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RapidFlow Premium Smooth Finish Carbide Overlay Plate | Eliminate Material Hang-up
SAS Global Engineers a smooth surface finish on all SureAlloy Premium Weld Overlay Products to provide optimum flow while reducing / eliminating material hang-up. The standard surface finish can be blanchard ground to provide an even lower coefficient of friction for applications with heavy material hang-up issues. This polished surface is known as SureAlloy RapidFlow Premium Smooth Surface Finish Carbide Overlay Plate. The surface is ground and polished within a 0.2 - 0.3 Ra Micro-Meters range. This finish is smoother than a stainless steel 304 with a 2B finish. The RapidFlow finish is available on all grades of SureAlloy Premium Carbide Overlay Plate. Maximum finished plate size for RapidFlow is 60” x 90”.
SA6000® is the new future of overlay wear plate. The patented microstructure of SA6000 is highly refined with tightly packed complex carbides. This fine grain microstructure reduces the propagation of cracks, which results in not only superior protection from abrasion, but also unheard of impact resistance!
SA2000® is a specially formulated complex carbide overlay plate designed to generate a high concentration of small primary carbides greatly improving wear resistance over conventional chromium carbide alloys. The refined microstructure containing harder complex carbides provides greater wear resistance and improved toughness. The inert refractory carbides present also increase the temperature resistance and corrosion resistance. Up to double the service life of standard chromium carbide overlay plate.
SA1750CR® is a Premium Chromium Carbide Overlay Plate consisting of a Hypereutectic Matrix with 50-60% Chromium Carbides metallurgically fused to an appropriate steel substrate. This large amount of hard chromium carbides allows SA1750CR to thrive in environments of extremely high abrasion.
SA-MCCTM was developed to satisfy the various application needs of our customers. SA-MCC Multiple Complex Overlays can be custom blended to provide material characteristics needed for specific wear resistivity. For example, if the application requires increased impact resistance and temperature rating, the blend of complex carbides would have higher levels of Molybdenum and Niobium.