Analysis of Processing Properties of 304 Thick-Walled Stainless Steel
The 304 stainless steel family, derived from the 304 grade, is known for its excellent surface finish properties. It is compatible with a wide range of surface treatments commonly used in the industry today. Whether it's mechanical polishing or wire drawing, 304 series stainless steel can achieve a high-quality appearance that meets the needs of various applications.
First, the most common surface treatments include dry sanding and wire drawing, such as filament and short wire finishing. After this process, 304 stainless steel exhibits a visually appealing surface, making it suitable for general decorative purposes. In most cases, a single pass of sanding is sufficient to produce a satisfactory result.
Due to the low cost of the equipment, ease of operation, and affordability of the process, these methods are widely adopted in machining centers. As a result, many facilities offer sanding plates with filament and short wire finishes, where 304 stainless steel makes up over 80% of the usage. This not only highlights the material’s versatility but also its economic advantage in industrial applications.
Second, oil-milled wire drawing on 304 stainless steel produces a smooth and elegant finish. This technique is particularly popular for use in elevator panels, home appliances, and other decorative surfaces. Cold-rolled 304 stainless steel can often achieve an excellent surface quality after just one sanding pass.
In recent years, some machining centers have started offering oil-based frosting treatments for hot-rolled stainless steel. The results are comparable to those achieved through cold-rolled oil milling, expanding the range of available finishes for 304 stainless steel. This flexibility allows manufacturers to choose the best option based on their specific requirements and budget constraints.
Overall, the processing properties of 304 thick-walled stainless steel make it a preferred choice in many industries, especially where aesthetics and durability are key factors. Its compatibility with various surface treatments ensures that it remains a versatile and widely used material in modern manufacturing.
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