{"id":1023,"date":"2025-02-21T10:40:45","date_gmt":"2025-02-21T10:40:45","guid":{"rendered":"https:\/\/expanite.com?page_id=1023"},"modified":"2026-08-17T08:09:55","modified_gmt":"2026-08-17T08:09:55","slug":"austenitic","status":"publish","type":"page","link":"https:\/\/expanite.com\/fr\/connaissances\/alliages\/austenitique\/","title":{"rendered":"Acier inoxydable aust\u00e9nitique"},"content":{"rendered":"<p><img decoding=\"async\" src=\"\/wp-content\/uploads\/2025\/01\/arrow-down.svg\" alt=\"\"><\/p>\n<h1>Austenitic <span class=\"uk-text-emphasis\">Stainless Steel hardening<\/span><\/h1>\n<h2>Expanite Surface Hardening For a Variety of Stainless Steel Alloys Including Austenitic<\/h2>\n<div>Austenitic stainless steel is on of the major categories of stainless steel include Martensitic, ferritic, duplex, and precipitation hardened variants<\/div>\n<div>\n<p>The\u00a0predominant crystalline structure is austenite, which is face-centered cubic in nature. This structure prevents steels from becoming hardenable through heat treatment and renders them essentially non-magnetic. To achieve this structure, it&rsquo;s necessary to introduce sufficient austenite-stabilizing elements like nickel, manganese, and nitrogen. The Incoloy family of alloys falls within the realm of super <a href=\"https:\/\/bssa.org.uk\/bssa_articles\/austenitic-stainless-steels\/\" target=\"_blank\" rel=\"noopener\">austenitic stainless steels.<\/a><\/p>\n<p><strong>Learn More on <a href=\"https:\/\/en.wikipedia.org\/wiki\/Austenitic_stainless_steel\" target=\"_blank\" rel=\"noopener\">Wikipedia<\/a><\/strong><\/p>\n<\/div>\n<h2>UNS S30400 \/ S30403 \/ AISI 304 \/ AISI 304L \/ 1.4301 \/ 1.4307<\/h2>\n<div>AISI 304 stainless has excellent fabricability and weldability characteristics and is the most widely used chromium-nickel austenitic stainless steel. It is nonmagnetic in the annealed condition and becomes slightly magnetic when cold worked. Nonhardenable by heat treating. The low carbon version of this alloy is known as AISI 304L.<\/div>\n<h2>UNS S31600 \/ S31603 \/ AISI 316 \/ AISI 316L \/ 1.4401 \/ 1.4404<\/h2>\n<div>AISI 316 stainless is a molybdenum-bearing austenitic stainless offering improved corrosion resistance in chlorides and many other environments over 304. It also has higher tensile and creep strength at elevated temperatures than the conventional 18% chromium &#8211; 8% nickel alloys. Suggested for applications requiring a moderate level of improvement in machinability for shorter runs of less complex parts, particularly at larger bar diameters. The low carbon version of this alloy is known as AISI 316L.<\/div>\n<h2>UNS S30300 \/ AISI 303 \/ 1.4305<\/h2>\n<div>\n<p>AISI 303 is an 18-8 chrome-nickel free-machining stainless steel with the addition of sulfur to enhance the machinability of this ordinarily tough and difficult to machine alloy. AISI 303 steel possesses nongalling properties that make disassembly of parts easy and help to avoid scratching or galling in moving parts. It is not recommended for vessels containing gases or liquids under high pressures.<\/p>\n<\/div>\n<h2>Properties of Austenitic Stainless Steels<\/h2>\n<div>\n<p>Heat-resistant grades are designed for applications at elevated temperatures, typically exceeding 600\u00b0C (1,100\u00b0F).<\/p>\n<p>These alloys must effectively withstand corrosion, primarily oxidation, while maintaining their mechanical properties, especially strength (yield stress) and resistance to creep deformation.<\/p>\n<p>Chromium primarily contributes to corrosion resistance, often accompanied by the addition of silicon and aluminum. Nickel, on the other hand, is not particularly resistant to sulfur-containing environments. To address this issue, additional silicon and aluminum are incorporated, forming highly stable oxides. Additionally, the presence of rare earth elements like cerium enhances the stability of the oxide film.<\/p>\n<\/div>\n<table>\n<thead>\n<tr>\n<th>EN designation<\/th>\n<th>Euronorm (EN) number<\/th>\n<th>AISI grade<\/th>\n<th><\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td>X10CrNi18-8 <\/td>\n<td>1.4310 <\/td>\n<td>301<\/td>\n<td>n\/a<\/td>\n<\/tr>\n<tr>\n<td>X5CrNi18-10 <\/td>\n<td>1.4301 <\/td>\n<td>304<\/td>\n<td>\n<p>None<\/p>\n<\/td>\n<\/tr>\n<tr>\n<td>X2CrNi18-9<\/td>\n<td>1.4307 <\/td>\n<td>304L<\/td>\n<td>\n<p>None<\/p>\n<\/td>\n<\/tr>\n<tr>\n<td>X8CrNiS18-9<\/td>\n<td>1.4305 <\/td>\n<td>303<\/td>\n<td>\n<p>None<\/p>\n<\/td>\n<\/tr>\n<tr>\n<td>X6CrNiTi18-10<\/td>\n<td> 1.4541 <\/td>\n<td>321<\/td>\n<td>\n<p>None<\/p>\n<\/td>\n<\/tr>\n<tr>\n<td>X5CrNiMo17-12-2<\/td>\n<td> 1.4401 <\/td>\n<td>316<\/td>\n<td><\/td>\n<\/tr>\n<tr>\n<td>X2CrNiMo17-12-2<\/td>\n<td>1.4404 <\/td>\n<td>316L<\/td>\n<td><\/td>\n<\/tr>\n<tr>\n<td>X6CrNiMoTi17-12-2<\/td>\n<td>1.4571 <\/td>\n<td>316Ti<\/td>\n<td><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<h2>The Purpose of the Process<\/h2>\n<h2>ExpaniteHigh-T<\/h2>\n<div>\n<p>The purpose of this process is to dissolve nitrogen in the surface of stainless steel to a depth of 1mm. Peak hardness ranges from 280HV on austenitic grades to 950HV on martensitic\/ferritic grades.<\/p>\n<\/div>\n<h2>ExpaniteLow-T<\/h2>\n<div>\n<p>The purpose of this process is to dissolve nitrogen and carbon in the surface of stainless steel to a depth in the range of 5-30\u00b5m. Peak hardness ranges from 1000-1200HV on austenitic grades to 1300HV on martensitic\/ferritic grades.<\/p>\n<\/div>\n<h2>SuperExpanite\u00ae<\/h2>\n<div>The purpose of this process is to combine ExpaniteHigh-T and ExpaniteLow-T processes to achieve higher load bearing and corrosion properties. Firstly, the ExpaniteHigh-T process is applied to create a deep case depth with moderate nitrogen content. Secondly, the ExpaniteLow-T process is applied to create a high-hardness surface on top of the ExpaniteHigh-T zone. The Expanite process does not result in a coating, but a diffusion zone with an increased carbon and nitrogen content. We call this zone expanded austenite, expanded martensite or simply: Expanite.<\/div>\n<h2>Discover More Stainless Steel Solutions with Expanite<\/h2>\n<div>\n<p>Expanite\u00ae surface hardening and heat treatment solutions unlock the full potential of austenitic stainless steels by improving wear resistance, eliminating galling, and extending component lifetime without compromising corrosion resistance. With our proven expertise, we help customers in demanding industries achieve superior performance and reliability.<\/p>\n<p>To gain a complete overview of how Expanite can support your material choices, we also invite you to explore our dedicated pages on <a href=\"https:\/\/expanite.com\/stainless-steel-hardening\/alloys-case-hardening\/duplex\/\">Duplex<\/a>, <a href=\"https:\/\/expanite.com\/stainless-steel-hardening\/alloys-case-hardening\/ferritic\/\">Ferritic<\/a>, and <a href=\"https:\/\/expanite.com\/stainless-steel-hardening\/alloys-case-hardening\/hardening\/\">Martensitic<\/a> stainless steels \u2013 and discover how our technology adds value across the full range of stainless steel alloys.<\/p>\n<\/div>\n<p><img decoding=\"async\" src=\"\/wp-content\/uploads\/2025\/05\/LHJ1.jpg\" alt=\"Surface Hardening Expert\"><\/p>\n<h2>Need assistance?<\/h2>\n<div>Our team is available across all time zones to assist you with any inquiries.<br \/>\nShare your challenges with us, and we\u2019ll work together to find the perfect solution.<\/div>\n<ul>\n<li>\n<p>\n        <a href=\"https:\/\/expanite.com\/surface-hardening-heat-treatment-contact-experts\/\">Find Expanite Near You <\/a>\n    <\/p>\n<\/li>\n<li>\n<p>\n        <a href=\"tel:004528196443\">+45 2819 6443<\/a>\n    <\/p>\n<\/li>\n<\/ul>\n<p><p>\n        <a href=\"https:\/\/forms.zohopublic.com\/thomasabelsandholdt\/form\/Letushelp\/formperma\/HSzRaqV0nghd7JGxHm53zxMQyrI3eMWFfn_Q_tYMYJg\" target=\"_blank\" rel=\"noopener\">Contact Us<\/a>\n    <\/p>\n<\/p>\n<p><!--more--><br \/>\n<!-- {\"type\":\"layout\",\"children\":[{\"type\":\"section\",\"props\":{\"height\":\"viewport\",\"height_viewport\":60,\"height_viewport_offset\":true,\"image_loading\":true,\"image_position\":\"center-center\",\"image_size\":\"cover\",\"image_width\":\"2560\",\"media_overlay\":\"rgba(0, 30, 53, 0.39)\",\"padding_bottom\":\"large\",\"padding_top\":\"large\",\"style\":\"secondary\",\"text_color\":\"light\",\"title_breakpoint\":\"xl\",\"title_position\":\"top-left\",\"title_rotation\":\"left\",\"vertical_align\":\"bottom\",\"width\":\"default\"},\"children\":[{\"type\":\"row\",\"children\":[{\"type\":\"column\",\"props\":{\"image_position\":\"center-center\",\"position_sticky_breakpoint\":\"m\"},\"children\":[{\"type\":\"image\",\"props\":{\"image\":\"wp-content\/uploads\/2025\/01\/arrow-down.svg\",\"image_svg_color\":\"emphasis\",\"image_width\":45,\"margin_bottom\":\"default\",\"margin_top\":\"default\"}},{\"type\":\"headline\",\"props\":{\"content\":\"Austenitic <span class=\\\"uk-text-emphasis\\\">Stainless Steel hardening<\/span>\",\"content_de_de\":\"H\u00e4rtung von <span class=\\\"uk-text-emphasis\\\">austenitischem Edelstahl<\/span>\",\"content_fr_fr\":\"Durcissement de <span class=\\\"uk-text-emphasis\\\">l'acier inoxydable aust\u00e9nitique<\/span>\",\"content_it_it\":\"Acciaio inossidabile <span class=\\\"uk-text-emphasis\\\">austenitico<\/span>\",\"image_align\":\"left\",\"image_margin\":\"xsmall\",\"margin_bottom\":\"small\",\"margin_top\":\"small\",\"maxwidth\":\"2xlarge\",\"maxwidth_breakpoint\":\"m\",\"title_color\":\"success\",\"title_element\":\"h1\",\"title_style\":\"heading-small\"}}]}]}],\"name\":\"Hero\"},{\"type\":\"section\",\"props\":{\"image_position\":\"center-center\",\"padding_bottom\":\"xsmall\",\"padding_top\":\"xsmall\",\"style\":\"primary\",\"title_breakpoint\":\"xl\",\"title_position\":\"top-left\",\"title_rotation\":\"left\",\"vertical_align\":\"middle\",\"width\":\"default\"},\"children\":[{\"type\":\"row\",\"children\":[{\"type\":\"column\",\"props\":{\"image_position\":\"center-center\",\"position_sticky_breakpoint\":\"m\"},\"children\":[{\"type\":\"breadcrumbs\",\"props\":{\"show_current\":true,\"show_home\":true}}]}]}]},{\"type\":\"section\",\"props\":{\"image_position\":\"center-center\",\"padding_bottom\":\"none\",\"style\":\"default\",\"title_breakpoint\":\"xl\",\"title_position\":\"top-left\",\"title_rotation\":\"left\",\"vertical_align\":\"\",\"width\":\"default\"},\"children\":[{\"type\":\"row\",\"props\":{\"column_gap\":\"large\",\"layout\":\"2-3,1-3\",\"margin_bottom\":\"medium\",\"margin_top\":\"medium\",\"row_gap\":\"large\"},\"children\":[{\"type\":\"column\",\"props\":{\"image_position\":\"center-center\",\"position_sticky_breakpoint\":\"m\",\"width_medium\":\"2-3\"},\"children\":[{\"type\":\"headline\",\"props\":{\"content\":\"Expanite Surface Hardening For a Variety of Stainless Steel Alloys Including Austenitic\",\"content_it_it\":\"L'indurimento superficiale per una variet\u00e0 di leghe di acciaio inossidabile, compreso l'austenitico.\",\"image_align\":\"left\",\"image_margin\":\"xsmall\",\"title_element\":\"h2\",\"title_style\":\"heading-small\"}},{\"type\":\"text\",\"props\":{\"column_breakpoint\":\"m\",\"content\":\"Austenitic stainless steel is on of the major categories of stainless steel include Martensitic, ferritic, duplex, and precipitation hardened variants\",\"content_it_it\":\"L'acciaio inossidabile austenitico \u00e8 una delle principali categorie di acciaio inossidabile, che comprende le varianti martensitica, ferritica, duplex e indurita per precipitazione.\",\"margin_bottom\":\"default\",\"margin_top\":\"default\",\"text_style\":\"lead\"}},{\"type\":\"text\",\"props\":{\"column_breakpoint\":\"m\",\"content\":\"\n\n<p>The\u00a0predominant crystalline structure is austenite, which is face-centered cubic in nature. This structure prevents steels from becoming hardenable through heat treatment and renders them essentially non-magnetic. To achieve this structure, it's necessary to introduce sufficient austenite-stabilizing elements like nickel, manganese, and nitrogen. The Incoloy family of alloys falls within the realm of super <a href=\\\"https:\/\/bssa.org.uk\/bssa_articles\/austenitic-stainless-steels\/\\\">austenitic stainless steels.<\/a><\/p>\n\n\\n\n\n<p><strong>Learn More on <a href=\\\"https:\/\/en.wikipedia.org\/wiki\/Austenitic_stainless_steel\\\">Wikipedia<\/a><\/strong><\/p>\n\n\",\"content_it_it\":\"\n\n<p>L'acciaio inossidabile martensitico \u00e8 una lega di acciaio inossidabile caratterizzata da una struttura cristallina martensitica, che pu\u00f2 essere rafforzata e affinata attraverso processi quali l'invecchiamento e il trattamento termico. La struttura cristallina predominante \u00e8 l'austenite, di natura cubica a facce centrate.<\/p>\n\n\\n\n\n<p>Questa struttura impedisce agli acciai di diventare temprabili attraverso il trattamento termico e li rende essenzialmente amagnetici. Per ottenere questa struttura, \u00e8 necessario introdurre una quantit\u00e0 sufficiente di elementi stabilizzanti dell'austenite, come nichel, manganese e azoto. La famiglia di leghe Incoloy rientra nel campo degli acciai inossidabili super austenitici.<\/p>\n\n\\n\n\n<p><strong>Scopri di pi\u00f9 su <a href=\\\"https:\/\/en.wikipedia.org\/wiki\/Austenitic_stainless_steel\\\">wiki<\/a><\/strong><\/p>\n\n\",\"margin_bottom\":\"default\",\"margin_top\":\"default\"}},{\"type\":\"headline\",\"props\":{\"content\":\"UNS S30400 \/ S30403 \/ AISI 304 \/ AISI 304L \/ 1.4301 \/ 1.4307\",\"image_align\":\"left\",\"image_margin\":\"xsmall\",\"title_element\":\"h2\"}},{\"type\":\"text\",\"props\":{\"column_breakpoint\":\"m\",\"content\":\"AISI 304 stainless has excellent fabricability and weldability characteristics and is the most widely used chromium-nickel austenitic stainless steel. It is nonmagnetic in the annealed condition and becomes slightly magnetic when cold worked. Nonhardenable by heat treating. The low carbon version of this alloy is known as AISI 304L.\",\"content_it_it\":\"L'acciaio inossidabile AISI 304 ha eccellenti caratteristiche di fabbricabilit\u00e0 e saldabilit\u00e0 ed \u00e8 l'acciaio inossidabile austenitico al cromo-nichel pi\u00f9 utilizzato. Non \u00e8 magnetico allo stato ricotto e diventa leggermente magnetico quando viene lavorato a freddo. Non \u00e8 temprabile con il trattamento termico.\",\"margin_bottom\":\"default\",\"margin_top\":\"default\"}},{\"type\":\"headline\",\"props\":{\"content\":\"UNS S31600 \/ S31603 \/ AISI 316 \/ AISI 316L \/ 1.4401 \/ 1.4404\",\"image_align\":\"left\",\"image_margin\":\"xsmall\",\"title_element\":\"h2\"}},{\"type\":\"text\",\"props\":{\"column_breakpoint\":\"m\",\"content\":\"AISI 316 stainless is a molybdenum-bearing austenitic stainless offering improved corrosion resistance in chlorides and many other environments over 304. It also has higher tensile and creep strength at elevated temperatures than the conventional 18% chromium - 8% nickel alloys. Suggested for applications requiring a moderate level of improvement in machinability for shorter runs of less complex parts, particularly at larger bar diameters. The low carbon version of this alloy is known as AISI 316L.\",\"content_it_it\":\"L'acciaio inossidabile AISI 316 \u00e8 un acciaio austenitico contenente molibdeno che offre una maggiore resistenza alla corrosione nei cloruri e in molti altri ambienti rispetto al 304. \n\n<p> \n\n<p>\\n    Presenta inoltre una maggiore resistenza alla trazione e allo scorrimento a temperature elevate rispetto alle leghe convenzionali al 18% di cromo e all'8% di nichel. Consigliato per applicazioni che richiedono un moderato livello di miglioramento della lavorabilit\u00e0 per tirature ridotte di pezzi meno complessi, in particolare per diametri di barra maggiori.\",\"margin_bottom\":\"default\",\"margin_top\":\"default\"}},{\"type\":\"headline\",\"props\":{\"content\":\"UNS S30300 \/ AISI 303 \/ 1.4305\",\"image_align\":\"left\",\"image_margin\":\"xsmall\",\"title_element\":\"h2\"}},{\"type\":\"text\",\"props\":{\"column_breakpoint\":\"m\",\"content\":\"\n\n<p>AISI 303 is an 18-8 chrome-nickel free-machining stainless steel with the addition of sulfur to enhance the machinability of this ordinarily tough and difficult to machine alloy. AISI 303 steel possesses nongalling properties that make disassembly of parts easy and help to avoid scratching or galling in moving parts. It is not recommended for vessels containing gases or liquids under high pressures.<\/p>\n\n\\n\",\"content_it_it\":\"L'AISI 303 \u00e8 un acciaio inossidabile 18-8 al cromo-nichel per la lavorazione libera, con l'aggiunta di zolfo per migliorare la lavorabilit\u00e0 di questa lega normalmente dura e difficile da lavorare. L'acciaio AISI 303 possiede propriet\u00e0 antincrostanti che facilitano lo smontaggio delle parti e contribuiscono a evitare graffi o grippaggio nelle parti in movimento. Non \u00e8 raccomandato per recipienti contenenti gas o liquidi ad alta pressione.\",\"margin_bottom\":\"default\",\"margin_top\":\"default\"}},{\"type\":\"headline\",\"props\":{\"content\":\"Properties of Austenitic Stainless Steels\",\"content_it_it\":\"Propriet\u00e0 degli acciai inossidabili austenitici\",\"image_align\":\"left\",\"image_margin\":\"xsmall\",\"title_element\":\"h2\"}},{\"type\":\"text\",\"props\":{\"column_breakpoint\":\"m\",\"content\":\"\n\n<p>Heat-resistant grades are designed for applications at elevated temperatures, typically exceeding 600\u00b0C (1,100\u00b0F).<\/p>\n\n\\n\n\n<p>These alloys must effectively withstand corrosion, primarily oxidation, while maintaining their mechanical properties, especially strength (yield stress) and resistance to creep deformation.<\/p>\n\n\\n\n\n<p>Chromium primarily contributes to corrosion resistance, often accompanied by the addition of silicon and aluminum. Nickel, on the other hand, is not particularly resistant to sulfur-containing environments. To address this issue, additional silicon and aluminum are incorporated, forming highly stable oxides. Additionally, the presence of rare earth elements like cerium enhances the stability of the oxide film.<\/p>\n\n\\n\",\"content_it_it\":\"I gradi resistenti al calore sono progettati per applicazioni a temperature elevate, in genere superiori a 600\u00b0C (1.100\u00b0F).\n\n<p> \n\n<p>\\n    \\nQueste leghe devono resistere efficacemente alla corrosione, soprattutto all'ossidazione, mantenendo le loro propriet\u00e0 meccaniche, in particolare la resistenza (tensione di snervamento) e la resistenza alla deformazione per scorrimento.Il cromo contribuisce principalmente alla resistenza alla corrosione, spesso accompagnato dall'aggiunta di silicio e alluminio. \n\n<p> \n\n<p>\\n    Il nichel, invece, non \u00e8 particolarmente resistente agli ambienti contenenti zolfo. Per risolvere questo problema, vengono incorporati silicio e alluminio, formando ossidi altamente stabili. Inoltre, la presenza di elementi delle terre rare come il cerio aumenta la stabilit\u00e0 del film di ossido.\",\"margin_bottom\":\"default\",\"margin_top\":\"default\"}},{\"type\":\"fs_table\",\"props\":{\"css\":\"p {margin-bottom:0}\",\"description_limit_length\":\"80\",\"description_margin\":\"remove\",\"description_style\":\"text-small\",\"enable_datatables\":false,\"image_height\":\"60\",\"image_svg_color\":\"emphasis\",\"image_width\":\"60\",\"link_size\":\"small\",\"link_style\":\"secondary\",\"link_text\":\"Read more\",\"show_datatables_settings\":\"all\",\"show_description\":true,\"show_element_settings\":\"all\",\"show_image\":false,\"show_link\":false,\"show_table_content\":true,\"show_table_meta\":true,\"show_table_title\":true,\"show_text_1\":true,\"show_text_2\":true,\"show_text_3\":true,\"show_text_4\":false,\"show_text_5\":false,\"show_text_6\":false,\"show_text_7\":false,\"show_text_8\":false,\"show_text_9\":false,\"show_title\":false,\"table_content_column_breakpoint\":\"m\",\"table_content_limit_length\":\"80\",\"table_content_margin\":\"small\",\"table_content_style\":\"text-small\",\"table_datatables_defer_render\":false,\"table_datatables_filter\":true,\"table_datatables_filter_dropdown_limit\":\"0\",\"table_datatables_filter_dropdown_width\":\"100\",\"table_datatables_filter_link\":true,\"table_datatables_filter_placeholder\":\"col-name\",\"table_datatables_filter_position\":\"footer\",\"table_datatables_filter_text_1\":true,\"table_datatables_filter_text_2\":true,\"table_datatables_filter_text_3\":true,\"table_datatables_filter_text_4\":true,\"table_datatables_filter_text_5\":true,\"table_datatables_filter_text_6\":true,\"table_datatables_filter_text_7\":true,\"table_datatables_filter_text_8\":true,\"table_datatables_filter_text_9\":true,\"table_datatables_filter_title\":true,\"table_datatables_fixed_footer\":false,\"table_datatables_fixed_footer_offset\":0,\"table_datatables_fixed_header\":false,\"table_datatables_fixed_header_offset\":0,\"table_datatables_info\":true,\"table_datatables_lengthChange\":true,\"table_datatables_ordering\":true,\"table_datatables_pageLength\":\"10\",\"table_datatables_paging\":true,\"table_datatables_save_state\":false,\"table_datatables_search\":true,\"table_datatables_sorting_default\":\"title\",\"table_datatables_sorting_default_order\":\"asc\",\"table_datatables_sorting_image\":false,\"table_datatables_sticky\":false,\"table_datatables_translation_filter_all\":\"All\",\"table_datatables_translation_filter_all_de_de\":\"All\",\"table_datatables_translation_filter_all_fr_fr\":\"All\",\"table_datatables_translation_filter_checkbox_false\":\"No\",\"table_datatables_translation_filter_checkbox_false_de_de\":\"No\",\"table_datatables_translation_filter_checkbox_false_fr_fr\":\"No\",\"table_datatables_translation_filter_checkbox_true\":\"Yes\",\"table_datatables_translation_filter_checkbox_true_de_de\":\"Yes\",\"table_datatables_translation_filter_checkbox_true_fr_fr\":\"Yes\",\"table_datatables_translation_info\":\"Showing page _PAGE_ of _PAGES_\",\"table_datatables_translation_infoEmpty\":\"No records available\",\"table_datatables_translation_infoEmpty_de_de\":\"No records available\",\"table_datatables_translation_infoEmpty_fr_fr\":\"No records available\",\"table_datatables_translation_infoFiltered\":\"(filtered from _MAX_ total records)\",\"table_datatables_translation_infoFiltered_de_de\":\"(filtered from _MAX_ total records)\",\"table_datatables_translation_infoFiltered_fr_fr\":\"(filtered from _MAX_ total records)\",\"table_datatables_translation_info_de_de\":\"Showing page _PAGE_ of _PAGES_\",\"table_datatables_translation_info_fr_fr\":\"Showing page _PAGE_ of _PAGES_\",\"table_datatables_translation_lengthMenu\":\"Display _MENU_ records per page\",\"table_datatables_translation_lengthMenu_de_de\":\"Display _MENU_ records per page\",\"table_datatables_translation_lengthMenu_fr_fr\":\"Display _MENU_ records per page\",\"table_datatables_translation_pagination_next\":\"Next\",\"table_datatables_translation_pagination_next_de_de\":\"Next\",\"table_datatables_translation_pagination_next_fr_fr\":\"Next\",\"table_datatables_translation_pagination_previous\":\"Previous\",\"table_datatables_translation_pagination_previous_de_de\":\"Previous\",\"table_datatables_translation_pagination_previous_fr_fr\":\"Previous\",\"table_datatables_translation_search\":\"Search\",\"table_datatables_translation_search_de_de\":\"Search\",\"table_datatables_translation_search_fr_fr\":\"Search\",\"table_datatables_translation_zeroRecords\":\"Nothing found - 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Peak hardness ranges from 280HV on austenitic grades to 950HV on martensitic\/ferritic grades.<\/p>\n\n\",\"content_it_it\":\"Lo scopo di questo processo \u00e8 dissolvere l'azoto nella superficie dell'acciaio inossidabile a una profondit\u00e0 compresa tra 0,2 e 2 mm. La durezza di picco varia da 280HV sui gradi austenitici a 950HV sui gradi martensitici\/ferritici.\",\"margin_bottom\":\"default\",\"margin_top\":\"default\"}},{\"type\":\"headline\",\"props\":{\"content\":\"ExpaniteLow-T\",\"image_align\":\"left\",\"image_margin\":\"xsmall\",\"title_element\":\"h2\"}},{\"type\":\"text\",\"props\":{\"column_breakpoint\":\"m\",\"content\":\"\n\n<p>The purpose of this process is to dissolve nitrogen and carbon in the surface of stainless steel to a depth in the range of 5-30\u00b5m. Peak hardness ranges from 1000-1200HV on austenitic grades to 1300HV on martensitic\/ferritic grades.<\/p>\n\n\",\"content_it_it\":\"Lo scopo di questo processo \u00e8 dissolvere l'azoto e il carbonio nella superficie dell'acciaio inossidabile a una profondit\u00e0 compresa tra 5 e 30 \u00b5m. La durezza di picco varia da 1000-1200HV sui gradi austenitici a 1200-1800HV sui gradi martensitici\/ferritici.\",\"margin_bottom\":\"default\",\"margin_top\":\"default\"}},{\"type\":\"headline\",\"props\":{\"content\":\"SuperExpanite\u00ae\",\"image_align\":\"left\",\"image_margin\":\"xsmall\",\"title_element\":\"h2\"}},{\"type\":\"text\",\"props\":{\"column_breakpoint\":\"m\",\"content\":\"The purpose of this process is to combine ExpaniteHigh-T and ExpaniteLow-T processes to achieve higher load bearing and corrosion properties. Firstly, the ExpaniteHigh-T process is applied to create a deep case depth with moderate nitrogen content. Secondly, the ExpaniteLow-T process is applied to create a high-hardness surface on top of the ExpaniteHigh-T zone. The Expanite process does not result in a coating, but a diffusion zone with an increased carbon and nitrogen content. We call this zone expanded austenite, expanded martensite or simply: Expanite.\",\"content_it_it\":\"Lo scopo di questo processo \u00e8 quello di combinare i processi ExpaniteHigh-T ed ExpaniteLow-T per ottenere maggiori propriet\u00e0 di resistenza al carico e alla corrosione. In primo luogo, il processo ExpaniteHigh-T viene applicato per creare uno strato profonda con un moderato contenuto di azoto. \n\n<p> \n\n<p>\\n    In secondo luogo, si applica il processo ExpaniteLow-T per creare una superficie ad alta durezza sopra la zona ExpaniteHigh-T. Il processo Expanite non produce un rivestimento, ma una zona di diffusione con un maggiore contenuto di carbonio e azoto. Questa zona viene chiamata austenite espansa, martensite espansa o semplicemente: Expanite.\",\"margin_bottom\":\"default\",\"margin_top\":\"default\"}},{\"type\":\"headline\",\"props\":{\"content\":\"Discover More Stainless Steel Solutions with Expanite\",\"image_align\":\"left\",\"image_margin\":\"xsmall\",\"title_element\":\"h2\"}},{\"type\":\"text\",\"props\":{\"column_breakpoint\":\"m\",\"content\":\"\n\n<p>Expanite\u00ae surface hardening and heat treatment solutions unlock the full potential of austenitic stainless steels by improving wear resistance, eliminating galling, and extending component lifetime without compromising corrosion resistance. With our proven expertise, we help customers in demanding industries achieve superior performance and reliability.<\/p>\n\n\\n\n\n<p>To gain a complete overview of how Expanite can support your material choices, we also invite you to explore our dedicated pages on <a href=\\\"https:\/\/expanite.com\/stainless-steel-hardening\/alloys-case-hardening\/duplex\/\\\">Duplex<\/a>, <a href=\\\"https:\/\/expanite.com\/stainless-steel-hardening\/alloys-case-hardening\/ferritic\/\\\">Ferritic<\/a>, and <a href=\\\"https:\/\/expanite.com\/stainless-steel-hardening\/alloys-case-hardening\/hardening\/\\\">Martensitic<\/a> stainless steels \u2013 and discover how our technology adds value across the full range of stainless steel alloys.<\/p>\n\n\",\"content_it_it\":\"Lo scopo di questo processo \u00e8 quello di combinare i processi ExpaniteHigh-T ed ExpaniteLow-T per ottenere maggiori propriet\u00e0 di resistenza al carico e alla corrosione. In primo luogo, il processo ExpaniteHigh-T viene applicato per creare uno strato profonda con un moderato contenuto di azoto. \n\n<p> \n\n<p>\\n    In secondo luogo, si applica il processo ExpaniteLow-T per creare una superficie ad alta durezza sopra la zona ExpaniteHigh-T. Il processo Expanite non produce un rivestimento, ma una zona di diffusione con un maggiore contenuto di carbonio e azoto. 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Teilen Sie uns Ihre Herausforderungen mit \u2013 gemeinsam finden wir die perfekte L\u00f6sung.<\/p>\n\n\",\"content_fr_fr\":\"\n\n<p>Notre \u00e9quipe est disponible dans tous les fuseaux horaires pour r\u00e9pondre \u00e0 vos questions. Partagez vos d\u00e9fis avec nous et trouvons ensemble la solution id\u00e9ale.<\/p>\n\n\",\"content_it_it\":\"\n\n<p>Il nostro team \u00e8 disponibile in tutti i fusi orari per supportarti con qualsiasi richiesta. 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This structure prevents steels from becoming hardenable through [&hellip;]<\/p>\n","protected":false},"author":2,"featured_media":169,"parent":965,"menu_order":2,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":"","advanced-sidebar-menu\/link-title":"","advanced-sidebar-menu\/exclude-page":false},"class_list":["post-1023","page","type-page","status-publish","has-post-thumbnail","hentry"],"_links":{"self":[{"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/pages\/1023","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/comments?post=1023"}],"version-history":[{"count":28,"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/pages\/1023\/revisions"}],"predecessor-version":[{"id":9322,"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/pages\/1023\/revisions\/9322"}],"up":[{"embeddable":true,"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/pages\/965"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/media\/169"}],"wp:attachment":[{"href":"https:\/\/expanite.com\/fr\/wp-json\/wp\/v2\/media?parent=1023"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}