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Tecnar Thermal Spray
  • Why spray sensors
  • Production
    • Accuraspray 4.0 – Thermal SprayThe Accuraspray 4.0 is an in-line thermal spray sensor that measures the spray plume temperature, velocity, dimension, orientation, intensity and stability. One sensor for all spray processes: APS, HVOF, Wire-Arc, Flame Spray, HVAF, SPS, VPS, LPPS, PTWA.
    • Accuraspray CS – Cold SprayThe Accuraspray CS is a production-friendly cold spray sensor that measures in-flight particle velocity and feed rate.
    • Shotmeter – Shot peeningThe Shotmeter is an in-line shot peening sensor that measures in-flight particle velocity. This is an easy-to-use sensor to monitor daily, equipment status, quality control, process development, and setup transfer.
  • Research
    • DPV evolutionThe DPV evolution is the industry’s standard for understanding the details of in-flight particle dynamics. It measures the velocity, temperature and size for individual particle.
  • Spraying intelligence
  • Testimonials
    • Northwest Mettech Corp. – Accuraspray 4.0Leader in developing thermal spray technology for use in the aerospace, paper, printing and energy markets.
    • Flame Spray Technologies BV – Accuraspray 4.0/PlumespectorWith over 25 years of experience, FST provides equipment, consumables and solutions for all major thermal spray processes.
    • Surface & Coatings Expert sarl – Accuraspray 4.0Having been in the thermal spray community for 7 years, they frequently use Tecnar’s sensors to provide technical services to their clients.
    • University of Nottingham – Accuraspray 4.0The University of Nottingham has led research in advanced material development and thermal sprayed coatings for 7 years.
Contact us
Contact us
  • Why spray sensors
  • Production
    • Accuraspray 4.0 – Thermal SprayThe Accuraspray 4.0 is an in-line thermal spray sensor that measures the spray plume temperature, velocity, dimension, orientation, intensity and stability. One sensor for all spray processes: APS, HVOF, Wire-Arc, Flame Spray, HVAF, SPS, VPS, LPPS, PTWA.
    • Accuraspray CS – Cold SprayThe Accuraspray CS is a production-friendly cold spray sensor that measures in-flight particle velocity and feed rate.
    • Shotmeter – Shot peeningThe Shotmeter is an in-line shot peening sensor that measures in-flight particle velocity. This is an easy-to-use sensor to monitor daily, equipment status, quality control, process development, and setup transfer.
  • Research
    • DPV evolutionThe DPV evolution is the industry’s standard for understanding the details of in-flight particle dynamics. It measures the velocity, temperature and size for individual particle.
  • Spraying intelligence
  • Testimonials
    • Northwest Mettech Corp. – Accuraspray 4.0Leader in developing thermal spray technology for use in the aerospace, paper, printing and energy markets.
    • Flame Spray Technologies BV – Accuraspray 4.0/PlumespectorWith over 25 years of experience, FST provides equipment, consumables and solutions for all major thermal spray processes.
    • Surface & Coatings Expert sarl – Accuraspray 4.0Having been in the thermal spray community for 7 years, they frequently use Tecnar’s sensors to provide technical services to their clients.
    • University of Nottingham – Accuraspray 4.0The University of Nottingham has led research in advanced material development and thermal sprayed coatings for 7 years.
  • Product registration
  • Resources
    • Accuraspray 4.0
    • Accuraspray CS
    • DPV Evolution
    • Plumespector
    • Coldspray Meter
    • Shotmeter
    • Reseach Discount
  • Videos
  • Library
  • EN
    • FR
    • 简体中文

About: Flavia

Posts by Flavia:

  • Active Learning-Driven Uncertainty Reduction For In-Flight Particle Characteristics of Atmospheric Plasma Spraying of Silicon Posted on February 13, 2024 (February 13, 2024) in Accuraspray
  • Processing–Microstructure–Properties of Columns in Thermal Barrier Coatings: A Study of Thermo-Chemico-Mechanical Durability Posted on February 13, 2024 (February 22, 2024) in Accuraspray
  • Numerical and Experimental Analysis of a Solid Shroud in Multi-arc Plasma Spraying Posted on February 12, 2024 (February 22, 2024) in DPV
  • Influence of Particle Velocity and Size on the Quality of Cold Sprayed Copper Coatings Posted on February 10, 2024 (September 26, 2024) in Cold Spray Meter
  • Using Optical Emission Spectroscopy In Atmospheric Conditions To Track The Inflight Reduction Of Plasma Sprayed Tio2−X Feedstock For Thermoelectric Applications Posted on January 4, 2024 (April 17, 2024) in DPV
  • Effect Of H2 Addition On The Preparation Of Zro2 Powder From Zircon (Zrsio4) Using A Plasma Torch Posted on January 1, 2024 (November 11, 2024) in DPV
  • Modeling the Formation of Thermal Spray Coatings on Substrates with Arbitrary Shapes Posted on December 10, 2023 (July 10, 2024) in DPV
  • The Potential of High-Velocity Air-Fuel Spraying (HVAF) to Manufacture Bond Coats for Thermal Barrier Coating Systems Posted on September 27, 2023 (February 22, 2024) in Cold Spray Meter
  • Analysis of the Relationship between APS Thermal Spray Parameters of Ni5Al Particles and Coating Characteristics Posted on September 7, 2023 (July 3, 2024) in Accuraspray

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Recent Posts

  • Advancing Shot Peening Quality Control With The Shotmeter: A Modern Approach To Intensity Measurement
  • AccurasprayHub: Leveraging AI and Machine Learning to Define and Optimize Process Windows in Thermal Spray Operations
  • The Role of HVAF Nozzle Design and Process Parameters on In-Flight Particle Oxidation and Microstructure of NiCoCrAlY Coatings
  • Investigation Of The Corrosion Performance Of HVOF-Sprayed WC-Cocr Coatings Applied On Offshore Hydraulic Equipment
  • Repair of Single-Crystal CMSX-4 Using the High Velocity Air Fuel Process

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