Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH...

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Flow Chart for Manufacturing Process

Transcript of Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH...

Page 1: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Flow Chart for Manufacturing Process

Page 2: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Choosing the optimum lead-free elements

Digital pH meter Particle size analyzer

Analytical lab Photo spectrometer

The radiation protection glove is manufactured in a complex operation that begins with choosing the right x-ray protective elements.

The optimum compounding of these elements is the key to a perfect glove.

Brookfield viscometer Digital colorimeter

Page 3: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Lead-free compounding

Mixing and homogenization of the selected lead-free elements with natural latex in correct proportions is a very important process called Compounding.

A variable speed intensive mixer and homogenizer is used for this operation.

Page 4: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Surface preparation of porcelain formers

A smooth and clean surface of formers is achieved by cleaning with acid solutions, cleaning agents and coating with wetting agents.

Page 5: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Formation of raw gloves

Production of raw gloves in desired shape and size is carried out by dipping porcelain formers for a controlled time while monitoring various parameters in the lead-free compound.

These gloves are formed inside out so that the glove surface that comes in contact with user is on the outside and textured surface on the inside.

Page 6: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Protein removal

Additives such as accelerators and proteins are removed through hot leaching by intensive wash in hot water followed by heat drying.

Page 7: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

The surface of the glove which comes in contact with the user, is coated with hypoallergenic compound for better properties of donning, flexibility and skin care.

This is done by dipping semi-cured gloves under controlled conditions in a hypoallergenic mixture.

Internal coating of hypoallergenic compound

Page 8: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Beading

After internal coating Gloves are beaded to provide a grip while donning, as well as to prevent roll back.

Page 9: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Curing of gloves

Curing involves the cross linking of polymers with each other, and bonding with lead-free metal particles by heat treatment at controlled temperature and airflow in a specialty oven.

Moleculesbefore curing

Moleculesafter curing

Page 10: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Inspection and testing

Each piece of glove is visually inspected while a large percentage of production is tested for strength, attenuation, and dimensions.

Online inspection Radiation dosimeter

Tensile tester X-ray testing lab

Page 11: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Leak testing

After removal from moulds, 100% of gloves undergo a high pressure leak test.

Even a microscopic hole does not escape detection in this test.

Leak tester

Page 12: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Powder free

All gloves are treated in a sophisticated chlorination chamber to eliminate the need for powdering them, as well as to lower the protein levels to minimum levels.

Chlorination chamber

Page 13: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Controlled environment for finishing

Finishing

Gloves are inspected, printed and packed in specially designed finishing rooms, under HEPA filtration and in Clean Room environment .

Page 14: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Automatic pouch sealing

Packing

Gloves are sealed using high speed automatic vacuum sealing equipment, which perfectly maintains the seal strength and vacuum.

Page 15: Flow Chart for Manufacturing Process. Choosing the optimum lead-free elements Digital pH meterParticle size analyzer Analytical labPhoto spectrometer.

Gamma sterilization

Sterilization

Gloves are Gamma sterilized as per guidelines of ISO 11137-2006 with a minimum dose of 25 kilo Gray to result in a perfectly sterile glove.