Product description
Hand 1A Weld Pro red lined welding fingertip, 12 pairs in a pack. Beef cowhide with cotton lining. All leather welding glove. Durable index finger and reinforced safety strap. Stitched with Kevlar thread. With sock lining. One-size 11/XXL.
Seam material refers to the type of thread or other material used to sew or join two pieces of fabric together in a garment, bag or other item. The seam material is used to provide strength, durability and to enhance the appearance of the item. There are many different types of seam materials, such as cotton, polyester, nylon, and silk. The requirements for seam material depend on the intended use of the item, the desired level of strength, durability and the desired look. For example, a polyester seam might be more suitable for a sportswear, while a silk seam might be more suitable for a formal wear. Additionally, seam material can also depend on personal preferences, such as the type of fabric and the desired level of durability.
Color is a visual characteristic of objects, surfaces, or light that is determined by the way it reflects or emits light. Color can be described by its hue, saturation, and brightness. The requirements for what is considered a "color" can vary depending on the context, but generally it should be a visual characteristic of an object, surface, or light that is determined by the way it reflects or emits light.
Support refers to the action of providing assistance or aid to something or someone to help them stay in a desired position or perform a desired function. The requirements for support vary depending on the situation, the object or the person needing support. For example, a structure such as a building or a bridge needs support to remain stable and not collapse, a person with a disability may need support to move around or perform daily tasks. Different types of support have different features, such as being adjustable, durable and providing stability. It's important to choose the right type of support that meets the specific needs and requirements of the situation or person.
Full finger refers to a type of glove or mitten that covers the entire finger, including the tip. It is designed to protect the fingers from cold weather, injuries, or other hazards. The requirements for what is considered a "full finger" glove or mitten can vary depending on the context, but generally it should cover the entire finger including the tip, providing protection to the entire finger.
Multi-purpose refers to something that can be used for multiple purposes or functions, instead of being designed for just one. An example of a multi-purpose item is a tool that can be used for different types of tasks, such as a swiss army knife that can be used as a knife, a can opener, and a screwdriver. The requirements for a multi-purpose item are that it should be able to perform multiple functions effectively, be durable, and easy to use. It should also be versatile, able to adapt to different needs, and have a good performance. Additionally, it should be safe and reliable.
"Reinforced fingertips refer to the extra layer of material added to the tips of gloves or mittens to provide extra durability and protection. The specific requirements for reinforced fingertips can vary depending on the intended use of the gloves or mittens. Some examples include gloves for industrial or construction work which may require reinforced fingertips to protect against cuts or abrasions."
Cuff style refers to the design or cut of the cuff of a garment, such as a shirt, dress, or pants. There are many different types of cuff styles, such as button, French, or barrel. The requirements for cuff style depend on the intended use of the garment and the desired look or function. For example, a button cuff might be more suitable for a business casual outfit, while a French cuff might be more suitable for a formal outfit. Barrel cuffs are an alternative to button cuffs, they are often used for casual and sport shirts. Additionally, cuff style can also depend on personal preferences, such as the level of formality and the desired level of wrist coverage.
- Cut Resistant
- Heat & Flame Resistance
- Hand Protection
- Welding
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Standards and labels
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
Heat Convection Level 3The standard EN 407:2020 specifies the requirements and test methods for protective gloves in relation to heat and/or fire. A Heat Convection result of Level 3 indicates that the gloves can withstand a specific level of heat transfer by convection for a set duration before the inside temperature increases by more than 24°C. The test method involves placing the glove material between a heat source and a calorimeter, measuring the time taken for the temperature increase. The practical implication for protective gloves achieving a Level 3 in heat convection is that they offer a moderate level of protection against risks from convective heat, making them suitable for environments where heat hazards are present but not excessively high. These gloves can be critical for professionals such as firefighters, foundry workers, and in some manufacturing processes where indirect heat is a factor.
Metal Splash Resistance Level 4EN 407:2020 is a European standard focused on assessing the protective capabilities of gloves against thermal risks, including hazards such as molten metal splashes. Metal Splash Resistance Level 4 represents an advanced level of protection, where the gloves are designed to handle substantial exposure to molten metal. This performance level signifies that the gloves can effectively resist at least 35 droplets of molten metal, protecting the wearer without the metal penetrating the glove material significantly. The testing involves simulating conditions where molten metal is splashed onto the glove, assessing the glove's ability to prevent molten metal from sticking and causing burns. Gloves that achieve Level 4 are ideal for heavy industrial applications such as steel mills, foundries, and welding, where frequent and substantial contact with molten metal occurs. This level of protection is crucial for maintaining safety and preventing serious injuries in environments with high thermal risks.
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 4The EN 407:2020 standard specifies the requirements for protective gloves meant to guard against thermal risks like heat and/or fire. For Level 4 in the 2020 update of the standard, gloves must meet stringent requirements following exposure to fire. They should exhibit an afterflame time of no more than 2 seconds and an afterglow time of no more than 5 seconds. This level of protection is crucial for environments with a high risk of exposure to intense and sustained flames, offering maximum safety for the wearer in hazardous conditions.
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.
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
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.
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 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.
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.
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 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.
Juha Rantanen Oy delivery terms
Free delivery when you order more than 500,00 € from Juha Rantanen Oy
Supplier shipping fee 17,50 €
Brand minimum 0,00 €
Hand1A 1406 Red Welding Gloves One-size 11/XXL, 12 pairs
73,09 € / package (VAT incl.)
58,24 €
A package contains 12 pairs
4,85 € / pair
In a package
12 pairs
Juha Rantanen Oy
Delivery time: 2 business days
Supplier shipping fee 17,50 €
Free shipping on orders over 500,00 €
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