Product description
Nitras Poseidon 1403C vahvat työkäsineet, 120 parin kartongissa.
Naudannahkakäsineet joissa mukava kämmenvuori ja kumipäällystetty ranneosa. One-size: 10 - XL.
Coating coverage refers to the amount of paint or coating that covers a surface. The requirements for coating coverage vary depending on the type of coating and the surface being coated. Generally, the coating should be applied evenly and in the proper amount to ensure adequate protection and appearance.
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.
Grip type refers to the way a tool or object is held or designed to be held. It should be comfortable, secure and easy to hold. It can be made of different materials like rubber, plastic, wood etc. It also can be in different shapes and sizes depending on the tool or object.
Liner style refers to the design and style of a liner that is used inside a garment such as a jacket, a glove or a shoe. The requirements for liner style vary depending on the intended use and the environmental conditions. For example, a jacket for cold weather may have a liner made of a warm material such as down or fleece, while a jacket for mild weather may have a liner made of a light material such as mesh. Different types of liners have different features, such as moisture-wicking, breathability, and insulation. It's important to choose a liner style that meets the specific needs and requirements of the intended use and environment.
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.
Coating material refers to the substance that is used to cover a surface. The requirements for coating material vary depending on the surface and the purpose of the coating. For example, the coating material used on a metal surface should be able to resist rust, while the coating material used on a wood surface should be able to protect against moisture. Generally, the coating material should be appropriate for the surface and the intended use of the coating.
Cuff material is the material used to make the part of a shirt or pants that covers the wrists. It must be durable, comfortable and easily cleaned.
Liner material refers to the type of fabric or other material used for the lining of a jacket, shoe, or other item. The liner material is used to provide extra warmth, comfort, or support. There are many different types of liner materials, such as fleece, cotton, nylon, and down. The requirements for liner material depend on the intended use of the item and the desired level of warmth, comfort, or support. For example, a fleece liner might be more suitable for a cold weather jacket, while a cotton liner might be more suitable for a summer jacket. Nylon is a lightweight and durable material that is often used for liners in outdoor gear and footwear. Down is a type of insulation that is made from the soft, fluffy plumage found under the feathers of ducks and geese, and it is known for its insulating properties. Additionally, liner material can also depend on personal preferences such as the feel and breathability of the material.
Palm material refers to the material that covers the palm of a glove or other hand-held object. It needs to be durable, comfortable, and provide a good grip. It can be made of different materials like leather, synthetic leather, rubber, or fabric. It should also be breathable to prevent sweating and easy to clean.
- Hand Protection
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Standards and labels
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.
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.
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.
EN 420:2003+A1:2009 is a European standard that sets out the general requirements for hand protection, including comfort, fit, and dexterity. Performance requirements include resistance to abrasion, cut, tear, puncture, and impact. Test results should show the gloves meet these requirements.
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.
Nitras delivery terms
Free delivery when you order more than 1 000,00 € from Nitras
Supplier shipping fee 40,00 €
Brand minimum 50,00 €
NITRAS 1403C Työkäsineet, 12 pairs
25,90 € / package (VAT incl.)
20,64 €
A package contains 12 pairs
1,72 € / pair
In a package
12 pairs
In a carton
10 packages
120 pairs
On a pallet
0.2 cartons
24 packages
288 pairs
Nitras
Delivery time: 8 business days
Orders from 50,00 €
Supplier shipping fee 40,00 €
Free shipping on orders over 1 000,00 €
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