WINTRUSTEK għandu tim professjonali u passjonat għall-klijenti tagħna, jgħinek issib l-aktar soluzzjoni xierqa.
Xiamen Wintrustek Advanced Materials Co., Ltd.
WINTRUSTEK huwa manifattur ewlieni speċjalizzat fiċ-ċeramika teknika mill-2014. Matul is-snin konna impenjati għar-riċerka, id-disinn, il-produzzjoni u l-kummerċjalizzazzjoni billi nipprovdu firxa wiesgħa ta 'soluzzjonijiet taċ-ċeramika avvanzati għal industriji li jitolbu prestazzjoni materjali eċċellenti biex jegħlbu kundizzjonijiet estremi tax-xogħol.
Materjali taċ-ċeramika tagħna jinkludu:- Ossidu tal-Aluminju - Ossidu taż-Żirkonju - Ossidu tal-Berillju - Nitrur tal-Aluminju - Nitrur tal-Boron - Nitrur tas-Silikon - Karbur tas-Silikon - Karbur tal-Boron - Macor. l-industriji li naqdu.Il-missjoni fit-tul ta 'Wintrustek hija li ttejjeb il-prestazzjoni tal-materjali avvanzati filwaqt li nżommu l-attenzjoni tagħna fuq is-sodisfazzjon tal-klijent billi nipprovdu prodotti tal-ogħla kwalità u servizz tal-ewwel klassi.
Choosing between BN and AlN for high-power electronics? Discover the critical differences in thermal conductivity, dielectric properties, and machinability.
Lanthanum hexaboride abbreviated as LaB6 ceramic is a functional ceramic material widely used in electron emission and high vacuum environment. LaB6 is typically chosen for components requiring reliable electron emission and long service life due to its low work function, strong electrical conductivity, high melting point and chemical stability under vacuum.
Boron carbide and silicon carbide are two popular material choices for wear-resistant ceramic nozzles. Both materials exhibit great hardness, good wear resistance and strong chemical stability. However, they vary in hardness, density, resistance to oxidation, resistance to impact, cost of manufacture, and conditions of service. A mix of abrasive type, blasting pressure, operation frequency, nozzle
Aluminum nitride ceramics is not only a high thermal conductivity material in general. It combines thermal conduction, electrical insulation, thermal expansion matching and mechanical stability, resulting in greater heat dissipation, stable operation and long-term durability of the power electronics and semiconductor devices.
Boron carbide ceramic (B4C) is a high performance non-oxide ceramic material. It is characterized by high hardness, low density, strong wear resistance and chemical stability. These qualities make it excellent for use in ballistic protection, wear-resistant parts, sandblasting nozzles, sealing parts, and neutron absorption parts in the nuclear industry.
For practical purposes boron carbide is not