• Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
  • Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
Magnesium Hydroxide Insulation Board SMS950
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Description


Manufactured with natural brucite (Brucite, Mg(OH)₂) as its core raw material, the Magnesium Hydroxide Insulation Board integrates a scientifically formulated blend with a specialized production process, combining various inorganic materials. It represents an innovative insulation solution for the industrial sector, offering exceptional thermal insulation, superior fire resistance, light weight with high strength, and environmental safety.

 

Product Advantages

  • Fire & Thermal Performance

A1 Non-Combustible: Excellent fire resistance and thermal insulation

High Temperature Resistance: Stable performance above 1000°C without deformation

Low Thermal Conductivity: Minimizes heat loss and improves energy efficiency

Extended Fire Protection: Up to 2–3 hours fire resistance

Active Thermal Protection: Endothermic reaction forms an additional heat barrier

  • Durability & Reliability

Corrosion Resistant: Performs well in harsh chemical environments (e.g., fluorides)

Thermal Shock Resistant: Withstands rapid temperature changes without cracking

Low Water Absorption: Prevents moisture-related performance degradation

Lightweight & Strong: Easy to handle with high mechanical strength

Long Service Life: Reduces maintenance and replacement costs

  • Installation & Sustainability

Easy to Process: Can be cut, drilled, and installed on-site with high efficiency

Eco-Friendly: Free from asbestos and formaldehyde

Recyclable: Supports sustainable material use

  • Energy & Cost Benefits

Reduced Heat Loss: Lowers heat loss by 15–25%

Energy Savings: Saves 150–300 kWh per ton in aluminum electrolysis applications

 

Technical Data

Item

Index

Model

SMS950

Color

White

Specification

1000*1000mm,(cusomizable)

Thickness

10mm

Density

950±60% kg/m3

 

Material Property

Index

Test Conditions

Test Standard

Classification Temperature

600℃

 

 

Cold Crushing Strength

≥0.8Mpa 

Compression15%

GB/T13480-2014

Water content

≤3%

 

GB/T3007

Thermal Conductivity

≤0.13W/(m·K)

300℃

YB/T4130-2005

≤0.15w/(m·K)

600℃

 

Applications

Magnesium hydroxide composite boards are widely used across industrial sectors including metallurgy, chemicals, power generation, machinery, cold chain logistics, defense, transportation infrastructure, and environmental systems.

  • Metallurgy

Insulation for electrolysis cells, furnaces, flues, and waste heat recovery systems

Designed for high-temperature, heavy-duty, and fire-critical environments

  • Chemical Industry

Suitable for pipelines, reactors, storage tanks, and towers

Resistant to acids, alkalis, and harsh chemical conditions

  • Power Generation

Used in boilers, turbines, flue systems, and desulfurization/denitrification units

Enhances thermal efficiency and reduces energy costs

  • Machinery & Industrial Equipment

Ideal for kilns, drying equipment, and high-temperature molds

Adapts to complex structures and improves equipment lifespan

  • Defense & Military

Provides reliable thermal and fire protection for specialized equipment and enclosures

Ensures stable performance under extreme conditions

  • Transportation Infrastructure

Applied in rail transit platforms and tunnels

Offers thermal insulation and sound reduction with strong weather resistance

  • Environmental Protection

Used in waste incineration systems and wastewater treatment facilities

Performs reliably in corrosive and high-moisture environments

  • Cold Chain Logistics

Suitable for cold storage and refrigerated transport equipment

Combines high insulation performance with non-toxic, eco-safe properties

 

Magnesium Hydroxide Insulation Board SMS950


Manufactured with natural brucite (Brucite, Mg(OH)₂) as its core raw material, the Magnesium Hydroxide Insulation Board integrates a scientifically formulated blend with a specialized production process, combining various inorganic materials.

Conductivity@ 600℃:≤0.15W/(m·K)
Compressive Strength:≥0.8Mpa
Service Temperature: 1000℃
Density:950kg/m³

Phone: +8615138766787

Related Application

Lithium Battery

Sanhe Nano Insulation Pads are engineered for advanced thermal management in lithium-ion battery energy storage systems (ESS). Compared with conventional materials such as aerogel blankets and foam insulation, our nano microporous insulation delivers ultra-low thermal conductivity, high temperature resistance, and superior thermal stability, making it an ideal solution for battery thermal runaway protection.

Energy Storage System

Sanhe Nano Insulation Pads are engineered for advanced thermal management in lithium-ion battery energy storage systems (ESS). Compared with conventional materials such as aerogel blankets and foam insulation, our nano microporous insulation delivers ultra-low thermal conductivity, high temperature resistance, and superior thermal stability, making it an ideal solution for battery thermal runaway protection.

Cement Kiln

In the cement industry, beyond the equipment itself, one of the most critical factors is the energy consumption and heat loss of the kiln system. In a typical clinker production line, the rotary kiln operates continuously at temperatures exceeding 1000°C. Heat dissipation from the kiln shell not only wastes energy, but also directly impacts production efficiency and equipment lifespan. In recent years, more and more manufacturers have turned their attention to an advanced insulation material: nano insulation boards/Microporous Insulation Boards.

Aluminum Electrolysis Cell

In modern electrolytic aluminum production, the thermal balance and structural stability of the pot are directly related to energy consumption and pot life. As a high-performance inorganic refractory material, Sanhe vermiculite board has become a key functional layer in the cathode structure of electrolytic aluminum pots due to its high-temperature resistance, low thermal conductivity, and excellent resistance to fluoride corrosion.

Steel Ladle

Nano microporous insulation panels have thermal insulation performance that is 3 to 4 times higher than conventional materials and can withstand high temperatures. They are particularly suitable for thermal insulation in steel equipment, helping achieve energy saving and emission reduction.

Fireplace

In modern home design, a wood-burning or gas fireplace is more than just a source of heat—it’s a centerpiece that creates warmth, comfort, and ambiance. However, with flame temperatures often reaching 600°C to over 1000°C, fire safety and thermal efficiency quickly become top priorities in fireplace design.

Contact Information

Luoyang Sanhe New Material Technology Co., Ltd.

Address: No.26 Anshangwei Road, Shangcheng Strt., Yanshi District, Luoyang, Henan, China

Main Products: SH400 nano insulation board, corrosion-resistant vermiculite insulation board, battery insulation pads

Phone: +86-15138766787

Nantong Zhongbao Energy Saving Technology Co., Ltd.

Address: High-tech Zone, Hai'an City, Jiangsu Province

Main Products: SH950 and SH1150 nano insulation boards

Yanshi Subsidiary

Address: Goushi Town, Yanshi District, Luoyang City

Main Products: SH550 nano insulation board

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