세계의 배기 시스템 제조용 로봇 용접 셀 시장 보고서(2025년)
Robotic Welding Cell For Exhaust Fabrication Global Market Report 2025
상품코드 : 1889561
리서치사 : The Business Research Company
발행일 : On Demand Report
페이지 정보 : 영문 250 Pages
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한글목차

배기 시스템 제조용 로봇 용접 셀 시장 규모는 최근 급속히 확대되고 있습니다. 2024년 13억 2,000만 달러로 평가되었고, 2025년에는 14억 5,000만 달러에 달할 것으로 추정되며, CAGR 10.6%로 성장이 전망되고 있습니다. 지난 수년간의 성장은 제조업에서 자동화 수요 증가, 인건비 상승, 숙련 용접공 부족, 자동차 생산량 확대, 신흥 경제국에서의 공업화 진전, 배기 시스템에서 배출 가스 삭감을 위한 규제 압력 강화 등이 요인으로 되어 있습니다.

배기 시스템 제조용 로봇 용접 셀 시장 규모는 향후 수년간 급속한 성장이 예상됩니다. 2029년에는 21억 4,000만 달러에 달할 것으로 예측되며, CAGR 10.2%로 성장할 전망입니다. 예측 기간의 성장요인으로는 배기 시스템 제조에서 로봇 도입 증가, 용접의 정확성 및 일관성에 대한 수요 증가, 가볍고 복잡한 배기 시스템 재료의 사용 확대, 스마트 제조 및 인더스트리 4.0 기술 투자 확대, 전기자동차 및 하이브리드 자동차 생산 증가 등이 있습니다. 예측 기간 중에 예상되는 주요 동향으로는 AI 구동 용접 제어 기술의 진보, 레이저 용접 및 하이브리드 용접 기술의 혁신, 협동 로봇 용접 셀의 개발, IoT를 활용한 예지 보전의 연구 개발, 모듈식이며 유연한 로봇 용접 셀 구조로의 이행 등을 들 수 있습니다.

향후 수년간 산업화의 진전이 배기 시스템 제조용 로봇 용접 셀 시장의 성장을 견인할 것으로 예측됩니다. 세계 인구 증가 및 도시화를 배경으로 대량 생산 수요가 증가함에 따라 산업화가 가속화되고 있습니다. 배기 시스템 제조용 로봇 용접 셀은 자동차 및 금속 제조 분야에서 고속이고 정밀한 용접 공정을 자동화하고 생산 효율, 일관성, 확장성을 향상시킴으로써 산업화를 지원합니다. 예를 들어 미국 연방준비제도이사회(FRB)의 발표에 따르면 2025년 8월 공업 생산은 전월 대비 0.1%의 완만한 증가를 기록했습니다. 그 결과, 산업화의 진전이 배기 시스템 제조용 로봇 용접 셀 시장 성장을 가속하고 있습니다.

시장의 기업은 생산 효율 향상, 숙련 노동자 의존도 저감, 복잡한 제조 공정에서 용접 품질의 일관성 확보를 목적으로 AI 탑재 용접 워크셀 등의 자동화 기술에 주력하고 있습니다. AI 탑재 용접 워크셀은 인공지능과 머신 비전을 활용하여 높은 정밀도 및 최소한의 인위적 개입으로 용접 작업을 자율적으로 계획, 프로그램 및 실행하는 선진적인 로봇 시스템입니다. 예를 들어, 2025년 7월에는 미국에 본사를 둔 자동화 기업 Cohesive Robotics Inc.가 다품종 소량 생산 환경에서의 생산성 최적화를 목적으로 한 턴키 솔루션 'AI 탑재 스마트 용접 로봇 워크셀'을 발표했습니다. 동사의 독자 소프트웨어 'Argus OS'를 활용해, 3D 스캔을 통해 로봇 프로그램을 자율적으로 생성합니다. 이를 통해 수동 프로그래밍 없이 최대 90%의 정밀도와 50%의 처리량 향상을 실현하는 자동 MIG 용접, TIG 용접, 레이저 용접이 가능합니다. 이 혁신 기술을 통해 제조업체는 숙련된 노동자 부족에 대한 대응, 작업자의 위험 작업에 대한 노출을 줄이고 인적 자원을 고 부가가치 업무로 재배치할 수 있으며 업무 효율성과 일관된 고품질 용접을 실현합니다.

목차

제1장 주요 요약

제2장 시장 특징

제3장 시장 동향 및 전략

제4장 시장 : 금리, 인플레이션, 지정학, 무역전쟁 및 관세, 그리고 코로나 및 회복이 시장에 미치는 영향을 포함한 거시경제 시나리오

제5장 세계의 성장 분석 및 전략 분석 프레임워크

제6장 시장 세분화

제7장 지역별 및 국가별 분석

제8장 아시아태평양 시장

제9장 중국 시장

제10장 인도 시장

제11장 일본 시장

제12장 호주 시장

제13장 인도네시아 시장

제14장 한국 시장

제15장 서유럽 시장

제16장 영국 시장

제17장 독일 시장

제18장 프랑스 시장

제19장 이탈리아 시장

제20장 스페인 시장

제21장 동유럽 시장

제22장 러시아 시장

제23장 북미 시장

제24장 미국 시장

제25장 캐나다 시장

제26장 남미 시장

제27장 브라질 시장

제28장 중동 시장

제29장 아프리카 시장

제30장 경쟁 구도 및 기업 프로파일

제31장 기타 주요 기업 및 혁신 기업

제32장 세계 시장 경쟁 벤치마킹 및 대시보드

제33장 주요 인수합병(M&A)

제34장 최근 시장 동향

제35장 시장의 잠재력이 높은 국가, 부문 및 전략

제36장 부록

AJY
영문 목차

영문목차

A robotic welding cell for exhaust fabrication is an automated system designed to carry out precise welding operations on exhaust components. It integrates robotic arms, welding equipment, and fixtures to deliver consistent quality and high production efficiency. The system is programmed to manage complex geometries and repetitive tasks, reducing manual labor while minimizing errors.

The primary components of robotic welding cells for exhaust fabrication include robots, welding equipment, controllers, safety devices, and others. Robots refer to automated systems paired with advanced welding tools and controllers to execute accurate and consistent welding processes in exhaust system manufacturing. Key welding types include metal inert gas (MIG) welding, tungsten inert gas (TIG) welding, spot welding, laser welding, and others. Major applications involve automotive exhaust systems, industrial exhaust systems, and others, with primary end users spanning automotive, aerospace, industrial manufacturing, and additional sectors.

Note that the outlook for this market is being affected by rapid changes in trade relations and tariffs globally. The report will be updated prior to delivery to reflect the latest status, including revised forecasts and quantified impact analysis. The report's Recommendations and Conclusions sections will be updated to give strategies for entities dealing with the fast-moving international environment.

The swift increase in U.S. tariffs and the ensuing trade tensions in spring 2025 are significantly affecting the machinery sector by increasing costs for steel, hydraulic systems, and precision bearings critical components often imported from tariff-affected regions. Manufacturers of construction, agricultural, and industrial machinery now face squeezed margins, as many long-term contracts prevent immediate price adjustments. The uncertainty has also delayed investment in automation and smart machinery technologies, slowing productivity gains. To adapt, firms are accelerating local supplier development, redesigning products to use alternative materials, and leveraging predictive maintenance to extend equipment lifespans amid higher replacement costs.

The robotic welding cells for exhaust fabrication market research report is one of a series of new reports from The Business Research Company that provides robotic welding cells for exhaust fabrication market statistics, including the robotic welding cells for exhaust fabrication industry global market size, regional shares, competitors with the robotic welding cells for exhaust fabrication market share, detailed robotic welding cells for exhaust fabrication market segments, market trends, and opportunities, and any further data you may need to thrive in the robotic welding cells for exhaust fabrication industry. This robotic welding cells for exhaust fabrication market research report delivers a complete perspective of everything you need, with an in-depth analysis of the current and future scenarios of the industry.

The robotic welding cell for exhaust fabrication market size has grown rapidly in recent years. It will grow from $1.32 billion in 2024 to $1.45 billion in 2025 at a compound annual growth rate (CAGR) of 10.6%. Growth in the historic period can be attributed to increasing demand for automation in manufacturing, rising labor costs, a shortage of skilled welders, expansion in vehicle production volumes, growing industrialization in emerging economies, and heightened regulatory pressure to reduce emissions in exhaust systems.

The robotic welding cell for exhaust fabrication market size is expected to see rapid growth in the next few years. It will grow to $2.14 billion in 2029 at a compound annual growth rate (CAGR) of 10.2%. Growth in the forecast period can be linked to rising adoption of robotics in exhaust fabrication, increasing need for precision and consistency in welding, expanding use of lightweight and complex exhaust system materials, greater investment in smart manufacturing and Industry 4.0 technologies, and the growing production of electric and hybrid vehicles. Major trends expected in the forecast period include advancements in AI-driven welding control, innovations in laser and hybrid welding techniques, development of collaborative robot welding cells, increased research in IoT-enabled predictive maintenance, and a shift toward modular and flexible robotic welding cell architectures.

The rising industrialization is expected to drive the growth of the robotic welding cell for exhaust fabrication market in the coming years. Industrialization is increasing due to growing demand for mass production of goods, fueled by expanding global populations and urbanization. Robotic welding cells for exhaust fabrication support industrialization by automating high-speed, precise welding processes, enhancing production efficiency, consistency, and scalability in automotive and metal manufacturing. For example, according to the Federal Reserve Board, a US-based governing body of the U.S. central banking system, industrial production recorded a modest increase of 0.1% in August 2025 compared to the previous month. As a result, rising industrialization is propelling the growth of the robotic welding cell for exhaust fabrication market.

Companies in the market are focusing on automation technologies, such as AI-powered welding workcells, to improve production efficiency, reduce reliance on skilled labor, and ensure consistent weld quality in complex manufacturing processes. AI-powered welding workcells are advanced robotic systems that use artificial intelligence and machine vision to autonomously plan, program, and execute welding operations with high precision and minimal human intervention. For instance, in July 2025, Cohesive Robotics Inc., a US-based automation company, launched the AI-powered Smart Welding Robotic Workcell, a turnkey solution designed to optimize productivity in high-mix manufacturing environments. Using the company's proprietary Argus OS software, the system autonomously generates robot programs through 3D scanning, enabling automated MIG, TIG, and laser welding with up to 90% precision and a 50% improvement in throughput without manual programming. This innovation allows manufacturers to address skilled labor shortages, reduce operator exposure to hazardous tasks, and redeploy workforce resources to higher-value functions, resulting in streamlined operations and consistently high-quality welds.

In May 2023, Lincoln Electric Holdings, Inc., a US-based manufacturer of welding and cutting products, acquired Powermig Automacao E Soldagem Ltda. for an undisclosed amount. The acquisition aims to strengthen Lincoln Electric's automation capabilities and accelerate growth in welding automation solutions for the heavy industry and transportation sectors in Latin America. Powermig Automacao e Soldagem Ltda., based in Brazil, specializes in robotic welding and automation solutions for industrial manufacturing applications.

Major companies operating in the robotic welding cell for exhaust fabrication market are Panasonic Corporation, ABB Ltd., Kawasaki Heavy Industries Ltd., FANUC Corporation, Lincoln Electric Holdings Inc., Yaskawa Electric Corporation, Nachi-Fujikoshi Corp., TWI Ltd., Daihen Corporation, OTC Daihen Inc., Comau S.p.A., IGM Robotersysteme AG, Siasun Robot & Automation Co. Ltd., Miller Electric Mfg. LLC, Fronius International GmbH, Motoman Robotics (Yaskawa Motoman), Wolf Robotics LLC, T. J. Snow Company Inc., Pemamek Oy, Trumpf Group, Hyundai Robotics, Cloos Robotic Welding Inc.

North America was the largest region in the robotic welding cell for exhaust fabrication market in 2024. Asia-Pacific is expected to be the fastest-growing region in the forecast period. The regions covered in robotic welding cell for exhaust fabrication report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East and Africa.

The countries covered in the robotic welding cell for exhaust fabrication market report are Australia, Brazil, China, France, Germany, India, Indonesia, Japan, Russia, South Korea, UK, USA, Canada, Italy, Spain.

The robotic welding cell for exhaust fabrication market consists of sales of robotic arms, welding torches, welding power sources, positioners, fixtures, conveyor systems, sensors, control panels, safety enclosures, and exhaust component clamps. Values in this market are 'factory gate' values, that is, the value of goods sold by the manufacturers or creators of the goods, whether to other entities (including downstream manufacturers, wholesalers, distributors, and retailers) or directly to end customers. The value of goods in this market includes related services sold by the creators of the goods.

The market value is defined as the revenues that enterprises gain from the sale of goods and/or services within the specified market and geography through sales, grants, or donations in terms of the currency (in USD unless otherwise specified).

The revenues for a specified geography are consumption values that are revenues generated by organizations in the specified geography within the market, irrespective of where they are produced. It does not include revenues from resales along the supply chain, either further along the supply chain or as part of other products.

Robotic Welding Cell For Exhaust Fabrication Global Market Report 2025 from The Business Research Company provides strategists, marketers and senior management with the critical information they need to assess the market.

This report focuses on robotic welding cell for exhaust fabrication market which is experiencing strong growth. The report gives a guide to the trends which will be shaping the market over the next ten years and beyond.

Reasons to Purchase

Where is the largest and fastest growing market for robotic welding cell for exhaust fabrication ? How does the market relate to the overall economy, demography and other similar markets? What forces will shape the market going forward, including technological disruption, regulatory shifts, and changing consumer preferences? The robotic welding cell for exhaust fabrication market global report from the Business Research Company answers all these questions and many more.

The report covers market characteristics, size and growth, segmentation, regional and country breakdowns, competitive landscape, market shares, trends and strategies for this market. It traces the market's historic and forecast market growth by geography.

The forecasts are made after considering the major factors currently impacting the market. These include the technological advancements such as AI and automation, Russia-Ukraine war, trade tariffs (government-imposed import/export duties), elevated inflation and interest rates.

Scope

Table of Contents

1. Executive Summary

2. Robotic Welding Cell For Exhaust Fabrication Market Characteristics

3. Robotic Welding Cell For Exhaust Fabrication Market Trends And Strategies

4. Robotic Welding Cell For Exhaust Fabrication Market - Macro Economic Scenario Including The Impact Of Interest Rates, Inflation, Geopolitics, Trade Wars and Tariffs, And Covid And Recovery On The Market

5. Global Robotic Welding Cell For Exhaust Fabrication Growth Analysis And Strategic Analysis Framework

6. Robotic Welding Cell For Exhaust Fabrication Market Segmentation

7. Robotic Welding Cell For Exhaust Fabrication Market Regional And Country Analysis

8. Asia-Pacific Robotic Welding Cell For Exhaust Fabrication Market

9. China Robotic Welding Cell For Exhaust Fabrication Market

10. India Robotic Welding Cell For Exhaust Fabrication Market

11. Japan Robotic Welding Cell For Exhaust Fabrication Market

12. Australia Robotic Welding Cell For Exhaust Fabrication Market

13. Indonesia Robotic Welding Cell For Exhaust Fabrication Market

14. South Korea Robotic Welding Cell For Exhaust Fabrication Market

15. Western Europe Robotic Welding Cell For Exhaust Fabrication Market

16. UK Robotic Welding Cell For Exhaust Fabrication Market

17. Germany Robotic Welding Cell For Exhaust Fabrication Market

18. France Robotic Welding Cell For Exhaust Fabrication Market

19. Italy Robotic Welding Cell For Exhaust Fabrication Market

20. Spain Robotic Welding Cell For Exhaust Fabrication Market

21. Eastern Europe Robotic Welding Cell For Exhaust Fabrication Market

22. Russia Robotic Welding Cell For Exhaust Fabrication Market

23. North America Robotic Welding Cell For Exhaust Fabrication Market

24. USA Robotic Welding Cell For Exhaust Fabrication Market

25. Canada Robotic Welding Cell For Exhaust Fabrication Market

26. South America Robotic Welding Cell For Exhaust Fabrication Market

27. Brazil Robotic Welding Cell For Exhaust Fabrication Market

28. Middle East Robotic Welding Cell For Exhaust Fabrication Market

29. Africa Robotic Welding Cell For Exhaust Fabrication Market

30. Robotic Welding Cell For Exhaust Fabrication Market Competitive Landscape And Company Profiles

31. Robotic Welding Cell For Exhaust Fabrication Market Other Major And Innovative Companies

32. Global Robotic Welding Cell For Exhaust Fabrication Market Competitive Benchmarking And Dashboard

33. Key Mergers And Acquisitions In The Robotic Welding Cell For Exhaust Fabrication Market

34. Recent Developments In The Robotic Welding Cell For Exhaust Fabrication Market

35. Robotic Welding Cell For Exhaust Fabrication Market High Potential Countries, Segments and Strategies

36. Appendix

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