Leave Your Message
I-14.4v 2600mAh Ibhethri yokufaka esikhundleni Ihambisana ne-Eufy RoboVac 11, 11S, 11S MAX, 11S PLUS, 12, 15C, 15C MAX, 15T, 25C, 30, 30C MAX, 35C

Zonke Izimpahla

Izigaba Zemikhiqizo
Imikhiqizo efakiwe

I-14.4v 2600mAh Ibhethri yokufaka esikhundleni Ihambisana ne-Eufy RoboVac 11, 11S, 11S MAX, 11S PLUS, 12, 15C, 15C MAX, 15T, 25C, 30, 30C MAX, 35C

 

Umthamo wokuthunyelwa wonyaka wamayunithi angama-300000, ukuqinisekiswa kwekhwalithi okuqinile

Isikhathi eside sokusebenza

Engeza umklamo we-tape wesandla.

Sebenzisa intambo ethambile futhi eguquguqukayo, yenza iphekhi yebhethri ibe lula ukuyifaka

Amapulagi abushela ilangabi, ukuphepha okwengeziwe

    Incazelo Yomkhiqizo

    14s9q1484j144zv

    Ukucaciswa kwebhethri:

    Amandla ebhethri

    2600mAh

    Ibhethri Voltage

    14.4V

    Uhlobo Lwebhethri

    I-Lithium ion

    Umbala

    Okuluhlaza noma Okuluhlaza okwesibhakabhaka

    Ubukhulu

    70 x 40 x 38mm

    Isisindo

    200g

    Iphakheji ihlanganisa

    1*14.4V 2600mAh Ibhethri+1*Manuwali ebhokisini elingaphakathi, bese amabhokisi apakisha ebhokisini lebhokisi

    FAQ

    i-fmhistory (1)sfvumlando we-fmhistory (2)4cii-fmhistory (3)byx

    Q: Uyini umlando webhethri ye-lithium ion?
    A:Amabhethri e-lithium-ion adalwa ngo-1970, uStanley Whittingham, owabe esesebenzela i-Exxon mobile, waqala ukusebenza ngebhethri elizoshaja ngokushesha. Wenza ibhethri, kodwa ekuhlolweni kokuqala, kwaba nomlilo ngoba wenza ibhethri esebenzisa i-lithium ne-titanium. Kwenzeke isifunda esifushane kwaqubuka umlilo. Ngemva komzamo ohlulekile wokwenza ibhethri iphephe ukusetshenziswa, wayeka ukuhlola.
    Umsebenzi kaStanley Whittingham waqhubeka ngo-1980 nguJohn B. Goodenough, unjiniyela eNyuvesi yaseTexas e-Austin. Esikhundleni se-lithium ne-titanium, wenza inhlanganisela ye-lithium cobalt oxide, ngokumangalisayo, waphinda kabili amandla ebhethri namandla ngenkathi ekwenza kuphephe ukusebenzisa.
    Ngemva kweminyaka embalwa, omunye unjiniyela nososayensi banquma ukuzama ukuthuthukisa nokuthuthukisa ibhethri ye-lithium. Igama lakhe u-Akira Yoshino wabe esesebenza eMeijo University eNagoya, eJapan. Esikhundleni se-lithium njenge-anode, wasebenzisa i-petroleum coke futhi wenza ibhethri eliphephe nakakhulu futhi elinamandla nakakhulu. Empeleni bekuyisibonelo sokuqala sebhethri ye-lithium-ion.
    Ukube bekungengenxa yalokhu okutholwe okuthathu, besingeke sibe namabhethri e-lithium-ion njengoba enjalo njengamanje. Lawa mabhethri anika amandla omakhalekhukhwini bethu abayigugu, imishini yasekhishini neyasekhaya, amathuluzi kagesi, amakhompyutha aphathekayo, izimoto zikagesi njengezithuthuthu, amabhayisikili, izithuthuthu nezimoto.
    Ngenhlanhla, ucwaningo nokuthuthukiswa kwebhethri ye-lithium-ion akuzange kume. Kwakudingeka ukwenza ibhethri elinjalo liphephe nakakhulu ukusebenzisa nokwandisa umthamo walo wamandla.
    Ngenxa ye-electron microscopy kanye ne-spectrometry, ososayensi bakwazi ukwenza izithombe ze-2D ne-3D abangazifunda ngazo ibhethri eyenziwe kuze kube manje futhi balithuthukise ngokwezinga, umthamo, ukuphepha ngisho nokusebenza kuzo zonke izimo zezulu. Ososayensi abavela e-UC San Diego bengeze i-silicone kubhethri ye-anode ukuze kugcinwe ibhethri lisebenza kumazinga okushisa aphansi naphezulu, ngokuyinhloko ukuze lisetshenziswe ezimotweni zikagesi.