What Are Edge Welded Bellows?
Edge welded bellows are precision metal diaphragms manufactured by welding
thin metallic discs alternately at their inner and outer diameters to form a
flexible, leak-tight convolution structure. Unlike hydroformed bellows, edge
welded bellows deliver superior stroke length, higher cycle life, and
tighter spring rate control — making them the preferred choice for
demanding high-vacuum (HV) and ultra-high-vacuum (UHV) applications.
At Alpha Technology, we produce custom edge welded bellows in materials
including SS316L, AM350, and Inconel, with OD ranges from 6mm to 200mm+,
serving semiconductor, aerospace, medical, and scientific research industries
worldwide.
Technical Resources
📐 Specification CatalogComplete AT-Series model database with OD/ID dimensions, wall thickness, |
🔬 Material SelectionDetailed comparison of SS316L, AM350, and Inconel: corrosion resistance, |
⚙️ Design & Selection GuideHow to calculate spring rate, determine stroke length, select convolution |
🏭 Manufacturing ProcessFrom diaphragm stamping to precision micro-plasma welding and helium leak |
| Parameter | Edge Welded | Hydroformed |
|---|---|---|
| Stroke Capability | ✅ Up to 60% of free length |
~15-20% of free length |
| Cycle Life | ✅ 1M+ cycles typical |
50K-100K cycles typical |
| Spring Rate Precision | ✅ ±5% | ±15-20% |
| Wall Thickness | 0.05mm – 0.5mm | 0.08mm – 0.3mm |
| Vacuum Compatibility | ✅ UHV (10⁻¹⁰ Torr) |
HV (10⁻⁶ Torr) |
| Cost Efficiency | Higher for low volumes | Better for high volumes |
Edge Welded vs. Formed Bellows
| Parameter | Edge Welded | Hydroformed |
|---|---|---|
| Stroke Capability | ✅ Up to 60% of free length |
~15-20% of free length |
| Cycle Life | ✅ 1M+ cycles typical |
50K-100K cycles typical |
| Spring Rate Precision | ✅ ±5% | ±15-20% |
| Wall Thickness | 0.05mm – 0.5mm | 0.08mm – 0.3mm |
| Vacuum Compatibility | ✅ UHV (10⁻¹⁰ Torr) |
HV (10⁻⁶ Torr) |
| Cost Efficiency | Higher for low volumes | Better for high volumes |
Applications by Industry
- Semiconductor
Manufacturing — Wafer handling, lithography stages, ALD/CVD
chambers - Aerospace & Defense —
Satellite propulsion, cryogenic seals, missile guidance - Medical Technology —
CT scanner rotation, surgical robotics, implantable devices - Scientific Research —
Synchrotron beamlines, particle accelerators, UHV chambers - Industrial
Automation — Vibration isolation, motion feedthroughs, thermal
expansion joints - Energy & Power — Nuclear
seals, hydrogen fuel cells, solar panel manufacturing