Graphene

20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

Graphene, ການຄົ້ນພົບອັນຍິ່ງໃຫຍ່ຂອງສະຕະວັດທີ 21, ສະແດງໃຫ້ເຫັນເຖິງການກ້າວໄປຂ້າງຫນ້າຂອງວິທະຍາສາດວັດສະດຸ, ສະເຫນີການປະສົມປະສານທີ່ບໍ່ເຄີຍມີມາກ່ອນຂອງຄຸນສົມບັດທາງກາຍະພາບທີ່ທ້າທາຍຂອບເຂດຈໍາກັດຂອງສິ່ງທີ່ເຄີຍຄິດວ່າເປັນໄປໄດ້.

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Overview of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

Graphene ແມ່ນຊັ້ນດຽວຂອງປະລໍາມະນູກາກບອນຈັດລຽງຢູ່ໃນເສັ້ນໄຍຫົກຫລ່ຽມ, ປະກອບເປັນວັດສະດຸສອງມິຕິລະດັບທີ່ມີຄຸນສົມບັດທີ່ໂດດເດັ່ນ. ຄົ້ນພົບໃນ 2004, ຕັ້ງແຕ່ນັ້ນມາມັນໄດ້ດຶງດູດຊຸມຊົນວິທະຍາສາດແລະອຸດສາຫະກໍາຢ່າງດຽວກັນເນື່ອງຈາກການປະສົມປະສານທີ່ເປັນເອກະລັກຂອງຄວາມເຂັ້ມແຂງ, ການປະພຶດ, ແລະຄວາມຍືດຫຍຸ່ນ. Graphene ເປັນສິ່ງຈໍາເປັນອັນດຽວ, ແຜ່ນແປຂອງ graphite, ອຸ​ປະ​ກອນ​ການ​ພົບ​ເຫັນ​ຢູ່​ໃນ​ນໍາ pencil​, ແຕ່ຄຸນສົມບັດຂອງມັນແຕກຕ່າງກັນຢ່າງຫຼວງຫຼາຍເມື່ອຖືກແຍກອອກເປັນຊັ້ນປະລໍາມະນູອັນດຽວ.

Features of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

  1. ຄວາມເຂັ້ມແຂງທີ່ບໍ່ກົງກັນ: Graphene ແມ່ນວັດສະດຸທີ່ແຂງແຮງທີ່ສຸດທີ່ຮູ້ຈັກ, ມີຄວາມເຂັ້ມແຂງ tensile ປະມານ 130 gigapascals, ເກີນກວ່າເຫຼັກກ້າໂດຍປັດໃຈຫຼາຍກວ່າ 100.

  2. ຄວາມຍືດຫຍຸ່ນທີ່ສຸດ: ເຖິງວ່າຈະມີຄວາມເຂັ້ມແຂງຂອງມັນ, graphene ມີຄວາມຍືດຫຍຸ່ນສູງແລະສາມາດງໍໄດ້, ບິດ, ຫຼື rolled ໂດຍບໍ່ມີການ breaking.

  3. ການນໍາໄຟຟ້າທີ່ໂດດເດັ່ນ: ມັນດໍາເນີນການໄຟຟ້າໄດ້ດີພິເສດ, ດ້ວຍເອເລັກໂຕຣນິກເຄື່ອນທີ່ດ້ວຍຄວາມໄວໃກ້ກັບຄວາມໄວຂອງແສງ, ເຮັດໃຫ້ມັນເຫມາະສົມສໍາລັບເອເລັກໂຕຣນິກ.

  4. ການນໍາຄວາມຮ້ອນ: Graphene ຍັງເປັນຕົວນໍາຄວາມຮ້ອນທີ່ດີເລີດ, ການກະຈາຍຄວາມຮ້ອນຢ່າງມີປະສິດທິພາບ, ທີ່ເປັນປະໂຫຍດໃນຄໍາຮ້ອງສະຫມັກການຄຸ້ມຄອງຄວາມຮ້ອນ.

  5. ຄວາມໂປ່ງໃສ: ມັນເກືອບໂປ່ງໃສ, ການດູດຊຶມເທົ່ານັ້ນ 2.3% ຂອງ​ແສງ​ສະ​ຫວ່າງ​, ເຊິ່ງ, ບວກ​ກັບ​ການ​ນໍາ​ໃຊ້​ຂອງ​ຕົນ​, ເຮັດໃຫ້ມັນເຫມາະສົມສໍາລັບ electrodes ໂປ່ງໃສໃນຈໍສະແດງຜົນ.

  6. ເຄມີ inert: Graphene ມີຄວາມທົນທານສູງຕໍ່ການກັດກ່ອນແລະຄວາມຫມັ້ນຄົງພາຍໃຕ້ເງື່ອນໄຂທາງເຄມີທີ່ຫລາກຫລາຍ.

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. ເອເລັກໂຕຣນິກ: ໃນ transistors, ໜ້າຈໍສຳຜັດ, ແລະເອເລັກໂຕຣນິກທີ່ມີຄວາມຍືດຫຍຸ່ນເນື່ອງຈາກການປະພຶດແລະຄວາມຍືດຫຍຸ່ນຂອງມັນ, ອາດຈະເປັນການປະຕິວັດການອອກແບບອຸປະກອນ.

  2. ການເກັບຮັກສາພະລັງງານ: ເປັນ electrodes ໃນຫມໍ້ໄຟແລະ supercapacitors, ປັບປຸງຄວາມສາມາດໃນການເກັບຮັກສາພະລັງງານ ແລະອັດຕາການສາກໄຟ.

  3. ເຊັນເຊີ: ຄວາມອ່ອນໄຫວສູງແລະການດໍາເນີນການເຮັດໃຫ້ graphene ເຫມາະສົມສໍາລັບເຊັນເຊີເຄມີແລະຊີວະພາບ.

  4. ອົງປະກອບ: ວັດສະດຸເສີມເຊັ່ນ: ພາດສະຕິກ, ໂລຫະ, ແລະສີມັງເພື່ອເສີມຂະຫຍາຍຄວາມເຂັ້ມແຂງແລະການປະພຶດ.

  5. ການກັ່ນຕອງນ້ໍາ: ໂຄງສ້າງທີ່ບາງໆຂອງປະລໍາມະນູຂອງມັນເຮັດໃຫ້ການກັ່ນຕອງຂອງສິ່ງປົນເປື້ອນທີ່ມີປະສິດທິພາບ, ລວມທັງເກືອ, ໄວຣັສ, ແລະເຊື້ອແບັກທີເຣັຍ.

  6. ​ຢາ: ການນໍາໃຊ້ທີ່ມີທ່າແຮງປະກອບມີລະບົບການຈັດສົ່ງຢາແລະເຊັນເຊີຊີວະພາບເນື່ອງຈາກຄວາມເຂົ້າກັນໄດ້ທາງຊີວະພາບແລະຄຸນສົມບັດທີ່ເປັນເອກະລັກ.

ຂໍ້ມູນບໍລິສັດ

Graphne Aerogels ເປັນຜູ້ສະໜອງວັດສະດຸເຄມີທົ່ວໂລກທີ່ເຊື່ອຖືໄດ້ & ຜູ້ຜະລິດທີ່ມີປະສົບການຫຼາຍກວ່າ 12 ປີໃນການສະຫນອງຜະລິດຕະພັນ airgel ແລະ graphene ທີ່ມີຄຸນນະພາບສູງສຸດ.

ບໍລິສັດມີພະແນກວິຊາການມືອາຊີບແລະພະແນກກວດກາຄຸນນະພາບ, ຫ້ອງທົດລອງທີ່ມີອຸປະກອນດີ, ແລະມີອຸປະກອນການທົດສອບຂັ້ນສູງແລະສູນບໍລິການລູກຄ້າຫລັງການຂາຍ.

ຖ້າທ່ານກໍາລັງຊອກຫາ graphene ທີ່ມີຄຸນນະພາບສູງ, airgel ແລະຜະລິດຕະພັນພີ່ນ້ອງ, ກະລຸນາຮູ້ສຶກວ່າບໍ່ເສຍຄ່າເພື່ອຕິດຕໍ່ພວກເຮົາຫຼືຄລິກໃສ່ຜະລິດຕະພັນທີ່ຕ້ອງການເພື່ອສົ່ງສອບຖາມ.

ວິທີການຊໍາລະເງິນ

L/C, T/T, Western Union, Paypal, ບັດເຄຣດິດ ແລະ ອື່ນໆ.

ການຂົນສົ່ງ

ມັນສາມາດຖືກສົ່ງໂດຍທາງທະເລ, ໂດຍທາງອາກາດ, ຫຼືໂດຍການເປີດເຜີຍ ASAP ທັນທີທີ່ໃບຮັບເງິນຊໍາລະຄືນ.

FAQs of 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production

ຖາມ: Is 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production safe for the environment and human health?
ກ: ການຄົ້ນຄວ້າກ່ຽວກັບຜົນກະທົບຕໍ່ສິ່ງແວດລ້ອມແລະສຸຂະພາບຂອງ graphene ກໍາລັງດໍາເນີນຢູ່. ໃນຂະນະທີ່ graphene ຕົວຂອງມັນເອງຖືກພິຈາລະນາຂ້ອນຂ້າງ inert, ມີຄວາມເປັນຫ່ວງກ່ຽວກັບຄວາມເປັນພິດທີ່ອາດຈະເກີດຂຶ້ນຂອງ graphene oxide ແລະອະນຸພັນອື່ນໆ, ໂດຍສະເພາະໃນລະບົບນິເວດນ້ໍາ.

ຖາມ: How is 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production produced?
ກ: Graphene ສາມາດຜະລິດໄດ້ໂດຍຜ່ານວິທີການຈໍານວນຫນຶ່ງ, ລວມທັງ exfoliation ກົນຈັກ (ປອກເປືອກຊັ້ນອອກ graphite ໂດຍໃຊ້ tape adhesive), ການປ່ອຍອາຍພິດເຄມີ (CVD), ແລະການຫຼຸດຜ່ອນສານເຄມີຂອງ graphene oxide.

ຖາມ: Why is 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production not yet widely used in commercial products?
ກ: ສິ່ງທ້າທາຍໃນການຜະລິດ graphene ທີ່ມີຄຸນນະພາບສູງໃນລັກສະນະທີ່ສາມາດຂະຫຍາຍໄດ້ແລະປະຫຍັດຄ່າໃຊ້ຈ່າຍໄດ້ຂັດຂວາງການຮັບຮອງເອົາຢ່າງກວ້າງຂວາງ.. ນອກຈາກນັ້ນ, ການເຊື່ອມໂຍງ graphene ເຂົ້າໄປໃນຂະບວນການຜະລິດທີ່ມີຢູ່ແລ້ວຮຽກຮ້ອງໃຫ້ມີຄວາມກ້າວຫນ້າທາງດ້ານເຕັກໂນໂລຢີຕື່ມອີກ.

ຖາມ: Can 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production be used to make stronger and lighter materials?
ກ: ຢ່າງແທ້ຈິງ, ການເພີ່ມຂອງ graphene ກັບວັດສະດຸປະສົມຊ່ວຍປັບປຸງຄວາມເຂັ້ມແຂງແລະຄວາມແຂງຂອງມັນຢ່າງຫຼວງຫຼາຍໃນຂະນະທີ່ການຫຼຸດຜ່ອນນ້ໍາຫນັກ, ເຮັດໃຫ້ມັນເຫມາະສົມສໍາລັບອາວະກາດ, ລົດຍົນ, ແລະອຸປະກອນກິລາ.

ຖາມ: Does 20 kHz Ultrasonic Dispersing Probe for Industry Graphene Production have any limitations?
ກ: ໃນຂະນະທີ່ graphene ມີຄຸນສົມບັດທີ່ໂດດເດັ່ນ, ສິ່ງທ້າທາຍຍັງຄົງຢູ່ໃນການນໍາໃຊ້ທ່າແຮງອັນເຕັມທີ່ຂອງມັນ, ເຊັ່ນ: ບັນລຸການຜະລິດມະຫາຊົນທີ່ມີຄຸນນະພາບສູງ, ການ​ຄຸ້ມ​ຄອງ​ແນວ​ໂນ້ມ​ຂອງ​ຕົນ​ໃນ​ການ restack ໃນ​ການ​ປະ​ກອບ​, ແລະ​ແກ້​ໄຂ​ຄວາມ​ກັງ​ວົນ​ດ້ານ​ສຸ​ຂະ​ພາບ​ແລະ​ສິ່ງ​ແວດ​ລ້ອມ​ທີ່​ອາດ​ມີ​.

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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