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Homepage>BS Standards>11 HEALTH CARE TECHNOLOGY>11.060 Dentistry>11.060.01 Dentistry in general>BS EN ISO 13078-3:2023 Dentistry. Dental furnace Test method for the evaluation of high temperature sintering furnace measurement with a separate thermocouple
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immediate downloadReleased: 2023-06-14
BS EN ISO 13078-3:2023 Dentistry. Dental furnace Test method for the evaluation of high temperature sintering furnace measurement with a separate thermocouple

BS EN ISO 13078-3:2023

Dentistry. Dental furnace Test method for the evaluation of high temperature sintering furnace measurement with a separate thermocouple

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Standard number:BS EN ISO 13078-3:2023
Pages:16
Released:2023-06-14
ISBN:978 0 539 15122 0
Status:Standard

BS EN ISO 13078-3:2023 Dentistry. Dental Furnace Test Method for the Evaluation of High Temperature Sintering Furnace Measurement with a Separate Thermocouple

Introducing the BS EN ISO 13078-3:2023, a comprehensive standard guide that provides a detailed test method for the evaluation of high temperature sintering furnace measurement with a separate thermocouple in the field of dentistry. This standard is a must-have for all dental professionals and laboratories that aim to ensure the highest level of precision and accuracy in their work.

Key Features

The BS EN ISO 13078-3:2023 standard is a 16-page document that was released on June 14, 2023. It carries the ISBN number 978 0 539 15122 0. This standard is currently active and in use by dental professionals worldwide.

This standard provides a systematic approach to testing and evaluating the performance of high temperature sintering furnaces used in dentistry. It specifically focuses on the measurement accuracy of these furnaces when using a separate thermocouple. This ensures that the furnace is operating at the correct temperature, which is crucial for the successful sintering of dental materials.

Benefits of Using BS EN ISO 13078-3:2023

By adhering to the BS EN ISO 13078-3:2023 standard, dental professionals can ensure that their sintering furnaces are operating at the optimal temperature. This can significantly improve the quality of dental restorations, leading to better patient outcomes.

Furthermore, this standard can help dental laboratories to maintain compliance with regulatory requirements. It provides clear guidelines on how to properly test and evaluate the performance of sintering furnaces, reducing the risk of non-compliance and potential penalties.

Who Should Use BS EN ISO 13078-3:2023?

The BS EN ISO 13078-3:2023 standard is suitable for all dental professionals who use high temperature sintering furnaces in their practice. This includes dentists, dental technicians, and dental laboratory managers. It is also useful for manufacturers of dental sintering furnaces, as it provides clear guidelines on the performance requirements of these devices.

Conclusion

The BS EN ISO 13078-3:2023 standard is an essential tool for ensuring the accuracy and reliability of high temperature sintering furnaces in dentistry. By following the guidelines outlined in this standard, dental professionals can improve the quality of their work and ensure the best possible outcomes for their patients. Don't compromise on quality - get your copy of the BS EN ISO 13078-3:2023 standard today!

DESCRIPTION

BS EN ISO 13078-3:2023


This standard BS EN ISO 13078-3:2023 Dentistry. Dental furnace is classified in these ICS categories:
  • 11.060.01 Dentistry in general
This document specifies a test method for the calibration of resistance-heated high temperature sintering furnaces that are suitable for the sintering of dental restorations in the temperature range up to 1 700 °C. NOTE       A test method for the calibration of dental furnaces that are suitable for the heat treatment of silica-based dental ceramic restorations in the temperature range between 600 °C and 1 050 °C is specified in ISO 13078:2013. ISO 13078:2013 does not include the calibration of sintering furnace used for sintering of oxide ceramics or sintered metal, in whose firing chamber restorations are sintered at temperatures of 1 000 °C to 1 700 °C.