WEW-1000B Hydraulic Material Testing Machine
1、 Product Overview:
WEW-1000B Hydraulic Materialtesting machineThe main engine adopts a bottom mounted oil cylinder structure, mainly used for mechanical performance tests such as tensile, compressive, and bending of metal materials, non-metal materials, product parts, components, structural components, and standard parts.
This seriesHydraulic universaltesting machineIf an additional environmental device is installed, it can also perform material tensile, compressive, and bending tests in that environment. For example: high temperature tensile, low temperature tensile, compression and other tests.
Suitable for steel, metallurgy, building materials, quality inspection centers, water conservancy and hydropower, highway bridges, research institutes, mechanical engineering in colleges and universities, and other factories, mines, enterprises, and testing and research institutions.
II Applicable test method standards
The experimental operation and data processing meet the requirements of hundreds of standards such as GB/T228 "Tensile Test Method for Metallic Materials at Room Temperature", GB/T7314 "Compression Test Method for Metallic Materials at Room Temperature", GB/T232 "Bending Test Method for Metallic Materials", etc. And data processing methods that meet different standards can be configured according to customer needs.
3、 Product Introduction
1 Host
The main engine adopts a bottom mounted oil cylinder type, with the stretching space located above the main engine, and the compression and bending test space located between the lower crossbeam of the main engine and the worktable. The whole machine is shown in the picture (promotional image, for reference only)
2 Transmission System
The lifting of the middle crossbeam is driven by a motor sprocket to move the crossbeam, adjusting the spatial position of the middle crossbeam and achieving the adjustment of tension and compression space.
3 Hydraulic system
The hydraulic oil in the oil tank is driven by a motor to enter the oil circuit through a high-pressure pump, and flows through a one-way valve, a high-pressure oil filter, and a differential pressure valve group before entering the oil cylinder. The manual valve controls the flow into the oil cylinder to achieve experimental loading.
4. Electrical measurement and control system:
(1) The core components are all imported original components with stable performance.
(2) It has protection functions such as overload, overcurrent, overvoltage, and displacement upper and lower limits.
(3) The built-in card type data acquisition system enables data acquisition of parameters such as test force, sample deformation, and beam displacement.
(4) The electrical control circuit refers to international standards and complies with national standardstesting machineElectrical standards and strong anti-interference ability ensure the stability of the controller and the accuracy of experimental data.
4、 Main performance and technical indicators
Serial Number | Project Name | Parameters |
1 | Maximum test force kN | 1000 |
2 | Relative error of test force indication | ≤ ± 1% of the indicated value |
3 | Test force measurement range | 2%~100% of maximum test force |
4 | Clamping Method | hydraulic clamping |
5 | Circular specimen clamping diameter range mm | Φ6~Φ40 |
6 | Flat specimen clamping thickness range mm | 0~30 |
7 | Flat specimen clamping width mm | 80 |
8 | Maximum tensile test space mm | 620 |
9 | Maximum compression test space mm | 550 |
10 | Control cabinet external dimensions mm | 1200×620×850 |
11 | Host dimensions in millimeters | 900×660×2400 |
12 | Motor power kW | 2.5 |
13 | Host weight kg | 3500 |
14 | Clear spacing between columns (mm) | 580 |
15 | Upper and lower pressure plate size mm | 202*202 |
16 | Bending support rod spacing mm | 400 |
17 | Bending support rod width mm | 140 |
18 | Allowable bending degree mm | 100 |
19 | Maximum piston stroke mm | 200 |
23 | Maximum piston movement speed mm/min | About 80 |
24 | Experimental space adjustment speed mm/min | About 150 |