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Pages: 230 |
Feb 2023 |
The global stud welding market is anticipated to grow at a notable growth rate during the forecast period owing to the significant expansion of key industry verticals like construction, automotive, and shipbuilding, which are increasingly dependent on the use of stud welding machines in their manufacturing processes. The stud welding machine can be used for welding studs that are made of stainless steel, copper, carbon steel, aluminum, and alloy stud. With the utilization of stud welding machines, welding time is maintained at the millisecond level, so there is minimal thermic effect and welding deformation. The stud welding machine is very suitable for sheet welding thickness greater than 0.5 mm. All these factors are anticipated to drive the market revenue growth during the forecast period.
Numerous building projects and activities, including government infrastructure projects, were completely halted owing to the worldwide lockdowns. The stud welding machine market is highly dependent on end-user industries such as construction and shipbuilding. Hence, instabilities in these sectors are likely to hamper the stud welding machines market growth. Therefore, factors such as a shortage of skilled technical personnel are projected to hamper the market expansion during the forecast period. Some of the limitations associated with stud welding machine is that it can be used to weld small components such as plugs or studs that can easily rotate onto a workpiece at high speed.
The demand for domestic items including cooking stoves, kitchen chimneys, and refrigerators is increasing steadily. The rise in demand for domestic goods is expected to offer lucrative opportunities to the stud welding machine market players as these welding machines are increasingly used in the production of domestic goods such as refrigerators. For instance, in catering and food processing sector, stud welding machines are used for fixing elements to the counters, refrigeration units, and tabletops. Also, the invisible welding that does not cause blackening on the surface of workpiece being weld endures a strong and long-lasting weld to the product. These factors are anticipated to propel the stud welding machine market share during the forecast period.
According to regional analysis, the Asia-Pacific stud welding machine market accounted for the highest market size in 2021. This growth is majorly attributed to the rapid industrialization in various countries in the region, including China, Japan, India, and Indonesia. In addition, expansion in shipbuilding and construction projects is anticipated to further support the regional market growth for stud welding machines in the future.
Stud welding is an arc welding technique in which metal parts can be end-joined to a workpiece instantaneously. Stud welding applies the same principles and has the same metallurgical characteristics as any other arc welding process. Machines for stud welding are affordable, portable, light, and safe. A computerized monitor on the machine shows crucial data including welding voltage, current, and time.
The COVID-19 pandemic caused strict lockdowns and social isolation across the globe. The pandemic has had a detrimental effect on the market potential for stud welding machines owing to the suspension of manufacturing and production facilities due to a manpower shortage and a delay in the availability of raw materials. Many end-user industries, including the automobile, shipbuilding, and construction witnessed a decline due to import-export restrictions, closed borders, and economic instability. These industries consistently have a significant need for stud welding equipment. Therefore, the decline in these sectors ultimately hindered the expansion of the stud welding machine market during the pandemic. The majority of manufacturing hubs are in the Asia-Pacific region. China and India implemented strict lockdowns and social isolation during the COVID-19 pandemic, which disrupted manufacturing activities for many weeks and caused the country's economy to contract.
Shipbuilding activities have expanded because of more goods being transported by sea, which in turn has boosted demand for stud welding equipment. Stud welding machines plays a major role in the shipbuilding industry. For instance, in the shipbuilding sector, the stud welding machines are used for constructing large structures generally made out of steel. Professionals consider welding operations as a crucial one in the shipbuilding sector owing to faster operations and efficient operations facilitated by these machines. The development of welding technology has made it possible to construct completely water- and oil-tight ship constructions. Without the correct use of welding materials and processes, these structures cannot operate effectively or safely. All these are the major factors expected to drive the growth of the stud welding machine market during the forecast period.
To know more about global stud welding machine market drivers, get in touch with our analysts here.
The need for qualified welders is increasing across many industries, including shipbuilding and construction. For instance, a shipyard welder's tasks include a variety of activities such as checking the materials and structures to be welded, building ship components, repairing ship components, and using cutting equipment and torches. For ships and boats to operate securely, shipyard welding must be efficient and effective. However, several industries, like shipbuilding, are struggling to find qualified welders. This, in turn, is anticipated to restrain the stud welding machine market growth in the upcoming years.
The automotive sector majorly uses stud welding machines. This is because when welding fastenings to sheet metal, accuracy and strength is of the utmost importance. Various automotive applications, including heat shields, power steering parts, exhaust systems, insulation, electrical wire routing, and lighting use stud welding machines. In addition, stud welds are also ideal for a variety of construction applications due to their higher strength. Stud welding machines are used in the construction industry for a variety of applications, including building work, and bridge construction. For roads and buildings to be safer, underground systems like sewer pipes and other subsurface services also need to be well-welded. These factors are expected to offer excellent opportunities to stud welding machine market players during the forecast period.
To know more about global stud welding machine market opportunities, get in touch with our analysts here.
Based on type of arc ignition, the market has been divided into drawn arc stud welding and capacitor discharge stud welding. Among these, the drawn arc stud welding sub-segment accounted for the highest market share in 2021 and is projected to show the fastest CAGR during the forecast period.
Source: Research Dive Analysis
The drawn arc stud welding sub-segment accounted for a dominant market share in 2021 and is projected to show the fastest CAGR during the forecast period. Drawn arc stud welding is a very efficient technique of attaching fasteners mainly to stainless steel and mild steel of 2mm thickness and above by using a steady current DC power supply. This method can tolerate surface curvature and defects like grease, light rust, and scale. This technique employs a welding rectifier that involves an energy source and provides a continuous welding current. Drawn arc stud welding type of arc ignition offers numerous benefits including uniform quality, high duty cycle, and also avoids the need for riveting and drilling.
Based on material, the market has been divided into steel, aluminum, copper, and brass. Among these, the steel sub-segment accounted for the highest revenue share in 2021, whereas the aluminum sub-segment is estimated to show the fastest growth during the forecast period.
Source: Research Dive Analysis
The steel sub-segment accounted for a dominating market share in 2021. Stud welding technique is increasingly used in the shipbuilding industry and steel is the most widely utilized material. High-strength steels are needed for crucial areas of ships. Both stainless steel and mild steel can be stud welded. Generally, steel is a fantastic choice for studs and bases in general because it works well for procedures like drawn arc stud welding and capacitor discharge stud welding.
Based on stud diameter, the market has been classified into below 3 mm, 3-12 mm, 12-18 mm, and 18 mm and above. Among these, the 3-12 mm sub-segment accounted for the highest revenue share in 2021.
Source: Research Dive Analysis
The 3-12 mm sub-segment accounted for the largest market share in 2021. The growth of this sub-segment is mainly attributed to its rising application in various sectors including transportation, shipbuilding, marine, and automotive. The usage of 3-12mm studs is known as short cycle stud welding as these studs provide an undisturbed backside finish with a rapid attachment.
Based on operation, the market has been classified into automatic and semi-automatic. Among these, the semi-automatic sub-segment accounted for the highest revenue share in 2021.
Source: Research Dive Analysis
The semi-automatic sub-segment accounted for the largest market share in 2021. Machines that automatically weld studs are not always the best option. Semi-automatic welding equipment maintains a high level of control while doubling the output of the manual welder. When the quality of the weld is extremely important or when numerous welds need to be done, semi-automatic welding equipment is increasingly being used. These stud welding machines provide many advantages over automated equipment, including higher employee safety, high-quality welding output, reproducibility, high total product output, reduced scrap produced, and others.
Based on end-use industry, the market has been classified into automotive, shipbuilding, electric goods, construction, farm, and others. Among these, the construction sub-segment accounted for the highest revenue share in 2021.
Source: Research Dive Analysis
The construction sub-segment accounted for the largest market share in 2021. Stud welding is widely used in the construction industry as an alternative to hole punching or spot welding from one surface to another. A variety of applications in the construction sector are suited for the stud welding process because of the increased strength of stud welds. Stud welding is used in the construction sector for a variety of tasks, including building works, bridge construction, and others. Stud welding machines are also used in the construction of an interesting façade. Stud welding is also used for constructing bridges, elevators, staircases, and escalators.
The stud welding machine market was investigated across North America, Europe, Asia-Pacific, and LAMEA.
Source: Research Dive Analysis
The Asia-Pacific stud welding machine market accounted for the highest market share in 2021, owing to the rapid industrialization, robust growth in the automotive sector, and increase in heavy engineering and construction projects mainly in countries such as India, China, and Japan. Vehicle sales across the Asia-Pacific region are highest compared to all other regions due to rising population and disposable income. Therefore, the automotive sector in this region is expanding significantly, which ultimately boosts the demand for the stud welding machine market.
Investment, agreement, product launches and developments, and partnerships are some of the common strategies followed by major market players. For instance, in October 2022, STANLEY Engineered Fastening, the manufacturer of stud welding machines declared its plans for an automated production line in the manufacturing of steel with integrated stud welding systems.
Source: Research Dive Analysis
Some of the leading stud welding machine market players are STANLEY Engineered Fastening, Midwest Fasteners Inc., Bolte GmbH, KÖSTER & CO. GMBH, ChangZhou Jinda Welding Co., Ltd., HBS Bolzenschweiss-Systeme GmbH & Co. KG, Taylor Studwelding Systems Ltd, HEINZ SOYER BOLZENSCHWEISSTECHNIK GMBH, Cruxweld Industrial Equipments Private Limited, and TFP Corporation.
Aspect | Particulars |
Historical Market Estimations | 2020 |
Base Year for Market Estimation | 2021 |
Forecast Timeline for Market Projection | 2022-2031 |
Geographical Scope | North America, Europe, Asia-Pacific, and LAMEA |
Segmentation by Type of Arc Ignition |
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Segmentation by Material |
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Segmentation by Stud Diameter |
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Segmentation by Operation |
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Segmentation by End-use Industry |
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Key Companies Profiled |
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1.Research Methodology
1.1.Desk Research
1.2.Real time insights and validation
1.3.Forecast model
1.4.Assumptions and forecast parameters
1.5.Market size estimation
1.5.1.Top-down approach
1.5.2.Bottom-up approach
2.Report Scope
2.1.Market definition
2.2.Key objectives of the study
2.3.Report overview
2.4.Market segmentation
2.5.Overview of the impact of COVID-19 on Global stud welding machine market
3.Executive Summary
4.Market Overview
4.1.Introduction
4.2.Growth impact forces
4.2.1.Drivers
4.2.2.Restraints
4.2.3.Opportunities
4.3.Market value chain analysis
4.3.1.List of raw material suppliers
4.3.2.List of manufacturers
4.3.3.List of distributors
4.4.Innovation & sustainability matrices
4.4.1.Technology matrix
4.4.2.Regulatory matrix
4.5.Porter’s five forces analysis
4.5.1.Bargaining power of suppliers
4.5.2.Bargaining power of consumers
4.5.3.Threat of substitutes
4.5.4.Threat of new entrants
4.5.5.Competitive rivalry intensity
4.6.PESTLE analysis
4.6.1.Political
4.6.2.Economical
4.6.3.Social
4.6.4.Technological
4.6.5.Environmental
4.7.Impact of COVID-19 on Stud Welding Machine market
4.7.1.Pre-covid market scenario
4.7.2.Post-covid market scenario
5.Stud Welding Machine Market Analysis, by Type of Arc Ignition
5.1.Overview
5.2.Drawn Arc Stud Welding
5.2.1.Definition, key trends, growth factors, and opportunities
5.2.2.Market size analysis, by region,2022-2031
5.2.3.Market share analysis, by country,2022-2031
5.3.Capacitor Discharge Stud Welding
5.3.1.Definition, key trends, growth factors, and opportunities
5.3.2.Market size analysis, by region,2022-2031
5.3.3.Market share analysis, by country,2022-2031
5.4.Research Dive Exclusive Insights
5.4.1.Market attractiveness
5.4.2.Competition heatmap
6.Stud Welding Machine Market, by Material
6.1.Steel
6.1.1.Definition, key trends, growth factors, and opportunities
6.1.2.Market size analysis, by region,2022-2031
6.1.3.Market share analysis, by country,2022-2031
6.2.Aluminum
6.2.1.Definition, key trends, growth factors, and opportunities
6.2.2.Market size analysis, by region,2022-2031
6.2.3.Market share analysis, by country,2022-2031
6.3.Copper
6.3.1.Definition, key trends, growth factors, and opportunities
6.3.2.Market size analysis, by region,2022-2031
6.3.3.Market share analysis, by country,2022-2031
6.4.Brass
6.4.1.Definition, key trends, growth factors, and opportunities
6.4.2.Market size analysis, by region,2022-2031
6.4.3.Market share analysis, by country,2022-2031
6.5.Research Dive Exclusive Insights
6.5.1.Market attractiveness
6.5.2.Competition heatmap
7.Stud Welding Machine Market, by Stud Diameter
7.1.Below 3 mm
7.1.1.Definition, key trends, growth factors, and opportunities
7.1.2.Market size analysis, by region,2022-2031
7.1.3.Market share analysis, by country,2022-2031
7.2.3-12 mm
7.2.1.Definition, key trends, growth factors, and opportunities
7.2.2.Market size analysis, by region,2022-2031
7.2.3.Market share analysis, by country,2022-2031
7.3.12-18 mm
7.3.1.Definition, key trends, growth factors, and opportunities
7.3.2.Market size analysis, by region,2022-2031
7.3.3.Market share analysis, by country,2022-2031
7.4.18 mm and Above
7.4.1.Definition, key trends, growth factors, and opportunities
7.4.2.Market size analysis, by region,2022-2031
7.4.3.Market share analysis, by country,2022-2031
7.5.Research Dive Exclusive Insights
7.5.1.Market attractiveness
7.5.2.Competition heatmap
8.Stud Welding Machine Market, by Operation
8.1.Automatic
8.1.1.Definition, key trends, growth factors, and opportunities
8.1.2.Market size analysis, by region,2022-2031
8.1.3.Market share analysis, by country,2022-2031
8.2.Semi-automatic
8.2.1.Definition, key trends, growth factors, and opportunities
8.2.2.Market size analysis, by region,2022-2031
8.2.3.Market share analysis, by country,2022-2031
8.3.Research Dive Exclusive Insights
8.3.1.Market attractiveness
8.3.2.Competition heatmap
9.Stud Welding Machine Market, by End-use Industry
9.1.Automotive
9.1.1.Definition, key trends, growth factors, and opportunities
9.1.2.Market size analysis, by region,2022-2031
9.1.3.Market share analysis, by country,2022-2031
9.2.Shipbuilding
9.2.1.Definition, key trends, growth factors, and opportunities
9.2.2.Market size analysis, by region,2022-2031
9.2.3.Market share analysis, by country,2022-2031
9.3.Electric Goods
9.3.1.Definition, key trends, growth factors, and opportunities
9.3.2.Market size analysis, by region,2022-2031
9.3.3.Market share analysis, by country,2022-2031
9.4.Construction
9.4.1.Definition, key trends, growth factors, and opportunities
9.4.2.Market size analysis, by region,2022-2031
9.4.3.Market share analysis, by country,2022-2031
9.5.Farm
9.5.1.Definition, key trends, growth factors, and opportunities
9.5.2.Market size analysis, by region,2022-2031
9.5.3.Market share analysis, by country,2022-2031
9.6.Others
9.6.1.Definition, key trends, growth factors, and opportunities
9.6.2.Market size analysis, by region,2022-2031
9.6.3.Market share analysis, by country,2022-2031
9.7.Research Dive Exclusive Insights
9.7.1.Market attractiveness
9.7.2.Competition heatmap
10.Stud Welding Machine Market, by Region
10.1.North America
10.1.1.U.S.
10.1.1.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.1.1.2.Market size analysis, by Material,2022-2031
10.1.1.3.Market size analysis, by Stud Diameter,2022-2031
10.1.1.4.Market size analysis, by Operation,2022-2031
10.1.1.5.Market size analysis, by End-use Industry,2022-2031
10.1.2.Canada
10.1.2.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.1.2.2.Market size analysis, by Material,2022-2031
10.1.2.3.Market size analysis, by Stud Diameter,2022-2031
10.1.2.4.Market size analysis, by Operation,2022-2031
10.1.2.5.Market size analysis, by End-use Industry,2022-2031
10.1.3.Mexico
10.1.3.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.1.3.2.Market size analysis, by Material,2022-2031
10.1.3.3.Market size analysis, by Stud Diameter,2022-2031
10.1.3.4.Market size analysis, by Operation,2022-2031
10.1.3.5.Market size analysis, by End-use Industry,2022-2031
10.1.4.Research Dive Exclusive Insights
10.1.4.1.Market attractiveness
10.1.4.2.Competition heatmap
10.2.Europe
10.2.1.Germany
10.2.1.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.2.1.2.Market size analysis, by Material,2022-2031
10.2.1.3.Market size analysis, by Stud Diameter,2022-2031
10.2.1.4.Market size analysis, by Operation,2022-2031
10.2.1.5.Market size analysis, by End-use Industry,2022-2031
10.2.2.U.K.
10.2.2.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.2.2.2.Market size analysis, by Material,2022-2031
10.2.2.3.Market size analysis, by Stud Diameter,2022-2031
10.2.2.4.Market size analysis, by Operation,2022-2031
10.2.2.5.Market size analysis, by End-use Industry,2022-2031
10.2.3.France
10.2.3.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.2.3.2.Market size analysis, by Material,2022-2031
10.2.3.3.Market size analysis, by Stud Diameter,2022-2031
10.2.3.4.Market size analysis, by Operation,2022-2031
10.2.3.5.Market size analysis, by End-use Industry,2022-2031
10.2.4.Spain
10.2.4.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.2.4.2.Market size analysis, by Material,2022-2031
10.2.4.3.Market size analysis, by Stud Diameter,2022-2031
10.2.4.4.Market size analysis, by Operation,2022-2031
10.2.4.5.Market size analysis, by End-use Industry,2022-2031
10.2.5.Italy
10.2.5.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.2.5.2.Market size analysis, by Material,2022-2031
10.2.5.3.Market size analysis, by Stud Diameter,2022-2031
10.2.5.4.Market size analysis, by Operation,2022-2031
10.2.5.5.Market size analysis, by End-use Industry,2022-2031
10.2.6.Rest of Europe
10.2.6.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.2.6.2.Market size analysis, by Material,2022-2031
10.2.6.3.Market size analysis, by Stud Diameter,2022-2031
10.2.6.4.Market size analysis, by Operation,2022-2031
10.2.6.5.Market size analysis, by End-use Industry,2022-2031
10.2.7.Research Dive Exclusive Insights
10.2.7.1.Market attractiveness
10.2.7.2.Competition heatmap
10.3.Asia-Pacific
10.3.1.China
10.3.1.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.3.1.2.Market size analysis, by Material,2022-2031
10.3.1.3.Market size analysis, by Stud Diameter,2022-2031
10.3.1.4.Market size analysis, by Operation,2022-2031
10.3.1.5.Market size analysis, by End-use Industry,2022-2031
10.3.2.Japan
10.3.2.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.3.2.2.Market size analysis, by Material,2022-2031
10.3.2.3.Market size analysis, by Stud Diameter,2022-2031
10.3.2.4.Market size analysis, by Operation,2022-2031
10.3.2.5.Market size analysis, by End-use Industry,2022-2031
10.3.3.India
10.3.3.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.3.3.2.Market size analysis, by Material,2022-2031
10.3.3.3.Market size analysis, by Stud Diameter,2022-2031
10.3.3.4.Market size analysis, by Operation,2022-2031
10.3.3.5.Market size analysis, by End-use Industry,2022-2031
10.3.4.Australia
10.3.4.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.3.4.2.Market size analysis, by Material,2022-2031
10.3.4.3.Market size analysis, by Stud Diameter,2022-2031
10.3.4.4.Market size analysis, by Operation,2022-2031
10.3.4.5.Market size analysis, by End-use Industry,2022-2031
10.3.5.South Korea
10.3.5.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.3.5.2.Market size analysis, by Material,2022-2031
10.3.5.3.Market size analysis, by Stud Diameter,2022-2031
10.3.5.4.Market size analysis, by Operation,2022-2031
10.3.5.5.Market size analysis, by End-use Industry,2022-2031
10.3.6.Rest of Asia Pacific
10.3.6.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.3.6.2.Market size analysis, by Material,2022-2031
10.3.6.3.Market size analysis, by Stud Diameter,2022-2031
10.3.6.4.Market size analysis, by Operation,2022-2031
10.3.6.5.Market size analysis, by End-use Industry,2022-2031
10.3.7.Research Dive Exclusive Insights
10.3.7.1.Market attractiveness
10.3.7.2.Competition heatmap
10.4.LAMEA
10.4.1.Brazil
10.4.1.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.4.1.2.Market size analysis, by Material,2022-2031
10.4.1.3.Market size analysis, by Stud Diameter,2022-2031
10.4.1.4.Market size analysis, by Operation,2022-2031
10.4.1.5.Market size analysis, by End-use Industry,2022-2031
10.4.2.Saudi Arabia
10.4.2.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.4.2.2.Market size analysis, by Material,2022-2031
10.4.2.3.Market size analysis, by Stud Diameter,2022-2031
10.4.2.4.Market size analysis, by Operation,2022-2031
10.4.2.5.Market size analysis, by End-use Industry,2022-2031
10.4.3.UAE
10.4.3.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.4.3.2.Market size analysis, by Material,2022-2031
10.4.3.3.Market size analysis, by Stud Diameter,2022-2031
10.4.3.4.Market size analysis, by Operation,2022-2031
10.4.3.5.Market size analysis, by End-use Industry,2022-2031
10.4.4.South Africa
10.4.4.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.4.4.2.Market size analysis, by Material,2022-2031
10.4.4.3.Market size analysis, by Stud Diameter,2022-2031
10.4.4.4.Market size analysis, by Operation,2022-2031
10.4.4.5.Market size analysis, by End-use Industry,2022-2031
10.4.5.Rest of LAMEA
10.4.5.1.Market size analysis, by Type of Arc Ignition,2022-2031
10.4.5.2.Market size analysis, by Material,2022-2031
10.4.5.3.Market size analysis, by Stud Diameter,2022-2031
10.4.5.4.Market size analysis, by Operation,2022-2031
10.4.5.5.Market size analysis, by End-use Industry,2022-2031
10.4.6.Research Dive Exclusive Insights
10.4.6.1.Market attractiveness
10.4.6.2.Competition heatmap
11.Competitive Landscape
11.1.Top winning strategies, 2022
11.1.1.By strategy
11.1.2.By year
11.2.Strategic overview
11.3.Market share analysis, 2021
12.Company Profiles
12.1.STANLEY Engineered Fastening
12.1.1.Overview
12.1.2.Business segments
12.1.3.Product portfolio
12.1.4.Financial performance
12.1.5.Recent developments
12.1.6.SWOT analysis
12.2.Midwest Fasteners Inc.
12.2.1.Overview
12.2.2.Business segments
12.2.3.Product portfolio
12.2.4.Financial performance
12.2.5.Recent developments
12.2.6.SWOT analysis
12.3.Bolte GmbH
12.3.1.Overview
12.3.2.Business segments
12.3.3.Product portfolio
12.3.4.Financial performance
12.3.5.Recent developments
12.3.6.SWOT analysis
12.4.KÖSTER & CO. GMBH
12.4.1.Overview
12.4.2.Business segments
12.4.3.Product portfolio
12.4.4.Financial performance
12.4.5.Recent developments
12.4.6.SWOT analysis
12.5.ChangZhou Jinda Welding Co., Ltd.
12.5.1.Overview
12.5.2.Business segments
12.5.3.Product portfolio
12.5.4.Financial performance
12.5.5.Recent developments
12.5.6.SWOT analysis
12.6.HBS Bolzenschweiss-Systeme GmbH & Co. KG
12.6.1.Overview
12.6.2.Business segments
12.6.3.Product portfolio
12.6.4.Financial performance
12.6.5.Recent developments
12.6.6.SWOT analysis
12.7.Taylor Studwelding Systems Ltd
12.7.1.Overview
12.7.2.Business segments
12.7.3.Product portfolio
12.7.4.Financial performance
12.7.5.Recent developments
12.7.6.SWOT analysis
12.8.HEINZ SOYER BOLZENSCHWEISSTECHNIK GMBH
12.8.1.Overview
12.8.2.Business segments
12.8.3.Product portfolio
12.8.4.Financial performance
12.8.5.Recent developments
12.8.6.SWOT analysis
12.9.Cruxweld Industrial Equipments Private Limited
12.9.1.Overview
12.9.2.Business segments
12.9.3.Product portfolio
12.9.4.Financial performance
12.9.5.Recent developments
12.9.6.SWOT analysis
12.10.TFP Corporation
12.10.1.Overview
12.10.2.Business segments
12.10.3.Product portfolio
12.10.4.Financial performance
12.10.5.Recent developments
12.10.6.SWOT analysis
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