Зарраҳо ва хокаҳои васеъ барои истифодаи батареяҳои нави энергетикии автомобил

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Overview of Wide Application Aerogel Particles and Powders for New Energy Vehicle Battery

Wide Application Aerogel Particles and Powders for New Energy Vehicle Battery is a synthetic porous ultralight material derived from a gel, ки дар он ҷузъи моеъ бо газ иваз карда шудааст. Дар натиҷа як сахти дорои зичии хеле паст ва гармигузаронии паст мебошад, аксар вақт лақаби “дуди яхкардашуда.” Сарфи назар аз намуди зоҳирии он, онро ба таври назаррас қавӣ сохтан мумкин аст, дорои унвони беҳтарин маводи сахти изолятсионии ҷаҳон.

Features of Wide Application Aerogel Particles and Powders for New Energy Vehicle Battery

  • Пасттарин гузариши гармӣ дар ҷаҳон: Фаъолияти беҳамтои изолятсияро таъмин мекунад, нисбат ба материалхои анъанавй хеле бартарй дорад.

  • Зичии ниҳоят паст: Яке аз сабуктарин маводи сахт, ки ба инсон маълум аст, бо таркиби то 99.8% ҳаво.

  • Майдони сатҳи баланд: Масоҳати бениҳоят калони сатҳи дохилӣ дорад, онро барои барномаҳои филтратсия ва азхудкунӣ арзишманд месозад.

  • Композицияи универсалӣ: Аз маводи гуногун сохтан мумкин аст, аз чумла кремний, карбон, ва оксидҳои металлӣ, ҳар яке дорои хосиятҳои беназир.

  • Порозияи истисноӣ: Сохтори нанопорозии он барои қобилиятҳои барҷастаи изолятсияи он масъул аст.

    Пӯшидани аэрогел

Wide Application Aerogel Particles and Powders for New Energy Vehicle Battery
Зарраҳо ва хокаҳои васеъ барои истифодаи батареяҳои нави энергетикии автомобил

Specifications of Wide Application Aerogel Particles and Powders for New Energy Vehicle Battery

Wide Application Aerogel Particles and Powders for New Power Car Batteries

Мушаххасоти асосӣ

Thermal Insulation Performance: These aerogel fragments and powders use excellent thermal insulation. They assist keep battery temperatures steady throughout rapid charging, холӣ кардан, or extreme climate condition. Their low thermal conductivity is usually listed below 0.020 В/(м · К) дар сатҳи ҳарорати фазо.

Bit Dimension and Type: Offered in great powder or granular forms. Fragment sizes range from 10 ба 500 микрометр. This permits flexible assimilation into various battery pack designs, including between cells or within module real estates.

Терапияи гидрофобӣ: Most products include hydrophobic surface therapy. This avoids dampness absorption and preserves efficiency in damp environments. Water call angles surpass 130 °, making sure lasting reliability.

Thickness and Porosity: Ultra-low density ranges from 80 ба 200 кг/м ³. High porosity– зиёда аз 90%– sustains light-weight style without giving up insulation high quality. This helps in reducing total battery pack weight, enhancing vehicle efficiency.

Устувории химиявӣ: Made from silica-based products, these aerogels withstand typical electrolytes and battery chemicals. They do not degrade under regular operating voltages and temperatures discovered in lithium-ion systems.

Муқовимат ба оташ: Aerogel bits are non-combustible and fulfill UL 94 В-0 flammability standards. They serve as a thermal obstacle to slow warm spread throughout thermal runaway occasions, boosting battery security.

Бастабандии маҳсулот ва коркард: Supplied in sealed moisture-proof bags or containers. Easy to take care of with basic commercial tools. Suitable with automated giving systems used in battery manufacturing lines.

These aerogel products support more secure, сабуктар, and more efficient new power lorry batteries. Their physical and chemical residential properties make them excellent for usage in electrical autos, автобусхо, and energy storage systems where thermal administration is critical.

Wide Application Aerogel Particles and Powders for New Energy Vehicle Battery
Зарраҳо ва хокаҳои васеъ барои истифодаи батареяҳои нави энергетикии автомобил

Applications of Wide Application Aerogel Particles and Powders for New Energy Vehicle Battery

Wide Application Aerogel Particles and Powders for New Energy Car Batteries

Thermal Defense You Can Count On

Aerogel particles and powders play a vital role in brand-new power automobile (NEV) battery systems. These materials provide outstanding thermal insulation. They assist maintain batteries at secure operating temperatures, also under extreme conditions.

Batteries in electric lorries create heat throughout billing and releasing. Without appropriate control, this heat can bring about performance loss or safety and security dangers. Aerogel-based insulation slows down warmth transfer between battery cells. This minimizes the opportunity of thermal runawaya hazardous domino effect that can trigger fires.

Lightweight and Space-Saving Layout

One major advantage of aerogel is its ultra-low density. It adds virtually no additional weight to the battery pack. This matters since every kg conserved enhances automobile array and performance. Дар айни замон, aerogel fits into tight spaces between cells. It fills up spaces without needing large equipment.

Toughness Meets Security

Unlike conventional protecting materials, aerogel stays stable throughout a wide temperature level range. Он об намешавад, кам кардан, or degrade conveniently. This makes it ideal for long-lasting use popular auto settings. Its structure likewise withstands resonance and mechanical stress and anxietytypical concerns in relocating cars.

Suppliers blend aerogel fragments into coatings or compress them into adaptable sheets. Either kind functions well inside battery components. The outcome is a more secure, extra trusted power source that fulfills today’s strict EV safety and security standards.

With rising demand for high-performance electrical lorries, aerogel fragments and powders have come to be necessary parts in next-generation battery layout. They support quicker billing, умри дарозтар, and better general safetywithout adding intricacy or weight.

Чеҳраи Ширкат

Мо пешвои ҷаҳонии бетонҳои сабук ва ҳалли пешрафтаи пенопласт ҳастем. Дар саросари ҷаҳон бо ӯҳдадории худ ба тадқиқот маълум аст, навоварӣ, ва таҷрибаи амалӣ, мо аз аввали соли 2012 ҳалли муҳандисии кафкро пешниҳод менамоем.

Мо метавонем дар тамоми ҷаҳон маҳсулоти омехтаи бетонии баландсифат ва пенобетонро таъмин кунем.

Ширкат дорои шӯъбаи касбии техникӣ ва шӯъбаи назорати сифат мебошад, лабораторияи хуб чихозонидашуда, ва бо таҷҳизоти пешрафтаи санҷишӣ ва маркази хидматрасонии муштариён пас аз фурӯш муҷаҳҳаз шудааст.

Агар шумо таваҷҷӯҳ дошта бошед, лутфан озод ҳис кунед ва бо мо тамос гиред.

Пардохт

Т/Т, Вестерн Юнион, Paypal, Корти кредитӣ ва ғ.

Интиқол

Бо ҳаво, бо баҳр, бо экспресс, тавре ки мизоҷон дархост мекунанд.

Wide Application Aerogel Particles and Powders for New Energy Vehicle Battery
Зарраҳо ва хокаҳои васеъ барои истифодаи батареяҳои нави энергетикии автомобил

5 FAQs of Wide Application Aerogel Particles and Powders for New Energy Vehicle Battery

Frequently Asked Questions About Aerogel Particles and Powders for New Energy Vehicle Batteries

What are aerogel particles and powders used for in EV batteries?

Aerogel particles and powders provide excellent thermal insulation inside battery packs. They help keep heat from spreading between cells. This lowers the risk of overheating and improves overall safety.

Чаро аэрогелро аз дигар масолеҳи изолятсия интихоб кунед?

Aerogels are extremely lightweight and have very low thermal conductivity. They take up less space than traditional insulators but offer better heat resistance. This makes them ideal for tight spaces in modern battery designs.

Are aerogel materials safe for use in vehicles?

Бале. These materials are non-toxic, химиявй устувор аст, and do not release harmful gases under normal operating conditions. They also meet strict automotive safety standards for flammability and durability.

How do aerogel powders improve battery performance?

By slowing down heat transfer, aerogel powders help maintain a stable temperature across all battery cells. This leads to more consistent charging and discharging. It also extends the battery’s service life.

Can these materials be used in different types of EV batteries?

Комилан. Aerogel particles and powders work well with lithium-ion, solid-state, and other next-generation battery chemistries. Their flexible form allows easy integration into various module layouts and pack structures.

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