MAPA TRILITES 994 Gloves
Product description
Norm: En21420, En 374, Kat III Material: Tripolymer Natural Latex, Polychloroprene And Nitrile Sizes: 6,7, 8, 9 Premium Quality
• Ambidextrous
• Siliconfree
• Rolled Cuff
• Pebbled
• Dispenser Á 100 Pieces
Defines how the wrist portion of the glove is finished, affecting ease of donning, security during use, and resistance to tearing when putting on.
Measures from fingertip to cuff end, determining wrist/forearm coverage. Longer gloves provide enhanced protection against splashes and contaminants.
Measures the material thickness in the finger areas, balancing protection against punctures and chemicals with tactile sensitivity for precision tasks.
Indicates the glove's pigmentation, which can aid in color-coding tasks, enhancing visibility, or meeting specific industry requirements for contamination control.
Offers versatile hand protection for various tasks. Balances durability and flexibility, suitable for diverse applications requiring barrier protection.
Offers complete hand coverage, ensuring hygiene and protection. Ideal for various tasks requiring a barrier against contamination and maintaining cleanliness.
Designed for use on either hand, these gloves offer convenience and efficiency. Their symmetrical design simplifies donning and reduces waste.
Ideal for applications needing strong adhesion; silicone-free gloves prevent residue transfer, ensuring clean surfaces and optimal results.
- Chemical Resistance
- Antimicrobial Protection
- Hand Protection
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Standards and labels
EN ISO 21420:2020 is a European standard that sets out the general requirements for hand protection, including comfort, fit, and dexterity.
Test results
General Requirements GuideTest results
Micro-organisms Bacteria & FungiEN ISO 374-5:2016 is a standard that defines the requirements for gloves to protect against dangerous chemicals and micro-organisms, including bacteria and fungi. The test results indicating protection against Bacteria & Fungi confirm that the gloves have effectively passed the necessary evaluations to guard against these types of micro-organisms. The test method used assesses the glove's resistance to penetration and permeation by micro-organisms. The glove material undergoes specific challenges designed to ensure that pathogens such as bacteria and fungi cannot penetrate or permeate through the material under standard testing conditions. Practical implications of these results include assurance that gloves certified under this standard provide health professionals and others exposed to biohazards with a reliable barrier against potential infections caused by bacteria and fungi, which is crucial for both healthcare settings and lab environments.
Test results
Specified Requirements Type BThe EN ISO 374-1:2016 standard specifies requirements for gloves intended to protect against chemicals and micro-organisms. A glove that achieves a Type B test result in this standard offers resistance to at least three chemicals, with a breakthrough time of at least 30 minutes for each chemical tested. This test involves subjecting the gloves to chemicals and measuring the time it takes for the chemicals to penetrate through the material. Practical implications for this test result entail selecting gloves categorized under Type B for environments where exposure to specific hazardous chemicals for durations not exceeding 30 minutes is anticipated. This makes the gloves suitable for certain chemical handling tasks within specified limits, assuring a protective barrier during the exposure period.
EN 420:2003+A1:2009 is a European standard that sets out the general requirements for hand protection, including comfort, fit, and dexterity. Performance requirements include resistance to abrasion, cut, tear, puncture, and impact. Test results should show the gloves meet these requirements.
EN 1149-2:1997 is a standard for electrical arc protection for protective clothing. It establishes performance requirements for materials and garments used in protective clothing to protect against electrical arcs. The standard includes tests for measuring the arc resistance, material flammability, and garment construction. Possible test results include pass/fail for each of these categories.
Test results
Performance TestedThe EN 1149-2:1997 standard is designed to assess the electrostatic properties of protective clothing, specifically measuring the electrical resistance through a material, referred to as vertical resistance. Evaluating the test result involves determining how well the protective fabric can prevent a build-up of static electricity, which is vital for safety in environments where electrical discharges could pose a fire or explosion risk. The test method includes applying a voltage across a fabric sample while it is sandwiched between two electrodes, and the resistance is measured at both high and low voltage levels to ensure accuracy. Businesses must consider this result when selecting protective clothing for environments with potential electrical hazards, ensuring that the material has adequate resistance to prevent static electricity build-up and provide a safeguard against electrostatic discharges in volatile work conditions.
EN 1149-1:1995 is a European standard that defines the performance requirements for protective clothing with electrostatic properties. The standard specifies that the clothing must have a surface resistance of at least 1x10^5 ohms and a charge decay rate of less than 2 seconds. Test results can include the measurement of surface resistance and charge decay rate.
Test results
Surface Resistance TestedThe EN 1149-1:1995 standard is concerned primarily with determining the surface resistance of materials used to protect against the build-up of static electricity, which could result in sparking and potential fire hazards. A test result indicating Surface Resistance Tested affirms that the fabric or surface has been evaluated for its ability to dissipate electrical charges, suggesting a level of resistance quality that makes it suitable for environments where static control is crucial. The testing method involves applying a voltage to two electrodes placed on the material surface and measuring the resistance to the flow of current. High resistance indicates that the material holds charges, while low resistance indicates good charge dissipation capabilities. This characteristic is significant in industries like electronics or petrochemicals, where preventing electrostatic discharges is vital to safety and operational reliability.
CE Marking is a label that shows a product meets certain safety and environmental standards set by the European Union. To get the CE Marking, a company must test and certify their product meets these standards. CE Marking is required for many products sold in the EU, including electronics, machinery, toys and medical devices. It helps ensure that products are safe for consumers and the environment, and allows for easy trade within the EU.
PPE stands for "personal protective equipment." PPE Category 3 refers to equipment that is complex and provide the highest level of protection such as powered respirators, SCBA, and full body suits. In Europe, PPE Category 3 must meet certain safety standards set by the European Union, which means that it must be designed and manufactured to protect the user without causing harm. Companies that make or sell PPE must prove that it meets these standards. They also must have a quality management system in place, have to be audited regularly by a notified body and have to have a technical documentation.
Feldtmann delivery terms
Free delivery for all Feldtmann products
209,88 €
Price per 100 pcs
209,88 € / 100 pcs
Shipping fee is 6,33 € for orders under 150,00 €
A package contains 100 pieces
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