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Our durable insulation XPS foam board for hydroponic cultivation is crafted with a focus on long-lasting performance and reliability. The board's design starts with the selection of high-quality raw materials. The XPS foam is produced using advanced extrusion techniques to create a dense and homogeneous structure that provides superior thermal insulation.
The surface of the board is treated with a special protective layer that enhances its durability. This layer is resistant to abrasion, chemicals, and UV radiation, ensuring that the board remains in excellent condition even in harsh hydroponic environments. The edges of the board are reinforced to prevent chipping and damage during handling and installation. We offer different edge treatments, such as rounded edges for added safety and square edges for a more precise fit.
To meet the specific needs of hydroponic systems, our XPS foam board can be designed with custom features. For example, it can be pre-embedded with sensors or wiring channels for monitoring and controlling the hydroponic environment. This integrated design simplifies the installation of additional components and improves the overall functionality of the system.
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 |
One of the key features of our XPS foam board is its exceptional durability. It can withstand the rigors of a hydroponic environment, including the presence of water, nutrients, and various chemicals. The board's resistance to moisture and chemicals ensures that it does not degrade over time, maintaining its insulation performance and structural integrity.
Our XPS foam board also offers excellent thermal insulation properties. The low thermal conductivity of the foam effectively reduces heat transfer, helping to maintain a stable temperature within the hydroponic system. This is crucial for the growth and development of hydroponic plants, as temperature fluctuations can have a significant impact on their health and productivity.
The board's high compressive strength is another important feature. It can support the weight of the hydroponic system components, such as grow beds, irrigation systems, and plants, without deforming or collapsing. This ensures the stability and safety of the entire hydroponic setup.
In addition, our XPS foam board is easy to install. Its lightweight nature and precise dimensions make it convenient to handle and position in the hydroponic system. The board can be cut, shaped, and customized on-site to fit the specific requirements of the installation, reducing installation time and costs.
Our durable insulation XPS foam board is widely applicable in various hydroponic cultivation systems. In large-scale commercial hydroponic farms, it is used to insulate the entire grow facility, including the walls, floors, and roofs. By providing effective thermal insulation, the board helps to optimize the growing conditions, increase crop yields, and reduce energy consumption.
For small-scale home hydroponic gardens, our XPS foam board is an ideal choice for insulating grow boxes, cabinets, or shelves. It allows hobbyists to create a controlled environment for their plants, protecting them from external temperature changes and ensuring a successful harvest.
In research and educational institutions, our XPS foam board is used in hydroponic research projects and teaching laboratories. It provides a reliable insulation solution for studying plant growth under different environmental conditions, enabling accurate and consistent results.