Copper Heat Pipe Bending Machine

Product Description

A copper heat pipe bending machine is automated CNC equipment that forms sealed, fluid-charged heat pipes into the curved or angled geometries required for final product integration — without damaging the internal wick structure, breaking the hermetic seal, or causing working-fluid leakage. thermalmachinery’s mandrel-assisted heat pipe bending machine supports round pipes from Ø5 to Ø12 mm and flat vapor chambers, delivers bend angles of 90°, 120°, 135° and 180° at ±0.5 mm radius accuracy, and runs 150–400 pieces per hour in fully automated production-line operation.

Why Choose Our Heat Pipe Bending Machine

1.Precision Bending Without Kinking or Internal Collapse

Sealed copper heat pipes cannot tolerate sharp bends or internal collapse. Our machine uses servo-controlled mandrel-assisted bending to form smooth curves while maintaining internal pressure integrity. Bending radius reaches ±0.5mm precision, and internal wick structure remains undamaged throughout the forming process. Pipes exit with consistent wall thickness and no micro-cracks at the bend.

2.Maintains Sealed Integrity During Post-Production Forming

Heat pipes arrive at the bending station already sealed and filled with working fluid. Unlike traditional bending that risks seam rupture or fluid leakage, our machine applies controlled force distributed across a mandrel support region — preventing localized stress concentration at the bend point. Post-bend, helium leak testing confirms zero hermeticity loss.

3.Multiple Bending Angles & Radius Configurations

The machine supports 90°, 120°, 135°, and 180° bends with programmable bending radius (R5–R50 depending on pipe diameter). Servo motor positioning ensures repeatable accuracy across production runs. Changing bend angles or radius requires only software adjustment — no tooling change needed. Supports round pipes (Ø4–Ø12mm) and flat vapor chambers.

4.High-Speed Automated Bending for Mass Production

The machine bends, ejects, and positions the next pipe automatically — throughput reaches 150–300 pipes per hour depending on bend complexity. Integrated with upstream degassing and downstream testing, the bending station fits seamlessly into high-volume production lines without creating bottlenecks.

5.Vision-Guided Quality Control on Every Pipe

A high-resolution CCD vision system inspects every pipe before, during and after bending. Pre-bend, it detects pipe edge and opening direction at ±0.1 mm accuracy to ensure correct orientation. During bending, servo feedback continuously adjusts position to maintain the programmed radius and angle. Post-bend, the system verifies radius and angle against specification (±0.5 mm / ±1°). Any out-of-spec pipe triggers an alarm and is automatically diverted to a reject bin — no defective parts pass to the next station.

Technical Specifications

SpecificationDetails
VoltageAC 220V / 380V (configurable)
Motor Power2.5 – 3.5 kW
Pipe DiameterØ5 – Ø12 mm (round tubes and flat vapor chambers)
Pipe Length150 – 600 mm (servo adjustable)
Wall Thickness0.1 – 1.0 mm
Bending Angles90° / 120° / 135° / 180° (fully programmable via PLC)
Bending RadiusR12 – R55 mm (depends on pipe diameter & wall thickness)
Bending Precision±0.5 mm radius, ±1° angle (verified by vision system)
Yield Rate99% (excellent curvature consistency)
Cycle Time20 – 60 sec per pipe (angle and radius dependent)
Production Capacity150 – 300 pcs/hr standard, up to 400 pcs/hr (90° simple bends)
Mandrel TypesInterchangeable, supports 6 different radii simultaneously
Vision SystemCCD photoelectric alignment ±0.1 mm + opening-direction detection
Pipe LoadingFunnel-fed automatic loading and discharge
Operating ModeFully automatic, PLC with 90+ preset bend programs
Servo ControlServo rotating shaft + servo positioning, supports 2D and 3D bends
Programmable ProfilesStores up to 90 sets of bend data (coordinate format, user-friendly UI)
Optional FeaturesPressure test post-bend (verifies hermeticity), edge-selection automation
Machine Dimensions1,900 × 1,100 × 1,600 mm
Weight550 kg

Where the Heat Pipe Bending Machine Fits in Your Production Line

The heat pipe bending machine is one of the final forming steps — it comes after sealing and working fluid injection, and before final thermal performance testing. At this stage, the heat pipe is a completed sealed thermal device, and bending shapes it for final product integration (curved cooling modules, fitted thermal paths, etc.).

In a typical heat pipe production line, the process flow looks like this:

Tube Cutting → Powder Filling → Tube Shrinking → Degassing & Fluid Injection → Sealing & Welding → Heat Pipe Bending → Flattening (if needed) → Thermal Performance Testing → Final Packaging

The bending machine sits at Step 7, after the heat pipe is fully sealed and functional. Its forming quality determines whether the heat pipe maintains performance in its final curved shape. We supply equipment for every step — the bending machine can be ordered standalone or integrated with our complete heat pipe production system.

How the Automatic Heat Pipe Bending Machine Works

Pipe Positioning

The sealed heat pipe is loaded into the work station with the bending region pre-positioned. A high-resolution CCD vision system (camera) scans the pipe’s geometry to confirm:

✓ Pipe diameter matches the selected tool configuration

✓ Pipe is centered in the work zone (±0.2mm tolerance)

✓ Sealing seam location is clear of the bending region

✓ Pipe surface is free of major defects or dents

Assisted Bending Engagement

A curved mandrel support (shaped to match the target bend radius: R5–R50mm depending on pipe size) moves into position against the pipe outer diameter. Simultaneously, the bending die rotates around the pipe, wrapping the pipe against the mandrel surface. This dual-action (mandrel support + rotating die) is the critical innovation:

• Mandrel prevents internal collapse by providing distributed support along the bend arc

• Rotating die applies controlled bending force without sharp stress concentration

• The pipe deforms uniformly across the bend region, creating smooth curvature

• Internal wick structure remains intact; working fluid redistributes gradually around the curve

Real-Time Bend Quality Monitoring

During bending, multiple sensors monitor the forming process in real-time:

✓ Pressure sensor on the mandrel ensures consistent contact force throughout the bend

✓ Rotation angle encoder confirms the die completes the exact programmed angle (±1°)

✓ Torque sensor on the bending die detects if resistance increases unexpectedly (indicating internal collapse risk)

✓ Temperature sensor on the pipe surface monitors if localized heating occurs (friction risk)

If any parameter goes out of range during bending, the machine immediately stops, reverses slightly to relieve stress, then alerts the operator. This prevents damage to the heat pipe and maintains 100% first-pass quality.

Cooling & Dimensional Verification

After the bending action completes, the pipe remains positioned against the mandrel for 10–20 seconds of cooling time. This allows the copper to harden in the bent shape and stabilize the material structure. During cooling, the machine does not release pressure — the mandrel continues to provide support.

Once cooling is complete, the high-resolution CCD vision system takes a post-bend image and performs geometric verification:

✓ Radius of curvature measurement (compared against ±0.5mm tolerance)

✓ Bend angle verification (compared against ±1° tolerance)

✓ Surface finish inspection (no kinking, wrinkles, or cracks visible)

✓ Pipe roundness check (confirms no flattening or oval deformation)

FAQ

Why does a sealed heat pipe need special bending equipment?

Sealed copper heat pipes contain internal pressure with working fluid inside. Standard pipe-bending machines create sharp stress concentrations that rupture the seal or damage the internal wick structure. Our mandrel-assisted bending distributes force uniformly across the bend radius, preventing internal collapse and maintaining pressure integrity. Every sealed pipe is verified post-bend for hermeticity before shipment.

Standard angles are 90°, 120°, 135° and 180°. All angles are fully programmable via PLC software in coordinate format. The machine can create both 2D bends (in a single plane) and 3D bends (multiple planes in sequence). Up to 90 different bend configurations can be stored, and the operator can switch between them instantly via software selection — no manual setup required.

The mandrel is a curved support surface inserted inside the pipe that prevents internal collapse during bending. As the bending die rotates around the pipe, the pipe wraps against the mandrel support rather than collapsing inward. The mandrel distributes bending force uniformly, eliminating stress concentrations and kinks. The result: smooth, consistent curves with zero internal damage and 100% hermetic-seal preservation.

A high-resolution CCD vision system monitors the bend in real time. Before bending, the system detects the pipe edge and opening direction at ±0.1 mm accuracy. During bending, servo feedback continuously adjusts position to maintain the programmed radius and angle. Post-bend, radius and angle are verified against specification (±0.5 mm radius, ±1° angle). Out-of-spec bends trigger an alarm and are diverted to reject.

Yes. Mandrels are interchangeable, and the machine accommodates 6 different bend radii simultaneously. Changing between radii requires only a fixture swap (no re-programming); changing bend angles requires only software adjustment. This flexibility is ideal for contract manufacturers serving multiple customers with different specifications.

Yes. The machine has standard PLC interfaces (Profinet / Modbus TCP optional) and integrates upstream with sealing and welding stations and downstream with thermal testing and packaging. thermalmachinery also offers turnkey heat pipe production lines designed around your specific products and target capacity. Contact our engineers for a free line-integration assessment.