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Buy Surface Rotating Key Strip Type High Temperature Resistant Precision air Shaft Compact Pneumatic Shaft air Expanding Shaft

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Resistance: Engineered to withstand extreme thermal conditions, ensuring stable performance in demanding environments.
  • Precision Motion Control: Eccentric structural design enables precise rotational alignment and efficient power transmission in mechanical systems.
  • Compact Pneumatic Design: Space-saving yet robust construction for seamless integration into automated machinery and equipment.

Key features

  • 1. Material Technology

  • With nickel-coated steel construction, ensure durability in high-temperature environments compared to uncoated models*.

  • 2. Interactive Design

  • With an eccentric structure, achieve precise alignment and easy installation without complex tools*.

  • 3. Performance Parameters

  • Precision-engineered components maintain accuracy under high-stress applications, outperforming standard shafts in motion control*.

  • 4. Scenario Solutions

  • Designed for continuous operation in industrial machinery, ensuring reliability in demanding manufacturing processes*.

  • 5. Compact Design

  • With a compact profile, save space in tight machinery setups compared to bulkier alternatives*.

Product details

Buy Surface Rotating Key Strip Type High Temperature Resistant Precision air Shaft Compact Pneumatic Shaft air Expanding Shaft

The Surface Rotating Key Strip Type High Temperature Resistant Precision Air Shaft is engineered for industrial applications requiring durability, precision, and adaptability. Designed with an eccentric structure and nickel-coated steel, it offers exceptional thermal stability and corrosion resistance, making it ideal for machinery, robotics, and automation systems.

Technical specifications

FeatureSpecificationBenefit
MaterialSteel with nickel coatingEnhanced corrosion resistance and longevity
StructureEccentric designAccommodates misalignment in power transmission
Temperature RangeUp to 300°C (572°F)Withstands high-heat environments
Key Strip TypeIntegrated keyway slotsSecure mechanical coupling without welding
Precision Tolerance±0.01mmEnsures smooth, precise motion in automation

Customization guide

Adjustable parameters include:

  • Eccentricity Offset: Tailored to specific alignment requirements (e.g., ±0.5mm to ±2mm).
  • Coating Thickness: Customized for extreme corrosion or wear scenarios.
  • Keyway Dimensions: Modified to fit non-standard mechanical interfaces.

Get inspired

With its eccentric design and high-temperature resistance, this shaft enables seamless integration into machinery prone to thermal expansion or misalignment. The nickel coating ensures longevity in corrosive environments, while the compact pneumatic design reduces spatial constraints in tight mechanical setups.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Temperature RangeUp to 250°CUp to 300°CUp to 350°C*
Load Capacity500 N800 N (+60%)1,200 N (+140%)
Precision Tolerance±0.02mm±0.01mm±0.005mm
CustomizationStandard coatingsAdjustable eccentricityFull material/size customization

Supplier's note

  1. Three Technical Breakthroughs:

    • High-Temperature Coating: Nickel coating extends operational limits by 20% compared to uncoated steel.
    • Eccentric Structure: Reduces misalignment-induced wear by 40% in belt-drive systems.
    • Compact Pneumatic Design: Achieves 30% faster assembly than traditional rigid shafts.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard industrial applications (e.g., conveyor systems) where temperatures ≤250°C and moderate loads are standard.
    • Advanced Model: Suited for robotics and automation requiring precision (±0.01mm) and higher thermal resistance (up to 300°C).
    • Pro Model: Designed for extreme environments (e.g., foundries, aerospace) with triple the industry-standard corrosion resistance and ultra-precision tolerances.

*Pro Model’s 350°C rating exceeds industry benchmarks by 20%, enabling safe use in high-temperature furnaces.

Frequently asked questions

  • Which high-temperature resistant precision air shaft suits industrial machinery with extreme heat exposure?

  • How do I maintain the nickel-coated surface of a pneumatic shaft to prevent corrosion?

  • Steel vs Aluminum: Which material is better for heavy-duty pneumatic shafts?

  • Can I customize the mounting holes or end caps of an expanding shaft for my machinery?

  • Is the nickel-coated steel air shaft FDA-approved for food processing equipment?

  • What makes the compact pneumatic shaft suitable for space-constrained machinery?

  • How does the eccentric structure improve the durability of high-temperature shafts?

  • Are there installation guidelines for expanding shafts in rotating machinery systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHeavy machinery, industrial equipmentIndustry Standard: Carbon Steel (ASTM A36)
Our Base: High-Carbon Steel (ASTM A304) ▲
Our Advanced: Stainless Steel 316 (ASTM A240) ▲▲
Base: Enhanced strength (50% higher tensile than standard)
Advanced: Corrosion resistance (ISO 9001 certified)
Base: 20% costlier than standard
Advanced: 40% premium for corrosion resistance
Coating TypeCorrosive environmentsIndustry Standard: Zinc (ASTM B6)
Our Base: Nickel (ASTM B488) ▲
Our Advanced: Dual (Nickel + PTFE) (ASTM B733) ▲▲
Base: 3x longer lifespan in acidic conditions
Advanced: Slip resistance (friction reduced by 50%)
Base: 30% higher cost
Advanced: Complex application process (requires specialized tools)
Structural DesignPrecision machineryIndustry Standard: Concentric
Our Base: Eccentric (ISO 10243) ▲
Our Advanced: Optimized Eccentric (Custom tolerances) ▲▲
Base: Off-center load handling (up to 15° offset)
Advanced: ±0.01mm precision alignment
Base: Limited to static systems
Advanced: Requires custom engineering (2-week lead time)
Temperature ResistanceHigh-heat processesIndustry Standard: Up to 200°C
Our Base: 300°C (ISO 13715) ▲
Our Advanced: 400°C ▲▲
Base: Safe for furnace applications (e.g., steel forging)
Advanced: Withstands molten metal exposure
Base: 10% weight increase
Advanced: Brittle at extreme temps (risk of cracking)
Mounting OptionsModular systemsIndustry Standard: 2 standard holes
Our Base: 4 customizable ▲
Our Advanced: 8 customizable (ISO 1043) ▲▲
Base: Adapts to 3D-printed brackets
Advanced: Threaded/press-fit compatibility
Base: Assembly time +2 hours
Advanced: Requires CAD design expertise
CustomizationCustom machineryIndustry Standard: None
Our Base: Limited (length) ▲
Our Advanced: Full (shape, material) ▲▲
Base: Quick length adjustments (±50mm)
Advanced: Tailored to robotic arms (e.g., non-circular profiles)
Base: 10% price markup
Advanced: 6-week lead time for prototypes

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