Study on the distribution characteristics of clearance in clothing and influence on pressure

IF 1 4区 工程技术 Q3 MATERIALS SCIENCE, TEXTILES International Journal of Clothing Science and Technology Pub Date : 2024-03-04 DOI:10.1108/ijcst-05-2023-0070
Bo You, Qi Si Wang
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Abstract

Purpose

The purpose of this paper is to investigate the distribution characteristics of airflow in mine ventilation suits with different pipeline structures when the human body is bent at various angles. On this basis, the stress points are extracted to investigate the pressure variation of a ventilation suit under different ventilation rates and pipeline structures.

Design/methodology/approach

Based on the three-dimensional human body scanner, portable pressure test and other instruments, a human experiment was conducted in an artificial cabin. The study analyzed and compared the distribution characteristics of clearance under three different pipeline structures, as well as the pressure variation of the ventilation suit.

Findings

The study found that the clearance in front of two pipeline structures gradually increased in size as the degree of bending increased, and there was minimal clearance in the chest and back. The longitudinal structure exhibits a significant decrease in clearance compared to the spiral structure. The pressure value of the spiral pipeline structure with the same ventilation volume is low, followed by the transverse structure, while the longitudinal structure has the highest pressure value. The increase in clothing pressure value of a spiral pipeline structured ventilation suit with varying ventilation volumes is minimal.

Originality/value

The ventilation suit has a promising future as a type of personal protective equipment for mitigating heat damage in mines. It is of great value to study the pipeline structure of the ventilation suit for human comfort.

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研究服装中间隙的分布特征及其对压力的影响
目的本文旨在研究不同管道结构的矿井通风服在人体不同角度弯曲时的气流分布特征。在此基础上,提取应力点,研究不同通风率和管路结构下通风服的压力变化。设计/方法/途径基于三维人体扫描仪、便携式压力测试仪等仪器,在人工舱内进行了人体实验。研究发现,随着弯曲程度的增加,两种管道结构前方的间隙逐渐增大,胸部和背部的间隙极小。与螺旋结构相比,纵向结构的间隙明显减小。在通风量相同的情况下,螺旋管道结构的压力值较低,横向结构次之,而纵向结构的压力值最高。在通风量不同的情况下,螺旋管道结构通风服的服装压力值增加很小。研究通风服的管道结构对提高人体舒适度具有重要价值。
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来源期刊
CiteScore
2.40
自引率
8.30%
发文量
51
审稿时长
10 months
期刊介绍: Addresses all aspects of the science and technology of clothing-objective measurement techniques, control of fibre and fabric, CAD systems, product testing, sewing, weaving and knitting, inspection systems, drape and finishing, etc. Academic and industrial research findings are published after a stringent review has taken place.
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