How to Bend Aluminum: Techniques, Tools, and Tips?
Metal fabricators often struggle with aluminum bending—warped surfaces, uneven angles, and springback issues plague their projects. However, with proper techniques and the right tools, achieving
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Metal fabricators often struggle with aluminum bending—warped surfaces, uneven angles, and springback issues plague their projects. However, with proper techniques and the right tools, achieving
Do you need a manufacturing process that can efficiently create seamless, high-strength, and lightweight components? Many industries face challenges in producing complex, durable parts without
Stainless steel stamping is a cold-forming process that shapes stainless steel sheets using custom-designed dies and powerful mechanical or hydraulic presses. The process creates identical parts by applying controlled pressure to cut, bend, and form the metal into desired configurations.
Stamping aluminum in metal fabrication is a high-speed, high-volume manufacturing process. It involves using specialized tools and dies to shape flat sheet metal into specific forms. For aluminum stamping, we start with aluminum sheet stock. The process applies force to the metal, causing it to conform to the shape of the die.
We are welcoming you to the world of Shengen’s sheet metal fabrication! We are constantly exploring the intricacies behind metals and treatments. Clients and business
Aluminum fabrication is the process of turning raw aluminum into usable parts. This process includes cutting, forming, joining, machining, and applying surface finishes. Each method shapes or joins the metal differently. Depending on the part and the quantity needed, shops use either manual tools or machines.
Stainless steel fabrication is the process of shaping stainless steel into finished products. This involves techniques such as cutting, welding, bending, and assembling. These methods create strong, corrosion-resistant parts that can be used for practical and decorative purposes. Stainless steel fabrication is commonly used in the construction, automotive, and medical equipment industries.
Deburring is the process of removing small, rough edges left on a metal part after cutting, drilling, milling, or stamping. These leftover edges are called burrs. Burrs are sharp, unwanted, and often invisible at first glance. They can affect how a part fits, moves, or looks. Removing them makes the part safer to handle, easier to assemble, and better in performance.
Sheet metal prototyping is the process of creating physical models or samples of products using sheet metal materials. These prototypes are fabricated to test and validate a product’s design, functionality, and manufacturability before moving into full-scale production.
The best sheet metal assembly methods include welding, riveting, bolting, and clinching. Each method fits different needs. Some are best for strong joints, while others work well for speed or low cost. Choosing the right one depends on part design, load strength, material type, and production volume.
Sheet metal rivets are simple fasteners that hold two or more metal parts together. Each rivet has a head and a tail. When installed, the tail deforms and locks the parts tightly.
Rivets are useful when welding isn’t an option. They are strong, light, and easy to install. They work well with thin sheets and dissimilar metals. You can also install them from one side if needed.
Polishing aluminum is an art that combines the right tools, abrasives, and techniques. Start with a clean surface and work through progressively finer grits of sandpaper. Use a polishing compound and buffing wheel for the final shine. The key is patience and consistent pressure throughout the process.
Many projects in manufacturing need custom markings, logos, or labels on metal surfaces. Silk screen printing offers a low-cost way to apply durable and sharp
Working with stainless steel sheet metal demands precision and expertise. Many manufacturers struggle to achieve clean cuts, manage costs, and maintain quality standards in their
CNC turning is a machining process that uses a computer-controlled machine to shape materials. The workpiece is held on a rotating spindle. As it spins, a cutting tool moves along the material, removing layers to form the desired shape. The CNC system controls the movement of the tool and the cutting speed.
CNC milling is a subtractive manufacturing process. It uses a rotating cutting tool to remove material from a workpiece. This process is controlled by a computer program, which tells the machine exactly how to cut. CNC stands, meaning the machine follows specific instructions. Milling machines shape materials like metals, plastics, and composites into precise parts.
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