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◆ International journal of occupational safety and ergonomics : JOSE2026-09-04

Mechanical performance of hard particle impregnated hybrid yarn woven fabrics for occupational cut protection.

Md Azharul Islam, Rochak Rathour, Bipin Kumar, Nandan Kumar, Apurba Das

原始摘要(英文原文)· Original abstract
Occupational injuries are expanding worldwide and constitute a major safety issue. The mechanical and cut-resistant performance of 36 woven fabrics made from hard particle impregnated (HPI) hybrid yarns with stainless steel (SS) or glass filament cores and dual sheath layers of polyester and ultra-high molecular weight polyethylene was examined. Mechanical testing revealed that non-HPI and HPI fabrics of 250 g/m2 areal density with SS cores exhibited the highest tensile strength (∼120-130 MPa) and maximum tear strength (∼650-850 N). Cut resistance was remarkably improved in 250 g/m2 areal density fabrics. HPI-treated SS-core fabrics withstood a maximum cutting load of ∼2930 gf, representing an 8-30% enhancement over non-HPI samples. Microscopic analysis confirmed the blunt of blades due to hard particles caused the superior cut resistance. Hard-particle impregnation reduces mechanical strength to an acceptable level but improves cut protection, making it a viable advanced occupational safety method.
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Mechanical performance of hard particle impregnated hybrid yarn woven fabrics for occupational cut protection. — 科研速览 Science Skim