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2Pcs Boron Nitride Paste 3D Printer Accessories Must-Have Tool Improve Heat Conduction: 2x4cc/2x4g Thermal Silicone Grease Maintain Stable Temperature for Hotter 3D Printing Heatbreak Bczamd

KWD 7

Brand
Imdinnogo
Weight
59 g
1 +

Special Features

  • 1. Use the included applicator to coat the cartridge heater hole in your 3D printer part heat block. Insert the cartridge heater while the paste is still wet, then let dry. The boron nitride boosts heat dissipation from the cartridge heater's hot section, improving its life.
  • 2. Thermally conductive silicone grease is a highly thermally conductive and insulating silicone material that is virtually uncured. It can be used at temperatures from -50℃ to +200℃ for a long time to maintain the state of grease. Both has excellent electrical insulation, but also have excellent thermal conductivity, at the same time has a low free degree (tends to zero), high and low temperature resistance, water resistance, ozone resistance.
  • 3. It can also be used for power amplifiers, transistors, tubes, CPUs, and other electronic raw materials. Devices such as power amplifiers, transistors, electronic tubes, CPUs, and other electronic raw materials for thermal conductivity and heat dissipation, thus ensuring the electrical performance of electronic instruments, meters, and other Stability.
  • 4. Storage and expiration date: Stored in a cool and dry place under 25℃, the validity period is 24 months, after the storage period, if the test is qualified, it can still be used.
  • 5. Note: For the same hot end, each 4g of thermally conductive silicone grease can be used 4-5 times, and the working time after each application depends on the working temperature of your hot end, this product can work in the range of -50℃-200℃ for a long time, short-term working temperature -60℃-300℃ for a short time.

Description

Packages Include:
2 Pcs Thermal Silicone Grease

Improved Thermal Performance
Reliable Potting Solution
Formulated For Safety
Water-Soluble Cleanup

This silicon nitride grease enhances heat transfer between components, ensuring that the printer is working at maximum capacity and distributing heat evenly from the thermal block, resulting in the highest quality prints in the shortest possible time. Additionally, unlike occlusion-resistant compounds, boron nitride does not conduct electricity, which eliminates the risk of short-circuiting the heater cartridge or thermistor. The boron nitride particles in our compounds are in aqueous suspension. Once heated, the liquid portion of the suspension evaporates, leaving behind a crumbly clay-like paste.

Recommendations for application areas:
High-power heating electronics, heating tubes, heating plates
Thermistors, CPU chips
Electronic refrigeration chip thermal conductive filling
PTC heating ceramic thermal conductive filling
Oven, electric kettle, thermoplastic machine

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