Sensory evaluation of fabric touch by free modulus magnitude estimation

Sensory evaluation of fabric touch by free modulus magnitude estimation
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通过自由模量大小估计对织物触感进行感官评价

DOI:
10.1007/bf02912662
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发表时间:
2002
影响因子:
2.5
通讯作者:
J. Casali
J. Casali
中科院分区:
材料科学3区
文献类型:
--
作者:
G. Cho;Chunjeong Kim;J. Casali

文献摘要

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织物触感的心理物理评价,以确定机械性能和主观感觉之间的关系。对于主观触觉,采用自由模量估计(FMME)技术对硬度、平滑度、粗糙度、冷度、柔韧性、脆度、重量和厚度等8个方面进行评价。采用KES-FB法测定织物的力学性能。WC和重量值最高的羊毛织物被评价为最粗、最重和最厚。而具有最低的LT、G、2HG、厚度和重量的真丝绉被评为比其他任何织物更光滑和柔韧。LT和SMD值最高的亚麻为硬、凉、脆。通过回归分析,从力学性能,特别是SMD的力学性能,可以很好地预测织物的触感和满意度。对触摸的满意度随着平滑度的增加而增加。
Fabric touch was evaluated psychophysically in order to determine the relationship between mechanical properties and subjective sensation. For subjective touch sensation, eight aspects such as hardness, smoothness, coarseness, coolness, pliability, crispness, heaviness and thickness were evaluated using free modulus magnitude estimation (FMME) technique. KES-FB was used to measure the mechanical properties of fabrics. Woolen fabric with the highest values of WC and weight was evaluated as the coarsest, heaviest and thickest. While silk crepe de chine with the lowest LT, G, 2HG, thickness and weight was rated as smoother and more pliable than any other fabrics. And flax with the highest values of LT and SMD was evaluated as hard, cool and crisp. Fabric touch and satisfaction were predicted well from the mechanical properties, especially from SMD, by regression analysis. Satisfaction for touch increased as smoothness increased.