Kumgca wokuvelisa izinto ezichanekileyo, i-micro-bearing enobubanzi obungaphantsi kweemilimitha ezi-5 idlula kwizikhululo zokuhlola ngesantya seemilimitha ezintathu ngomzuzwana. Xa ijongwa nge-microscopy enamandla aphezulu, ikhowudi yokulandelela eyenziwe ngemigca enobubanzi obuziimilimitha eziyi-0.01 ibonakala ngokucacileyo—ibonisa ummangaliso wemizi-mveliso ophunyezwe ngoomatshini bokumakisha i-fiber laser kwimveliso yanamhlanje.
Itekhnoloji yanamhlanje idala iingenelo eziphambili zokukhuphisana.
Itekhnoloji yelaser yefayibhaisebenzisa iifayibha ze-optical ezifakwe i-ytterbium njenge-gain medium, evuselelwa ngumthombo wokukhanya wepompo ye-976 nm ukuvelisa i-laser ekufutshane ne-infrared ye-1064 nm.
Olu bude be-wavelength oluthile lukwindawo efanelekileyo kwi-absorption spectrum yezinto zesinyithi. Idityaniswe netekhnoloji ye-Q-switching, ivumela ububanzi be-pulse ukuba buncitshiswe bufikelele kuluhlu lwe-10-nanosecond, ifikelele kubuninzi bamandla obufikelela kwi-200,000 joules nge-square millimeter. Zizo kanye ezi mpawu zomzimba ezivumela oomatshini bokumakisha i-fiber laser ukuba benze iimpawu kwiindawo zentsimbi engagqwali ezingama-304 ezinobunzulu be-5 micrometers kuphela ngelixa zihlala zingagugi ngokupheleleyo.
Xa kuthelekiswa neenkqubo ze-laser ze-CO₂ zemveli, iinkqubo ze-fiber optic zifezekisa ukusebenza kakuhle kokuguqulwa kwe-electro-optical okungaphezulu kwe-30%, kwaye xa zidibene nenkqubo yokupholisa umoya, ziyahlangabezana neemfuno zolawulo lobushushu bezixhobo zeklasi ye-400-watt. Idatha esebenzayo evela kumenzi wezixhobo zeemoto ibonisa ukuba phantsi kweemfuno ezifanayo zomthamo wemveliso, iinkqubo ze-fiber optic zinciphisa iindleko zokusetyenziswa kwamandla ngama-62% xa kuthelekiswa nee-laser ze-YAG ngelixa zithatha isithathu kuphela sesithuba seenkqubo zemveli.
Amathuba angenamkhawulo ezicelo ze-cross-domain
Kwicandelo lokwenziwa kwezixhobo zonyango, unyango lomphezulu we-titanium alloy alloy lusebenza njengomzekelo wendlela yokulinganisa. Ngokusebenzisa i-parameter optimization, oomatshini bokuphawula i-fiber laser abanakuhlangabezana kuphela nemfuneko yoburhabaxa bomphezulu obuyi-0.8 μm kwi-implants kodwa banokufikelela kwi-unique device identifier (UDI) enobunzulu be-15 μm, befikelela kwibhalansi efanelekileyo phakathi kweemfuno ze-biocompatibility kunye ne-traceability.
Ishishini le-elektroniki labathengi liphakamise ukuchaneka kwale teknoloji ukuya kumanqanaba angazange abonwe ngaphambili. Kwi-CNC frame processing yee-smartphones, impazamo yobunzulu bokukrola ilogo ilawulwa ngaphakathi kwe-±1 μm kwi-0.03 mm, ngelixa i-anodizing igcina ukuchaneka kombala kwe-98%.
Okumangalisayo ngakumbi kukuba, ekucubunguleni izinto ezibuthathaka, i-laser eyi-20W pulsed elungiswe ngokukodwa inokwenza ii-microporous arrays ezingenazimbobo kwiglasi yesafire enobukhulu obuyi-0.5 mm, ivula amathuba amatsha oyilo lwezixhobo ezinxibekayo ezikrelekrele.
I-Neural Node yeUkwenziwa koBukrelekrele
Kwi-ecosystem ye-Industry 4.0, oomatshini bokumakisha i-fiber laser baguqukele kwi-terminal nodes ezikrelekrele. Xa zidityaniswe neenkqubo ze-MES, zinokufunda iiparameter zenkqubo yemveliso ngexesha langempela kwaye zilungise ngokuzenzekelayo amandla e-laser, i-frequency, kunye nesantya sokuskena. Imisebenzi kwinkampani yokupakisha nokuvavanya i-semiconductor ibonisa ukuba iiyunithi zokumakisha ezixhotyiswe ngeenkqubo zokubeka izinto ezibonakalayo ezisebenzisa i-AI zinciphisa ixesha lokutshintsha imodeli yemveliso ukusuka kwimizuzu engama-45 ukuya kwimizuzwana engama-90 kuphela ngelixa zigcina ukuchaneka kokubeka kwindawo kwi-±2 μm.
Kwiindawo zokuvelisa eziguquguqukayo, izixhobo eziyilwe ngokweemodyuli zibonisa ukuguquguquka okumangalisayo. Indawo yokusebenza enye inokwenza zombini ukukrola okunzulu kwizixhobo zonyango kunye nokubhala ikhowudi enganzulu yokupakisha ukutya ngokutshintsha nje izinto ezibonakalayo kunye neekhithi zenkqubo. Inkqubo yekhowudi yelaser ephakathi ephunyezwe yinkampani yemveliso yokhathalelo lomntu idibanise ngempumelelo iimfuno zokucubungula izinto zokupakisha ezingaphezu kwama-200 kwimigca yemveliso eli-12, ifikelela kwizinga lokusetyenziswa kwezixhobo ezingama-92%.
Injini Eluhlaza yeUveliso oluZinzileyo
Iingenelo zokusingqongileyo zimele ixabiso eliphambili lobuchwephesha be-fiber laser. Xa kuthelekiswa neendlela zokubhala ikhowudi ye-inkjet, iyunithi nganye inokunciphisa ukukhutshwa kwe-organic compounds ngonyaka ngeetoni eziyi-3.8. Phantsi koMyalelo we-RoHS we-EU, obu buchwepheshe bube ngumgangatho oyimfuneko wokubhalwa kweelebhile ze-elektroniki ngenxa yokususa ngokupheleleyo iingozi zokungcoliswa kwesinyithi esinzima. Ingxelo ye-carbon footprint evela kumenzi omtsha webhetri yamandla ibonisa ukuba ukwamkela uphawu lwe-laser kunciphisa ukukhutshwa kwe-carbon kwimveliso nganye nge-19%.
Kwindawo edibana kuyo i-Industry 4.0 kunye ne-carbon neutrality, oomatshini bokuphawula i-fiber laser badlule kwindima yabo njengezixhobo zokuchonga nje ukuze baguqukele ekubeni ngabaniki-mandla abachanekileyo beenkqubo zokuvelisa. Ngobuchule obuphezulu kwitekhnoloji ye-laser ekhawulezayo kunye nokudibana kwayo okunzulu ne-intanethi yezimboni, le teknoloji ibhala imbali entsha yeshishini—ibhala uphawu lomgangatho wemveliso ekrelekrele yaseTshayina kwisikali se-micrometer kwaye iseka isiseko sokusebenza kakuhle kwemveliso ngokuguqulwa kwe-photoelectric. Kwixesha elizayo, ngokuthengiswa kwetekhnoloji ye-quantum dot fiber, ukucutshungulwa komphezulu we-atom ngokuchanekileyo ngakumbi kuya kwenzeka, kuqhubeka kwandiswa ukuqonda kwabantu ngemida yokucubungula izinto.
Ixesha lokuthumela: Juni-22-2026








