세계의 페인팅 로봇 시장 : 설치 형태(바닥 설치형, 벽걸이형, 레일 설치형), 로봇 형태(다관절, 직교형, 스칼라형, 협동형), 기능, 중량, 리치, 어플리케이터, 최종사용자 산업별, 지역별, 예측(-2029년)
Painting Robot Market by Mounting Type (Floor Mounted, Wall Mounted, Rail Mounted), Robot Type (Articulated, Cartesian, Scara, Collaborative), Function,Payload, Reach, Paint Applicator, End-user Industry and Region - Global Forecast to 2029
상품코드 : 1504307
리서치사 : MarketsandMarkets
발행일 : 2024년 06월
페이지 정보 : 영문 280 Pages
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한글목차

페인팅 로봇 시장 규모는 2024년 31억 달러에서 예측 기간 동안 13.1%의 연평균 복합 성장률(CAGR)로 2029년에는 58억 달러 규모로 성장할 것으로 예상됩니다.

조사 범위
조사 대상년도 2020-2029년
기준년도 2023년
예측 기간 2024-2029년
단위 금액(미화)
부문 설치 유형, 로봇 유형, 기능, 중량, 도달 범위, 적용 분야, 최종 사용자 산업, 지역별
대상 지역 아시아태평양, 유럽 및 기타 지역, 북미

"플로어 스탠딩 페인팅 로봇 부문이 예측 기간 동안 가장 큰 점유율을 차지할 것으로 예상됩니다.

바닥형 페인팅 로봇의 채택이 증가하는 배경에는 몇 가지 요인이 있을 수 있습니다. 제조업체들은 높은 품질 기준을 유지하면서 작업 효율을 높이고 생산 비용을 절감하고자 합니다. 플로어 스탠딩 로봇은 수작업 도장 방식에 비해 생산성과 일관성이 향상되어 처리 능력 향상과 자원의 효율적인 활용을 가능하게 합니다. 또한 산업 부문에서 노동력이 감소함에 따라 기업들은 노동력 부족을 메우기 위해 자동화 솔루션을 찾고 있습니다. 바닥 페인팅 로봇을 마무리 작업에 통합함으로써 제조업체는 인력을 더 숙련된 작업에 투입하여 노동력 배분과 효율성을 최적화 할 수 있습니다.

다관절 로봇 부문은 예측 기간 동안 가장 큰 점유율을 차지할 것으로 예상됩니다.

다관절 페인팅 로봇은 다양한 도장 기술과 재료에 대한 높은 적응성을 가지고 있습니다. 베이스 코트, 클리어 코트 또는 복잡한 디자인을 적용하든, 이 로봇은 원하는 마무리를 달성하기 위해 움직임과 스프레이 매개 변수를 조정할 수 있습니다. 고급 제어 시스템과 소프트웨어를 통해 페인트 유량을 최적화하고, 스프레이 패턴을 조정하고, 압력을 일정하게 유지하여 우수한 도장 품질과 효율성을 달성할 수 있습니다.

예측 기간 동안 자동차 및 운송 부문이 가장 큰 점유율을 차지할 것으로 예상됩니다.

페인팅 로봇은 균일한 도장을 보장하고, 제품 품질을 개선하고, 인건비를 절감함으로써 자동차 제조 공정에 혁명을 일으켰습니다. 페인팅 로봇은 차체, 섀시 부품 및 다양한 내부 부품에 일관된 고품질 도장 마감을 달성하는 데 중요한 역할을 합니다. 페인팅 로봇을 사용하면 제조업체는 재료 낭비를 줄이고 재작업을 최소화하여 시간과 비용을 크게 절감하고 전반적인 작업 효율성을 높일 수 있습니다. 또한, 자동차 산업은 인력 부족에 직면하고 있으며, 페인팅 로봇은 도장 작업에서 사람에 대한 의존도를 줄이는 데 도움이 될 수 있습니다.

세계 페인팅 로봇 시장을 조사했으며, 시장 개요, 시장 영향요인 분석, 기술 및 특허 동향, 기술 및 특허 동향, 규제 환경, 사례 조사, 시장 규모 추이 및 예측, 각 부문별/지역별/주요 국가별 상세 분석, 경쟁 구도, 주요 기업 프로파일 등의 정보를 정리하여 전해드립니다.

목차

제1장 서론

제2장 조사 방법

제3장 주요 요약

제4장 프리미엄 인사이트

제5장 시장 개요

제6장 페인팅 로봇 시장 : 설치 유형별

제7장 페인팅 로봇 시장 : 로봇 유형별

제8장 페인팅 로봇 시장 : 페이로드별

제9장 페인팅 로봇 시장 : 리치별

제10장 페인팅 로봇 시장 : 기능별

제11장 페인팅 로봇 시장 : 어플리케이터별

제12장 페인팅 로봇 시장 : 최종사용자 산업별

제13장 페인팅 로봇 시장 : 지역별

제14장 경쟁 구도

제15장 기업 개요

제16장 부록

LSH
영문 목차

영문목차

The Painting Robot market is projected to grow from USD 3.1 billion in 2024 and is projected to reach USD 5.8 billion by 2029; it is expected to grow at a CAGR of 13.1% from 2024 to 2029 by The escalating demand for automation in manufacturing; heightened concerns about worker safety.

Scope of the Report
Years Considered for the Study2020-2029
Base Year2023
Forecast Period2024-2029
Units ConsideredValue (USD Billion)
SegmentsBy Mounting Type, Robot Type, Function, Payload, Reach, Paint Applicator, End-user Industry and Region
Regions coveredAsia Pacific, Europe, Row and North America

"Floor Mounted Painting Robot segment to hold the largest share during the forecast period."

The increasing adoption of floor mounted painting robots can be attributed to several factors. Manufacturers are inclined towards improving operational efficiency and reduce production costs while maintaining high-quality standards. Floor mounted robots offer enhanced productivity and consistency compared to manual painting methods, leading to higher throughput and better resource utilization. The dwindling workforce in industrial sectors has prompted companies to explore automation solutions to fill the labor gap. By integrating floor mounted painting robots into their finishing operations, manufacturers can free up human workers for more skilled tasks, thereby optimizing workforce allocation and efficiency.

"Market for Articulated Robots segment is projected to hold for largest share during the forecast timeline."

Articulated painting robots are highly adaptable to various painting techniques and materials. Whether applying base coats, clear coats, or intricate designs, these robots can adjust their movements and spraying parameters to achieve the desired finish. Advanced control systems and software enable them to optimize paint flow rates, adjust spray patterns, and maintain consistent pressure, resulting in superior paint quality and efficiency. Companies like b+m surface systems GmbH offer cutting-edge painting robots such as the T1 X6 and T2 X6 series. These robots feature advanced 6-axis articulated arms with hollow-wrist design, specifically tailored for precise paint application. Equipped with the latest machine control technology and high-performance drive systems, these robots deliver exceptional path accelerations, speeds, and painting accuracy, meeting the demands of modern manufacturing processes.

"Market for Up to 10 kg segment holds for largest market share during the forecast period."

Low payload painting robots have carved a niche in applications demanding exceptional precision and flawless finishing. Within the high-end furniture manufacturing domain, for instance, a 6 kg payload robot would be ideally suited for meticulously painting the intricate details on a chair leg. These robots can also be employed to apply delicate, multi-layered finishes on handcrafted cabinets. Their inherent ability to handle lightweight paint guns and execute precise movements fosters consistent paint application, minimizing overspray and ultimately leading to superior quality results.

"Market for 1,000 MM to 2,000 MM segment holds for largest market share during the forecast period."

The cost-effectiveness of robots within the 1,000 mm to 2,000 mm reach segment is a significant driving factor for their increased demand. Compared to larger robots with greater reach, these robots typically come with a lower initial cost, making them particularly appealing for companies seeking to automate specific painting tasks without committing to substantial upfront expenses. By offering a cost-effective solution, these robots enable businesses to adopt automation more readily, thereby driving the overall demand for painting robots within this reach range. Companies across various industries are increasingly adopting cobots within the 1,000 mm to 2,000 mm reach range to optimize their painting operations. In the automotive industry, cobots within this reach range are being utilized for tasks such as painting car components, where precision and flexibility are crucial. For instance, BMW's production facilities leverage cobots to assist in painting intricate car components such as door panels, bumpers, and trim pieces.

"Painting segment holds for largest market share during the forecast period."

The painting function encompasses various techniques, including waterborne, solvent-borne, and UV-cured painting methods, each offering distinct advantages. Water-borne painting, characterized by its eco-friendly nature and low volatile organic compound (VOC) emissions, has gained traction in industries emphasizing sustainability, such as automotive and furniture manufacturing. Solvent-based paints offer superior adhesion and protection against harsh environments, making them ideal for coating aircraft components and industrial machinery subjected to rigorous operating conditions. UV-cured paints, activated by ultraviolet light, enable instantaneous drying and curing, eliminating the need for prolonged drying periods and reducing production cycle times significantly. Advancements in painting techniques and robotic technology are expected to drive the painting robot market in future.

"Market for Atomizers segment is projected to grow with the highest CAGR by 2029."

Paint atomization is the process of breaking down liquid paint into very small droplets, which are then directed onto a target object. This process is crucial for efficient paint application. In the pursuit of maximizing efficiency and achieving impeccable paint finishes, paint robots are frequently integrated with supplementary automatic painting equipment, such as rotational Bell atomizers, along with other automatic electrostatic or conventional sprayers, which are strategically mounted onto the robot platform. Rotational Bell atomizers utilize a spinning bell to disperse paint in a fine mist, allowing for even coverage across various surfaces. By incorporating rotational Bell atomizers into the robotic painting process, manufacturers can attain a high level of control over paint application, resulting in superior finish quality.

"Market for Automotive & Transportation segment is projected to hold for largest share during the forecast timeline."

Painting robots have revolutionized the automotive manufacturing process by ensuring uniform paint application, improving product quality, and reducing labor costs. They play a vital role in achieving a consistent, high-quality paint finish on car bodies, chassis components, and various interior parts. Painting robots enable manufacturers to achieve significant time and cost savings by reducing material wastage and minimizing rework, thereby enhancing overall operational efficiency. The automotive industry is increasingly facing skilled labor shortages. Painting robots help reduce the dependence on skilled labor for painting tasks. They also reduce the safety risks associated with manual painting, where workers might be exposed to hazardous paint fumes or experience repetitive strain injuries.

Leading car manufacturers like Tesla and Mercedes-Benz utilize painting robots extensively to deliver a premium finish on their vehicles. As manufacturers strive for greater efficiency, consistent quality, and adherence to evolving design trends, painting robots will remain a critical element of their production lines.

"North America is expected to have the second-highest CAGR during the forecast period."

North America boasts a well-established market for painting robots, particularly in industries like automotive and aerospace that have traditionally utilized automation for efficiency and quality control. While the growth trajectory may not be as significant as in the rapidly developing Asia Pacific region, North America presents a stable and promising market for painting robots. According to the International Federation of Robotics (IFR), Manufacturing companies in the US significantly increased their investment in automation, with industrial robot installations rising by 12% to reach a total of 44,303 units in 2023. As automotive manufacturers continue to invest in robotic solutions to streamline production processes and meet growing demand, the demand for painting robots is expected to surge correspondingly. The rising labor costs in North America are compelling manufacturers to seek more efficient and cost-effective production methods, thereby driving the demand for painting robots. According to the Bureau of Labor Statistics, compensation costs for civilian workers in the US increased by 1.0% over the three-month period ending December 2023 and saw a year-over-year rise of 4.3%. This increase includes a 1.0% rise in wages and salaries over the same three-month period, contributing to a 4.5% annual increase. The financial and operational benefits provided by painting robots make them an appealing investment for manufacturers looking to counteract the effects of rising labor expenses and maintain high production standards.

Extensive primary interviews were conducted with key industry experts in the Painting Robot market space to determine and verify the market size for various segments and subsegments gathered through secondary research. The break-up of primary participants for the report has been shown below: The break-up of the profile of primary participants in the Painting Robot market:

The report profiles key players in the Painting Robot market with their respective market ranking analysis. Prominent players profiled in this report are ABB (Switzerland), FANUC CORPORATION (Japan), KUKA AG (Germany), YASKAWA ELECTRIC CORPORATION (Japan), Kawasaki Heavy Industries, Ltd. (Japan), DURR AG (Germany), Epistolio (Italy), krautzberger (Germany), CMA robotics (Italy), Staubli International AG. (Switzerland) among others.

Apart from this, Robotic paint group (China), b+m surface systems GmbH (Germany), EFORT Intelligent Equipment Co., Ltd. (China), Hangzhou Color Powder Coating Equipment Co.,Ltd. (China), Gruppo Sacmi (Italy), OMRON Corporation (Japan), Universal Robots A/S (Denmark), Denso Robotics (US), Wuhan Huazhong Numerical Control Co., Ltd. (China), Shenzhen Han's Robot Co., Ltd (China), Borunte Robot Co., Ltd. (China), Cefla Finishing (Italy), CML Finishing (Italy), JAKA Robotics (China), are among a few emerging companies in the Painting Robot market.

Research Coverage: This research report categorizes the Painting Robot market based on Mounting Type, Robot Type, Payload, Reach, Function, Paint Applicator, End-use Industry and region. The report describes the major drivers, restraints, challenges, and opportunities pertaining to the Painting Robot market and forecasts the same till 2029. Apart from these, the report also consists of leadership mapping and analysis of all the companies included in the Painting Robot ecosystem.

Key Benefits of Buying the Report The report will help the market leaders/new entrants in this market with information on the closest approximations of the revenue numbers for the overall Painting Robot market and the subsegments. This report will help stakeholders understand the competitive landscape and gain more insights to position their businesses better and plan suitable go-to-market strategies. The report also helps stakeholders understand the pulse of the market and provides them with information on key market drivers, restraints, challenges, and opportunities.

The report provides insights on the following pointers:

TABLE OF CONTENTS

1 INTRODUCTION

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 PREMIUM INSIGHTS

5 MARKET OVERVIEW

6 PAINTING ROBOT MARKET, BY MOUNTING TYPE

7 PAINTING ROBOT MARKET, BY ROBOT TYPE

8 PAINTING ROBOT MARKET, BY PAYLOAD

9 PAINTING ROBOT MARKET, BY REACH

10 PAINTING ROBOT MARKET, BY FUNCTION

11 PAINTING ROBOT MARKET, BY PAINT APPLICATOR

12 PAINTING ROBOT MARKET, BY END-USE INDUSTRY

13 PAINTING ROBOT MARKET, BY REGION

14 COMPETITIVE LANDSCAPE

15 COMPANY PROFILES

(Business overview, Products/Solutions/Services offered, Recent developments, MnM view, Key strengths/Right to win, Strategic choices, and Weaknesses and Competitive threats)**

16 APPENDIX

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