BASF Capron® 8262G HS BK-102, 7/13% Glass/Mineral-Filled Nylon 6 (Conditioned)
Subcategory: Nylon; Thermoplastic; Nylon 6; Polymer
Close Analogs: This product is no longer a part of the BASF NAFTA standard product line.
Material Notes: Capron 8262G HS BK-102 is a heat stabilized, pigmented black, 20% glass and mineral reinforced nylon 6 injection molding compound resulting in a balance of engineering properties with excellent dimensional stability, low warp and good resistance to sink mark formation. Capron 8262G HS BK-102 isn generally recommended for applications such as automotive housings, brackets, hubs, shrouds and roller bearings. Data provided by Allied Signal. Processing: Max. water content 0.12%. Product is supplied in sealed containers and drying is not required. If drying becomes necessary, a dehumidifying or desiccant dryer operating at 85°C (185 °F). Is recommended. Drying time is dependent on moisture level. Melt Temperature: 270-295 degC (518-563 degF). Mold Temperature: 80-95 degC (176-203 degF). Injection and Packing Pressure: 35-125 bar (500-1500psi) This product can be processed over a wide range of mold temperatures; however, for applications where aesthetics critical, a mold surface temperature of 80-95 degC (176-203 degF) is required. Injection pressure controls the filling of the part and should be applied for 90% of ram travel. Packing pressure affects the final part and can be used effectively in controlling sink marks and shrinkage. It should be applied and maintained until the gate area is completely frozen off. Back pressure can be utilized to provide uniform melt consistency and reduce trapped air and gas. A maximum of 3.5 bar (50 psi) is recommended to minimize glass fiber breakage. Fast fill rates are recommended to insure uniform melt delivery to the cavity and prevent premature freezing. Surface appearance is directly affected by injection rate.
Available Properties |
- Density
- Linear Mold Shrinkage
- Melting Point
- Processing Temperature
- Mold Temperature
- Drying Temperature
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