Tube & Pipe Fabrication
Precision tube bending for round, square and formed tubing — rotary draw, mandrel, roll and compression bending from prototype through volume production.
Direct answer: Tube bending services at Balford deliver repeatable bends with controlled geometry for round, square and formed tubing. We select rotary draw, mandrel, roll or compression bending to control flattening, wrinkling, springback and surface marking, and support bent tubes and tubular assemblies for automotive, HVAC, refrigeration, industrial and equipment projects.
Controlled die set for accurate, repeatable bends and multi-bend tube designs.
Internal support preserves the cross-section for tighter radii and thin-wall tubing.
Progressive forming for larger, smooth radii in frames, guards and rails.
Practical method for straightforward bends and generous radii.
Radius vs wall thickness sets flattening risk; specify maximum ovality where the cross-section must stay open.
Multi-bend programs compensate springback and plane-of-bend so the part matches the 3D model.
Tight radii and thin walls need internal support; tooling is planned with the method.
Cut length, end form and assembly interfaces reviewed so the tube fits the system.
Corrosion-resistant tubing for process and equipment lines. See stainless steel.
Structural and hydraulic tubing. See carbon steel.
Lightweight lines and frames. See aluminum.
Tubing for vehicle and industrial applications. See automotive machining.
Line sets and connections. See HVAC components.
Structural bent tube products.
Precision bent tubes in finished assemblies.
Tube and pipe forming projects from production history.
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Send tube material, OD, wall thickness, bend radius, angles and target volume. Read the CNC tube bending design guide and the bend allowance guide, then request a quote.
Rotary draw bending for accurate, repeatable close-tolerance bends; mandrel bending when internal support is needed for tighter radii or thin-wall tubing; roll bending for large, smooth radii; and compression bending for straightforward bends with generous radii.
Stainless steel, carbon steel, aluminum tubing, copper and brass, plus selected alloys. Material grade, OD, wall thickness and bend radius are reviewed before quoting.
Tooling and method selection control cross-section ovality: mandrels and wiper tooling support the inside of the bend, and bend speed and lubrication are managed. Requirements such as maximum ovality or minimum wall thinning should be on the drawing.
Yes. Tube bending can be combined with cutting, end forming, welding coordination, surface treatment and simple assembly so you receive a finished tubular part or assembly.
Yes. Multi-bend tube programs are validated for springback, plane-of-bend and length compensation so the finished tube matches the 3D model. Send the centerline model or bend data table with your RFQ.
Tube material, OD, wall thickness, bend radius, bend angles, plane-of-bend information, target volume and any ovality or surface requirements. The centerline 3D model is the clearest input.
Secure Project Review
NDA before detailed file exchange. Drawing-based DFM review. Prototype-to-production route. Check the RFQ checklist before sending files.