B Type

SSB-600WE universal material testing machine

Product Details

SSB-600WE universal material testing machine

Specifications
Maximum test force: 600KN;
Accuracy level: level 1;
Middle beam lifting speed: 320 mm/min;
Maximum spacing of compression surfaces: 600 mm;
Maximum stretching distance: 700 mm;
Effective distance between two columns: 375mm;
Piston stroke: 200 mm;
Maximum speed of piston movement: 120 mm/min;
Round sample clamping diameter: Φ13 mm – Φ40mm;
Flat specimen clamping thickness: 0 mm -20 mm;
Maximum distance of bending test fulcrum: 300 mm;
Upper and lower platen size: Φ200mm;
Mainframe dimensions: 800 mm × 620 mm × 1900 mm;
Oil source cabinet size: 550 mm × 500 mm × 1200 mm;
Machine power: 2.2 kW (1.5kW for oil pump motor, 0.4kW for lift motor);
Oil source cabinet weight: 100 kg;
Host weight: about 1800 kg;

SSB-600WE universal material testing machine is driven by hydraulic power source. It adopts intelligent measuring and controlling instrument to collect and process test data. It consists of test host, oil source (hydraulic power source), measurement and control system and test equipment. The maximum test force 600kN, the test machine accuracy level is better than level 1.

SSB-600WE universal material testing machine can meet the national standard test requirements of metal tensile test regulations, and can also carry out tests on stretching, compression, bending and shearing of different materials or products according to other standards. Take the tensile strength, yield strength and other performance indicators of the tested materials.

The testing machine is a six-column, double-space structure. The stretching space between the upper beam and the lower beam is a compression space. The compression space between the lower beam and the test bench is compressed. The test space is driven by the sprocket and the screw to move the lower beam up and down automatically. Adjustment. The standard model is equipped with V-shaped and flat jaws for clamping cylindrical specimens and flat specimens for tensile testing; the lower end of the lower beam of the standard model is equipped with an upper pressing plate, and the test bench is equipped with a spherical structure. The lower plate can be directly tested for compression.

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