Robot fully automatic ceramic bending testing machine

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  • Automatic bending testing machine for ceramics
  • Automatic bending testing machine for ceramics
  • Automatic bending testing machine for ceramics
  • Automatic bending testing machine for ceramics
  • Automatic bending testing machine for ceramics
  • Automatic bending testing machine for ceramics

Automatic ceramic bending testing machine

Automatic bending testing machine for ceramics

ETM503C-AR

It is mainly applied in industries such as scientific research institutes, quality supervision, military industry, aerospace, new energy, and automobiles, as well as in fields like unmanned operation, big data analysis, and intelligent decision-making. Equipped with robots, bending fixtures, and video extensometers, it can automatically detect mechanical performance indicators such as the bending modulus, bending strength, and deflection of specimens. The configuration of the cross-sectional measurement device can automatically measure the width and thickness of the sample. It can complete processes such as automatic sample feeding, intelligent clamping, full-process testing, and report generation, significantly reducing manual intervention, improving testing efficiency and data accuracy, and achieving fully unmanned mechanical property testing throughout the entire process.

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Main uses

It is mainly applied in industries such as scientific research institutes, quality supervision, military industry, aerospace, new energy, and automobiles, as well as in fields like unmanned operation, big data analysis, and intelligent decision-making. Equipped with robots, bending fixtures, and video extensometers, it can automatically detect mechanical performance indicators such as the bending modulus, bending strength, and deflection of specimens. The configuration of the cross-sectional measurement device can automatically measure the width and thickness of the sample. It can complete processes such as automatic sample feeding, intelligent clamping, full-process testing, and report generation, significantly reducing manual intervention, improving testing efficiency and data accuracy, and achieving fully unmanned mechanical property testing throughout the entire process.

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Main functions