{"id":256,"date":"2024-04-15T00:48:44","date_gmt":"2024-04-14T16:48:44","guid":{"rendered":"http:\/\/ceramicatijolart.com\/?p=256"},"modified":"2024-04-17T11:31:05","modified_gmt":"2024-04-17T03:31:05","slug":"szilicium-karbid-surusege","status":"publish","type":"post","link":"https:\/\/ceramicatijolart.com\/hu\/szilicium-karbid-surusege\/","title":{"rendered":"Szil\u00edcium-karbid S\u0171r\u0171s\u00e9g"},"content":{"rendered":"<p>A szil\u00edcium az elektronika ter\u00fclet\u00e9n a leggyakrabban haszn\u00e1lt f\u00e9lvezet\u0151 anyag, de sz\u0171k s\u00e1vr\u00e9s\u00e9nek k\u00f6sz\u00f6nhet\u0151en alkalmaz\u00e1sa az energiaiparban korl\u00e1tozott. A szil\u00edcium-karbid (SiC) viszont sokkal sz\u00e9lesebb s\u00e1vr\u00e9ssel rendelkezik, ami lehet\u0151v\u00e9 teszi, hogy magasabb h\u0151m\u00e9rs\u00e9kleten \u00e9s fesz\u00fclts\u00e9g mellett is j\u00f3l teljes\u00edtsen.<\/p>\n<p>A SiC az egyik legkem\u00e9nyebb anyag, kem\u00e9nys\u00e9g\u00e9t tekintve csak a gy\u00e9m\u00e1nt \u00e9s a k\u00f6b\u00f6s b\u00f3r-nitrid m\u00falja fel\u00fcl. B\u00e1r a SiC nyers vagy el\u0151s\u00fct\u00f6tt \u00e1llapotban is megmunk\u00e1lhat\u00f3, a szigor\u00fa t\u0171r\u00e9shat\u00e1rok el\u00e9r\u00e9se \u00e9rdek\u00e9ben a megmunk\u00e1l\u00e1s vagy a tov\u00e1bbi megmunk\u00e1l\u00e1s el\u0151tt el\u0151sz\u00f6r teljes m\u00e9rt\u00e9kben szinterelni kell.<\/p>\n<h2>T\u00e9rfogats\u0171r\u0171s\u00e9g<\/h2>\n<p>A szil\u00edcium-karbid (SiC) egy kem\u00e9ny, szil\u00edciumb\u00f3l \u00e9s sz\u00e9nb\u0151l \u00e1ll\u00f3 vegy\u00fclet, amely term\u00e9szetes form\u00e1ban a moissanit nev\u0171 dr\u00e1gak\u0151k\u00e9nt fordul el\u0151; azonban gyakrabban \u00e1ll\u00edtj\u00e1k el\u0151 szintetikusan por \u00e9s krist\u00e1ly form\u00e1j\u00e1ban, hogy csiszol\u00f3anyagk\u00e9nt, f\u00e9lvezet\u0151k\u00e9nt, dr\u00e1gak\u0151k\u00e9nt megmunk\u00e1lva, goly\u00f3\u00e1ll\u00f3 mell\u00e9nylemezk\u00e9nt vagy m\u00e1s, nagy kop\u00e1s\u00e1ll\u00f3s\u00e1got ig\u00e9nyl\u0151 ipari c\u00e9lokra haszn\u00e1lj\u00e1k.<\/p>\n<p>A tiszta szil\u00edcium-karbid sz\u00edntelen; az ipari gy\u00e1rt\u00e1s sor\u00e1n a vas-szennyez\u0151d\u00e9sek miatt jellegzetes barna vagy fekete \u00e1rnyalatot kap. A SiC-krist\u00e1lyokban megfigyelhet\u0151 sz\u00ednj\u00e1t\u00e9k a v\u00e9konyr\u00e9teg-interferencia hat\u00e1s\u00e1nak eredm\u00e9nye; sz\u00edne tov\u00e1bb fokozhat\u00f3 nitrog\u00e9nnel vagy foszforral t\u00f6rt\u00e9n\u0151 adal\u00e9kol\u00e1ssal (n-t\u00edpus\u00fa elemek), illetve berilliummal, b\u00f3rral, alum\u00edniummal vagy galliummal t\u00f6rt\u00e9n\u0151 adal\u00e9kol\u00e1ssal (p-t\u00edpus\u00fa adal\u00e9kanyagok), amelyek a vezet\u0151k\u00e9pess\u00e9get n\u00f6velik.<\/p>\n<p>Anyagle\u00edr\u00e1s: A WaferCrete\u00ae (WC) egy rendk\u00edv\u00fcl s\u0171r\u0171, krist\u00e1lyszerkezet\u0171 anyag, amelynek k\u00f6sz\u00f6nhet\u0151en gyakorlatilag lehetetlen \u00f6sszet\u00f6rni. Ezen fel\u00fcl alacsony porozit\u00e1sa r\u00e9v\u00e9n k\u00e9pes ellen\u00e1llni a magas h\u0151m\u00e9rs\u00e9kletnek, mik\u00f6zben nyom\u00f3szil\u00e1rds\u00e1ga minden betonkever\u00e9skor n\u00f6vekszik; meg\u00e1llap\u00edtott\u00e1k, hogy jelenl\u00e9te jelent\u0151sen cs\u00f6kkenti a v\u00edz\u00e1tereszt\u0151 k\u00e9pess\u00e9get.<\/p>\n<p>Bebizonyosodott, hogy mind a WC, mind a SiC hozz\u00e1ad\u00e1sa jelent\u0151sen n\u00f6veli a beton hajl\u00edt\u00f3szil\u00e1rds\u00e1g\u00e1t. Az ANOVA-elemz\u00e9s meger\u0151s\u00edtette ezt a hat\u00e1st, mivel a WC jobban ellen\u00e1ll a reped\u00e9sek terjed\u00e9s\u00e9nek, mik\u00f6zben krist\u00e1lyszerkezete nem annyira rugalmas.<\/p>\n<h2>K\u00e9sz\u00fcl\u00e9k s\u0171r\u0171s\u00e9ge<\/h2>\n<p>A szil\u00edcium-karbid (SiC) egy olyan mesters\u00e9ges anyag, amely kiv\u00e1l\u00f3 magas h\u0151m\u00e9rs\u00e9kleti szil\u00e1rds\u00e1ggal \u00e9s h\u0151vezet\u0151 k\u00e9pess\u00e9ggel rendelkezik. Rendk\u00edv\u00fcl alacsony h\u0151t\u00e1gul\u00e1si egy\u00fctthat\u00f3ja miatt a SiC sz\u00e1mos ig\u00e9nyes alkalmaz\u00e1sban felhaszn\u00e1lhat\u00f3: a csiszol\u00f3anyagokt\u00f3l \u00e9s ac\u00e9ladal\u00e9kanyagokt\u00f3l kezdve a nitrog\u00e9nnel vagy foszforral d\u00fas\u00edtott, n-t\u00edpus\u00fa f\u00e9lvezet\u0151k\u00e9nt haszn\u00e1lt v\u00e1ltozatokig, illetve a berilliummal, b\u00f3rral vagy alum\u00edniummal d\u00fas\u00edtott, p-t\u00edpus\u00fa f\u00e9lvezet\u0151 gy\u00e1rt\u00e1s\u00e1hoz haszn\u00e1lt v\u00e1ltozatokig.<\/p>\n<p>A szil\u00edcium-karbid egyed\u00fcl\u00e1ll\u00f3 tulajdons\u00e1gai miatt ide\u00e1lis anyag a nagyfesz\u00fclts\u00e9g\u0171 teljes\u00edtm\u00e9nyelektronikai eszk\u00f6z\u00f6kh\u00f6z, ide\u00e9rtve a gyakran magas fesz\u00fclts\u00e9gig\u00e9ny\u0171 elektromos j\u00e1rm\u0171veket is. A szil\u00edciumhoz k\u00e9pest j\u00f3val sz\u00e9lesebb s\u00e1vr\u00e9s\u00e9vel \u00e9s kiv\u00e1l\u00f3 h\u0151vezet\u0151 k\u00e9pess\u00e9g\u00e9vel a szil\u00edcium-karbid magasabb fesz\u00fclts\u00e9g\u0171 m\u0171k\u00f6d\u00e9st tesz lehet\u0151v\u00e9, mik\u00f6zben hat\u00e9konyabban vezeti el a h\u0151t \u2013 ezek a tulajdons\u00e1gok teszik k\u00fcl\u00f6n\u00f6sen alkalmass\u00e1 elektromos j\u00e1rm\u0171vek akkumul\u00e1torainak gy\u00e1rt\u00e1s\u00e1hoz.<\/p>\n<p>A Saint-Gobain az ipar\u00e1gban elismert szil\u00edcium-karbid ker\u00e1miaterm\u00e9k-portf\u00f3li\u00f3t k\u00edn\u00e1l, amely t\u00f6bbek k\u00f6z\u00f6tt t\u00f6bbr\u00e9teg\u0171, egyr\u00e9teg\u0171 \u00e9s tetra\u00e9deres term\u00e9keket tartalmaz. Ezeket a ker\u00e1mi\u00e1kat reakci\u00f3k\u00f6t\u00e9ses \u00e9s szinterel\u00e9si technik\u00e1kkal \u00e1ll\u00edtj\u00e1k el\u0151; mikroszerkezet\u00fck hat\u00e1rozza meg k\u00e9miai, termomechanikai \u00e9s mechanikai tulajdons\u00e1gaikat \u2013 ezt a tud\u00e1st alkalmaztuk olyan megold\u00e1sok kidolgoz\u00e1sakor, amelyek sz\u00e1mos ig\u00e9nyes alkalmaz\u00e1si ter\u00fcletet szolg\u00e1lnak ki.<\/p>\n<h2>L\u00e1tsz\u00f3lagos s\u0171r\u0171s\u00e9g<\/h2>\n<p>Egy anyag l\u00e1tsz\u00f3lagos s\u0171r\u0171s\u00e9ge a szil\u00e1rd anyag t\u00e9rfogategys\u00e9gre jut\u00f3 t\u00f6meg\u00e9t jelenti, bele\u00e9rtve a r\u00e9szecsk\u00e9k k\u00f6z\u00f6tti leveg\u0151- vagy g\u00e1zr\u00e9sek t\u00f6meg\u00e9t is; m\u00e9rt\u00e9kegys\u00e9ge kilogramm\/k\u00f6bm\u00e9ter, troy-uncia\/k\u00f6bl\u00e1b vagy m\u00e1s egyedi m\u00e9rt\u00e9kegys\u00e9g. \u00c1ltal\u00e1ban porok \u00e9s laza szerkezet\u0171 anyagok, p\u00e9ld\u00e1ul tejpor eset\u00e9ben m\u00e9rik.<\/p>\n<p>A t\u0171z\u00e1ll\u00f3 ker\u00e1mia az egyik legsokoldal\u00fabb ipari cermet, amely kiv\u00e1l\u00f3 magas h\u0151m\u00e9rs\u00e9kleti szil\u00e1rds\u00e1ga \u00e9s h\u0151m\u00e9rs\u00e9kleti sokk\u00e1ll\u00f3s\u00e1ga r\u00e9v\u00e9n sz\u00e1mos ipar\u00e1gban megtal\u00e1lja alkalmaz\u00e1s\u00e1t. Ezen fel\u00fcl korr\u00f3zi\u00f3- \u00e9s kop\u00e1s\u00e1ll\u00f3s\u00e1ga miatt kiv\u00e1l\u00f3 v\u00e1laszt\u00e1s magas h\u0151m\u00e9rs\u00e9klet\u0171 k\u00f6rnyezetekben.<\/p>\n<p>A szil\u00edcium nem \u00e9ghet\u0151 \u00e9s k\u00e9miailag inert anyag; v\u00edzben oldhatatlan, de l\u00fagokban \u00e9s vasoldatokban old\u00f3dik. Jellegzetes k\u00e9kes-fekete sz\u00edn\u00e9vel \u00e9s \u00e9les sz\u00e9leivel a szil\u00edciumnak sz\u00e1mos alkalmaz\u00e1si ter\u00fclete van a f\u00e9nykibocs\u00e1t\u00f3 di\u00f3d\u00e1k (LED) \u00e9s a r\u00e1di\u00f3detektorok ter\u00fclet\u00e9n. A moissanit nev\u0171 szintetikus dr\u00e1gak\u0151 \u00f6sszetev\u0151jek\u00e9nt (amelyet a NASA fejlesztett ki, miut\u00e1n felfedezte, hogy a szil\u00edcium alkalmas f\u00e9nykibocs\u00e1t\u00f3 di\u00f3d\u00e1kban \u00e9s krist\u00e1lyr\u00e1di\u00f3-detektorokban val\u00f3 felhaszn\u00e1l\u00e1sra) a szil\u00edcium sz\u00ednt is k\u00f6lcs\u00f6n\u00f6z a f\u00e9nykibocs\u00e1t\u00f3 di\u00f3d\u00e1knak \u00e9s a krist\u00e1lyr\u00e1di\u00f3-detektoroknak.<\/p>\n<p>A fokozatosan \u00f6sszenyomott SiC-mint\u00e1kat k\u00fcl\u00f6nb\u00f6z\u0151 nyom\u00e1s- \u00e9s h\u0151m\u00e9rs\u00e9kleti k\u00f6r\u00fclm\u00e9nyek k\u00f6z\u00f6tt vizsg\u00e1lt\u00e1k, ide\u00e9rtve a l\u00e9zerrel f\u0171t\u00f6tt gy\u00e9m\u00e1nt\u00fct\u0151cell\u00e1kat (blue20 \u00e9s black18 g\u00f6rb\u00e9k), valamint az els\u0151 elvek szerinti sz\u00e1m\u00edt\u00e1sokat (a 3. kieg\u00e9sz\u00edt\u0151 t\u00e1bl\u00e1zat narancss\u00e1rg\u00e1val \u00e1rnyalt ter\u00fclete). A B3\u2013B1 \u00e1tmenetn\u00e9l m\u00e9rt s\u0171r\u0171s\u00e9geket \u00e9s r\u00e1cs-d-t\u00e1vols\u00e1gokat \u00f6sszehasonl\u00edtottuk az \u00fcll\u0151cell\u00e1k l\u00e9zeres meleg\u00edt\u00e9s\u00e9vel kapott k\u00eds\u00e9rleti adatokkal (blue20 \u00e9s black18 g\u00f6rb\u00e9k) \u00e9s az els\u0151 elvek szerinti sz\u00e1m\u00edt\u00e1sokkal (narancss\u00e1rg\u00e1val \u00e1rny\u00e9kolt ter\u00fclet). A m\u00e9rt \u00e9rt\u00e9kek kiv\u00e1l\u00f3an egyeztek.<\/p>\n<h2>Fajs\u00faly<\/h2>\n<p>A szil\u00edcium-karbid (SiC) az egyik legk\u00f6nnyebb \u00e9s legkem\u00e9nyebb ker\u00e1miaanyag. Sz\u00e9les s\u00e1vr\u00e9s\u00e9vel \u00e9s magas h\u0151vezet\u0151 k\u00e9pess\u00e9g\u00e9vel a SiC ide\u00e1lis olyan alkalmaz\u00e1sokhoz, amelyek magas h\u0151m\u00e9rs\u00e9kleten alacsony ellen\u00e1ll\u00e1st ig\u00e9nyelnek, ugyanakkor k\u00f6nnyen megmunk\u00e1lhat\u00f3.<\/p>\n<p>A SiC rendk\u00edv\u00fcl magas kop\u00e1s\u00e1ll\u00f3s\u00e1g\u00e1r\u00f3l ismert, ez\u00e9rt ide\u00e1lis b\u00e9l\u00e9sanyagk\u00e9nt szivatty\u00fakamr\u00e1kban \u00e9s ciklonokban, valamint a b\u00e1ny\u00e1szati tev\u00e9kenys\u00e9gek sor\u00e1n haszn\u00e1lt j\u00e1r\u00f3kerekekben \u00e9s garatokban. Ezenk\u00edv\u00fcl a SiC-b\u0151l k\u00e9sz\u00fclt sug\u00e1rhajt\u00f3m\u0171-f\u00fav\u00f3k\u00e1kban is gyakran alkalmazz\u00e1k a SiC-t, mivel ez a anyag k\u00e9pes ellen\u00e1llni a magas h\u0151m\u00e9rs\u00e9klet\u0171, nagy nyom\u00e1s\u00fa \u00e9s kop\u00e1snak kitett k\u00f6rnyezeteknek an\u00e9lk\u00fcl, hogy er\u00f3zi\u00f3s k\u00e1rosod\u00e1st szenvedne.<\/p>\n<p>A SiC-t egykrist\u00e1lyk\u00e9nt lehet el\u0151\u00e1ll\u00edtani, amelyb\u0151l \u00f3r\u00e1kban \u00e9s goly\u00f3\u00e1ll\u00f3 mell\u00e9nyekben haszn\u00e1lt moissanit dr\u00e1gak\u00f6veket \u00e1ll\u00edtanak el\u0151, valamint por \u00e9s nagy szemcsem\u00e9ret\u0171 form\u00e1ban is el\u0151\u00e1ll\u00edthat\u00f3, csiszol\u00f3anyagk\u00e9nt val\u00f3 felhaszn\u00e1l\u00e1sra. A SiC-t tov\u00e1bb\u00e1 \u00f6ssze is lehet szinterelni, \u00edgy rendk\u00edv\u00fcl tart\u00f3s ker\u00e1mi\u00e1k k\u00e9sz\u00fclhetnek bel\u0151le, amelyeket v\u00e1g\u00f3szersz\u00e1mokk\u00e9nt, p\u00e9ld\u00e1ul f\u00far\u00f3fejekk\u00e9nt haszn\u00e1lnak.<\/p>\n<p>Az anyaggal val\u00f3 k\u00e9miai \u00e9rintkez\u00e9s szagtalan \u00e9s \u00edztelen, m\u00e9gis b\u0151rirrit\u00e1ci\u00f3t \u00e9s szemirrit\u00e1ci\u00f3t okozhat. A Nemzetk\u00f6zi R\u00e1kkutat\u00e1si \u00dcgyn\u00f6ks\u00e9g (IARC) oszt\u00e1lyoz\u00e1si rendszer\u00e9nek megfelel\u0151en az anyaggal val\u00f3 \u00e9rintkez\u00e9s val\u00f3sz\u00edn\u0171 (2a) vagy lehets\u00e9ges (2b) hum\u00e1n karcinogenit\u00e1st eredm\u00e9nyezhet; a k\u00eds\u00e9rleti \u00e1llatokn\u00e1l a t\u00fcnetek gyakran az expoz\u00edci\u00f3t k\u00f6vet\u0151 15 \u00e9v ut\u00e1n jelentkeznek.<\/p>","protected":false},"excerpt":{"rendered":"<p>Silicon is the go-to semiconductor material in electronics, but its narrow band gap limits power applications. Silicon carbide (SiC), however, boasts much wider bands which enable it to perform at higher temperatures and voltages. SiC is one of the hardest materials, rivaled only by diamond and cubic boron nitride in terms of hardness. While SiC [&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":[64],"tags":[],"class_list":["post-256","post","type-post","status-publish","format-standard","hentry","category-knowledge"],"aioseo_notices":[],"_links":{"self":[{"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/posts\/256","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/comments?post=256"}],"version-history":[{"count":1,"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/posts\/256\/revisions"}],"predecessor-version":[{"id":257,"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/posts\/256\/revisions\/257"}],"wp:attachment":[{"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/media?parent=256"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/categories?post=256"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/ceramicatijolart.com\/hu\/wp-json\/wp\/v2\/tags?post=256"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}