{"id":32056,"date":"2025-08-14T12:53:12","date_gmt":"2025-08-14T10:53:12","guid":{"rendered":"https:\/\/www.lt-gasetechnik.de\/2025\/08\/14\/brazing-in-gas-technology\/"},"modified":"2025-08-14T12:53:13","modified_gmt":"2025-08-14T10:53:13","slug":"brazing-in-gas-technology","status":"publish","type":"post","link":"https:\/\/www.lt-gasetechnik.de\/en\/2025\/08\/14\/brazing-in-gas-technology\/","title":{"rendered":"Brazing in gas technology"},"content":{"rendered":"<div class=\"wpb-content-wrapper\">[vc_row][vc_column][vc_column_text css=&#8221;&#8221;]\n<h2 id=\"ember273\" class=\"ember-view reader-text-block__heading-2\">Connection technology for gas systems<\/h2>\n<p id=\"ember274\" class=\"ember-view reader-text-block__paragraph\">In the field of gas technology, manufacturers of complete gas systems are faced with the crucial question of the optimum connection technology for piping systems. While various methods such as flanges, press and clamp connections have their justification, brazing has been an established and preferred solution for decades for safety-critical applications with medium pressures and long-term requirements. <\/p>\n<h2 id=\"ember275\" class=\"ember-view reader-text-block__heading-3\">Basics of brazing<\/h2>\n<p id=\"ember276\" class=\"ember-view reader-text-block__paragraph\">Brazing is a joining process in which two metal parts are permanently joined together by melting an additional filler metal &#8211; typically silver solder. The process takes place at temperatures above 450\u00b0C in an inert gas atmosphere to prevent scaling. This creates a metallurgical bond between the solder and the base materials, resulting in a homogeneous, extremely resilient joint.  <\/p>\n<p id=\"ember277\" class=\"ember-view reader-text-block__paragraph\">This joining technique differs fundamentally from mechanical joining methods due to the molecular fusion of the materials involved. The brazing alloy completely penetrates the joint and creates a single, structurally uniform connection between the metal components. <\/p>\n<h2 id=\"ember278\" class=\"ember-view reader-text-block__heading-3\">Normative principles and technical requirements<\/h2>\n<p id=\"ember279\" class=\"ember-view reader-text-block__paragraph\">The Technical Rules for Gas Installations (TRGI) define strict standards for gas installations, particularly with regard to the tightness of connections. According to TRGS 722 point 4.5 ff, gas installations for explosive hazardous substances must be &#8220;permanently technically tight&#8221;. Brazed connections meet this requirement due to their metallurgical fusion at molecular level.  <\/p>\n<p id=\"ember280\" class=\"ember-view reader-text-block__paragraph\">The DIN 8505 standard specifies the technical requirements for brazing and guarantees uniform quality standards. Shear strengths of up to 100 N\/mm\u00b2 and tensile strengths of up to 200 N\/mm\u00b2 can be achieved, which corresponds to a theoretical compressive strength of 2,000 bar. <\/p>\n<p id=\"ember281\" class=\"ember-view reader-text-block__paragraph\">Particularly relevant is the restriction of alternative connection methods according to TRGS 722 4.5.2. point 8: Flanges with a smooth sealing strip are only to be regarded as &#8220;permanently technically tight&#8221; up to PN 25 bar and cutting and clamping ring connections only up to DN32. <\/p>\n<h2 id=\"ember282\" class=\"ember-view reader-text-block__heading-3\">Comparison of connection technologies<\/h2>\n<h3 id=\"ember283\" class=\"ember-view reader-text-block__heading-3\">Brazing<\/h3>\n<p id=\"ember284\" class=\"ember-view reader-text-block__paragraph\">The advantages of brazed connections are particularly evident in demanding operating conditions and after transportation from the manufacturer to the user:<\/p>\n<p id=\"ember285\" class=\"ember-view reader-text-block__paragraph\"><strong>Structural integrity:<\/strong> The homogeneous joint ensures even load distribution and minimizes weak points. The metallurgical fusion creates a joint that is mechanically identical to the base material. <\/p>\n<p id=\"ember286\" class=\"ember-view reader-text-block__paragraph\"><strong>High-pressure suitability:<\/strong> Brazing shows its superiority at pressures above 10 bar. The connections retain their integrity even under medium-high pressure loads and meet the safety requirements of critical applications. <\/p>\n<p id=\"ember287\" class=\"ember-view reader-text-block__paragraph\"><strong>Transport and long-term stability:<\/strong> Brazed connections are particularly resistant to vibrations during transportation and temperature fluctuations during operation. Therefore, brazed connections are still &#8220;technically tight in the long term&#8221; even after being transported halfway around the world. Of course, a detailed tightness test is mandatory before commissioning, but experience shows that brazed connections also withstand vibrations during transportation. These properties are crucial for the reliability of gas systems over long periods of operation.   <\/p>\n<h2 id=\"ember288\" class=\"ember-view reader-text-block__heading-3\">Press and clamp connections<\/h2>\n<p id=\"ember289\" class=\"ember-view reader-text-block__paragraph\">These connection techniques undoubtedly offer advantages during installation:<\/p>\n<p id=\"ember290\" class=\"ember-view reader-text-block__paragraph\"><strong>Installation speed:<\/strong> Press and clamp connections enable fast, clean installation without open flames, which is advantageous in certain environments.<\/p>\n<p id=\"ember291\" class=\"ember-view reader-text-block__paragraph\"><strong>Dismantlability:<\/strong> Clamp connections can be released if necessary, making maintenance work easier.<\/p>\n<p id=\"ember292\" class=\"ember-view reader-text-block__paragraph\"><strong>Limited applicability:<\/strong>With compression connections, the pipe end is pressed against a sealing ring by a union nut. Press connections irreversibly deform the pipe and fitting together. <\/p>\n<p id=\"ember293\" class=\"ember-view reader-text-block__paragraph\">Both methods show limitations at high pressures and long-term stress.<\/p>\n<p id=\"ember294\" class=\"ember-view reader-text-block__paragraph\">Press and clamp connections can leak under mechanical loads, vibrations or improper installation. Correct installation is critical &#8211; installation errors can lead to leaks, which manifest themselves particularly under high pressure loads. <\/p>\n<h2 id=\"ember295\" class=\"ember-view reader-text-block__heading-3\">Copper as a material for gas applications<\/h2>\n<p id=\"ember296\" class=\"ember-view reader-text-block__paragraph\">The choice of material plays a decisive role in the longevity of gas technology systems. Copper and its alloys offer outstanding properties for gas-conducting systems. <\/p>\n<h2 id=\"ember297\" class=\"ember-view reader-text-block__heading-3\">Normative approval<\/h2>\n<p id=\"ember298\" class=\"ember-view reader-text-block__paragraph\">The use of copper for gas-carrying pipes and fittings is permitted and established in accordance with EN 1057 and DVGW Code of Practice GW 392.<\/p>\n<h2 id=\"ember299\" class=\"ember-view reader-text-block__heading-3\">Hydrogen resistance<\/h2>\n<p id=\"ember300\" class=\"ember-view reader-text-block__paragraph\">Studies carried out by the G\u00fctegemeinschaft Kupferrohr with the Ruhr University Bochum show that precipitation-hardening copper alloys can achieve strengths that are comparable to high-strength steels, but show practically no embrittlement effects when exposed to hydrogen. This property makes copper particularly attractive for modern hydrogen applications. <\/p>\n<h2 id=\"ember301\" class=\"ember-view reader-text-block__heading-3\">Corrosion resistance and conductivity<\/h2>\n<p id=\"ember302\" class=\"ember-view reader-text-block__paragraph\">Copper alloys have high corrosion resistance and excellent thermal and electrical conductivity. These properties are advantageous for many gas technology applications. <\/p>\n<h2 id=\"ember303\" class=\"ember-view reader-text-block__heading-3\">Medical gas applications<\/h2>\n<p id=\"ember304\" class=\"ember-view reader-text-block__paragraph\">Seamless copper pipes in accordance with DIN EN 13348 are preferred for medical gas supplies. These transport oxygen and other medical gases from the technical room to the patient&#8217;s bed. The antimicrobial surface properties of copper can effectively kill bacteria, fungi and viruses, which is particularly relevant for medical applications.  <\/p>\n<h2 id=\"ember305\" class=\"ember-view reader-text-block__heading-3\">Quality assurance and certification<\/h2>\n<p id=\"ember306\" class=\"ember-view reader-text-block__paragraph\">The quality of brazed joints depends to a large extent on the competence of the skilled workers carrying out the work. The DIN EN ISO 13585 912 standard defines the requirements for the qualification of brazers and ensures that the necessary skills are demonstrated through regular testing. <\/p>\n<p id=\"ember307\" class=\"ember-view reader-text-block__paragraph\">Inspection certificates are an essential part of complete documentation and guarantee the traceability of quality. Continuous training of specialists is necessary to keep pace with evolving technical standards. <\/p>\n<h2 id=\"ember308\" class=\"ember-view reader-text-block__heading-3\">Economic efficiency<\/h2>\n<p id=\"ember309\" class=\"ember-view reader-text-block__paragraph\">Although the initial installation of brazed connections can be more complex than with alternative methods, the economic benefits become apparent in the long term:<\/p>\n<p id=\"ember310\" class=\"ember-view reader-text-block__paragraph\"><strong>Low maintenance:<\/strong> The high reliability of brazed connections significantly reduces maintenance intervals and unplanned downtime.<\/p>\n<p id=\"ember311\" class=\"ember-view reader-text-block__paragraph\"><strong>Longevity:<\/strong> Structural integrity over decades minimizes replacement investments and reduces total cost of ownership.<\/p>\n<p id=\"ember312\" class=\"ember-view reader-text-block__paragraph\"><strong>Safety:<\/strong> Reliable tightness prevents costly leaks and the associated safety risks.<\/p>\n<h3 id=\"ember313\" class=\"ember-view reader-text-block__heading-3\">Conclusion<\/h3>\n<p id=\"ember314\" class=\"ember-view reader-text-block__paragraph\">For plant engineers and installers in gas technology, brazing copper pipes is the optimum connection technology for safety-critical applications. The combination of normative conformity, technical superiority at high pressures and long-term reliability makes this technology the first choice for demanding gas technology installations. <\/p>\n<p id=\"ember315\" class=\"ember-view reader-text-block__paragraph\">Metallurgical fusion creates connections that are &#8220;technically tight in the long term&#8221; and meet the strict requirements of TRGI and TRGS. In combination with the outstanding properties of copper materials &#8211; in particular hydrogen resistance and corrosion resistance &#8211; a system solution is created that meets the highest safety standards. <\/p>\n<p id=\"ember316\" class=\"ember-view reader-text-block__paragraph\">Investing in qualified specialists and their continuous further training in accordance with DIN EN ISO 13585 912 is a decisive success factor for realizing the technical advantages of brazing in practice.<\/p>\n[\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text css=&#8221;&#8221;]\n<div style=\"width: 540px;\" class=\"wp-video\"><video class=\"wp-video-shortcode\" id=\"video-32056-1\" width=\"540\" height=\"260\" preload=\"metadata\" controls=\"controls\"><source type=\"video\/mp4\" src=\"https:\/\/www.lt-gasetechnik.de\/wp-content\/uploads\/2025\/08\/Hartloeten-komprimiert.mp4?_=1\" \/><a href=\"https:\/\/www.lt-gasetechnik.de\/wp-content\/uploads\/2025\/08\/Hartloeten-komprimiert.mp4\">https:\/\/www.lt-gasetechnik.de\/wp-content\/uploads\/2025\/08\/Hartloeten-komprimiert.mp4<\/a><\/video><\/div>\n[\/vc_column_text][\/vc_column][\/vc_row]\n<\/div>","protected":false},"excerpt":{"rendered":"<p>[vc_row][vc_column][vc_column_text css=&#8221;&#8221;] Connection technology for gas systems In the field of gas technology, manufacturers of complete gas systems are faced with the crucial question of the optimum connection technology for piping systems. While various methods such as flanges, press and clamp connections have their justification, brazing has been an established and preferred solution for decades [&hellip;]<\/p>\n","protected":false},"author":18,"featured_media":32042,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[125],"tags":[],"class_list":["post-32056","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-uncategorized"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.5 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Brazing in gas technology - LT GASETECHNIK<\/title>\n<meta name=\"description\" content=\"Brazing in gas technology: Safe and durable for copper pipes in critical applications. 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