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  • Titanium-niobium Superconductor Rod
  • Titanium-niobium Superconductor Rod
  • Titanium-niobium Superconductor Rod
  • Titanium-niobium Superconductor Rod
  • Titanium-niobium Superconductor Rod
Titanium-niobium Superconductor Rod

Titanium-niobium Superconductor Rod

  • 5 - 199 Kilograms
    $25
  • >= 200 Kilograms
    $21.50

Customization:

Customized packaging(Min.Order: 50 pieces)

Titanium-niobium Superconductor Rod

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Superconductivity: Engineered from titanium-niobium alloy, these rods enable efficient energy transmission and magnetic field generation in cryogenic applications.
  • Precision Manufacturing: Forged and polished to ASTM B348 standards, ensuring structural integrity and a smooth surface finish for reduced friction and enhanced conductivity.

Key features

  • 1. Advanced Material Technology

  • With a titanium-niobium superconducting alloy, achieve zero electrical resistance at low temperatures, enabling energy-efficient performance in cryogenic applications*. This material combination ensures superior conductivity compared to conventional copper or aluminum conductors.

  • 2. Precision-Engineered Construction

  • Forged construction with a polished surface delivers 30% higher tensile strength than cast alternatives*, ensuring structural integrity under extreme loads while minimizing friction in high-precision machinery.

  • 3. Industrial-Grade Performance

  • With a high strength-to-weight ratio, withstand extreme mechanical and thermal stresses without deformation, outperforming stainless steel in lightweight, high-load scenarios*. Ideal for aerospace, MRI systems, and industrial machinery.

  • 4. Cryogenic Environment Adaptability

  • Designed for industrial applications, maintain structural stability at temperatures as low as -269°C, surpassing the limits of non-superconducting materials in supercooled environments like particle accelerators or medical imaging systems.

  • 5. ASTM B348 Compliance

  • Certified to ASTM B348 standards, ensuring material consistency, purity, and safety for critical applications requiring rigorous quality control, such as aerospace and medical equipment manufacturing.

  • Notes:

    • Comparisons: Highlighted advantages over traditional materials (e.g., copper, stainless steel) and manufacturing methods (e.g., casting).

Product details

Titanium-niobium Superconductor Rod

The Titanium-Niobium Superconductor Rod combines advanced material science with precision engineering to deliver high-performance solutions for industrial applications. Crafted from a titanium-niobium alloy, these rods exhibit exceptional thermal stability, corrosion resistance, and mechanical strength. Available in forged and polished configurations, they meet ASTM B348 standards for reliability in aerospace, medical, and energy sectors.

Technical specifications

FeatureSpecificationBenefit
MaterialTitanium-Niobium AlloySuperior thermal stability and durability
GradeASTM B348 CertifiedEnsures compliance with industrial norms
ProcessingForged & PolishedEnhances structural integrity and smoothness
Surface FinishMirror PolishedReduces friction and corrosion risks
ApplicationIndustrial (Aerospace, Medical)Tailored for precision machinery and high-stress environments

Customization guide

Adjustable parameters include length (10–2000mm), diameter (1–50mm), and surface finish (e.g., brushed or matte) to meet specialized requirements. For extreme thermal applications, specify higher niobium content ratios.

Get inspired

With the titanium-niobium alloy’s superconducting properties, you can design next-gen MRI components or energy-efficient power systems. The forged construction ensures seamless integration into high-vibration machinery.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Critical Temperature9.2 K+15% (10.6 K)*+30% (12 K)*
Mechanical Strength450 MPa520 MPa600 MPa
Purity99.5%99.8%99.99%

Supplier's note

  1. Three Breakthroughs:

    • Alloy Composition: The titanium-niobium blend achieves 20% higher thermal stability than pure titanium, enabling use in cryogenic systems.
    • Forged Process: Reduces micro-cracks by 30%, ensuring longevity in high-stress applications.
    • ASTM B348 Compliance: Guarantees dimensional accuracy (±0.01mm tolerance) for precision machinery.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard industrial uses (e.g., MRI coils) where cost-efficiency is prioritized.
    • Advanced Model: Suited for aerospace components requiring 15% higher thermal thresholds.
    • Pro Model: Best for cutting-edge research (e.g., quantum computing) needing ultra-pure materials and extreme performance.

With the Pro Model’s 12 K critical temperature, you can operate superconducting magnets in environments 30% colder than traditional models. Pair its high purity with low thermal expansion to eliminate distortion in sensitive instruments.

Frequently asked questions

  • Which titanium-niobium superconductor rod model is best for high-temperature industrial applications?

  • How does titanium-niobium alloy compare to stainless steel for superconductivity applications?

  • What’s the recommended cleaning process for maintaining polished titanium-niobium rods?

  • Can titanium-niobium rods be customized to ASTM B348 standards?

  • Is the titanium-niobium alloy compliant with ASTM B348 standards?

  • What industrial applications benefit most from forged titanium-niobium rods?

  • Why is the forged technique advantageous for titanium-niobium superconductor rods?

  • How does the polished surface enhance the performance of titanium-niobium rods in superconductors?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionIndustrial machinery, aerospace- Industry Standard: Commercial Pure Titanium (Grade 1)
- Our Base: Titanium Alloy (Grade 2)
- Our Advanced: Titanium-Niobium Superconductor (ASTM B348)
Base: 20% higher strength than Industry Standard.
▲▲ Advanced: Superconductivity at cryogenic temps (9 K).
▲▲ Advanced: 40% cost premium due to specialized alloying.
Processing TechniqueHigh-precision components- Industry Standard: Cold-rolled (ISO 9001)
- Our Base: Hot-forged (ASTM B348)
- Our Advanced: Precision forged + cryogenic treatment
Base: 30% better fatigue resistance.
▲▲ Advanced: Microstructural uniformity (grain size ≤5μm).
▲▲ Advanced: Longer lead times for cryogenic processing.
Surface FinishMedical devices, corrosion-prone environs- Industry Standard: Matte finish (ISO 8503)
- Our Base: Polished (Ra ≤1.6μm)
- Our Advanced: Mirror-polished (Ra ≤0.8μm)
Base: 50% reduced friction in joints.
▲▲ Advanced: Sterilization-ready (EPA-compliant).
▲▲ Advanced: Requires specialized post-processing tools.
Thermal ConductivityElectronics cooling systems- Industry Standard: 15 W/m·K
- Our Base: 22 W/m·K
- Our Advanced: 28 W/m·K (▲▲ +83% vs Industry)
▲▲ Advanced: Reduces thermal resistance by 15% (ideal for cryogenics).▲▲ Advanced: Requires insulation for non-superconducting applications.
Mechanical StrengthStructural support in heavy machinery- Industry Standard: 350 MPa yield strength
- Our Base: 450 MPa (▲ +29%)
- Our Advanced: 550 MPa (▲▲ ASTM E8 compliant)
▲▲ Advanced: Withstands 10,000+ cycles at 90% load (vs 5,000 for Base).▲▲ Advanced: Heavier than Industry Standard (density: 4.5 g/cm³).
CustomizationTailored industrial applications- Industry Standard: Limited to standard sizes
- Our Base: Custom lengths (±0.5mm tolerance)
- Our Advanced: Full customization (±0.1mm tolerance + shape adaptation)
▲▲ Advanced: Precision-fit for aerospace joints (NASA-STD compliance).▲▲ Advanced: 2x design iteration cost for complex geometries.

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