경량 콘크리트 첨가제 | 기포 콘크리트용 고성능 발포제
제품 매개변수
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Overview of Nanoparticles Aspen Silica Aerogel and Aspen Aerogel Powder
Nanoparticles Aspen Silica Aerogel and Aspen Aerogel Powder is a synthetic porous ultralight material derived from a gel, 액체 성분이 기체로 대체된 것. 그 결과 밀도가 매우 낮고 열전도율도 낮은 고체가 탄생했습니다., 흔히 별명이 붙는다 “얼어 붙은 연기.” 연약한 모습에도 불구하고, 놀라울 정도로 강력하게 설계될 수 있습니다, 세계 최고의 단열고체소재 타이틀 보유.
Features of Nanoparticles Aspen Silica Aerogel and Aspen Aerogel Powder
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세계 최저 열전도율: 비교할 수 없는 단열 성능을 제공합니다., 기존 소재보다 훨씬 뛰어남.
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극도로 낮은 밀도: 인간에게 알려진 가장 가벼운 고체 물질 중 하나, 최대의 구성으로 99.8% 공기.
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높은 표면적: 엄청나게 넓은 내부 표면적을 보유하고 있습니다., 여과 및 흡수 응용 분야에 유용합니다..
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다양한 구성: 다양한 재료로 제작 가능, 실리카를 포함한, 탄소, 및 금속 산화물, 각각 고유한 속성을 가지고 있음.
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뛰어난 다공성: 나노다공성 구조로 인해 뛰어난 단열 성능을 발휘합니다..

에어로겔 코팅

Specifications of Nanoparticles Aspen Silica Aerogel and Aspen Aerogel Powder
Aspen Silica Aerogel Nanoparticles & 에어로젤 분말– 제품 사양
소재 구성
Aspen Silica Aerogel is made from amorphous silica (시오 2). It includes no crystalline silica. The material is highly porous and includes a three-dimensional network of nanoparticles. These particles are typically 2– 5 nanometers in dimension. The structure gives the aerogel its special properties.
Physical Type
The product can be found in two types: nanoparticle dispersion 그리고 자유롭게 흐르는 분말. The nanoparticle version is suspended in a liquid provider, usually ethanol or water-based. The powder type is completely dry, 경량, and very easy to manage. Both types keep the very same core aerogel structure.
Density and Porosity
Mass density varies from 0.03 에게 0.15 g/cm 2, 등급에 따라. 위에 90% of the quantity is air, which explains its extremely low weight. Pore dimensions fall between 10 그리고 50 나노미터, positioning them firmly in the mesoporous array. This fine pore structure restrictions warmth transfer and improves insulation performance.
열적 품질
Thermal conductivity is as low as 0.013– 0.018 W/m·K 지역 온도에서. This makes Aspen Aerogel among the best solid insulators available. Efficiency remains solid also at high temperatures approximately 400 ℃. The product does not thaw or break down under normal operating problems.
Surface and Absorption
Details surface area steps between 500 그리고 800 m²/g. This huge inner surface area permits the aerogel to absorb fluids and gases successfully. The powder type can be blended into layers, 복합재, or other matrices without losing its framework.
안전, 보안 및 취급
The product is safe and chemically inert. It does not support burning. Users must avoid creating airborne dust when managing the dry powder. Conventional laboratory security gear– 장갑, 안전 안경, and a mask– is recommended during processing.

Applications of Nanoparticles Aspen Silica Aerogel and Aspen Aerogel Powder
Applications of Nanoparticles: Aspen Silica Aerogel and Aspen Aerogel Powder
Superior Thermal Insulation for Demanding Atmospheres
Aspen Silica Aerogel delivers unequaled thermal efficiency in a light-weight kind. Its nanoporous structure traps air efficiently, slowing down heat transfer far better than standard insulation. This makes it excellent for pipelines, industrial tools, and building envelopes where room is limited yet high efficiency is needed. Customers rely on it to cut energy costs and satisfy stringent ecological criteria.
Flexible Additive for Advanced Materials
Aspen Aerogel Powder acts as a practical additive in coatings, 복합재, and specialized solutions. When blended right into paints or sealants, it boosts thermal resistance without adding considerable weight. Suppliers utilize it to produce fire-retardant products, moisture-resistant obstacles, and light-weight architectural elements. The powder incorporates smoothly right into existing production procedures, offering performance gains with minimal interruption.
Dependable Performance Throughout Industries
Both items offer fields that require consistent, long-term outcomes. 석유 및 가스 절차에서, Aspen Silica Aerogel protects subsea pipelines from extreme cold. In aerospace, it assists shield fuel tanks and avionics. The powder locates use in consumer goods also– such as outdoor gear and chilled transport– where every gram and degree matters. Each application benefits from the material’s security, 회복력, 그리고 노화에 대한 저항력.
Reduce of Use Without Concession
Unlike breakable aerogels of the past, Aspen’s engineered types are easy to take care of and install. Adaptable blankets comply with rounded surfaces. The powder streams freely and disperses evenly in mixes. These sensible attributes lower labor time and waste while maintaining the core benefits of aerogel modern technology. Individuals get innovative performance without complicated handling demands.
회사 프로필
우리는 경량 콘크리트 및 고급 엔지니어링 폼 솔루션 분야의 글로벌 리더입니다.. 연구에 대한 헌신으로 전 세계적으로 알려져 있습니다., 혁신, 및 응용 전문 지식, 우리는 2012년 초부터 엔지니어링 폼 솔루션을 제공해 왔습니다..
우리는 고품질의 콘크리트 혼화제 및 발포 콘크리트 관련 제품을 전 세계에 공급할 수 있습니다..
회사에는 전문 기술 부서와 품질 감독 부서가 있습니다., 시설이 잘 갖춰진 실험실, 첨단 테스트 장비와 애프터 서비스 센터를 갖추고 있습니다..
관심이 있으시면, 부담없이 문의해 주세요.
지불
티/티, 웨스턴 유니온, 페이팔, 신용카드 등.
선적
항공으로, 바다로, 급행으로, 고객의 요청에 따라.

5 FAQs of Nanoparticles Aspen Silica Aerogel and Aspen Aerogel Powder
자주 묻는 질문: Aspen Silica Aerogel & 에어로젤 분말
What is Aspen Silica Aerogel?
Aspen Silica Aerogel is a lightweight solid made mostly of air. It has a sponge-like structure filled with tiny pores. 이는 매우 강력한 절연 특성을 제공합니다.. 사람들은 건물에서 그것을 사용합니다., 파이프라인, and outdoor gear to stop heat loss.
How is aerogel powder different from solid aerogel?
Aerogel powder is the crushed form of solid silica aerogel. It keeps the same insulating power but can be mixed into paints, 코팅, or plastics. Solid aerogel comes in flexible blankets or rigid panels for direct use.
Why choose Aspen Aerogel over other insulators?
Aspen Aerogel works better than most common insulators like fiberglass or foam. It blocks heat with much less thickness. It also resists moisture and does not burn easily. This makes it safe and efficient in tight spaces.
에어로젤은 취급해도 안전한가요??
예, but you should wear gloves and a mask when working with the powder. The fine dust may irritate skin or lungs. Solid aerogel blankets are easier to handle and do not create dust during normal use.
Where is Aspen Aerogel used?
많은 산업분야에서 사용되고 있습니다. Oil and gas companies wrap pipes with it to save energy. Building contractors add it to walls for better insulation. Outdoor clothing brands mix the powder into fabrics to keep people warm. It also appears in electronics and aerospace where space and weight matter a lot.

























































































