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Fabric Touch Tester Is on Sale

CHINA, HEFEI (July 31, 2024)--As people's living levels rise, so do their basic needs. Textiles, a sector intimately tied to life, have also grown significantly. Consumers are particularly concerned with the comfort of apparel and home textile goods. Thus, a thorough investigation of the link between fabric mechanical qualities and style is required. Fabric style is a significant indication for determining the quality of textile items, as well as a factor influencing textile sales. Consumers primarily evaluate product quality through touch and visual. Fabric hand feel is a key aspect influencing fabric performance and one of the most significant indications of textile and apparel comfort. Therefore, textile hand style measuring instruments have always been a research direction of close concern in the field of textile science and technology. It has become an urgent need to quantitatively evaluate fabric hand style correctly, effectively and objectively. https://fyitester.com/for-sale/fabric-touch-tester/

Definition of fabric style
In a broad sense, fabric style refers to the overall influence of the fabric's intrinsic characteristics and forms on human sensory organs. Examples include touch, vision, and hearing. In a restricted sense, it refers to the overall reflection of specific physical and mechanical qualities of materials generated by human touch.

Evaluation method
There are subjective and objective approaches for assessing cloth hand style. The subjective assessment approach involves forming a thorough feeling of fabrics through the human senses and evaluating the hand qualities and style of fabrics using personal subjective scoring, sorting, description, statistics, analysis, and judgment. This approach is the most basic and original way to evaluate the hand style of materials. However, this approach has two drawbacks. First, the subjective evaluation approach does not eliminate subjective arbitrariness. Second, the subjective judgment technique lacks quantitative descriptions. To address the drawbacks of subjective evaluation techniques, objective assessment methods were developed.
The objective evaluation method of fabric hand style refers to obtaining physical and geometric quantities related to the fabric through instrument testing, and then establishing quantitative standards to evaluate the fabric and making judgments on its hand style characteristics. evaluate. This approach overcomes the limitations of subjective evaluation methods and is currently the primary way for assessing cloth hand style.

Textile style measuring instruments

KES-FB fabric style meter
The KES-FB (full name: Kawabata Evaluation System-Fabric) fabric style meter method is also known as the Kawabata method. In 1970, Kawabata Nomoyo and others in Japan produced a number of multi-measurement and multi-index fabric type meters. It includes a tensile tester, a shear performance tester, a bending performance tester, a compression performance and thickness tester, and a friction and surface roughness tester with low stress. The design primarily assesses the fabric feel style, which is separated into three levels: fundamental mechanical quantity, basic style value HV, and comprehensive style value (THV). The fundamental mechanical parameters comprise 14 mechanical indications and 2 physical indicators that indicate the fabric's tensile, compression, bending, and shear qualities, as well as its surface properties, thickness, and weight. The comprehensive style is a general sensory evaluation of fabric quality. In order to facilitate the establishment of quantitative correlation with the basic style of the fabric, the comprehensive style is divided into 0 to 5, a total of 6 categories, called the comprehensive style value of the fabric, recorded as THV.
The KES-FB system evaluates six fabric qualities under low stress: tensile, shear, bending, compression, surface properties, and thickness. A total of sixteen indicators were measured. Some of these characteristics were then utilized to forecast fabric processing performance, particularly for wool materials.
Disadvantages of the KES-FB Fabric Style Meter Because its basic and comprehensive style values are determined by Japanese specialists, it has certain geographical limits. People's choices for fabric types vary between nations owing to variances in cultural origins and living circumstances. Multiple regression translation formulae from fundamental mechanical numbers to basic style values, as well as from basic style values to comprehensive style values, acquired from other analyses, are not applicable to all countries.
A collection of instruments with varying mechanical properties. Only one mechanical property may be checked on a single instrument, and many qualities cannot be tested simultaneously. The KES-FB system test cannot describe or assess the difference between each fundamental feel (firmness, fullness, etc.), and its signs remain repeatable. This instrument offers good measurement accuracy, however it has a large number of test indications, requires time for measurement, has a complex test method and data processing, and is costly.

FAST Fabric Styler
The Australian Commonwealth Institute of Science and Industry created the FAST (full name: Fabric Assurance by Simple Testing) Fabric Style Tester in 1990 to examine the properties of wool fabrics. It is used to assess how fabric characteristics affect cutting and stitching performance, as well as garment appearance. It predominantly It is focused on product processing. This testing system comprises of three basic testing devices and a set of testing techniques that are specifically intended for wool fabric production, finishing, and quality management in garment manufacturing facilities. The FAST-1 compression meter, the FAST-2 bending meter, the FAST-3 low tension extensometer, and the FAST-4 fabric dimensional stability meter include three instruments and one test procedure. It assesses the physical and mechanical characteristics of textiles under mild stress in the same way that the KES-FB fabric style meter does. It evaluates textiles' four basic mechanical properties: compression, tension, bending, and shear. It examines various attributes using different FAST series devices. performance. Draw a "fabric fingerprint" based on the performance metrics listed above to show the fabric's performance and evaluate its feel. The primary distinctions are: ① The KES-FB bending stiffness tester measures pure bending, while the FAST tester uses the inclined plane approach. ② The FAST system monitors oblique tension; however, KES-FB lacks this signal. ③ The KES-FB test For shear stiffness, the specimen length is fixed, and FAST shear stiffness is calculated from the diagonal elongation of the fabric under a load of 5 cN/cm.
The features of the FAST fabric type tester include the ability to evaluate the four essential mechanical qualities and dimensional stability of textiles under minor loads and deformation: compression, tension, bending, and shearing. The main issue is to estimate fabric formability, particularly garment processing qualities for wool materials. Compared to the KES system, its measurement precision is low, but the test is easy and inexpensive.

Fabric Touch Tester
Fabric Touch Tester, also known as Comprehensive Handle Evaluation System For Fabric And Yarn, measures skin touch properties by simulating hand touch fabric movements such as tensile, compression, pinch, and knead, as well as measuring bending, compression, friction, and tension to obtain indices of softness, stiffness, smoothness, and tightness, and objectively evaluating the hand and feel of fabrics.

ADDRESS: ROOM 1405#-1409#, TIANYI INTERNATIONAL BUILDING, NO.19 TIANBO ROAD, GAOXIN DISTRICT, HEFEI, CHINA
Phone: +86-551-68 105003
Phоnе: +86-551-68 105006
Fаx : +86-551-6523 2507
Email: sales@fyitester.com
Emаil: fуiа@hkdоwеll.соm
Website: https://fyitester.com/

FYI is a leading рrоduсеr and mаnufасturеr оf Textile Tеѕting Inѕtrumеnt. Thеу аrе the bеѕt textile testing inѕtrumеnt ѕuррliеrѕ, ѕuррlу bеѕt ѕоlutiоn for Tеxtilе Tеѕt. Its range соvеrѕ Fabric Tеѕting, Fibеr Tеѕting, Color Fаѕtnеѕѕ Tester, Tеnѕilе Tеѕt, Univеrѕаl Tеѕting Mасhinе, Dуеing Machine, Finiѕhing mасhinе, еtс.

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