Constant – temperature Automatic Asphalt Penetrometer
Asphalt class
Our company produces the following equipment for your choice, and other auxiliary tools can be provided on behalf.
Constant – temperature Automatic Asphalt Penetrometer Model: SZR – 10
◆ Product Purpose
This instrument is mainly used to determine the penetration of viscous petroleum asphalt, viscous shale asphalt, liquid petroleum asphalt, and the residues after distillation or emulsification of asphalt materials. The penetration of asphalt is the depth that a standard needle of a certain weight vertically penetrates into the sample within the specified time and temperature.
◆ Main Features
1. Chinese – language liquid crystal display.
2. It can conduct three consecutive tests and automatically calculate the test average value.
3. The system test mode allows for sensor detection.
4. The needle rod assembly of the instrument can be adjusted up and down within the range of 0 – 25mm through the adjustment knob.
5. The test time can be set to 5s, 15s, 30s, or 60s.
6. Temperature control is achieved through an external separate water bath.
7. It can store 10 groups of test data (with data retention for 10 years in case of power failure) and can be queried and printed at any time.
8. Equipped with a printing interface.
9. Equipped with an RS232C communication interface (optional networking protocol or networking PC software).
10. Equipped with a cold – light source illumination system.
◆ Main Technical Parameters
1. Minimum division: Displacement: 0.01mm, Time: 0.1s, Temperature: 0.1℃
2. Maximum range: 45mm
3. Combined weight of the needle connecting rod, weights, and standard needle: 100±0.05g, 200±0.05g (optional)
4. Power supply: AC220V±10%, 50HZ
5. Test dish: Made of standard copper, sizes: 55×35mm, 70×45mm (optional)
6. Flat – bottomed insulation dish: Made of stainless steel, with a volume greater than 1.5L, accompanied by a tripod for placing the test dish.
7. Temperature control accuracy: 0.1℃
Asphalt Laboratory:
packing:
Constant Temperature Automatic Asphalt Penetrometer: A Key Tool for Asphalt Testing
The Constant Temperature Automatic Asphalt Penetrometer is an important instrument in the field of civil engineering and material testing, especially for evaluating the properties of asphalt. The device is designed to measure the depth to which a standard needle penetrates an asphalt sample at a constant temperature, providing key data for engineers to evaluate the consistency and properties of the material.
One of the main advantages of a thermostatically controlled asphalt penetrometer is its ability to maintain a stable temperature throughout the test. This feature is critical because the viscosity of asphalt changes significantly with temperature. By ensuring the temperature remains constant, the penetrometer is able to provide more accurate and reliable results, which is critical for quality control in asphalt production and application.
The penetrometer’s automated features further enhance its usability. Traditional methods of measuring asphalt penetration often require manual intervention, which can lead to human error and variability in results. The automated system streamlines the testing process, enabling consistent and repeatable measurements. This efficiency not only saves time, but also improves the reliability of the data collected.
The Constant Temperature Automatic Asphalt Compactor is not only accurate and efficient, but also has a user-friendly design that makes it easy for technicians and engineers to operate. The digital display and automated settings allow users to easily monitor the test process and get results quickly.
All in all, the Constant Temperature Automated Asphalt Penetrometer is an essential tool for asphalt industry professionals. Its ability to provide accurate, consistent, and automated measurements at controlled temperatures is essential to ensuring the quality and performance of asphalt materials. As infrastructure projects continue to grow, the importance of reliable testing equipment like this penetrometer cannot be overstated.