What is a microcomputer controlled pressure testing machine?
In the fields of modern industrial production and scientific research, the microcomputer-controlled pressure testing machine is a high-precision equipment widely used in testing the mechanical properties of materials. It achieves precise measurement and analysis of pressure, displacement and other parameters through a computer control system, and is widely used in construction, metallurgy, automobiles, aerospace and other industries. This article will combine recent hot topics and hot content to introduce in detail the definition, working principle, application fields and technical parameters of the microcomputer-controlled pressure testing machine.
1. Definition of microcomputer controlled pressure testing machine

Microcomputer controlled pressure testing machine is a high-precision mechanical testing equipment controlled by a computer system. It is mainly used to test the strength, deformation and other properties of materials under pressure. Its core feature is the use of a microcomputer control system, which can realize automatic collection, processing and analysis of data, greatly improving the accuracy and efficiency of the test.
2. Recent hot topics and hot content
In the past 10 days, the entire network’s discussion on microcomputer-controlled pressure testing machines has mainly focused on the following aspects:
| hot topics | Hot content |
|---|---|
| Intelligent upgrade | More and more companies are beginning to adopt intelligent microcomputer-controlled pressure testing machines to improve testing efficiency. |
| New material testing needs | With the widespread application of new materials, higher requirements have been placed on the accuracy and functionality of pressure testing machines. |
| Environmental protection and energy saving | The new microcomputer-controlled pressure testing machine has significant improvements in energy consumption and environmental performance. |
| Localization trend | Domestic microcomputer-controlled pressure testing machines gradually occupy a dominant position in technology and market. |
3. Working principle of microcomputer controlled pressure testing machine
The working principle of the microcomputer-controlled pressure testing machine mainly includes the following steps:
1.Load system: Apply pressure to the specimen hydraulically or electrically.
2.Sensor detection: Real-time detection of pressure, displacement and other parameters through high-precision sensors.
3.Data collection: The microcomputer system converts the sensor signal into a digital signal and stores it.
4.data analysis: Use special software to analyze data and generate test reports.
4. Technical parameters of microcomputer controlled pressure testing machine
The following are the main technical parameters of the microcomputer controlled pressure testing machine:
| Parameter name | Parameter range |
|---|---|
| Maximum test force | 10kN-2000kN |
| Accuracy level | Level 0.5 or Level 1 |
| Control method | Microcomputer control |
| Test speed | 0.01-500mm/min |
| Data sampling frequency | ≥100Hz |
5. Application fields of microcomputer controlled pressure testing machine
Microcomputer controlled pressure testing machines are widely used in the following fields:
1.building materials: Test the compressive strength of concrete, steel bars and other materials.
2.metal material: Detect the yield strength, tensile strength, etc. of metal materials.
3.composite materials: Evaluate the mechanical properties of composite materials.
4.Scientific research and education: Used for materials mechanics research in universities and scientific research institutions.
6. Summary
As an important tool for modern material mechanics testing, microcomputer-controlled pressure testing machines play an irreplaceable role in industrial production and scientific research due to their high precision, intelligence and efficiency. With the continuous advancement of technology and the growth of market demand, microcomputer-controlled pressure testing machines will show their value in more fields.
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