• Title/Summary/Keyword: clothing pressure

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Fundamental Relationship between Reduction Rates of Stretch Fabrics and Clothing Pressure (신축성 원단의 축소율과 의복압에 대한 기초 연구)

  • Jeong, Yeon-Hee
    • Korean Journal of Human Ecology
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    • v.17 no.5
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    • pp.963-973
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    • 2008
  • Clothing pressure is closely connected with the degree of comfort of an athlete's tight-fitting garments. Therefore, the construction of sports garments is very important to the wearer's athletic performance. In this study, the fundamental relationship between the reduction rates of stretch fabrics and clothing pressure was explored with the aim of improving clothing comfort and obtaining a systematic pattern reduction for women's tight-fitting bodysuits. A women's bodysuit pattern was obtained by the draping method using a dressform. The basic pattern was divided into four parts and changed into reduced pattems according to the amount of fabric stretch determined by ASTM D2594. Clothing pressure was measured using an air-pack-type pressure sensor (model AMI 3037-2) at 20 locations (shoulder, 9 locations; bust, 5; and armhole, 6). Among the 15 garments tested, the mean pressure of the A1 bodysuit was 4.60 $gf/cm^2$, and that of the C5 bodysuit was 22.98 $gf/cm^2$. The mean pressures of the bodysuits with reduction rates of 10% and 20% were below 10 $gf/cm^2$, while those of suits with reduction rates of 30%,40%, and 50% (except C5) were below 20 $gf/cm^2$. The pressure at the shoulder was 9.50$\sim$32.24 $gf/cm^2$, which was higher than that at the bust (3.34$\sim$24.56 $gf/cm^2$) and the armhole (0.95$\sim$12.15 $gf/cm^2$). The mean pressures of the 15 bodysuits were divided into five groups using analysis of variance (ANOVA), and were found to be significantly different (p<0.001). Regression analysis afforded the following expression: mean pressure ($gf/cm^2$) = 1.607 + 0.369[reduction rate (%)].

Comparison on Fashion Information Sources, Clothing Benefits Sought & Purchase Criteria according to Consumers' Time Pressure Level (소비자의 시간압박 수준에 따른 패션정보원, 추구혜택, 구매기준 비교연구)

  • Kim, Chil-Soon;Lee, Jin-Hwa
    • Journal of the Korean Society of Clothing and Textiles
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    • v.30 no.1 s.149
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    • pp.20-30
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    • 2006
  • The purposes of this study were to investigate demographic profiles between the consumer group under high time pressure(HTP) and the group under low time pressure(LTP) during the shopping, to examine the level of association between the fashion information sources and time pressure variable, to determine the difference in clothing benefits sought between HTP and LTP, and to determine the difference in purchase criteria. We distributed questionnaires to 600 women aged in 20-65. The reliable 562 questionnaires were used for a statistical analysis. Data analyses were conducted with SPSS program on t-test, cluster analysis, factor analysis, and Chi square test. We obtained the following results: There was a significant association between demographic variables such as age, occupation, education, residence area, & family cycle and time pressure variable. Fashion information sources were classified into 4 factors. HTP searched information on fashion products using more various sources than LTP did. There was also a significant difference between HTP and LTP in clothing benefit sought. Four clothing benefit factors such as trendy/social position, economic value, protection/comfort, and makeup of body shape were sought more by HTP than by LTP. In addition, HTP considered significantly more purchase criteria such as color/pattern, comfort, quality, suitability, material, sewing finishing, coordination, price, brand, easy care, and country of origin than LTP.

Identification of Variables Influencing on Risk Perception and Risk Reduction Behavior in Clothing Purchase Situations (의복구매시 지각되는 위험과 위험감소행동에 대한 영향변인 연구)

  • 김찬주;이은영
    • Journal of the Korean Society of Clothing and Textiles
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    • v.19 no.3
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    • pp.434-447
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    • 1995
  • This research was intended to identify variables influencing on risk perception and risk reduction behavior in clothing purchase situations. Responses from 631 female adults living in Seoul area were collected and analyzed. Towner for social occasions or working in office was used as clothing stimulus. The analysis included three product variables(price, style, type of clothing), 4 personality variables(generalized self-confidence, specific self-confidence, generalized informativeness, fashion informativeness), 2 clothing attitude variables(clothing importance, clothing interest), 4 demographic variables(age, educational level, occupation, income), and 3 situational variables(purchase planning, time pressure, effects of shopping company). Multiple regression revealed the fact that each type of clothing risk and each type of risk reduction behavior was influenced by the set of different variables. Generalized self- confidence and age and time pressure had more effects on clothing risk perception, while clothing risk reduction behavior was more influenced by clothing risk type, clothing interest, price of clothing and fashion informativeness. Implications for marketing strategies planning were also provided.

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Clothing Pressure Sensation and Discomfort Experience of Skinny Jean (여대생의 스키니 진 착용 실태 및 주관적 압박감)

  • Na, Young-Joo;Lee, Dong-Wook
    • Korean Journal of Human Ecology
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    • v.19 no.4
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    • pp.655-665
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    • 2010
  • This study analyzed the effects of skinny jean on women's health by questionnaire survey and measuring the pressure experienced under the clothing and participants' subjective view of the pressure level. The average size women in their 20s' waists is 26 inches and so three pairs of jeans were prepared and worn by 4 female participants. A survey was conducted to investigate how often participants wear skinny jeans and whether they had had any feelings of discomfort as a result of this. Participants responded that they hadexperienced middle to high levels of discomfort due to the high pressure inside skinny jeans. For the maximum value of clothing pressures, jean f2 at the part of buttocks showed $48.7gf/cm^2$. The pressure inside the clothing was found to be highest around the buttocks followed by the knees and finally the belly. The mean values of 7 measuring parts are different according to the jean type; f3 $20.8gf/cm^2$ > f2 $16.4gf/cm^2$ > f1 $15.5gf/cm^2$, which is corresponding to the order of pressure sensation, but not corresponding to the order of ease amount of clothing pattern: f2 > f3 > f1. Mean pressure values were also measured according to the body posture: they were found to by highest when sitting on a chair (21.3gf/$cm^2$), second highest when sitting on the floor ($19.2gf/cm^2$) and lowest when standing ($15.0gf/cm^2$). This is not always same to the order of participants subjective perceptions of the pressure, which is, they estimated pressure to be highest when sitting on the floor followed by sitting on a chair and lowest in a standing position.

A Study on Wearing Fitness of Middle Aged Women's Jacket with Non-Stretchable Fabric and Stretchable Fabric (비스트레치 소재와 스트레치 소재를 이용한 중년여성 재킷 착의적합성 연구)

  • Park, Ji-Eun;Kim, Hee-Eun
    • Fashion & Textile Research Journal
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    • v.6 no.4
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    • pp.485-491
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    • 2004
  • The purpose of this study is to analyze the wearing fitness of middle aged women's jacket with non-Stretchable Fabric and stretchable fabric. We surveyed the size of jackets and process of pattern making with stretchable fabric in companies which produce the clothing mainly for middle aged women. Based upon the result of process of pattern making, two kind of experimental jacket with non-stretchable and stretchable fabric were made. We measured space length between body and garment using 3D scanner and analyzed the clothing pressure 7 parts of body with 3 kinds of arm raising. The result were as follows : 1. Most parts of space length except bust were higher in non-stretchable jacket than in stretchable jacket. 2. Clothing pressure showed greater value with non-stretchable fabric jacket than with stretchable fabric jacket. Clothing pressure in upper arm point areas increased as the angle of the arm raising increased. Therefore, the sleeve width and armhole depth should he considered when the amount of wearing ease were reduced in jacket with stretchable fabric.

Ergonomic Designs of the Halter-neck Shoulder Strap for Developing the Athleisure Brassiere (애슬래저용 브래지어 개발을 위한 인간공학적 홀터넥 어깨끈의 디자인과 설계)

  • Park, Soyoung;Lee, Yejin
    • Journal of the Korean Society of Clothing and Textiles
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    • v.44 no.1
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    • pp.96-106
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    • 2020
  • This study designed four types with a different halter-neck shoulder straps of an athleisure brassiere for women in their 20-40s as well as analyzed the shoulder strap pressure, shoulder strap position, subjective sensation, and design preference when wearing them. The design basis was to reduce the pressure at the back of the neck area, to allow the shoulder strap to pass down the neck as far as possible, and to send the anatomically sensitive side neck out as far as possible. As a result, H, which had the best subjective sensation and design preference, had the shoulder strap positioned more towards the shoulder point; in addition, the back of the neck did not pass. It was also found that the shoulder strap pressure near the neck was small. However, E, with the lowest subjective sensation, had the highest shoulder strap pressure and was placed up the neck. This confirmed that the position and pressure of the shoulder strap are variable when influencing the subjective sensation.

The Study on Construction of Blue Jeans & Pressure (블루진의 설계와 피복압에 관한 연구)

  • 권윤희
    • Journal of the Korean Home Economics Association
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    • v.36 no.2
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    • pp.121-130
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    • 1998
  • The purpose of this study was construction of bell-bottom blue jeans according to change of flare line and investigate the effects clothing pressure according to various movements of the legs. In this study, movements of leg were classified by M1, M2, M3, M4.(M1:erecting, M2: leapfrogging position, M3:sit-on-one' keens position, M4:Traditional nobel-sitting position) The results were as follows: As usings the leg surface shell by the adhesive paper taping method, basic slacks pattern and blue jeans patterns according to change of flare line was constructed. The order of clothing pressure of the different patterns is C(the flare line is on the calf of the leg)>B(the flare line is on the knee)>A(the flare line is on the thigh). Clothing pressure in the knee point was highest and when the flare line was on the calf of the leg, clothing pressure showed high.

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Objective Physiology Evaluation and Subjective Satisfaction Evaluation when Wearing Fitness Compression Wear for the Elderly (고령자용 피트니스 압박웨어 착용시의 객관적 인체생리 평가 및 주관적 만족도 평가)

  • Eun-Jin Jeon;Hee-Eun Kim
    • Fashion & Textile Research Journal
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    • v.25 no.4
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    • pp.508-519
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    • 2023
  • Muscle reduction owing to aging causes changes in physical function among the elderly. Fitness compression wear reduces fatigue by compressing the main muscles, expanding blood vessels, and rapidly discharging lactic acid. The effect of clothing pressure when wearing fitness compression wear for the elderly was objectively and subjectively evaluated for six women aged 55-64 years. The evaluation clothes were three types of tops and bottoms, one type of design (A) preferred among the existing compression wear, and two types of design (B and C). The objective evaluation items included clothing pressure, blood flow, surface temperature, and subjective satisfaction. It was found that clothing A had the highest clothing pressure in the straight posture and five fitness movements. Blood flow increased the most when wearing the evaluation clothing. The surface temperature was found to be the highest for clothing C, and subjective satisfaction was found to be the best when wearing evaluation clothing B. If the tensile strength was low and the tensile elongation was high, as in evaluation clothing B, it was recognized as appropriate clothing pressure, and the subject was subjectively satisfied. When manufacturing fitness compression wear in the future, it will be possible to increase users' objective and subjective satisfaction with wearing it, if the incision of the garment were placed at the location of the line of non-extension (LoNE), and appropriate material characteristics are applied.

Comfort Evaluation of Caps from Pressure Measurement (Part I) (모자 압박감의 객관적인 평가방법 개발 (제 1 보))

  • Jun Young-Min;Park Chung-Hee;Hahn Moon-Heui;Kang Tae-Jin
    • Journal of the Korean Society of Clothing and Textiles
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    • v.30 no.4 s.152
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    • pp.615-622
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    • 2006
  • A tool to evaluate the subjective wearing comfort of caps from the objective measurement of pressure was developed. Comfortable Fittability Index(C.F.I) and Holding Power(HP) were defined to represent the subjective wearing comfort of caps. As a preliminary step to define the Comfortable Fittability Index(C.F.I), average pressure, pressure distribution, standard deviation of pressure were obtained and subjective sensation were evaluated by wearing caps. Also Holding Power(HP) was estimated from wind tunnel testing. Two sets of caps were evaluated, one set made of elastic fabric(F-caps) and the other set made of non-elastic fabric(S-caps). F-caps begin to be taken off by the higher wind velocity and thus exhibited higher values of Holding Power. On the other hand, F-caps exerted lower average pressure, narrower pressure distribution, smaller standard deviation.

A Study on the adaptedness of brassiere underbust length (브래지어 총(總) 길이 적합성(適合性)에 관(關)한 연구(硏究)(II))

  • Park, You-Shin;Choi, Young-Soon
    • Journal of Fashion Business
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    • v.10 no.1
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    • pp.31-40
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    • 2006
  • We studied relation between the clothing pressure applied by types of brassiere, postures, feeling of tightness. The main results were summerized as follows; 1. The research subjects of this study were 9 who rate of body fat was borderline and degree of fatness was normal. As a result of clothing pressure, the most prefered value was $36.86g/cm^2$ on sensor 2 in standing position and the next was $34.76g/cm^2$ on sitting position. Furthermore, The maximum value of sensor 2 was $59.08g/cm^2$ (in standing), $57.93g/cm^2$ (in sitting). On the other hand, The average clothing pressure of bra C type was $23.67g/cm^2$ 2. The study of feeling of tightness applied by bra type was high in order of C