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  • Tungsten Target X Ray Tungsten Collimator
  • Tungsten Target X Ray Tungsten Collimator
  • Tungsten Target X Ray Tungsten Collimator
  • Tungsten Target X Ray Tungsten Collimator
  • Tungsten Target X Ray Tungsten Collimator
  • Tungsten Target X Ray Tungsten Collimator
Tungsten Target X Ray Tungsten Collimator

Tungsten Target X Ray Tungsten Collimator

$50.00-$85.00/ Kilogram|1 Kilogram/Kilograms(Min. Order)

Customization:

Customized logo(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)
Size(Min.Order: 1 pieces)

Tungsten Target X Ray Tungsten Collimator

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Medical Imaging Precision: Designed as a tungsten collimator and target for X-ray systems, enabling precise beam shaping and focusing to enhance image clarity in diagnostic applications.
  • High-Temperature Performance: Utilizes tungsten and molybdenum alloys to withstand extreme heat generated in X-ray tubes, ensuring stable operation under continuous use.

Key features

  • 1. Advanced Material Technology

  • With a tungsten-nickel-iron (WNiFe) alloy composition, achieve superior durability and corrosion resistance compared to traditional lead collimators*, ensuring long-term reliability in medical imaging equipment.

  • 2. Precision-Engineered Design

  • With precision-machined cylindrical rods featuring a central bore, ensure seamless integration into X-ray systems for optimal beam alignment, reducing setup time by up to 20%*.

  • 3. High Thermal Performance

  • With exceptional thermal conductivity and a high melting point, maintain structural integrity during prolonged use, enabling continuous operation at temperatures 30% higher than conventional materials*.

  • 4. Medical-Grade Precision Solutions

  • Designed for medical imaging applications, these collimators deliver sharp beam definition, reducing patient exposure time by 15% while improving diagnostic accuracy*.

  • 5. Compliance with Medical Standards

  • Complies with ISO 13485 medical device standards, ensuring safety and reliability in clinical environments. Certification details are subject to manufacturer confirmation.

Product details

Tungsten Target X Ray Tungsten Collimator

The Tungsten Target X Ray Tungsten Collimator is a precision-engineered component designed for medical imaging systems. Crafted from advanced tungsten alloys (including tungsten-nickel-iron and magnesium-tungsten composites), it combines high thermal conductivity, corrosion resistance, and structural integrity to ensure optimal performance in X-ray applications.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialTungsten alloy (W-Ni-Fe, Mg-W)Radiation shielding in medical collimators
Thermal Conductivity174 W/m·K (tungsten)Efficient heat dissipation in X-ray tubes
Mechanical StrengthYield strength ≥ 500 MPaWithstanding mechanical stress in imaging equipment
Chemical Composition90%+ tungsten, trace Mg/SilverEnhanced radiation absorption in collimators
Size/ShapeCustomizable cylindrical rods (⌀5-50mm, L10-500mm)Precision-fit collimator assemblies

Customization guide

Adjustable parameters:

  • Diameter/Length: Tailor to collimator beam-shaping requirements.
  • Surface Finish: Smooth polished or grooved surfaces for specific radiation path control.
  • Alloy Composition: Optimize tungsten/magnesium ratios for weight vs. density needs.

Get inspired

Enhance your medical imaging systems with collimators engineered for precision. Whether you need lightweight components for portable devices or high-density parts for high-dose environments, our tungsten alloys deliver unmatched reliability and durability.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Thermal Conductivity150 W/m·K174 W/m·K190 W/m·K*
Yield Strength450 MPa500 MPa550 MPa
Corrosion ResistanceASTM B117 200hrASTM B117 500hrASTM B117 1000hr
Density16.7 g/cm³17.2 g/cm³17.8 g/cm³

Supplier's note

  1. Technical Breakthroughs:

    • Alloy Composition: The tungsten-nickel-iron alloy reduces brittleness while maintaining radiation shielding (vs. pure tungsten).
    • Precision Machining: ±0.01mm tolerance ensures seamless integration into collimator arrays.
    • Thermal Efficiency: 20% higher conductivity than traditional molybdenum collimators, enabling faster heat dissipation.
  2. Version Selection Guide:

    • Base Model: Ideal for standard X-ray systems requiring cost-effective solutions.
    • Advanced Model: Suitable for high-throughput medical facilities needing enhanced durability and thermal performance.
    • Pro Model: Best for corrosive environments (e.g., sterilized imaging rooms) or high-dose radiation applications. With its triple-certified corrosion resistance, the Pro Model ensures longevity even in harsh conditions.

*Pro Model’s conductivity exceeds industry benchmarks by 12%, enabling faster heat dissipation in high-frequency imaging workflows.

Frequently asked questions

  • Which tungsten collimator model is best suited for medical X-ray applications?

  • How does tungsten compare to silver in X-ray collimators for medical use?

  • Can the tungsten collimator be customized for specific medical equipment dimensions?

  • What maintenance steps are required for tungsten X-ray collimators?

  • Is the tungsten alloy in this collimator FDA-approved for medical use?

  • Why is tungsten preferred over magnesium in high-temperature medical applications?

  • How does the tungsten collimator handle mechanical stress in imaging devices?

  • What advantages does the tungsten-rod design offer for radiation shielding?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Thermal ConductivityX-ray tube cooling systemsIndustry: 80 W/m·K (steel) ▲ Base: 120 W/m·K (WNIFE alloy) ▲ Advanced: 170 W/m·K (tungsten)▲ Reduces overheating in medical imaging devices (superior to copper's 386 W/m·K)Advanced versions may require reinforced mounts due to weight.
Corrosion ResistanceSterilization chambersIndustry: 50h (ASTM G85 salt spray) ▲ Base: 200h ▲ Advanced: 500h (ASTM G85)▲ Withstands repeated exposure to disinfectants and bodily fluids.Advanced coatings increase production complexity and cost.
Mechanical StrengthHigh-vibration MRI/X-ray equipmentIndustry: 400 MPa ▲ Base: 500 MPa ▲ Advanced: 600 MPa (yield strength)▲ Prevents deformation in high-stress medical machinery.Heavier components may require recalibration of equipment.
DensityRadiation shielding in CT scannersIndustry: 10 g/cm³ (aluminum) ▲ Base: 14 g/cm³ ▲ Advanced: 19 g/cm³ (tungsten)▲ Superior X-ray absorption (reduces patient exposure)Advanced materials are bulkier, limiting portability.
Precision ToleranceBeam collimation alignmentIndustry: ±0.2mm ▲ Base: ±0.05mm ▲ Advanced: ±0.01mm (ISO 2768)▲ Ensures pinpoint accuracy in diagnostic imaging (critical for tumor detection)Advanced machining requires specialized tooling.
Radiation ShieldingX-ray room shieldingIndustry: 100 HU ▲ Base: 150 HU ▲ Advanced: 200 HU (Hounsfield Units)▲ Meets IEC 61331 standards for scatter radiation reductionHigher shielding thickness may obstruct small-space installations.

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