The high temperature and high humidity bending test of the flexible glass bending test machine is mainly aimed at the repeated bending test of flexible glass flat panels and other accessories under high temperature and high humidity double 85, and low temperature, with a certain speed, stroke, (angle), and counting to perform back and forth bending tests.
Flexible glass bending testing machine for high temperature and high humidity bending testing
Technical Specifications:
1. Testing station: one set
2. Folding angle: 0- ± 180 degrees (adjustable and pointer indicating angle dial)
3. Bending speed: 5-60 times/minute (adjustable knob and digital display)
4. Test times: 0-99999999 times (can be preset and power-off memory)
5. Folding resistant fixture: R0.5mm set
6. Load weight: 600g
7. Sliding device: one set
8. Monitoring device: equipped with a conduction device, the sample breaks and automatically shuts down

Equipment characteristics:
1. The box is treated with electrostatic baking paint, and the tabletop is treated with pure aluminum plate oxidation. The overall design is reasonable, the structure is tight, and the operation is safe and stable, meeting the testing requirements;
2. The bending speed, frequency, and angle are adjustable, with a user-friendly design that is easy, convenient, and fast to operate.
Flexible glass bending testing machine for high temperature and high humidity bending testing
Damp heat test chamber conditions,
3.1 Experimental area volume 210L
3.2 Studio dimensions 500 × 700 × 600mm (width × height × depth)
3.3 Outer box dimensions 1100 × 1780 × 1280mm (width × height × depth)
3.4 Temperature range -40 ℃~150 ℃ (adjustable arbitrarily)
3.5 Humidity Range
20%~98% RH (adjustable within the blue area, green area for low-temperature models, special requirements during production)
Explanation)
3.6 Temperature fluctuation ± 0.5 ℃
3.7 Humidity fluctuation ± 1.0% RH
3.8 Temperature uniformity ± 2.0 ℃
3.9 Temperature deviation 2.0 ℃
3.10 Humidity deviation within 3% RH
3.11 Heating rate: 20 ℃ → 150 ℃/about 45 minutes (no-load nonlinearity: about 3 ℃/min)
3.12 Cooling rate 20 ℃ → 0 ℃/about 20 minutes (no-load non-linear 1.0 ℃/mi)