터 합성한 Si3N4 및 $\beta$-Sialon의 분말 및 소결체의 특성)

  • 이홍림;전명철
    • Journal of the Korean Ceramic Society
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    • v.26 no.2
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    • pp.201-209
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    • 1989
  • Fine Si-Al-OH coprecipitate powders were prepared from Si- and Al-alkoxides by the hydrolysis method. $\beta$-Sialon powder was obtained from prepared Si-Al-OH coprecipitate by the simultaneous reduction and nitridation method. The syntehsized Sialon powder was pressureless sintered at 175$0^{\circ}C$ for 90 min in N2 atmosphere. The characterization of the Sialon powder was performed with XRD, BET, SEM, TEM and particle size analysis. The sinterability and mechanical properties of sintered bodies were investigated in terms of relative density, M.O.R., fracture toughness, hardness and the morphology of microstructure. The highest values of their mechanical properties were obtained for the $\beta$-Sialon ceramics at Z=1 and those values are as follows : M.O.R., KIC and HV of $\beta$-Sialon ceramics(Z=1) are 499.1 MPa, 5.9MN/m3/2 and 18.7GPa, respectively.

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