Ityhubhu yesafire ye-Al2O3,Ityhubhu ye-Sapphire Capillary,Imelana nobushushu obuphezulu kunye noxinzelelo oluphezulu
Inkcazo engundoqo
●Izinto eziphathekayo:Ikristale enye ye-Al₂O₃ (iSapphire)
●Indlela Yokwenza:I-EFG (Ukukhula kweFilimu echazwe ngokuGqibeleleyo)
●Izicelo:Iindawo ezinobushushu obuphezulu kunye noxinzelelo oluphezulu
●Ukusebenza:Uzinzo olukhethekileyo lobushushu noloomatshini, kunye nobukhulu obunokwenziwa ngokwezifiso ukuhlangabezana neemfuno ezahlukeneyo zesicelo
Iityhubhu zethu ze-sapphire capillary zenzelwe ukusetyenziswa ngokuchanekileyo okufuna ukuqina, ukucaca okubonakalayo, kunye nokumelana neekhemikhali, zibonelela ngokusebenza rhoqo nakwiindawo ezinzima.
Ezona mpawu
Ukumelana nobushushu obuphezulu:
Iqondo lokunyibilika kweSapphire eliyi-~2030°C liqinisekisa ukusebenza okuthembekileyo kwiindawo ezishushu kakhulu, ezifana nee-ovens zoshishino, ii-reactors, kunye nee-sensors zobushushu obuphezulu.
Ukuqina koxinzelelo:
Ngobuchule obubalaseleyo boomatshini, iityhubhu zesafire zinokumelana neendawo ezinoxinzelelo oluphezulu ngaphandle kokuguquka okanye ukungaphumeleli.
Ukumelana nokugqwala:
Ukumelana okungokwemvelo kweSapphire kwii-asidi, ii-alkalis, kunye nezinyibilikisi kuyenza ilungele ukusetyenziswa kweekhemikhali kunye nokusetyenziswa kwezonyango.
Ukuchaneka kweCapillary:
Indlela ye-EFG iqinisekisa ulawulo oluchanekileyo lobukhulu, nto leyo eyenza ezi tyhubhu zilungele ukusetyenziswa kwe-capillary kwi-spectroscopy, microfluidics, kunye neenkqubo zokuphatha ulwelo.
Uyilo Olunokulungiselelwa Ngokwezifiso:
Ifumaneka kuluhlu olubanzi lobude, ububanzi, kunye nobukhulu bodonga ukuze ivumelane neemfuno ezithile.
Ukucaca kokukhanya:
Ukukhanya okungaqhelekanga kwiiwavelengths ezibonakalayo kunye ne-infrared kwizicelo ze-optical kunye ne-spectroscopy.
Iinkcukacha
| Ipropati | Inkcazo |
| Izinto eziphathekayo | Ikristale enye ye-Al₂O₃ (iSapphire) |
| Indlela Yokuvelisa | I-EFG (Ukukhula kweFilimu echazwe ngokuGqibeleleyo) |
| Ubude | Inokulungiselelwa (uluhlu oluqhelekileyo: 30–200 mm) |
| Ububanzi | Ingenziwa ngokwezifiso (ubungakanani be-capillary buyafumaneka) |
| Indawo yokunyibilika | ~2030°C |
| Ukuqhuba kweThermal | ~25 W/m·K kwi-20°C |
| Ukuqina | Isikali seMohs: 9 |
| Ukumelana noxinzelelo | Iyamelana noxinzelelo oluphezulu (ukuya kuthi ga kwi-200 MPa) |
| Ukumelana neekhemikhali | Ayimelani nee-asidi, ii-alkali, kunye nezinyibilikisi |
| Iipropati zoKubona | Ibonakala ngokucacileyo kuluhlu olubonakalayo nolwe-IR |
| Uxinano | ~3.98 g/cm³ |
Izicelo
Iinkqubo zoBushushu obuPhezulu:
Ilungele ukusetyenziswa kwiindawo ezishushu kakhulu ezifana nee-ovens zoshishino, ii-reactors ezishushu kakhulu, kunye nee-ovens zamakhemikhali.
Usetyenziso lweCapillary:
Iityhubhu ze-capillary ezichanekileyo ze-spectroscopy, ukuphathwa kolwelo, kunye neenkqubo ze-microfluidic ezifuna ukuchaneka okuphezulu kunye nokungasebenzi kakuhle kweekhemikhali.
Ukucubungula iikhemikhali:
Ukumelana okugqwesileyo nokugqwala kweSapphire kwenza ukuba ifaneleke kwiindawo ezinoburhalarhume zeekhemikhali, ezifana nee-acid reactors kunye neenkqubo zokudlulisa iikhemikhali.
Itekhnoloji yezonyango:
Iityhubhu zesafire ezisetyenziswa kwizixhobo zotyando ezisekelwe kwi-laser kunye nezixhobo zokuxilonga, ziqinisekisa ukuba ziyahambelana kakhulu kwaye zichanekile.
Inqwelo-moya kunye noKhuselo:
Ngenxa yokumelana okukhulu noxinzelelo lobushushu kunye noxinzelelo loomatshini, iityhubhu ze-sapphire capillary zisetyenziswa kwiinkqubo zeenqwelo moya kunye nezixhobo zomgangatho womkhosi kwiimeko eziqatha.
Uphando lwezeNzululwazi:
Usetyenziswe kakhulu kuvavanyo lwelabhoratri lwe-spectroscopy, ukujonga ubushushu obuphezulu, kunye nokusetyenziswa okuphambili kwe-optical.
Imibuzo neempendulo
Umbuzo 1: Yintoni inzuzo yendlela ye-EFG ekwenzeni iityhubhu zesafire?
A1: Indlela ye-EFG inika ulawulo oluchanekileyo kubungakanani beetyhubhu, iqinisekisa umgangatho kunye nokuchaneka okulinganayo. Ikwavumela ukuveliswa kweetyhubhu ezinodonga oluncinci, ezinobukhulu be-capillary ezifanelekileyo kwizicelo ezikhethekileyo.
Q2: Ngaba iityhubhu zesafire capillary zingenziwa ngokwezifiso?
A2: Ewe, sinikezela ngohlengahlengiso olupheleleyo lobude, ububanzi, kunye nobukhulu bodonga ukuze kuhlangatyezwane neemfuno zakho ezithile. Iindlela zokugquma kunye nokupholisha umphezulu nazo ziyafumaneka.
Umbuzo 3: Isebenza njani isafire kwiindawo ezixinezelekileyo?
A3: Amandla aphezulu oomatshini kunye nokuqina kweSapphire kuyenza ikwazi ukumelana noxinzelelo olugqithisileyo ukuya kuthi ga kwi-200 MPa, nto leyo eyenza ukuba ilungele iinkqubo zoxinzelelo oluphezulu.
Umbuzo 4: Ngaba iityhubhu zesafire zifanelekile ukucutshungulwa kweekhemikhali?
A4: Ngokuqinisekileyo. I-Sapphire imelana kakhulu nee-asidi, ii-alkalis, kunye nezinyibilikisi, nto leyo eyenza ukuba ifaneleke ukusetyenziswa kwiindawo ezineekhemikhali ezirhabaxa.
Umbuzo 5: Zeziphi izicelo eziphambili zeetyhubhu ze-safire capillary?
A5: Iityhubhu ze-sapphire capillary zisetyenziswa kakhulu kwi-spectroscopy, kwi-microfluidics, kwizixhobo zonyango, ekujongeni ubushushu obuphezulu, nakwimizi-mveliso yokucubungula iikhemikhali.
Kutheni Ufanele Ukhethe Iityhubhu Zethu ZeSapphire?
●Izinto eziphambili:Yenziwe ngekristale enye ye-Al₂O₃ ecocekileyo kakhulu ukuze isebenze ngendlela engenakuthelekiswa nanto.
● Ukwenziwa Kwemveliso Okuphucukileyo:Indlela ye-EFG iqinisekisa ukuchaneka nokuthembeka kuyo yonke imveliso.
●Izicelo Ezininzi:Ifanelekile ukusetyenziswa kwiindawo ezinobushushu obuphezulu, uxinzelelo oluphezulu, kunye neendawo ezinemichiza erhabaxa.
●Inkxaso yeengcali:Iqela lethu linikezela ngesikhokelo sobugcisa kunye neenkonzo zokwenza ngokwezifiso ukuhlangabezana neemfuno zakho ezithile.
Ityhubhu yethu yeSapphire ye-Al₂O₃ idibanisa ukumelana nobushushu obuphezulu, amandla oomatshini, kunye nokucaca kokukhanya, okwenza kube lolona khetho lufanelekileyo kwizicelo ezifuna amandla kwi-spectroscopy, ekucutshungulweni kweekhemikhali, nakwiinkqubo zobushushu obuphezulu. Qhagamshelana nathi namhlanje ukuze ufumane ulwazi oluthe kratya okanye ucele isisombululo esenziwe ngokwezifiso esilungiselelwe iimfuno zakho!
Umzobo oneenkcukacha


















