Nano-titanium nitride/ Nano TiN 20nm 99.9%
Babban halayenNano-titanium nitride ultrafine titanium nitride foda wanda aka shirya ta hanyar tsari na musamman, tsarki mai yawa, ƙaramin rarrabawar ƙananan barbashi, babban yanki na saman, aikin saman, nitrogen mai yawa (> 35%), zafin jiki mai yawa, juriya ga iskar shaka, babban tauri, kyakkyawan sha na aikin infrared (80%), garkuwar UV ta fi 85% za a iya amfani da ita a saman rufin rufi da membrane na yumbu na mota, rufin zafi da tasirin zafin jiki. Kayan yana da kyakkyawan watsa wutar lantarki, ana iya amfani da shi azaman na'urorin lantarki na electrolysis na gishiri da hulɗar lantarki da sauran kayan sarrafawa, don yumbu mai tauri da kuma yumbu mai tsari mai zafi, tasirin yana da kyau sosai.
1. Roba da aka yi amfani da shi a kan kayan marufi a cikin shingen nano-titanium nitride yana magance halayen rawaya na aikace-aikacen: haɗin fasahar shingen nano-TiN, Nano-TiN da resin haɗin gwiwa don samar da kayan haɗin gwiwa, waɗannan ƙananan ƙwayoyin cuta sun sami damar toshe gibin ƙwayoyin cuta, yaduwar iskar gas yana da wahalar shiga, ta haka yana haɓaka halayen shingen na resin, filastik. Idan aka ƙara yawan kayan nano yana da ƙanƙanta sosai, ana iya amfani da wannan kayan kai tsaye akan tsarin da ke akwai daban-daban, kuma ba kwa buƙatar sabunta kayan aiki. Ƙara rabon dubu ɗaya na Du na iya tabbatar da bayyanar polyester mai haske, bayyananne, halayen shinge sun ƙaru da fiye da sau 8, saboda yawan nitrogen na titanium nitride, titanium nitride slurry mai warwatse yana da shuɗi mai haske ba tare da ƙara wani launi na kayan ƙanshi ba, yana iya ɓoye halayen rawaya na polyester da kansa (rawar rawaya ta dindindin), rage abokin ciniki don ƙara adadi mai yawa na wakilai masu launi, don rage farashi;
2. Aikace-aikacen filastik na PET: ƙaramin adadin foda na nano-titanium nitride da ake amfani da shi a fannin injiniyan thermoplastics kamar PET, PA, da sauransu, ana iya amfani da shi azaman wakilin nucleating na crystallization don amfani da tura nano-titanium nitride zuwa cikin nano-watse tare da ethylene glycol slurry, mafi kyawun watsa na nano-titanium nitride da robobi na injiniya na PET ta hanyar polymerization, na iya hanzarta ƙimar crystallization na filastik na PET sosai, yana mai da shi ƙira mai sauƙi, don faɗaɗa iyakokin amfani da robobi na injiniya na PET. A lokaci guda, an inganta yawan watsa barbashi na nano-titanium nitride da PET sosai, juriyar tasiri na robobi na injiniya na PET saboda tasirin nanometer;
3. aikace-aikacen shafi mai zafi mai zafi mai zafi: babban kayan shafi mai zafi mai zafi mai yawan nitrogen kamar yadda ake amfani da shi a cikin babban zafin jiki, ƙara kayan aiki zuwa ga haɓaka kayan shafa tare da fenti da aka shirya ta hanyar fesawa ta plasma. An inganta ƙimar aikin radiation na zafi sosai, ana amfani da samfurin galibi a cikin tanda mai zafi mai zafi mai adana makamashi, soja;
4. haɓaka kayan solder marasa gubar, haɗa tin titanium nitride mai kama da na titanium, azurfa, jan ƙarfe, ƙarfe na zinc, zafin narkewa ƙasa da 200 ° C, samar da ƙarfe ya fi daidaito, yana rage zafin maganin oxide mai ƙarfi na 30 ° C, zai iya cimma zafin solder na asali na tin-lead, idan za mu iya ƙara inganta shigar ciki, mafi girman amfani da wahalar warware solder mara gubar da ke akwai;
5. Shirya kayan lantarki masu kore ba za a iya amfani da chromium da sauran abubuwa masu cutarwa ba kamar gubar, cadmium, haɗin zafi mai yawa, ba tare da gubar ba a gilashin lokaci, hanyar yumbu ta cadmium, marufi da gilashin frit matsalar ita ce haɗakar ƙarfi ta babban zafin jiki, wurin laushi mai yawa, zafin jiki mai yawa a cikin faranti don samun damar shiga micro titanium nitride nanopowder don yin zafin amsawar ƙarfi na ƙasa da 200 ° C, koda kuwa ƙasa da 50 ℃, za a iya amfani da kayan aikin da ake da su, babban ci gaba ne. Titanium dioxide da maganin sa mai ƙarfi shine abun da ke cikin kayan lantarki, nau'in nano na gabatarwar maye gurbi na iya zama da amfani don kawo aikin; Dokokin gurɓata muhalli na bromine (Br) 6 sun takaita amfani da polymers na benzene, ga na'urar hana wuta ta lantarki, sassan kwarangwal na filastik suna haifar da matsaloli a fannin injiniyan robobi don ƙara ƙaramin adadin silicon nitride, silicon carbide, titanium nitride, nanopowder na titanium carbide, ba wai kawai don ƙara ƙarfin injiniya ba, lalacewa, zafi da sauran kaddarorin, kamar maye gurbin da ke ɗauke da kaddarorin kayan hana wuta na bromine, amfani da polymers na halitta babban ci gaba ne; Sauran fannoni na aikace-aikacen: a cikin kayan aikin yankewa na nanocomposite, carbide, kayan aikin yumbu mai zafi mai zafi, kayan da ke jure zafi, kayan da aka ƙarfafa watsawa, ana iya amfani da su ga mai haɓaka lantarki don ƙwayoyin mai, kayan anti-static da yumbu mai sarrafawa.
| Ana rarraba samfura | Samfuri | Matsakaicin girman ƙwayoyin cuta (nm) | Tsarkaka (%) | Faɗin saman takamaiman (m2/ g) | Yawan yawa (g / cm3) | Maɗaukaki | Launi |
| Nanoscale | TiN-001 | 20 | > 99.9 | 60.2 | 0.12 | Cube | Baƙi |
| Submicron | TiN-002 | 700 | > 99.8 | 10.0 | 2.30 | Cube | Rawaya mai haske |
| Nau'in mai yawan sinadarin nitrogen | TiN-003 | 700 | > 99.8 | 10.6 | 2.30 | Cube | Rawaya |
| 1. | nano-silicon nitride / nano Si3N4 20nm 99.9% |
| 2. | nitride nano-aluminum / nano AlN 30nm 99.9% |
| 3. | Nano-titanium nitride / Nano TiN 20nm 99.9% |
| 4. | Nano boron nitride / Nano BN 50nm 99.9% |
| 5. | nano-zirconium nitride / nano ZrN 50nm 99.9% |
| 6. | Nano vanadium nitride / Nano VN 40nm 99.9% |







