• 제목/요약/키워드: Physical part

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Development of The Physical Pressure Monitoring System to Prevent Pressure Ulcers (욕창 방지를 위한 체압 모니터링 시스템 개발)

  • Lee, Ah-Ra;Jang, Kyung-Bae
    • IEMEK Journal of Embedded Systems and Applications
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    • v.6 no.4
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    • pp.209-214
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    • 2011
  • This study suggests a Healthcare System for elderly and disabled who have mobility impairment and use a wheelchair for long time. Seating long time in a wheelchair without reducing pressure causes high risk of developing pressure sores. Pressure sores come with great deal of pain and often lead to develop complication. Not only it takes time and effort to treat pressure sores but also increases medical expenses. Therefore, we will develop a device to help to prevent pressure sores by measuring pressure distribution while seating in a wheelchair and wirelessly send information to user device to check pressure distribution in real time. The equipment to measure body pressure is composed of FSR sitting mat which is a sensor measuring part and an user terminal which is a monitoring part. The designed mat is matrix formed FSR sensor to measure pressure. The sensor send measured data to the controller which is connected to the end of the mat, and then the collected data are sent to an user terminal through a bluetooth. Developing a pressure monitoring system will help to prevent those who have mobility impairment to manage pressure sores and furthermore relieve their burden of medical expenses.

Exploration into Pre-service Early Childhood Teachers' Experience of Participation in Health Promotion Activities and Its Meaning (건강증진활동에 참여한 예비유아교사의 경험과 의미 탐색)

  • Ahn, Hye Jung
    • Korean Journal of Childcare and Education
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    • v.17 no.5
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    • pp.105-128
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    • 2021
  • Objective: This study aimed to explore the experience and meaning of pre-service early childhood teachers who practiced health promoting activities for themselves. Methods: Research participants were 115 pre-service early childhood teachers enrolled in the health education for children course at one college in G region. The reports of activity records of their eight-week long health promotion activities were collected as qualitative data followed by content analysis being implemented. Results: First, the experience of the health promoting activities the participants took part in was categorized into 'Early phase of experience: A mix of worries and anticipation, and success and failure', 'Mid phase of experience: Being motivated by physical changes and records', and 'Late phase of experience: Continuous execution through habituation.' Second, the meaning of health promotion activities the participants took part in was categorized into 'A great opportunity for introspection', 'A meaningful start of college life', and 'A valuable chance to consider desirable roles of a teacher for early childhood health education.' Conclusion/Implications: The results of this study suggest that pre-service early childhood teachers should pay close attention to their health management, and that contents that emphasize the importance of teachers' health should be included in health education.

Case Study of Practical Tool Training for Optimal Runner System (최적 유동시스템을 위한 실무금형교육 사례 연구)

  • Shin, Ju-Kyung
    • Journal of Practical Engineering Education
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    • v.9 no.2
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    • pp.119-124
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    • 2017
  • In injection molding process, the runner system of the mold is a flow path for filling the cavity of the molded part during the advance of the screw by the force of the hydraulic cylinder, which involves the filling and packing process of the molten resin. Thus, the sprue, runner and gate greatly affect the appearance of the molded part, the physical properties of the resin, the dimensional accuracy and the molding cycle etc. Feed systems with incorrect runner and gate designs cause various molding defects, So it is important to maintain the optimum runner balance to prevent these defects. In order to improve the knowledge of practical mold technology, which is applied to the manufacturers of injection molds, a training model of the mold technology process is presented based on the technical guidance on the technical difficulties.

Exploring the Effects of the Virtual Human with Physicality on Co-presence and Emotional Response

  • Shin, Kwang-Seong;Jo, Dongsik
    • Journal of the Korea Society of Computer and Information
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    • v.24 no.1
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    • pp.67-71
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    • 2019
  • With continued technology innovation in the fields of computer graphics (CG) and virtual reality (VR), digital animated avatars (or virtual humans) are evolving into ones that are more interactive at a suitable location such as museum, airport, and shopping mall. Specially, the form of the avatar (or the virtual human) realistically need to be expressed in a way that matches the users' physical space. In recent many researches, the form of virtual human has been expressed as mixed-reality human (MRH)-the virtual human combines with the physicality as the real part. In this paper, we propose to carry out a study comparing various MRH on co-presence and emotional response in two-typed virtual humans depending on how many actual parts are included: (1) (Level 1) small parts in the virtual human combined virtual components (e.g., the head only) and (2) (Level 2) large parts in the virtual human with the physicality as the real part such as head, arms, and upper body). We report on the implemented results of our virtual humans and experimental results on co-presence and emotional response.

Droplet transient migration and dynamic force balance mechanism on vibration-controlled micro-texture surfaces

  • Xu, Jing;Liu, Guodong;Lian, Jiadi;Ni, Jing;Xiao, Jing
    • Current Applied Physics
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    • v.18 no.11
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    • pp.1368-1374
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    • 2018
  • In this paper, forced vibration was used to regulate the droplet migration, fully recording the transient migration of droplets on a micro-textured substrate under the resonance frequency by a high-speed camera. The influence of resonance frequency and dynamic migration characteristics of droplets on the solid micro-texture surface under lateral vibration were researched. The experiment demonstrates that the driving force is caused by the difference between the left and right contact angles made the droplet oscillate and migrate, and as time t increases, the left and right contact points are periodically shifted and the amplitude of migration increases. Therefore, based on the droplet migration behavior and its force balance mechanism, a spring vibration model of migration behavior of the vibrating droplet micro unit was set up to predict the complete trajectory of its migration on a solid surface. The calculation results show that the theoretical displacement is less than the experimental displacement, and the longer the time, the larger the difference. Affected by the vibration, part of the droplet permeates through the micro-texture, resulting in the droplet losing height and the contact angle becoming smaller as well. While the other part of droplet overcomes the internal surface tension to migrate.

Effect of brittleness on the micromechanical damage and failure pattern of rock specimens

  • Imani, Mehrdad;Nejati, Hamid Reza;Goshtasbi, Kamran;Nazerigivi, Amin
    • Smart Structures and Systems
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    • v.29 no.4
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    • pp.535-547
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    • 2022
  • Failure patterns of rock specimens represent valuable information about the mechanical properties and crack evolution mechanism of rock. Several kinds of research have been conducted regarding the failure mechanism of brittle material, however; the influence of brittleness on the failure mechanism of rock specimens has not been precisely considered. In the present study, experimental and numerical examinations have been made to evaluate the physical and mechanical phenomena associated with rock failure mechanisms through the uniaxial compression test. In the experimental part, Unconfined Compressive Strength (UCS) tests equipped with Acoustic Emission (AE) have been conducted on rock samples with three different brittleness. Then, the numerical models have been calibrated based on experimental test results for further investigation and comparing the micro-cracking process in experimental and numerical models. It can be perceived that the failure mode of specimens with high brittleness is tensile axial splitting, based on the experimental evidence of rock specimens with different brittleness. Also, the crack growth mechanism of the rock specimens with various brittleness using discrete element modeling in the numerical part suggested that the specimens with more brittleness contain more tensile fracture during the loading sequences.

Low back pain due to Sacro iliac joint Dysfunction (천장관절 기능이상과 요통증)

  • Lim, Sung-Soo
    • Journal of Korean Physical Therapy Science
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    • v.6 no.3
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    • pp.25-40
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    • 1999
  • The hub of weight bearing in the human body for both static and dynamic activities is the lumbopelvic region. It is a key region of extraordinary stability, since the trunk and ground forces converage in this region. The two sacroiliac joints form an integral part of this lumbopelvic unit. Considerable effort has been expended to study and quantify the normal range of movement of the sacroiliac joints Mitchell suggests that the ilium rotates in a posterior direction at heel strike and progresses in an anterior direction as the individual passes through the stance phase. The overall key appears to lie in determining the weight-bearing pattern of the sacroiliac (lumbopelvic) region from above and below that results in the familiar pain of sacroiliac dysfunction, assessing the status of the injured tissues, and intervening with the proper treatment protocols that maximize the body's healing processes. The purpose of this chapter is to provide a comprehensive overview of the sacroiliac joint's tissues and biomechanics, as well as concepts of evaluation and treatment. This overview is aimed at assisting the clinician in identifying the forces that are potentially destructive to the lumbopelvic tissues.

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Consumers' Reaction, Perceives Benefits and Risk When Purchasing Apparel through Cable TV Home-Shopping (케이블TV 홈쇼핑을 통한 의복구매시 소비자 반응과 추구이점 및 위험지각)

  • 김주영;구양숙
    • Journal of the Korean Society of Clothing and Textiles
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    • v.21 no.6
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    • pp.1082-1093
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    • 1997
  • The purpose of this study was to identify characteristics and consumer attitude on purchasing apparel through Cable TV home-shopping. The questionnaire was administered to 4y5 May through September in 1996 and the data were analyzed by using frequency, factor analysis, crosstab, 1-test, ANOVA, MANOVA, scheffe with utilizing SPSS/PC+ The results of this study were as follows: 1. The most favorite media in purchasing apparel through home-shopping was Cable TV in all over ages except 50's. Women showed Cable TV the most interested, whereas men showed printed media and computer on-line shopping as home shopping media. 2. Home-shopping favor in region' was higher than that of Seoul. In the degree of favor, college students showed the highest, followed by part time employees, housewives and full time employees. Those who lived individual houses in other than Seoul area showed higher purchasing intention. 3. Sweater item was shown as the highest purchasing interested item and coat/business suit items were shown as lower among 10 different apparel items. 4. Five dimensions of Perceived benefits of apparel purchasing through Cable TV were derived by factor analysis such as variety of merchandise information, purchase convenience, efficiency, saving time, and convenience of physical inactivity. The convenience of physical inactivity showed the most important benefit through Cable TV home-shopping. Perceived risk of apparel purchasing through Cable TV was factor analyzed as merchandise related risk, size and appearance related risk, delivery related risk, TV watching related risk, and unplanned purchasing related risk. The sixte and appearance related risk was shown as the highest risk.

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Surface Modification of PET Irradiated by Ultra-Violet (Part II) - Transformation of moisture properties and physical Properties - (UV조사를 통한 PET의 표면개질(제2보) -수분특성 및 물리적 특성 변화-)

  • Choi Hae Young;Lee Jung Soon
    • Journal of the Korean Society of Clothing and Textiles
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    • v.29 no.5 s.142
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    • pp.617-625
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    • 2005
  • The purpose of this study was to develop functional and environment-friendly polyester fabric by irradiating Ultra-Violet, which was produced by the low-pressure mercury lamp. UV irradiation was conducted with various treatment times and distances. Also, pretreatments of solvents and photoinitiator were used to improve the surface modification effects. The effects of UV irradiation on the moisture regain were found to increase gradually with increase of UV treatment time and decrease of treatment distance. Compared the effects of UVC and UVA, UVC was more effective than UVA. Moisture regain and wicking of PET was increased after UV treatment in our experimental condition. And owing to increasing of moisture regain, static charge was decreased. Pretreatment of solvents such as methanol, ethyl ether and addition of photoinitiator such as Benzophenone accelerated surface modification. The moisture regain was increased but wicking was decreased with pretreatment and addition of photoinitiatior. Therefore it is considered as inappropriate f3r clothing because of wicking effects. Yellowness, tensile strength and elasticity slightly decreased after UV irradiation.

Simulation of Spacecraft Attitude Measurement Data by Modeling Physical Characteristics of Dynamics and Sensors

  • Lee, Hun-Gu;Yoon, Jae-Cheol;Cheon, Yee-Jin;Shin, Dong-Seok;Lee, Hyun-Jae;Lee, Young-Ran;Bang, Hyo-Choong;Lee, Sang-Ryool
    • 제어로봇시스템학회:학술대회논문집
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    • 2004.08a
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    • pp.1966-1971
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    • 2004
  • As the remote sensing satellite technology grows, the acquisition of accurate attitude and position information of the satellite has become more and more important. Due to the data processing limitation of the on-board orbit propagator and attitude determination algorithm, it is required to develop much more accurate orbit and attitude determination, which are so called POD (precision orbit determination) and PAD (precision attitude determination) techniques. The sensor and attitude dynamics simulation takes a great part in developing a PAD algorithm for two reasons: 1. when a PAD algorithm is developed before the launch, realistic sensor data are not available, and 2. reference attitude data are necessary for the performance verification of a PAD algorithm. A realistic attitude dynamics and sensor (IRU and star tracker) outputs simulation considering their physical characteristics are presented in this paper, which is planned to be used for a PAD algorithm development, test and performance verification.

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