LB-T08 Ceramic Linear Dilatometer, Thermal Expansion Coefficient Tester
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Description
Product Introduction:
It is used to determine the thermal expansion and contraction behavior of metallic materials, ceramics, glasses, glazes, refractory materials, and other non-metallic materials during heating and firing.
Instrument reference standard:
GB/T 3810.8 and ISO 10545.8 for the determination of linear thermal expansion of ceramic tiles; GB/T 16920 for the determination of the average linear thermal expansion coefficient of glass; GB/T 3074.4 for the determination of the thermal expansion coefficient of graphite electrodes; GB/T 7320, “Test Method for Thermal Expansion of Refractory Products”; GB/T 4339, “Determination of Thermal Expansion Characteristic Parameters of Metallic Materials,” and others.
Technical Specifications:
| Parameter Description | Specific parameters |
| Maximum furnace temperature | Available in specifications such as 1000℃, 1400℃, 1600℃, and 1700℃. |
| Heating rate, temperature control method, and accuracy | Heating rate: adjustable from 0 to 20 °C/min; microcomputer‑controlled temperature regulation with an accuracy of ±1 °C. |
| Determination of the deformation range | ±1.5mm |
| Displacement Sensor Sensitivity and Measurement Accuracy | Sensitivity: 0.1 µm; measurement accuracy: 0.5 µm; automatic range calibration. |
| Computer computing function | Automatically calculates the coefficient of thermal expansion, volumetric expansion, and linear expansion. |
| Data recording, storage, printing, and temperature range | Automatically records, stores, and prints data; prints the temperature–coefficient of thermal expansion curve; allows free setting of temperature intervals, with a minimum interval of 1°C. |
| Compensation Coefficient Calculation and Correction | The compensation coefficient is calculated and applied automatically, with the option for manual correction. |
| Specimen dimensions | Φ(5~10)×50mm, (5~10)×(5~10)×50mm; both square and circular samples are acceptable. |
| Transmission Method and Performance | It employs linear bearing transmission to achieve frictionless transfer of expansion values, delivering exceptional transmission accuracy and repeatability. |
| System measurement error | ±0.2% |
| Power supply | 220V, 2kW |
| ZRPY Intelligent Dilatometer Functions | The system features automatic temperature control, data recording, storage, and printing, generating a temperature–coefficient of thermal expansion curve. All test procedures are performed via the computer interface, offering user-friendly operation that is easy to learn, along with a complete software package. |
| Instrument Configuration | One host unit of the thermal expansion coefficient tester, one software package, one set of communication interface and data cable, one standard sample, and one desktop computer (configured as per the contract). |
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