• 제목/요약/키워드: M-pass

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SMAW 수중 다층용접시 용접부 특성에 관한 연구 (A Study on the effect of the multi-pass SMAW welding on the characteristic of the underwater welding areas)

  • 최기용;이상율;이보영;이병훈;이상용;박성두
    • Journal of Welding and Joining
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    • 제16권4호
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    • pp.55-62
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    • 1998
  • While excellent joint quality has been obtained using dry chamber underwater welding methods, the size limitations imposed by this process restrict its use for underwater construction work. The wet underwater shielded metal-arc welding eliminates this restriction but suffers from poor weld properties by the 1-pass bead-on-plate welding due to the excessive diffusible hydrogen. On the other hand, in the wet underwater welding, it is well known that the quantity of diffusible hydrogen in multi-pass welded parts reduce to less than that in 1-pass welded parts. Therefore, in this paper, welding experiments are made the 3-pass bead-on-plate welds by using TMCP and normalized steel plates and E4301 and cellulose coated electrode. After that, The amounts of the hydrogen absorbed into the 3-pass welded area were measured according to the JIS Z 3118 specification. The microstructural changes as well as the microhardness distribution after the underwater 3-pass welding were also investigated using Vickers microhardness tester and S.E.M and O.M. The results indicated that the quantity of diffusible hydrogen in 3-pass welded areas was reduced little less than a half of one of that in 1-pass welded areas at the specific welding condition. As a result, the cold cracking of 3-pass welded areas decreased by reduced effect of diffusible hydrogen. In the underwater 3-pass welding, the micrography of cold cracking fracture surface showed mainly the cleavage of hydrogen embrittlement.

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다단 습식 신선공정 해석 및 적용 (Analysis of Multi-Pass Wet Wire Drawing Process and Its Application)

  • 이상곤;김병민
    • 소성∙가공
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    • 제14권8호통권80호
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    • pp.689-695
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    • 2005
  • Multi-pass wet wire drawing process is used to produce fine wire in the industrial field. The production of fine wire through multi-pass wet wire drawing process with appropriate dies pass schedule would be impossible without understanding the relationship among many process parameters such as material properties, dies reduction, friction conditions, drawing speed etc However, in the industrial field, dies pass schedule of multi-pass wet wire drawing process has been executed by trial and error of experts. This study investigated the relationship among many process parameters quantitatively to obtain the important process information fur the appropriate pass schedule of multi-pass wet wire drawing process. Therefore, it is possible to predict the many important process parameters of multi-pass wet wire drawing process such as dies reduction, machine reduction, drawing force, backtension force, slip rate, slip velocity rate, power etc. The validity of the analyzed drawing force was verified by FE simulation and multi-pass wet wire drawing experiment. Also, pass redesign was performed based on the analyzed results, and the wire breakage between the original pass schedule and the redesigned pass schedule was compared through experiment.

만성 뇌졸중 환자들의 체간 조절 평가의 재현성과 Barthel Index구분을 위한 임상 유용성 (Reproducibility of Trunk Control Assessment and the Clinical Utility of the Distinguishing Barthel Index in Chronic Stroke Patients)

  • 안승헌;박대성
    • 대한물리의학회지
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    • 제19권3호
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    • pp.55-63
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    • 2024
  • PURPOSE: This study examined the test-retest reliability and clinical utility of the Modified Trunk Impairment Scale (mTIS), Trunk Control Test (TCT), and Postural Assessment Scale for Stroke - Trunk Control (PASS-TC) in patients with chronic stroke. METHODS: Thirty-eight stroke patients were reassessed using the mTIS, TCT, and PASS-TC with a seven-day interval between assessments. The test-retest reliability was evaluated using the intraclass correlation coefficient (ICC2,1), the standard error of measurement (SEM), the minimal detectable change (MDC), and MDC%, as well as Bland-Altman analysis. The relationship between the mTIS, TCT, PASS-TC scores, and the Barthel Index (BI) was also investigated. RESULTS: The test-retest reliability for the mTIS, TCT, and PASS-TC was high, with ICC values ranging from .91 to .94 (95% confidence interval: .83-.97). The MDCs for the mTIS and TCT were 2.35 and 13.9, respectively, while the MDC for the P ASS-TC was 2.54, all below 20% of the maximum possible score, indicating reliable measurement. The optimal mTIS cut-off score for distinguishing between mild (75-95 points) and severe (50-74 points) dependence on the BI was ≥ 9.5, with an accuracy of 79%. Patients with an mTIS score ≥ 9.5 (out of 15) showed an 18-fold higher likelihood of achieving a mild level of functional independence than those with a score < 9.5. CONCLUSION: The mTIS, TCT, and PASS-TC showed high test-retest reliability and no systematic errors in chronic stroke patients. The MDC values were reliable, indicating meaningful change. Among these, the mTIS is a sensitive and a useful tool for predicting functional independence in clinical practice and is straightforward to apply.

다단 신선공정을 이용한 초극세 로듐 와이어 제조 (Fabrication of Ultra-fine Rhodium Wire Using Multi-pass Wire Drawing Process)

  • 이상곤;이성윤;이인규;황선광
    • 소성∙가공
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    • 제28권5호
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    • pp.275-280
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    • 2019
  • The aim of this study is to fabricate an ultra-fine pure rhodium wire using multi-pass wire drawing process. To manufacture $30{\mu}m$ ultra-fine rhodium wire from the initial $50{\mu}m$ wire, a multi-pass wire drawing process was designed based on the uniform reduction ratio theory. The elastic-plastic finite element analysis was then conducted to validate the efficacy of the designed process. The drawing load, drawing stress, and the distribution of the effective strain were evaluated using the finite element analysis. Finally, the wire drawing experiment was performed to validate the designed wire drawing process. From the results of the experiment, the diameter of the final drawn wire was found to be $29.85{\mu}m$.

아연도금강판 겹치기 용접부에 대한 2패스 레이저용접 적용성 연구 (Applicability Study of 2-pass Laser Welding on Galvanized Steel Sheets)

  • 안영남;강민정;김철희
    • Journal of Welding and Joining
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    • 제34권4호
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    • pp.55-61
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    • 2016
  • During laser overlap welding of galvanized steel sheets, explosion of weld pool by the high pressure zinc vapor induces weld defects like porosity and blowhole. In this study, laser 2-pass welding was implemented to prevent the weld defects. Through the 1st pass welding, zinc layers on the faying surfaces were removed when proper heat input was applied. Excessive heat input could result in explosion even during the 1st pass welding and insufficient heat input could not remove enough region of zinc layer for the 2nd pass welding. Coating weights of $45g/m^2$ and $60g/m^2$ were considered and for both cases sound welds without weld defects could be achieved. In spite of 2-pass welding, softening of weld and heat affected zone was not observed and Zn coating was not diluted into the weld metal.

M-Dephanox 공정 질소 제거 효율 향상 방안에 관한 연구 (The Study for Enhancement of Nitrogen Removal Efficiency in M-Dephanox Process)

  • 류홍덕;이상일
    • 한국물환경학회지
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    • 제22권1호
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    • pp.74-82
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    • 2006
  • In this study, development of M2-Dephanox and M3-Dephanox process has been tried to enhance the nitrogen removal of M-Dephanox process on the basis of previous study about M-Dephanox. The results showed that T-N removal efficiency of M3-Dephanox process was 8.9% or 11.3% higher than M-Dephanox or M2-Dephanox processes, respectively. This result is due to the lower $NO_3{^-}-N$ concentration in the effluent of M3-Dephanox than of M-Dephanox and M2-Dephanox processes. This results were recurrenced by PASS simulator. As result of simulation by PASS program, effluent $NO_3{^-}-N$ concentration of M3-Dephanox process was 1.4 mg/L and 3.6 mg/L lower than M-Dephanox and M2-Dephanox processes. In the study about optimization of M3-Dephanox processes by PASS program, SRT greatly affected T-N removal of M3-Dephanox process, whereas, the recycle rate and recirculation rate did little affect T-N removal efficiency of M3-Dephanox. In the study about optimization of reactors following the nitrification reactor of M3-Dephanox process, it was shown that the best optimum volume ratio of denitrification reactor, intermittently aerated reactor and anoxic reactor for the T-N removal were 29.1(%) : 32.7(%) : 38.2(%). T-N removal efficiency at this volume ratio was similar to T-N removal efficiency at the volume ratio of 36.3(%) : 36.3(%) : 27.4(%) designed for the lab-scale M3-Dephanox.

단층치료기를 이용한 방사선 치료의 환자별 정도관리 평가를 위한 감마인덱스의 정량화 방법 (A Method to Calculate a Pass Rate of the ${\gamma}$-index Analysis in Tomotherapy Delivery Quality Assurance (DQA))

  • 박달;김용호;김원택;김동원;김동현;전호상;남지호;임상욱
    • 한국의학물리학회지:의학물리
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    • 제21권4호
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    • pp.340-347
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    • 2010
  • 단층치료기(TomoTherapy$^{(R)}$)를 이용한 방사선 치료에서 환자별 정도관리인 DQA (delivery quality assurance)는 보통 이온 전리함과 필름을 이용한다. DQA의 결과는 치료계획장비인 TomoPS (Tomo Planning Station)를 이용하여 분석하게 되는데 필름을 이용한 2차원 선량분포의 비교는 감마인덱스 분석을 사용한다. 감마인덱스를 이용한 비교는 3%/3 mm와 같은 기준을 사용하여 이 기준을 통과한 비율(pass rate)이 허용 값보다 크게 되는지 확인한다. TomoPS는 pass rate 값을 정량적으로 계산해주는 기능이 없다. 본 논문에서는 TomoPS 감마인덱스 분석의 pass rate를 정량적으로 계산하는 방법을 제시하고 이를 계산해주는 프로그램인 PassRT를 개발하였다. PassRT의 검증을 위해 I'mRT MatriXX (IBA Dosimetry, Germany)를 사용하여 측정한 세기조절방사선 치료를 받은 환자의 환자별 정도관리 자료와 필름을 사용한 DQA 자료를 사용하였다. 두 가지 종류의 자료에 대해 PassRT로 계산한 pass rate를 OmniPro I'mRT (IBA Dosimetry, Germany)프로그램으로 계산한 pass rate와 비교하였다. MatriXX를 이용하여 측정한 자료의 비교결과 평균오차 0.00%, 표준편차 0.01%, 최대오차 0.04%였고, 필름의 결과는 평균오차 0.00%, 표준편차 0.02%, 최대오차 0.02%였다. 관심영역이 $24.3{\times}16.6cm^2$ 보다 작은 경우 본 논문에서 제시한 방법으로 감마인덱스 분석의 pass rate를 소수점 첫째자리 까지 정확하게 계산할 수 있어서 보다 정확한 단층치료기의 DQA에 도움이 될 것으로 생각된다.

크로스 롤러가이드의 다단형상인발공정 패스 스케쥴에 관한 연구 (A Study on the Pass Schedule of Multi-Pas Shape Drawing Process for Cross Roller Guide)

  • 이태규;이찬주;이상곤;이선봉;김병민
    • 소성∙가공
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    • 제18권7호
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    • pp.550-555
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    • 2009
  • In the multi-pass shape drawing process, the pass schedule that includes the determination of reduction ratio and intermediate die shape is very important. This study used the equal reduction, equal load, and electric field analysis method for pass schedule of the multi-pass shape drawing. The reduction ratio was calculated by the equal reduction and equal load method. And the intermediate die shape was determined by the result of the electric field analysis and the calculated reduction ratio. The proposed pass schedule method was applied to a shape drawing for producing cross roller guide. Finally, FE-analysis and shape drawing experiment were performed to verify the effectiveness of the proposed method.

A 67.5 dB SFDR Full-CMOS VDSL2 CPE Transmitter and Receiver with Multi-Band Low-Pass Filter

  • Park, Joon-Sung;Park, Hyung-Gu;Pu, Young-Gun;Lee, Kang-Yoon
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제10권4호
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    • pp.282-291
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    • 2010
  • This paper presents a full-CMOS transmitter and receiver for VDSL2 systems. The transmitter part consists of the low-pass filter, programmable gain amplifier (PGA) and 14-bit DAC. The receiver part consists of the low-pass filter, variable gain amplifier (VGA), and 13-bit ADC. The low pass filter and PGA are designed to support the variable data rate. The RC bank sharing architecture for the low pass filter has reduced the chip size significantly. And, the 80 Msps, high resolution DAC and ADC are integrated to guarantee the SNR. Also, the transmitter and receiver are designed to have a wide dynamic range and gain control range because the signal from the VDSL2 line is variable depending on the distance. The chip is implemented in 0.25 ${\mu}m$ CMOS technology and the die area is 5 mm $\times$ 5 mm. The spurious free dynamic range (SFDR) and SNR of the transmitter and receiver are 67.5 dB and 41 dB, respectively. The power consumption of the transmitter and receiver are 160 mW and 250 mW from the supply voltage of 2.5 V, respectively.

원형소재를 이용한 프로파일 다단 형상인발 공정설계 (Process Design for Multi-pass Profile Drawing using Round Materials)

  • 이인규;최창영;이상곤;정명식;이재욱;김다혜;조용재;김병민
    • 소성∙가공
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    • 제24권4호
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    • pp.234-240
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    • 2015
  • Multi-pass shape drawing is very important to produce steel profiles in round samples. In the current study, a process design system is developed for a multi-pass shape drawing. In general, the number of passes for a multi-pass shape drawing is 2 to 3 when the reduction ratio, drawing stress, and productivity are considered. Therefore, calculating the drawing stress and designing the intermediated die shapes are very important. In order to calculate the drawing stress, a shape drawing load prediction method is proposed using a general axisymmetric drawing load prediction model. An intermediate die shape design method is proposed using the initial and the final product shapes. Based on this analysis, a process design system is developed for multi-pass shape drawing for steel profiles. The system works with AutoCAD. The system was applied to design a shape drawing of a spline.