{"id":1751,"date":"2019-10-11T04:12:09","date_gmt":"2019-10-11T09:12:09","guid":{"rendered":"https:\/\/www.emag.com\/blog\/en\/?p=1751"},"modified":"2025-02-25T03:26:58","modified_gmt":"2025-02-25T09:26:58","slug":"finish-machining-turbocharger-shafts","status":"publish","type":"post","link":"https:\/\/www.emag.com\/blog\/en\/finish-machining-turbocharger-shafts\/","title":{"rendered":"How EMAG perfects finish-machining of turbocharger shafts"},"content":{"rendered":"<p>High-strength materials, complex geometries, large unit volumes\u2014the production of turbocharger shafts is one of the most challenging tasks in automotive manufacturing. With its new turn-key production system, EMAG has developed a holistic and complete solution. How exactly does it work?<\/p>\n<p><!--more--><\/p>\n<p>Things get hot inside a car\u2019s turbocharger: The engine\u2019s exhaust stream flows through this key engine component and drives an extremely fast-rotating turbine wheel, which in turn is connected to a second wheel through a shaft. This wheel presses the compressed fresh air into the combustion chambers. The more air that ends up in the combustion chamber in this way, the more oxygen molecules are connected to the hydrocarbon molecules during combustion\u2014and this is precisely what provides more power. But in the end, \u201cmore air\u201d means that the turbine shaft rotates even faster and must withstand increasing workloads. These basic requirements are what make the production of these shafts one of the most challenging tasks in automotive manufacturing, because they are manufactured with high precision from high-performance materials such as Inconel. Considering the general downsizing trend in the automotive industry, turbochargers are becoming even more important. You can read up on it <span style=\"color: #0000ff\"><a style=\"color: #0000ff\" href=\"https:\/\/www.emag.com\/blog\/en\/facts-turbochargers\/\">here on the EMAG blog.<\/a><\/span><\/p>\n<h3>EMAG: Knowledge from a Single Source<\/h3>\n<p>The question this raises for the automotive industry has become a classic: How can you produce a complex shaft from a high-strength material in high volumes as efficiently as possible\u2014and, of course, do all of that free of error? \u201cOur extensive expertise is a critical when it comes to answering this question,\u201d says Markus Neubauer, Technical Application Engineer at EMAG. \u201cOur broad range of technologies enables us to cover the entire process chain from pre-machining all the way to finishing, including balancing. We are therefore able to develop a comprehensive line solution for this task\u2014including planning, project management, execution and servicing all provided by a single source. This simplifies the entire planning and after-sales process for our customers.\u201c<\/p>\n<h3>Reaching \u201cFinal Quality\u201d in just Five Operations<\/h3>\n<p>A quick glance at the sophisticated production system clearly shows how great an advantage this really is: It contains a total of five operations that are all performed with EMAG machines. It immediately starts at a high pace, since the shaft is pre-turned in a four-axis machining operation performed on the VTC\u00a0100-4 vertical turning center. This guarantees lower processing times. Although this example shows a different component, <span style=\"color: #0000ff\"><a style=\"color: #0000ff\" href=\"https:\/\/youtu.be\/jwJ_A5mEsug\">this impressive video clearly demonstrates<\/a> <\/span>the precision and stability with which the high-speed process runs on the machine. Once the pre-turning operation is complete, the turbocharger shaft ends up on a conveyor belt. A robot picks it up from there and transfers it for heat treatment in a MIND-L\u00a01000 from EMAG eldec, which very quickly and precisely heats the component to a specific temperature to relieve any possible stresses. The bearing seats of the turbocharger shaft could also be hardened with this machine. The induction technology from EMAG eldec guarantees extremely fast, economic and precise processes in every case.<\/p>\n<div data-sliderid=\"94380\" id=\"penci-post-gallery__94380\" class=\"penci-post-gallery-container justified column-3\" data-height=\"150\" data-margin=\"3\"><a class=\"penci-gallery-ite item-gallery-justified\" href=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_ShaftStages_EN.jpg\" data-rel=\"penci-gallery-image-content\"  data-cap=\"420,000 to 450,000 turbine rotors are produced in three-shift operation.\"><img decoding=\"async\" src=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_ShaftStages_EN-585x414.jpg\" alt=\"Turbine Rotor: Large Unit Volumes\" title=\"Turbine Rotors\"><div class=\"caption\">420,000 to 450,000 turbine rotors are produced in three-shift operation.<\/div><\/a><a class=\"penci-gallery-ite item-gallery-justified\" href=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_VT-4.jpg\" data-rel=\"penci-gallery-image-content\"  data-cap=\"A four-axis machining operation is performed on the turbine shaft in the VTC 100-4.\"><img decoding=\"async\" src=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_VT-4-585x414.jpg\" alt=\"VTC 100-4 by EMAG\" title=\"VTC 100-4\"><div class=\"caption\">A four-axis machining operation is performed on the turbine shaft in the VTC 100-4.<\/div><\/a><a class=\"penci-gallery-ite item-gallery-justified\" href=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_MIND-L-1000.jpg\" data-rel=\"penci-gallery-image-content\"  data-cap=\"A MIND-L 1000, which very quickly and precisely heats the component to a specific temperature to relieve any possible stresses. \"><img decoding=\"async\" src=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_MIND-L-1000-585x414.jpg\" alt=\"Hardening machine from EMAG eldec - induction hardening\" title=\"MIND-L 1000\"><div class=\"caption\">A MIND-L 1000, which very quickly and precisely heats the component to a specific temperature to relieve any possible stresses. <\/div><\/a><a class=\"penci-gallery-ite item-gallery-justified\" href=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_HG-204.jpg\" data-rel=\"penci-gallery-image-content\"  data-cap=\"Various grinding operations then make up the third and fourth operations in EMAG&#039;s line solution: These start with an HG 204 with a horizontal grinding operation on the shaft (including shoulders). \"><img decoding=\"async\" src=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_HG-204-585x414.jpg\" alt=\"Line Turbocharger - HG 204 from EMAG\" title=\"LineTurbocharger_HG 204\"><div class=\"caption\">Various grinding operations then make up the third and fourth operations in EMAG's line solution: These start with an HG 204 with a horizontal grinding operation on the shaft (including shoulders). <\/div><\/a><a class=\"penci-gallery-ite item-gallery-justified\" href=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_VLC-200-GT.jpg\" data-rel=\"penci-gallery-image-content\"  data-cap=\"The VLC 200 GT vertical grinding machine finishes the ring grooves and the outer wing contour of the turbine wheel. \"><img decoding=\"async\" src=\"https:\/\/www.emag.com\/blog\/en\/wp-content\/uploads\/sites\/2\/2019\/10\/LineTurbocharger_VLC-200-GT-585x447.jpg\" alt=\"Line Turbocharger VLC 200 GT from EMAG - Grinding\" title=\"Line Turbocharger VLC 200 GT\"><div class=\"caption\">The VLC 200 GT vertical grinding machine finishes the ring grooves and the outer wing contour of the turbine wheel. <\/div><\/a><\/div>\n<h3>Using Electro-Chemical Machining for Balancing<\/h3>\n<p>Various grinding operations then make up the third and fourth operations in EMAG&#8217;s line solution: These start with an <span style=\"color: #0000ff\"><a style=\"color: #0000ff\" href=\"https:\/\/www.emag.com\/machines\/grinding-machines\/external-cylindrical-grinders\/hg-204.html\">HG\u00a0204<\/a><\/span> with a horizontal grinding operation on the shaft (including shoulders). Next, the VLC\u00a0200\u00a0GT vertical grinding machine finishes the ring grooves and the outer wing contour of the turbine wheel. Optionally, the wing contour can also be deburred in the machining area of the VLC\u00a0200\u00a0GT using a driven brush. After the subsequent washing and measuring process, the line ends with chip-free electro-chemical machining (ECM). Balancing is performed on a CS machine from EMAG ECM. It is completed with a single repeat step and minimum tool wear. How this technology works is shown <a href=\"https:\/\/youtu.be\/dbf5EeAPO1k\"><span style=\"color: #0000ff\">in this video<\/span>.<\/a><\/p>\n<h3>Cycle Time of Only 50 Seconds<\/h3>\n<p>Five operations from pre-turning and induction heat treatment to grinding all the way to electro-chemical balancing\u2014EMAG\u2019s linked production system handles the entire finish-machining of turbocharger shafts from start to end. A component leaves the line every 50\u00a0seconds in \u201cfinish quality.\u201d With three-shift operation, this results in an output of 420,000 to 450,000 turbine rotors per year. Given these performance values, many production planners are thrilled with this solution. After all, considering the continued trend to downsize in the automotive industry, turbocharger shafts are even more important. \u201cOur advantage to the market comes from the fact that we are able to guarantee a customized system architecture for this and similar projects,\u201d concludes Markus Neubauer. \u201cKnowledge from a single source is what guarantees our success and gives us a convincing edge on the market.\u201d<\/p>\n<hr \/>\n<h3>EMAG Systems as a Full-Service Provider<\/h3>\n<p>Comparable EMAG production systems can be implemented to manufacture a large number of transmission, engine and chassis components. The new EMAG Systems is a full service provider and can assist with the planning, simulation and execution of manufacturing lines.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>High-strength materials, complex geometries, large unit volumes\u2014the production of turbocharger shafts is one of the most challenging tasks in automotive manufacturing. With its new&hellip;<\/p>\n","protected":false},"author":2,"featured_media":1752,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_lmt_disableupdate":"","_lmt_disable":"","editor_notices":[],"footnotes":""},"categories":[42],"tags":[94,85],"class_list":["post-1751","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-technologies","tag-car-manufacturing","tag-manufacturing-systems"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.0 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>EMAG Production System for Turbocharger Shafts<\/title>\n<meta name=\"description\" content=\"A linked EMAG production system completes the entire finish machining of a turbocharger shaft, from pre-turning, hardening and grinding to ECM balancing.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.emag.com\/blog\/en\/finish-machining-turbocharger-shafts\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"EMAG Production System for Turbocharger Shafts\" \/>\n<meta property=\"og:description\" content=\"A linked EMAG production system completes the entire finish machining of a turbocharger shaft, from pre-turning, hardening and grinding to ECM balancing.\" \/>\n<meta property=\"og:url\" content=\"https:\/\/www.emag.com\/blog\/en\/finish-machining-turbocharger-shafts\/\" \/>\n<meta property=\"og:site_name\" content=\"EMAG Group - 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