Graphite rod is a rod-like object made of graphite material. Graphite is a kind of crystalline carbon, with good electrical conductivity, thermal conductivity, high temperature resistance, chemical stability and lubrication and many other excellent properties. These characteristics give graphite rod extremely wide range of applications. In industrial production, such as electric furnace steelmaking, electrolytic aluminum and other links, graphite rod as an electrode plays a key role. In scientific research laboratories, you can use it for high temperature experiments, electrochemical research and so on. From the appearance, it appears black or gray black, the texture is relatively soft, with a metallic luster.
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The raw materials of it are mainly divided into natural graphite and artificial graphite. The price of natural graphite fluctuates greatly due to different purity and origin. For example, the price of high purity natural flake graphite is usually 500- USD/ton. If the purity of higher, larger scale size of high-quality natural graphite, the price can even exceed USD/ton. Artificial graphite is made from petroleum coke, asphalt coke and other raw materials through high temperature treatment. The price of petroleum coke is about 280-750 USD/ton, and the price of asphalt coke is roughly 450-850 USD/ton. Coupled with the complex processing process, which makes the cost of artificial graphite high, and the cost of graphite rod with artificial graphite as raw material also increases correspondingly.
Its production process includes molding, roasting, graphitization and other links. Extrusion molding equipment cost is relatively low, suitable for the production of conventional specifications of graphite rods, its processing cost is about 140-430 USD/ton. The isostatic molding equipment is expensive and the process is complex, which is suitable for manufacturing high-precision and high-performance graphite rods, and the processing cost can reach 700- USD/ton. The roasting and graphitization process consumes a lot of energy, the graphitization temperature is usually - ℃, and the energy cost accounts for about 20%-30% of the total cost.
The graphite rod is large in volume and heavy in weight. And the transportation cost is significantly affected by the transportation mode and distance. Road transportation flexibility is high, but the cost is also high, the transportation cost per kilometer per ton is 3-8 USD. Railway transportation is suitable for long-distance, mass transportation, and the cost per ton per kilometer is about 1-3 USD. Shipping costs are the lowest, at 0.5-1.5 USD per ton per kilometer. The packaging cost during transportation is about 10-30 USD per ton for ordinary packaging, and 40-200 USD for special protective packaging.
The following is a price reference list of different types of graphite rods.
Type Price range High-density graphite rods From $ /ton High purity graphite rods From $ /ton Graphite rode electrode From $ /ton Fine grain graphite rods From $ /ton EDM graphite rods From $ /ton Nuclear reactor graphite rods From $ /ton Graphite stirring rods From $ /ton Pyrolytic graphite rods From $ /ton lsostatic pressed graphite rods From $ /tonWhen the steel industry is booming, the demand for graphite electrodes in electric furnace steelmaking is greatly increased. And the market is in short supply, the price of graphite rods may rise by 20%-50%. On the contrary, if the market demand is weak, such as the traditional industry is in the off-season, the graphite rod price will fall by 10%-20%.
High purity, high density graphite rod, due to superior performance, it is suitable for high-end fields. The price is 30% -80% higher than ordinary graphite rod. Special specifications of graphite rods, because of the difficulty of production, the price is 2-5 times the conventional specifications. Such as the diameter of more than 500mm or the length of more than mm.
Well-known brands of graphite rods, with good quality stability and reputation, the price is usually 10%-30% higher than ordinary brands. Suppliers that provide rapid logistics distribution, high-quality technical support and perfect return and exchange policies will also see their product prices rise to a certain extent.
Graphite electrodes for electric furnace steelmaking in the metallurgical industry, when purchased in bulk, the price is - USD/ton. Small metallurgical enterprises purchase a small amount, the price may be higher by 10%-15%.
The graphite rod used in the chemical industry for electrolytic cell, according to the corrosion resistance and specifications, the price is - USD/ton.
Research and laboratory graphite rod, high purity and dimensional accuracy requirements. If the purity reaches more than 99.99% of the high purity graphite rod, the price of a single 50-80 USD. (The diameter of 10-50mm, the length of 100-500mm.) Specially customized graphite rods, the price may be higher.
In the semiconductor industry, used for high-temperature furnaces has high requirements for purity and stability, and the price can reach - USD/ton.
Over the past decade, its prices have experienced many fluctuations. -, due to the slowdown in global economic growth and lack of market demand, its prices fell by about 20%. In -, environmental protection policies have become stricter, some small graphite production enterprises have stopped production, supply has decreased. And prices have risen by 30%-50%. In -, with the gradual release of new production capacity, prices have fallen back.
In the long run, with the advancement of technology, the production efficiency of it will be improved. And the cost is expected to be reduced. However, fluctuations in raw material prices and changes in market supply and demand will still affect prices. It is expected that in the next five years, its overall price will be stable and decline, with a range of 5%-15%. High-end graphite rods are driven by technological innovation and demand from emerging industries, and the price may remain relatively stable.
Pay close attention to market dynamics and avoid buying at peak prices. Use historical price data to make purchases during periods of low prices or when the market is well supplied. If the enterprise has long-term stable demand, it can sign long-term contracts with suppliers to lock in prices. And reduce the risk of price fluctuations.
Choose reputable graphite suppliers with reliable product quality. Visit the supplier’s production facilities to understand their production capacity and quality control system. Comprehensively consider the supplier’s price, delivery time, after-sales service and other factors. Then choose the most cost-effective supplier, establish long-term stable cooperative relationship.
The price of graphite rod is affected by many factors such as raw materials, processing, transportation costs and market supply and demand. And the differences are obvious in each scenario, the price fluctuates frequently. And there is a downward trend in the future but there is uncertainty. So it is necessary to pay attention to the dynamics and scientific decision-making when purchasing.
Report Snapshot
CAGR: 9.9%Source: CMI
Study Period: - Fastest Growing Market: Asia-Pacific Largest Market: EuropeMajor Players
Reports Description
As per the current market research conducted by Custom Market Insight Team, the global Graphite Electrode market is expected to record a CAGR of 9.9% from to . In , the market size is projected to reach a valuation of US$ 9,575.75 million. By , the valuation is anticipated to reach US$ 18,541.99 million.
The graphite electrode market refers to the global market for graphite electrodes, which are essential components in the production of steel via the electric arc furnace (EAF) method. Graphite electrodes are used as conductors of electric current in EAFs, where they melt scrap steel to create new steel products. The market encompasses the manufacturing, distribution, and sale of graphite electrodes to industries such as construction, automotive, infrastructure, and aerospace and defense. The market size and demand for graphite electrodes can fluctuate based on various economic and industrial factors.
Graphite Electrode Market – Significant Growth Factors
The graphite electrode market presents significant growth opportunities due to the increasing demand for steel products in various industries. The growth of the construction, automotive, infrastructure, and aerospace and defense sectors, which are major consumers of steel products, is driving the demand for graphite electrodes.
Moreover, the shift towards electric arc furnace (EAF) technology in the steel production process, which requires graphite electrodes, is also contributing to the market’s growth. The EAF method is more cost-effective and environmentally friendly than traditional steelmaking methods, and it requires a higher amount of graphite electrodes. Additionally, the increasing use of graphite electrodes in non-steel applications, such as the production of silicon metal, aluminum, and other alloys, is expected to further boost the demand for graphite electrodes in the market.
Furthermore, advancements in graphite electrode technology, such as the development of ultra-high power (UHP) graphite electrodes, are providing new growth opportunities for the market players. These UHP graphite electrodes offer better performance, durability, and efficiency than conventional graphite electrodes, and they are expected to become more popular in the steel production process in the coming years.
In summary, the graphite electrode market is expected to experience significant growth opportunities due to the increasing demand for steel products, the shift towards EAF technology, the expanding use of graphite electrodes in non-steel applications, and the development of advanced graphite electrode technologies.
Attributes Value Graphite Electrode Value ()Graphite Electrode Market – Mergers and Acquisitions
The graphite electrode market has seen significant mergers and acquisitions activity in recent years, driven by the need for companies to expand their production capacities and product offerings to meet the increasing demand for graphite electrodes.
In summary, the graphite electrode market has seen significant mergers and acquisitions activity in recent years, as companies look to expand their production capacities, product offerings, and market share to meet the increasing demand for graphite electrodes.
COMPARATIVE ANALYSIS OF THE RELATED MARKET
Graphite Electrode Market Kojic Acid Market Nano Zinc Oxide Market CAGR 9.9% (Approx) CAGR 2%(Approx)
21.53%(Approx)
US$ 18,541.99 million by USD 75 million by USD 44.8 Billion by .Graphite Electrode Market – Significant Threats
The graphite electrode market faces several significant threats that could impact its growth and profitability. These threats include:
In summary, the graphite electrode market faces several significant threats, including fluctuations in the steel industry, increasing competition, technological advancements, raw material price volatility, and environmental regulations. Companies operating in the market must be prepared to navigate these challenges to maintain their competitive position and profitability.
Report Scope
Feature of the Report Details Market Size in USD 9,575.75 Million Projected Market Size in USD 18,541.99 Million Market Size in USD 6,564.2 Million CAGR Growth Rate 9.9% CAGR (-) Base Year Forecast Period - Key Segment By Electrode Grade Type, Application, and Region Report Coverage Revenue Estimation and Forecast, Company Profile, Competitive Landscape, Growth Factors, and Recent Trends Regional Scope North America, Europe, Asia Pacific, Middle East & Africa, and South & Central America Buying Options Request tailored purchasing options to fulfill your requirements for research.Category-Wise Insights
Product Type-Based Insights
The global graphite electrode market was led by the ultra-high power segment in , which accounted for the largest market share. These graphite electrodes are predominantly used in the electric arc furnace (EAF) industry for recycling steel. The primary raw material for ultra-high power graphite electrodes is high-quality needle coke, produced from either coal tar or petroleum. The electrodes are cylindrical in shape and feature threaded areas at each end to enable assembly into an electrode column using electrode nipples.
The increasing popularity of large-capacity ultra-high power arc furnaces, which offer lower costs and higher work efficiency, is expected to drive the demand for ultra-high power graphite electrodes. As a result, this segment is projected to maintain its dominant position in the graphite electrode market and witness the highest compound annual growth rate (CAGR) growth.
The graphite electrode market is segmented by application into electric arc furnaces, ladle furnaces, and others. Among these, the electric arc furnace segment is expected to exhibit the highest CAGR during the forecast period. Graphite electrodes are an essential component of the electric arc furnace (EAF) method for steel production and are also used for the purification of steel in ladle furnaces.
In addition, they are utilized in the production of non-steel ferrous metals, ferroalloys, silicon metal, and yellow phosphorus. Although the quantity required is small, with approximately 1.6kg of graphite electrode needed for every ton of steel production, it is a crucial consumable in EAF steel production. The electric arc furnace segment accounts for more than 82% of the total graphite electrode market share.
Global Graphite Electrode Market – (By Million)
www.custommarketinsight.comGraphite Electrode Market – Regional Analysis
The graphite electrode market can be analyzed based on regional segments, including North America, Europe, Asia Pacific, Middle East and Africa, and South America.
In summary, Asia Pacific dominates the graphite electrode market, while North America, Europe, the Middle East and Africa, and South America are emerging as significant regional markets, driven by growing demand for steel, technological advancements, and the growth of various industries.
Competitive Landscape – Graphite Electrode Market
The graphite electrode market is highly competitive, with several established players operating at the global and regional levels. The market is consolidated, with a few major players dominating the market share. The key players in the market include
These companies are focusing on mergers and acquisitions, partnerships, and collaborations to expand their presence in the market. For instance, in , GrafTech International Ltd. announced the acquisition of Seadrift Coke L.P. and C/G Electrodes LLC, to strengthen its position in the graphite electrode market.
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Furthermore, the companies are investing in research and development activities to enhance their product offerings and increase their market share. For instance, Showa Denko K.K. developed a new grade of ultra-high thermal shock resistance graphite electrodes in , which can be used for ultra-high-power electric arc furnaces.
The market players are also adopting various strategies such as product innovation, capacity expansion, and strategic alliances to gain a competitive edge in the market. The competitive landscape of the graphite electrode market is expected to remain highly competitive in the coming years, driven by increasing demand for steel and other metals, and the growing adoption of electric vehicles.
Global Graphite Electrode Market – (By Application)
www.custommarketinsight.comThe Graphite Electrode Market is segmented as follows:
By Electrode Grade Analysis
➢ Ultra-High Power (UHP)
➢ High Power (SHP)
➢ Regular Power (RP)
By Application Analysis
➢ Steel
➢ Nonferrous Metals
➢ Fused Materials
➢ Inverted
➢ Chemical Processing
➢ Electric Arc Furnace (EAF)
➢ Ladle Furnace (LF)
➢ Basic Oxygen Furnace
➢ Non-steel Application
By Region
North America
Europe
Asia Pacific
The Middle East & Africa
Latin America
Report Methodology
In order to get the most precise estimates and forecasts possible, Custom Market Insights applies a detailed and adaptive research methodology centered on reducing deviations. For segregating and assessing quantitative aspects of the market, the company uses a combination of top-down and bottom-up approaches. Furthermore, data triangulation, which examines the market from three different aspects, is a recurring theme in all of our research reports. The following are critical components of the methodology used in all of our studies:
Preliminary Data Mining
On a broad scale, raw market information is retrieved and compiled. Data is constantly screened to make sure that only substantiated and verified sources are taken into account. Furthermore, data is mined from a plethora of reports in our archive and also a number of reputed & reliable paid databases. To gain a detailed understanding of the business, it is necessary to know the entire product life cycle and to facilitate this, we gather data from different suppliers, distributors, and buyers.
Surveys, technological conferences, and trade magazines are used to identify technical issues and trends. Technical data is also gathered from the standpoint of intellectual property, with a focus on freedom of movement and white space. The dynamics of the industry in terms of drivers, restraints, and valuation trends are also gathered. As a result, the content created contains a diverse range of original data, which is then cross-validated and verified with published sources.
Statistical Model
Simulation models are used to generate our business estimates and forecasts. For each study, a one-of-a-kind model is created. Data gathered for market dynamics, the digital landscape, development services, and valuation patterns are fed into the prototype and analyzed concurrently. These factors are compared, and their effect over the projected timeline is quantified using correlation, regression, and statistical modeling. Market forecasting is accomplished through the use of a combination of economic techniques, technical analysis, industry experience, and domain knowledge.
Short-term forecasting is typically done with econometric models, while long-term forecasting is done with technological market models. These are based on a synthesis of the technological environment, legal frameworks, economic outlook, and business regulations. Bottom-up market evaluation is favored, with crucial regional markets reviewed as distinct entities and data integration to acquire worldwide estimates. This is essential for gaining a thorough knowledge of the industry and ensuring that errors are kept to a minimum.
Some of the variables taken into account for forecasting are as follows:
• Industry drivers and constraints, as well as their current and projected impact
• The raw material case, as well as supply-versus-price trends
• Current volume and projected volume growth through
We allocate weights to these variables and use weighted average analysis to determine the estimated market growth rate.
Primary Validation
This is the final step in our report’s estimating and forecasting process. Extensive primary interviews are carried out, both in-person and over the , to validate our findings and the assumptions that led to them.
Leading companies from across the supply chain, including suppliers, technology companies, subject matter experts, and buyers, use techniques like interviewing to ensure a comprehensive and non-biased overview of the business. These interviews are conducted all over the world, with the help of local staff and translators, to overcome language barriers.
Primary interviews not only aid with data validation, but also offer additional important insight into the industry, existing business scenario, and future projections, thereby improving the quality of our reports.
All of our estimates and forecasts are validated through extensive research work with key industry participants (KIPs), which typically include:
• Market leaders
• Suppliers of raw materials
• Suppliers of raw materials
• Buyers.
The following are the primary research objectives:
• To ensure the accuracy and acceptability of our data.
• Gaining an understanding of the current market and future projections.
Data Collection Matrix
Perspective Primary research Secondary research Supply-side
Market Analysis Matrix
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