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Torque/Torsion >> Torque/Torsion Testing Machine - TT100G

Torque/Torsion Testing Machine - TT100G
Código: TT100G

The machines in the TT100 line are used for torque and torsion tests on a variety of dental materials, such as endodontic files, implants, mini-implants and more.

Its 7” touchscreen guarantees practicality and agility when setting up and carrying out tests, as well as allowing the entire test execution to be viewed in real time. The TT100G version has a load cell with a capacity of 0.5 N.m (or 1 N.m) meeting the ISO 3630 standard.

It features a USB output for exporting complete test data.

The G version includes four pre-programmed test routines, including a routine for fatigue tests, either clockwise or counter-clockwise.

The machine allows for the use of a series of devices for bending, torsion or simple torque tests.

Technical features:


  • USB connection with computer communication 
  • Touchscreen Interface (color) 
  • Chucks for sample fixation 
  • Easy to program and operate 
  • Included software for monitoring and printout test 
  • Torque Capacity: 0,5 or 1 N.m
  • Rotation speed adjustable 0,5 to 4,0 rpm (scale 0,5 RPM)
  • Adjustable direction of rotation (clockwise and counterclockwise)
  • Peak load Measurement 
  • Break Angle Measurement 
  • Dimensions: 60 x 30 x 25 cm (estimated)
  • Smart maintenance
  • Software included (English language)
  • Graphic resolution (angle) considering 3 RPM: 0.9º for angle by data log
  • Graphic resolution (angle) considering 3 RPM: approximately 1.8º for angle directly in the software. Considering a system with Intel i7 processor
  • Axial positioning adjustment (slide mounted on a table with linear guides and bearings)
  • Instructions Manual (English Language)
  • Bending moment device included 
  • Chucks removable
  • Export PDF (report) and XLS (testing data) results from software.
  • Export .csv data using a Pen drive directly from machine
  • Angle measured by encoder
  • Voltage 110 - 240V and 50-60 Hz (automatic)
  • Rubberized feet for level adjustment and vibration absorption
  • Emergency Button



Includes: 


  • Traceable calibration certificate 

 


Tests routines:


  • 1. RPM clockwise + Load to fracture;
  • 2. RPM counterclockwise + Load to fracture;
  • 3. RPM clockwise to load at (adjust 0 to 360º); return counterclockwise to "0" load; RPM clockwise > load to fracture;
  • 4. Fatigue (RPM + clockwise/counterclockwise + # cycles).

 


Available versions:


  • TT100G: load capacity of 1 N.m
  • TT100GT: load capacity of 0,5 N.m
Bibliographical References

The bibliographic references provided are intended to offer access to technical literature and scientific publications related to the product in question. Such citations do not imply that the authors of the referenced articles or studies endorse or recommend the purchase or use of Odeme products. Likewise, these citations do not indicate that Odeme endorses, sponsors, recommends, or suggests the engagement or hiring of the authors of the mentioned articles or studies.

  • SANTOS, C. B. et al. Torsional fatigue resistance of R‐Pilot and WaveOne Gold Glider NiTi glide path reciprocating systems. International Endodontic Journal, v. 52, n. 6, p. 874-879, 2019.
  • SILVA, Emmanuel João Nogueira Leal et al. Cyclic and torsional fatigue resistance of XP-endo Shaper and TRUShape instruments. Journal of endodontics, v. 44, n. 1, p. 168-172, 2018.
  • SILVA, Emmanuel João Nogueira Leal et al. Torsional fatigue resistance of blue-treated reciprocating instruments. Journal of Endodontics, v. 44, n. 6, p. 1038-1041, 2018.
  • SILVA, Emmanuel João Nogueira Leal et al. Cyclic fatigue using severely curved canals and torsional resistance of thermally treated reciprocating instruments. Clinical oral investigations, v. 22, n. 7, p. 2633-2638, 2018.
  • VERSIANI, Marco. Cyclic Fatigue and Torsional Resistance of Four Martensite-Based Niti Reciprocating Instruments. Compartir, v. 658, n. 21, 2025.
  • MARTINS, Jorge NR et al. Characterization of the file‐specific heat‐treated ProTaper Ultimate rotary system. International endodontic journal, v. 56, n. 4, p. 530-542, 2023.
  • SILVA, Emmanuel JNL et al. The impact of blade geometry (nonflat, flat or hybrid) and metallurgical composition on the mechanical performance of NiTi endodontic instruments: A multimethod laboratory study. International Endodontic Journal, v. 58, n. 8, p. 1243-1256, 2025.
  • CUSTÓDIO, Luiza Gonçalves Roma et al. Análise comparativa das características mecânicas de instrumentos manuais de aço inoxidável tipo k: um estudo de diferentes marcas. 2024.
  • LOPES, W. S. P. et al. Bending, buckling and torsional resistance of rotary and reciprocating glide path instruments. International Endodontic Journal, v. 53, n. 12, p. 1689-1695, 2020.
  • VERSIANI, Marco. Rendimiento Mecánico y Características Metalúrgicas de ProTaper Universal y 6 Sistemas Réplica. Compartir, v. 383, n. 41, 2025.
  • MARTINS, Jorge NR et al. Evaluation of design, metallurgy, microhardness, and mechanical properties of glide path instruments: a multimethod approach. Journal of Endodontics, v. 47, n. 12, p. 1917-1923, 2021.
  • VERSIANI, Marco. Prestazioni Meccaniche e Caratteristiche Metalurgiche dei Sistemi ProTaper Universal e 6 Replicalike. Compartir, v. 381, n. 36, 2025.
  • MARTINS, Jorge NR et al. Comparative analysis of reciprocating and flat‐side heat‐treated rotary single‐file systems: Design, metallurgical characteristics, and mechanical performance. International Endodontic Journal, v. 56, n. 7, p. 896-908, 2023.
  • VERSIANI, Marco. Comparación del diseño geométrico, características metalúrgicas y comportamiento mecánico de ProTaper Gold SX y dos instrumentos similares a réplicas. Compartir, v. 327, n. 32, 2025.
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