Livestock barn panels are insulated sandwich panels designed for poultry, swine, cattle, and dairy housing where the interior atmosphere continuously generates ammonia, moisture, and organic acids that corrode standard steel cladding within a few production cycles. The inner skin uses gel-coated fiberglass reinforced polymer (FRP) or AZ150 aluminum-zinc coated pre-painted steel, both chemically inert to the ammonia and urea compounds present in intensive animal housing.
The PU foam core provides continuous thermal insulation that stabilizes internal temperatures for animal welfare and feed conversion efficiency. Panels join through tongue-and-groove or hidden-fastener profiles with continuous gasket seals, creating an airtight envelope that blocks ammonia vapor migration into the core and withstands the high-pressure washdowns required between production cycles for biosecurity compliance.
Standard thicknesses run from 50mm to 100mm for most barn applications, with useful widths of 1,000mm to 1,200mm and custom lengths up to 16,000mm. The smooth, non-porous inner surface does not harbor bacteria or absorb disinfectant chemicals, supporting repeated cleaning cycles over a 20-25 year service life. Applications include broiler and layer houses, swine finishing and farrowing barns, dairy and calf shelters, and sheep and equine facilities.
Your Trusted Manufacturer for Livestock Barn Panel
RaxPanel manufactures livestock barn panels in Hebei, China, where the FRP inner skin is gel-coated and cured in a controlled lamination press before bonding to the foam core. The gel coat thickness is measured at multiple points across each sheet because uneven coverage leaves micro-pores where ammonia vapor can penetrate and degrade the bond line over years of continuous exposure.
The production facility has run for since 2002 with a daily capacity of 1,700 m², supplying agricultural panels to farm projects in more than 30 countries. Before packing, each batch is spot-checked for skin adhesion, joint gasket compression, and surface gloss uniformity. Panels are cut to the barn elevation schedule and labeled by wall position so the erection crew can install without cross-referencing drawings in the field. Contact us with your barn dimensions, animal type, and ventilation layout, and we will recommend skin material, core thickness, and joint configuration.
- Gel-coated FRP or AZ150 pre-painted steel skins at 0.4-0.7mm, inert to ammonia and urea.
- PU foam core at 40-45 kg/m³ with thermal conductivity of 0.022-0.028 W/(m·K).
- Standard thicknesses of 50mm, 75mm, and 100mm; useful width 1,000-1,200mm.
- Tongue-and-groove or hidden-fastener joints with continuous gasket for airtight sealing.
| Parameter | Value |
|---|---|
| Skin Material | Gel-coated FRP / AZ150 Pre-painted Galvanized Steel |
| Skin Thickness | 0.4-0.7 mm |
| Core Material | رغوة بوليبوريان / رغوة بولي إيزوسايانات |
| Core Density | PU: 40-45 kg/m³; PIR: 40-45 kg/m³ |
| Thermal Conductivity | PU: 0.022-0.028 W/(m·K); PIR: 0.021-0.024 W/(m·K) |
| Thickness Range | 50-200 mm (standard: 50, 75, 100 mm) |
| العرض المستخدَم | 1,000-1,200 مم |
| Max Length | حتى 16,000 مم |
| Ammonia Resistance | AZ150 coating / FRP inert to ammonia and urea |
| Joint System | Tongue-and-groove / hidden fastener with gasket |
| Fire Resistance | B1 (PIR) وفق EN 13501-1 |
| Surface Finish | Smooth, non-porous, washdown-rated |
| عمر التشغيل | 20-25 years |
| Applications | Poultry, swine, cattle, dairy, equine housing |
Livestock Barn Panel Buying Guide & FAQ
A livestock building has to stay warm, dry, and clean while resisting one of the most aggressive interior environments in construction: warm, humid, ammonia-laden air that is pressure-washed on a regular cycle. Insulated sandwich panels meet all three demands in a single assembly, but only when the core, facing, and joints are matched to the species and climate. The guide below covers the decisions farmers and agricultural builders make when specifying panels for animal housing.
Damp walls and dripping ceilings are the real enemies in a barn, not cold alone. A continuous insulated envelope with sealed joints keeps the inner skin above the dew point, so moisture stays in the air where ventilation can remove it instead of condensing onto surfaces and wetting the litter.
1. How much insulation does animal housing actually need?
The target is a stable interior temperature and an inner surface warm enough to avoid condensation, rather than a fixed R-value. The required thickness depends on the species, the local winter design temperature, and how tightly the building is ventilated. The table gives typical starting points for a PU core of 40–45 kg/m³.
2. How do the panels resist ammonia, humidity, and washdown?
Manure releases ammonia, and the building is periodically pressure-washed with detergents, so the inner facing takes a chemical and mechanical beating that ordinary cladding cannot survive. A high-build polyester or epoxy coating over galvanized steel resists both the ammonia attack and the cleaning cycle. Where the environment is especially aggressive, a stainless or PVC-faced inner skin protects the long-term integrity of the panel and keeps the surface smooth and washable.
Specify the inner and outer facings separately. The inner face needs chemical and abrasion resistance for washdown, while the outer face mainly needs weather and UV resistance. Matching each side to its actual exposure avoids over-specifying costly stainless where a coated steel would last just as long.
3. Which core gives the right balance of fire safety and cost?
Fire reaction is assessed under EN 13501-1. PIR cores reach class B-s1,d0, combining good insulation with low smoke production and no flaming droplets, which makes them the common choice for occupied animal housing. Mineral wool is non-combustible at A2-s1,d0 and suits projects with the strictest fire requirements. EPS is the economical option but is combustible, so it is better reserved for low-risk storage buildings than for barns that house animals and equipment.
4. How does a tight panel envelope support animal health?
Insulated panels with sealed tongue-and-groove joints create an airtight envelope that the ventilation system can manage precisely. Stable temperature and humidity reduce cold stress and respiratory disease, keep litter dry, and support feed conversion and growth. Because the inner surface stays above the dew point, condensation does not drip onto animals or bedding, removing a common driver of disease and poor air quality.
5. What should I check about hygiene and biosecurity?
A smooth, joint-free inner surface that can be fully washed and disinfected between batches is central to disease control. Look for panels whose joints close flush without gaps where organic matter could lodge, and confirm that the facing tolerates the disinfectants used in your biosecurity protocol. Cleanability is what lets an all-in, all-out production cycle work as intended.
Frequently Asked Questions
For most cattle and swine housing in cold climates, 50–80 mm PU panels hold interior temperature and limit condensation on the inner skin. Poultry brooding houses, which run warmer and more humid, often use 80–100 mm to keep the building tight and the litter dry.
نعم، عند تحديد الوجه المناسب. يقي طلاء البوليستر أو الإيبوكسي عالي السماكة الذي يغطي الفولاذ المجلفن من الأمونيا المنبعثة من الأسمدة ومن المنظفات المستخدمة في التنظيف بالضغط. وفي البيئات القاسية، يُطيل استخدام طبقة داخلية مغطاة بالفولاذ المقاوم للصدأ أو PVC من عمر الخدمة.
تحمل ألبوات PIR أو الصوف المعدني تفاعلًا أفضل مع الحريق. يحقق PIR تصنيف EN 13501-1 فئة B-s1,d0 مع انبعاث دخان منخفض وغياب قطرات ملتهبة، بينما الصوف المعدني غير قابل للاشتعال بتصنيف A2-s1,d0. يُعدّ EPS خيارًا اقتصاديًا لكنه قابل للاشتعال، لذا يناسب التخزين منخفض المخاطر بدلًا من مَساحِن إيواء الحيوانات المأهولة.
غلاف محكم ومعزول جيدًا يُثبِّت درجة الحرارة والرطوبة، مما يُقلِّل من الإجهاد البارد والأمراض التنفسية والرطوبة الناجمة عن التكثُّف. والظروف المستقرة تدعم كفاءة تحويل العلف ومعدلات النمو، والسطح القابل للغسل يُسهم في الحفاظ على مستوى النظافة التي يعتمد عليها ضبط الأمراض.


