Icoguanti PALMPRO 271 Cut-Resistant Anatomical Gloves with Nitrile Coating
Product description
Xtralite Edge 32 is a glove with the highest cut resistance that provides the highest protection without sacrificing flexibility and comfort.
Indicates the knit density of the glove, affecting dexterity and protection level. Higher numbers offer better finger sensitivity for precision tasks.
Indicates the dimensional fit of gloves to ensure proper hand protection, comfort, and dexterity. Correct sizing prevents fatigue and maintains cut resistance effectiveness.
Identifies the material applied to the glove's exterior that enhances grip, chemical resistance, and durability while complementing the cut-resistant core material.
Identifies the material used on the dorsal side of the glove, affecting breathability, comfort, flexibility, and secondary protection properties during use.
Identifies reinforced areas that provide additional durability and protection in high-stress zones, extending glove lifespan while maintaining necessary dexterity.
Suited for diverse tasks, offering reliable cut protection without sacrificing dexterity. Balances safety and flexibility for various applications.
Offers complete hand coverage, including full finger protection from cuts and abrasions. A versatile style suitable for various tasks and environments.
Indicates available personalization options such as company logos or custom sizing, enhancing identification and ensuring optimal fit for maximum protection and dexterity.
Defines how the glove secures at the wrist, affecting comfort, debris protection, and ease of donning/removal. Options vary in security and coverage.
Defines the inner material or construction that affects comfort, thermal properties, moisture management, and ease of donning/doffing during extended wear.
The inner fabric that contacts the skin, affecting comfort, breathability, and moisture management during extended wear in hazardous environments.
- Cut Resistant
- Heat & Flame Resistance
- Hand Protection
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Standards and labels
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.
Test results
Cut Resistance Level FThe standard EN 13997:1999 pertains to assessing the cut resistance level of materials, particularly used in hand and arm protective wear. A test result that indicates a Cut Resistance level of F means that the material withstand forces over 30 newtons. The EN ISO 13997 cut resistance test method is a crucial evaluation for materials where traditional tests don't suffice due to the material's ability to blunt a blade. This method employs a TDM test machine, incorporating a single-use straight edge blade that moves across a sample just once. The force required to make the cut as well as the distance the blade travels before penetrating the material is recorded. The results quantify the cut resistance on a level from A to F, where higher levels indicate better performance. For instance, if a material is classified under Level F, it infers that it has successfully resisted higher force before getting cut through, thus offering superior protection against sharp objects. This level of resistance is particularly valuable in industrial environments where protection against sharp instruments is crucial, influencing decisions in procurement for sectors such as metal stamping, waste management, or recycling where the risk of cuts and lacerations is significant.
EN 407:2020 is a European standard that specifies the safety requirements for protective gloves for thermal risks. It sets rules for the design, construction, and testing of gloves that protect users from heat and fire. Testing includes measurements of contact heat, convective heat, radiant heat, small splashes of molten metal, and flame resistance. The standard also includes requirements for labeling and instructions for use. This standard is an updated version of EN 407:2004, it includes new requirements, testing methods and performance levels to ensure that the gloves provide better protection against thermal risks such as heat, fire and molten metal splash.
Test results
Metal Splash Resistance Level XThe EN 407:2020 standard specifies different levels of protection for gloves against thermal risks, including metal splash resistance. A result marked as 'Level X' under this standard symbolizes that the glove material either did not meet the minimum requirements for testing or that no specific test was conducted for this hazard. The test for Metal Splash Resistance in EN 407:2004 involves exposing the glove material to molten metal splashes to determine how much molten metal is required to heat the glove material to a degree that it would cause risks to the wearer. The practical implication of a 'Level X' rating is that gloves marked as such should not be relied upon for protection against risks of molten metal splashes, making them unsuitable for use in environments where exposure to this hazard is likely.
Molten Metal Resistance Level XEN 407:2020 is a European standard that provides specifications for protective gloves to safeguard against thermal risks, including the exposure to molten metals. The designation Molten Metal Resistance Level X indicates that the gloves have not been tested for this specific risk, or they failed to meet the minimum requirements set out in the standard for protection against molten metal splashes. This means that the gloves are either unsuitable for use in environments where there is a risk of contact with molten metals, or additional testing is required to determine their suitability. Typically, such a classification implies that the gloves should not be used for handling molten metals and should only be considered for other types of thermal risks specified in the standard, where molten metal exposure is not a concern. This classification helps in ensuring that users select the right type of glove based on the specific hazards present in their working environment, thereby preventing inappropriate use and enhancing safety.
Burning Behaviour Level XThe EN 407:2020 standard's specified test result Level X for Burning Behaviour indicates that either the test was not conducted or the sample was not applicable for testing under this specific parameter. Consequently, no performance level can be assigned according the criteria set in the standard. This finding is part of a broader testing protocol where Thermal Hazards Protection levels are determined for materials, especially used in gloves intended for heat handling. The test method evaluates the material’s ability to resist catching fire and its rate of burning. To assess burning behavior, the sample is exposed to a small flame, and observations are made on whether it ignites, how long it burns after the flame is removed, and how it extinguishes. Practical implications for products that receive a Level X for Burning Behaviour could include uncertainty in performance when faced with thermal hazards, thus impacting their suitability for jobs involving high temperatures or direct contact with flames.
Heat Contact Level 1EN 407:2020 sets the standard for evaluating the performance of protective gloves against thermal risks. A result of Level 1 for Heat Contact indicates minimal protection, where the glove material can delay the transfer of heat from a surface at 100°C for at least 15 seconds. This test result is established through method EN ISO 12127-1, where a glove sample is exposed to a hot surface at a specified temperature and the time is measured until the glove's interior temperature rises by a certain degree. For procurement professionals, a Level 1 rating suggests suitability for environments with low heat risks, providing brief contact protection that can be crucial for tasks involving occasional, quick contact with warm objects without continuous exposure to high heat.
Heat Convection Level XIn the context of EU standard EN 407:2020, a test result signifying Heat Convection Level X indicates that the protective glove tested either did not meet the minimum requirements or was not tested under this criterion. It's vital to interpret such a label as the absence of certified protection against convection heat, which may involve exposure to energetically transferred heat via fluids or gases. The test method used to determine the Heat Convection Level involves measuring the time it takes for heat to transfer from a heated aluminum cylinder through the glove material to the inner surface where it might contact skin, as specified in the standard. The testing apparatus measures the rise in temperature inside the glove to assess its heat insulating properties. Practical implications of achieving 'Level X' in convection heat test suggest that the product is either unsuitable for environments where convection heat is a risk, or it necessitates further testing to ascertain its protective capabilities in specific conditions, crucial information for procurement decisions in safety-related industries.
Radiant Heat Level XEN 407:2020 is a European standard that sets the requirements for protective gloves to defend against various thermal hazards, including radiant heat. The designation Radiant Heat Level X indicates that the gloves have not been tested for this specific type of protection, or they did not meet the minimum criteria established by the standard for resisting radiant heat. This means that these gloves are not certified for protection against radiant heat, which involves the transmission of heat through infrared rays from a heat source without direct contact. The lack of a specific radiant heat protection level suggests that users should not rely on these gloves for tasks where significant exposure to radiant heat is expected. Instead, these gloves might be suitable for other types of thermal risks for which they are certified, ensuring users select the appropriate type of protective glove based on the specific hazards present in their working environment. This classification assists in preventing inappropriate glove use and enhancing worker safety by clearly indicating the limitations of the glove's protective capabilities.
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
Cut Resistance, ISO 13997 Level FThe EN ISO 13997 cut resistance test, stipulated in the standard EN 388:2016, includes Level F in its rating which represents a force greater than 30 Newtons before the material is penetrated by a blade. Level F indicates excellent performance in terms of resistance to cutting, protecting against extremely sharp objects. This test is conducted using a TDM machine where a single-use straight edge blade is drawn just once across the material in a linear direction until it cuts through. The force required to penetrate the material is then measured and recorded. In practical applications, Level F cut-resistant gloves are suitable for high-risk environments such as heavy metal stamping, waste management, and glass handling, where handling extremely sharp objects and materials is common. Gloves meeting this high standard of cut resistance ensure maximum protection and durability under severe conditions.
Tear Resistance Level 4EN 388:2016 is a European standard that establishes criteria for assessing the protection provided by gloves against mechanical hazards, including tear resistance. The Tear Resistance Level 4 classification represents the highest level of tear resistance defined by this standard, indicating that the gloves can withstand the most substantial forces before tearing. According to the testing methodology, gloves are evaluated by measuring the force required to tear a sample of the glove material, with Level 4 requiring a force of over 75 Newtons to initiate and propagate a tear. This high level of tear resistance is ideal for use in environments where gloves are subjected to significant stress and potential damage, such as in heavy industry, construction, and handling of materials with sharp edges. Gloves achieving this level offer superior durability and are essential for ensuring user safety in high-risk mechanical settings, thereby enhancing work efficiency and reducing the frequency of glove replacement.
Puncture Resistance Level 3The European Norm (EN) 388:2016 standard includes guidelines for assessing the puncture resistance of gloves, where a Puncture Resistance result of Level 3 signifies that the glove material can withstand a force of between 100 to 149 Newtons before being punctured. This result is crucial for ensuring that gloves provide an adequate level of protection against punctures when used in moderate risk environments, offering users safety from potentially harmful sharp objects. The test procedure for determining this metric involves measuring the amount of force required to puncture the glove using a standard-sized stylus. The stylus is pressed against the glove material at a constant speed until a puncture occurs. The weight needed to achieve the puncture is then recorded as the glove's puncture resistance level. For procurement professionals, this result implies that gloves rated at this level are suitable for tasks where there is a significant risk of encountering puncturing hazards, such as handling building materials, waste management, or assembly line work involving mid-level sharp objects.
Cut Resistance, ISO 13997 Level XThe standard EN 388:2016, specifically its segment referring to ISO 13997 test, is designed to assess the cut resistance of materials used in protective gloves. A result denoted as 'Level X' means that test is not performed and the cut resistance of the product cannot be guaranteed.
Abrasion Resistance Level 4EN 388:2016 uses a specific test method to measure abrasion resistance of safety gloves; the gloves’ material is subjected to sandpaper under pressure to observe the number of cycles needed to wear through the material. Level 4 in this standard indicates that the material withstood 8,000 cycles before a hole was made. Practically, this means that gloves rated at Level 4 for abrasion resistance offer very high resilience against wearing through, making them suitable for tasks involving significant contact with rough surfaces .
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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Price per 2 packages (24 pairs)
8,11 € / pair
Shipping fee is 4,74 € for orders under 150,00 €
A carton contains 2 packages (24 pairs)
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