Ansell AlphaTec 09-022

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Description
In environments where mechanical risks are combined with chemical exposure, the comprehensive all-round range of robust Neoprene 09-series gloves provide an optimal defence against oils, acids, caustics, alcohols and many solvents incorporating a good resistance to all mechanical hazards.
Recommended for
Foundry operations
Handling materials with sharp or rough edges
Extruding, bending and punching shapes
Processing sheets, coils, tubes
Fabricating metal parts, glass sheets
Unexpected leakages spills or other releases
Product Details
Antistatic : Not Tested
Available Sizes : 10
Coating Color : Black
Coating Material : Neoprene
Construction : Supported
Cuff Style : Gauntlet
Grip Design : Smooth Finish
Latex Free : Yes
Silicone Free : Yes
Length (Mm/Inches) : 350 / 13.8
Measures how far the glove extends up the arm, determining protection coverage. Longer lengths shield forearms from chemicals, heat, and other workplace hazards.
The interior fabric that contacts your skin, affecting comfort, temperature regulation, moisture control, and allergen exposure during extended wear periods.
Identifies the substance applied to the glove surface that determines grip quality, protection level, chemical resistance, and durability in specific work environments.
The visual appearance that enhances workplace safety through visibility, identification, and hazard awareness while allowing for team differentiation and brand recognition.
Defines the texture pattern on contact surfaces that affects traction, control, and handling ability in various work conditions like wet, oily, or dry environments.
Provides complete hand coverage, shielding fingers from hazards. Offers maximum protection and warmth, ideal for demanding tasks and environments.
Suited for various tasks, these gloves offer essential protection and flexibility. A practical choice providing comfort and durability for everyday use.
Offers enhanced forearm coverage, protecting against splashes and contaminants. Ideal for tasks requiring greater protection beyond the wrist area.
The design of the wrist area that secures the glove and prevents debris entry. Different styles offer varying levels of adjustability, protection, and comfort.
- Antimicrobial Protection
- Hand Protection
- Cold Protective
- Cut Resistant
- Heat & Flame Resistance
- Water Resistance
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Standards and labels
EN 407:2004 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 407:1994 and it's intended to protect the users against thermal risks, such as heat and flame, and to help them to choose a suitable glove for their specific application.
Test results
Radiant Heat Level XEN 407:2004 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 407:2004 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 pain or injury 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 407:2004 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 standard EN 407:2004 concerns Protective gloves against thermal risks (heat and/or fire) and includes a range of prescribed thermal tests, each designed to assess specific properties of safety gloves intended for various heat-related applications. The test result labeled Heat Contact Level 2 specifically evaluates the thermal insulation capacity of the glove material. A glove that achieves Level 2 has exhibited sufficient insulation to delay a temperature rise of 250°C for at least 15 seconds when its surface is in contact with a heated probe. This test involves placing the glove material against a hot probe of defined dimensions and temperature while monitoring temperature changes with a calorimeter embedded inside the glove to measure the rate at which the inner temperature rises. A Level 2 performance rating informs procurement professionals that the glove offers moderate protection against contact heat, suitable for environments or tasks where brief contact with moderately hot surfaces could occur, but where extensive or prolonged exposure does not exist. This ensures adequate protection for scenarios requiring such specific levels of thermal resistance without being over-specced for less demanding conditions.
Burning Behaviour Level 4Level 4 requires the material to have an afterflame time of no more than 2 seconds and an afterglow time of no more than 5 seconds after exposure to flame. This level offers substantial protection for handling or exposure to fire, suitable for environments where there is a significant risk of intense and immediate contact with flames.
Heat Convection Level XThe EN 407:2004 European standard and its annexure for Heat Convection Level X is designed to gauge the protective capability of gloves when exposed to heat transmitted through a fluid medium, such as air or steam. The designation of Level X specifically indicates that the material did not meet the minimum requirements set forth in the test, or wasn't tested due to being deemed unsuitable for this type of exposure based on the nature of the material. The test method for determining this involves measuring the time it takes for the material to increase in temperature by 24°C under standardized conditions of convection heat exposure. This test is important for defining the efficacy of protective gear under various industrial conditions where heat convection is a risk.
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
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.
Abrasion Resistance Level 3EN 388:2016 is a European standard that provides guidelines for assessing the protection levels of gloves against mechanical risks, such as abrasion, cuts, tears, and puncture. The Abrasion Resistance Level 3 indicates a higher level of protection, signifying that the gloves can resist more intensive wear from rough materials. According to the standard, the abrasion resistance test involves rubbing the glove material against sandpaper under a specified pressure until it is worn through. Level 3 abrasion resistance requires that the gloves withstand 2000 to 7999 cycles of abrasion. This enhanced level of durability is appropriate for tasks involving more frequent or more intense contact with abrasive surfaces, such as construction work, woodworking, and handling building materials. Gloves with Level 3 abrasion resistance offer a robust barrier against wear, extending glove life and providing increased protection for the wearer’s hands, thus reducing the risk of injuries in more demanding work environments.
Cut Resistance, Coup Test Level 2EN 388:2016 standard features a Coup Test used to measure Cut Resistance, and a result of Level 2 indicates moderate protection against cuts. This level signifies that the material being tested withstood between 2.5 to 5.0 cutting cycles before the blade penetrated the glove during testing. The Coup Test involves a rotating circular blade with a constant force applied, moving back and forth across the material until a cut through occurs. The sharpness of the blade and the distance of blade travel are measured before the test, and after cutting through the material, to ensure accuracy. Practical implications of a Level 2 result suggest the gloves are suitable for tasks with some cut hazards but are not suggested for high-risk cut environments, such as handling heavy or very sharp materials where a higher level of protection might be necessary. This result helps businesses choose gloves tailored for different workplace needs regarding cut risks.
Cut Resistance, ISO 13997 Level CThe EN 388:2016 standard comprehensively addresses the cut resistance of gloves, using the ISO 13997 test method, where achieving Level C indicates that the glove can withstand forces between 10 to 14 newtons during cutting. This level of cut resistance provides an intermediate level of protection against cuts, suitable for handling tasks where there is a significant risk of cuts from sharp objects but where the highest level of cut resistance isn't necessary. The ISO 13997 test itself is a more detailed and clear manner to assess material cut resistance under a straight-edge blade under varying load, unlike the Coup Test used previously, which could blunt the blade. Essentially, Level C gloves are designed for robust hand protection in environments where cut hazards are considerable but not at the most extreme end of the scale, making them suitable for industries like construction and manufacturing where sharp tools and materials are frequently handled.
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.
EN ISO 374-1:2016 is a standard that defines the performance requirements for gloves that protect against chemicals and microorganisms. The standard specifies the design, materials, and testing requirements for gloves to protect against chemicals and microorganisms. Possible test results include measurements of the gloves' permeation resistance, degradation, and penetration. It also includes the safety and functionality requirements for gloves.
Test results
Specified Requirements Type AEN 374-5:2016 is a European standard for gloves that protect against microorganisms, specifically gloves that are used for medical and dental procedures. It sets rules for how the gloves should protect against microorganisms and how to test if they meet the standards. Gloves that pass the tests can have a label that says they meet the standard. The test results can be pass or fail for each test that checks the gloves resistance to microorganisms.
Test results
Micro-organisms VirusEN 374-5:2016 is a standard that outlines the requirements and testing methods for protective gloves designed to protect against viruses. The designation 'Virus' indicates that the gloves have passed specific tests confirming their barrier effectiveness against viruses. These tests involve assessing the glove material's resistance to penetration by blood-borne pathogens and other virus-containing fluids, using a bacteriophage as a surrogate virus due to its small size and resistance. Gloves that meet this standard are vital in healthcare settings, laboratories, and any environment where there is a risk of exposure to viral infections. They are crucial for preventing the transmission of diseases, ensuring that workers are protected when handling potentially infectious materials, thus enhancing safety and health protocols in workplaces with biological hazards.
Micro-organisms Bacteria & FungiEN 374-5:2016 specifies the requirements and test methods for protective gloves intended to protect against bacteria and fungi. The designation 'Bacteria & Fungi' indicates that the gloves have been tested and verified to provide effective barrier protection against microbial agents. The testing involves evaluating the glove's material and seams for their impermeability to microorganisms under conditions that simulate real-world use, ensuring no penetration occurs through the glove material or at the seams. Gloves certified under this standard are crucial for use in environments such as healthcare, laboratory settings, and any applications where preventing the transmission of infectious agents is essential. They help ensure the safety and hygiene of workers by providing reliable protection against the risks of bacterial and fungal contamination.
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
Water Tightness Level 1EN 511:2006 is a European standard focused on testing the water tightness of protective gloves against penetration by water. Its purpose is to ensure that protective gloves offer adequate resistance to water. A Level 1 rating in water tightness signifies that the gloves provide basic protection against water penetration, though they may not be suitable for prolonged exposure to wet conditions. The test method involves placing the gloves on a hand-shaped form, filling them with water, and then observing for any signs of leakage over a specified period. Practical implications of this result for the product category include indicating that the gloves offer some degree of protection against water exposure, making them suitable for use in mildly wet or cold environments where only limited exposure to water is expected. However, they may not be suitable for prolonged exposure to heavy rainfall or immersion in water.
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 .
Convective Cold Level 1The standard EN 511:2006 specifies requirements and test methods for gloves designed to protect against cold environments, focusing on elements such as convective cold, contact cold, and water permeability. The Convective Cold test, particularly at Level 1, results in a performance level where the thermal insulation (denoted as TR) measured in \(m^2°C/W\) is in the range of 0.10 to less than 0.15. This measurement indicates the glove's ability to provide minimal thermal resistance against cold air. The Convective Cold Test involves placing a glove on an electrically heated hand model, where the power required to maintain the hand at a set temperature (typically around 30°C) in a controlled cooling environment is measured. The glove's performance level is determined based on how much power is needed to keep the hand warm as the surrounding temperature decreases. Level 1 highlights a basic level of insulation against cold air, suitable for environments where slight cold protection is sufficient, but would not be suitable for more severe cold conditions. .
REACH stands for "Registration, Evaluation, Authorisation and Restriction of Chemicals" it is a regulation of the European Union that governs the registration, evaluation, authorization, and restriction of chemicals. The REACH regulation aims to ensure that the chemicals used in Europe are safe for human health and the environment. The regulation applies to all chemical substances, whether they are used in industrial processes or in everyday products such as cleaning products, paints, and cosmetics. Companies that manufacture, import or use chemicals in the EU must register the chemicals they produce or import, provide safety information and communicate the risks associated with the chemicals. This information will be used to assess the risks and determine if any further action is needed to protect human health and the environment.
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.
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Price per 3 packages (36 pairs)
29,42 € / pair
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