개요 1-2 mm 나노 입자 내화성 소수성 실리카 에어로젤 코팅 나노 신 에너지 자동차 에어로젤 담요
1-2 mm Nano-Particles Fireproof Hydrophobic Silica Aerogel Coating Nano New Energy Cars Aerogel Blanket integrates the world’s best insulation properties into a thin, 보호층. 이 고급 소재는 최소한의 두께로 표면을 변형합니다., 까다로운 산업 분야에서 높은 열 저항을 가능하게 합니다., 건설, 공간과 무게가 중요한 항공우주 응용 분야.
특징 1-2 mm 나노 입자 내화성 소수성 실리카 에어로젤 코팅 나노 신 에너지 자동차 에어로젤 담요
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뛰어난 열 성능: 최소한의 적용 두께로 탁월한 단열 제공.
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소수성 & 보호: 물을 밀어내고 부식 및 풍화에 대한 저항성을 제공합니다..
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유연한 & 순응하는: 복잡한 기하학적 구조와 기판에 완벽하게 접착됩니다..
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경량 & 공간 효율적: 효율성을 저하시키지 않으면서 단열재 부피를 대폭 줄입니다..
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튼튼한 & 오래 지속되는: 기계적 스트레스와 극한의 온도에서도 성능 무결성을 유지합니다..

(1-2 mm 나노 입자 내화성 소수성 실리카 에어로젤 코팅 나노 신 에너지 자동차 에어로젤 담요)
Specification of 1-2 mm 나노 입자 내화성 소수성 실리카 에어로젤 코팅 나노 신 에너지 자동차 에어로젤 담요
This fire resistant hydrophobic silica aerogel layer utilizes nano-particles sized in between 1 그리고 2 mm. It is produced brand-new power automobiles to improve safety and security and performance. The coating pushes back water well due to its hydrophobic nature. This maintains dampness far from sensitive components. It additionally resists high warm thanks to its fireproof layout. That assists safeguard battery systems and various other parts throughout extreme conditions.
The product is light but strong. It adds virtually no additional weight to the vehicle. This matters a great deal for electric lorries where every gram counts. The aerogel blanket type fits conveniently around curved or uneven surface areas. Installers can cut it to size without unique devices. 철판에 잘 붙네요, 플라스틱, and composite products used in modern vehicles.
Inside the blanket, billions of small air pockets catch heat. This provides it outstanding thermal insulation. It reduces heat transfer so the inside stays cool down also when outdoors temperature levels increase. That enhances battery life and lowers cooling down tons on the automobile’s system. The nano-structure likewise blocks flame spread. In situation of fire, it acts as a barrier to slow points down.
Suppliers check this finishing under difficult problems. It holds up versus vibration, 수분, and duplicated heating cycles. It does not fracture or peel gradually. The surface stays dry and tidy because dirt and water slide off. Maintenance is straightforward– just wipe it down if needed.
This product meets rigorous safety and security requirements for automotive use. It works well in both cold and hot climates. Auto makers use it near batteries, electric motors, and power electronic devices. It provides peace of mind by adding a layer of protection that is thin, 적응할 수 있는, and trustworthy. The finish sustains longer driving array and more secure procedure for new power cars.

(1-2 mm 나노 입자 내화성 소수성 실리카 에어로젤 코팅 나노 신 에너지 자동차 에어로젤 담요)
응용 1-2 mm 나노 입자 내화성 소수성 실리카 에어로젤 코팅 나노 신 에너지 자동차 에어로젤 담요
This fire-resistant hydrophobic silica aerogel layer uses 1– 2 mm nanoparticles to provide solid security for new energy lorries. The product is very light and has really reduced thermal conductivity. It maintains warmth inside or outside as required. This assists manage battery temperature and boosts security.
The coating repels water well. Rainfall, 눈, or roadway spray will certainly not saturate into it. Wetness remains on the surface area and rolls off. This maintains sensitive components dry and working right. The hydrophobic feature likewise stops corrosion and mold from developing gradually.
Because it is made from silica aerogel, the covering resists fire. It does not shed easily and reduces flame spread. This offers additional time throughout emergencies. Battery packs and electric systems stay more secure under high warmth or short-circuit conditions.
The aerogel blanket form fits snugly around rounded or irregular surfaces. It wraps around battery components, motors, and power electronics without gaps. Setup is basic and adds little weight to the car. That suggests far better power effectiveness and longer driving array.
This nano-coating operate in severe cold and hot weather. 부터 안정적으로 유지됩니다. -200 ° C 이상 600 ℃. Efficiency does not drop over time. The material also obstructs sound a bit, which makes the cabin quieter.
New energy car manufacturers use this finish to fulfill rigorous security policies. It shields versus thermal runaway in batteries. It also reduces upkeep demands due to the fact that it withstands dirt, water, and wear. Vehicle drivers obtain a more trusted and safer experience.
The 1– 2 mm fragment dimension offers the best balance of stamina, 유연성, and insulation. Smaller sized particles might not stand up well. Larger ones can leave weak spots. This size works smoothly in real-world driving conditions.
회사 프로필
Graphne Aerogels는 신뢰받는 글로벌 화학 소재 공급업체입니다. & 12년 이상의 초고품질 에어로젤 및 그래핀 제품 공급 경험을 보유한 제조업체.
회사에는 전문 기술 부서와 품질 감독 부서가 있습니다., 시설이 잘 갖춰진 실험실, 첨단 테스트 장비와 애프터 서비스 센터를 갖추고 있습니다..
고품질 그래핀을 찾고 있다면, 에어로젤 및 관련 제품, 언제든지 저희에게 연락하시거나 필요한 제품을 클릭하여 문의사항을 보내주세요..
결제 방법
신용장, 티/티, 웨스턴 유니온, 페이팔, 신용카드 등.
선적
그것은 바다로 발송될 수 있었습니다, 비행기로, 또는 상환 영수증이 나오는 대로 최대한 빨리 공개하십시오..
5 FAQ 1-2 mm 나노 입자 내화성 소수성 실리카 에어로젤 코팅 나노 신 에너지 자동차 에어로젤 담요
이 코팅은 무엇으로 만들어졌나요??
It uses 1-2 mm nano-particles of silica aerogel. This material is very light and full of tiny air pockets. It blocks heat well and repels water.
How does it protect new energy cars?
The coating acts as a fire barrier. It slows down heat transfer during battery fires. It also keeps moisture away from sensitive parts. This helps the car stay safe in extreme conditions.
신청하기 쉽나요??
예. The coating comes as a thin blanket. You can wrap it around battery packs or line it inside compartments. It fits tight spaces without adding much weight.
Why choose hydrophobic silica aerogel over other materials?
Most insulators absorb water. Wet insulation loses its heat resistance. This aerogel stays dry because it pushes water away. Its performance stays strong even in humid weather.
Does it last long?
It holds up well over time. The nano structure stays stable under high heat and vibration. It does not break down quickly like some foams or fibers. This means fewer replacements and lower maintenance costs.

(1-2 mm 나노 입자 내화성 소수성 실리카 에어로젤 코팅 나노 신 에너지 자동차 에어로젤 담요)





















































































