Product description
The assembly gloves combine a secure grip with optimum freedom of movement for precise work. The latex-synthetic construction ensures both slip resistance and breathability during prolonged use. The ergonomic fit supports fatigue-free working and natural hand movements.
Product features:
- Ergonomic fit for optimum comfort
- Extremely non-slip design
- Breathable material
- Latex-synthetic construction
Technical details:
- Material: latex-synthetic combination
- PSA VO (EU) 2016/425 CAT II
- VO (EU) 1935/2004
- EN 21420
- EN 388
- EN 13997
- Slip Resistant
- Hand Protection
- Cut Resistant
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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 GuideEN 13594:2015 is a European standard for testing and classification of fire resistance of smoke control systems. It sets out the requirements for test methods, performance criteria, and classification of fire resistance for smoke control systems such as smoke exhaust ducts, smoke dampers, and smoke control valves. The standard also includes requirements for test reports and the marking of products that have been tested and classified in accordance with the standard. The possible test results of EN 13594:2015 can range from non-compliant to Class A, B, C, D, E, F and G.
Test results
Impact Properties PThe EN 13594:2015 standard defines performance requirements for protective gloves for motorcycle riders, including testing for impact protection. Specifically, when a test result for 'Impact Properties' under this standard is denoted with a P, it signifies that the product, usually a protective glove, has passed the specified impact protection tests. This particular test examines a product's ability to dissipate energy or resist damage when subjected to impact forces, ensuring that the gloves will provide adequate protection to the wearer in the event of a crash or collision. During this test, a defined force is applied to different areas of the glove, usually using an impact test machine outfitted with a specified striker and anvil. The gloves are assessed based on their ability to absorb and redistribute the energy without transferring excessive force to the hand or failing structurally. A passing result indicates that the gloves meet the stringent requirements for impact resistance set by the European Standard, thereby providing adequate protection in high-risk motorcycle riding scenarios and reflecting a higher level of performance in safety gear for riders.
EN 388:2016 is a European standard for measuring the performance of protective gloves against mechanical risks (abrasion, cut, tear, and puncture). The standard includes test methods and performance requirements for gloves to be considered compliant. Test results are reported using a series of four numbers, each representing the performance level achieved in one of the tests.
Test results
Abrasion Resistance Level 2EN 388:2016 is an updated European standard that specifies criteria for testing gloves to protect against mechanical risks, including abrasion, cuts, tears, and puncture. The Abrasion Resistance Level 2 classification within this standard indicates a moderate level of protection against wear from rough materials. The abrasion resistance test involves subjecting the glove material to repeated cycles of sandpaper under pressure until the material wears through. Level 2 abrasion resistance means the gloves can withstand between 500 to 1999 cycles before being penetrated. This level of protection is suitable for tasks that involve handling or coming into contact with abrasive materials but not at an extreme or heavy-duty level. Gloves with Level 2 abrasion resistance are well-suited for general handling tasks, offering durability and protection to extend the life of the glove while maintaining good dexterity and comfort.
Tear Resistance Level 3EN 388:2016 is a European standard that specifies methods for testing the resistance of protective gloves against mechanical hazards, such as abrasion, cuts, punctures, and tearing. The Tear Resistance Level 3 indicates a high level of protection, where the gloves can withstand significant tearing forces. The test for determining tear resistance involves subjecting the glove material to a mechanical force until it tears, measuring the force required to initiate and continue the tear. For Level 3, gloves must withstand a force between 50 to 75 Newtons before tearing. This robust level of tear resistance is particularly suitable for demanding environments where gloves are exposed to activities that might cause extensive wear or tearing, such as handling heavy or rough materials, industrial assembly, and construction tasks. Gloves with this level of tear resistance provide enhanced durability and safety, reducing the risk of injuries and increasing the longevity of the glove in tough working conditions.
Puncture Resistance Level 2The standard EN 388:2016 includes an assessment of Puncture Resistance, where Level 2 signifies that the material has met specific criteria for resistance against puncture. The result of Level 2 in puncture resistance means that the protective glove or material can withstand a force of 60 to 100 newtons before being punctured. The test method used involves using a standardized steel puncture probe that is pushed against the material at a specified speed until it pierces through it. In essence, achieving a Level 2 puncture resistance under EN 388:2006 suggests that the protective equipment offers moderate protection against punctures, making it suitable for environments where there is a risk of encountering sharp objects such as needles, but are not excessively sharp or exert very high force.
Cut Resistance, ISO 13997 Level AThe cut resistance result of Level A based on ISO 13997 in the standard EN 388:2016 indicates a force of greater than 2 Newtons required to cut through the material. This is considered the first level on a scale that ranges up to Level F, where each level corresponds to higher thresholds of force needed to penetrate the material, with Level F exceeding 30 Newtons. The testing method employs a TDM test device equipped with a single-use straight edge blade. During the test, the blade is drawn only once across the material in one direction, and once the blade cuts through the sample, the distance the blade has traveled is recorded. This standardized testing ensures that the cut resistance of materials like gloves can be measured more accurately, especially those fabricated from high-cut resistance materials that might blunt a blade. The practical implication of obtaining a result of Level A in this test is that the material provides basic cut protection and is suitable for tasks with minimal cut hazards, such as light material handling or small parts assembly.
Cut Resistance, Coup Test Level 1The EN 388:2016 standard is dedicated to gauging the mechanical risks for hand protection where a Cut Resistance, Coup Test Level 1 indicates minimal resistance to cutting because material achieved between 1.2 and 2.5 cycles before being cut through during the test. It means that the product tested at this level offers basic protection against shallow cuts, suitable for tasks with low risk of cut injuries. The test method used involves a rotating circular blade under a fixed force making contact with the fabric or material being tested. The blade moves back and forth across the material until a cut-through is achieved. The number of cycles required to cut through the sample at a consistent speed determines the cut resistance, with Level 1 being the second lowest rating after level 0. Products at this level are applicable in scenarios where there are minimal hazards from sharp objects, hence ideal for light duties where there is no significant risk of deep cuts.
EN 13997:1999 is a European standard for fire dampers. Fire dampers are devices that are installed in buildings to stop the spread of fire and smoke. The standard tells how these devices should be designed, installed, and checked to make sure they work well. It also tells how well the devices should work during a fire, like how long they can stop fire and smoke from spreading. Test results show if the fire dampers meet the requirements of the standard and work as they should during a fire.
PPE stands for "personal protective equipment." PPE Category 2 refers to equipment that is more complex, and has a higher level of risk. Examples of PPE Category 2 include safety helmets, ear protection, and fall arrest equipment. In Europe, PPE Category 2 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 and have to be audited regularly by a notified body.
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.
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Ulith® Safety 1-80504 Peel Protector Assembly Gloves, Neon Yellow/Black, 12 pairs
191,89 € / carton (VAT incl.)
161,25 €
carton VAT 0%
A carton contains 12 packages (144 pairs)
1,12 € / pair
In a package
12 pairs
In a carton
12 packages
144 pairs
On a pallet
20 cartons
2 880 pair
F W Burmann
Delivery time: 3 business days
Orders from 500,00 €
Free delivery for all F W Burmann products
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