============================================================ TITLE: Controlled Atmosphere Brazing with Induction - Ambrell TYPE: article VERSION: 2 VERSION_ID: b547a257-c0ed-4520-a40e-250db28acaf3 GENERATED_AT: 2026-07-20T13:04:40.160Z SUMMARY: Click to read how induction heating can improve the efficiency, effectiveness and safety of your atmospheric-brazing process. AUTHOR: any flux material READING TIME: 9 min WORD COUNT: 1676 KEYWORDS: Controlled Atmosphere Brazing with Induction SOURCE URL: https://www.ambrell.com/induction-heating-applications/atmospheric-brazing ============================================================ KEY TAKEAWAYS: * Why braze in a controlled atmosphere? * Benefits of Induction Brazing in a Controlled Atmosphere * controlled atmosphere brazing Application Notes * controlled atmosphere brazing FAQs * Our Systems for controlled atmosphere brazing with Induction # Induction Brazing in a Controlled Atmosphere Home How It's Used Atmosphere Controlled Brazing * How It's Used * Atmosphere Controlled Brazing ## Why braze in a controlled atmosphere? Induction brazing in controlled oxygen-free atmospheres under normal or close-to-normal atmospheric pressure is known as atmospheric brazing, allowing for reduced oxidation and improved control over the process. Can we help? ## Benefits of Induction Brazing in a Controlled Atmosphere * Meets tight production tolerances with precise localized heat to small areas creating pinpoint accuracy * Increases production rates with faster heating cycles * Reduces defect rates with repeatable, reliable heat * Eliminates variability from operator-to-operator, shift-to-shift * Maintains metallurgical characteristics of the individual metals ## controlled atmosphere brazing Application Notes Select from our collection of controlled atmosphere brazing notes, developed over 40 years supporting our customers. Read how we helped to solve their process heating challenges! Brazing Steel Hydraulics Fittings & Tubes Braze steel fittings and tubes in an atmosphere to make hydraulic fittings within a targeted heating time of under 150 seconds. Brazing a small gas delivery assembly This is a new part for the customer and they are developing the manufacturing process for it. The customer is interested in using induction heat for their process because they are looking for finished parts which are clean and not contaminated by any flux material. By using induction to braze the part and by doing the braze under a hydrogen atmosphere, the customer can produce brazed parts with no oxidation... Braze a thin walled tube to a steel cap A single turn helical coil is used to heat the quartz tube and the tube assembly. The tube assembly is held in place inside the quartz tube by a copper fixture and hydrogen is fed into the quartz tube... Braze Copper Tube to Brass Fitting To use induction heating to braze a copper tube to a brass fitting using a preform braze wire. Brazing Copper Tube Assemblies To heat a copper tube assembly in an inert atmosphere to 1450 °F within 45 seconds for brazing without flux or acid wash clean-up. Brazing Hydraulic Hose Assemblies To heat a steel hydraulic hose fitting in an inert atmosphere to 2200 °F within 7 seconds for brazing without any carbon buildup. ## controlled atmosphere brazing FAQs Brazing within an atmosphere is done by using a flux. This flux is not wished for in some applications the product is used for due to its corrosive nature. In addition brazing in atmosphere will result in more cleaning requirements after the joint was created Cold atmospheric brazing is typically considered low temperature joining of two metals at temperatures upto 500 degrees Celsius. This results in faster heat cycles, less power requirement, quicker cooling cycles and less distortion due to the lower temperature input. Due to the fact that brazing in an atmosphere is less complex than in an inert atmosphere the production rate is greatly increased. In addition less complex investment is required as it does not require specialized equipment to create an inert atmosphere or vacuum. Brazing in atmosphere is more versatile as setup changes are easily conducted in order to produce different parts ## Our Systems for controlled atmosphere brazing with Induction EASYHEAT Models Add your content here. EKOHEAT Models Workhead Models Product Spectrum Four Ways To Contact Ambrell for Support Request a Demo Give Us a Call Send an Email Free Lab Services ### AMBRELL CORPORATION 1655 Lyell AvenueRochester, NY 14606United States DirectionsT: +1 585 889 9000F: +1 585 889 4030Contact SalesContact OrdersContact Service ### AMBRELL B.V. Holtersweg 17556 BS HengeloThe Netherlands DirectionsT: +31 880 150 100F: +31 546 788 154Contact SalesContact OrdersContact Service ### AMBRELL Ltd. Front Suite, 1st Floor, Charles House148-149 Gt Charles StreetBirmingham, B3 3HTUnited Kingdom T: +44 1242 514042F: +31 546 788 154Contact SalesContact OrdersContact Service ------------------------------------------------------------ FREQUENTLY ASKED QUESTIONS: Q: Why braze in a controlled atmosphere? A: Induction brazing in controlled oxygen-free atmospheres under normal or close-to-normal atmospheric pressure is known as atmospheric brazing, allowing for reduced oxidation and improved control over the process. Benefits of Induction Brazing in a Controlled Atmosphere  Meets tight production tolerances with precise localized heat to small areas creating pinpoint accuracy Increases production rates with faster heating cycles Reduces defect rates with repeatable, reliable heat Eliminates variability from operator-to-operator, shift-to-shift Maintains metallurgical characteristics of the individual metals Benefits of Induction Brazing in a Controlled Atmosphere  Maintains metallurgical characteristics of the individual metals Q: What parameters can limit controlled atmosphere brazing with induction? A: Brazing within an atmosphere is done by using a flux. This flux is not wished for in some applications the product is used for due to its corrosive nature. In addition brazing in atmosphere will result in more cleaning requirements after the joint was created Brazing within an atmosphere is done by using a flux. This flux is not wished for in some applications the product is used for due to its corrosive nature. In addition brazing in atmosphere will result in more cleaning requirements after the joint was created Brazing within an atmosphere is done by using a flux. This flux is not wished for in some applications the product is used for due to its corrosive nature. In addition brazing in atmosphere will result in more cleaning requirements after the joint was created Brazing within an atmosphere is done by using a flux. This flux is not wished for in some applications the product is used for due to its corrosive nature. In addition brazing in atmosphere will result in more cleaning requirements after the joint was created Brazing within an atmosphere is done by using a flux. This flux is not wished for in some applications the product is used for due to its corrosive nature. In addition brazing in atmosphere will result in more cleaning requirements after the joint was created Brazing within an atmosphere is done by using a flux. This flux is not wished for in some applications the product is used for due to its corrosive nature. In addition brazing in atmosphere will result in more cleaning requirements after the joint was created Q: Why is atmosphere brazing beneficial in cold atmospheres? A: Cold atmospheric brazing is typically considered low temperature joining of two metals at temperatures upto 500 degrees Celsius. This results in faster heat cycles, less power requirement, quicker cooling cycles and less distortion due to the lower temperature input. Cold atmospheric brazing is typically considered low temperature joining of two metals at temperatures upto 500 degrees Celsius. This results in faster heat cycles, less power requirement, quicker cooling cycles and less distortion due to the lower temperature input. Cold atmospheric brazing is typically considered low temperature joining of two metals at temperatures upto 500 degrees Celsius. This results in faster heat cycles, less power requirement, quicker cooling cycles and less distortion due to the lower temperature input. Cold atmospheric brazing is typically considered low temperature joining of two metals at temperatures upto 500 degrees Celsius. This results in faster heat cycles, less power requirement, quicker cooling cycles and less distortion due to the lower temperature input. What are the benefits of atmosphere brazing? Due to the fact that brazing in an atmosphere is less complex than in an inert atmosphere the production rate is greatly increased. In addition less complex investment is required as it does not require specialized equipment to create an inert atmosphere or vacuum. Brazing in atmosphere is more versatile as setup changes are easily conducted in order to produce different parts What are the benefits of atmosphere brazing? Q: What are the benefits of atmosphere brazing? A: Due to the fact that brazing in an atmosphere is less complex than in an inert atmosphere the production rate is greatly increased. In addition less complex investment is required as it does not require specialized equipment to create an inert atmosphere or vacuum. Brazing in atmosphere is more versatile as setup changes are easily conducted in order to produce different parts Due to the fact that brazing in an atmosphere is less complex than in an inert atmosphere the production rate is greatly increased. In addition less complex investment is required as it does not require specialized equipment to create an inert atmosphere or vacuum. Brazing in atmosphere is more versatile as setup changes are easily conducted in order to produce different parts Due to the fact that brazing in an atmosphere is less complex than in an inert atmosphere the production rate is greatly increased. In addition less complex investment is required as it does not require specialized equipment to create an inert atmosphere or vacuum. Brazing in atmosphere is more versatile as setup changes are easily conducted in order to produce different parts Due to the fact that brazing in an atmosphere is less complex than in an inert atmosphere the production rate is greatly increased. In addition less complex investment is required as it does not require specialized equipment to create an inert atmosphere or vacuum. Brazing in atmosphere is more versatile as setup changes are easily conducted in order to produce different parts Our Systems for controlled atmosphere brazing with Induction Our Systems for controlled atmosphere brazing with Induction Our Systems for controlled atmosphere brazing with Induction Our Systems for controlled atmosphere brazing with Induction Our Systems for controlled atmosphere brazing with Induction Our Systems for controlled atmosphere brazing with Induction Our Systems for controlled atmosphere brazing with Induction Our Systems for controlled atmosphere brazing with Induction Our Systems for controlled atmosphere brazing with Induction Our Systems for controlled atmosphere brazing with Induction ------------------------------------------------------------ ABOUT THIS CONTENT ------------------------------------------------------------ Source: https://www.ambrell.com/induction-heating-applications/atmospheric-brazing Author: any flux material This content is provided for informational purposes. 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