High Strength Wear-Resistant Steel Plates are mainly from the NM series, with common grades including NM360, NM400, NM450, NM500, NM550, and NM600. China manufacturers maintain ample stock, offering a complete range of standard thicknesses and widths for fast delivery, ensuring timely completion. Custom-made lengths, cutting, bending, and other deep processing are supported, and custom-shaped parts can be manufactured according to drawings.
Composite wear-resistant steel plate from Lingchuang is a high-performance solution designed for heavy-duty applications, featuring a surface hardness up to HRC58–62 with wear resistance 15–20 times higher than ordinary steel plates, effectively resisting strong abrasion and impact wear. China manufacturers provide advanced rolling and welding production lines, strict quality inspection for each batch, and full material certificates with hardness test reports, supporting third-party verification to ensure reliable sourcing for global buyers of wear-resistant steel plate and composite steel solutions.
Wear-resistant steel plates utilize a composite structure of a low-carbon steel matrix and a high-hardness alloy wear-resistant layer. Directly supplied by the manufacturer, they offer a complete range of specifications and can be customized to meet specific needs, covering mainstream application scenarios.
Low Carbon Steel Plates, with a carbon content of 0.05%-0.25%, offer excellent plasticity and toughness, superior weldability, and are supplied directly from the manufacturer. Custom specifications are available upon request, with one-stop processing for cutting and bending.
China High Carbon Steel Plates, with a carbon content of 0.6%-1.4%, are characterized by high hardness, high strength, and excellent wear resistance, making them suitable for cutting tools and molds. Leading manufacturers of high-carbon steel plates boast large production capacity, stable quality, and customizable options.
We use cookies to offer you a better browsing experience, analyze site traffic and personalize content. By using this site, you agree to our use of cookies.
Privacy Policy