• 제목/요약/키워드: face pressure

검색결과 503건 처리시간 0.026초

DEVELOPMENT OF ERP INTEGRATION SYSTEM FOR SPORTS INDUSTRY IN TAIWAN

  • Yan-Chyuan Shiau;Yu-Min Hsu;Shu-Jen Sung;Chih-Kun Chu;Hsiang-Lun Cheng;Tsung-Pin Tsai
    • 국제학술발표논문집
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    • The 1th International Conference on Construction Engineering and Project Management
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    • pp.1028-1035
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    • 2005
  • Traditional Industries were planning the major role for Taiwan's economy. However, we need to face the competition from developing countries. Moving manufacturing department to other low salary countries, such as China, can only temporarily release some limited pressure. The final and complete solutions are to equip on R&D, refine techniques, improve management capabilities, upgrade business, and reform physique. Currently there are some ERP systems on the market; however, they are designed for common purpose and difficult to introduce into industry. The expensive price is another factor to make them be popular. In this research we will Object Oriented, Visual Modeling, ER Model and Windows Environment to develop an Integrated Management System for Sports Requisites Industries (IMSSRI). We will integrate all information from all departments such as development, business, material administration, manufacture, shipping, and financial. When development people construct the all modules, components, cutting molds, materials and accessories, IMSSRI will calculate all needed materials and cost for each product. This cost will be used for quotation to report to our customers. When customers confirm the order, system will transfer all necessary materials into Material Administration System. IMSSRI can generate manufacturing forms and material raw lists for manufacture department. All related information such as stocking, returning goods, material requesting, and material returning can be integrated so we can control all details of the whole enterprise. Through the help of this system, we hope we can save man-power, reduce human mistakes, raise management capabilities for tradition manufacturing industries and create another possibility of eternal operating for Taiwan's Industries.

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Visual Effect on Mechanical Pain Threshold According to Anatomical Regions

  • Kun-Hwa Kang;Ji-Rak Kim;Jin-Seok Byun;Jae-Kwang Jung
    • Journal of Oral Medicine and Pain
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    • 제47권4호
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    • pp.189-197
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    • 2022
  • Purpose: Pain perception is affected by a wide range of contributing factors, including biological, psychological, and social factors. Although the provision of visual information could have a modulatory effect on pain perception, it is unclear whether such a visual effect might vary depending on the anatomical site and stimulation type. This study aimed to analyze the modulatory effect of visual information on the perception of sharp and dull pain in the face and hand and to assess the influence of individual fear levels on modulatory visual information. Methods: A total of 68 healthy male and female volunteers were recruited for this study. Pressure and pricking pain with and without visual information were induced on the masseter and thenar muscles, and alterations in pain threshold were evaluated. The survey was conducted using the Geop-Pain Questionnaire (GPQ). Results: The pricking pain threshold of the hand was significantly elevated when viewing the stimulated hand. This result indicated that the provision of visual information could decrease sensitivity to sharp pain in the hand. However, when correlating the GPQ score with the alteration in thresholds induced by visual information, no significant correlation was observed between the GPQ score and the threshold difference induced by visual information. This finding showed that the visual effect was not significantly affected by the fear level. Conclusions: This study showed that the effect of visual information on the pain threshold could vary according to the anatomical site and stimulation type. A better understanding of such a modulatory effect on pain perception might be useful for clinicians during painful therapeutic procedures.

Future Domestic Water Demand, Surface Water Availability and Vulnerability Across Rapidly Growing Asian Megacities

  • Panda, Manas Ranjan;Kim, Yeonjoo
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2021년도 학술발표회
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    • pp.144-144
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    • 2021
  • The rapid urbanization in many Asian countries has taken millions of people from the rural countryside to concentrated megacities, which eventually putting pressure on the existing water resources. The over-growing population and increasing living standard of people in the urban region of developed as well as developing countries such as Korea, China, Japan and India have witnessed a drastic change in terms of domestic water demand for the past few decades. In this study, we used the concept of potential surface water availability in the form of surface runoff for future vulnerability assessment. We focused on 42 megacities having population more than 5 million as per the United Nations (UN) census data 2020. The study shows that 30 out of 42 cities having more than 180L/p/d demand for domestic use based on various references. We have predicted the domestic water demand for all the cities on the basis of current per capita demand up to 2035 using UN projected population data. We found that the projected water demand in megacities such as Seoul, Busan, Shanghai, Ghuanzou are increasing because of high population as well as GDP growth rate. On the contrary, megacities of Japan considered in our stud shows less water demand in future due to decreasing trend of population. As per the past records provided by the local municipalities/authorities, we projected different scenarios based on the future supply for various megacities such as Chennai, Delhi, Karachi, Mumbai, Shanghai, Wuhan, etc. We found that the supply to demand ratio of these cities would be below 75% for future period and if such trend continues then the inhabitants will face serious water stress conditions. Outcomes of this study would help the local policy makers to adopt sustainable initiatives on urban water governance to avoid the severe water stress conditions in the vulnerable megacities.

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부직포를 활용한 급경사 녹화보강토공법의 적용 가능성에 관한 연구 (Research about Application Possibility of Afforestation Reinforced Soil Steep Slope by Nonwoven Geotextile)

  • 조용성;구호본;이춘길
    • 대한토목학회논문집
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    • 제26권4C호
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    • pp.239-245
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    • 2006
  • 선진국 진입의 길목에 있는 우리나라는 급경사면 축조 및 유지관리에 심혈을 기울이고 있으나, 급경사면 축조를 위해 철근콘크리트 옹벽이나 보강토 옹벽(블럭식, 판넬식) 등이 사용되어지고 있다. 이러한 구조체는 전면형태가 콘크리트 벽체로서 미관의 한계성과 친환경성이 부족한 상태이다. 본 연구는 녹화를 병행할 수 있는 식생토체를 형성하고 현장에서 발생된 불량토를 보강재(부직포) 감싸기(wrapping)방법을 적용한 $80^{\circ}$의 급경사 성토체를 현장에서 직접 축조하였으며, 보강성토체에서 발생될 수 있는 수평변위, 침하량 및 법면에서 발생된 토압 등에 대한 계측을 실시하여 분석하였다. 이러한 보강성토체의 계측 및 시간경과에 따른 법면의 식생활착 등에 대한 조사결과, 향후 녹화가 가능한 급경사 보강토 구조물에 대한 적용이 가능할 것으로 판단된다.

Effect of loading frequency and clay content on the dynamic properties of sandy-clay mixtures using cyclic triaxial tests

  • Alireza Hasibi Taheri;Navid Hadiani;S. Mohammad Ali Sadredini;Mahmood Zakeri Nayeri
    • Geomechanics and Engineering
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    • 제36권4호
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    • pp.317-328
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    • 2024
  • Adopting a rational engineering methodology for building structures on sandy-clay soil layers has become increasingly important since it is crucial when structures erected on them often face seismic and cyclic wave loads. Such loads can cause a reduction in the stiffness, strength, and stability of the structure, particularly under un-drained conditions. Hence, this study aims to investigate how the dynamic properties of sand-clay mixtures are affected by loading frequency and clay content. Cyclic triaxial tests were performed on a total of 36 samples, comprising pure sand with a relative density of 60% and sand with varying percentages of clay. The tests were conducted under confining pressures of 50 and 100 kPa, and the samples' dynamic behavior was analyzed at loading frequencies of 0.1, 1, and 4 Hz. The findings indicate that an increase in confining pressure leads to greater inter-particle interaction and a reduced void ratio, which results in an increase in the soil's shear modulus. An increase in the shear strength and confinement of the samples led to a decrease in energy dissipation and damping ratio. Changes in loading frequency showed that as the frequency increased, the damping ratio decreased, and the strength of the samples increased. Increasing the loading frequency not only reflects changes in frequency but also reduces the relative permeability and enhances the resistance of samples. An analysis of the dynamic properties of sand and sand-clay mixtures indicates that the introduction of clay to a sand sample reduces the shear modulus and permeability properties.

Damage rate assessment of cantilever RC walls with backfill soil using coupled Lagrangian-Eulerian simulation

  • Javad Tahamtan;Majid Gholhaki;Iman Najjarbashi;Abdullah Hossaini;Hamid Pirmoghan
    • Geomechanics and Engineering
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    • 제36권3호
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    • pp.231-245
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    • 2024
  • In recent decades, the protection and vulnerability of civil structures under explosion loads became a critical issue in terms of security, which may cause loss of lives and structural damage. Concrete retaining walls also restrict soils and slopes from displacements; meanwhile, intensive temporary loading may cause massive damage. In the current study, the modified Johnson-Holmquist (also known as J-H2) material model is implemented for concrete materials to model damages into the ABAQUS through user-subroutines to predict the blasting-induced concrete damages and volume strains. For this purpose, a 3D finite-element model of the concrete retaining wall was conducted in coupled Eulerian-Lagrangian simulation. Subsequently, a blast load equal to 500 kg of TNT was considered in three different positions due to UFC 3-340-02. Influences of the critical parameters in smooth blastings, such as distance from a free face, position, and effective blasting time, on concrete damage rate and destroy patterns, are explored. According to the simulation results, the concrete penetration pattern at the same distance is significantly influenced by the density of the progress environment. The result reveals that the progress of waves and the intensity of damages in free-air blasting is entirely different from those that progress in a dense surrounding atmosphere such as soil. Half-damaged elements in air blasts are more than those of embedded explosions, but dense environments such as soil impose much more pressure in a limited zone and cause more destruction in retaining walls.

알루미늄 허니컴(HC) 구조재 적용 주조형 복합화약 (Structural Support of Aluminum Honeycomb on Cast PBX)

  • 김성한;이근득;박하늘;한민구
    • 한국군사과학기술학회지
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    • 제27권2호
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    • pp.222-229
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    • 2024
  • As the operating condition for the penetrating missile has been more advanced, the survivability of main charge has been strongly required when the warhead impacts the target. Lots of efforts to desensitize explosives such as the development of insensitive molecular explosives or optimizing plastic-bonded explosives(PBX) systems has been made to enhance the survivability of main charge. However, these efforts face their limits as the weapon system require higher performance. Herein, we suggest a new strategy to secure the survivability of main charge. We applied structurally supportable aluminum honeycomb(HC) structure to cast PBX. The aluminum HC structure reinforces the mechanical strength of cast PBX and helps it to withstand external pressure without the reaction like detonation. In this study, impact resistance character, shock sensitivity and internal blast performance of PBXs reinforced with HC structure were investigated according to the application of aluminum HC structure. The newly suggested aluminum HC structure applied to cast PBX was proved to be a promising manufacturing method available for high-tech weapon systems.

Characterization of the Manufacturing Process and Mechanical Properties of CoCrFeMnNi High-Entropy Alloys via Metal Injection Molding and Hot Isostatic Pressing

  • Eun Seong Kim;Jae Man Park;Do Won Lee;Hyojeong Ha;Jungho Choe;Jaemin Wang;Seong Jin Park;Byeong-Joo Lee;Hyoung Seop Kim
    • 한국분말재료학회지
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    • 제31권3호
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    • pp.243-254
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    • 2024
  • High-entropy alloys (HEAs) have been reported to have better properties than conventional materials; however, they are more expensive due to the high cost of their main components. Therefore, research is needed to reduce manufacturing costs. In this study, CoCrFeMnNi HEAs were prepared using metal injection molding (MIM), which is a powder metallurgy process that involves less material waste than machining process. Although the MIM-processed samples were in the face-centered cubic (FCC) phase, porosity remained after sintering at 1200℃, 1250℃, and 1275℃. In this study, the hot isostatic pressing (HIP) process, which considers both temperature (1150℃) and pressure (150 MPa), was adopted to improve the quality of the MIM samples. Although the hardness of the HIP-treated samples decreased slightly and the Mn composition was significantly reduced, the process effectively eliminated many pores that remained after the 1275℃ MIM process. The HIP process can improve the quality of the alloy.

Network Anomaly Traffic Detection Using WGAN-CNN-BiLSTM in Big Data Cloud-Edge Collaborative Computing Environment

  • Yue Wang
    • Journal of Information Processing Systems
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    • 제20권3호
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    • pp.375-390
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    • 2024
  • Edge computing architecture has effectively alleviated the computing pressure on cloud platforms, reduced network bandwidth consumption, and improved the quality of service for user experience; however, it has also introduced new security issues. Existing anomaly detection methods in big data scenarios with cloud-edge computing collaboration face several challenges, such as sample imbalance, difficulty in dealing with complex network traffic attacks, and difficulty in effectively training large-scale data or overly complex deep-learning network models. A lightweight deep-learning model was proposed to address these challenges. First, normalization on the user side was used to preprocess the traffic data. On the edge side, a trained Wasserstein generative adversarial network (WGAN) was used to supplement the data samples, which effectively alleviates the imbalance issue of a few types of samples while occupying a small amount of edge-computing resources. Finally, a trained lightweight deep learning network model is deployed on the edge side, and the preprocessed and expanded local data are used to fine-tune the trained model. This ensures that the data of each edge node are more consistent with the local characteristics, effectively improving the system's detection ability. In the designed lightweight deep learning network model, two sets of convolutional pooling layers of convolutional neural networks (CNN) were used to extract spatial features. The bidirectional long short-term memory network (BiLSTM) was used to collect time sequence features, and the weight of traffic features was adjusted through the attention mechanism, improving the model's ability to identify abnormal traffic features. The proposed model was experimentally demonstrated using the NSL-KDD, UNSW-NB15, and CIC-ISD2018 datasets. The accuracies of the proposed model on the three datasets were as high as 0.974, 0.925, and 0.953, respectively, showing superior accuracy to other comparative models. The proposed lightweight deep learning network model has good application prospects for anomaly traffic detection in cloud-edge collaborative computing architectures.

선박용 복합재 에어 스포일러의 체결부 설계 및 강도 평가 (Joint Design and Strength Evaluation of Composite Air Spoiler for Ship)

  • 피준우;전상배;이근호;조영대;최진호;권진회
    • Composites Research
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    • 제28권4호
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    • pp.219-225
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    • 2015
  • 선박 분야에서 이산화탄소($CO_2$) 배출을 줄이고 연료 효율을 높이기 위한 방법의 하나로 항해하는 선박의 공기 저항을 줄이기 위한 에어 스포일러를 장착하는 방안이 검토될 수 있다. 본 연구에서는 대형 선박에 적용될 수 있는 복합재 에어 스포일러의 체결부를 설계하고, 이에 대한 정적, 피로강도를 평가하였다. 하중은 선박의 운항 중 발생하는 청파(Green Water Pressure) 0.1 MPa이 에어 스포일러에 수직하게 가해지는 것으로 가정하였다. 에어 스포일러는 유리섬유 면재에 발사 코어를 갖는 샌드위치 형태로 제작하였고, 여러 개의 샌드위치 패널이 셀(Cell) 형태로 강(Steel) 프레임에 볼트로 체결되는 것으로 가정하였다. 에어 스포일러와 프레임의 체결부는 베어링 파손을 가지도록 설계하고, 정적(베어링) 시험과 피로(4점 굽힘) 시험을 수행하였다. 시험 결과 개발된 에어 스포일러는 정해진 외부하중을 견딜 수 있는 충분한 안전여유를 갖는 것을 확인하였다. 개발된 에어 스포일러는 조만간 대형 상업용 선박에 적용될 예정이다.