Grafen

20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

Grafen, tímamótauppgötvun 21. aldar, táknar stökk fram á við í efnisfræði, bjóða upp á áður óþekkta samsetningu eðlisfræðilegra eiginleika sem ögra takmörkum þess sem áður var talið mögulegt.

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Overview of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

Grafen er eitt lag af kolefnisatómum sem raðað er í sexhyrndar grindur, mynda tvívítt efni með ótrúlega eiginleika. Uppgötvuð í 2004, það hefur síðan heillað vísindasamfélagið og iðnaðinn vegna einstakrar samsetningar styrks, leiðni, og sveigjanleika. Grafen er í rauninni einn, flatt grafítblað, efnið sem er að finna í blýanti, en eiginleikar þess eru mjög mismunandi þegar þeir eru einangraðir í eitt atómlag.

Features of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

  1. Óviðjafnanlegur styrkur: Grafen er sterkasta þekkta efnið, með togstyrk u.þ.b 130 gígapascals, fara fram úr stáli með stuðli yfir 100.

  2. Mikill sveigjanleiki: Þrátt fyrir styrk sinn, grafen er mjög sveigjanlegt og hægt að beygja það, snúið, eða rúllað án þess að brotna.

  3. Óvenjuleg rafleiðni: Það leiðir rafmagn einstaklega vel, með rafeindum sem hreyfast á hraða sem nálgast ljóshraða, sem gerir það tilvalið fyrir rafeindatækni.

  4. Varmaleiðni: Grafen er líka frábær hitaleiðari, dreifa hita á skilvirkan hátt, gagnlegt í hitastjórnunarforritum.

  5. Gagnsæi: Það er næstum gegnsætt, aðeins gleypa 2.3% af ljósi, sem, ásamt leiðni þess, gerir það hentugt fyrir gagnsæ rafskaut í skjáum.

  6. Efnafræðilega óvirk: Grafen er mjög tæringarþolið og stöðugt við margs konar efnafræðilegar aðstæður.

20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

(20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production)

Specification of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

The 20 kHz ultrasonic spreading probe is constructed for commercial graphene production. It uses high-frequency sound waves to disintegrate and uniformly spread graphene in liquids. This procedure helps make stable diffusions without damaging the graphene structure. The probe operates at a regularity of 20,000 cycles per secondly. That regularity is strong sufficient to separate graphene layers however mild enough to maintain them intact.

The probe tip is made from titanium alloy. This material stands up to wear and corrosion, even throughout long terms. It connects to a generator that provides regular power. Power result varieties from 500 to 2000 watts. Individuals can adjust the amplitude to match their specific requirements. This control aids tweak the diffusion high quality.

Cooling is dealt with via an incorporated system. It maintains the probe and example at safe temperatures. Overheating can mess up the graphene or decrease manufacturing. The cooling configuration stops that. Operation is straightforward. Workers place the probe into a container or circulation cell. They start the system and let it run. No added actions are needed.

This probe matches existing assembly line. It collaborates with water-based or solvent-based mixes. Set or continuous handling is feasible. Cleaning up takes simply a couple of minutes. Upkeep is reduced. The style prevents intricate components that usually stop working.

Industries utilize this tool to make conductive inks, compounds, batteries, and coverings. Great diffusion implies far better efficiency in the final product. The probe delivers consistent outcomes every single time. It lowers waste and conserves time. Manufacturing scales smoothly from lab to complete factory size. Operators obtain dependable output without continuous monitoring.

20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

(20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production)

Applications of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

The 20 kHz ultrasonic spreading probe plays an essential duty in industrial graphene production. It utilizes high-frequency acoustic waves to disintegrate graphite into thin layers of graphene. This method works quickly and gives regular results. The probe develops strong cavitation in fluids. This action helps separate graphene sheets without harming them.

Graphene made in this manner maintains its electrical and mechanical properties. That matters for making batteries, sensors, and compounds. The probe blends well with solvents and surfactants. This mix stops the graphene sheets from sticking back with each other. The process runs at area temperature level. It does not require harsh chemicals or high stress.

Manufacturing facilities utilize this probe since it ranges quickly. Little batches in laboratories can transfer to complete assembly line without big changes. The system fits into existing mixing storage tanks. It also utilizes much less power than various other techniques like round milling or chemical peeling. Upkeep is straightforward. The probe has couple of moving parts and lasts a long period of time.

Operators manage the strength and time of sonication. This allows them tweak the density and dimension of the graphene flakes. Quality remains high across big volumes. The result fulfills criteria for electronics and innovative products.

This ultrasonic approach cuts down on waste. It also stays clear of hazardous byproducts. That makes it much safer for employees and better for the setting. Numerous producers now pick it over older strategies. It delivers pure graphene much faster and with much less expense. The 20 kHz regularity hits the right balance in between power and control. It offers dependable efficiency day after day in busy plants.

Applications of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

  1. Raftæki: Í smára, snertiskjáir, og sveigjanleg rafeindatækni vegna leiðni þess og sveigjanleika, hugsanlega gjörbylta hönnun tækja.

  2. Orkugeymsla: Sem rafskaut í rafhlöðum og ofurþéttum, bæta orkugeymslugetu og hleðsluhraða.

  3. Skynjarar: Mikil næmi og leiðni gerir grafen tilvalið fyrir efna- og líffræðilega skynjara.

  4. Samsett efni: Styrkingarefni eins og plast, málma, og steypu til að auka styrk og leiðni.

  5. Vatnssíun: Atómþunn uppbygging þess gerir skilvirka síun á mengunarefnum, þar á meðal sölt, vírusa, og bakteríur.

  6. Lyf: Hugsanleg notkun felur í sér lyfjagjafakerfi og lífskynjara vegna lífsamrýmanleika þess og einstakra eiginleika.

Fyrirtækjasnið

Graphne Aerogels er traustur alþjóðlegur birgir efnaefna & framleiðandi með yfir 12 ára reynslu í að útvega frábær hágæða loftgel og grafen vörur.

Fyrirtækið hefur faglega tæknideild og gæðaeftirlitsdeild, vel útbúin rannsóknarstofu, og búin háþróuðum prófunarbúnaði og þjónustuveri eftir sölu.

Ef þú ert að leita að hágæða grafeni, loftgel og tengdar vörur, vinsamlegast hafðu samband við okkur eða smelltu á nauðsynlegar vörur til að senda fyrirspurn.

Greiðslumáti

L/C, T/T, Western Union, Paypal, Kreditkort o.fl.

Sending

Það gæti verið flutt sjóleiðina, með flugi, eða með því að sýna ASAP um leið og endurgreiðslu hefur borist.

FAQs of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

Q: Is 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production safe for the environment and human health?
A: Rannsóknir á umhverfis- og heilsuáhrifum grafens standa yfir. Þó að grafen sjálft sé talið tiltölulega óvirkt, áhyggjur eru uppi varðandi hugsanleg eituráhrif grafenoxíðs og annarra afleiða, sérstaklega í vatnavistkerfum.

Q: How is 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production produced?
A: Grafen er hægt að framleiða með nokkrum aðferðum, þar á meðal vélræn flögnun (Fjarlægðu lögin af grafítinu með því að nota límband), efnagufuútfelling (CVD), og efnafræðileg afoxun grafenoxíðs.

Q: Why is 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production not yet widely used in commercial products?
A: Áskoranir við að framleiða hágæða grafen á stigstærðan og hagkvæman hátt hafa hindrað víðtæka upptöku þess. Auk þess, að samþætta grafen í núverandi framleiðsluferli krefst frekari tækniframfara.

Q: Can 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production be used to make stronger and lighter materials?
A: Algjörlega, Viðbót grafens við samsett efni bætir verulega styrk þeirra og stífleika en dregur úr þyngd, sem gerir þá tilvalin fyrir flugrými, bifreiða, og íþróttabúnaði.

Q: Does 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production have any limitations?
A: Þó að grafen hafi framúrskarandi eiginleika, enn eru áskoranir við að nýta möguleika sína til fulls, eins og að ná hágæða fjöldaframleiðslu, stjórna tilhneigingu sinni til að stafla aftur í samsett efni, og taka á hugsanlegum heilsu- og umhverfisáhyggjum.

5 FAQs of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

What is a 20 kHz ultrasonic dispersing probe used for in graphene production?
It breaks down graphene agglomerates in liquid. This helps make stable, uniform dispersions needed for coatings, composites, or inks.

Why choose 20 kHz frequency?
Lower frequencies like 20 kHz create stronger cavitation. This gives more energy to separate graphene layers without damaging them too much.

How does it improve graphene quality?
The probe evenly spreads graphene sheets in solvent. This reduces clumping and keeps the material’s electrical and mechanical properties intact.

Is it suitable for large-scale production?
Yes. Industrial probes run continuously and handle high volumes. They work with batch or flow-through systems for consistent output.

What maintenance does the probe need?
Check the tip for wear regularly. Clean it after each use to avoid buildup. Replace worn parts to keep performance steady.

The probe uses high-intensity sound waves. These waves form tiny bubbles that collapse and push graphene apart. This method works faster than stirring or shaking. It also uses less energy over time. Operators control power and time to match their material needs. The system fits into existing production lines. It works with water or organic solvents. Safety guards protect users from noise and vibration. Most units include cooling to manage heat during long runs. Graphene made this way meets industry standards for purity and layer count. Users see better results in final products like batteries or sensors. The process cuts waste and saves raw materials. It also lowers the need for extra chemicals. Companies get reliable output with less downtime. Training takes only a few hours. Support teams help with setup and troubleshooting. Spare parts are easy to order. The probe lasts years with proper care.

20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

(20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production)

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