150mm Thickness Cleanrooms MGO Rock Wool Panel,Steel Plate:0.326mm
Reference Price:US$from $10
Min. Order:100 square meterCleanroom
150mm Thickness Cleanrooms MGO Rock Wool Panel,Steel Plate:0.326mm
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Summary
150mm Thickness Cleanrooms MGO Rock Wool Panel,Steel Plate:0.326mm
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Detail
The 150mm Thickness Cleanrooms MGO Rock Wool Panel features a robust design with a steel plate thickness of 0.326mm, ensuring structural integrity and durability. This panel combines magnesium oxide and rock wool for excellent thermal insulation and soundproofing properties, making it ideal for maintaining strict cleanroom conditions. Its thickness contributes to enhanced energy efficiency and noise reduction, providing a controlled environment essential for sensitive applications in pharmaceuticals, electronics, and biotechnology.
Advantage
Fire protection: 60 minutesHighDensity,
High Temperature ResistanceStrong Bearing capacit
In the hollow glass-magnesium board to add rock wool core material, so that the fire performance is more enhanced, mainly for the fire requirements of higher engineering. At the same time, rock wool has the effect of sound insulation and heat insulation, making the whole more fireproof, sound insulation and heat insulation function.
Parameter
Effective width: | 1150mm |
Thickness: | 50mm-100mm |
Density: | 60-140kg/m |
Length: | customized according to user needs and project requirements |
Core material: | glass-magnesium filled rock wool |
Installation structure and use: | Enterprise splicing |
Effective width: | 1150mm |
Thickness: | 50mm-100mm |
Density: | 60-140kg/m |
Length: | customized according to user needs and project requirements |
Core material: | glass-magnesium filled rock wool |
Installation structure and use: | Enterprise splicing |
Features
Fire resistance: 120 minutes
Soundproofing: in accordance with ISO 717/82&
UNI18270/7 standards, especially for use in environments with high sound insulation requirements.
Cleanroom Installation - MGO Rockwool
Applications
Widely used in purification and clean plant, indoor interval and other indoor and outdoor boards with high fireproof requirement and good heat preservation requirement. Such as:
Hospital
Pharmaceutical factory
Electronic
Biological research
Beverage
Indoor wall and ceiling panels of purified rooms.
FAQ
1. How do you maintain cleanroom wall panels?
Maintaining cleanroom wall panels involves regular cleaning, inspections, and repairs. The cleaning process typically includes using non-abrasive, chemical-free cleaners and microfiber cloths to avoid scratching the surface. Inspections should focus on identifying any damage or wear, while repairs may require patching or replacing damaged panels to ensure integrity.
2. What types of joints are used in cleanroom panel installation?
In cleanroom panel installation, various joint types are utilized to ensure a seamless and hygienic finish. Common types include:
Butt joints
Reveal joints
Sealed joints
These joints help minimize crevices where contaminants can accumulate while maintaining structural stability.
3. How do cleanroom panels prevent contamination?
Cleanroom panels are designed to prevent contamination through several key features. Their smooth surfaces reduce dust accumulation, while sealed joints prevent air leakage and the ingress of particles. Additionally, the materials used, such as MGO and rock wool, are often resistant to mold and bacteria, further enhancing their cleanliness.
4. What are the thermal conductivity values for cleanroom panels?
The thermal conductivity values for cleanroom panels can vary depending on the materials used. Typically, MGO panels have thermal conductivity values ranging from 0.035 to 0.045 W/mK. This low thermal conductivity ensures effective insulation, contributing to the temperature stability required in cleanroom environments.
5. How do you clean MGO cleanroom panels?
Cleaning MGO cleanroom panels involves using a mild detergent diluted in water along with a soft cloth or mop. It is essential to avoid abrasive cleaners or tools that could scratch the surface. Regular cleaning schedules should be established to maintain panel integrity and cleanliness.
6. What are the weight limitations for cleanroom panels?
Weight limitations for cleanroom panels depend on the specific panel type and the supporting structure. Generally, MGO panels are lightweight, making them easy to handle, but it is crucial to consult manufacturer specifications for precise weight limits to ensure safe installation.
7. Can MGO panels be used in pharmaceuticals?
MGO panels are highly suitable for pharmaceutical environments due to their excellent fire resistance, insulation properties, and ability to withstand rigorous cleaning protocols. Their non-toxic nature also makes them ideal for maintaining strict contamination control in such sensitive applications.
8. How do cleanroom panels impact building design?
Cleanroom panels significantly influence building design by requiring specialized layouts, materials, and construction methods. They demand careful consideration of air flow, HVAC systems, and access points to maintain cleanliness and functionality. The choice of panel materials also affects overall aesthetics and energy efficiency.
9. How do you install cleanroom panels in a ceiling?
Installing cleanroom panels in a ceiling involves a systematic approach. First, ensure the ceiling structure is robust enough to support the panels. Then, measure and cut the panels as needed. Finally, secure the panels using appropriate fasteners and seal all joints to maintain a clean environment.
10. What are MGO cleanroom panels?
MGO cleanroom panels are construction materials made from magnesium oxide, known for their fire resistance, thermal insulation, and durability. These panels are specifically designed for cleanroom applications, providing a sterile environment with minimal contamination risks.
11. What is the fire resistance rating of MGO panels?
MGO panels generally have a fire resistance rating of up to 1-2 hours, depending on their thickness and construction. This makes them suitable for environments requiring stringent fire safety standards, such as laboratories and cleanrooms.
12. Can cleanroom panels be used in laboratories?
Yes, cleanroom panels can be effectively used in laboratories. They provide a controlled environment that minimizes contamination and ensures compliance with regulatory standards. Their durability and ease of cleaning make them ideal for laboratory settings.
13. How do you seal cleanroom wall panels?
Sealing cleanroom wall panels involves using specialized sealants that are compatible with the panel materials. It is crucial to apply the sealant at all joints and edges to prevent air leaks and contamination. Regular inspections are also essential to maintain the integrity of the seals.
14. Can MGO panels be used in medical facilities?
MGO panels are highly suitable for medical facilities due to their non-toxic properties, fire resistance, and ease of cleaning. They help maintain asterile environment, making them ideal for hospitals, clinics, and other healthcare settings where contamination control is critical.
15. What is the difference between MGO panels and drywall?
The primary difference between MGO panels and drywall lies in their composition and performance characteristics. MGO panels are made from magnesium oxide, offering superior fire resistance and moisture resistance compared to traditional drywall, which is made of gypsum. Additionally, MGO panels are more durable and suitable for cleanroom applications, whereas drywall is more prone to damage and less effective in maintaining a sterile environment.
16. Can MGO panels withstand moisture?
Yes, MGO panels are designed to withstand moisture effectively. Their composition makes them resistant to water damage, mold, and mildew, which is essential in environments where humidity control is vital, such as cleanrooms and laboratories. This resistance helps maintain the integrity of the panels and the cleanliness of the environment.
17. Are MGO panels suitable for cleanrooms?
MGO panels are highly suitable for cleanrooms due to their excellent fire resistance, low thermal conductivity, and ease of cleaning. They provide a robust solution for maintaining strict cleanliness standards while offering durability and resistance to various contaminants.
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