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Tecnar Thermal Spray
  • Why spray sensors
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    • 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.
  • Reseach
    • 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.
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  • Testimonials
    • Northwest Mettech Corp. – Accuraspray 4.0Leader in developing thermal spray technology for use in the aerospace, paper, printing and energy markets.
    • University of Nottingham – Accuraspray 4.0The University of Nottingham has led research in advanced material development and thermal sprayed coatings for 7 years.
    • 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.
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.
  • Reseach
    • 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.
    • University of Nottingham – Accuraspray 4.0The University of Nottingham has led research in advanced material development and thermal sprayed coatings for 7 years.
    • 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.
  • Product registration
  • Ressources
    • Accuraspray 4.0
    • Accuraspray CS
    • DPV Evolution
    • Coldspray Meter
    • Plumespector
    • Shotmeter
    • Reseach Discount
  • Video
  • Library
  • EN
    • 简体中文

Category: Accuraspray

Active Learning-Driven Uncertainty Reduction For In-Flight Particle Characteristics of Atmospheric Plasma Spraying of Silicon

Posted on February 13, 2024 (February 13, 2024) by Flavia FU

The first-of-its-kind use of the active learning (AL) framework in thermal spray is adapted to enhance the prediction accuracy of […]

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Posted in Accuraspray

Processing–Microstructure–Properties of Columns in Thermal Barrier Coatings: A Study of Thermo-Chemico-Mechanical Durability

Posted on February 13, 2024 (November 11, 2024) by Flavia FU

Contemporary gas turbine engines rely on thermal barrier coatings (TBCs), which protect the structural components of the engine against degradation […]

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Posted 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) by Flavia FU

Contemporary gas turbine engines rely on thermal barrier coatings (TBCs), which protect the structural components of the engine against degradation […]

Read More…

Posted in Accuraspray

Analysis of the Relationship between APS Thermal Spray Parameters of Ni5Al Particles and Coating Characteristics

Posted on September 7, 2023 (April 4, 2024) by Flavia FU

The strength and characteristics of a coating are defined by the impact and temperature of the individual molten particles, as […]

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Posted in Accuraspray

Atmospheric Plasma Spraying of Ytterbium Disilicate for Abradable and Environmental Barrier Coatings: A Story of Processing-Microstructure Relationships

Posted on June 1, 2023 (November 6, 2023) by Flavia FU

Environmental barrier coatings (EBCs) are required to protect SiC based composites in high temperature, steam containing combustion environments found in […]

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Posted in Accuraspray

Importance of Measurement and Evaluation Procedure of Particle State in Atmospheric Plasma Spraying

Posted on March 30, 2023 (November 6, 2023) by Flavia FU

In-flight particle state parameters (PSPs) have been shown to play a crucial role in determining the properties of atmospheric plasma-sprayed […]

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Posted in Accuraspray

Ensemble Methods for APS In-Flight Particle Temperature and Velocity Prediction Considering Torch Electrodes Ageing

Posted on January 6, 2023 (April 15, 2024) by Flavia FU

The nonlinear relationship between the input process parameters and in-flight particle characteristics of the atmospheric plasma spray (APS) is of […]

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Posted in Accuraspray

Influence of the Deposition Parameters on Microstructure and Properties of HVOF Sprayed WC-CRC-NI Coating

Posted on June 30, 2022 (November 6, 2023) by Flavia FU

This paper investigates the influence of thermal spray parameters of the high-velocity oxygen fuel (HVOF) process on the properties of […]

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Posted in Accuraspray

Improvement of In-Flight Particles Diagnostic System to Monitor Process Stability in Thermal Spray Processes

Posted on May 30, 2022 (November 6, 2023) by Flavia FU

In the past 25 years, we have seen thermal spray processes such as Atmospheric Plasma Spray (APS), High Velocity Oxygen […]

Read More…

Posted 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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