• Title/Summary/Keyword: Heat treatment time

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A study on Improvement of Workpiece Deformation In High Frequency Heat Treatment (고주파 열처리에서 공작물 변형 개선에 관한 연구)

  • Hong, Sung-Oh;Kim, Hong-Bae;Cho, Gyu-Jae
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.2 no.2
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    • pp.31-36
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    • 2003
  • Base and saddle feed drive system in machine tool puts in operation for Improvement of life and endure by high frequency heat treatment. In this time, work requirement of establishment to gets by repeat experimentation. In this paper, using the finite elementary method, we predict and revision processing, and gets minimizing of deformation and reduce the progress of Grinding works. Moreover, having high frequency heat treatment, the maximum deformation genesis m the middle parts without slideway length. Take deformation Into finite element program (ANSYS) of taper process in roughing process, after having high frequency heat treatment, existed quantity of deformation can be reduced down to 80 percents.

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The Study of Nuclear Reactor Pressure Vessel Steel SA508Gr.3 Mechanical Properties and Temper-Parameter (원자력 압력용기용강 SA508Gr.3의 기계적 특성과 템퍼 파라메타에 관한 연구)

  • Kim, Byoung-Ok;Lee, Oh-Yeon
    • Journal of the Korean Society for Heat Treatment
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    • v.25 no.3
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    • pp.121-125
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    • 2012
  • The large forgings used in chemical plants or nuclear power plants are produced by complex heat treatment. because of thickness up to 200~300 mm and weight up to 200~300 ton, setting proper heat treatment cycle is so difficult. In addition, defects of products make companies wasting large money and valuable time. In this study, to reduce try & err, when setting heat treatment of reactor pressure vessel steel SA508Gr.3, carrying out the basic mechanical property test of SA508 Gr.3 and testing hardness of SA508Gr.3 in various tempering temperature. and calculating temper curve with Hollomon-Jaffe parameter.

Effects of Hot-Air Heat Treatment on the Surface Color of Phyllostachys bambusoides Bamboo

  • LEE, Hyoung-Woo;LEE, Eun-Ju
    • Journal of the Korean Wood Science and Technology
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    • v.49 no.6
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    • pp.566-573
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    • 2021
  • We investigated color changes on the outer surfaces of Phyllostachys bambusoides bam-boo by heat treatment under three different temperatures (180℃, 200℃, and 220℃) for three different durations (60 min, 90 min, and 120 min). A method of predicting the bam-boo surface color change after heat treatment was developed to provide valuable information and increase the added value of domestic bamboo products. The three average color parameters L*, a*, and b* decreased, and the overall color changes increased as the severity factor increased. The values of L* × a* × b* were highly related to the severity factor, and the optimal duration time for the desired bamboo surface color with a certain heat-treatment temperature could be estimated.

Effects of Heat-treatment on Crystallization and Mechanical Properties of Glass ceramics for Dental crown prosthesis in the system $CaO-MgO-SiO_{2}-P_{2}O_{5}-TiO_2$ (치관보철용 $CaO-MgO-SiO_{2}-P_{2}O_{5}-TiO_2$계 글라스 세라믹의 결정화와 기계적 물성에 미치는 열처리 조건의 영향)

  • Chung, In-Sung;Kim, Bu-Sob
    • Journal of Technologic Dentistry
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    • v.26 no.1
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    • pp.77-88
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    • 2004
  • Glass ceramics for dental crown prosthesis were prepared by crystallization of CaO-MgO-SiO2-P2O5-TiO2 glasses. Their crystallization behaviors have been investigated as a function of heattreatment temperature and holding time in relation to mechanical properties. The results are as follows: Vickers hardness and bending strength of glass ceramics increased due to the precipitation of apatite, whitlockite, $\beta$-wollastonite, magnesium titanate, and diopside crystal phases within glass matrix. The final crystalline phase assemblages and the microstructures of the glass ceramics were found to be dependent on heat-treatment temperature and holding time. Vickers hardnes and bending strength of glass ceramics increased with increasing heat-treatment temperature and holding time.

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A Comparison between the Thermomechanical and Structural Changes in Textured PET Yarns after Superheated Steam and Dry Heat Treatment

  • Karakas, Hale-Canbaz
    • Fibers and Polymers
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    • v.5 no.1
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    • pp.19-24
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    • 2004
  • PET yarns textured at different texturing conditions were treated with superheated steam or dry heat at different temperatures for different times. The effects of the treatment conditions on the thermomechanical and structural changes of the yarn were examined by shrinkage, X-ray diffraction and birefringence measurements. With increase in superheated steam temperature, the crystalline orientation factor and birefringence decreased, whereas crystal size increased. Dry heat treatment had a smaller effect on shrinkage and structural properties in comparison with superheated steam treatment. The additional shrinkage after texturing process was investigated. The effect of heat-setting in both media was more significant at $200^{\circ}C$. The time dependence of the properties was not linear.

Heat Treatment for Improvement of Hardness Uniformity of Standard Hardness Blocks (경도 기준편의 경도 균일성 향상을 위한 열처리)

  • Hahn, J.H.;Hwang, N.M.;Kim, J.J.;Moon, H.G.
    • Journal of the Korean Society for Heat Treatment
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    • v.2 no.2
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    • pp.33-37
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    • 1989
  • In order to improve hardness uniformity of standard-hardness blocks. experimental procedure was designed using Taguchi Method. For this purpose the following factors were studied: austenitizing temperature, tempering condition, grinding condition, subzero treatment, lapping time, $15{\mu}m$ polishing time, final polishing time. These factors were processed and then ten hardness values were measured on each specimen. SN (signal to noise) ratio for each condition was calculated with standard variations of these values. Finally, from the calculated value of ANOVA on SN ratios, the lapping time was found to be the main factor Better uniformity with longer lapping time implies that residual stress that was formed after quenching is a dominent parameter that affects on the uniformity of hardness. Therefore, step-quenching method was adapted to minimize the residual stress. By this modification of quenching procedure, the hardness uniformity was improved remarkably and the yield ratio was increased from 55% to 88%.

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데침과 열수 침적의 병용 열처리와 trehalose 첨가가 오이 김치의 저장중의 효소 활성의 변화와 관능 검사에 미치는 효과

  • 이혜정
    • Proceedings of the Korean Journal of Food and Nutrition Conference
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    • 2001.12a
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    • pp.131-131
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    • 2001
  • The enzyme activity and organoleptic properties of Korean pickled cucumber were studies for their changes during fermentation. The Korean pickled cucumber were prepared by blanching and high temperature soaking in salt solution and trehalose treatment The results shelved that the effect of combined heat and trehalose treatment significantly reduced the fermentation rate and softening rate of texture while a rather rapid fermentation was for those pleserved with salt. The effect of trehalose treatment enhenced fermentation and it was significantly reduced softening rate of texture by 2% treatment. The sensory evaluation of Korean pickled cucumber was found that combined heat treatment with blanching and hot solution had a positive effect for reduction of softening of cucumber tissue, however, odor and taste were not significantly affected. This study suggested that combined heat and trehalose treatment might have potential for affording protection against softness of cucumber tissue during the fermentation time.

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A Research on the Effects of Heat Treatment on the Breakdown Characteristics of Amber Miea (호박운모의 절연파괴특성에 미치는 열처리의 영향에 관한 연구)

  • Sung Kae Chung
    • 전기의세계
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    • v.22 no.2
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    • pp.19-22
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    • 1973
  • The contents of this paper are the effects of heat treatment on the breakdown strength of Amber Mica. In this study the breakdown strength of Amber Mica of which thickness is about 0.2-0.5(mm) was found to be raised by approximately 10% when it is heat treated at proper temperature and during suitable interval of time. Furthermore, both the heat-treatment temperature and time interval are higher and longer respectively within some extent, the more breakdown strength increasing effects are able to be expected. The results of this experiments are explained qualitively by the existence of contained gas, Hippel's breakdown theory in crystal solid insulator, and disorder of crystal structure.

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Variation in Microstrutures and Mechanical Properties During Long-term Material Degradation of Austenitic 316L Steel (오스테나이트계 316강의 장시간 재료 열화에 따른 미세조직의 변화와 기계적 특성의 변화)

  • Kong, Wonsik;Kim, Chungseok
    • Journal of the Korean Society for Heat Treatment
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    • v.34 no.6
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    • pp.315-322
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    • 2021
  • In this study, we investigate the variation in microstruture and mechanical property of austenitic 316L stainless steel during long-term material degradation. To simulate the material degradation, the AISI 316 steel was exposed to accelerate under a temperature of 600℃ for up to 10000 hours at each predetermined heat treatment time. As the long-term material degradation time increase, the grain shape was changed from polygonal grains with annealing twins to circular grains. Most twins distributed uniformly interior of grains are recovered and disappered with long-term material degradation. Also, the δ ferrite along grain boundaries decomposed and transformed into the σ phase resulting in decrease of elongation of austenitic 316L stainless steel.

Improvement of the Biocompatibility of Chitosan Dermal Scaffold by Rigorous Dry Heat Treatment

  • Kim, Chun-Ho;Park, Hyun-Sook;Gin, Yong-Jae;Son, Young-Sook;Lim, Sae-Hwan;Park, Young-Ju;Park, Ki-Sook;Park, Chan-Woong
    • Macromolecular Research
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    • v.12 no.4
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    • pp.367-373
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    • 2004
  • We have developed a rigorous heat treatment method to improve the biocompatibility of chitosan as a tissue-engineered scaffold. The chitosan scaffold was prepared by the controlled freezing and lyophilizing method using dilute acetic acid and then it was heat-treated at 110$^{\circ}C$ in vacuo for 1-3 days. To explore changes in the physicochemical properties of the heat-treated scaffold, we analyzed the degree of deacetylation by colloid titration with poly(vinyl potassium sulfate) and the structural changes were analyzed by scanning electron microscopy, Fourier transform infrared (FT-IR) spectroscopy, wide-angle X-ray diffractometry (WAXD), and lysozyme susceptibility. The degree of deacetylation of chitosan scaffolds decreased significantly from 85 to 30% as the heat treatment time increased. FT-IR spectroscopic and WAXD data indicated the formation of amide bonds between the amino groups of chitosan and acetic acids carbonyl group, and of interchain hydrogen bonding between the carbonyl groups in the C-6 residues of chitosan and the N-acetyl groups. Our rigorous heat treatment method causes the scaffold to become more susceptible to lysozyme treatment. We performed further examinations of the changes in the biocompatibility of the chitosan scaffold after rigorous heat treatment by measuring the initial cell binding capacity and cell growth rate. Human dermal fibroblasts (HDFs) adhere and spread more effectively to the heat-treated chitosan than to the untreated sample. When the cell growth of the HDFs on the film or the scaffold was analyzed by an MTT assay, we found that rigorous heat treatment stimulated cell growth by 1.5∼1.95-fold relative to that of the untreated chitosan. We conclude that the rigorous dry heat treatment process increases the biocompatibility of the chitosan scaffold by decreasing the degree of deacetylation and by increasing cell attachment and growth.