According to the Occupational Safety and
Health Administration (OSHA), safety footwear is essential for workers who face
risk of injury from rolling, penetrating or crushing objects. The shoes also
are necessary for workers in the vicinity of hot, poisonous or corrosive
materials as well as for those exposed to electric hazards. OSHA mandates the
use of safety shoes that meet American National Standards Institute (ANSI)
standards for these workers. Shoes adhering to ANSI standards meet design and
performance requirements for foot protection.
First, check with the manufacturer to
determine whether the shoe offers compression and impact protection. ANSI-compliant
shoes have toe protection that safeguards workers from impact and compression
hazards. This is a mandatory requirement for ANSI high quality
working shoes. Second, ask the manufacturer the impact measurement of
your safety shoes. ANSI safety shoes are tested to comply with an impact
measurement of 50 foot pounds or 75 foot pounds. A rating of 50/75 foot pounds
indicates that the shoes provide protection for toes from impacts of up to
50/75 foot pounds respectively. Third check the compression measurement of your
safety shoes. ANSI safety shoes adhere to compression measurements of either
50, which equals 1,750 pounds, or 75, which equals 2,500 pounds. A 50 rating
protects the toe from compressive weights of up to 1,750 pounds; a 75 rating
provides protection from compressive weights of up to 2,500 pounds. Forth, determine
whether buy cheap safety shoes Europe comply
with metatarsal, conducive, electric hazard and static dissipative
requirements. Metatarsal compliance ensures protection of the metatarsal and
toe regions. Metatarsal ANSI rating should be 30, 50 or 75 foot pounds.
Conducive shoes protect by helping discharge static electricity from the
worker's body to the ground; ANSI compliance requires electrical resistance
between 0 and 500,000 ohms. Electric Hazard ANSI shoes offer shock-resistant
heels and soles and are capable of tolerating 14,000 volts applied at 60 hertz
for a minute.
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