Product Details
Highly Effective For High Temperature Aviation Applications - A
Powerful Heat Shield That Gives Aviation Equipment Excellent
Thermal Stability: 45 °C Military Aviation PCM
Phase transition principle of military aviation phase change
materials:
- In this phase change process, a large amount of heat will be
absorbed, which is stored in the form of latent heat, so that the
temperature rise trend of the surrounding environment can be
effectively contained, and play a role in cooling aviation
equipment.
- For example, in the temperature control of the peripheral parts of
the engine, the parts are prevented from being damaged or the
performance is reduced due to overheating.
- On the contrary, when the ambient temperature is higher than 45 °C
and begins to fall, the material changes from liquid to solid
state, and the previously stored latent heat is released, slowing
down the decline rate of the ambient temperature and maintaining a
relatively stable temperature environment, such as in the avionics
cabin in some high temperature environments, to avoid damage to
electronic components due to sudden temperature drop.
- Through this precise 45℃ phase change mechanism, the material can
dynamically respond to different temperature changes in military
aviation, ensuring the stable operation and performance
optimization of the aviation system.
Highlights of the product:
1. Efficient temperature control capability
- When the temperature environment changes close to 45 °C, the phase
change material can absorb or release a large amount of heat
through its own phase transition (such as from solid to liquid or
from liquid to solid), so as to effectively maintain the relative
stability of the ambient temperature.
- This is essential for the normal operation of some electronic
components, sensors and other components in military aviation
equipment that are sensitive to temperature changes, and can
prevent equipment failures and performance degradation caused by
too high or too low temperatures.
- Compared with traditional temperature control materials, its
temperature control effect is more significant and durable, and it
does not need to frequently start additional cooling or heating
systems, saving energy consumption, which is of great significance
for military aviation, which requires high energy efficiency.
2. Strong structural adaptability
- It can withstand various mechanical stresses in the military
aviation environment, such as vibration, shock and pressure changes
generated by the aircraft during flight.
- Whether in the solid or liquid state of the material, it can
maintain good structural stability, and will not be easily broken,
deformed or leaked due to these external stresses, ensuring its
reliability and safety in aviation equipment.
- According to different application scenarios and equipment needs,
it can be processed into various shapes and sizes, such as flake,
block, granular, etc., which is convenient to install and integrate
into different parts of military aviation equipment, improving the
flexibility and convenience of its application.
3. Light weight
- For the aviation sector, reducing the weight of aircraft is
crucial.
- Phase change materials usually have a relatively light weight,
which will not bring too much extra weight burden to the aircraft
while meeting the temperature control needs, helping to improve the
fuel efficiency and flight performance of the aircraft.
Product application scenarios:
1. Aero-engine thermal management - lubricating oil temperature
regulation
- Engine oil temperature is too high will lead to its performance
decline, affect the lubrication and heat dissipation effect.
- The phase change material is installed around the lubricating oil
road, when the oil temperature is close to 45 °C and has a rising
trend, the material absorbs heat, maintains the lubricating oil
temperature within the appropriate range, ensures that the engine
components are well lubricated and cooled, and reduces the
probability of mechanical failure caused by too high oil
temperature.
2. Avionics cabin -- ambient temperature adaptation
- The aircraft flies in some high-temperature environments (such as
low-altitude, tropical flight), and the temperature in the
electronic equipment compartment may exceed the normal operating
temperature range.
- 45℃ military aviation phase change materials can stabilize the
cabin temperature by absorbing heat, create a suitable working
environment for electronic equipment, and ensure the stability of
equipment performance.
3. Uav power system and equipment bay -- airborne equipment cooling
- The onboard equipment of the UAV (such as the flight control
system, communication equipment, etc.) also needs to work within
the appropriate temperature range.
- 45℃ military aviation phase change materials can help maintain the
temperature stability of these equipment, avoid equipment failure
due to high temperature, and ensure the normal flight mission of
the UAV.