3M Advanced Materials Division 3M™ Boron Nitride

Description
3M boron nitride cooling fillers provide a unique opportunity to improve the efficiency of thermally conductive polymers while maintaining electrical resistivity of an insulator. Ongoing miniaturization and large-scale production of electronic components requires materials that can quickly and effectively dissipate and transfer heat within an extremely small space. On their own, lightweight plastics have limitations when it comes to the transfer of thermal energy, but polymers incorporating 3M boron nitride cooling fillers can achieve thermal conductivities of up to 15 W/m*K in-plane and 4 W/m*K through-plane. In high performance applications, 3M boron nitride cooling fillers offer a lower cost-in-use than conventional mineral- and oxide-based filled compounds. Our engineered particle geometry provides optimum processability for injection molding and extrusion, even at high loading levels. Boron nitride-filled polymers cool more quickly during production, helping increase throughput. The low density and inherent electrically insulating properties of 3M boron nitride cooling fillers allow for the production of lighter, thinner parts and simpler, more compact designs. They may even eliminate the need for heat sinks, fans or heat-dissipating aluminum foils in some applications.
Description
3M boron nitride cooling fillers provide a unique opportunity to improve the efficiency of thermally conductive polymers while maintaining electrical resistivity of an insulator. Ongoing miniaturization and large-scale production of electronic components requires materials that can quickly and effectively dissipate and transfer heat within an extremely small space. On their own, lightweight plastics have limitations when it comes to the transfer of thermal energy, but polymers incorporating 3M boron nitride cooling fillers can achieve thermal conductivities of up to 15 W/m*K in-plane and 4 W/m*K through-plane. In high performance applications, 3M boron nitride cooling fillers offer a lower cost-in-use than conventional mineral- and oxide-based filled compounds. Our engineered particle geometry provides optimum processability for injection molding and extrusion, even at high loading levels. Boron nitride-filled polymers cool more quickly during production, helping increase throughput. The low density and inherent electrically insulating properties of 3M boron nitride cooling fillers allow for the production of lighter, thinner parts and simpler, more compact designs. They may even eliminate the need for heat sinks, fans or heat-dissipating aluminum foils in some applications.

Suppliers

Company
Product
Description
Supplier Links
3M™ Boron Nitride -  - 3M Advanced Materials Division
St. Paul, MN, USA
3M™ Boron Nitride
3M™ Boron Nitride
3M boron nitride cooling fillers provide a unique opportunity to improve the efficiency of thermally conductive polymers while maintaining electrical resistivity of an insulator. Ongoing miniaturization and large-scale production of electronic components requires materials that can quickly and effectively dissipate and transfer heat within an extremely small space. On their own, lightweight plastics have limitations when it comes to the transfer of thermal energy, but polymers incorporating 3M boron nitride cooling fillers can achieve thermal conductivities of up to 15 W/m*K in-plane and 4 W/m*K through-plane. In high performance applications, 3M boron nitride cooling fillers offer a lower cost-in-use than conventional mineral- and oxide-based filled compounds. Our engineered particle geometry provides optimum processability for injection molding and extrusion, even at high loading levels. Boron nitride-filled polymers cool more quickly during production, helping increase throughput. The low density and inherent electrically insulating properties of 3M boron nitride cooling fillers allow for the production of lighter, thinner parts and simpler, more compact designs. They may even eliminate the need for heat sinks, fans or heat-dissipating aluminum foils in some applications.

3M boron nitride cooling fillers provide a unique opportunity to improve the efficiency of thermally conductive polymers while maintaining electrical resistivity of an insulator. Ongoing miniaturization and large-scale production of electronic components requires materials that can quickly and effectively dissipate and transfer heat within an extremely small space. On their own, lightweight plastics have limitations when it comes to the transfer of thermal energy, but polymers incorporating 3M boron nitride cooling fillers can achieve thermal conductivities of up to 15 W/m*K in-plane and 4 W/m*K through-plane.

In high performance applications, 3M boron nitride cooling fillers offer a lower cost-in-use than conventional mineral- and oxide-based filled compounds. Our engineered particle geometry provides optimum processability for injection molding and extrusion, even at high loading levels. Boron nitride-filled polymers cool more quickly during production, helping increase throughput. The low density and inherent electrically insulating properties of 3M boron nitride cooling fillers allow for the production of lighter, thinner parts and simpler, more compact designs. They may even eliminate the need for heat sinks, fans or heat-dissipating aluminum foils in some applications.

Supplier's Site

Technical Specifications

  3M Advanced Materials Division
Product Category Specialty Ceramics
Product Name 3M™ Boron Nitride
Specialty Ceramic Type Boron Nitride
Unlock Full Specs
to access all available technical data

Similar Products

Resifa™ M.S. (Microsphere) Gel™ -  - AGC Chemicals Americas, Inc.
AGC Chemicals Americas, Inc.
Specs
Shape / Form Precursor or Sol-gel
Applications Chemical or material processing; Cosmetics
View Details
Aluminum nitride ceramic materials -  - Fountyl Technologies Pte. Ltd.
Fountyl Technologies Pte. Ltd.
Specs
Specialty Ceramic Type Aluminum Nitride
Shape / Form Custom Shape
Thermal Conductivity 170 W/m-K (98.22 BTU-ft/hr-ft²-F)
View Details
Direct Plated Copper Substrate -  - Xiamen Innovacera Advanced Materials Co., Ltd.
Xiamen Innovacera Advanced Materials Co., Ltd.
Specs
Applications Superior high-frequency characteristics
View Details
Ceramic Piston -  - Suntech Applied Materials (Hefei) Co.,Ltd
Suntech Applied Materials (Hefei) Co.,Ltd
Specs
Specialty Ceramic Type Zirconia
View Details