• 제목/요약/키워드: High-yield process

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The Assembly and Application of High Yield Cultivation Technics for Mechanized Dry Farming in Heilongjiang Province of China

  • Shen, Taixiong;Zhang, Yuanlu;Liang, Henglu
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1996년도 International Conference on Agricultural Machinery Engineering Proceedings
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    • pp.228-237
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    • 1996
  • On the basis of a brief introduction of the mechanized dry farming in Heilongjiang Province, the author states the developing process from the combination of single technics of farm machinery and agronomy to the technical assembly of high yield cultivation technics and its mathematical expression. According to the main temperature accumulated zones, 5 typical comprehensive technical assembly models for the mechanized cultivation technics and their agricultural machinery systems have been listed. They are, the Heihe " 261" wheat and soybean model : the Yi'an big ridge double row film mulching corn model : the Yongchang high yield mechanized soybean and other grain crops six year rotation model for Keshan state farms. The author conclude that the application of mechanized high yield cultivation technical assembly is the key point to transform the Heilongjiang province from big agriculture to strong agriculture, we have to take " high yield , high quality , high efficiency , s stain -ability and earning foreign currency" as the general target and carry out the corresponding policy and measures for the further development of agricuture.

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분자화약 TNAZ 합성에 대한 개선 기법 (Advances synthesis process of TNAZ)

  • 전용구
    • 한국군사과학기술학회지
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    • 제6권1호
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    • pp.108-115
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    • 2003
  • TNAZ is a high explosive material because it is a highly strained ring compound containing one nitramine and gem dinditro groups. 1-t-butyl-3-nitroazetidine which was used as an intermediate previously, which declined the overall yield in synthesizing TNAZ. We obtained 1-t-butyl-3-hydroxymethyl-3-nitroazetidine in 64% yield from advances process which was used in synthesis of 1-t-butyl-3-nitroazetidine. The reaction pathway, shortening of reaction time, together with improvement of yield were studied too. We have obtained TNAZ in 85% yield.

솔잎의 피노실빈 고함유 추출물 생산을 위한 초음파 추출 공정 개발 (Development of Ultrasonication-assisted Extraction Process for Manufacturing Extracts with High Content of Pinosylvin from Pine Leaves)

  • 조용진;이상국;안용현;피재호
    • Journal of Biosystems Engineering
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    • 제28권4호
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    • pp.325-334
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    • 2003
  • Pinosylvin, a stilbenoid phytoalexin, is a health ingredient to be extracted from pine leaves. In this study, ultrasonication-assisted extraction process for manufacturing extracts with high content of pinosylvin from pine leaves was investigated. As process and system variables, ultrasonic power, sonication time and solvent ratio were selected. According to the experimental results, the effective yield of pinosylvin increased with the increase of ultrasonic power and sonication time and the decrease of solvent ratio. When the ultrasonic power of 2400 W/L was added to the solution of pulverized pine leaves of 8 g per 1 L of a solvent for 10 minutes, yield of extracts and purity, effective yield and concentration ratio of pinosylvin were 0.3166 g/g, 0.7247 mg/g, 0.2294 mg/g and 23.0, respectively.

State-of-the-Art Review on High Yield Pulping Research in Japan

  • Nakano, J.
    • Journal of the Korean Wood Science and Technology
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    • 제8권3호
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    • pp.64-76
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    • 1980
  • Fig. 8 summarizes the present status of high yield pulp production and the directions of research on modification. A thick line indicates pulping process presently in use. As mentioned previously, one kind of modification is to introduce hydrophilic groups onto the pulp. Still unsolved is whether or not the introduction of hydrophilic groups should be restricted to lignin only. Goring (28) reported that middle lamella lignin has fewer phenolic hydroxyl groups than cell wall lignin and suggested that such a difference in the lignin may be useful in the removal of middle lamella lignin. The introduction of hydrophilic groups onto pulp may not be enough to modify high yield pulp. The removal of some portion of carbohydrate may be also necessary from the standpoint of softening of pulp fibers. There is no information at what lignin and carbohydrate, and how much should be removed. The combination with synthetic high polymers may also be important in modifying high yield pulp. Prof. C. Schuerch of the State University of New York who was a visiting professor at the University of Tokyo in 1974, mentioned that the hydrophilicity of lignin would be promoted, if phenolic hydroxyl or carboxyl groups could be introduced into the aromatic nucleus of lignin. If this were possible. this process would also mean a pulp yield of more than 100%. This idea is just one example of the expectation made possible through lignin chemistry. Instead of the introduction of hydrophilic group, the oxidative degradation of aromatic nucleus of lignin may also be useful in promoting the hydrophilicity of pulp. In this case, ozone may be an excellent chemical. However, there are a lot of problems to be solved such as homogeneity of reaction and selectivity of ozone for lignin. The above ideas are summarized in Fig. 9. There are many problems to be solved in the production of an excellent high yield pulp which is comparable to chemical pulp. The information from wood chemistry hopefully will elucidate some of the problems mentioned above.

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Research on Increasing the Production Yield Rate by Six Sigma Method : A Case of SMT Process of Main Board

  • Lin, Ching-Kun;Chen, Hsien-Ching;Li, Rong-Kwei;Chen, Ching-Piao;Tsai, Chih-Hung
    • International Journal of Quality Innovation
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    • 제10권1호
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    • pp.1-23
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    • 2009
  • Face the process yield rate improvements of motherboard, although general enterprises finish deployment goal of each functions by overall quality managements, through quality improvement methods, industry engineering methods, plan-do-check-act (PDCA) methods and other improvement solutions, but it is only can be improved partially and unable to enhance the yield rate of product to the target. It only can takes one step ahead to enhance the process yield rate of motherboard with six sigma ($6{\sigma}$) overall DMAIC process and tactics. This research aimed to use six sigma quality improvement tactics by DMAIC systematic procedure and tactics, and find the key factors that effect to the process yield rate of surface mount technology. It also identified the keys input and process and output index to satisfy customer requirements and internal process index. The results showed that the major effective factors by fishbone and process failure modes and effects analysis (PFMEA). If the index of input and output that can be quantified, the optimum parameter can be found through design of experiment to ensure that the process is stable. If the factor of input and output that cannot be quantified, we found out the effective countermeasure by Mind_Mapping, make sure whole processes can be controlled stably, to reach the high product quality and enhance the customer satisfaction.

XAI(eXplainable Artificial Intelligence) 알고리즘 기반 사출 공정 수율 개선 방법론 (Injection Process Yield Improvement Methodology Based on eXplainable Artificial Intelligence (XAI) Algorithm)

  • 홍지수;홍용민;오승용;강태호;이현정;강성우
    • 품질경영학회지
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    • 제51권1호
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    • pp.55-65
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    • 2023
  • Purpose: The purpose of this study is to propose an optimization process to improve product yield in the process using process data. Recently, research for low-cost and high-efficiency production in the manufacturing process using machine learning or deep learning has continued. Therefore, this study derives major variables that affect product defects in the manufacturing process using eXplainable Artificial Intelligence(XAI) method. After that, the optimal range of the variables is presented to propose a methodology for improving product yield. Methods: This study is conducted using the injection molding machine AI dataset released on the Korea AI Manufacturing Platform(KAMP) organized by KAIST. Using the XAI-based SHAP method, major variables affecting product defects are extracted from each process data. XGBoost and LightGBM were used as learning algorithms, 5-6 variables are extracted as the main process variables for the injection process. Subsequently, the optimal control range of each process variable is presented using the ICE method. Finally, the product yield improvement methodology of this study is proposed through a validation process using Test Data. Results: The results of this study are as follows. In the injection process data, it was confirmed that XGBoost had an improvement defect rate of 0.21% and LightGBM had an improvement defect rate of 0.29%, which were improved by 0.79%p and 0.71%p, respectively, compared to the existing defect rate of 1.00%. Conclusion: This study is a case study. A research methodology was proposed in the injection process, and it was confirmed that the product yield was improved through verification.

열간 단조 제품 A694-F70 플랜지의 항복강도 향상 (Improving Yield Strength of A694-F70 Flange Manufactured by Hot Forging Process)

  • 우타관;이현우;전충환;장영준;김철
    • Journal of Advanced Marine Engineering and Technology
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    • 제34권8호
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    • pp.1068-1073
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    • 2010
  • 용접 넥 플랜지는 파이프간의 상호연결에 널리 사용되고 있다. 이 플랜지는 열간 단조 공정으로 제작되며, 심해에서 고압이 요구되는 분야에 사용되는 경우 플랜지 기저부 및 목 부분에 높은 항복강도가 요구된다. 일반적으로 항복강도 향상을 위해 탄소함유량을 높이면 고 강도를 얻을 수 있으나, 용접이 요구되는 제품의 특성상 탄소함유량을 최대 0.47로 제한함으로써 고용체 강화에 의한 강도 향상에는 한계가 있다. 이러한 경우 탄소 함유량의 변화 없이 강도를 향상시킬 수 있는 결정립 미세화 강화를 이용하여 제품의 항복강도를 향상시킬 수 있다. 본 연구에서는 다구찌 기법을 통해 최적의 결정립 미세화를 위한 단조공정을 제시하고 타당성을 검토하기 위해 유한요소해석을 수행하였다.

Synthesis of polyphenylcarbosilane via thermal rearrangement of polymethylphenylsilane in supercritical cyclohexane

  • Shin, Hee-Yong;Ryu, Jae-Hun;Bae, Seong-Youl;Lee, Yoon-Joo;Kwon, Woo-Teck;Kim, Young-Hee;Kim, Soo-Ryong
    • 한국응용과학기술학회지
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    • 제30권1호
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    • pp.9-15
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    • 2013
  • A new process for the synthesis of polyphenylcarbosilane (PPCS) via thermal rearrangement of polymethylphenylsilane (PMPS) in supercritical cyclohexane was proposed and investigated at reaction temperatures of $380-420^{\circ}C$, reaction times of 1-2 h, and a pressure of 15 MPa. The structure, molecular weight, and molecular weight distribution of the product were characterized by FT-IR, Si-NMR, and GPC. The ceramic yield was also measured by TGA analysis. High-quality PPCS with high molecular weight and ceramic yield can be synthesized via a supercritical process. Furthermore, this process, when compared to the conventional method, tends to moderate the reaction conditions such as reaction temperature and time. It is concluded that thermal rearrangement in supercritical fluid is an efficient and viable process in terms of the resulting yield, efficiency, and reaction time compared with those of the conventional PCS production process.

초고압 가공 공정을 통한 지치 추출물의 항암 활성 증진 (Enhancement of Anticancer Activities from Lithospermum erythrorhizon Extracts by Ultra High Pressure Process)

  • 서용창;최운용;김지선;조정섭;김영옥;김진철;이현용
    • 한국약용작물학회지
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    • 제19권2호
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    • pp.103-110
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    • 2011
  • This study was performed to enhance anticancer activities of Lithospermum erythrorhizon by eluting high amount of shikonin through ultra high pressure process. Extraction yield was increased up to 5~10% by ultra high pressure process, compare to the normal extraction processes such as water solvent extraction, 70% ethyl alcohol solvent extraction. The cytotoxicity of the extracts ($1.0{\mu}g/m{\ell}$) from ultra high pressure process was showed the lowest cytotoxicity 13.4% for human lung cell (HEL299). The anticancer activities showed 80~85% by adding $1.0{\mu}g/m{\ell}$ of the extracts from ultra high pressure process in several cancer cell lines such as AGS, Hep3B, MCF-7 and HeLa cells. Among them, MCF-7 cell of the endocrine system was highest inhibited than other cells. The anticancer activities of the extracts from ultra high pressure extraction process showed 10~15%, which was higher than the extracts from normal extraction processes. From HPLC analysis of the extracts, the contents of shikonin in the extracts from ultra high pressure process was 11.42% (w/w), which was 20% higher than others. This results indicate that ultra high pressure process could increase the extraction yield of shikonin and other contents, which resulted in higher anticancer activities.

STI-CMP 공정에서 Consumable의 영향 (Effects of Consumable on STI-CMP Process)

  • 김상용;박성우;정소영;이우선;김창일;장의구;서용진
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2001년도 추계학술대회 논문집
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    • pp.185-188
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    • 2001
  • Chemical mechanical polishing(CMP) process is widely used for global planarization of inter-metal dielectric (IMD) layer and inter-layer dielectric (ILD) for deep sub-micron technology. However, as the IMD and ILD layer gets thinner, defects such as micro-scratch lead to severe circuit failure, which affect yield. In this paper, for the improvement of CMP Process, deionized water (DIW) pressure, purified $N_2$ (P$N_2$) gas, slurry filter and high spray bar were installed. Our experimental results show that DIW pressure and P$N_2$ gas factors were not related with removal rate, but edge hot-spot of patterned wafer had a serious relation. Also, the filter installation in CMP polisher could reduce defects after CMP process, it is shown that slurry filter plays an important role in determining consumable pad lifetime. The filter lifetime is dominated by the defects. However, the slurry filter is impossible to prevent defect-causing particles perfectly. Thus, we suggest that it is necessary to install the high spray bar of de-ionized water (DIW) with high pressure, to overcome the weak-point of slurry filter. Finally, we could expect the improvements of throughput, yield and stability in the ULSI fabrication process.

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