A high temperature test furnace is a kind of experimental equipment specially designed to simulate an extreme high temperature environment. The main function of a high temperature test furnace is to provide high temperature test conditions for materials, components or products to evaluate their tolerance and performance under high temperature. High temperature test furnace equipment usually plays an important role in scientific research, industrial production, quality control and other fields.
A high temperature test furnace is a kind of experimental equipment specially designed to simulate extreme high temperature environments. The main function of a high temperature test furnace is to provide high temperature test conditions for materials, components or products to evaluate their tolerance and performance at high temperatures. High temperature test furnace equipment usually plays an important role in scientific research, industrial production, quality control and other fields.
The working principle of a high temperature test furnace: based on precise temperature control of the internal space. The high temperature test furnace heats the air or other media in the furnace through built-in heating elements (such as heating wires or burners) to reach the required test temperature. These heating elements are usually managed by a temperature controller to ensure accurate and stable temperature.
When conducting high temperature tests, the high temperature test furnace can simulate different high temperature environments (maximum use temperature: 1400℃, 1600℃, 1700℃, 1800℃), such as long-term continuous high temperature, rapid temperature changes or periodic temperature cycles. Such tests help determine the thermal stability, thermal expansion characteristics, heat resistance of materials, and chemical changes that may occur at high temperatures.
The design of high temperature test furnaces usually takes safety and durability into consideration. They are usually equipped with insulation materials to reduce external heat loss and protect operators from high temperature injuries. In addition, many high temperature test furnaces also have overheating protection and fault diagnosis functions to ensure the safety of equipment and test samples.
In short, the high temperature test furnace is an important experimental tool that helps researchers and engineers evaluate and improve the high temperature resistance of materials and products in practical applications by simulating high temperature environments.
Specifications |
Maximum Operating Temperature(℃) |
Furnace Size: Depth-Width-Height(mm) |
Inner furnace Opening Size |
Capacity(L) |
Power Supply(V) |
Remark |
HTF-LX-15/XX-PX |
1400/1600/1700/1800 |
270-250-200 |
250-200 |
15 |
380 |
Sliding Door |
HTF-LX-18/XX-PX |
1400/1600/1700/1800 |
360-250-200 |
250-200 |
18 |
380 |
Sliding Door |
HTF-LX-25/XX-PX |
1400/1600/1700/1800 |
450-250-200 |
250-200 |
25 |
380 |
Sliding Door |
HTF-LX-19/XX-PX |
1400/1600/1700/1800 |
270-250-250 |
250-250 |
19 |
380 |
Sliding Door |
HTF-LX-25/XX-PX |
1400/1600/1700/1800 |
360-250-250 |
250-250 |
25 |
380 |
Sliding Door |
HTF-LX-32/XX-PX |
1400/1600/1700/1800 |
450-250-250 |
250-250 |
32 |
380 |
Sliding Door |
HTF-LX-28/XX-SX |
1400/1600/1700/1800 |
400-250-250 |
250-250 |
28 |
380 |
Upper Door |
HTF-LX-35/XX-SX |
1400/1600/1700/1800 |
400-300-250 |
300-250 |
35 |
380 |
Upper Door |
HTF-LX-42/XX-PXII |
1400/1600/1700 |
600-250-250 |
250-250 |
42 |
380 |
Single Door, Sliding Door Two Zones Two Controls |
HTF-LX-50/XX-PXIII |
1400/1600/1700 |
700-250-250 |
250-250 |
50 |
380 |
Double Door, Sliding Door Three Zones Three Controls |
Specifications: HTF-LX-XX/XX-X
XHEATEST furnace—laboratory furnace—capacity/maximum operating temperature—door opening*instrument & touch screen.
Example: HTF-LX-15/17-PY: HEATEST furnace—laboratory furnace—capacity 15L/maximum operating temperature 1700℃—sliding door*intelligent instrument control.
Options
Inlet/exhaust port, with/without exhaust fan
Overtemperature protector, secondary protection for equipment and workpieces
Exhaust gas catalyst: used to remove organic components in exhaust gas. Organic components are burned by catalytic reaction at a temperature of about 600℃, that is, decomposed into carbon dioxide and water vapor. As a result, no odor is generated in the exhaust gas.
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