Customization:
With corrosion-resistant stainless steel material, ensure durability in harsh environments, outperforming carbon steel alternatives*.
With a wave-shaped design, distribute loads evenly and prevent stress concentration, reducing failure risk compared to flat washers*.
With load capacities up to 85lb, handle heavy-duty applications more effectively than standard compression springs*.
Designed for industrial and automotive applications, providing reliable performance in high-stress environments where corrosion resistance is critical*.
Manufactured using materials that meet industrial safety standards (e.g., corrosion-resistant stainless steel), ensuring compliance in regulated industries*.
Our custom flat multi-wave springs are engineered for precision load distribution and corrosion resistance, designed to handle compression forces in demanding applications. Available in stainless steel, steel, alloy, plastic, and carbon steel, these springs are tailored for industrial, automotive, and mechanical systems requiring reliable performance under stress.
Feature | Specification | Application Scenario |
---|---|---|
Material | Stainless steel, steel, alloy, plastic | Harsh environments (chemical exposure, high temperatures) |
Load Capacity | 20lb, 40lb, 50lb, 85lb | Heavy machinery, automotive assemblies |
Design | Corrugated wave pattern | Reducing stress concentration in bolted joints |
Corrosion Resistance | Stainless steel variants | Marine, food processing, or chemical industries |
Type | Compression | Shock absorption or spring-loaded mechanisms |
Adjustable parameters include material composition (e.g., stainless steel for corrosion resistance) and wave pattern geometry to meet specific load requirements. Custom sizes and thicknesses ensure compatibility with unique bolt/nut configurations.
With our multi-wave springs, you can optimize mechanical systems for longevity and reliability. Their wave design ensures even force distribution, preventing component wear in high-stress applications.
Parameter | Base Model (Carbon Steel) | Advanced Model (Alloy Steel) | Pro Model (Stainless Steel) |
---|---|---|---|
Load Capacity | 20lb-40lb | +50% (up to 60lb)* | +100% (up to 85lb)* |
Corrosion Resistance | Basic (indoor use) | Enhanced (moisture-resistant) | Triple industry standard |
Temperature Range | -20°C to 150°C | -30°C to 200°C | -40°C to 300°C |
Three Technical Breakthroughs:
Optimal Version Selection:
Example Benefit: With the Pro model’s 85lb capacity, you can safely support heavy-duty equipment while its stainless steel ensures durability in acidic environments. Pair it with high-tensile bolts to maximize system longevity.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Compression Wave Springs (Our Advanced) | Heavy machinery, industrial equipment | Load Capacity: 85 lb (ASTM F316) ▲▲ (Industry Standard: 50 lb) Material: Stainless Steel (ISO 3506) Wave Design for even load distribution | ▲▲ High load capacity, corrosion resistance, longevity | Higher cost, limited to specific applications |
Belleville Washers | Automotive, machinery | Load Capacity: 50 lb (ASTM F606) Material: Steel (ASTM A36) | Cost-effective, adjustable load | Lower load capacity, less corrosion resistance |
Standard Compression Springs | General mechanical devices | Load Capacity: 40 lb (ASTM A228) Material: Carbon Steel (ASTM A313) | Versatile, low cost | Lower load capacity, less durable in harsh environments |
Helical Compression Springs | Automotive suspension, instrumentation | Load Capacity: 30 lb (ISO 2104) Material: Stainless Steel (ISO 3506) | High flexibility, precise load handling | Complex design, higher cost |
Plastic Compression Springs (Our Base) | Electronics, low-load applications | Load Capacity: 20 lb (ASTM D638) ▼ (Industry Standard: 25 lb) Material: Plastic (UL 94 V-0) | Lightweight, insulating | Lower load capacity, temperature limitations |
High-Temperature Compression Springs | Aerospace, high-heat environments | Load Capacity: 70 lb (MIL-S-25333) Material: Inconel Alloy (ASTM B440) | Withstands extreme heat | Very high cost, limited availability |
⭐⭐⭐⭐⭐ James Carter - Industrial Maintenance Technician
"I’ve been using the Pro Model stainless steel wave washers in our hydraulic presses for over six months now, and they’ve completely eliminated joint loosening due to vibration. The 85lb load capacity is no exaggeration—these handle peak stresses without deformation. We replaced carbon steel washers that corroded within months; these show zero wear even in our high-moisture plant environment."Purchase Date: May 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Derek Lin - DIY Auto Builder
"Installed the Advanced Alloy Steel wave washers in my custom suspension setup. The modular wave design really does compensate for thermal expansion—I’ve put this car through desert heat and mountain cold, and torque specs stayed consistent. Custom sizing was a game-changer for non-standard bolts. Worth every penny for performance builds."Purchase Date: February 2025 | Usage Period: 5 months
⭐⭐⭐⭐☆ Maria Gonzalez - Process Engineer, Chemical Plant
"We integrated the FDA-compliant 316L stainless steel wave springs into our reactor assembly flanges. Corrosion resistance is outstanding—even with daily exposure to acidic vapors. Load distribution is smooth, and we’ve seen fewer maintenance callbacks. Only reason I didn’t give five stars: lead time for custom orders could be faster."Purchase Date: November 2024 | Usage Period: 7 months
⭐⭐⭐⭐⭐ Tom Reynolds - Robotics Workshop Owner
"Used the plastic POM wave washers in precision robotic joints where metal would cause interference. They’re lightweight, chemically inert, and surprisingly strong for 20–30lb dynamic loads. No rust, no conductivity issues. Perfect for our food-safe automation prototypes. Will definitely re-order."Purchase Date: August 2024 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Captain Elena Perez - Marine Equipment Installer
"Saltwater eats cheap hardware, but these marine-grade stainless wave washers are holding up perfectly on deck fittings after nearly a year. Used them on winches and rail mounts—zero corrosion, no loosening from constant vibration. The wave spring effect is subtle but critical for longevity in rough seas."Purchase Date: April 2024 | Usage Period: 11 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Alan Foster - Senior Mechanical Engineer, ASME Fellow
"In high-cycle dynamic systems, wave washers outperform flat and Belleville types in maintaining preload. This product line’s optimized corrugation geometry and material selection—especially the 316 stainless variant—represent best-in-class for industrial reliability. Ideal for applications where joint failure is not an option."
Lena Park - Lead Engineer, EV Powertrain Division
"We tested several spring washers for battery pack fastening under thermal cycling. The alloy wave springs with 60lb capacity showed the most consistent load retention. Their ability to absorb micro-movement without fatigue makes them a strong candidate for next-gen EV assembly standards."
Posted: 2 days ago
"Using the Pro Model on excavator pivot joints. After 6 months in abrasive, wet conditions, no corrosion and zero bolt slack. These are now standard across our fleet."
Posted: 1 week ago
"Custom wave springs for avionics mounting—lightweight, non-magnetic, and stable under vibration. Supplied full material certification. Perfect for regulated environments."
Posted: 3 weeks ago
"Ordered a batch with non-standard inner diameter. Fit perfectly. Only suggestion: include more technical drawings in the catalog for DIY users."
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