11/3/2022 0 Comments Vista explodida nylon 66 assemblyNylon 6/6 is very easy to process with a very wide process window. Because of its excellent balance of strength, ductility and heat resistance, nylon 6/6 is an outstanding candidate for metal replacement applications. It is popular in every major market using thermoplastic materials. It explains all of the fea- tures, controls and performance characteristics of your INFINITI it also provides important instructions and safety information. Nylon 6/6 is one of the most versatile engineering thermoplastics. The ratio of carbon atoms is what gives each nylon type its unique property characteristics. The numerical nomenclature for nylon is derived from the number of carbon atoms in the diamine and dibasic acid monomers used to manufacture it. Commercial nylons include nylon 6, nylon 4/6, nylon 6/6, nylon 6/10, nylon 6/12, nylon 11 and nylon 12. The versatility of nylon makes it one of the most widely used engineering thermoplastics. Poor chemical resistance to strong acids and bases Overview There are many types of nylons commercially available.Wear resistance and lubricity Limitations.Nylatron® and Ertalon® are registered trademarks of the Quadrant group of companies. Nylatron® FST has passed tests to comply with Federal Aviation Regulations FAR 25.853 – the first engineering plastic shape to achieve this standard and offering engineers a safe material solution. brackets, seal bushings, slide rails and duct seals) or high-performance polymers have traditionally been specified. The material is particularly suitable for any kind of application where metal parts (e. Fire, smoke and toxicity (FST) retardant capabilities enable Nylatron® FST to withstand extreme temperatures up to 175 ✬. Its unique features make it the first engineering plastic product of its kind available as semi-finished shapes (rods and sheets). Quadrant’s new Nylatron® FST is a specifically designed polymer solution for aircraft interior applications. They must be lightweight, meet engineering demands, wear and design requirements, and in addition have fire-safety characteristics that meet aviation regulations and standards like FAR 25.853. It also fulfils the requirements as set out in EN 45545-2 regulation - a standard specific for railway applications - fire protection on railway vehicles.įor interior applications in aircraft materials must meet various requirements to be recognised. This program is described in UL 94 and this product grade fulfils the V-0 criteria as from 1 mm thickness. This grade has been developed to fulfil the requirements as set out in the test program conducted on plastic material to measure flammability characteristics, which determines the material's tendency either to extinguish or to spread the flame once the specimen has been ignited. It also allows higher maximum service temperatures. The nucleating effect of the molybdenum disulphide results in an improved crystalline structure enhancing bearing and wear properties.Ĭompared with virgin PA 66, this 30% glass fibre reinforced, and heat stabilized nylon grade offers increased strength, stiffness, creep resistance and dimensional stability whilst retaining an excellent wear resistance. The addition of MoS 2 renders this material somewhat stiffer, harder and dimensionally more stable than Ertalon 66 SA, but results in some loss of impact strength. Many of these specialist Nylon 66 materials have been developed with specific applications in mind. Whilst these properties make Nylon 66 a great choice for an engineering plastic, Quadrant have created a range of specialist Nylon 66 materials with added ingredients to provide enhanced properties compared to standard grade Nylon 66. Compared with Nylon 6, Nylon 66 has a higher mechanical strength, stiffness, creep resistance and heat and wear resistance, but its impact strength and mechanical damping ability are reduced. It also shows outstanding wear resistance and low frictional properties. Nylon 66 is a semi-crystalline polyamide (PA) with good rigidity, hardness, abrasion resistance and thermal dimensional stability.
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