WAW-2000D electro-hydraulic servo universal testing machine

Product Name: WAW-2000D Electro Hydraulic Servo Universal Testing Machine
Listing time: February 12, 2014
Brand Name: Era
Pre sales consultation:
Product advantages:
•National Silver Award for Testing Machines
•National Enterprise Technology Center
•National Postdoctoral Mobile Station
•National anti-static automated circuit board production line
Corporate Advantages
•Certified according to ISO-9000 standard
•National advanced testing machine manufacturing base (68000 square meters)
•High export volume of testing machines
The WAW-2000D microcomputer controlled electro-hydraulic servo universal testing machine is mainly used for tensile, compressive, bending, shear and other tests of metal materials. With simple accessories and devices, it can also test wood, cement, concrete, rubber and their products.
The main body of the testing machine adopts a downward structure of oil cylinder, with the stretching space located above the main body, and the compression and bending testing space located between the lower crossbeam and the worktable below the main body. The Y series host adopts a front open crossbeam, which increases the rigidity of the crossbeam. The lower crossbeam is lifted and lowered by a motor through a reducer, chain transmission mechanism, and screw pair transmission.
The measurement and control system adopts the microcomputer controlled electro-hydraulic servo measurement and control system independently developed by the company. The sensor measures force, and the microcomputer screen displays test force, deformation, and various test curves. It can achieve various control methods such as constant velocity test force, constant velocity deformation, constant velocity displacement, load holding, displacement holding, etc. It can automatically calculate various values according to GB/T228-2002 and print various test reports (special customization is required). Users can also edit the format of the test report themselves.
| Project Name | parameter |
| Maximum test force kN | 2000 |
| Relative error of test force indication | ≤ ± 1% of the indicated value |
| Test force measurement range | 2%~100% of maximum test force |
| Constant velocity stress control range (N/mm2 · S-1) | 2~60 |
| Stress rate error | ≤±5% |
| Constant strain control range | 0.00025/s~0.0025/s |
| Strain rate error | ≤ ±5% |
| Constant velocity displacement control range (mm/min) | 0.5~50 |
| Relative error of displacement velocity | ≤±5% |
| clamping method | hydraulic clamping |
| Circular specimen clamping diameter range mm | Φ15~Φ70 |
| Flat specimen clamping thickness range mm | 0~70 |
| Flat specimen clamping width mm | 80 |
| Maximum tensile test space mm | 1000 |
| Maximum compression test space mm | 900 |
| Control cabinet external dimensions mm | 600×480×960 |
| Host dimensions in millimeters | 1300×1090×3815 |
| Motor power kW | 9.0 |
| Host weight kg | 10000 |
| Clear spacing between columns (mm) | 700 |
| Upper and lower pressure plate size mm | Φ200 |
| Bending support rod spacing mm | 300 |
| Bending support rod width mm | 160 |
| Allowable bending degree mm | 190 |
| Maximum piston stroke mm | 250 |
| Maximum piston movement speed mm/min | About 65 |
| Experimental space adjustment speed mm/min | About 200 |
