WDW-5010 Microcomputer-Controlled High- and Low-Temperature Electronic Universal Testing Machine
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Description
Product Introduction:
When equipped with a high‑ and low‑temperature environmental chamber, the microcomputer‑controlled electronic universal testing machine is ideally suited for evaluating the mechanical properties—such as tensile, compressive, bending, peel, tear, and shear strength—of materials like aluminum alloy profiles, wires and cables, and metal wires under elevated or reduced temperature conditions. Available in capacities ranging from 500 N to 50 kN, this system can also be customized to meet specific requirements, including integration with a high‑ and low‑temperature environmental test chamber. The resulting high‑ and low‑temperature tensile testing machine is particularly well‑suited for assessing the mechanical performance of aluminum alloy profiles, wires and cables, metal wires, and other materials under extreme thermal conditions, as well as for conducting specialized product tests.
Meets the standard:
GB/T 228-2002 “Method for Tensile Testing of Metallic Materials at Room Temperature,” GB/T 16491 “Electronic Universal Testing Machine,” GB/T 5237.6-2012 “Aluminum Alloy Architectural Profiles—Part 6: Thermal‑Break Profiles,” and GB/T 28289-2012 “Test Method for Composite Performance of Aluminum Alloy Thermal‑Break Profiles.” The constant‑temperature tensile and compressive environmental chamber complies with the requirements of national standards including GB/T 2423.1 “Test Method for Low-Temperature Testing”; GB/T 2423.2 “Test Method for High-Temperature Testing”; GB/T 2423.3 “Test Method for Constant Damp Heat”; GB/T 2423.4 “Test Method for Cyclic Damp Heat,” as well as other relevant standards. It is designed and manufactured in strict accordance with GB/T 10592 “Technical Conditions for High‑and Low‑Temperature Test Chambers” and GB/T 10586 “Technical Conditions for Damp‑Heat Test Chambers.”
Overall machine structure:
This testing machine comprises a main frame, a constant-temperature tensile–compressive environmental chamber, a drive motor and control system, a transmission system, an electronic universal testing machine measurement and control system, a computer, data-processing software, and various accessories.
1. Host Section
The machine features a gantry‑type main frame with separate upper and lower test chambers: the upper chamber is used for tensile testing, while the lower chamber accommodates compression and bending tests. The motor controller drives the motor, which, after being decelerated by a precision planetary gearbox, transmits motion via a backlash‑free arcuate synchronous belt to rotate the ball screw, thereby enabling vertical movement of the crossbeam. A high‑precision load cell is mounted on the crossbeam, and an extensometer can be clamped onto the specimen’s gauge length to measure both the applied test force and the specimen’s deformation. A red emergency stop switch is located on the lower right side of the main frame; in the event of an emergency, pressing this switch immediately halts the crossbeam’s motion.
2. Testing machine measurement and control system and software
The testing machine’s measurement, control, and data processing are all performed by its measurement‑control system and software. The system is connected to the mainframe and a microcomputer; test operators can enter test parameters via the keyboard, while the microcomputer provides real-time display and processing of these parameters and test results, and a printer generates hard copies of the outcomes. For detailed instructions, please refer to the “Electronic Universal Testing Machine User Manual.”
3. Power Supply Section
The high-voltage section of the testing machine is housed within its base and connected to the power grid via a power cord. A power switch and an emergency stop button are located on the lower right side of the front of the base. The power switch serves as the main power‑on/off control for the unit; in an emergency, pressing the emergency stop button immediately cuts off power to the machine, ensuring its protection. Rotating the emergency stop switch restores power.
4. Constant-Temperature Tensile and Compression Environmental Chamber:
This unit is a specialized environmental chamber designed and manufactured to complement electronic universal testing machines, fatigue testing machines, and similar equipment, capable of operating at temperatures as low as –40°C. °C ~+150 °C Conduct tests under the specified temperature conditions. This machine features a rail‑guided sliding structure, allowing for convenient integration with an electronic universal testing machine without requiring any modifications to the main unit.
Technical Specifications:
| Project | Specifications, Parameters, and Metrics |
| Maximum test force | 50KN |
| Testing machine class | Level 1 |
| Effective range | 0.4%~100% |
| Relative error of the test force indication | ≤±0.5% |
| Beam travel speed range | 0.01–500 mm/min |
| Relative error of beam velocity | ≤±1% |
| Maximum beam stroke | 1300mm |
| Stretching stroke | 1000mm |
| Effective test width | 550mm |
| Host dimensions | 890×460×1780mm |
| Power supply voltage | ~220V ±10% 50Hz (must be reliably grounded) |
| Weight | Approximately 350 kg |
| Constant-Temperature Tensile and Compressive Environmental Chamber | |
| Inner chamber dimensions of the test chamber | 280mm*300mm*500mm |
| Temperature range | -40℃~+150℃ |
| Rod-controlled dimensions | R25mm |
| Temperature control accuracy | ±0.5℃ |
| Temperature uniformity | ≤2℃ (within a 300 mm gauge length along the axis) |
| Temperature deviation | ≤2℃ (within a 300 mm gauge length along the axis) |
| Instrument display accuracy | 0.1℃ |
| Heating and cooling rate | Approximate heating rate: about 1.5°C/min; approximately 2°C/min. |
| Ambient operating temperature | 5℃~30℃ |
| Power supply | AC 220V, 50Hz, 3.1kW |
| Additional Features | Equipped with casters for easy mobility. |
| Additional Features | Equipped with an illumination lamp and an observation window. |
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