Iibheringi zomoya zeGranite eziBalaseleyo kakhulu ziphumelela njani kwi-Zero-Friction Frictionless Linear Motion?

Izikhokelo zokuthwala ibhola ezisebenzisa oomatshini zizisa ukungqubana okuncinci, umva, kunye nokuguguleka koomatshini, okuthintela ukuphindaphindeka kokubeka kwindawo kwi-automation ephezulu. Iibheringi zomoya zegranite ezichanekileyo kakhulu zisusa unxibelelwano lomzimba ngokudada kwimithwalo engaphantsi komaleko omncinci womoya ococekileyo ocinezelweyo. Zisebenzisa ukuthamba okupheleleyo kwegranite emnyama ye-ZHHIMG® (3100kg/m³), ezi nkqubo zibonelela ngentshukumo engenangqubano ngokupheleleyo, i-hysteresis engekhoyo, kunye nesisombululo sokubeka i-sub-nanometer.

Ukupheliswa Okupheleleyo Kweengxabano ZeeMechanical kunye Nokunxitywa KweeComponent

Ukudibana ngokwasemzimbeni phakathi kweendawo ezihambayo kudala ukungqubana okungenakuphepheka, okubangela ukuwohloka kwecandelo kunye nokulahleka kokuchaneka ngokuhamba kwexesha. Iibheringi zomoya zegranite zisebenza ngesithuba somoya esiqhubekayo se-5 ukuya kwi-10-micron, zisusa unxibelelwano oluqinileyo ngokupheleleyo. Olu yilo lwe-zero-friction luqinisekisa ukuba izigaba zakho zeemoto ezithe ngqo zigcina ukuchaneka okufanayo okuqinisekiswe ngumzi-mveliso kuzo zonke iibhiliyoni zemijikelo yokusebenza.

Ukuphindaphinda kweNdawo yeNanometer ngeSikhokelo seZero-Backlash

Iireyile zesikhokelo zoomatshini zinengxaki yokutyibilika kwentonga, apho kufuneka amandla ongezelelweyo ukuqala intshukumo, nto leyo ebangela ukuba kubekho ukudubula okuncinci kwindawo ethile. Ngenxa yokuba iibheringi zomoya zihamba ngokukhululekileyo, ziphendula ngoko nangoko kwii-fractional linear motor inputs ngaphandle kokushukuma okanye ukubetha. Oku kutyibilika okungenakuthelekiswa nanto kuvumela iinkqubo zokucubungula i-laser ukuba zifezekise ukuphindaphindwa okuthembekileyo kwe-sub-nanometer positioning.

Isiphumo Esiqhelekileyo Esiqhelekileyo Silungisa Ukungapheleli Okuncinci Komphezulu

Kwaneendawo ezithe tyaba zineempawu ezincinci ze-micro-topography xa zijongwa nge-microscope. Xa i-air bearing pad ityibilika phezu kwendlela yethu yegranite emnyama eneentambo zesandla, ifilimu yomoya ecinezelweyo isebenza njengesihluzo sendalo sokudibanisa. Olu xinzelelo lwefilimu yomoya lukhupha umlinganiselo wokuphambuka komphezulu we-microscopic, nto leyo ekhokelela ekuqondeni ngokuthe tye okuthe tye okugqitha umlinganiselo wendlela ebonakalayo.

Uyilo lweendawo zokucoca olungenakulungiswa kwaye oluhambelana negumbi lokucoca

Iibheringi zoomatshini zifuna ukuthambisa ioyile rhoqo, nto leyo etsala uthuli olurhabaxa oluphuma emoyeni kunye neegesi eziphumayo kwiindawo zokucoca. Iibheringi zomoya zegranite zisebenzisa igesi ecocekileyo neyomileyo ecinezelweyo, engadingi ulwelo lokuthambisa. Olu sebenzi oluhambelana negumbi lokucoca lususa ungcoliseko lwamasuntswana, nto leyo eyenza ukuba lube lolona khetho luphambili kwiindawo zokucoca i-semiconductor lithography kunye neendawo zokucoca i-vacuum.

ibhloko yesamente echanekileyo ephezulu

Uhlalutyo lweNkqubo yeSikhokelo: Iibheringi zoMoya zeGranite vs. Izikhokelo zeMichanical Linear

Ipharamitha yokusebenza I-ZHHIMG® Precision Granite Air Bearing Isikhokelo seProfayili yokuthwala iibhola eziqhelekileyo Isikhokelo sokuQhaqhana kweeCrossed-Roller
Ukungqubana okungaguqukiyo kunye nokuKinetic I-Absolute Zero (0.0000) I-High Stiction (0.005 – 0.01) Ukungqubana okuPhakathi (0.002)
Impahla kaloliwe yoomatshini Akukho (Ixesha lokusebenza elingenamda) Phezulu (Ifuna ukutshintshwa rhoqo) Phakathi (Inokutsalwa yimingxunya yesakhiwo)
Iimfuneko zokuthambisa Akukho nto (Isebenzisa umoya ococekileyo ocinezelweyo) Kuyimfuneko (Kufuneka igrisi okanye ioyile) Kuyimfuneko (Kufuneka uhlambe ngeoyile)
Isiphumo seParticle yegumbi lokucoca Akukho (ihambelana negumbi lokucoca eliyi-100%) Phezulu (Ikhupha inkungu yeoyile kunye nothuli lwesinyithi) Iphakathi
Isisombululo sokuBeka Ubuchule besikali se-sub-nanometer Ilinganiselwe kwisikali se-micron ngokusabela okungalunganga Inqunyelwe ziindlela zokutyibilika kweentonga

Imibuzo Ebuzwa Rhoqo (Imibuzo Ebuzwa Rhoqo)

Q1: Ingakanani uxinzelelo lomoya olufunekayo ukuze i-granite air bearing isebenze?

A1: Uninzi lwee-air bearings zegranite zemizi-mveliso zisebenza kakuhle kuxinzelelo oluzinzileyo lonikezelo phakathi kwe-4.0 ukuya kwi-6.0 bar (60 ukuya kwi-90 PSI). Unikezelo lomoya kufuneka luhluzwe ngokungqongqo ukuze kususwe amanzi, ioyile, kunye namasuntswana amakhulu kune-0.1 microns.

Umbuzo 2: Ngaba ukulahleka ngequbuliso koxinzelelo lomoya kuya kubangela umonakalo omkhulu kumatshini?

A2: Siyila iinkqubo zethu ngemida yokhuseleko edibeneyo. Ukuba uxinzelelo lomoya luyehla, i-bearing pad izinza kancinci kumzila we-granite omnyama wendalo. Ngenxa yokuba i-granite iyazithambisa ngokwayo kwaye ayitshisi, ithintela ukubanjwa kwesakhiwo kwangoko.

Umbuzo 3: Yeyiphi indlela ephezulu yokuphambuka kwe-flatness evumelekileyo kwi-granite track?

A3: Ukuze kugcinwe umsantsa womoya ozinzileyo we-5-micron, umzila wesikhokelo segranite kufuneka udityaniswe ube kumgangatho ongaqhelekanga, oqhele ukuba ngaphantsi kwe-1.0 micron ngemitha, ophathwa kwindawo yethu yokusebenzela yobushushu obungaguqukiyo.

Umbuzo 4: Ngaba iibheringi zomoya zegranite zingasetyenziswa kwiindawo zegumbi lokucoca umoya?

A4: Ewe. Kwiindawo zomoya ongcolileyo, sisebenzisa iibheringi zomoya ezikhethekileyo ezifakwe i-vacuum (VPL). Ezi zicwangciso zidibanisa uxinzelelo lomoya oluhle kunye neringi yokukhupha i-vacuum, zithintela umoya ukuba ungaphumi ungene kwigumbi.

Umbuzo 5: I-ZHHIMG ifikelela njani ekuqineni okuphezulu kwibhereyi engadibaniyo?

A5: Ukuqina kokuthwala umoya kuyanda njengoko umsantsa womoya uncipha. Ngokwenza ngcono imijelo yokusasazwa komoya, ukuphakama kwempukane, kunye nobukhulu bephedi ngokusebenzisa uhlalutyo lwezinto ezilinganiselweyo (FEA), sandisa ukuqina kwefilimu ukuze simelane nemithwalo enamandla aphezulu ngaphandle kokujika.

Umbuzo 6: Zeziphi izicelo eziqhelekileyo ezifuna iibheringi zomoya zegranite zeZHHIMG®?

A6: Zihlanganiswe ngokubanzi kwiinkqubo zokuhlola i-semiconductor wafer, ii-flat panel display scanners, oomatshini bokusika i-laser abachanekileyo kakhulu (i-femtosecond/picosecond), izixhobo ze-CT X-ray coordinate zemizi-mveliso, kunye nee-automated metrology sensors eziphezulu.


Ixesha lokuthumela: Juni-05-2026