Availability: | |
---|---|
Quantity: | |
Our lightweight and efficient insulation XPS foam board for hydroponic applications is designed with a focus on ease of use and energy savings. The board's construction is optimized to achieve a low density while maintaining excellent thermal insulation performance. The XPS foam is composed of tiny closed cells that trap air, creating a highly effective thermal barrier.
The surface of the board is smooth and has a matte finish, which not only gives it a professional look but also makes it less likely to attract dust and debris. This smooth surface is also beneficial for cleaning, as it can be easily wiped down with a damp cloth. The edges of the board are beveled, which allows for a more seamless connection when multiple boards are used together, reducing heat transfer through the joints.
For added convenience, our XPS foam board can be pre-cut into various sizes and shapes according to the specific requirements of the hydroponic system. This eliminates the need for on-site cutting, saving time and reducing waste. Additionally, the board can be customized with pre-drilled holes or slots for the installation of fasteners, pipes, or other components, making the setup process even more straightforward.
Physical And Mechanical Properties | |||||||||
Item | Unit | Performance | |||||||
Smooth Surface | |||||||||
X150 | X200 | X250 | X300 | X400 | X450 | X500 | |||
Compressive strength | Kpa | ≥150 | ≥200 | ≥250 | ≥300 | ≥400 | ≥450 | ≥500 | |
Size | Length | MM | 1200/2000/2400/2440 | ||||||
Width | MM | 600/900/1200 | |||||||
Thickness | MM | 10/20/25/30/40/50/60/70/80/100 | |||||||
Water absorption rate, water seepage 96h | %(Volume fraction) | ≤1.0 | ≤1.0 | ||||||
GB/T 10295-2008 Thermal Conductivity | Average temperature of 25℃ | W/(m.K) | ≤0.034 | ≤0.033 | |||||
Density | kg/m³ | 28-38 | |||||||
Remark | Product size, density, compressive strength, thermal conductivity support customization |
The most notable feature of our XPS foam board is its lightweight nature. Compared to other insulation materials, our XPS foam board is significantly lighter, making it easy to handle and install. This is particularly advantageous in hydroponic systems where the weight of the insulation can affect the overall stability and ease of setup. Despite its light weight, the board still provides excellent thermal insulation, helping to maintain a consistent temperature within the hydroponic system.
Another key feature is its high thermal efficiency. The low thermal conductivity of the XPS foam ensures that heat loss or gain is minimized, reducing the energy required to maintain the optimal temperature for plant growth. This not only saves energy but also lowers operating costs for hydroponic growers.
Our XPS foam board is also highly resistant to moisture. The closed-cell structure of the foam prevents water from penetrating the board, protecting it from damage and ensuring its long-term performance. This is crucial in hydroponic systems, where the presence of water is constant. Additionally, the board is resistant to most common hydroponic chemicals, making it a durable and reliable choice for insulation.
Our lightweight and efficient insulation XPS foam board is suitable for a wide range of hydroponic applications. In greenhouse hydroponics, it can be used to insulate the walls, floors, and ceilings of the greenhouse, creating a more controlled environment for plant growth. By reducing heat loss at night and heat gain during the day, the board helps to maintain a stable temperature, which is essential for the healthy development of hydroponic plants.
For indoor hydroponic systems, such as grow tents and modular grow units, our XPS foam board provides an effective insulation solution. It helps to keep the heat generated by the grow lights and the plants inside the system, reducing the need for additional heating or cooling. This is especially important in regions with extreme temperature fluctuations.
Our XPS foam board is also used in hydroponic nutrient reservoirs and grow trays. By insulating these components, it helps to maintain the temperature of the nutrient solution, which is crucial for the proper absorption of nutrients by the plants. This can lead to healthier plants and higher crop yields.