Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics

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Overview of Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics

Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics is a synthetic porous ultralight material derived from a gel, moo motsoako oa mokelikeli o nketsoeng sebaka ke khase. Sephetho ke se tiileng se nang le letsoalo le tlase haholo le conductivity e tlase ea mocheso, hangata e bitsoang ka sefane “mosi o hoammeng.” Ho sa tsotellehe ponahalo ea eona e fokolang, e ka etsoa hore e be matla ka tsela e makatsang, e tšoereng sehlooho sa thepa e tiileng ka ho fetisisa e sireletsang lefatše.

Features of Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics

  • Boemo bo tlase ka ho Fetisisa ba Mocheso oa Lefatše: E fana ka ts'ebetso ea insulation e ke keng ea lekanngoa, e phahametseng lisebelisoa tsa setso.

  • Tekano e Tlase Haholo: E 'ngoe ea lisebelisoa tse thata ka ho fetisisa tse tsejoang ke motho, ka sebopeho sa ho fihlela ho 99.8% moea.

  • Sebaka se Phahameng se Phahameng: E na le sebaka sa ka hare se seholo ka mokhoa o makatsang, ho etsa hore e be ea bohlokoa bakeng sa lits'ebetso tsa ho tlhotla le ho monya.

  • Sebopeho se Fetohang: E ka etsoa ka thepa e fapaneng, ho akarelletsa le silika, khabone, le li-oxide tsa tšepe, e 'ngoe le e' ngoe e na le thepa e ikhethang.

  • Porosity e ikhethang: Sebopeho sa eona sa nanoporous se ikarabella bakeng sa bokhoni ba eona bo ikhethang ba ho sireletsa.

    Ho roala ha Airgel

Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics
Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics

Specifications of Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics

Requirements of Nano Aerogel Warm Insulation and Fire-resistant Pad

Sebopeho sa Lintho

The pad is made from nano aerogel composite product. This core layer uses outstanding thermal resistance. It combines silica-based aerogel with high-strength fibers. The result is a light-weight yet long lasting structure that stands up to warmth transfer successfully.

Ts'ebetso ea Mocheso

It provides exceptional warm insulation even at severe temperature levels. The product preserves stability from -200 ° C ho ea 650 °C. Conductivity ea eona ea mocheso e fokotsehile joalo ka 0.018 W/(m · K) boemong ba mocheso wa sebaka. This guarantees very little heat passes through the pad, shielding sensitive components close by.

Ho hanyetsa Mollo

The pad is non-combustible and meets strict fire security requirements. It does not ignite, qhibilihisa, or launch poisonous fumes when revealed to flame. Tested under UL 94 V-0 and various other worldwide fire ratings, it serves as a dependable thermal obstacle in emergencies.

Lintho Tsa 'Mele

Density ranges ho tloha 1 mm ho 10 mm, adjustable to fit various applications. Thickness remains reduced– between 180 kg/m six and 220 kg/m tse hlano– keeping weight marginal without giving up performance. The surface can be smooth or enhanced with fiberglass cloth for included handling toughness.

Electrical and Environmental Safety And Security

It is electrically shielding and risk-free for usage around batteries and electronics. The product resists dampness, mafome, le botsofali. It contains no halogens or heavy steels, making it environmentally friendly and compliant with RoHS and get to laws.

Lisebelisoa

Perfect for lithium-ion battery packs, EV components, power electronics, and customer devices. Engineers utilize it in between cells, under motherboard, or as a wrap around high-heat components. Its flexibility enables easy cutting and setup in limited rooms.

Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics
Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics

Applications of Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics

Applications of Nano Aerogel Warmth Insulation and Fireproof Pad for Battery and Electronics

Superior Thermal Security for Delicate Elements

Nano aerogel warm insulation pads deal unequaled thermal resistance in portable digital systems. Their ultra-light framework blocks heat transfer effectively, also at heats. This makes them optimal for usage in lithium-ion batteries, where overheating can lead to major safety and security issues.

Improved Security in Battery Loads

Battery components in electric cars and energy storage units create substantial warmth during operation. Positioning nano aerogel fire-resistant pads between private cells slows down thermal runaway. The material remains stable approximately 650 ° C and does not ignite. It additionally withstands melting or trickling, which assists include any type of possible fire within a solitary cell.

Space-Saving Style Without Sacrificing Performance

Ho fapana le li-insulator tse tloaelehileng, nano aerogel pads are extremely thin yet very reliable. They fit conveniently right into limited spaces inside mobile phones, li-laptops, and wearable tools. This allows engineers to preserve slim item accounts while still securing interior components from heat damages.

Trusted Efficiency Throughout Harsh Issues

These pads function well in extreme settings. They manage duplicated home heating and cooling down cycles without losing shape or function. Mongobo, thothomelo, and electric areas do not affect their performance. This dependability is essential for aerospace electronic devices, commercial sensors, and outdoor power equipment.

Easy Combination Into Existing Production Processes

Producers can reduce, sebopeho, and set up nano aerogel pads utilizing common devices. No special delivery or treating steps are needed. This lowers manufacturing time and price while boosting general system safety and security. Numerous business now utilize these pads as a typical component of their thermal administration method for next-generation electronic devices.

Boemo ba Khoebo

Re moetapele oa lefats'e oa konkreite e bobebe le tharollo ea foam e tsoetseng pele. E tsebahala lefatšeng ka bophara ka boitlamo ba eona ba ho etsa lipatlisiso, popontshwa, le botsebi bo sebelisitsoeng, esale re fana ka tharollo ea foam e entsoeng ka boenjiniere ho tloha qalong ea 2012.

Re ka fana ka motsoako oa boleng bo holimo oa konkreite le lihlahisoa tse amanang le konkreite ea foam lefatšeng ka bophara.

Khampani e na le lefapha la litsebi tsa theknoloji le lefapha la tlhokomelo ea boleng, laboratori e nang le lisebelisoa hantle, hape e na le lisebelisoa tse tsoetseng pele tsa tlhahlobo le setsi sa litšebeletso tsa bareki ka mor'a thekiso.

Haeba u thahasella, ka kopo ikutloe u lokolohile 'me u ikopanye le rona.

Tefo

T/T, phetiso ea chelete e bitsoang western union, Paypal, Credit Card etc.

Thomello

Ka moea, ka leoatle, ka Express, joalo ka ha bareki ba kopa.

5 FAQs of Nano Aerogel Heat Insulation and Fireproof Pad for Battery and Electronics

Lipotso Tse Botsoang Khafetsa: Nano Aerogel Heat Insulation and Fireproof Pad

What is this pad made of?

The pad uses nano aerogel as its main material. This is a very light solid with tiny air pockets inside. It also includes fire-resistant fibers to add strength and safety. Mmoho, they block heat and stop flames from spreading.

How does it protect batteries and electronics?

It acts like a thermal shield. When a battery gets too hot or catches fire, the pad slows down heat transfer. This keeps nearby parts cool and safe. It also resists direct flame contact, giving more time to react in emergencies.

Is it flexible and easy to install?

Ee. The pad is thin and bendable. U ka e khaola ka lisekere tse tloaelehileng. It fits into tight spaces around batteries, circuit boards, or power modules. No special tools are needed for installation.

E khona ho sebetsana le mocheso o phahameng?

Ruri. It works well at temperatures up to 650°C (1200°F). Even under extreme heat, it stays stable and keeps its shape. E ke ke ea qhibiliha, rothela, kapa ho ntsha mosi o chefo.

Where is this pad used?

It is used in electric vehicles, energy storage systems, drones, and consumer electronics. Any device that uses lithium-ion batteries can benefit from this pad. It helps meet safety standards and reduces fire risks in compact designs.

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