The 5000nm high-temperature fatigue testing machine is used for torque testing of steel rolling machinery equipment, high-temperature service torsion bars, and high-temperature transmission shafts, as well as simulating quenching, annealing, and other process tests.
5000nm high temperature fatigue testing machinemain purpose

5000nm high temperature fatigue testing machineUsed for torque testing of steel rolling machinery equipment, high-temperature service torsion bars, and high-temperature transmission shafts, as well as simulating quenching, annealing, and other process tests.
This experimental system adopts high-quality AC servo motors and fully digital microcomputer servo speed control technology. The system is stable, with excellent performance, and synchronized with the world. Automatically track and measure the torsion angle, peak holding, automatic processing of test data, digital display of torque values, torsion angle, loading rate, and T - φ test curves of materials, and print T - φ test curves and test reports that comply with national standards such as T, τ b, and shear modulus G.
5000nm high temperature fatigue testing machineHigh precision sensors and measurement amplifiers are used for data acquisition to achieve various control of engineering quantities such as torque, torsion angle, and loading rate. The use of purchased parts from world-renowned manufacturers fully ensures the stability and reliability of the system. The test software works on the WINDOWS98/XP/2000 platform, with a fully Chinese interface and powerful data processing functions. The test conditions and results are automatically saved, and random group test data, test curves, and test reports that comply with relevant national standards are displayed and printed. It is an ideal cost-effective test equipment for research institutes and colleges.
This high-temperature torsional fatigue testing machine for automotive transmission shafts can not only meet the requirements for routine torsional tests, but also be used for torsional fatigue tests.
5000nm high temperature fatigue testing machineApplicable standards:
GB/T 10128-2007 "Test Method for Room Temperature Torsion of Metals"
JJG269-2006 torsion testing machine
JB/T9370-1999 Technical Conditions for Torsion Testing Machine
Other parts testing JJG, GB, AMT, JTN torsion testing machine
Main technical performance indicators of 5000nm high-temperature fatigue testing machine
Torque range: 0-5000Nm can be customized according to customer requirements
Minimum torque reading: 0.1Nm
Test torque resolution 1/± 300000
Relative error of torque indication: ≤± 1.0%
Relative error of torque repeatability: ≤ 1.0%
● Angle measurement range 0-99999 °
Relative error of corner indication: ≤± 1%
Twist angle (small angle measurement) display minimum resolution: 0.0001 °
● Minimum reading value of turning angle: 0.01 °
Test speed: 0.05-720 °/min (should be between 3 °/min and 30 °/min before yielding); Continuously variable speed (not greater than 720 °/min after yielding)
Relative error of torsional speed indication: ≤± 1%
Repetitive error of torsional speed indication: ≤ 1.0%
● Distance between the force plate and torque plate: 0-300mm
Coaxiality of two clamps: ≤Φ 0.3mm
Power supply: AC 220V ± 10%, 50Hz;
● Net size of the host (mm): 1750 * 550 * 1100
● Host weight (kg): 1000
Manufacturer of 5000nm high-temperature fatigue testing machinepromise:
1: Before purchasing a 5000nm high-temperature fatigue testing machine, we have specially dispatched technical personnel to provide you with a reasonable solution
2: After purchasing a 5000nm high-temperature fatigue testing machine, free on-site installation and debugging are available
3: The whole machine comes with a one-year warranty and the product is maintained for life
4: Supply vulnerable parts and consumables for the 5000nm high-temperature fatigue testing machine year-round to ensure long-term normal use of the machine
5000nm high temperature fatigue testing machineTraining content:
1. Relevant personnel have achieved proficiency in operating the equipment
2. Relevant personnel have achieved proficiency in handling equipment malfunctions
3. Training on equipment maintenance and daily upkeep work
4. Training on troubleshooting common and special equipment malfunctions