• Title/Summary/Keyword: upper cup

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Development of a Semi-Atomatic Protocol for embodiment of a desirable 3D breast shape and deployment of bra cup pattern (3차원의 바람직한 유방형상 구현을 위한 Semi-Atomatic Protocol 개발 및 브래지어 컵 패턴으로의 전개)

  • Sohn, Boo-hyun;Kweon, Soo-ae
    • Journal of Fashion Business
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    • v.20 no.4
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    • pp.189-206
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    • 2016
  • A breast model was for the human body was devised by studying a body scan and human body index of a desirable breast type. Thus, when manufacturing various 3D models, these results can accordingly become a fundamental basis for realizing a desirable breast model. This study aims to provide a basic data for designing the cup patterns of brassieres in order to improve the function and wearing comfort. The comfort of three kinds of brassieres were compared: one manufactured by the actual measured size; another manufactured as per the ratio of desirable upper and lower breast lengths; and the third manufactured by the 3D model attained by the desirable human body ratio. In this study, we suggest a process for realizing the desirable breast model using the ratio of bust breadth and waist front length, which are the components for deciding the appropriate position and size of breast, and which are easy to measure. The ideal breast shape is an equilateral triangle formed by connecting the nipple with the center of the clavicle. After deciding the interval between the nipples, this value can be used to configure the locations of nipples by drawing a tangent, with equal length, from the anterior neck point (which is the center of clavicle) to the nipple. Also, since inside points of breast do not exist, the outer point of breast, upper point of breast, and below point of breast on the same plane, and the depths from the nipple point to the respective points, are applied to simulate a 3D image, by modifications along the x, y, and z axes. Depending on the type of breast, the length from the center of shoulder to the nipple, the diameter of breast, upper length of breast, and the position of nipple, are different. In conical or protruding breast, the wearing sensation is better when the nipple point of brassiere was lifted, by modifying the upper and lower lengths of breast. Considering the wearing sensation and function of a brassiere, it was better to leave the wearer's size as it is and use a pad within the same cup, rather than increase the basal area of the breast in order to increase the volume.

Comparison of Adult Brassier between Korea and Japan - Based on the Information on the Internet -

  • Joen Mi-Sun;Park Myung-Ja;Lee Kyu-Hye
    • The International Journal of Costume Culture
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    • v.7 no.2
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    • pp.112-122
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    • 2004
  • A brassier supports and protects breasts and makes a better shape of the upper half of the body through shaping breasts. A brassier, therefore, is recognized as the key underwear for female. Recently, the distribution structure and channels of the brassiere industry is diversified from conventional type of markets to department stores, convenience stores, and internet shopping mall. Studies on the sales of brassieres via internet, however, is not sufficient even though the market size has been dramatically increased thursdays. The study on the size structure (including the size and the materials fabric of brassieres circulating via internet) is especially rare. Therefore, this study tries to comply with increasing requests of consumers through comparing brassier brands on internet. In depth, this study compares cases of Korea and Japan in terms of availability of website on sales, quality indication like materials and functions, and size. The results indicated that there were three companies in Korea which run a website and make a sale through a website. All three Japanese companies operate a website and make sales on a website as well. In terms of size, Korean companies diversify their size of products in two ways. It varies from A cup to D cup based on cup size, and 65 to 100 according to its entire size. On the other hand, Japanese companies use AA, A to I to measure cup size, and 65 to 100 for entire size.

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Risk Assessment by Means of Measurement of Combustible Characteristics for n-Nonanol (노말노난올의 연소특성치 측정에 의한 위험성 평가)

  • Ha, Dong-Myeong
    • Fire Science and Engineering
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    • v.26 no.2
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    • pp.84-89
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    • 2012
  • For the safe handling of n-nonanol, this study was investigated the explosion limits of n-nonanol in the reference data. The flash points and AITs (autoignition temperatures) by ignition delay time were experimented. As a results, the lower and upper explosion limits of n-nonanol recommended 0.8 Vol.% and 6.1 Vol.%, respectively. The lower flash points of n-nonanol by using closed-cup tester were experimented $94{\sim}97^{\circ}C$. The lower flash points of n-nonanol by using open cup tester were experimented $103{\sim}104^{\circ}C$. This study measured relationship between the AITs and the ignition delay times by using ASTM E659-78 apparatus for n-nonanol. The experimental AIT of n-nonanol was $270^{\circ}C$.

Development of the Cup Preventing the Paper Knob of a Tea Bag from Falling into Tea Water (봉지형차의 종이 손잡이가 찻물에 빠짐 방지용 컵 개발)

  • Kim, Joong-Man;Baek, Seung-Hwa;Cha, Kyung-Ok;Kim, Hyung-Yeon
    • Culinary science and hospitality research
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    • v.13 no.2
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    • pp.216-222
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    • 2007
  • Sometimes the problem occurs that a paper knob and a thread attached to a tea bag fall into tea water in pouring tea water into a conventional cup to extract bag type tea. A new cup was developed to solve that problem, which was formed with a thread groove(dia. ; about $1.5{\sim}2\;mm$, hight ; about $4{\sim}5\;mm$) in the upper end of the cup. As a result, the new cup with a thread groove is expected that a paper knob with a thread does not fall into tea water. In addition, the size of a paper knob and the length of a thread may be reduced 70%, respectively.

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Analysis of breast Replicas of Elementary School Girls (초등학교 여학생의 유방 레플리카 분석)

  • 이경화
    • Journal of the Korean Home Economics Association
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    • v.37 no.11
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    • pp.49-58
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    • 1999
  • This study is to develop the well-fit brassieres by observing the changes in the breast sizes and shapes, the surface area of the breast through the arm movements of 3 types (0$^{\circ}$ , 90$^{\circ}$ and 180$^{\circ}$) in vortical motion. The 11 elementary girls who are aged 12 participated in this experiment. To obtain the measures regarding the surface area of the breast, replicas are made at each motion. The results of this study are as fellows: 1. The changes in the breast sizes and shapes at each motion By increasing the motions of the arm movement, the following measure items are inclined to decrease: Shoulder length, Upper blast girth, Bust girth, Under bust girth, Upper bust depth, Bust depth, Under bust depth, Nipple to nipple breadth, Horizontal distance of bust, Horizontal length of the cup, Bust height, Cup size. By increasing the motions of the arm movement, the fellowing measure items are inclined to increase: Center point of shoulder~B.p., Shoulder point~B.p., Center point of shoulder~armpit, Upper Bust breadth, Bust breadth, Under bust breadth, Vertical distance of Bust. 2. The changes in the surface area of breast at each motion By making the replica to observe changes in the surface area, which are sectioned to 4 parts(area 1 to area 4), and volume of breast at each motion, the results are as follows: At 0$^{\circ}$and 180$^{\circ}$, the sizes of each part are ordered as the following: area2>area1>area4> area3. At 90$^{\circ}$, the sizes of each part are ordered as the following: area2>area1>area3>area4. Through these orders, it is found that the upper and inside part of the breast huts the inclination to increase so along as the motions of the arm movement increase. Also, the total surface area increases so long as the motions of the arm movement increase. As a reset of the F-test on the changes in the each surface areas, the surface area by arm movements, the significant differences among the each surface areas are found.

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Study on the Functional Brassiere Development (기능적 Brassiere 개발에 관한 연구(II) - bust up 기능을 중심으로 -)

  • Choi Hei-Sun;Khang Yeo-Sun
    • Journal of the Korean Society of Clothing and Textiles
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    • v.15 no.3 s.39
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    • pp.229-238
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    • 1991
  • The object of this study is to develope an improved version of brassiere with better fit and improved performance by conducting a try-on test on 6 types of revised brassieres (constructed on above basis). The study procedures consisted of a try-on test of experimentally constructed brassieres and a sensory test on fit. The results of experimentally constructed brassiere trial are as follows. 1. The sizes showing performance effects due to different types of experimentally construct- ed brassieres were bust length, bust height, under bust curve length, vertical and horizontal bust diamenter, upper-lower bust slope angle (direct measurement, parallel standard, upper torso tilt rate), side bust slope angle and top bust slope angle. 2. Concerning the changes in lower cup interior, elastic materials and wider portions perfor-med better in bust up effect. 3. No effects due to different shoulder strap positions were observed, but combined with lower cup interior changes the side types proved more effective than the standard types.

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The Measurement and Prediction of Fire and Explosion Properties of n-Nonane (노말노난의 화재 및 폭발 특성치의 측정 및 예측)

  • Ha, Dong-Myeong
    • Journal of the Korean Society of Safety
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    • v.31 no.5
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    • pp.42-48
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    • 2016
  • The usage of the correct combustion properties of the treated substance for the safety of the process is critical. For the safe handling of n-nonane being used in various ways in the chemical industry, the flash point and the autoignition temperature(AIT) of n-nonane was experimented. And, the explosion limit of n-nonane was calculated by using the flash point obtained in the experiment. The flash points of n-nonane by using the Setaflash and Pensky-Martens closed-cup testers measured $31^{\circ}C$ and $34^{\circ}C$, respectively. The flash points of n-nonane by using the Tag and Cleveland open cup testers are measured $37^{\circ}C$ and $42^{\circ}C$. The AIT of n-nonane by ASTM 659E tester was measured as $210^{\circ}C$. The lower explosion limit by the measured flash point $31^{\circ}C$ was calculated as 0.87 vol%. And the upper explosion limit by the measured upper flash point $53^{\circ}C$ was calculated as 2.78 vol%. It was possible to predict lower explosion limit by using the experimental flash point or flash point in the literature.

The Measurement of Combustible Properties of Cyclohexanol (사이클로헥산올의 연소특성치의 측정)

  • Ha, Dong-Myeong
    • Fire Science and Engineering
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    • v.28 no.2
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    • pp.64-68
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    • 2014
  • For the safe handling of cyclohexanol, this study was investigated the explosion limits of cyclohexanol in the reference data. The flash points and auto-ignition temperatures (AITs) by ignition delay time were experimented. The lower flash points of cyclohexanol by using closed-cup tester were experimented in$60^{\circ}C{\sim}64^{\circ}C$. The lower flash points of cyclohexanol by using open cup tester were experimented in $66^{\circ}C{\sim}68^{\circ}C$. This study measured relationship between the AITs and the ignition delay times by using ASTM E659 tester for cyclohexanol. The AIT of cyclohexanol was experimented as $297^{\circ}C$. The lower explosion limit (LEL) and the upper explosion limit UEL) by the measured the lower flash point and the upper flash point of cyclohexanol were calculated as 0.95 Vol% and 10.7 Vol%, respectively.

Measurement and Prediction of Combustion Properties of n-Phenol (페놀의 연소특성치의 측정 및 예측)

  • Ha, Dong-Myeong
    • Korean Journal of Hazardous Materials
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    • v.6 no.2
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    • pp.23-29
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    • 2018
  • The fire and explosion properties necessary for waste, safe storage, transport, process design and operation of handling flammable substances are lower explosion limits(LEL), upper explosion limits(UEL), flash point, AIT( minimum autoignition temperature or spontaneous ignition temperature), fire point etc., An accurate knowledge of the combustion properties is important in developing appropriate prevention and control measures fire and explosion protection in chemical plants. In order to know the accuracy of data in MSDSs(material safety data sheets), the flash point of phenol was measured by Setaflash, Pensky-Martens, Tag, and Cleveland testers. And the AIT of phenol was measured by ASTM 659E apparatus. The explosion limits of phenol was investigated in the reference data. The flash point of phenol by using Setaflash and Pensky-Martens closed-cup testers were experimented at $75^{\circ}C$ and $81^{\circ}C$, respectively. The flash points of phenol by Tag and Cleveland open cup testers were experimented at $82^{\circ}C$ and $89^{\circ}C$, respectively. The AIT of phenol was experimented at $589^{\circ}C$. The LEL and UEL calculated by using Setaflash lower and upper flash point value were calculated as 1.36vol% and 8.67vol%, respectively. By using the relationship between the spontaneous ignition temperature and the ignition delay time proposed, it is possible to predict the ignition delay time at different temperatures in the handling process of phenol.

Selection of an Optimal Commercial Brassiere for the Small-breasted Women and the Evaluation and 3D Analysis of the Wearing Appearance (빈약 유방 여성들에게 적합한 시판 브래지어 선정과 착용 외관 평가 및 3차원 분석)

  • Lee, Hyun Young
    • Korean Journal of Human Ecology
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    • v.24 no.6
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    • pp.847-857
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    • 2015
  • The ratio of small-breasted women occupies over 20% among Korean women in their twenties. However, the commercial brassieres for the small-breasted women were not fitted well to their breast shapes. In this research, the various commercial mold brasseries for small-breasted women were evaluated through the wearing test and the analysis of 3D images which were scanned from their torsos wearing the brassieres. In addition, professional panels performed the appearance evaluation based on the 2D front and side images captured from 3D images taken by 3D measurement systems. As the results, we found that small-breasted women preferred a 3/4 cup brassiere, of which volume is concentrated in the lower cup. The most preferred brassiere in wearing state shows that the characteristic angle between the chest and the upper cup is about 167 degrees, which is smaller than those of another brassieres, and that the ratio of the radius of curvature of the nipple part to that of the lower cup was about 0.78. These results provide important implications regarding the design of mold brassieres for small-breasted women in spite of the fact that these results represent the selected set of commercial brassieres. Therefore, further studies are highly demanded for the most suitable design information of mold cup for small-breasted women.