{"id":133,"date":"2024-06-23T04:33:58","date_gmt":"2024-06-22T20:33:58","guid":{"rendered":"https:\/\/aluminaceramics.net\/?p=133"},"modified":"2024-07-15T20:03:34","modified_gmt":"2024-07-15T12:03:34","slug":"vai-aluminija-oksids-ir-vadoss","status":"publish","type":"post","link":"https:\/\/aluminaceramics.net\/lv\/is-alumina-conductive\/","title":{"rendered":"Vai alum\u012bnija oks\u012bds ir vad\u012btsp\u0113j\u012bgs?"},"content":{"rendered":"<p>Alum\u012bnija oks\u012bds ir m\u012bksts, nemagn\u0113tisks materi\u0101ls, kas ir gan plastisks, gan iztur\u012bgs pret koroziju, t\u0101p\u0113c tas ir piem\u0113rots da\u017e\u0101diem lietojumiem, tostarp alum\u012bnija folijai\/ bund\u017e\u0101m\/ baterij\u0101m\/autent\u012bkliem un elektriskajai izol\u0101cijai.<\/p>\n<p>Hromatogr\u0101fijas laboratorij\u0101s eksperimentos k\u0101 vidi bie\u017ei izmanto silikagelu. Tas ir pieejams gan b\u0101zisk\u0101, gan sk\u0101b\u0101 form\u0101 un ir lielisks elektr\u012bbas un siltuma vad\u012bt\u0101js.<\/p>\n<h2>Tas ir labs elektr\u012bbas vad\u012bt\u0101js<\/h2>\n<p>Alum\u012bnija oks\u012bds ir izcils met\u0101ls ar izcil\u0101m elektriskaj\u0101m \u012bpa\u0161\u012bb\u0101m, kura elektrovad\u012btsp\u0113ja ir sal\u012bdzin\u0101ma ar sudraba, zelta un vara elektrovad\u012btsp\u0113ju. Turkl\u0101t t\u0101 siltumvad\u012btsp\u0113ja padara to ide\u0101li piem\u0113rotu energoelektronikai. Turkl\u0101t \u0161is materi\u0101ls var lepoties ar izcilu iztur\u012bbu un vieglu svaru, vienlaikus b\u016bdams ekolo\u0123iski draudz\u012bgs.<\/p>\n<p>Alum\u012bnija elektrovad\u012btsp\u0113ju var izskaidrot ar t\u0101 atomu strukt\u016bru. Alum\u012bnija atomi ir izvietoti se\u0161st\u016bra re\u017e\u0123\u012b, un katru atomu ieskauj elektronu m\u0101konis, kas ir br\u012bvi saist\u012bts ar attiec\u012bgajiem atomiem; \u0161ie br\u012bvie elektroni vada elektr\u012bbu vis\u0101 met\u0101l\u0101, t\u0101d\u0113j\u0101di b\u016btiski veicinot t\u0101 elektrovad\u012btsp\u0113ju. Tom\u0113r t\u0101 elektrisk\u0101s \u012bpa\u0161\u012bbas var b\u016btiski ietekm\u0113t virsmas apst\u0101k\u013ci; virsmas izmai\u0146as var b\u016btiski samazin\u0101t elektrovad\u012btsp\u0113ju, un attiec\u012bgi var main\u012bties alum\u012bnija oks\u012bda elektrisk\u0101s \u012bpa\u0161\u012bbas.<\/p>\n<p>Alum\u012bnija oks\u012bdam piem\u012bt izcila \u0137\u012bmisk\u0101 stabilit\u0101te un iztur\u012bba pret koroziju, t\u0101p\u0113c tas ir piem\u0113rots da\u017e\u0101diem lietojumiem, piem\u0113ram, automobi\u013cu elektronik\u0101, naftas \u0137\u012bmijas r\u016bpniec\u012bb\u0101 un r\u016bpniec\u012bbas iek\u0101rt\u0101s. Turkl\u0101t tas var efekt\u012bvi aizst\u0101t varu gaisvadu elektrop\u0101rvades l\u012bnij\u0101s, jo sp\u0113j p\u0101rnest liel\u0101kas str\u0101vas slodzes bez zudumiem.<\/p>\n<p>Lai gan alum\u012bnija oks\u012bds ir efekt\u012bvs siltuma vad\u012bt\u0101js, t\u0101 siltumvad\u012btsp\u0113ja ir nedaudz zem\u0101ka nek\u0101 vara siltumvad\u012btsp\u0113ja. Tom\u0113r t\u0101 siltumvad\u012btsp\u0113ja joproj\u0101m ir diezgan augsta oks\u012bda keramikai, un to var pat v\u0113l vair\u0101k palielin\u0101t, pievienojot cirkonija da\u013ci\u0146as vai sil\u012bcija karb\u012bda pavedienus - \u0161is process palielina gan iztur\u012bbu, gan uzlabo elektrisk\u0101s \u012bpa\u0161\u012bbas, gan caursp\u012bd\u012bguma \u012bpa\u0161\u012bbas, piejaucot nelielu daudzumu magn\u0113zija.<\/p>\n<p>Alum\u012bnija oks\u012bdam dabiski ir alum\u012bnija oks\u012bda sl\u0101nis, kas aizsarg\u0101 no oksid\u0113\u0161an\u0101s. Anod\u0113\u0161ana var palielin\u0101t \u0161\u012b sl\u0101\u0146a biezumu un vad\u012btsp\u0113ju, tom\u0113r tas var iev\u0113rojami samazin\u0101t alum\u012bnija iztur\u012bbu pret koroziju.<\/p>\n<p>Alum\u012bnija oks\u012bdu var atrast visur, s\u0101kot no r\u016bpnieciskiem apst\u0101k\u013ciem l\u012bdz pat medic\u012bnai un autob\u016bvei, un tas ir viens no vispiepras\u012bt\u0101kajiem materi\u0101liem iespiedsh\u0113mu plates (PCB) izgatavo\u0161anai. Alum\u012bnija popularit\u0101te ir saist\u012bta ar t\u0101 izmanto\u0161anu gan konvekcij\u0101 - siltuma p\u0101rnes\u0113 ar \u0161\u0137idruma kust\u012bbu, gan radi\u0101cij\u0101 - siltumener\u0123ijas p\u0101rnes\u0113 elektromagn\u0113tisk\u0101 starojuma veid\u0101, gan vad\u012btsp\u0113jai - tie\u0161\u0101 kontakt\u0101 starp virsm\u0101m.<\/p>\n<h2>Tas ir labs siltuma vad\u012bt\u0101js<\/h2>\n<p>Alum\u012bnija oks\u012bds ir ide\u0101ls siltumvad\u012bt\u0101js un elektriskais izolators. T\u0101 siltumvad\u012btsp\u0113ja ar zemu \u0137\u012bmisko inertumu un elektrisk\u0101s izol\u0101cijas \u012bpa\u0161\u012bb\u0101m ierindojas starp cit\u0101m oks\u012bdu keramik\u0101m; turkl\u0101t t\u0101 temperat\u016bras tolerance \u013cauj tam iztur\u0113t \u013coti augstas temperat\u016bras bez boj\u0101jumiem - ide\u0101li piem\u0113rots lietojumiem, kur nepiecie\u0161ama gan siltuma p\u0101rvade, gan elektrisk\u0101 izol\u0101cija. Alum\u012bnija krist\u0101lisk\u0101 strukt\u016bra un t\u012br\u012bba nodro\u0161ina \u0101tru siltuma izkliedi, savuk\u0101rt t\u0101 notur\u012bba pret plaisu izplat\u012b\u0161anos garant\u0113, ka tas sp\u0113j iztur\u0113t meh\u0101nisk\u0101s slodzes, kas apdraud\u0113tu citus materi\u0101lus.<\/p>\n<p>Alum\u012bnija elektrovad\u012btsp\u0113ja ir saist\u012bta ar t\u0101 jonu saiti. Zem\u0101s temperat\u016br\u0101s alum\u012bnija oks\u012bds darbojas k\u0101 elektronisks izolators, bet augst\u0101k\u0101s temperat\u016br\u0101s k\u013c\u016bst par jonu vad\u012bt\u0101ju, jo t\u0101 strukt\u016br\u0101 ir br\u012bvi kust\u012bgi joni, kas \u013cauj elektr\u012bbai br\u012bvi p\u0101rvietoties pa to. Lai gan t\u0101 vad\u012btsp\u0113ja main\u0101s atkar\u012bb\u0101 no temperat\u016bras un da\u013ci\u0146u lieluma, jonu vad\u012btsp\u0113jai ir tendence samazin\u0101ties, palielinoties temperat\u016brai.<\/p>\n<p>Alum\u012bnija oks\u012bdam ir sp\u0113c\u012bgas un ilgsto\u0161as jonu saites, kas padara t\u0101 elektrovad\u012btsp\u0113ju izcilu. Turkl\u0101t t\u0101 ku\u0161anas temperat\u016bra un bl\u012bvums ir zems - tas padara to piem\u0113rotu, lai iztur\u0113tu skarbas vides apst\u0101k\u013cus - agr\u0101k to izmantoja t\u012b\u0123e\u013cos met\u0101lu un vielu kaus\u0113\u0161anai; tagad to aizst\u0101j ner\u016bs\u0113jo\u0161ais t\u0113rauds un kr\u0101sainie met\u0101li, piem\u0113ram, var\u0161.<\/p>\n<p>Viena no daudzaj\u0101m fascin\u0113jo\u0161aj\u0101m alum\u012bnija oks\u012bda \u012bpa\u0161\u012bb\u0101m ir t\u0101 elektrovad\u012btsp\u0113ja. Tas ir iesp\u0113jams, jo alum\u012bnija oks\u012bds ir dabisks met\u0101ls, ko p\u0101rkl\u0101j pl\u0101ns alum\u012bnija oks\u012bda sl\u0101nis, kas nodro\u0161ina aizsardz\u012bbu pret vides sk\u0101bekli, kas var izrais\u012bt koroziju, un to var pat pastiprin\u0101t, veicot anod\u0113\u0161anu.<\/p>\n<p>Alum\u012bnija oks\u012bds ir lielisks materi\u0101ls augstas veiktsp\u0113jas nodilumiztur\u012bbas lietojumiem r\u016bpniec\u012bb\u0101. T\u0101 iztur\u012bbas, nodilumiztur\u012bbas un \u0137\u012bmisk\u0101s inertuma d\u0113\u013c to bie\u017ei izmanto k\u0101 substr\u0101ta materi\u0101lu griez\u0113jinstrumentos - pievienojot cirkonija da\u013ci\u0146as vai sil\u012bcija karb\u012bda vaska da\u013ci\u0146as, t\u0101 iztur\u012bba griez\u0113jinstrumentu ra\u017eo\u0161an\u0101 v\u0113l vair\u0101k palielin\u0101sies. Alum\u012bnija oks\u012bds kalpo ar\u012b k\u0101 substr\u0101ts augstspiediena n\u0101trija tvaiku ielu lamp\u0101m!<\/p>\n<p>Neapstr\u0101d\u0101tam alum\u012bnija oks\u012bdam ir \u013coti zema elektrovad\u012btsp\u0113ja, jo 13 elektronu nav cie\u0161i piesaist\u012bti alum\u012bnija atomiem, kas noz\u012bm\u0113, ka \u0161os br\u012bvos elektronus var izspiest elektrisk\u0101 str\u0101va, iek\u013c\u016bstot alum\u012bnija por\u0101s, - to labi sp\u0113j izdar\u012bt var\u0161; savuk\u0101rt alum\u012bnija oks\u012bd\u0101 br\u012bvie elektroni var piedz\u012bvot fononu sadursmes, kas izraisa to izkliedi, t\u0101d\u0113j\u0101di aizkav\u0113 elektr\u012bbas pl\u016bsmu caur to.<\/p>\n<h2>Tas ir labs ska\u0146as diri\u0123ents<\/h2>\n<p>Alum\u012bnija oks\u012bds ir \u013coti ugunsiztur\u012bgs keramikas materi\u0101ls, un to var izmantot daudzos r\u016bpnieciskos lietojumos. Pateicoties izcilajai iztur\u012bbai un ciet\u012bbai, alum\u012bnija oks\u012bds ir iztur\u012bgs pret nodilumu, nobr\u0101zumiem un eroziju, k\u0101 ar\u012b pret \u0137\u012bmisko koroziju; turkl\u0101t tas ir ar\u012b iztur\u012bgs pret temperat\u016bru, t\u0101p\u0113c ir piem\u0113rots izmanto\u0161anai skarb\u0101s vid\u0113s, piem\u0113ram, str\u0101d\u0101jot \u0137\u012bmijas laboratorij\u0101s.<\/p>\n<p>Alum\u012bnija oks\u012bdam ir augsta siltumvad\u012btsp\u0113ja sal\u012bdzin\u0101jum\u0101 ar elektrisko pretest\u012bbu, kas noz\u012bm\u0113, ka tas var \u0101tri izklied\u0113t elektrisk\u0101s str\u0101vas rad\u012bto siltumu. \u0160\u012b \u012bpa\u0161\u012bba padara alum\u012bnija oks\u012bdu ide\u0101li piem\u0113rotu elektronisk\u0101m ier\u012bc\u0113m, kur\u0101s energoapg\u0101dei efekt\u012bvi j\u0101tiek gal\u0101 ar lielu siltuma daudzumu. Turkl\u0101t \u0161im materi\u0101lam piem\u012bt izcilas dielektrisk\u0101s \u012bpa\u0161\u012bbas, padarot to \u013coti stabilu. Turkl\u0101t t\u0101 zemais zudumu tangents un stingr\u012bbas \u012bpa\u0161\u012bbas padara alum\u012bnija oks\u012bdu par lielisku izv\u0113li elektroizol\u0101cijas lietojumiem.<\/p>\n<p>At\u0161\u0137ir\u012bb\u0101 no vairuma oks\u012bdu keramikas alum\u012bnija oks\u012bdam piem\u012bt sp\u0113c\u012bga jonu starpatomu saite, kas pie\u0161\u0137ir tam v\u0113lam\u0101s materi\u0101la \u012bpa\u0161\u012bbas, tostarp \u0137\u012bmisko stabilit\u0101ti un \u0101rk\u0101rt\u012bgu ciet\u012bbu (9 balles p\u0113c Mosa skalas, kas ir vair\u0101k nek\u0101 pat dimantam). Alum\u012bnija oks\u012bds past\u0101v vair\u0101k\u0101s krist\u0101lisk\u0101s f\u0101z\u0113s; paaugstin\u0101t\u0101 temperat\u016br\u0101 t\u0101s visas galu gal\u0101 p\u0101rv\u0113r\u0161as heksagon\u0101laj\u0101 alfa f\u0101z\u0113 - \u0161o f\u0101zi visbie\u017e\u0101k izmanto konstrukcij\u0101s, un t\u0101p\u0113c Accuratus pied\u0101v\u0101 \u0161o f\u0101zi.<\/p>\n<p>Lai gan zem\u0101k\u0101s temperat\u016br\u0101s alum\u012bnija oks\u012bds darbojas k\u0101 elektronisks izolators, pak\u013caujot to augst\u0101k\u0101m temperat\u016br\u0101m, tune\u013co\u0161anas efekta ietekm\u0113 tas p\u0101rv\u0113r\u0161as par jonu vad\u012bt\u0101ju ar liel\u0101ku vad\u012btsp\u0113ju nek\u0101 var\u0161 l\u012bdz\u012bg\u0101s temperat\u016br\u0101s; tom\u0113r, ja runa ir par siltuma p\u0101rneses \u012bpa\u0161\u012bb\u0101m, var\u0161 joproj\u0101m ir lab\u0101ks.<\/p>\n<p>Alum\u012bnija oks\u012bds ir ugunsiztur\u012bgs materi\u0101ls, ko pla\u0161i izmanto r\u016bpniec\u012bb\u0101 k\u0101 elektriskos izolatorus un siltuma uztv\u0113r\u0113jus, sl\u012bp\u0113\u0161anas materi\u0101lus, un t\u0101 nodilumiztur\u012bba ir lieliska. Alum\u012bnijs ir univers\u0101ls materi\u0101ls, un to var ra\u017eot, izmantojot da\u017e\u0101das konsolid\u0101cijas un sa\u0137epin\u0101\u0161anas metodes, kuru rezult\u0101t\u0101 ieg\u016bst prec\u012bzas gandr\u012bz neto formas, kas piem\u0113rotas sare\u017e\u0123\u012bt\u0101m apstr\u0101des vid\u0113m, piem\u0113ram, kr\u0101sn\u012bm un kr\u0101sn\u012bm.<\/p>\n<h2>Tas ir labs g\u0101zu vad\u012bt\u0101js<\/h2>\n<p>Alum\u012bnija oks\u012bds ir lielisks g\u0101zu vad\u012bt\u0101js, jo tam ir augsta meh\u0101nisk\u0101 iztur\u012bba, ku\u0161anas temperat\u016bra un zems izple\u0161an\u0101s koeficients. Turkl\u0101t tas ir iztur\u012bgs pret koroziju un \u0137\u012bmisko iedarb\u012bbu, tam piem\u012bt ar\u012b izcilas elektrisk\u0101s \u012bpa\u0161\u012bbas un siltumvad\u012btsp\u0113jas \u012bpa\u0161\u012bbas. Pateicoties \u0161ai iztur\u012bbai pret koroziju, alum\u012bnija oks\u012bdu var izmantot pat vid\u0113, kas satur \u016bdeni, naftu un citas \u0137\u012bmisk\u0101s vielas.<\/p>\n<p>Alum\u012bnija oks\u012bds var iztur\u0113t \u013coti augstas temperat\u016bras, nezaud\u0113jot struktur\u0101lo integrit\u0101ti, t\u0101p\u0113c tas ir ide\u0101li piem\u0113rots elektrol\u012bnij\u0101m, pa kur\u0101m pl\u016bst liela str\u0101va. Augstsprieguma elektrop\u0101rvades l\u012bnij\u0101s parasti izmanto alum\u012bnija vadus ar t\u0113rauda serd\u0113m, lai veidotu elektrop\u0101rvades l\u012bnijas ar augst\u0101ka sprieguma p\u0101rvades sp\u0113j\u0101m; t\u0113rauds nodro\u0161ina stiepes iztur\u012bbu, bet alum\u012bnijs - vad\u012btsp\u0113ju. Lai gan kopum\u0101 var\u0161 var b\u016bt vado\u0161\u0101ks, alum\u012bnijs pied\u0101v\u0101 zem\u0101kas ra\u017eo\u0161anas izmaksas un liel\u0101ku iztur\u012bbu pret koroziju, k\u0101 ar\u012b lab\u0101kas izol\u0101cijas \u012bpa\u0161\u012bbas nek\u0101 p\u0113d\u0113jais variants.<\/p>\n<p>T\u012bru alum\u012bnija oks\u012bdu ieg\u016bst, ieg\u016bstot un p\u0101rstr\u0101d\u0101jot boks\u012btu (Al2O3) un citus alum\u012bniju saturo\u0161us miner\u0101lus, un tas kalpo par st\u016brakmeni r\u016bpniecisk\u0101s naftas \u0137\u012bmijas procesos, tostarp og\u013c\u016bde\u0146ra\u017eu autotermiskaj\u0101 riforming\u0101 ar oglek\u013ca dioks\u012bdu, lai ieg\u016btu sint\u0113tisko g\u0101zi. T\u0101 k\u0101 \u0161aj\u0101 proces\u0101 var rasties kait\u012bgas reduc\u0113\u0161anas reakcijas, t\u012brs alum\u012bnija oks\u012bds nodro\u0161ina dro\u0161u aizsardz\u012bbu pret nev\u0113lamu reduc\u0113\u0161anu.<\/p>\n<p>Alum\u012bnija elektrovad\u012btsp\u0113ja main\u0101s atkar\u012bb\u0101 no t\u0101 t\u012br\u012bbas, temperat\u016bras un sk\u0101bek\u013ca spiediena; t\u0101 elektrovad\u012btsp\u0113ja uzr\u0101da gan p tipa vad\u012btsp\u0113ju augsta sk\u0101bek\u013ca spiediena apst\u0101k\u013cos, kam\u0113r pie zem\u0101ka sk\u0101bek\u013ca spiediena tiek nov\u0113rota n tipa vad\u012btsp\u0113ja. Elektrovad\u012btsp\u0113ja palielin\u0101s l\u012bdz ar temperat\u016bru, bet samazin\u0101s l\u012bdz ar sk\u0101bek\u013ca spiedienu. Associated Ceramics pied\u0101v\u0101 da\u017e\u0101dus alum\u012bnija oks\u012bda korpusus ar da\u017e\u0101d\u0101m \u012bpa\u0161\u012bb\u0101m da\u017e\u0101diem lietojumiem.<\/p>\n<p>Alum\u012bnija oks\u012bds ir pievilc\u012bgs materi\u0101ls, jo tas ir termiski izotrops; tas noz\u012bm\u0113, ka t\u0101 siltumvad\u012btsp\u0113ja visos virzienos ir gandr\u012bz vien\u0101da, at\u0161\u0137ir\u012bb\u0101 no graf\u012bta, kura siltumvad\u012btsp\u0113ja b\u016btiski at\u0161\u0137iras atkar\u012bb\u0101 no orient\u0101cijas. Alum\u012bnija izotrop\u0101 uzved\u012bba atvieglo termisko anal\u012bzi un projekt\u0113\u0161anu, padarot to piem\u0113rotu lietojumiem augst\u0101s temperat\u016br\u0101s.<\/p>\n<p>Alum\u012bnija PCB substr\u0101ti ir daudzu elektronisko ier\u012b\u010du neat\u0146emamas sast\u0101vda\u013cas. To siltumvado\u0161\u0101s \u012bpa\u0161\u012bbas pal\u012bdz izklied\u0113t pusvad\u012bt\u0101ju rad\u012bto siltumu, bet izol\u0101cijas \u012bpa\u0161\u012bbas aizsarg\u0101 sh\u0113mas plates pret \u012bssavienojumiem vai citiem boj\u0101jumiem, kas cit\u0101di var\u0113tu rasties. Alum\u012bnija oks\u012bda zem\u0101 termisk\u0101 izple\u0161an\u0101s ar\u012b pal\u012bdz samazin\u0101t plais\u0101\u0161anas vai deform\u0101cijas risku.<\/p>","protected":false},"excerpt":{"rendered":"<p>Alumina is a soft, nonmagnetic material that is both ductile and corrosion-resistant, making it suitable for various applications including aluminum [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"site-sidebar-layout":"default","site-content-layout":"","ast-site-content-layout":"","site-content-style":"default","site-sidebar-style":"default","ast-global-header-display":"","ast-banner-title-visibility":"","ast-main-header-display":"","ast-hfb-above-header-display":"","ast-hfb-below-header-display":"","ast-hfb-mobile-header-display":"","site-post-title":"","ast-breadcrumbs-content":"","ast-featured-img":"","footer-sml-layout":"","theme-transparent-header-meta":"","adv-header-id-meta":"","stick-header-meta":"","header-above-stick-meta":"","header-main-stick-meta":"","header-below-stick-meta":"","astra-migrate-meta-layouts":"default","ast-page-background-enabled":"default","ast-page-background-meta":{"desktop":{"background-color":"var(--ast-global-color-4)","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-gradient":""},"tablet":{"background-color":"","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-gradient":""},"mobile":{"background-color":"","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-gradient":""}},"ast-content-background-meta":{"desktop":{"background-color":"var(--ast-global-color-5)","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-gradient":""},"tablet":{"background-color":"var(--ast-global-color-5)","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-gradient":""},"mobile":{"background-color":"var(--ast-global-color-5)","background-image":"","background-repeat":"repeat","background-position":"center center","background-size":"auto","background-attachment":"scroll","background-type":"","background-media":"","overlay-type":"","overlay-color":"","overlay-gradient":""}},"footnotes":""},"categories":[6],"tags":[],"class_list":["post-133","post","type-post","status-publish","format-standard","hentry","category-alumina-knowledge"],"aioseo_notices":[],"_links":{"self":[{"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/posts\/133","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/comments?post=133"}],"version-history":[{"count":1,"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/posts\/133\/revisions"}],"predecessor-version":[{"id":134,"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/posts\/133\/revisions\/134"}],"wp:attachment":[{"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/media?parent=133"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/categories?post=133"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/aluminaceramics.net\/lv\/wp-json\/wp\/v2\/tags?post=133"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}