市場調查報告書
商品編碼
1466816
鋅片塗層市場:按類型、塗層類型、塗層技術、最終用途行業分類 - 2024-2030 年全球預測Zinc Flake Coating Market by Type (Solvent-Based, Water-Based), Coating Type (Inorganic Coats, Organic Coats), Coating Technique, End-Use Industry - Global Forecast 2024-2030 |
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2023年鋅片塗料市場規模預計為14.2億美元,預計2024年將達到15.1億美元,2030年將達到22.8億美元,複合年成長率為6.98%。
鋅片塗層是一種有效保護各種金屬表面的耐腐蝕塗層。鋅片塗層主要用於防止鋼鐵和其他含鐵基材生鏽和腐蝕。快速的工業化和基礎設施發展活動增加了對耐腐蝕塗料(包括鋅片塗料)的需求。隨著汽車工業的不斷擴張,鋅片塗層被用於各種汽車零件,如緊固件、彈簧、底盤和車身部件,以幫助防止腐蝕並提高耐用性。然而,奈米塗層和先進聚合物等替代塗層技術和材料的開拓為鋅片塗層市場的成長帶來了挑戰。自癒和智慧塗層的開拓可以修復輕微損傷並提供附加功能,從而增強鋅片塗層的價值提案,預計將為市場成長創造機會。
主要市場統計 | |
---|---|
基準年[2023] | 14.2億美元 |
預測年份 [2024] | 15.1億美元 |
預測年份 [2030] | 22.8億美元 |
複合年成長率(%) | 6.98% |
由於乾燥時間快,溶劑型鋅片塗料的需求不斷成長
溶劑型鋅片塗層可提供出色的防腐蝕、防鹽和防紫外線輻射保護,使其成為暴露於惡劣環境條件下的應用的理想選擇。溶劑型鋅片塗料是用有機溶劑與鋅片、黏合劑、顏料和其他添加劑混合配製而成。固化過程中溶劑容易蒸發,在表面留下一層鋅保護層。水性鋅片塗料又稱為水性或水性鋅片塗料,以水作為塗料配方中的主要溶劑。這些塗料由分散在水中的鋅片、黏合劑、顏料和添加劑組成。
塗層類型有機鋅片塗層在保持防鏽方面具有巨大優勢。
有機鋅片塗層採用有機黏合劑、樹脂、鋅片和其他添加劑配製而成。這些塗層提供出色的防銹保護,並具有其他優點,例如彈性、抗衝擊性和顏色選擇。無機鋅片塗層採用無機黏合劑、鋅片和其他基於矽酸鹽或磷酸鹽化學的添加劑配製而成。無機鋅片塗層用於需要良好耐腐蝕的行業,例如石油和天然氣、船舶和重型機械。
塗裝技術:精準控制的自動噴塗技術普及
熱噴塗是一種廣泛使用的鋅片塗層塗覆技術,其中使用噴槍或自動熱噴塗系統在表面上塗覆均勻的塗層。該技術可以精確控制塗層厚度和覆蓋範圍。噴塗用於需要均勻塗層的大型或複雜表面,例如汽車車身部件。浸紡是一種將零件浸入裝有需要塗層的鋅片塗層溶液的罐子或容器中的技術。然後該部件高速旋轉,離心力吹掉多餘的塗層液體。機架安裝浸紡是浸紡技術的變體,其中零件在浸入塗層溶液之前安裝在機架或固定裝置上。該技術通常用於無法單獨浸入的大型或不規則形狀的零件。浸排塗層是一種將零件浸入塗層溶液中並提起以排放多餘塗層的技術。
最終用途產業:快速成長的汽車和電子產業中鋅片塗料的高消費量
在汽車工業中,鋅片塗層廣泛用於緊固件、彈簧、煞車系統、底盤和車身部件等汽車零件的防銹。在建設產業中,鋅片塗層可保護建築物、橋樑和基礎設施計劃中的結構構件、鋼筋和緊固件。這些塗層可作為防腐蝕屏障並延長建築材料的使用壽命。鋅片塗層用於暴露在惡劣環境下的工業機械零件,例如泵浦、閥門、渦輪機和機械零件。鋅片塗層用於保護管道、海上結構、儲存槽、閥門和其他設備免受腐蝕。即使在惡劣的環境中,這些塗層也能提供有效的耐腐蝕,從而降低維護成本並提高安全性。此外,鋅片塗層也用於電氣和電子行業,以保護金屬零件免受腐蝕。適用於電連接器、機殼、端子等金屬零件。
區域洞察
在亞太地區和南美洲,道路、橋樑、機場等基礎建設活躍,帶動了鋅片塗料的需求。隨著印度、日本、中國和澳洲對可再生能源的日益關注,鋅片塗層被用於保護可再生能源基礎設施中使用的零件,例如風力發電機塔架、太陽能電池板框架和預計擴建的支撐結構。在美國、加拿大、英國和德國,隨著老牌汽車製造商專注於提高汽車產量,鋅片塗層擴大用於防止緊固件、彈簧、底盤和車身部件等各種汽車零件的腐蝕。歐洲、中東和非洲地區石油、天然氣和化學加工等行業維護和維修的增加正在推動對鋅片塗料的需求。
FPNV定位矩陣
FPNV定位矩陣對於評估鋅片塗料市場至關重要。我們檢視與業務策略和產品滿意度相關的關鍵指標,以對供應商進行全面評估。這種深入的分析使用戶能夠根據自己的要求做出明智的決策。根據評估,供應商被分為四個成功程度不同的像限:前沿(F)、探路者(P)、利基(N)和重要(V)。
市場佔有率分析
市場佔有率分析是一種綜合工具,可以對鋅片塗料市場供應商的現狀進行深入而詳細的研究。全面比較和分析供應商在整體收益、基本客群和其他關鍵指標方面的貢獻,以便更好地了解公司的績效及其在爭奪市場佔有率時面臨的挑戰。此外,該分析還提供了對該行業競爭特徵的寶貴見解,包括在研究基準年觀察到的累積、分散主導地位和合併特徵等因素。詳細程度的提高使供應商能夠做出更明智的決策並制定有效的策略,從而在市場上獲得競爭優勢。
1. 市場滲透率:提供有關主要企業所服務的市場的全面資訊。
2. 市場開拓:我們深入研究利潤豐厚的新興市場,並分析其在成熟細分市場的滲透率。
3. 市場多元化:提供有關新產品發布、開拓地區、最新發展和投資的詳細資訊。
4.競爭評估與資訊:對主要企業的市場佔有率、策略、產品、認證、監管狀況、專利狀況、製造能力等進行全面評估。
5. 產品開發與創新:提供對未來技術、研發活動和突破性產品開發的見解。
1.鋅片塗料市場的市場規模與預測是多少?
2.在鋅片塗料市場的預測期間內,有哪些產品、細分市場、應用和領域需要考慮投資?
3.鋅片塗料市場的技術趨勢和法規結構是什麼?
4.鋅片塗料市場主要供應商的市場佔有率是多少?
5. 進入鋅片塗料市場合適的型態和策略手段是什麼?
[191 Pages Report] The Zinc Flake Coating Market size was estimated at USD 1.42 billion in 2023 and expected to reach USD 1.51 billion in 2024, at a CAGR 6.98% to reach USD 2.28 billion by 2030.
Zinc flake coating is a corrosion-resistant coating that effectively protects various metal surfaces. Zinc flake coating is primarily used to prevent rust and corrosion on steel and other ferrous substrates. Rapid industrialization and infrastructure development activities increase the demand for corrosion-resistant coatings, including zinc flake coatings. The continuous expansion of the automotive industry is elevating the usage of zinc flake coatings on various automotive components, including fasteners, springs, chassis, and body parts, to provide corrosion protection and improve durability. However, developing alternative coating technologies and materials, such as nano-coatings and advanced polymers, challenges the growth of the zinc flake coating market. Developing self-healing and smart coatings that can repair minor damage and provide additional functionalities that enhance the value proposition of zinc flake coatings is expected to create opportunities for market growth.
KEY MARKET STATISTICS | |
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Base Year [2023] | USD 1.42 billion |
Estimated Year [2024] | USD 1.51 billion |
Forecast Year [2030] | USD 2.28 billion |
CAGR (%) | 6.98% |
Type: Growing demand for solvent-based zinc flake coatings owing to their faster drying times
Solvent-based zinc flake coatings offer superior protection against corrosion, salts, and UV rays, making them an ideal choice for applications exposed to harsh environmental conditions. Solvent-based zinc flake coatings are formulated using organic solvents that contain a blend of zinc flakes, binders, pigments, and other additives. The solvent easily evaporates during the curing process, leaving a protective layer of zinc on the surface. Water-based zinc flake coatings, also known as aqueous or waterborne zinc flake coatings, utilize water as the primary solvent for the coating formulation. These coatings consist of zinc flakes, binders, pigments, and additives dispersed in water.
Coating Type: Significant benefits of organic zinc flake coats in maintaining corrosion protection.
Organic zinc flake coats are formulated using organic binders, resins, zinc flakes, and other additives. These coatings provide excellent corrosion protection and offer additional benefits such as flexibility, impact resistance, and color options. Inorganic zinc flake coats are formulated using inorganic binders based on silicate or phosphate chemistry, zinc flakes, and other additives. Inorganic zinc flake coats are used in industries such as oil & gas, marine, and heavy machinery, where superior corrosion resistance is critical.
Coating Technique: Widespread adoption of automated spraying technique attributed to precise control
Spraying is a widely used coating technique for zinc flake coatings, which involves using spray guns and automated spraying systems to apply the coating onto the surface evenly. This technique allows for precise control over the coating thickness and coverage. Spraying is used for large or complex surfaces, such as automotive body parts, requiring an even and uniform coating. Dip-spinning is a technique in which parts are immersed in a tank or container filled with the zinc flake coating solution, requiring coating. The parts are then spun at high speeds, causing the excess coating solution to be flung off by centrifugal force. Rack-mounted dip-spinning is a variation of the dip-spinning technique where the parts are mounted on racks or fixtures before immersion in the coating solution. This technique is commonly used for larger or irregularly shaped parts that cannot be immersed individually. The dip-drain coating is a technique where the parts are dipped into the coating solution and lifted to allow excess coating to drain off.
End-Use Industry: Higher consumption of zinc flake coatings in rapidly growing automotive and electronics industries
The automotive industry extensively uses zinc flake coatings for corrosion protection of automotive components, such as fasteners, springs, brake systems, chassis, and body parts. In the construction industry, zinc flake coatings protect structural elements, steel reinforcements, and fasteners in buildings, bridges, and infrastructure projects. These coatings provide a barrier against corrosion, extending the lifespan of the construction materials. Zinc flake coatings are applied to components of industrial machinery exposed to harsh environments, such as pumps, valves, turbines, and machine parts. Zinc flake coatings are used to protect pipelines, offshore structures, storage tanks, valves, and other equipment from corrosion. These coatings provide effective corrosion resistance, even in aggressive environments, reducing maintenance costs and enhancing safety. Additionally, zinc flake coatings are used in the electrical & electronics industry to protect metal components from corrosion. They are applied to electrical connectors, enclosures, terminals, and other metal parts.
Regional Insights
Significant infrastructure development activities, such as the construction of roads, bridges, and airports across Asia-Pacific and South America, drive the demand for zinc flake coatings. The growing focus on renewable energy sources across India, Japan, China, and Australia is expected to expand the application of zinc flake coatings to protect components used in renewable energy infrastructure, such as wind turbine towers, solar panel frames, and support structures. The presence of well-established automotive manufacturers focused on increasing the production of vehicles across the U.S., Canada, the UK, and Germany is expanding the adoption of zinc flake coatings for corrosion protection of various automotive components, including fasteners, springs, chassis, and body parts. The increasing maintenance and repair activities in industries, including oil & gas and chemical processing in EMEA, are raising the demand for zinc flake coatings for recoating and repairing existing surfaces and providing corrosion protection in these industries.
FPNV Positioning Matrix
The FPNV Positioning Matrix is pivotal in evaluating the Zinc Flake Coating Market. It offers a comprehensive assessment of vendors, examining key metrics related to Business Strategy and Product Satisfaction. This in-depth analysis empowers users to make well-informed decisions aligned with their requirements. Based on the evaluation, the vendors are then categorized into four distinct quadrants representing varying levels of success: Forefront (F), Pathfinder (P), Niche (N), or Vital (V).
Market Share Analysis
The Market Share Analysis is a comprehensive tool that provides an insightful and in-depth examination of the current state of vendors in the Zinc Flake Coating Market. By meticulously comparing and analyzing vendor contributions in terms of overall revenue, customer base, and other key metrics, we can offer companies a greater understanding of their performance and the challenges they face when competing for market share. Additionally, this analysis provides valuable insights into the competitive nature of the sector, including factors such as accumulation, fragmentation dominance, and amalgamation traits observed over the base year period studied. With this expanded level of detail, vendors can make more informed decisions and devise effective strategies to gain a competitive edge in the market.
Key Company Profiles
The report delves into recent significant developments in the Zinc Flake Coating Market, highlighting leading vendors and their innovative profiles. These include Aalberts N.V., ALTANA AG, ALU - FIN, American Elements, Anochrome Group, Atotech Deutschland GmbH & Co. KG by MKS Instruments, Inc., Aum Dacro Coatings, AVL METAL POWDERS n.v., EJOT Holding GmbH & Co. KG, Ewald Dorken AG, Fabory Nederland B.V., Forplan AG, Holder GmbH, Hunan Jinhao New Material Technology Co., Ltd, Huster Oberflachentechnik GmbH, Kansai Helios Coatings GmbH by Kansai Paint Co.,Ltd., Keys & Clamps, Klimas sp. z o. o., Licco Group, Noelson Chemicals, NOF CORPORATION, Novamet Specialty Products Corporation, Otto Chemie Pvt. Ltd., PPG Industries, Inc., Progressive Surface Systems, RIE Coatings, ROTOVER Lackiertechnik GmbH, Shiva co., Shree Balaji Industries LLP, Sika AG, Thai Parkerizing Co., Ltd., The DECC Company, The Magni Group, Inc., Varun Advance Coatings, Wellcoat Tech, Yuken Industrial Co., Ltd., and Zincotec Co.,Ltd.
Market Segmentation & Coverage
1. Market Penetration: It presents comprehensive information on the market provided by key players.
2. Market Development: It delves deep into lucrative emerging markets and analyzes the penetration across mature market segments.
3. Market Diversification: It provides detailed information on new product launches, untapped geographic regions, recent developments, and investments.
4. Competitive Assessment & Intelligence: It conducts an exhaustive assessment of market shares, strategies, products, certifications, regulatory approvals, patent landscape, and manufacturing capabilities of the leading players.
5. Product Development & Innovation: It offers intelligent insights on future technologies, R&D activities, and breakthrough product developments.
1. What is the market size and forecast of the Zinc Flake Coating Market?
2. Which products, segments, applications, and areas should one consider investing in over the forecast period in the Zinc Flake Coating Market?
3. What are the technology trends and regulatory frameworks in the Zinc Flake Coating Market?
4. What is the market share of the leading vendors in the Zinc Flake Coating Market?
5. Which modes and strategic moves are suitable for entering the Zinc Flake Coating Market?