Singer Safety Cut Resistant Gloves
Product description
The SNOWCUT protective gloves combine high-density polyethylene fibers with nitrile foam coating to deliver exceptional cut resistance and cold protection. These seamless knitted gloves feature an acrylic terry lining for thermal insulation and comfort, while the nitrile foam palm coating provides excellent grip and oil resistance. Certified to multiple European safety standards including EN 388:2016+A1:2018 with level D cut protection, these gloves are designed for demanding environments requiring mechanical and thermal protection.
Product Features:
- Seamless knitted construction eliminates pressure points and irritation for enhanced comfort
- High-density polyethylene liner provides superior cut resistance (Level D)
- Acrylic terry lining offers thermal insulation and comfort in cold environments
- Nitrile foam coating on palm provides oil resistance and improved grip
- Elastic knitted wrist with piping ensures secure fit
- Antibacterial Actifresh treatment for improved hygiene
Technical Details:
- Gauge 10 seamless knitted liner
- High-density polyethylene technical fiber construction
- Palm-coated design with ventilated back for breathability
- EN 388:2016+A1:2018 certification (4X42D) for mechanical protection
- EN 511:2006 certification (X1X) for cold protection
- EN 407:2020 certification (X2XXXX) for limited heat contact protection
Recommended Applications:
- Public works
- Heavy industry
- Light industry
- Building and construction
EAN: 3660514090958, 3660514090965, 3660514090989, 3660514090996, 3660514091016, 3660514091023, 3660514091047, 3660514091054
The inner fabric that contacts the skin, affecting comfort, breathability, and moisture management during extended wear in hazardous environments.
Identifies the material applied to the glove's exterior that enhances grip, chemical resistance, and durability while complementing the cut-resistant core material.
Specifies the material used in the glove's palm area, affecting cut resistance, grip quality, dexterity, and comfort during handling tasks.
Indicates the extent of protective coating applied to the glove, affecting grip, dexterity, liquid resistance, and breathability for different work environments.
Refers to how glove sections are joined together. Seamless designs eliminate weak points for consistent protection and improved comfort during extended wear.
Indicates the knit density of the glove, affecting dexterity and protection level. Higher numbers offer better finger sensitivity for precision tasks.
Offers enhanced comfort and dexterity due to the absence of seams. The seamless construction provides a snug fit and reduces irritation during use.
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.
Ensures a snug, adaptable fit around the wrist, enhancing comfort and preventing slippage. Offers ease of movement and secure glove placement.
Offers a snug, flexible fit, keeping debris out. Knit cuffs provide comfort and dexterity, conforming to the wrist for secure, all-day wear.
- Cold Protective
- Cut Resistant
- Heat & Flame Resistance
- Slip Resistant
- Antimicrobial Protection
- Hand Protection
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Standards and labels
EN 511:2006 is a European standard that sets requirements for the protection against cold for gloves and mittens. It covers factors such as resistance to cold, water penetration and breathability. Testing must be done by a certified lab and must show that the product meets all requirements of the standard. Possible test results would include pass/fail for each requirement, as well as specific measurement data.
Test results
Convective Cold Level XThe EN 511:2006 standard specifies the requirements for protective gloves against cold, including convective cold. A specific test result of Level X under this standard generally implies that the gloves have not been measured for that specific level of protection against convective cold or did not meet the criteria to be rated at a discernible level; hence, information regarding the protection it could offer at Level X is not provided. The Convective Cold Test involved in EN 511:2006 measures the thermal insulation of gloves when exposed to cold air. This test uses an electrically heated hand model, and the power required to maintain the hand's temperature gives an indication of the glove's insulation effectiveness. The test environment is controlled with progressive cooling, and measurements are taken to assess the insulation level, categorized from Level 1 upwards. The higher the level, the greater the cold insulation offered by the glove, enabling professionals in cold environments to select gloves based on the specific insulation requirements of their workplace activities .
Cold Contact Level 1The standard EN 511:2006 specifies requirements for protective gloves that guard against cold environments. Cold contact performance Level 1 indicates a glove's level of protection against transmitted cold via physical contact with cold objects. For Level 1 specifically, the thermal resistance level must be above 0.025 but less than 0.050 m²°C/W. The test for this rating, known as the Contact Cold Test, involves placing the glove material on metal plates that have been pre-cooled to different specific temperatures. The temperature drop across the test sample is then measured to determine how effectively the glove insulates against cold. In practical terms, a glove achieving Level 1 in cold contact provides minimal thermal insulation, suitable for environments where exposure to slight cold is expected but not extreme cold conditions .
Water Tightness Level XThe standard EN 511:2006 defines the requirements for protective gloves against cold. The reference to a Water Tightness Level X in this standard typically indicates that the glove has not been tested for water tightness. Water tightness is assessed through a specific test method where the gloves are subjected to water exposure under controlled conditions to check for leakage. The gloves are filled with water and then inspected visually to determine the presence of any water leakage. The practical implications of a Level X result for water tightness suggest that the gloves are either not designed to be waterproof or they failed to meet the minimum criteria for being labeled as water-resistant under normal usage conditions. This information is important for procurement professionals focusing specifically on the need for water-resistant or waterproof protective gloves.
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
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 BThe Cut Resistance test, ISO 13997, as per standard EN 388:2016, aims to gauge the resistance of protective glove materials against cuts by sharp objects. A test result of Level B means that the protective material can withstand forces between 5 and 10 Newtons before being penetrated. This implies moderate resistance, suitable for tasks like packaging, goods manufacturing, and warehousing. The ISO 13997 test involves using a TDM test device equipped with a straight-edge blade drawn once across the material in a defined direction until penetration occurs. The distance the blade travels before cutting through the material is recorded. This test, with its rigorous measurement of cutting force, is particularly useful for materials that tend to blunt blades, ensuring accurate and reliable performance ratings for gloves specifically meant for mechanical hazards. The practical implication for gloves rated at Level B is they offer moderate protection suitable for industries with moderate cut hazards, thus ensuring user safety in specific working environments like logistics or light manufacturing.
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 .
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.
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
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.
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.
Heat Contact Level 2The EN 407:2020 standard revolves around the specification for protective gloves against thermal risks, such as heat and flame. A entry marked as Heat Contact result Level 2 indicates gloves that provide moderate protection against contact with heat, capable of resisting a specific temperature of up to 250°C for a minimum exposure time determined by the Level 2 requirements. This protective level is tested primarily to ensure that users of these gloves can safely handle moderately hot surfaces without sustaining heat injuries. During the test for Heat Contact, a sample glove segment is exposed to a heat source at a specific temperature, and the time taken for the temperature inside the glove to increase by a set number of degrees (typically by 24°C) is measured. This result implies that these gloves offer sufficient protection for tasks involving significant but not extreme temperatures, making them suitable for various industrial, mechanical, and cooking operations where intermediate heat protection is necessary.
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 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.
Test results
General Requirements GuideEN ISO 21420:2020 is a standard that outlines general requirements and guidelines for protective gloves, aiming to ensure their quality, performance, and suitability for various applications. When a product meets the requirements outlined in the General Requirements section of EN ISO 21420:2020, it signifies that the gloves comply with fundamental quality and performance criteria, including factors such as size, fit, ergonomics, and dexterity. The practical implications of this compliance are significant, as it assures users of the gloves' basic functionality and suitability for general hand protection purposes across a range of industries and applications. The test method involves evaluating various aspects of the gloves, including dimensions, construction, materials, and labeling, to ensure conformity with the specified requirements. Compliance with these general requirements enhances user confidence in the protective gloves' reliability and effectiveness, promoting workplace safety and facilitating compliance with regulatory standards.
EN ISO 9001:2015 is a standard that sets out the requirements for a quality management system (QMS). It is a set of guidelines that organizations can follow to ensure that they meet customer requirements and enhance customer satisfaction. The standard is based on the plan-do-check-act model and focuses on continuous improvement. It covers the design, development, production, installation, and servicing of products. Organizations can get certified to this standard, which means that they have been independently audited and found to meet the requirements of the standard. The certification process includes regular audits to ensure that the organization continues to meet the standard's requirements.
Test results
Service Reliability PassedCE 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 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.
SINGER Safety delivery terms
Free delivery when you order more than 1 650,00 kr from SINGER Safety
Supplier shipping fee 55,20 kr
Brand minimum 2 000,00 kr
1 052,05 kr
Price per 10 pairs
105,20 kr / pair
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SINGER Safety
Delivery time: 5 business days
Orders from 2 000,00 €
Supplier shipping fee 55,20 €
Free shipping on orders over 1 650,00 €



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